initialer commit

This commit is contained in:
Daniel PepeCyB 2023-10-06 20:53:16 +02:00
commit c2a364394a
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# Change Log
Alle erwähnenswerten Änderungen an diesem Projekt werden in dieser Datei dokumentiert.
## [1.2.0] - 2017-12-01
## Added
- Schneller Wechsel zwischen Breite und Stärke bei Flachdraht
<<<<<<< HEAD
## [1.1.9] - 2017-10-24
### Added
- Option "Flachdraht" implementiert
### Changed
- Setup-Speicherung für Flachdraht-Option angepasst
=======
## [Unreleased]
### Added
- Feature zur Eingabe und Verwendung von Flachdraht
>>>>>>> 77cf77de38163524aba70b2fe7fff561f3dce51d
## [1.0.0] - 2017-06-25
### Changed
<<<<<<< HEAD
- Anzeige "Heat flux" angepasst
- Hilfe implementiert
=======
- Letzte kosmetische Änderungen
>>>>>>> 77cf77de38163524aba70b2fe7fff561f3dce51d
## [0.9.0] - 2017-06-22
### Added
- Material-Editor zur Bearbeitung der Drahtsorten
- Anzeige des Wertes "Heat flux"
## [0.7.0] - 2017-06-21
### Changed
- Umstellung auf Konfigurationsdatei für Daten
- Änderung am I-Feld
- Umstellung auf direkte Berechnung des Wertes Ohm/m aus spezifischem Widerstand
- Umstellung von Materialtabellen auf direkte Eingabe des Durchmessers
- automatische Umrechnung mm <-> AWG
## [0.6.2] - 2017-06-17
### Changed
- TAB-Reihenfolge korrigiert
- I- und P-Feld schreibgeschützt
## [0.6.1] - 2017-06-16
### Changed
- Symbolgrafik für X 1/2 Wicklungen ausgetauscht.
## [0.6.0] - 2017-06-15
### Added
- URIP-Rechner zur Berechnung von Stromstärke und Leistung
## [0.5.0] - 2017-06-14
### Added
- Daten für Kanthal D
- Daten für Titan
- Daten für Nickel
## [0.3.1] - 2017-06-13
### Added
- Speicherfunktion für Coil-Setups
- Ladefunktion für Coil-Setups
## [0.2.1] - 2017-06-12
### Changed
- Daten für V4A korrigiert
## [0.0.1] - 2017-06-03
### Added
- Daten für Kanthal A1
- Daten für NiChrome 80
- Daten für V4A
- Basisfunktionalität

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Installation
Die aktuelle Version liegt als direkt ausfühbare Datei vor. Das Programmverzeichnis einfach ins gewünschte Zielverzeichnis kopieren und Keulkulator ausführen.
Das Programm steht auch als gepacktes Programm-Release (Windows-Version .ZIP - Linux-Version .tar.bz2) zur Verfügung.
Erstellen
Um die aktuelle Version zu erstellen, mittels
git clone https://github.com/PepeCyB/keulkulator.git
klonen oder als ZIP herunterladen und entpacken. Im Programmverzeichnis "keulkulator" befindet sich die Lazarus-Projektdatei "keulkulator.lpi".
Die Lazarus-IDE starten, das Projekt laden und mit Menü Start → Kompilieren (Strg-F9) oder im Terminal / Windows Eingabeaufforderung in das Programmverseichnis wechseln und mit
lazbuild keulkulator.lpi (Linux)
bzw.
lazbuild.exe keulkulator.lpi (Windows)
erstellen.

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OF ANY KIND, EITHER EXPRESSED OR IMPLIED, INCLUDING, BUT NOT LIMITED TO,
THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
PURPOSE. THE ENTIRE RISK AS TO THE QUALITY AND PERFORMANCE OF THE PROGRAM
IS WITH YOU. SHOULD THE PROGRAM PROVE DEFECTIVE, YOU ASSUME THE COST OF
ALL NECESSARY SERVICING, REPAIR OR CORRECTION.
16. Limitation of Liability.
IN NO EVENT UNLESS REQUIRED BY APPLICABLE LAW OR AGREED TO IN WRITING
WILL ANY COPYRIGHT HOLDER, OR ANY OTHER PARTY WHO MODIFIES AND/OR CONVEYS
THE PROGRAM AS PERMITTED ABOVE, BE LIABLE TO YOU FOR DAMAGES, INCLUDING ANY
GENERAL, SPECIAL, INCIDENTAL OR CONSEQUENTIAL DAMAGES ARISING OUT OF THE
USE OR INABILITY TO USE THE PROGRAM (INCLUDING BUT NOT LIMITED TO LOSS OF
DATA OR DATA BEING RENDERED INACCURATE OR LOSSES SUSTAINED BY YOU OR THIRD
PARTIES OR A FAILURE OF THE PROGRAM TO OPERATE WITH ANY OTHER PROGRAMS),
EVEN IF SUCH HOLDER OR OTHER PARTY HAS BEEN ADVISED OF THE POSSIBILITY OF
SUCH DAMAGES.
17. Interpretation of Sections 15 and 16.
If the disclaimer of warranty and limitation of liability provided
above cannot be given local legal effect according to their terms,
reviewing courts shall apply local law that most closely approximates
an absolute waiver of all civil liability in connection with the
Program, unless a warranty or assumption of liability accompanies a
copy of the Program in return for a fee.
END OF TERMS AND CONDITIONS
How to Apply These Terms to Your New Programs
If you develop a new program, and you want it to be of the greatest
possible use to the public, the best way to achieve this is to make it
free software which everyone can redistribute and change under these terms.
To do so, attach the following notices to the program. It is safest
to attach them to the start of each source file to most effectively
state the exclusion of warranty; and each file should have at least
the "copyright" line and a pointer to where the full notice is found.
<one line to give the program's name and a brief idea of what it does.>
Copyright (C) <year> <name of author>
This program is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
Also add information on how to contact you by electronic and paper mail.
If the program does terminal interaction, make it output a short
notice like this when it starts in an interactive mode:
<program> Copyright (C) <year> <name of author>
This program comes with ABSOLUTELY NO WARRANTY; for details type `show w'.
This is free software, and you are welcome to redistribute it
under certain conditions; type `show c' for details.
The hypothetical commands `show w' and `show c' should show the appropriate
parts of the General Public License. Of course, your program's commands
might be different; for a GUI interface, you would use an "about box".
You should also get your employer (if you work as a programmer) or school,
if any, to sign a "copyright disclaimer" for the program, if necessary.
For more information on this, and how to apply and follow the GNU GPL, see
<http://www.gnu.org/licenses/>.
The GNU General Public License does not permit incorporating your program
into proprietary programs. If your program is a subroutine library, you
may consider it more useful to permit linking proprietary applications with
the library. If this is what you want to do, use the GNU Lesser General
Public License instead of this License. But first, please read
<http://www.gnu.org/philosophy/why-not-lgpl.html>.

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# Keulkulator
**Ein Programm zur Berechnung von Coils in Selbstwickelverdampfern.**
Es können Materialien (Stand 21.06.2017: Kanthal A1, Kanthal A, Kanthal D, NiChrome N80, Nickel 200, V4A, V2A und Titan), Drahtstärke (mm und AWG), gewünschter Widerstand der Wicklung, Innendurchmesser der Wicklung und Befestigungsweg (Abstand Wicklung zu den Anschlussposts, WICHTIG: nur einfachen Weg eingeben), sowie die Anzahl der Coils (single, dual, quad) ausgewählt werden. Die Berechnung erfolgt sofort bei jeder Änderung eines Parameters.
Als Ergebnis wird die genaue erforderliche Drahtlänge, sowie die genaue Wicklungsanzahl ausgegeben. Da nur mit halben (die Drahtenden zeigen in zwei verschiedene Richtungen) und ganzen (die Drahtenden zeigen in die selbe Richtung) gearbeitet werden kann, werden drei verschiedene gerundete Ergebnisvarianten mit dem jeweils erreichten Widerstand angezeigt.
Keulkulator bietet nun auch die Möglichkeit, Flachdraht-Wicklungen zu berechnen. Zum Umschalten zwischen Rund- und Flachdraht wurde ein Schalter unter dem Material-Auswahlfeld eingebaut.
Bei Flachdraht kann die Breite und die Stärke des Ribbons ausgewählt werden.
Es kann bei Interesse die vom Akkuträger bereitgestellte Akkuspannung gewählt werden. Es werden dann Stromstärke und Leistung berechnet.
Die Setups können geladen und gespeichert werden. In der neuen Version werden auch die Daten für Flachdraht-Wicklungen gespeichert. Alte Dateiversionen (ohne Flachdraht-Daten) können weiterhin geladen werden. Eine Abwärts-Kompatibilität ist jedoch nicht gegeben. Dateien, die mit der neuen Version gespeichert wurden können mit Programmversionen ≦ 1.0.0 nicht geladen werden.
Das Programm wurde mit [Lazarus](http://www.lazarus-ide.org/)/[Freepascal](https://www.freepascal.org/) erstellt. Die vorhandene ausführbare Datei liegt unter einer Linux-Version vor. Sie wurde unter [Manjaro Linux](https://manjaro.org/) 17.0.1 Gellivara x86_64 erstellt.
Eine Windows-Version steht ebenfalls zur Verfügung (Windows 64 u. Windows 32).
![screenshot](screenshot.png)
Mit dem Material-Editor (Button neben dem Material-Auswahlfeld) können Parameter der vorliegenden Daten angepasst werden und auch neue Materialien mit dem jeweiligen spezifischen Widerstand zur Liste hinzugefügt werden.
![Material-Editor](screenshot_mat-ed.png)
Die Parameter eines in der Liste ausgewählten Materials können geändert werden. Die Änderungen werden mit dem Button "Übernehmen" übernommen.
Der Button "Felder löschen" löscht die Materialbezeichnung und setzt den spezifischen Widerstand zurück (0.01 Ohm/m). Es können neue Materialien eingegeben werden. Mit dem Button "Eintrag zufügen" wird das neue Material zur Liste hinzugefügt.
Der Button "OK" übernimmt die durchgeführten Änderungen und es wird ins Hauptprogramm zurückgekehrt. **Achtung:** Wird das Programm beendet, verfallen die Änderungen, sofern nicht vor Verlassen des Programms im Material-Editor mit dem Button "Speichern" die aktuelle Materialliste in der Konfigurationsdatei gespeichert wurde. Der Button "Speichern" speichert die aktuelle Liste und springt ins Hauptprogramm zurück.
Ein Klick auf den Button "Verwerfen" setzt die Materialliste auf den Stand vor den Änderungen zurück, sofern die geänderte Materialliste noch nicht gespeichert wurde.
## Dokumentation
Die Dokumentation befindet sich im Unterverzeichnis docs. Die Hilfe entweder direkt aus dem Programm aufrufen oder die Datei help.html bzs. help.md öffnen.
## Installation
Die aktuelle Version liegt als direkt ausfühbare Datei vor. Das Programmverzeichnis einfach ins gewünschte Zielverzeichnis kopieren und Keulkulator ausführen.
Das Programm steht auch als gepacktes Programm-Release (Windows-Version .ZIP - Linux-Version .tar.bz2) zur Verfügung.
## Erstellen
Um die aktuelle Version zu erstellen, mittels
`git clone https://github.com/PepeCyB/keulkulator.git`
klonen oder als ZIP herunterladen und entpacken. Im Programmverzeichnis "keulkulator" befindet sich die Lazarus-Projektdatei "keulkulator.lpi".
Die Lazarus-IDE starten, das Projekt laden und mit Menü **Start****Kompilieren** (Strg-F9) oder im Terminal / Windows Eingabeaufforderung in das Programmverseichnis wechseln und mit
`lazbuild keulkulator.lpi` (Linux)
bzw.
`lazbuild.exe keulkulator.lpi` (Windows)
erstellen.
#### Abhängigkeiten
Zum Compilieren von Keulkulator ab Version 1.1.x wird das Komponenten-Paket [Eye-Candy Controls](http://wiki.freepascal.org/Eye-Candy_Controls) benötigt ([Download](https://packages.lazarus-ide.org/EyeCandyControls.zip)).
## Lizenz
Keulkulator ist lizensiert unter der [GNU General Public License Version 3](https://www.gnu.org/licenses/gpl.txt).
[GNU GPL 3](gpl.txt)
Copyright 2017 PepeCyB

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<?xml version="1.0" encoding="UTF-8"?>
<CONFIG>
<ProjectOptions>
<Version Value="12"/>
<General>
<Flags>
<CompatibilityMode Value="True"/>
</Flags>
<SessionStorage Value="InProjectDir"/>
<Title Value="Keulkulator"/>
<UseAppBundle Value="False"/>
<ResourceType Value="res"/>
<Icon Value="0"/>
</General>
<i18n>
<EnableI18N LFM="False"/>
</i18n>
<VersionInfo>
<UseVersionInfo Value="True"/>
<AutoIncrementBuild Value="True"/>
<MajorVersionNr Value="1"/>
<MinorVersionNr Value="2"/>
<BuildNr Value="8"/>
<Language Value="0407"/>
<StringTable LegalCopyright="Copyright 2017 PepeCyB"/>
</VersionInfo>
<BuildModes Count="1">
<Item1 Name="Default" Default="True"/>
</BuildModes>
<PublishOptions>
<Version Value="2"/>
</PublishOptions>
<RunParams>
<FormatVersion Value="2"/>
<Modes Count="1">
<Mode0 Name="default"/>
</Modes>
</RunParams>
<RequiredPackages Count="2">
<Item1>
<PackageName Value="eccontrols"/>
</Item1>
<Item2>
<PackageName Value="LCL"/>
</Item2>
</RequiredPackages>
<Units Count="5">
<Unit0>
<Filename Value="keulkulator.lpr"/>
<IsPartOfProject Value="True"/>
</Unit0>
<Unit1>
<Filename Value="unit1.pas"/>
<IsPartOfProject Value="True"/>
<ComponentName Value="MainForm"/>
<HasResources Value="True"/>
<ResourceBaseClass Value="Form"/>
<UnitName Value="Unit1"/>
</Unit1>
<Unit2>
<Filename Value="udata.pas"/>
<IsPartOfProject Value="True"/>
<UnitName Value="UData"/>
</Unit2>
<Unit3>
<Filename Value="unit2.pas"/>
<IsPartOfProject Value="True"/>
<ComponentName Value="FUeber"/>
<HasResources Value="True"/>
<ResourceBaseClass Value="Form"/>
<UnitName Value="Unit2"/>
</Unit3>
<Unit4>
<Filename Value="unit3.pas"/>
<IsPartOfProject Value="True"/>
<ComponentName Value="MatEditor"/>
<HasResources Value="True"/>
<ResourceBaseClass Value="Form"/>
<UnitName Value="Unit3"/>
</Unit4>
</Units>
</ProjectOptions>
<CompilerOptions>
<Version Value="11"/>
<Target>
<Filename Value="keulkulator"/>
</Target>
<SearchPaths>
<IncludeFiles Value="$(ProjOutDir)"/>
<UnitOutputDirectory Value="lib/$(TargetCPU)-$(TargetOS)"/>
</SearchPaths>
<CodeGeneration>
<SmartLinkUnit Value="True"/>
<Optimizations>
<OptimizationLevel Value="2"/>
</Optimizations>
</CodeGeneration>
<Linking>
<Debugging>
<GenerateDebugInfo Value="False"/>
<RunWithoutDebug Value="True"/>
</Debugging>
<LinkSmart Value="True"/>
</Linking>
</CompilerOptions>
<Debugging>
<Exceptions Count="5">
<Item1>
<Name Value="EAbort"/>
</Item1>
<Item2>
<Name Value="ECodetoolError"/>
</Item2>
<Item3>
<Name Value="EFOpenError"/>
</Item3>
<Item4>
<Name Value="RunError(216)"/>
</Item4>
<Item5>
<Name Value="EAccessViolation"/>
</Item5>
</Exceptions>
</Debugging>
</CONFIG>

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program keulkulator;
{$mode objfpc}{$H+}
{
This file is part of Keulkulator.
Keulkulator is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
Keulkulator is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with Keulkulator. If not, see <http://www.gnu.org/licenses/>.
}
uses
{$IFDEF UNIX}{$IFDEF UseCThreads}
cthreads,
{$ENDIF}{$ENDIF}
Interfaces, // this includes the LCL widgetset
Forms, Unit1, UData, Unit2, Unit3
{ you can add units after this };
{$R *.res}
begin
Application.Title:='Keulkulator';
RequireDerivedFormResource:=True;
Application.Initialize;
Application.CreateForm(TMainForm, MainForm);
Application.CreateForm(TFUeber, FUeber);
Application.CreateForm(TMatEditor, MatEditor);
Application.Run;
end.

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<?xml version="1.0" encoding="UTF-8"?>
<CONFIG>
<ProjectSession>
<Version Value="12"/>
<BuildModes Active="Default"/>
<Units Count="6">
<Unit0>
<Filename Value="keulkulator.lpr"/>
<IsPartOfProject Value="True"/>
<EditorIndex Value="3"/>
<CursorPos Y="40"/>
<UsageCount Value="89"/>
<Loaded Value="True"/>
</Unit0>
<Unit1>
<Filename Value="unit1.pas"/>
<IsPartOfProject Value="True"/>
<ComponentName Value="MainForm"/>
<HasResources Value="True"/>
<ResourceBaseClass Value="Form"/>
<UnitName Value="Unit1"/>
<TopLine Value="268"/>
<CursorPos X="3" Y="270"/>
<UsageCount Value="89"/>
<Loaded Value="True"/>
<LoadedDesigner Value="True"/>
</Unit1>
<Unit2>
<Filename Value="udata.pas"/>
<IsPartOfProject Value="True"/>
<UnitName Value="UData"/>
<EditorIndex Value="4"/>
<TopLine Value="19"/>
<CursorPos Y="64"/>
<UsageCount Value="85"/>
<Loaded Value="True"/>
</Unit2>
<Unit3>
<Filename Value="unit2.pas"/>
<IsPartOfProject Value="True"/>
<ComponentName Value="FUeber"/>
<HasResources Value="True"/>
<ResourceBaseClass Value="Form"/>
<UnitName Value="Unit2"/>
<IsVisibleTab Value="True"/>
<EditorIndex Value="2"/>
<TopLine Value="31"/>
<CursorPos X="52" Y="49"/>
<UsageCount Value="64"/>
<Loaded Value="True"/>
<LoadedDesigner Value="True"/>
</Unit3>
<Unit4>
<Filename Value="unit3.pas"/>
<IsPartOfProject Value="True"/>
<ComponentName Value="MatEditor"/>
<HasResources Value="True"/>
<ResourceBaseClass Value="Form"/>
<UnitName Value="Unit3"/>
<EditorIndex Value="1"/>
<TopLine Value="31"/>
<CursorPos X="15" Y="112"/>
<UsageCount Value="46"/>
<Loaded Value="True"/>
<LoadedDesigner Value="True"/>
</Unit4>
<Unit5>
<Filename Value="/usr/lib/lazarus/lcl/lclproc.pas"/>
<UnitName Value="LCLProc"/>
<EditorIndex Value="-1"/>
<TopLine Value="888"/>
<CursorPos Y="902"/>
<UsageCount Value="7"/>
</Unit5>
</Units>
<JumpHistory Count="30" HistoryIndex="29">
<Position1>
<Filename Value="unit1.pas"/>
<Caret Line="186" Column="54" TopLine="166"/>
</Position1>
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<Filename Value="unit1.pas"/>
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<Position30>
<Filename Value="unit2.pas"/>
<Caret Line="40" Column="35"/>
</Position30>
</JumpHistory>
<RunParams>
<FormatVersion Value="2"/>
<Modes ActiveMode="default"/>
</RunParams>
</ProjectSession>
<Debugging>
<BreakPoints>
<Item>
<Kind Value="bpkSource"/>
<WatchScope Value="wpsLocal"/>
<WatchKind Value="wpkWrite"/>
<Source Value="unit1.pas"/>
<Line Value="126"/>
</Item>
</BreakPoints>
</Debugging>
</CONFIG>

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unit Unit1;
{$mode objfpc}{$H+}
{
This file is part of Keulkulator.
Keulkulator is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
Keulkulator is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with Keulkulator. If not, see <http://www.gnu.org/licenses/>.
}
interface
uses
Classes, SysUtils, FileUtil, Forms, Controls, Graphics, Dialogs, Menus,
ExtCtrls, ComCtrls, StdCtrls, Spin, LazHelpHTML, LCLIntf, Buttons, ECSwitch,
math, UData, Unit2, Unit3;
type
{ TMainForm }
TMainForm = class(TForm)
BtMatEdit: TButton;
CBMaterial: TComboBox;
ECSwitch1: TECSwitch;
EdFile: TEdit;
EdHflx: TEdit;
EdStrom: TEdit;
EdLeistung: TEdit;
FlSpStaerke: TFloatSpinEdit;
FlSpmm: TFloatSpinEdit;
FlSpAWG: TFloatSpinEdit;
FlSpBreite: TFloatSpinEdit;
FlSpSpannung: TFloatSpinEdit;
FlSpWeg: TFloatSpinEdit;
FlSpWiderstand: TFloatSpinEdit;
FlSpDurchmesser: TFloatSpinEdit;
GroupBox1: TGroupBox;
HTMLBrowserHelpViewer1: THTMLBrowserHelpViewer;
HTMLHelpDatabase1: THTMLHelpDatabase;
Image1: TImage;
Image2: TImage;
Image3: TImage;
Image4: TImage;
Label1: TLabel;
Label10: TLabel;
Label11: TLabel;
Label13: TLabel;
Label14: TLabel;
Label19: TLabel;
LaOhmAb: TLabel;
LaOhmHalb: TLabel;
LaOhmAuf: TLabel;
Label18: TLabel;
LaWindAb: TLabel;
LaWindHalb: TLabel;
LaWindAuf: TLabel;
Label15: TLabel;
Label16: TLabel;
Label17: TLabel;
LaWindungen: TLabel;
Label12: TLabel;
LaLaenge: TLabel;
Label2: TLabel;
Label3: TLabel;
Label4: TLabel;
Label5: TLabel;
Label6: TLabel;
Label7: TLabel;
Label8: TLabel;
Label9: TLabel;
MainMenu: TMainMenu;
MDatei: TMenuItem;
MBeenden: TMenuItem;
MenuItem1: TMenuItem;
MenuItem2: TMenuItem;
MenuItem3: TMenuItem;
MenuItem4: TMenuItem;
MHilfe: TMenuItem;
OpenDialog1: TOpenDialog;
Panel1: TPanel;
RaBSingle: TRadioButton;
RaBDual: TRadioButton;
RaBQuad: TRadioButton;
SaveDialog1: TSaveDialog;
Shape1: TShape;
SpBSwitch: TSpeedButton;
StatusBar1: TStatusBar;
procedure BtMatEditClick(Sender: TObject);
procedure CBMaterialChange(Sender: TObject);
procedure ECSwitch1Change(Sender: TObject);
procedure FlSpAWGChange(Sender: TObject);
procedure FlSpBreiteChange(Sender: TObject);
procedure FlSpDurchmesserChange(Sender: TObject);
procedure FlSpmmChange(Sender: TObject);
procedure FlSpSpannungChange(Sender: TObject);
procedure FlSpStaerkeChange(Sender: TObject);
procedure FlSpWegChange(Sender: TObject);
procedure FlSpWiderstandChange(Sender: TObject);
procedure FormClose(Sender: TObject; var CloseAction: TCloseAction);
procedure FormCreate(Sender: TObject);
procedure MBeendenClick(Sender: TObject);
procedure MenuItem1Click(Sender: TObject);
procedure MenuItem2Click(Sender: TObject);
procedure MenuItem3Click(Sender: TObject);
procedure MenuItem4Click(Sender: TObject);
procedure RaBDualChange(Sender: TObject);
procedure RaBQuadChange(Sender: TObject);
procedure RaBSingleChange(Sender: TObject);
procedure CalculateWraps;
procedure SpBSwitchClick(Sender: TObject);
private
{ private declarations }
public
{ public declarations }
end;
var
MainForm: TMainForm;
Durchmesser, Drahtstaerke, FBreite, FStaerke, Wunschohm, Ohmm, Laenge,
Wicklungszahl, Weg, Coils, vohm, vhohm, vpohm, Hflx,
urip_u, urip_r, urip_i, urip_p : Float;
vwraps, vhwraps, vpwraps : String;
Flachdraht : Boolean;
implementation
{$R *.lfm}
{ TMainForm }
function AWGTomm(AWG : Integer) : Float; // Umwandlung AWG (Gauge) in Millimeter
begin
AWGTomm := 0.127 * (92 ** ((36 - AWG)/39));
end;
function mmToAWG(mm : Float) : Integer; // Umwandlung Millimeter in AWG (Gauge)
var AW : Float;
begin
AW := -39 * logn(92, (mm / 0.127)) + 36;
mmToAWG := round(AW);
end;
function ohmpermeter(rho, d : Float) : Float; // Errechnen Ohm/m
begin
ohmpermeter := rho * (1 / (PI * (power(d,2) / 4)));
end;
function ohmpermeter_flat(rho, breite, staerke : Float) : Float; // Errechnen Ohm/m für Flachdraht
begin
ohmpermeter_flat := rho * (1 / (breite * staerke));
end;
procedure TMainForm.CalculateWraps; // Wicklungen berechnen
var
Radius, Umfang, Wohm, pvh, pvg : Float;
dz : Integer;
begin
Wohm := Wunschohm * Coils;
Laenge := Wohm * 1000 / Ohmm;
Radius := Durchmesser / 2;
Radius := Radius + Drahtstaerke;
Umfang := 2 * pi * Radius;
Wicklungszahl := (Laenge - Weg) / Umfang;
dz := trunc(Wicklungszahl);
vwraps := IntToStr(dz) + '.0'; // ganze Wicklung
vhwraps := IntToStr(dz) + '.5'; // + halbe Wicklung
vpwraps := IntToStr(dz+1) + '.0'; // ganze Wicklung + 1
vohm := (Umfang * dz + Weg * 2) * Ohmm / 1000;
pvh := (Umfang / 2) * Ohmm / 1000;
vhohm := vohm + pvh;
pvg := Umfang * Ohmm / 1000;
vpohm := vohm + pvh + pvg;
urip_r := (Umfang * Wicklungszahl + Weg * 2) * Ohmm / 1000;
urip_r := urip_r / Coils;
urip_i := urip_u / urip_r;
urip_p := urip_u * urip_i;
LaLaenge.Caption := FloatToStrF(Laenge,ffFixed,2,2);
LaWindungen.Caption := FloatToStrF(Wicklungszahl,ffFixed,2,2);
LaWindAb.Caption := vwraps;
LaWindHalb.Caption := vhwraps;
LaWindAuf.Caption := vpwraps;
LaOhmAb.Caption := FloatToStrF(vohm,ffFixed,2,2) + ' Ω';
LaOhmHalb.Caption := FloatToStrF(vhohm,ffFixed,2,2) + ' Ω';
LaOhmAuf.Caption := FloatToStrF(vpohm,ffFixed,2,2) + ' Ω';
EdStrom.Caption := FloatToStrF(urip_i,ffFixed,2,2);
EdLeistung.Caption := FloatToStrF(urip_p,ffFixed,2,2);
if urip_i >= 10.0 then
begin
Shape1.Pen.Color := clRed;
Shape1.Brush.Color := clRed
end
else
Shape1.Pen.Color := clGreen;
Hflx := (urip_p*1000)/(2*PI*(Drahtstaerke/2)*Laenge);
EdHflx.Caption := FloatToStrF(Hflx,ffFixed,4,0);
if Hflx < 775 then
begin
Shape1.Pen.Color := RGBToColor(234, 190, 14);
Shape1.Brush.Color := RGBToColor(234, 190, 14)
end;
if Hflx < 550 then
begin
Shape1.Pen.Color := clLime;
Shape1.Brush.Color := clLime
end;
if Hflx < 325 then
begin
Shape1.Pen.Color := clAqua;
Shape1.Brush.Color := clAqua
end;
if Hflx >= 775 then
begin
Shape1.Pen.Color := clRed;
Shape1.Brush.Color := clRed
end;
end;
procedure TMainForm.SpBSwitchClick(Sender: TObject); // Breite und Stärke tauschen
var ValTmp : Double;
begin
ValTmp := FlSpBreite.Value;
FlSpBreite.Value := FlSpStaerke.Value;
FlSpStaerke.Value := ValTmp;
CalculateWraps;
end;
procedure TMainForm.FormCreate(Sender: TObject);
begin
InitData; // Werte initialisieren
CBMaterial.Items := materialien;
Durchmesser := 3.0;
Wunschohm := 0.5;
if Flachdraht then
Ohmm := ohmpermeter_flat(spezwid[0], 0.25, 0.12)
else
Ohmm := ohmpermeter(spezwid[0], 0.4);
Drahtstaerke := 0.4;
Weg := 1.0;
Coils := 1.0;
urip_u := 3.6;
urip_i := 7.23;
urip_p := 26.76;
if urip_i >= 10.0 then
EdStrom.Font.Color := clRed
else
EdStrom.Font.Color := clGreen;
Flachdraht := false
end;
procedure TMainForm.MBeendenClick(Sender: TObject);
begin
application.terminate;
end;
procedure TMainForm.MenuItem1Click(Sender: TObject);
var
CoilSetup : TStringList;
filename : string;
begin
CoilSetup := TStringList.Create;
CoilSetup.Add(CBMaterial.Items[CBMaterial.ItemIndex]);
CoilSetup.Add(FloatToStrF(FlSpmm.Value,ffFixed,2,2));
CoilSetup.Add(FloatToStrF(FlSpWiderstand.Value,ffFixed,2,2));
CoilSetup.Add(FloatToStrF(FlSpDurchmesser.Value,ffFixed,2,2));
CoilSetup.Add(FloatToStrF(FlSpWeg.Value,ffFixed,2,2));
CoilSetup.Add(FloatToStrF(Coils,ffFixed,1,1));
CoilSetup.Add(FloatToStrF(FlSpBreite.Value,ffFixed,2,2));
CoilSetup.Add(FloatToStrF(FlSpStaerke.Value,ffFixed,2,2));
if Flachdraht then
CoilSetup.Add('f')
else
CoilSetup.Add('r');
if SaveDialog1.Execute then
begin
if FileExists(SaveDialog1.FileName) then
if MessageDlg('Datei überschreiben', 'Die Datei ' + ExtractFileName(SaveDialog1.FileName) + ' existiert bereits! Datei überschreiben?',
mtConfirmation, [mbYes, mbNo],0) = mrYes then
begin
filename := SaveDialog1.Filename;
CoilSetup.SaveToFile(filename);
EdFile.Text := ExtractFileName(SaveDialog1.FileName)
end;
if not FileExists(SaveDialog1.FileName) then
begin
filename := SaveDialog1.Filename;
CoilSetup.SaveToFile(filename);
EdFile.Text := ExtractFileName(SaveDialog1.FileName)
end;
end;
CoilSetup.Free;
end;
procedure TMainForm.MenuItem2Click(Sender: TObject);
var
CoilSetup : TStringList;
filename : string;
Mater, mil, Widerst, Durchm, We, Cls, Bre, Stae : string;
i : Integer;
begin
CoilSetup := TStringList.Create;
if OpenDialog1.Execute then
begin
filename := OpenDialog1.Filename;
CoilSetup.LoadFromFile(filename);
Mater := CoilSetup[0];
mil := CoilSetup[1];
Widerst := CoilSetup[2];
Durchm := CoilSetup[3];
We := CoilSetup[4];
Cls := CoilSetup[5];
if CoilSetup.Count < 7 then
begin
Bre := '0.25';
Stae := '0.12';
ECSwitch1.Checked := false;
Flachdraht := false;
Label3.Caption:='mm';
Label4.Caption:='AWG';
FlSpmm.Visible:=true;
FlSpAWG.Visible:=true;
FlSpBreite.Visible:=false;
FlSpStaerke.Visible:=false;
Drahtstaerke := FlSpmm.Value;
Ohmm := ohmpermeter(spezwid[CBMaterial.ItemIndex], Drahtstaerke);
ShowMessage('Alte Sicherungsdatei!');
end
else
begin
Bre := CoilSetup[6];
Stae := CoilSetup[7];
if CoilSetup[8] = 'f' then
begin
ECSwitch1.Checked := true;
Flachdraht := true;
Label3.Caption:='Breite';
Label4.Caption:='Stärke';
FlSpmm.Visible:=false;
FlSpAWG.Visible:=false;
FlSpBreite.Visible:=true;
FlSpStaerke.Visible:=true;
FBreite := FlSpBreite.Value;
FStaerke := FlSpStaerke.Value;
Ohmm := ohmpermeter_flat(spezwid[CBMaterial.ItemIndex], FBreite, FStaerke);
end
else
begin
ECSwitch1.Checked := false;
Flachdraht := false;
Label3.Caption:='mm';
Label4.Caption:='AWG';
FlSpmm.Visible:=true;
FlSpAWG.Visible:=true;
FlSpBreite.Visible:=false;
FlSpStaerke.Visible:=false;
Drahtstaerke := FlSpmm.Value;
Ohmm := ohmpermeter(spezwid[CBMaterial.ItemIndex], Drahtstaerke);
end;
end;
for i := 0 to materialien.Count -1 do
if Mater = materialien[i] then
begin
CBMaterial.Text := materialien[i];
CBMaterial.ItemIndex := i;
end;
FlSpmm.value := MyStrToFloat(mil);
FlSpAWG.Value := mmToAWG(FlSpmm.Value);
FlSpBreite.Value := MyStrToFloat(bre);
FlSpStaerke.Value := MyStrToFloat(stae);
Drahtstaerke := FlSpmm.Value;
FBreite := FlSpBreite.Value;
FStaerke := FlSpStaerke.Value;
if Flachdraht then
Ohmm := ohmpermeter_flat(spezwid[CBMaterial.ItemIndex], FBreite, FStaerke)
else
Ohmm := ohmpermeter(spezwid[CBMaterial.ItemIndex], Drahtstaerke);
FlSpWiderstand.Value := MyStrToFloat(Widerst);
Wunschohm := FlSpWiderstand.Value;
FlSpDurchmesser.Value := MyStrToFloat(Durchm);
Durchmesser := FlSpDurchmesser.Value;
FlSpWeg.Value := MyStrToFloat(We);
Weg := FlSpWeg.Value;
case trunc(MyStrToFloat(Cls)) of
1: RaBSingle.Checked := true;
2: RaBDual.Checked := true;
4: RaBQuad.Checked := true;
end;
if RaBSingle.Checked then Coils := 1.0;
if RaBDual.Checked then Coils := 2.0;
if RaBQuad.Checked then Coils := 4.0;
CalculateWraps;
EdFile.Text := ExtractFileName(OpenDialog1.FileName)
end;
CoilSetup.Free;
end;
procedure TMainForm.MenuItem3Click(Sender: TObject);
begin
FUeber.ShowModal;
end;
procedure TMainForm.MenuItem4Click(Sender: TObject);
begin
OpenURL('docs/help.html');
end;
procedure TMainForm.RaBDualChange(Sender: TObject);
begin
if RaBSingle.Checked then Coils := 1.0;
if RaBDual.Checked then Coils := 2.0;
if RaBQuad.Checked then Coils := 4.0;
CalculateWraps;
end;
procedure TMainForm.RaBQuadChange(Sender: TObject);
begin
if RaBSingle.Checked then Coils := 1.0;
if RaBDual.Checked then Coils := 2.0;
if RaBQuad.Checked then Coils := 4.0;
CalculateWraps;
end;
procedure TMainForm.RaBSingleChange(Sender: TObject);
begin
if RaBSingle.Checked then Coils := 1.0;
if RaBDual.Checked then Coils := 2.0;
if RaBQuad.Checked then Coils := 4.0;
CalculateWraps;
end;
procedure TMainForm.FormClose(Sender: TObject; var CloseAction: TCloseAction);
begin
application.terminate;
end;
procedure TMainForm.FlSpAWGChange(Sender: TObject);
begin
FlSpmm.Value := AWGTomm(trunc(FlSpAWG.Value));
Drahtstaerke := FlSpmm.Value;
Ohmm := ohmpermeter(spezwid[CBMaterial.ItemIndex], Drahtstaerke);
CalculateWraps;
end;
procedure TMainForm.FlSpBreiteChange(Sender: TObject);
begin
FBreite := FlSpBreite.Value;
FStaerke := FlSpStaerke.Value;
Ohmm := ohmpermeter_flat(spezwid[CBMaterial.ItemIndex], FBreite, FStaerke);
CalculateWraps;
end;
procedure TMainForm.FlSpDurchmesserChange(Sender: TObject);
begin
Durchmesser := FlSpDurchmesser.Value;
CalculateWraps;
end;
procedure TMainForm.FlSpmmChange(Sender: TObject);
begin
FlSpAWG.Value := mmToAWG(FlSpmm.Value);
Drahtstaerke := FlSpmm.Value;
Ohmm := ohmpermeter(spezwid[CBMaterial.ItemIndex], Drahtstaerke);
CalculateWraps;
end;
procedure TMainForm.FlSpSpannungChange(Sender: TObject);
begin
urip_u := FlSpSpannung.Value;
CalculateWraps;
EdStrom.Caption := FloatToStrF(urip_i,ffFixed,2,2);
EdLeistung.Caption := FloatToStrF(urip_p,ffFixed,2,2);
if urip_i >= 10.0 then
Label13.Font.Color := clRed
else
Label13.Font.Color := clGreen
end;
procedure TMainForm.FlSpStaerkeChange(Sender: TObject);
begin
FBreite := FlSpBreite.Value;
FStaerke := FlSpStaerke.Value;
Ohmm := ohmpermeter_flat(spezwid[CBMaterial.ItemIndex], FBreite, FStaerke);
CalculateWraps;
end;
procedure TMainForm.FlSpWegChange(Sender: TObject);
begin
Weg := FlSpWeg.Value;
CalculateWraps;
end;
procedure TMainForm.FlSpWiderstandChange(Sender: TObject);
begin
Wunschohm := FlSpWiderstand.Value;
CalculateWraps;
end;
procedure TMainForm.CBMaterialChange(Sender: TObject);
begin
FBreite := FlSpBreite.Value;
FStaerke := FlSpStaerke.Value;
if Flachdraht then
Ohmm := ohmpermeter_flat(spezwid[CBMaterial.ItemIndex], FBreite, FStaerke)
else
Ohmm := ohmpermeter(spezwid[CBMaterial.ItemIndex], Drahtstaerke);
CalculateWraps;
end;
procedure TMainForm.ECSwitch1Change(Sender: TObject);
begin
if ECSwitch1.Checked then
begin
Flachdraht := true;
Label3.Caption:='Breite';
Label4.Caption:='Stärke';
FlSpmm.Visible:=false;
FlSpAWG.Visible:=false;
FlSpBreite.Visible:=true;
FlSpStaerke.Visible:=true;
FBreite := FlSpBreite.Value;
FStaerke := FlSpStaerke.Value;
Ohmm := ohmpermeter_flat(spezwid[CBMaterial.ItemIndex], FBreite, FStaerke);
SpBSwitch.Visible := true;
end
else
begin
Flachdraht := false;
Label3.Caption:='mm';
Label4.Caption:='AWG';
FlSpmm.Visible:=true;
FlSpAWG.Visible:=true;
FlSpBreite.Visible:=false;
FlSpStaerke.Visible:=false;
Drahtstaerke := FlSpmm.Value;
Ohmm := ohmpermeter(spezwid[CBMaterial.ItemIndex], Drahtstaerke);
SpBSwitch.Visible := false;
end;
CalculateWraps;
end;
procedure TMainForm.BtMatEditClick(Sender: TObject);
begin
MatEditor.ShowModal;
CBMaterial.Items := materialien;
CBMaterial.ItemIndex := 0;
Durchmesser := 3.0;
Wunschohm := 0.5;
if Flachdraht then
Ohmm := ohmpermeter_flat(spezwid[0], 0.25, 0.12)
else
Ohmm := ohmpermeter(spezwid[0], 0.4);
Drahtstaerke := 0.4;
FBreite := 0.25;
FStaerke := 0.12;
Weg := 1.0;
Coils := 1.0;
urip_u := 3.6;
urip_i := 7.23;
urip_p := 26.76;
if urip_i >= 10.0 then
EdStrom.Font.Color := clRed
else
EdStrom.Font.Color := clGreen;
CalculateWraps;
end;
end.

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<!DOCTYPE html>
<html>
<head>
<meta content="text/html; charset=UTF-8" http-equiv="content-type">
<meta name="viewport" content="width=device-width initial-scale=1">
<title>Keulkulator - Akkuspannung</title>
<link href="http://fonts.googleapis.com/css?family=Open+Sans:400italic,700italic,700,400&amp;subset=latin,latin-ext"
rel="stylesheet" type="text/css">
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a:active, a:hover { outline: 0px; }
.in-text-selection, ::selection { background: rgb(181, 214, 252); text-shadow: none; }
#write { margin: 0px auto; height: auto; width: inherit; word-break: normal; word-wrap: break-word; position: relative; padding-bottom: 70px; white-space: pre-wrap; overflow-x: visible; }
.for-image #write { padding-left: 8px; padding-right: 8px; }
body.typora-export { padding-left: 30px; padding-right: 30px; }
@media screen and (max-width: 500px) {
body.typora-export { padding-left: 0px; padding-right: 0px; }
.CodeMirror-sizer { margin-left: 0px !important; }
.CodeMirror-gutters { display: none !important; }
}
.typora-export #write { margin: 0px auto; }
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#write li > table:first-child { margin-top: -20px; }
img { max-width: 100%; vertical-align: middle; }
input, button, select, textarea { color: inherit; font-style: inherit; font-variant: inherit; font-weight: inherit; font-stretch: inherit; font-size: inherit; line-height: inherit; font-family: inherit; }
input[type="checkbox"], input[type="radio"] { line-height: normal; padding: 0px; }
::before, ::after, * { box-sizing: border-box; }
#write p, #write h1, #write h2, #write h3, #write h4, #write h5, #write h6, #write div, #write pre { width: inherit; }
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h1 { font-size: 2rem; }
h2 { font-size: 1.8rem; }
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.hidden { display: none; }
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a { cursor: pointer; }
sup.md-footnote { padding: 2px 4px; background-color: rgba(238, 238, 238, 0.701961); color: rgb(85, 85, 85); border-radius: 4px; }
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tr { break-inside: avoid; break-after: auto; }
thead { display: table-header-group; }
table { border-collapse: collapse; border-spacing: 0px; width: 100%; overflow: auto; break-inside: auto; text-align: left; }
table.md-table td { min-width: 80px; }
.CodeMirror-gutters { border-right: 0px; background-color: inherit; }
.CodeMirror { text-align: left; }
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.CodeMirror pre { padding: 0px 4px; }
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div.hr:focus { cursor: none; }
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.md-fences { font-size: 0.9rem; display: block; break-inside: avoid; text-align: left; overflow: visible; white-space: pre; background: inherit; position: relative !important; }
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.md-fences.mock-cm { white-space: pre-wrap; }
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li div { padding-top: 0px; }
blockquote { margin: 1rem 0px; }
li p, li .mathjax-block { margin: 0.5rem 0px; }
li { margin: 0px; position: relative; }
blockquote > :last-child { margin-bottom: 0px; }
blockquote > :first-child { margin-top: 0px; }
.footnotes-area { color: rgb(136, 136, 136); margin-top: 0.714rem; padding-bottom: 0.143rem; }
@media print {
html, body { height: 100%; }
.typora-export * { -webkit-print-color-adjust: exact; }
h1, h2, h3, h4, h5, h6 { break-after: avoid-page; orphans: 2; }
p { orphans: 4; }
html.blink-to-pdf { font-size: 13px; }
.typora-export #write { padding-left: 1cm; padding-right: 1cm; }
.typora-export #write::after { height: 0px; }
@page { margin: 20mm 0mm; }
}
.footnote-line { margin-top: 0.714em; font-size: 0.7em; }
a img, img a { cursor: pointer; }
pre.md-meta-block { font-size: 0.8rem; min-height: 2.86rem; white-space: pre-wrap; background: rgb(204, 204, 204); display: block; overflow-x: hidden; }
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p + .mathjax-block { margin-top: -1.143rem; }
.mathjax-block:not(:empty)::after { display: none; }
[contenteditable="true"]:active, [contenteditable="true"]:focus { outline: none; box-shadow: none; }
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.md-toc-h6 .md-toc-inner { margin-left: 10em; }
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.md-toc-h6 .md-toc-inner { margin-left: 8em; }
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.md-inline-math .MathJax_SVG .noError { display: none !important; }
.mathjax-block .MathJax_SVG_Display { text-align: center; margin: 1em 0em; position: relative; text-indent: 0px; max-width: none; max-height: none; min-height: 0px; min-width: 100%; width: auto; display: block !important; }
.MathJax_SVG_Display, .md-inline-math .MathJax_SVG_Display { width: auto; margin: inherit; display: inline-block !important; }
.MathJax_SVG .MJX-monospace { font-family: monospace; }
.MathJax_SVG .MJX-sans-serif { font-family: sans-serif; }
.MathJax_SVG { display: inline; font-style: normal; font-weight: normal; line-height: normal; zoom: 90%; text-indent: 0px; text-align: left; text-transform: none; letter-spacing: normal; word-spacing: normal; word-wrap: normal; white-space: nowrap; float: none; direction: ltr; max-width: none; max-height: none; min-width: 0px; min-height: 0px; border: 0px; padding: 0px; margin: 0px; }
.MathJax_SVG * { transition: none; }
@font-face { font-family: "Open Sans"; font-style: normal; font-weight: normal; src: local("Open Sans Regular"), url("./github/400.woff") format("woff"); }
@font-face { font-family: "Open Sans"; font-style: italic; font-weight: normal; src: local("Open Sans Italic"), url("./github/400i.woff") format("woff"); }
@font-face { font-family: "Open Sans"; font-style: normal; font-weight: bold; src: local("Open Sans Bold"), url("./github/700.woff") format("woff"); }
@font-face { font-family: "Open Sans"; font-style: italic; font-weight: bold; src: local("Open Sans Bold Italic"), url("./github/700i.woff") format("woff"); }
html { font-size: 16px; }
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<div id="write" class="is-node"><h1><a name="header-n0" class="md-header-anchor "></a>Keulkulator</h1><h2><a
name="header-n8" class="md-header-anchor "></a>Akkuspannung</h2><p>Die Anzeige von Strom und Leistung erfolgt in Abhängigkeit einer im Eingabefeld (mit Spin-Buttons) ausgewählten Akkuspannung zum Betrieb der Wicklung. Bei hohen Spannungen bzw. niedrigem Wicklungswiderstand ist besonderes Augenmerk aif die Angabe der Stromstärke zu legen. Der Akku muss mit entsprechender Stromstärke (A) belastbar sein, ansonsten besteht die Gefahr schneller Alterung oder gar einer Beschädigung der Akkuzelle, die bis zur Ausgasung führen kann.</p><p><a
href="help.html">[TOC]</a></p></div>
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<div id="write" class="is-node"><h1><a name="header-n0" class="md-header-anchor "></a>Keulkulator</h1><h2><a
name="header-n8" class="md-header-anchor "></a>Auswahl Befestigungsweg</h2><p>Mit dem Eingabefeld (mit Spin-Buttons) für den Befestigungsweg kann der Abstand zwischen eigentlicher Wicklung und Befestigungspost des Wickeldecks im Bereich von 0.00 bis 10.0 mm in 0.5 mm Schritten ausgewählt werden.</p><p>Hinweis: Hier wird der "einfache Weg", also der Abstand zwischen einem Post und der Wicklung eingegeben.</p><p><a
href="help.html">[TOC]</a></p></div>
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<div id="write" class="is-node"><h1><a name="header-n0" class="md-header-anchor "></a>Keulkulator</h1><h2><a
name="header-n8" class="md-header-anchor "></a>Auswahl der Drahtsorte</h2><p>Die Drahtsorte kann im Auswahlfeld aus den definierten Daten ausgewählt werden. Bei einer Änderung in diesem Feld, erfolt eine sofortige Neuberechnung aller Werte.</p><p><a
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<div id="write" class="is-node"><h1><a name="header-n0" class="md-header-anchor "></a>Keulkulator</h1><h2><a
name="header-n8" class="md-header-anchor "></a>Auswahl der Drahtstärke</h2><p>Mit den Eingabefeldern (mit Spin-Buttons) kann die Drahtstärke in 0.01 mm Schritten bzw. in ganzzahligen AWG Schritten ausgewählt werden. Die Umrechnung zwischen Millimeter und AWG erfolgt automatisch.</p><p><a
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<div id="write" class="is-node"><h1><a name="header-n0" class="md-header-anchor "></a>Keulkulator</h1><h2><a
name="header-n8" class="md-header-anchor "></a>Auswahl des Innendurchmessers der Wicklung</h2><p>Mit dem Eingabefeld (mit Spin-Buttons) für den Innendurchmesser der Wicklung kann dieser Wert im Bereich von 0.5 bis 5.0 mm in 0.5 mm Schritten ausgewählt werden.</p><p><a
href="help.html">[TOC]</a></p></div>
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<div id="write" class="is-node"><h1><a name="header-n0" class="md-header-anchor "></a>Keulkulator</h1><h2><a
name="header-n16" class="md-header-anchor "></a>Material-Editor</h2><p>Mit dem Material-Editor (Button neben dem Material-Auswahlfeld) können Parameter der vorliegenden Daten angepasst werden und auch neue Materialien mit dem jeweiligen spezifischen Widerstand zur Liste hinzugefügt werden.</p><p>Die Parameter eines in der Liste ausgewählten Materials können geändert werden. Die Änderungen werden mit dem Button "Übernehmen" übernommen.</p><p>Der Button "Felder löschen" löscht die Materialbezeichnung und setzt den spezifischen Widerstand zurück (0.01 Ohm/m). Es können neue Materialien eingegeben werden. Mit dem Button "Eintrag zufügen" wird das neue Material zur Liste hinzugefügt.</p><p>Der Button "OK" übernimmt die durchgeführten Änderungen und es wird ins Hauptprogramm zurückgekehrt. Achtung: Wird das Programm beendet, verfallen die Änderungen, sofern nicht vor Verlassen des Programms im Material-Editor mit dem Button "Speichern" die aktuelle Materialliste in der Konfigurationsdatei gespeichert wurde. Der Button "Speichern" speichert die aktuelle Liste und springt ins Hauptprogramm zurück.</p><p>Ein Klick auf den Button "Verwerfen" setzt die Materialliste auf den Stand vor den Änderungen zurück, sofern die geänderte Materialliste noch nicht gespeichert wurde.</p><p><a
href="help.html">[TOC]</a></p></div>
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# Keulkulator
**Ein Programm zur Berechnung von Coils in Selbstwickelverdampfern.**
Es können Materialien (Stand 21.06.2017: Kanthal A1, Kanthal A, Kanthal D, NiChrome N80, Nickel 200, V4A, V2A und Titan), Drahtstärke (mm und AWG), gewünschter Widerstand der Wicklung, Innendurchmesser der Wicklung und Befestigungsweg (Abstand Wicklung zu den Anschlussposts, WICHTIG: nur einfachen Weg eingeben), sowie die Anzahl der Coils (single, dual, quad) ausgewählt werden. Die Berechnung erfolgt sofort bei jeder Änderung eines Parameters.
Als Ergebnis wird die genaue erforderliche Drahtlänge, sowie die genaue Wicklungsanzahl ausgegeben. Da nur mit halben (die Drahtenden zeigen in zwei verschiedene Richtungen) und ganzen (die Drahtenden zeigen in die selbe Richtung) gearbeitet werden kann, werden drei verschiedene gerundete Ergebnisvarianten mit dem jeweils erreichten Widerstand angezeigt.
Keulkulator bietet nun auch die Möglichkeit, Flachdraht-Wicklungen zu berechnen. Zum Umschalten zwischen Rund- und Flachdraht wurde ein Schalter unter dem Material-Auswahlfeld eingebaut.
Bei Flachdraht kann die Breite und die Stärke des Ribbons ausgewählt werden.
Es kann bei Interesse die vom Akkuträger bereitgestellte Akkuspannung gewählt werden. Es werden dann Stromstärke und Leistung berechnet.
Die Setups können geladen und gespeichert werden. In der neuen Version werden auch die Daten für Flachdraht-Wicklungen gespeichert. Alte Dateiversionen (ohne Flachdraht-Daten) können weiterhin geladen werden. Eine Abwärts-Kompatibilität ist jedoch nicht gegeben. Dateien, die mit der neuen Version gespeichert wurden können mit Programmversionen ≦ 1.0.0 nicht geladen werden.
Das Programm wurde mit [Lazarus](http://www.lazarus-ide.org/)/[Freepascal](https://www.freepascal.org/) erstellt. Die vorhandene ausführbare Datei liegt unter einer Linux-Version vor. Sie wurde unter [Manjaro Linux](https://manjaro.org/) 17.0.1 Gellivara x86_64 erstellt.
Eine Windows-Version steht ebenfalls zur Verfügung (Windows 64 u. Windows 32).
![screenshot](screenshot.png)
Mit dem Material-Editor (Button neben dem Material-Auswahlfeld) können Parameter der vorliegenden Daten angepasst werden und auch neue Materialien mit dem jeweiligen spezifischen Widerstand zur Liste hinzugefügt werden.
![Material-Editor](screenshot_mat-ed.png)
Die Parameter eines in der Liste ausgewählten Materials können geändert werden. Die Änderungen werden mit dem Button "Übernehmen" übernommen.
Der Button "Felder löschen" löscht die Materialbezeichnung und setzt den spezifischen Widerstand zurück (0.01 Ohm/m). Es können neue Materialien eingegeben werden. Mit dem Button "Eintrag zufügen" wird das neue Material zur Liste hinzugefügt.
Der Button "OK" übernimmt die durchgeführten Änderungen und es wird ins Hauptprogramm zurückgekehrt. **Achtung:** Wird das Programm beendet, verfallen die Änderungen, sofern nicht vor Verlassen des Programms im Material-Editor mit dem Button "Speichern" die aktuelle Materialliste in der Konfigurationsdatei gespeichert wurde. Der Button "Speichern" speichert die aktuelle Liste und springt ins Hauptprogramm zurück.
Ein Klick auf den Button "Verwerfen" setzt die Materialliste auf den Stand vor den Änderungen zurück, sofern die geänderte Materialliste noch nicht gespeichert wurde.
## Dokumentation
Die Dokumentation befindet sich im Unterverzeichnis docs. Die Hilfe entweder direkt aus dem Programm aufrufen oder die Datei help.html bzs. help.md öffnen.
## Installation
Die aktuelle Version liegt als direkt ausfühbare Datei vor. Das Programmverzeichnis einfach ins gewünschte Zielverzeichnis kopieren und Keulkulator ausführen.
Das Programm steht auch als gepacktes Programm-Release (Windows-Version .ZIP - Linux-Version .tar.bz2) zur Verfügung.
## Erstellen
Um die aktuelle Version zu erstellen, mittels
`git clone https://github.com/PepeCyB/keulkulator.git`
klonen oder als ZIP herunterladen und entpacken. Im Programmverzeichnis "keulkulator" befindet sich die Lazarus-Projektdatei "keulkulator.lpi".
Die Lazarus-IDE starten, das Projekt laden und mit Menü **Start****Kompilieren** (Strg-F9) oder im Terminal / Windows Eingabeaufforderung in das Programmverseichnis wechseln und mit
`lazbuild keulkulator.lpi` (Linux)
bzw.
`lazbuild.exe keulkulator.lpi` (Windows)
erstellen.
#### Abhängigkeiten
Zum Compilieren von Keulkulator ab Version 1.1.x wird das Komponenten-Paket [Eye-Candy Controls](http://wiki.freepascal.org/Eye-Candy_Controls) benötigt ([Download](https://packages.lazarus-ide.org/EyeCandyControls.zip)).
## Lizenz
Keulkulator ist lizensiert unter der [GNU General Public License Version 3](https://www.gnu.org/licenses/gpl.txt).
[GNU GPL 3](gpl.txt)
Copyright 2017 PepeCyB

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<div id="write" class="is-node"><h1><a name="header-n0" class="md-header-anchor "></a>Keulkulator</h1><h2><a
name="header-n8" class="md-header-anchor "></a>Auswahl des Zielwiderstands</h2><p>Mit dem Eingabefeld (mit Spin-Buttons) für den gewünschten Widerstand kann der Zielwiderstand der Wicklung in 0.02 mm Schrittenausgewählt werden.</p><p><a
href="help.html">[TOC]</a></p></div>
</body>
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## Erstellen
Um die aktuelle Version zu erstellen, mittels
`git clone https://framagit.org/PepeCyB/keulkulator.git`
klonen oder als ZIP herunterladen und entpacken. Im Programmverzeichnis "keulkulator" befindet sich die Lazarus-Projektdatei "keulkulator.lpi". Das Programm dann mit Lazarus wie gewohnt erstellen.
Die Lazarus-IDE starten, das Projekt laden und mit Menü **Start****Kompilieren** (Strg-F9) oder im Terminal in das Programmverseichnis wechseln und mit
`lazbuild keulkulator.lpi`
erstellen.
#### Abhängigkeiten
Zum Compilieren von Keulkulator ab Version 1.1.x wird das Komponenten-Paket [Eye-Candy Controls](http://wiki.freepascal.org/Eye-Candy_Controls) benötigt ([Download](https://packages.lazarus-ide.org/EyeCandyControls.zip)).

View file

@ -0,0 +1,17 @@
## Erstellen
Um die aktuelle Version zu erstellen, mittels
`git clone https://framagit.org/PepeCyB/keulkulator.git`
klonen oder als ZIP herunterladen und entpacken. Im Programmverzeichnis "keulkulator" befindet sich die Lazarus-Projektdatei "keulkulator.lpi".
Die Lazarus-IDE starten, das Projekt laden und mit Menü **Start****Kompilieren** (Strg-F9) oder in der Windows Eingabeaufforderung in das Programmverseichnis wechseln und mit
`lazbuild.exe keulkulator.lpi`
erstellen.
#### Abhängigkeiten
Zum Compilieren von Keulkulator ab Version 1.1.x wird das Komponenten-Paket [Eye-Candy Controls](http://wiki.freepascal.org/Eye-Candy_Controls) benötigt ([Download](https://packages.lazarus-ide.org/EyeCandyControls.zip)).

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<!DOCTYPE html>
<html>
<head>
<meta content="text/html; charset=UTF-8" http-equiv="content-type">
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<div id="write" class="is-node"><h1><a name="header-n0" class="md-header-anchor "></a>Keulkulator</h1><h2><a
name="header-n8" class="md-header-anchor "></a>Singlecoil, Dualcoil, Quadcoil</h2><p>In diesem Auswahlfeld wird die Anzahl der Wicklungen auf dem Wickeldeck ausgewählt (eine, zwei oder vier Wicklungen). In der Ausgabe wird dann der erforderliche Wert für jeweils eine der Wicklungen ausgegeben.</p><p><a
href="help.html">[TOC]</a></p></div>
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<div id="write" class="is-node"><h1><a name="header-n0" class="md-header-anchor "></a>Keulkulator</h1><p></p><div
class="md-toc" mdtype="toc"><p class="md-toc-content"><span class="md-toc-item md-toc-h1"
data-ref="n0"><a class="md-toc-inner" href="#header-n0">Keulkulator</a></span><span
class="md-toc-item md-toc-h2" data-ref="n20"><a class="md-toc-inner" href="#header-n20">Über Keulkulator</a></span><span
class="md-toc-item md-toc-h2" data-ref="n32"><a class="md-toc-inner" href="#header-n32">Features</a></span><span
class="md-toc-item md-toc-h2" data-ref="n112"><a class="md-toc-inner" href="#header-n112">Auswahl der Drahtsorte</a></span><span
class="md-toc-item md-toc-h2" data-ref="n130"><a class="md-toc-inner" href="#header-n130">Auswahl der Drahtstärke</a></span><span
class="md-toc-item md-toc-h2" data-ref="n148"><a class="md-toc-inner" href="#header-n148">Auswahl des Zielwiderstands</a></span><span
class="md-toc-item md-toc-h2" data-ref="n168"><a class="md-toc-inner" href="#header-n168">Auswahl des Innendurchmessers der Wicklung</a></span><span
class="md-toc-item md-toc-h2" data-ref="n186"><a class="md-toc-inner" href="#header-n186">Auswahl Befestigungsweg</a></span><span
class="md-toc-item md-toc-h2" data-ref="n210"><a class="md-toc-inner" href="#header-n210">Singlecoil, Dualcoil, Quadcoil</a></span><span
class="md-toc-item md-toc-h2" data-ref="n224"><a class="md-toc-inner" href="#header-n224">Akkuspannung</a></span><span
class="md-toc-item md-toc-h2" data-ref="n242"><a class="md-toc-inner" href="#header-n242">Setup speichern…</a></span><span
class="md-toc-item md-toc-h2" data-ref="n260"><a class="md-toc-inner" href="#header-n260">Setup laden…</a></span><span
class="md-toc-item md-toc-h2" data-ref="n283"><a class="md-toc-inner" href="#header-n283">Material-Editor</a></span><span
class="md-toc-item md-toc-h2" data-ref="n313"><a class="md-toc-inner" href="#header-n313">FAQ</a></span><span
class="md-toc-item md-toc-h2" data-ref="n384"><a class="md-toc-inner" href="#header-n384">Installation</a></span><span
class="md-toc-item md-toc-h2" data-ref="n490"><a class="md-toc-inner" href="#header-n490">Erstellen</a></span><span
class="md-toc-item md-toc-h2" data-ref="n502"><a class="md-toc-inner" href="#header-n502">Sicherheit</a></span><span
class="md-toc-item md-toc-h2" data-ref="n422"><a class="md-toc-inner" href="#header-n422">Haftungsausschluss</a></span><span
class="md-toc-item md-toc-h2" data-ref="n449"><a class="md-toc-inner" href="#header-n449">Copyright und Lizenz</a></span></p></div><p></p><h2><a
name="header-n20" class="md-header-anchor "></a>Über Keulkulator</h2><p>Keulkulator ist ein Programm zur Berechnung von Wicklungen für Selbstwickelverdampfer. Es gibt dafür zwar schon einige sehr gute Online-Tools und Apps für Smartphones, aber noch kein Programm zur lokalen Installation auf dem Computer. Um von einer Internet-Verbindung und dem Angebot eines Webtools unabhängig zu sein,, ist es mit dem Keulkulator möglich, ein Programm mit dieser Finktionalität auf dem eigenen Rechner vorzuhalten.</p><p><a
href="#header-n0">[TOP]</a></p><p><br></p><p></p><h2><a name="header-n32" class="md-header-anchor "></a>Features</h2><ul><li>Auswahl verschiedener Drahtmaterialien</li><li>Freie Auswahl der Drahtstärke in mm oder AWG</li><li>Auswahl des zu erzielenden Wicklungswiderstands</li><li>Auswahl des Innendurchmessers der Wicklung</li><li>Auswahl des "Befestigungswegs" zwischen Wicklung uns Anschluss-Post</li><li>Wahlweise singlecoil, dualcoil oder quadcoil Wicklung</li><li>Anzeige der erforderlichen Drahtlänge</li><li>Anzeige der exakten Wicklungszahl</li><li>Anzeige verschiedenen ganz- bzw. halbzahliger Wicklungen in Annäherung zum gewünschten Widerstand</li><li>Anzeige von Stromstärke, Leistung und Heat flux bei einer einstellbaren Versorgungsspannung</li><li>Materialeditor zur Erfassung eigener Drahtsorten und spezifischer Widerstände</li><li>Speichern und Laden eine Setups</li></ul><p><a
href="#header-n0">[TOP]</a></p><p><br></p><p></p><h2><a name="header-n112" class="md-header-anchor "></a>Auswahl der Drahtsorte</h2><p>Die Drahtsorte kann im Auswahlfeld aus den definierten Daten ausgewählt werden. Bei einer Änderung in diesem Feld, erfolt eine sofortige Neuberechnung aller Werte.</p><p><a
href="#header-n0">[TOP]</a></p><p><br></p><p></p><h2><a name="header-n130" class="md-header-anchor "></a>Auswahl der Drahtstärke</h2><p>Mit den Eingabefeldern (mit Spin-Buttons) kann die Drahtstärke in 0.01 mm Schritten bzw. in ganzzahligen AWG Schritten ausgewählt werden. Die Umrechnung zwischen Millimeter und AWG erfolgt automatisch. Wenn mit dem Schiebeschalter als Drahtmaterial "Flachdraht" ausgewählt wurde, können Breite und Stärke in 0,01 mm Schritten ausgewählt werden.</p><p><a
href="#header-n0">[TOP]</a></p><p><br></p><p></p><h2><a name="header-n148" class="md-header-anchor "></a>Auswahl des Zielwiderstands</h2><p>Mit dem Eingabefeld (mit Spin-Buttons) für den gewünschten Widerstand kann der Zielwiderstand der Wicklung in 0.02 mm Schrittenausgewählt werden. </p><p><a
href="#header-n0">[TOP]</a></p><p><br></p><p></p><h2><a name="header-n168" class="md-header-anchor "></a>Auswahl des Innendurchmessers der Wicklung</h2><p>Mit dem Eingabefeld (mit Spin-Buttons) für den Innendurchmesser der Wicklung kann dieser Wert im Bereich von 0.5 bis 5.0 mm in 0.5 mm Schritten ausgewählt werden.</p><p><a
href="#header-n0">[TOP]</a></p><p><br></p><p></p><h2><a name="header-n186" class="md-header-anchor "></a>Auswahl Befestigungsweg</h2><p>Mit dem Eingabefeld (mit Spin-Buttons) für den Befestigungsweg kann der Abstand zwischen eigentlicher Wicklung und Befestigungspost des Wickeldecks im Bereich von 0.00 bis 10.0 mm in 0.5 mm Schritten ausgewählt werden.</p><p>Hinweis: Hier wird der "einfache Weg", also der Abstand zwischen einem Post und der Wicklung eingegeben.</p><p><a
href="#header-n0">[TOP]</a></p><p><br></p><p></p><h2><a name="header-n210" class="md-header-anchor "></a>Singlecoil, Dualcoil, Quadcoil</h2><p>In diesem Auswahlfeld wird die Anzahl der Wicklungen auf dem Wickeldeck ausgewählt (eine, zwei oder vier Wicklungen). In der Ausgabe wird dann der erforderliche Wert für jeweils eine der Wicklungen ausgegeben.</p><p><a
href="#header-n0">[TOP]</a></p><p><br></p><p></p><h2><a name="header-n224" class="md-header-anchor "></a>Akkuspannung</h2><p>Die Anzeige von Strom und Leistung erfolgt in Abhängigkeit einer im Eingabefeld (mit Spin-Buttons) ausgewählten Akkuspannung zum Betrieb der Wicklung. Bei hohen Spannungen bzw. niedrigem Wicklungswiderstand ist besonderes Augenmerk aif die Angabe der Stromstärke zu legen. Der Akku muss mit entsprechender Stromstärke (A) belastbar sein, ansonsten besteht die Gefahr schneller Alterung oder gar einer Beschädigung der Akkuzelle, die bis zur Ausgasung führen kann.</p><p><a
href="#header-n0">[TOP]</a></p><p><br></p><p></p><h2><a name="header-n242" class="md-header-anchor "></a>Setup speichern…</h2><p>Das "Setup" einer Wicklung, also die Auswahl von Material, Drahtstärke, Zielwiderstand, Wicklungsdurchmesser, Befestigungsweg und Coil-Anzahl kann gespeichert werden. Nach dem Speichern wird der Name des Steups (Dateiname) im Feld "Setup" angezeigt.</p><p><a
href="#header-n0">[TOP]</a></p><p><br></p><p></p><h2><a name="header-n260" class="md-header-anchor "></a>Setup laden…</h2><p>Ein gespeichertes "Setup" einer Wicklung, also die Auswahl von Material, Drahtstärke, Zielwiderstand, Wicklungsdurchmesser, Befestigungsweg und Coil-Anzahl kann geladen werden. Nach dem Laden wird der Name des Steups (Dateiname) im Feld "Setup" angezeigt.</p><p><a
href="#header-n0">[TOP]</a></p><p><br></p><p></p><h2><a name="header-n283" class="md-header-anchor "></a>Material-Editor</h2><p>Mit dem Material-Editor (Button neben dem Material-Auswahlfeld) können Parameter der vorliegenden Daten angepasst werden und auch neue Materialien mit dem jeweiligen spezifischen Widerstand zur Liste hinzugefügt werden.</p><p>Die Parameter eines in der Liste ausgewählten Materials können geändert werden. Die Änderungen werden mit dem Button "Übernehmen" übernommen.</p><p>Der Button "Felder löschen" löscht die Materialbezeichnung und setzt den spezifischen Widerstand zurück (0.01 Ohm/m). Es können neue Materialien eingegeben werden. Mit dem Button "Eintrag zufügen" wird das neue Material zur Liste hinzugefügt.</p><p>Der Button "OK" übernimmt die durchgeführten Änderungen und es wird ins Hauptprogramm zurückgekehrt. Achtung: Wird das Programm beendet, verfallen die Änderungen, sofern nicht vor Verlassen des Programms im Material-Editor mit dem Button "Speichern" die aktuelle Materialliste in der Konfigurationsdatei gespeichert wurde. Der Button "Speichern" speichert die aktuelle Liste und springt ins Hauptprogramm zurück.</p><p>Ein Klick auf den Button "Verwerfen" setzt die Materialliste auf den Stand vor den Änderungen zurück, sofern die geänderte Materialliste noch nicht gespeichert wurde.</p><p><a
href="#header-n0">[TOP]</a></p><p><br></p><p></p><h2><a name="header-n313" class="md-header-anchor "></a>FAQ</h2><ol><li><p><strong>Warum steht "meine" Drahtsorte nicht zur Auswahl?</strong></p><p>Es wurden die gebräuchlichsten Materialien als Vorauswahl erfasst. Mit dem Material-Editor ist es ganz einfach möglich, eigene Einträge für weitere Materialien vorzunehmen und dauerhaft zu speichern.</p></li><li><p><strong>Wenn ich eine Berechnung mit einem anderen Dampfspulenrechner durchführe, erhalte ich abweichende Werte. Wie kommt das?</strong></p><p>Die Genauigkeit der Berechnungen hängt von der internen genauigkeit für Rechenoperationen und Variablen ab. Keulkulator rechnet intern mit dem Datentyp Float, der in Abhängigkeit von der verwendeten Hardware mit 8 bzw. 10 Byte umfasst. Geringe Abweichungen sind damit durchaus möglich, spielen in der Praxis aber keine Rolle. Einige Wickelrechner arbeiten auch mit gerundeten oder abweichenden Werten für den spezifischen Widerstand bzw. Widerstand pro Meter, was Abweichungen ebenfalls erklärt. Die Werte des Keulkulator sind aber auf jeden Fall sehr genau und praxistauglich.</p></li><li><p><strong>Wieso werden drei verschiedene Ergebnisse angezeigt? Welches ist für mich das Richtige?</strong></p><p>Aus dem eingegebenen Wunschwiderstand wird die exakte Drahtlänge berechnet. Da der Innendurchmesser der Wicklung jedoch fix ist, lässt sich die gesamte Drahtlänge nur in Ausnahmefällen komplett um die Wickelhilfe wickeln. Dir für ganze bzw. halbe Wicklungen benötigte Drahtlänge weicht in der Regel von der genauen Drahtlänge ab. Aus diesem Grund werden drei Varianten (auch in Abhängigkeit von der Befestigungsmöglichkeit auf dem Wickeldeck) angezeigt, deren Widerstand möglichst nahe bei dem gewünschten Widerstand liegt. Nun muss jeder selbst entscheiden, für welche Variante er sich entscheidet. Hinter den Ergebnissen wird auch der mit der jeweiligen Wicklung erreichte Widerstand angegeben.</p></li><li><p><strong>Wozu dient die Anzeige von Stromstärke, Leistung und Heat flux?</strong></p><p>Insbesondere für das ungeregelte Dampfen, aber auch für das Dampfen mit variabler Spannung oder variabler Leistung, ist die Angabe der Belastung bzw. der Leistung interessant. Hier kann man dann auch ablesen, ob die verwendete Akkuzelle oder der verwendete Akkuträger in der Lage ist, die Wicklung zu befeuern. Mit dem Heat flux kann man die Leistung der Wicklung n Abhängigkeit der Materialmenge des Wickeldrahtes abschätzen. Hiervon hängen Temeoratur des Dampfes und Dampfleistung ab.</p></li></ol><p><a
href="#header-n0">[TOP]</a></p><p><br></p><p></p><h2><a name="header-n384" class="md-header-anchor "></a>Installation</h2><p>Keulkulator liegt als direkt ausfühbare Datei vor und muss nicht extra installiert werden. Das Programmverzeichnis einfach in das gewünschte Zielverzeichnis kopieren und Keulkulator direkt ausführen.</p><p>Das Programm steht auch als gepacktes Programm-Release (Windows-Version .ZIP - Linux-Version .tar.bz2) zur Verfügung.</p><p><a
href="#header-n0">[TOP]</a></p><p><br></p><p></p><h2><a name="header-n490" class="md-header-anchor "></a>Erstellen</h2><p>Um die aktuelle Version zu erstellen, mittels</p><p><code>git clone https://framagit.org/PepeCyB/keulkulator.git</code></p><p>klonen oder als ZIP herunterladen und entpacken. Im Programmverzeichnis "keulkulator" befindet sich die Lazarus-Projektdatei "keulkulator.lpi". Das Programm dann mit Lazarus wie gewohnt erstellen.</p><p><a
href="#header-n0">[TOP]</a></p><p><br></p><p></p><h2><a name="header-n502" class="md-header-anchor "></a>Sicherheit</h2><p>Die Benutzung von Litihum-Ionen-Akkus birgt gewisse Risiken. Bitte informieren Sie sich über Akkusicherheit und die maximale Belastbarkeit der Akkuzellen, bevor Sie die errechnete Wicklung in Betrieb nehmen.</p><p>Nachdem Sie eine Spule gewickelt haben, messen Sie immer den Widerstand, bevor Sie die Wicklung betreiben. Damit können sie Fehler im Setup, aber auch Fehlerquellen wie Kurzschlüsse etc. feststellen und Schäden an der Hardware bzw. Unfälle vermeiden.</p><p>Es ist sinnvoll, sich, bevor man mit dem Selbstwickeln beginnt, mit dem Ohm'schen Gesetz zu befassen und über die physikalischen Leistungsgrenzen von Akkuzellen im Allgemeinen und die Belastbarkeit der eigenen Akkus zu informieren.</p><p><a
href="#header-n0">[TOP]</a></p><p><br></p><p></p><h2><a name="header-n422" class="md-header-anchor "></a>Haftungsausschluss</h2><p>Keulkulator wurde von mir sehr gewissenhaft entwickelt und ich war bemüht, möglichst sämtliche Fehlerquellen auszuschließen. Trotzdem kann ich nicht garantieren, dass das Programm frei von Mängeln ist. Keulkulator wird „wie er ist“ angeboten, die Benutzung erfolgt auf eigene Gefahr. Ich gebe keine Garantie in Bezug auf Genauigkeit, Korrektheit der Berechnungen oder Eignung für einen bestimmten Zweck, weder ausdrücklich, noch implizit.</p><p>Unter keinen Umständen hafte ich für direkte, indirekte, spezielle, zufällige oder sonstige Folgeschäden, die aus der Nutzung, dem Missbrauch oder Unachtsamkeit entstehen.</p><p>Die Benutzung des Keulkulator erfolgt auf persönliche Verantwortung. Überprüfen Sie alle Ergebnisse, wenn nötig und verwenden Sie das Programm auf eigene Gefahr.</p><p><a
href="#header-n0">[TOP]</a></p><p><br></p><p></p><h2><a name="header-n449" class="md-header-anchor "></a>Copyright und Lizenz</h2><p>Copyright © 2017: Daniel "PepeCyB" Hagemeister-Biernath</p><p>Keulkulator ist lizensiert unter der <a
href="https://www.gnu.org/licenses/gpl.txt">GNU General Public License Version 3</a>.</p><p><a
href="gpl.txt">GNU GPL 3</a></p><p><a href="#header-n0">[TOP]</a><a href="gpl.txt"></a></p><p></p></div>
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# Keulkulator
[TOC]
## Über Keulkulator
Keulkulator ist ein Programm zur Berechnung von Wicklungen für Selbstwickelverdampfer. Es gibt dafür zwar schon einige sehr gute Online-Tools und Apps für Smartphones, aber noch kein Programm zur lokalen Installation auf dem Computer. Um von einer Internet-Verbindung und dem Angebot eines Webtools unabhängig zu sein,, ist es mit dem Keulkulator möglich, ein Programm mit dieser Finktionalität auf dem eigenen Rechner vorzuhalten.
## Features
- Auswahl verschiedener Drahtmaterialien
- Freie Auswahl der Drahtstärke in mm oder AWG
- Auswahl des zu erzielenden Wicklungswiderstands
- Auswahl des Innendurchmessers der Wicklung
- Auswahl des "Befestigungswegs" zwischen Wicklung uns Anschluss-Post
- Wahlweise singlecoil, dualcoil oder quadcoil Wicklung
- Anzeige der erforderlichen Drahtlänge
- Anzeige der exakten Wicklungszahl
- Anzeige verschiedenen ganz- bzw. halbzahliger Wicklungen in Annäherung zum gewünschten Widerstand
- Anzeige von Stromstärke, Leistung und Heat flux bei einer einstellbaren Versorgungsspannung
- Materialeditor zur Erfassung eigener Drahtsorten und spezifischer Widerstände
- Speichern und Laden eine Setups
## Auswahl der Drahtsorte
Die Drahtsorte kann im Auswahlfeld aus den definierten Daten ausgewählt werden. Bei einer Änderung in diesem Feld, erfolt eine sofortige Neuberechnung aller Werte.
## Auswahl der Drahtstärke
Mit den Eingabefeldern (mit Spin-Buttons) kann die Drahtstärke in 0.01 mm Schritten bzw. in ganzzahligen AWG Schritten ausgewählt werden. Die Umrechnung zwischen Millimeter und AWG erfolgt automatisch. Wenn mit dem Schiebeschalter als Drahtmaterial "Flachdraht" ausgewählt wurde, können Breite und Stärke in 0,01 mm Schritten ausgewählt werden.
## Auswahl des Zielwiderstands
Mit dem Eingabefeld (mit Spin-Buttons) für den gewünschten Widerstand kann der Zielwiderstand der Wicklung in 0.02 mm Schrittenausgewählt werden.
## Auswahl des Innendurchmessers der Wicklung
Mit dem Eingabefeld (mit Spin-Buttons) für den Innendurchmesser der Wicklung kann dieser Wert im Bereich von 0.5 bis 5.0 mm in 0.5 mm Schritten ausgewählt werden.
## Auswahl Befestigungsweg
Mit dem Eingabefeld (mit Spin-Buttons) für den Befestigungsweg kann der Abstand zwischen eigentlicher Wicklung und Befestigungspost des Wickeldecks im Bereich von 0.00 bis 10.0 mm in 0.5 mm Schritten ausgewählt werden.
Hinweis: Hier wird der "einfache Weg", also der Abstand zwischen einem Post und der Wicklung eingegeben.
## Singlecoil, Dualcoil, Quadcoil
In diesem Auswahlfeld wird die Anzahl der Wicklungen auf dem Wickeldeck ausgewählt (eine, zwei oder vier Wicklungen). In der Ausgabe wird dann der erforderliche Wert für jeweils eine der Wicklungen ausgegeben.
## Akkuspannung
Die Anzeige von Strom und Leistung erfolgt in Abhängigkeit einer im Eingabefeld (mit Spin-Buttons) ausgewählten Akkuspannung zum Betrieb der Wicklung. Bei hohen Spannungen bzw. niedrigem Wicklungswiderstand ist besonderes Augenmerk aif die Angabe der Stromstärke zu legen. Der Akku muss mit entsprechender Stromstärke (A) belastbar sein, ansonsten besteht die Gefahr schneller Alterung oder gar einer Beschädigung der Akkuzelle, die bis zur Ausgasung führen kann.
## Setup speichern…
Das "Setup" einer Wicklung, also die Auswahl von Material, Drahtstärke, Zielwiderstand, Wicklungsdurchmesser, Befestigungsweg und Coil-Anzahl kann gespeichert werden. Nach dem Speichern wird der Name des Steups (Dateiname) im Feld "Setup" angezeigt.
## Setup laden…
Ein gespeichertes "Setup" einer Wicklung, also die Auswahl von Material, Drahtstärke, Zielwiderstand, Wicklungsdurchmesser, Befestigungsweg und Coil-Anzahl kann geladen werden. Nach dem Laden wird der Name des Steups (Dateiname) im Feld "Setup" angezeigt.
## Material-Editor
Mit dem Material-Editor (Button neben dem Material-Auswahlfeld) können Parameter der vorliegenden Daten angepasst werden und auch neue Materialien mit dem jeweiligen spezifischen Widerstand zur Liste hinzugefügt werden.
Die Parameter eines in der Liste ausgewählten Materials können geändert werden. Die Änderungen werden mit dem Button "Übernehmen" übernommen.
Der Button "Felder löschen" löscht die Materialbezeichnung und setzt den spezifischen Widerstand zurück (0.01 Ohm/m). Es können neue Materialien eingegeben werden. Mit dem Button "Eintrag zufügen" wird das neue Material zur Liste hinzugefügt.
Der Button "OK" übernimmt die durchgeführten Änderungen und es wird ins Hauptprogramm zurückgekehrt. Achtung: Wird das Programm beendet, verfallen die Änderungen, sofern nicht vor Verlassen des Programms im Material-Editor mit dem Button "Speichern" die aktuelle Materialliste in der Konfigurationsdatei gespeichert wurde. Der Button "Speichern" speichert die aktuelle Liste und springt ins Hauptprogramm zurück.
Ein Klick auf den Button "Verwerfen" setzt die Materialliste auf den Stand vor den Änderungen zurück, sofern die geänderte Materialliste noch nicht gespeichert wurde.
## FAQ
1. **Warum steht "meine" Drahtsorte nicht zur Auswahl?**
Es wurden die gebräuchlichsten Materialien als Vorauswahl erfasst. Mit dem Material-Editor ist es ganz einfach möglich, eigene Einträge für weitere Materialien vorzunehmen und dauerhaft zu speichern.
2. **Wenn ich eine Berechnung mit einem anderen Dampfspulenrechner durchführe, erhalte ich abweichende Werte. Wie kommt das?**
Die Genauigkeit der Berechnungen hängt von der internen genauigkeit für Rechenoperationen und Variablen ab. Keulkulator rechnet intern mit dem Datentyp Float, der in Abhängigkeit von der verwendeten Hardware mit 8 bzw. 10 Byte umfasst. Geringe Abweichungen sind damit durchaus möglich, spielen in der Praxis aber keine Rolle. Einige Wickelrechner arbeiten auch mit gerundeten oder abweichenden Werten für den spezifischen Widerstand bzw. Widerstand pro Meter, was Abweichungen ebenfalls erklärt. Die Werte des Keulkulator sind aber auf jeden Fall sehr genau und praxistauglich.
3. **Wieso werden drei verschiedene Ergebnisse angezeigt? Welches ist für mich das Richtige?**
Aus dem eingegebenen Wunschwiderstand wird die exakte Drahtlänge berechnet. Da der Innendurchmesser der Wicklung jedoch fix ist, lässt sich die gesamte Drahtlänge nur in Ausnahmefällen komplett um die Wickelhilfe wickeln. Dir für ganze bzw. halbe Wicklungen benötigte Drahtlänge weicht in der Regel von der genauen Drahtlänge ab. Aus diesem Grund werden drei Varianten (auch in Abhängigkeit von der Befestigungsmöglichkeit auf dem Wickeldeck) angezeigt, deren Widerstand möglichst nahe bei dem gewünschten Widerstand liegt. Nun muss jeder selbst entscheiden, für welche Variante er sich entscheidet. Hinter den Ergebnissen wird auch der mit der jeweiligen Wicklung erreichte Widerstand angegeben.
4. **Wozu dient die Anzeige von Stromstärke, Leistung und Heat flux?**
Insbesondere für das ungeregelte Dampfen, aber auch für das Dampfen mit variabler Spannung oder variabler Leistung, ist die Angabe der Belastung bzw. der Leistung interessant. Hier kann man dann auch ablesen, ob die verwendete Akkuzelle oder der verwendete Akkuträger in der Lage ist, die Wicklung zu befeuern. Mit dem Heat flux kann man die Leistung der Wicklung n Abhängigkeit der Materialmenge des Wickeldrahtes abschätzen. Hiervon hängen Temeoratur des Dampfes und Dampfleistung ab.
## Installation
Keulkulator liegt als direkt ausfühbare Datei vor und muss nicht extra installiert werden. Das Programmverzeichnis einfach in das gewünschte Zielverzeichnis kopieren und Keulkulator direkt ausführen.
Das Programm steht auch als gepacktes Programm-Release (Windows-Version .ZIP - Linux-Version .tar.bz2) zur Verfügung.
## Erstellen
Um die aktuelle Version zu erstellen, mittels
`git clone https://github.com/PepeCyB/keulkulator.git`
klonen oder als ZIP herunterladen und entpacken. Im Programmverzeichnis "keulkulator" befindet sich die Lazarus-Projektdatei "keulkulator.lpi". Das Programm dann mit Lazarus wie gewohnt erstellen.
## Sicherheit
Die Benutzung von Litihum-Ionen-Akkus birgt gewisse Risiken. Bitte informieren Sie sich über Akkusicherheit und die maximale Belastbarkeit der Akkuzellen, bevor Sie die errechnete Wicklung in Betrieb nehmen.
Nachdem Sie eine Spule gewickelt haben, messen Sie immer den Widerstand, bevor Sie die Wicklung betreiben. Damit können sie Fehler im Setup, aber auch Fehlerquellen wie Kurzschlüsse etc. feststellen und Schäden an der Hardware bzw. Unfälle vermeiden.
Es ist sinnvoll, sich, bevor man mit dem Selbstwickeln beginnt, mit dem Ohm'schen Gesetz zu befassen und über die physikalischen Leistungsgrenzen von Akkuzellen im Allgemeinen und die Belastbarkeit der eigenen Akkus zu informieren.
## Haftungsausschluss
Keulkulator wurde von mir sehr gewissenhaft entwickelt und ich war bemüht, möglichst sämtliche Fehlerquellen auszuschließen. Trotzdem kann ich nicht garantieren, dass das Programm frei von Mängeln ist. Keulkulator wird „wie er ist“ angeboten, die Benutzung erfolgt auf eigene Gefahr. Ich gebe keine Garantie in Bezug auf Genauigkeit, Korrektheit der Berechnungen oder Eignung für einen bestimmten Zweck, weder ausdrücklich, noch implizit.
Unter keinen Umständen hafte ich für direkte, indirekte, spezielle, zufällige oder sonstige Folgeschäden, die aus der Nutzung, dem Missbrauch oder Unachtsamkeit entstehen.
Die Benutzung des Keulkulator erfolgt auf persönliche Verantwortung. Überprüfen Sie alle Ergebnisse, wenn nötig und verwenden Sie das Programm auf eigene Gefahr.
## Copyright und Lizenz
Copyright © 2017: Daniel "PepeCyB" Hagemeister-Biernath
Keulkulator ist lizensiert unter der [GNU General Public License Version 3](https://www.gnu.org/licenses/gpl.txt).
[GNU GPL 3](gpl.txt)

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<div id="write" class="is-node"><h1><a name="header-n0" class="md-header-anchor "></a>Keulkulator</h1><h2><a
name="header-n8" class="md-header-anchor "></a>Setup laden…</h2><p>Ein gespeichertes "Setup" einer Wicklung, also die Auswahl von Material, Drahtstärke, Zielwiderstand, Wicklungsdurchmesser, Befestigungsweg und Coil-Anzahl kann geladen werden. Nach dem Laden wird der Name des Steups (Dateiname) im Feld "Setup" angezeigt.</p><p><a
href="help.html">[TOC]</a></p></div>
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<body class="typora-export">
<div id="write" class="is-node"><h1><a name="header-n0" class="md-header-anchor "></a>Keulkulator</h1><h2><a
name="header-n8" class="md-header-anchor "></a>Setup speichern…</h2><p>Das "Setup" einer Wicklung, also die Auswahl von Material, Drahtstärke, Zielwiderstand, Wicklungsdurchmesser, Befestigungsweg und Coil-Anzahl kann gespeichert werden. Nach dem Speichern wird der Name des Steups (Dateiname) im Feld "Setup" angezeigt.</p><p><a
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GNU GENERAL PUBLIC LICENSE
Version 3, 29 June 2007
Copyright (C) 2007 Free Software Foundation, Inc. <http://fsf.org/>
Everyone is permitted to copy and distribute verbatim copies
of this license document, but changing it is not allowed.
Preamble
The GNU General Public License is a free, copyleft license for
software and other kinds of works.
The licenses for most software and other practical works are designed
to take away your freedom to share and change the works. By contrast,
the GNU General Public License is intended to guarantee your freedom to
share and change all versions of a program--to make sure it remains free
software for all its users. We, the Free Software Foundation, use the
GNU General Public License for most of our software; it applies also to
any other work released this way by its authors. You can apply it to
your programs, too.
When we speak of free software, we are referring to freedom, not
price. Our General Public Licenses are designed to make sure that you
have the freedom to distribute copies of free software (and charge for
them if you wish), that you receive source code or can get it if you
want it, that you can change the software or use pieces of it in new
free programs, and that you know you can do these things.
To protect your rights, we need to prevent others from denying you
these rights or asking you to surrender the rights. Therefore, you have
certain responsibilities if you distribute copies of the software, or if
you modify it: responsibilities to respect the freedom of others.
For example, if you distribute copies of such a program, whether
gratis or for a fee, you must pass on to the recipients the same
freedoms that you received. You must make sure that they, too, receive
or can get the source code. And you must show them these terms so they
know their rights.
Developers that use the GNU GPL protect your rights with two steps:
(1) assert copyright on the software, and (2) offer you this License
giving you legal permission to copy, distribute and/or modify it.
For the developers' and authors' protection, the GPL clearly explains
that there is no warranty for this free software. For both users' and
authors' sake, the GPL requires that modified versions be marked as
changed, so that their problems will not be attributed erroneously to
authors of previous versions.
Some devices are designed to deny users access to install or run
modified versions of the software inside them, although the manufacturer
can do so. This is fundamentally incompatible with the aim of
protecting users' freedom to change the software. The systematic
pattern of such abuse occurs in the area of products for individuals to
use, which is precisely where it is most unacceptable. Therefore, we
have designed this version of the GPL to prohibit the practice for those
products. If such problems arise substantially in other domains, we
stand ready to extend this provision to those domains in future versions
of the GPL, as needed to protect the freedom of users.
Finally, every program is threatened constantly by software patents.
States should not allow patents to restrict development and use of
software on general-purpose computers, but in those that do, we wish to
avoid the special danger that patents applied to a free program could
make it effectively proprietary. To prevent this, the GPL assures that
patents cannot be used to render the program non-free.
The precise terms and conditions for copying, distribution and
modification follow.
TERMS AND CONDITIONS
0. Definitions.
"This License" refers to version 3 of the GNU General Public License.
"Copyright" also means copyright-like laws that apply to other kinds of
works, such as semiconductor masks.
"The Program" refers to any copyrightable work licensed under this
License. Each licensee is addressed as "you". "Licensees" and
"recipients" may be individuals or organizations.
To "modify" a work means to copy from or adapt all or part of the work
in a fashion requiring copyright permission, other than the making of an
exact copy. The resulting work is called a "modified version" of the
earlier work or a work "based on" the earlier work.
A "covered work" means either the unmodified Program or a work based
on the Program.
To "propagate" a work means to do anything with it that, without
permission, would make you directly or secondarily liable for
infringement under applicable copyright law, except executing it on a
computer or modifying a private copy. Propagation includes copying,
distribution (with or without modification), making available to the
public, and in some countries other activities as well.
To "convey" a work means any kind of propagation that enables other
parties to make or receive copies. Mere interaction with a user through
a computer network, with no transfer of a copy, is not conveying.
An interactive user interface displays "Appropriate Legal Notices"
to the extent that it includes a convenient and prominently visible
feature that (1) displays an appropriate copyright notice, and (2)
tells the user that there is no warranty for the work (except to the
extent that warranties are provided), that licensees may convey the
work under this License, and how to view a copy of this License. If
the interface presents a list of user commands or options, such as a
menu, a prominent item in the list meets this criterion.
1. Source Code.
The "source code" for a work means the preferred form of the work
for making modifications to it. "Object code" means any non-source
form of a work.
A "Standard Interface" means an interface that either is an official
standard defined by a recognized standards body, or, in the case of
interfaces specified for a particular programming language, one that
is widely used among developers working in that language.
The "System Libraries" of an executable work include anything, other
than the work as a whole, that (a) is included in the normal form of
packaging a Major Component, but which is not part of that Major
Component, and (b) serves only to enable use of the work with that
Major Component, or to implement a Standard Interface for which an
implementation is available to the public in source code form. A
"Major Component", in this context, means a major essential component
(kernel, window system, and so on) of the specific operating system
(if any) on which the executable work runs, or a compiler used to
produce the work, or an object code interpreter used to run it.
The "Corresponding Source" for a work in object code form means all
the source code needed to generate, install, and (for an executable
work) run the object code and to modify the work, including scripts to
control those activities. However, it does not include the work's
System Libraries, or general-purpose tools or generally available free
programs which are used unmodified in performing those activities but
which are not part of the work. For example, Corresponding Source
includes interface definition files associated with source files for
the work, and the source code for shared libraries and dynamically
linked subprograms that the work is specifically designed to require,
such as by intimate data communication or control flow between those
subprograms and other parts of the work.
The Corresponding Source need not include anything that users
can regenerate automatically from other parts of the Corresponding
Source.
The Corresponding Source for a work in source code form is that
same work.
2. Basic Permissions.
All rights granted under this License are granted for the term of
copyright on the Program, and are irrevocable provided the stated
conditions are met. This License explicitly affirms your unlimited
permission to run the unmodified Program. The output from running a
covered work is covered by this License only if the output, given its
content, constitutes a covered work. This License acknowledges your
rights of fair use or other equivalent, as provided by copyright law.
You may make, run and propagate covered works that you do not
convey, without conditions so long as your license otherwise remains
in force. You may convey covered works to others for the sole purpose
of having them make modifications exclusively for you, or provide you
with facilities for running those works, provided that you comply with
the terms of this License in conveying all material for which you do
not control copyright. Those thus making or running the covered works
for you must do so exclusively on your behalf, under your direction
and control, on terms that prohibit them from making any copies of
your copyrighted material outside their relationship with you.
Conveying under any other circumstances is permitted solely under
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3. Protecting Users' Legal Rights From Anti-Circumvention Law.
No covered work shall be deemed part of an effective technological
measure under any applicable law fulfilling obligations under article
11 of the WIPO copyright treaty adopted on 20 December 1996, or
similar laws prohibiting or restricting circumvention of such
measures.
When you convey a covered work, you waive any legal power to forbid
circumvention of technological measures to the extent such circumvention
is effected by exercising rights under this License with respect to
the covered work, and you disclaim any intention to limit operation or
modification of the work as a means of enforcing, against the work's
users, your or third parties' legal rights to forbid circumvention of
technological measures.
4. Conveying Verbatim Copies.
You may convey verbatim copies of the Program's source code as you
receive it, in any medium, provided that you conspicuously and
appropriately publish on each copy an appropriate copyright notice;
keep intact all notices stating that this License and any
non-permissive terms added in accord with section 7 apply to the code;
keep intact all notices of the absence of any warranty; and give all
recipients a copy of this License along with the Program.
You may charge any price or no price for each copy that you convey,
and you may offer support or warranty protection for a fee.
5. Conveying Modified Source Versions.
You may convey a work based on the Program, or the modifications to
produce it from the Program, in the form of source code under the
terms of section 4, provided that you also meet all of these conditions:
a) The work must carry prominent notices stating that you modified
it, and giving a relevant date.
b) The work must carry prominent notices stating that it is
released under this License and any conditions added under section
7. This requirement modifies the requirement in section 4 to
"keep intact all notices".
c) You must license the entire work, as a whole, under this
License to anyone who comes into possession of a copy. This
License will therefore apply, along with any applicable section 7
additional terms, to the whole of the work, and all its parts,
regardless of how they are packaged. This License gives no
permission to license the work in any other way, but it does not
invalidate such permission if you have separately received it.
d) If the work has interactive user interfaces, each must display
Appropriate Legal Notices; however, if the Program has interactive
interfaces that do not display Appropriate Legal Notices, your
work need not make them do so.
A compilation of a covered work with other separate and independent
works, which are not by their nature extensions of the covered work,
and which are not combined with it such as to form a larger program,
in or on a volume of a storage or distribution medium, is called an
"aggregate" if the compilation and its resulting copyright are not
used to limit the access or legal rights of the compilation's users
beyond what the individual works permit. Inclusion of a covered work
in an aggregate does not cause this License to apply to the other
parts of the aggregate.
6. Conveying Non-Source Forms.
You may convey a covered work in object code form under the terms
of sections 4 and 5, provided that you also convey the
machine-readable Corresponding Source under the terms of this License,
in one of these ways:
a) Convey the object code in, or embodied in, a physical product
(including a physical distribution medium), accompanied by the
Corresponding Source fixed on a durable physical medium
customarily used for software interchange.
b) Convey the object code in, or embodied in, a physical product
(including a physical distribution medium), accompanied by a
written offer, valid for at least three years and valid for as
long as you offer spare parts or customer support for that product
model, to give anyone who possesses the object code either (1) a
copy of the Corresponding Source for all the software in the
product that is covered by this License, on a durable physical
medium customarily used for software interchange, for a price no
more than your reasonable cost of physically performing this
conveying of source, or (2) access to copy the
Corresponding Source from a network server at no charge.
c) Convey individual copies of the object code with a copy of the
written offer to provide the Corresponding Source. This
alternative is allowed only occasionally and noncommercially, and
only if you received the object code with such an offer, in accord
with subsection 6b.
d) Convey the object code by offering access from a designated
place (gratis or for a charge), and offer equivalent access to the
Corresponding Source in the same way through the same place at no
further charge. You need not require recipients to copy the
Corresponding Source along with the object code. If the place to
copy the object code is a network server, the Corresponding Source
may be on a different server (operated by you or a third party)
that supports equivalent copying facilities, provided you maintain
clear directions next to the object code saying where to find the
Corresponding Source. Regardless of what server hosts the
Corresponding Source, you remain obligated to ensure that it is
available for as long as needed to satisfy these requirements.
e) Convey the object code using peer-to-peer transmission, provided
you inform other peers where the object code and Corresponding
Source of the work are being offered to the general public at no
charge under subsection 6d.
A separable portion of the object code, whose source code is excluded
from the Corresponding Source as a System Library, need not be
included in conveying the object code work.
A "User Product" is either (1) a "consumer product", which means any
tangible personal property which is normally used for personal, family,
or household purposes, or (2) anything designed or sold for incorporation
into a dwelling. In determining whether a product is a consumer product,
doubtful cases shall be resolved in favor of coverage. For a particular
product received by a particular user, "normally used" refers to a
typical or common use of that class of product, regardless of the status
of the particular user or of the way in which the particular user
actually uses, or expects or is expected to use, the product. A product
is a consumer product regardless of whether the product has substantial
commercial, industrial or non-consumer uses, unless such uses represent
the only significant mode of use of the product.
"Installation Information" for a User Product means any methods,
procedures, authorization keys, or other information required to install
and execute modified versions of a covered work in that User Product from
a modified version of its Corresponding Source. The information must
suffice to ensure that the continued functioning of the modified object
code is in no case prevented or interfered with solely because
modification has been made.
If you convey an object code work under this section in, or with, or
specifically for use in, a User Product, and the conveying occurs as
part of a transaction in which the right of possession and use of the
User Product is transferred to the recipient in perpetuity or for a
fixed term (regardless of how the transaction is characterized), the
Corresponding Source conveyed under this section must be accompanied
by the Installation Information. But this requirement does not apply
if neither you nor any third party retains the ability to install
modified object code on the User Product (for example, the work has
been installed in ROM).
The requirement to provide Installation Information does not include a
requirement to continue to provide support service, warranty, or updates
for a work that has been modified or installed by the recipient, or for
the User Product in which it has been modified or installed. Access to a
network may be denied when the modification itself materially and
adversely affects the operation of the network or violates the rules and
protocols for communication across the network.
Corresponding Source conveyed, and Installation Information provided,
in accord with this section must be in a format that is publicly
documented (and with an implementation available to the public in
source code form), and must require no special password or key for
unpacking, reading or copying.
7. Additional Terms.
"Additional permissions" are terms that supplement the terms of this
License by making exceptions from one or more of its conditions.
Additional permissions that are applicable to the entire Program shall
be treated as though they were included in this License, to the extent
that they are valid under applicable law. If additional permissions
apply only to part of the Program, that part may be used separately
under those permissions, but the entire Program remains governed by
this License without regard to the additional permissions.
When you convey a copy of a covered work, you may at your option
remove any additional permissions from that copy, or from any part of
it. (Additional permissions may be written to require their own
removal in certain cases when you modify the work.) You may place
additional permissions on material, added by you to a covered work,
for which you have or can give appropriate copyright permission.
Notwithstanding any other provision of this License, for material you
add to a covered work, you may (if authorized by the copyright holders of
that material) supplement the terms of this License with terms:
a) Disclaiming warranty or limiting liability differently from the
terms of sections 15 and 16 of this License; or
b) Requiring preservation of specified reasonable legal notices or
author attributions in that material or in the Appropriate Legal
Notices displayed by works containing it; or
c) Prohibiting misrepresentation of the origin of that material, or
requiring that modified versions of such material be marked in
reasonable ways as different from the original version; or
d) Limiting the use for publicity purposes of names of licensors or
authors of the material; or
e) Declining to grant rights under trademark law for use of some
trade names, trademarks, or service marks; or
f) Requiring indemnification of licensors and authors of that
material by anyone who conveys the material (or modified versions of
it) with contractual assumptions of liability to the recipient, for
any liability that these contractual assumptions directly impose on
those licensors and authors.
All other non-permissive additional terms are considered "further
restrictions" within the meaning of section 10. If the Program as you
received it, or any part of it, contains a notice stating that it is
governed by this License along with a term that is a further
restriction, you may remove that term. If a license document contains
a further restriction but permits relicensing or conveying under this
License, you may add to a covered work material governed by the terms
of that license document, provided that the further restriction does
not survive such relicensing or conveying.
If you add terms to a covered work in accord with this section, you
must place, in the relevant source files, a statement of the
additional terms that apply to those files, or a notice indicating
where to find the applicable terms.
Additional terms, permissive or non-permissive, may be stated in the
form of a separately written license, or stated as exceptions;
the above requirements apply either way.
8. Termination.
You may not propagate or modify a covered work except as expressly
provided under this License. Any attempt otherwise to propagate or
modify it is void, and will automatically terminate your rights under
this License (including any patent licenses granted under the third
paragraph of section 11).
However, if you cease all violation of this License, then your
license from a particular copyright holder is reinstated (a)
provisionally, unless and until the copyright holder explicitly and
finally terminates your license, and (b) permanently, if the copyright
holder fails to notify you of the violation by some reasonable means
prior to 60 days after the cessation.
Moreover, your license from a particular copyright holder is
reinstated permanently if the copyright holder notifies you of the
violation by some reasonable means, this is the first time you have
received notice of violation of this License (for any work) from that
copyright holder, and you cure the violation prior to 30 days after
your receipt of the notice.
Termination of your rights under this section does not terminate the
licenses of parties who have received copies or rights from you under
this License. If your rights have been terminated and not permanently
reinstated, you do not qualify to receive new licenses for the same
material under section 10.
9. Acceptance Not Required for Having Copies.
You are not required to accept this License in order to receive or
run a copy of the Program. Ancillary propagation of a covered work
occurring solely as a consequence of using peer-to-peer transmission
to receive a copy likewise does not require acceptance. However,
nothing other than this License grants you permission to propagate or
modify any covered work. These actions infringe copyright if you do
not accept this License. Therefore, by modifying or propagating a
covered work, you indicate your acceptance of this License to do so.
10. Automatic Licensing of Downstream Recipients.
Each time you convey a covered work, the recipient automatically
receives a license from the original licensors, to run, modify and
propagate that work, subject to this License. You are not responsible
for enforcing compliance by third parties with this License.
An "entity transaction" is a transaction transferring control of an
organization, or substantially all assets of one, or subdividing an
organization, or merging organizations. If propagation of a covered
work results from an entity transaction, each party to that
transaction who receives a copy of the work also receives whatever
licenses to the work the party's predecessor in interest had or could
give under the previous paragraph, plus a right to possession of the
Corresponding Source of the work from the predecessor in interest, if
the predecessor has it or can get it with reasonable efforts.
You may not impose any further restrictions on the exercise of the
rights granted or affirmed under this License. For example, you may
not impose a license fee, royalty, or other charge for exercise of
rights granted under this License, and you may not initiate litigation
(including a cross-claim or counterclaim in a lawsuit) alleging that
any patent claim is infringed by making, using, selling, offering for
sale, or importing the Program or any portion of it.
11. Patents.
A "contributor" is a copyright holder who authorizes use under this
License of the Program or a work on which the Program is based. The
work thus licensed is called the contributor's "contributor version".
A contributor's "essential patent claims" are all patent claims
owned or controlled by the contributor, whether already acquired or
hereafter acquired, that would be infringed by some manner, permitted
by this License, of making, using, or selling its contributor version,
but do not include claims that would be infringed only as a
consequence of further modification of the contributor version. For
purposes of this definition, "control" includes the right to grant
patent sublicenses in a manner consistent with the requirements of
this License.
Each contributor grants you a non-exclusive, worldwide, royalty-free
patent license under the contributor's essential patent claims, to
make, use, sell, offer for sale, import and otherwise run, modify and
propagate the contents of its contributor version.
In the following three paragraphs, a "patent license" is any express
agreement or commitment, however denominated, not to enforce a patent
(such as an express permission to practice a patent or covenant not to
sue for patent infringement). To "grant" such a patent license to a
party means to make such an agreement or commitment not to enforce a
patent against the party.
If you convey a covered work, knowingly relying on a patent license,
and the Corresponding Source of the work is not available for anyone
to copy, free of charge and under the terms of this License, through a
publicly available network server or other readily accessible means,
then you must either (1) cause the Corresponding Source to be so
available, or (2) arrange to deprive yourself of the benefit of the
patent license for this particular work, or (3) arrange, in a manner
consistent with the requirements of this License, to extend the patent
license to downstream recipients. "Knowingly relying" means you have
actual knowledge that, but for the patent license, your conveying the
covered work in a country, or your recipient's use of the covered work
in a country, would infringe one or more identifiable patents in that
country that you have reason to believe are valid.
If, pursuant to or in connection with a single transaction or
arrangement, you convey, or propagate by procuring conveyance of, a
covered work, and grant a patent license to some of the parties
receiving the covered work authorizing them to use, propagate, modify
or convey a specific copy of the covered work, then the patent license
you grant is automatically extended to all recipients of the covered
work and works based on it.
A patent license is "discriminatory" if it does not include within
the scope of its coverage, prohibits the exercise of, or is
conditioned on the non-exercise of one or more of the rights that are
specifically granted under this License. You may not convey a covered
work if you are a party to an arrangement with a third party that is
in the business of distributing software, under which you make payment
to the third party based on the extent of your activity of conveying
the work, and under which the third party grants, to any of the
parties who would receive the covered work from you, a discriminatory
patent license (a) in connection with copies of the covered work
conveyed by you (or copies made from those copies), or (b) primarily
for and in connection with specific products or compilations that
contain the covered work, unless you entered into that arrangement,
or that patent license was granted, prior to 28 March 2007.
Nothing in this License shall be construed as excluding or limiting
any implied license or other defenses to infringement that may
otherwise be available to you under applicable patent law.
12. No Surrender of Others' Freedom.
If conditions are imposed on you (whether by court order, agreement or
otherwise) that contradict the conditions of this License, they do not
excuse you from the conditions of this License. If you cannot convey a
covered work so as to satisfy simultaneously your obligations under this
License and any other pertinent obligations, then as a consequence you may
not convey it at all. For example, if you agree to terms that obligate you
to collect a royalty for further conveying from those to whom you convey
the Program, the only way you could satisfy both those terms and this
License would be to refrain entirely from conveying the Program.
13. Use with the GNU Affero General Public License.
Notwithstanding any other provision of this License, you have
permission to link or combine any covered work with a work licensed
under version 3 of the GNU Affero General Public License into a single
combined work, and to convey the resulting work. The terms of this
License will continue to apply to the part which is the covered work,
but the special requirements of the GNU Affero General Public License,
section 13, concerning interaction through a network will apply to the
combination as such.
14. Revised Versions of this License.
The Free Software Foundation may publish revised and/or new versions of
the GNU General Public License from time to time. Such new versions will
be similar in spirit to the present version, but may differ in detail to
address new problems or concerns.
Each version is given a distinguishing version number. If the
Program specifies that a certain numbered version of the GNU General
Public License "or any later version" applies to it, you have the
option of following the terms and conditions either of that numbered
version or of any later version published by the Free Software
Foundation. If the Program does not specify a version number of the
GNU General Public License, you may choose any version ever published
by the Free Software Foundation.
If the Program specifies that a proxy can decide which future
versions of the GNU General Public License can be used, that proxy's
public statement of acceptance of a version permanently authorizes you
to choose that version for the Program.
Later license versions may give you additional or different
permissions. However, no additional obligations are imposed on any
author or copyright holder as a result of your choosing to follow a
later version.
15. Disclaimer of Warranty.
THERE IS NO WARRANTY FOR THE PROGRAM, TO THE EXTENT PERMITTED BY
APPLICABLE LAW. EXCEPT WHEN OTHERWISE STATED IN WRITING THE COPYRIGHT
HOLDERS AND/OR OTHER PARTIES PROVIDE THE PROGRAM "AS IS" WITHOUT WARRANTY
OF ANY KIND, EITHER EXPRESSED OR IMPLIED, INCLUDING, BUT NOT LIMITED TO,
THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
PURPOSE. THE ENTIRE RISK AS TO THE QUALITY AND PERFORMANCE OF THE PROGRAM
IS WITH YOU. SHOULD THE PROGRAM PROVE DEFECTIVE, YOU ASSUME THE COST OF
ALL NECESSARY SERVICING, REPAIR OR CORRECTION.
16. Limitation of Liability.
IN NO EVENT UNLESS REQUIRED BY APPLICABLE LAW OR AGREED TO IN WRITING
WILL ANY COPYRIGHT HOLDER, OR ANY OTHER PARTY WHO MODIFIES AND/OR CONVEYS
THE PROGRAM AS PERMITTED ABOVE, BE LIABLE TO YOU FOR DAMAGES, INCLUDING ANY
GENERAL, SPECIAL, INCIDENTAL OR CONSEQUENTIAL DAMAGES ARISING OUT OF THE
USE OR INABILITY TO USE THE PROGRAM (INCLUDING BUT NOT LIMITED TO LOSS OF
DATA OR DATA BEING RENDERED INACCURATE OR LOSSES SUSTAINED BY YOU OR THIRD
PARTIES OR A FAILURE OF THE PROGRAM TO OPERATE WITH ANY OTHER PROGRAMS),
EVEN IF SUCH HOLDER OR OTHER PARTY HAS BEEN ADVISED OF THE POSSIBILITY OF
SUCH DAMAGES.
17. Interpretation of Sections 15 and 16.
If the disclaimer of warranty and limitation of liability provided
above cannot be given local legal effect according to their terms,
reviewing courts shall apply local law that most closely approximates
an absolute waiver of all civil liability in connection with the
Program, unless a warranty or assumption of liability accompanies a
copy of the Program in return for a fee.
END OF TERMS AND CONDITIONS
How to Apply These Terms to Your New Programs
If you develop a new program, and you want it to be of the greatest
possible use to the public, the best way to achieve this is to make it
free software which everyone can redistribute and change under these terms.
To do so, attach the following notices to the program. It is safest
to attach them to the start of each source file to most effectively
state the exclusion of warranty; and each file should have at least
the "copyright" line and a pointer to where the full notice is found.
<one line to give the program's name and a brief idea of what it does.>
Copyright (C) <year> <name of author>
This program is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
Also add information on how to contact you by electronic and paper mail.
If the program does terminal interaction, make it output a short
notice like this when it starts in an interactive mode:
<program> Copyright (C) <year> <name of author>
This program comes with ABSOLUTELY NO WARRANTY; for details type `show w'.
This is free software, and you are welcome to redistribute it
under certain conditions; type `show c' for details.
The hypothetical commands `show w' and `show c' should show the appropriate
parts of the General Public License. Of course, your program's commands
might be different; for a GUI interface, you would use an "about box".
You should also get your employer (if you work as a programmer) or school,
if any, to sign a "copyright disclaimer" for the program, if necessary.
For more information on this, and how to apply and follow the GNU GPL, see
<http://www.gnu.org/licenses/>.
The GNU General Public License does not permit incorporating your program
into proprietary programs. If your program is a subroutine library, you
may consider it more useful to permit linking proprietary applications with
the library. If this is what you want to do, use the GNU Lesser General
Public License instead of this License. But first, please read
<http://www.gnu.org/philosophy/why-not-lgpl.html>.

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<?xml version="1.0" encoding="UTF-8"?>
<CONFIG>
<ProjectOptions>
<Version Value="12"/>
<General>
<Flags>
<CompatibilityMode Value="True"/>
</Flags>
<SessionStorage Value="InProjectDir"/>
<Title Value="Keulkulator"/>
<UseAppBundle Value="False"/>
<ResourceType Value="res"/>
<Icon Value="0"/>
</General>
<i18n>
<EnableI18N LFM="False"/>
</i18n>
<VersionInfo>
<UseVersionInfo Value="True"/>
<AutoIncrementBuild Value="True"/>
<MajorVersionNr Value="1"/>
<MinorVersionNr Value="2"/>
<BuildNr Value="8"/>
<Language Value="0407"/>
<StringTable LegalCopyright="Copyright 2023 PepeCyB"/>
</VersionInfo>
<MacroValues Count="1">
<Macro1 Name="LCLWidgetType" Value="qt6"/>
</MacroValues>
<BuildModes Count="1">
<Item1 Name="Default" Default="True"/>
<SharedMatrixOptions Count="1">
<Item1 ID="768502046799" Modes="Default" Type="IDEMacro" MacroName="LCLWidgetType" Value="qt6"/>
</SharedMatrixOptions>
</BuildModes>
<PublishOptions>
<Version Value="2"/>
</PublishOptions>
<RunParams>
<FormatVersion Value="2"/>
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<Mode0 Name="default"/>
</Modes>
</RunParams>
<RequiredPackages Count="2">
<Item1>
<PackageName Value="eccontrols"/>
</Item1>
<Item2>
<PackageName Value="LCL"/>
</Item2>
</RequiredPackages>
<Units Count="5">
<Unit0>
<Filename Value="keulkulator.lpr"/>
<IsPartOfProject Value="True"/>
</Unit0>
<Unit1>
<Filename Value="unit1.pas"/>
<IsPartOfProject Value="True"/>
<ComponentName Value="MainForm"/>
<HasResources Value="True"/>
<ResourceBaseClass Value="Form"/>
<UnitName Value="Unit1"/>
</Unit1>
<Unit2>
<Filename Value="udata.pas"/>
<IsPartOfProject Value="True"/>
<UnitName Value="UData"/>
</Unit2>
<Unit3>
<Filename Value="unit2.pas"/>
<IsPartOfProject Value="True"/>
<ComponentName Value="FUeber"/>
<HasResources Value="True"/>
<ResourceBaseClass Value="Form"/>
<UnitName Value="Unit2"/>
</Unit3>
<Unit4>
<Filename Value="unit3.pas"/>
<IsPartOfProject Value="True"/>
<ComponentName Value="MatEditor"/>
<HasResources Value="True"/>
<ResourceBaseClass Value="Form"/>
<UnitName Value="Unit3"/>
</Unit4>
</Units>
</ProjectOptions>
<CompilerOptions>
<Version Value="11"/>
<Target>
<Filename Value="keulkulator"/>
</Target>
<SearchPaths>
<IncludeFiles Value="$(ProjOutDir)"/>
<UnitOutputDirectory Value="lib/$(TargetCPU)-$(TargetOS)"/>
</SearchPaths>
<CodeGeneration>
<SmartLinkUnit Value="True"/>
<Optimizations>
<OptimizationLevel Value="2"/>
</Optimizations>
</CodeGeneration>
<Linking>
<Debugging>
<GenerateDebugInfo Value="False"/>
<RunWithoutDebug Value="True"/>
</Debugging>
<LinkSmart Value="True"/>
</Linking>
</CompilerOptions>
<Debugging>
<Exceptions Count="5">
<Item1>
<Name Value="EAbort"/>
</Item1>
<Item2>
<Name Value="ECodetoolError"/>
</Item2>
<Item3>
<Name Value="EFOpenError"/>
</Item3>
<Item4>
<Name Value="RunError(216)"/>
</Item4>
<Item5>
<Name Value="EAccessViolation"/>
</Item5>
</Exceptions>
</Debugging>
</CONFIG>

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program keulkulator;
{$mode objfpc}{$H+}
{
This file is part of Keulkulator.
Keulkulator is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
Keulkulator is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with Keulkulator. If not, see <http://www.gnu.org/licenses/>.
}
uses
{$IFDEF UNIX}{$IFDEF UseCThreads}
cthreads,
{$ENDIF}{$ENDIF}
Interfaces, // this includes the LCL widgetset
Forms, Unit1, UData, Unit2, Unit3
{ you can add units after this };
{$R *.res}
begin
Application.Title:='Keulkulator';
RequireDerivedFormResource:=True;
Application.Initialize;
Application.CreateForm(TMainForm, MainForm);
Application.CreateForm(TFUeber, FUeber);
Application.CreateForm(TMatEditor, MatEditor);
Application.Run;
end.

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<?xml version="1.0" encoding="UTF-8"?>
<CONFIG>
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<Version Value="12"/>
<BuildModes Active="Default"/>
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<Unit0>
<Filename Value="keulkulator.lpr"/>
<IsPartOfProject Value="True"/>
<EditorIndex Value="3"/>
<CursorPos Y="40"/>
<UsageCount Value="89"/>
<Loaded Value="True"/>
</Unit0>
<Unit1>
<Filename Value="unit1.pas"/>
<IsPartOfProject Value="True"/>
<ComponentName Value="MainForm"/>
<HasResources Value="True"/>
<ResourceBaseClass Value="Form"/>
<UnitName Value="Unit1"/>
<IsVisibleTab Value="True"/>
<TopLine Value="268"/>
<CursorPos X="3" Y="270"/>
<UsageCount Value="89"/>
<Loaded Value="True"/>
<LoadedDesigner Value="True"/>
</Unit1>
<Unit2>
<Filename Value="udata.pas"/>
<IsPartOfProject Value="True"/>
<UnitName Value="UData"/>
<EditorIndex Value="4"/>
<TopLine Value="19"/>
<CursorPos Y="64"/>
<UsageCount Value="85"/>
<Loaded Value="True"/>
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<Unit3>
<Filename Value="unit2.pas"/>
<IsPartOfProject Value="True"/>
<ComponentName Value="FUeber"/>
<HasResources Value="True"/>
<ResourceBaseClass Value="Form"/>
<UnitName Value="Unit2"/>
<EditorIndex Value="2"/>
<TopLine Value="31"/>
<CursorPos X="52" Y="49"/>
<UsageCount Value="64"/>
<Loaded Value="True"/>
<LoadedDesigner Value="True"/>
</Unit3>
<Unit4>
<Filename Value="unit3.pas"/>
<IsPartOfProject Value="True"/>
<ComponentName Value="MatEditor"/>
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<ResourceBaseClass Value="Form"/>
<UnitName Value="Unit3"/>
<EditorIndex Value="1"/>
<TopLine Value="31"/>
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<UsageCount Value="46"/>
<Loaded Value="True"/>
<LoadedDesigner Value="True"/>
</Unit4>
<Unit5>
<Filename Value="/usr/lib/lazarus/lcl/lclproc.pas"/>
<UnitName Value="LCLProc"/>
<EditorIndex Value="-1"/>
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<RunParams>
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</ProjectSession>
<Debugging>
<BreakPoints>
<Item>
<Kind Value="bpkSource"/>
<WatchScope Value="wpsLocal"/>
<WatchKind Value="wpkWrite"/>
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</Debugging>
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<?xml version="1.0" encoding="UTF-8"?>
<CONFIG>
<Compiler Value="/home/daniel/opt/fpclaz/fpc/bin/x86_64-linux/fpc.sh" Date="1695925875"/>
<Params Value="-MObjFPC -Scghi -CX -Cg -O2 -XX -l -vewnhibq -Fi/home/daniel/Develop/pascal/projekte/keulkulator/lib/x86_64-linux -Fu/home/daniel/Develop/pascal/projekte/keulkulator/ -Fu/home/daniel/opt/fpclaz/config_lazarus/onlinepackagemanager/packages/EC_Controls/EC_Controls/lib/x86_64-linux -Fu/home/daniel/opt/fpclaz/lazarus/components/ideintf/units/x86_64-linux/qt6 -Fu/home/daniel/opt/fpclaz/lazarus/components/lazcontrols/lib/x86_64-linux/qt6 -Fu/home/daniel/opt/fpclaz/lazarus/lcl/units/x86_64-linux/qt6 -Fu/home/daniel/opt/fpclaz/lazarus/lcl/units/x86_64-linux -Fu/home/daniel/opt/fpclaz/lazarus/components/freetype/lib/x86_64-linux -Fu/home/daniel/opt/fpclaz/lazarus/components/buildintf/units/x86_64-linux -Fu/home/daniel/opt/fpclaz/lazarus/components/lazutils/lib/x86_64-linux -Fu/home/daniel/opt/fpclaz/lazarus/packager/units/x86_64-linux -FU/home/daniel/Develop/pascal/projekte/keulkulator/lib/x86_64-linux/ -FE/home/daniel/Develop/pascal/projekte/keulkulator/ -o/home/daniel/Develop/pascal/projekte/keulkulator/keulkulator -dLCL -dLCLqt6 keulkulator.lpr"/>
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OnClick = BitBtSaveClick
ParentShowHint = False
ShowHint = True
TabOrder = 3
end
object BitBtClose: TBitBtn
Left = 600
Height = 36
Hint = 'Änderungen verwerfen'
Top = 264
Width = 160
Caption = 'Verwerfen'
Glyph.Data = {
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OnClick = BitBtCloseClick
ParentShowHint = False
ShowHint = True
TabOrder = 4
end
object BitBtOK: TBitBtn
Left = 247
Height = 36
Hint = 'Änderungen in den Keulkulator'#10'übernehmen'
Top = 264
Width = 160
Caption = 'OK'
Glyph.Data = {
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OnClick = BitBtOKClick
ParentShowHint = False
ShowHint = True
TabOrder = 2
end
end

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Kanthal A1
1.45
Kanthal A
1.39
Kanthal D
1.35
Nichrome N80
1.09
Nickel 200
0.1
V4A - AISI 316L
0.8
V2A - AISI 304
0.75
Titan
0.43

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9
testset1.kkl Normal file
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Kanthal A1
0.40
0.50
3.00
1.00
1.0
0.25
0.12
r

9
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NiChrome 80
0.50
0.44
2.50
1.50
2.0
0.25
0.12
r

9
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V4A
0.25
0.38
3.00
1.00
4.0
0.25
0.12
f

74
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unit UData;
{$mode objfpc}{$H+}
{
This file is part of Keulkulator.
Keulkulator is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
Keulkulator is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with Keulkulator. If not, see <http://www.gnu.org/licenses/>.
}
interface
uses
Classes, SysUtils, math;
function MyStrToFloat(s: String): Double;
procedure InitData;
var
configdat : TStringList; // Daten der Konfigurationsdatei
materialien : TStringList; // Stringliste für Materialnamen
spezwid : array of Float; // dynamisches Array für spez. Widerstände
nummat : Int64; // Anzahl der Materialeinträge
i : Integer;
implementation
function MyStrToFloat(s: String): Double; // eigene Umwandlungsfunktion, um Systemunterschiede
var // bezüglich des Dezimaltrenners aufzufangen
fs: TFormatSettings;
begin
fs := DefaultFormatSettings;
if not TryStrToFloat(s, Result, fs) then
begin
if fs.DecimalSeparator = '.' then
fs.DecimalSeparator := ','
else
fs.DecimalSeparator := '.';
Result := StrToFloat(s, fs);
end;
end;
procedure InitData; // Draht-Werte initialisieren
begin
configdat := TStringList.create; // Daten laden
configdat.LoadFromFile('material.dat');
nummat := trunc(configdat.Count / 2); // Double Count -> Int64
materialien := TStringList.Create; // Materialien-Liste initialisieren
SetLength(spezwid, nummat); // Array initialisieren
for i := 0 to nummat-1 do
begin
materialien.Add(configdat[i*2]); // Durchlauf in 2er-Schritten
spezwid[i] := MyStrToFloat(configdat[i*2+1]);
end;
end;
end.

1259
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unit Unit1;
{$mode objfpc}{$H+}
{
This file is part of Keulkulator.
Keulkulator is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
Keulkulator is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with Keulkulator. If not, see <http://www.gnu.org/licenses/>.
}
interface
uses
Classes, SysUtils, FileUtil, Forms, Controls, Graphics, Dialogs, Menus,
ExtCtrls, ComCtrls, StdCtrls, Spin, LazHelpHTML, LCLIntf, Buttons, ECSwitch,
math, UData, Unit2, Unit3;
type
{ TMainForm }
TMainForm = class(TForm)
BtMatEdit: TButton;
CBMaterial: TComboBox;
ECSwitch1: TECSwitch;
EdFile: TEdit;
EdHflx: TEdit;
EdStrom: TEdit;
EdLeistung: TEdit;
FlSpStaerke: TFloatSpinEdit;
FlSpmm: TFloatSpinEdit;
FlSpAWG: TFloatSpinEdit;
FlSpBreite: TFloatSpinEdit;
FlSpSpannung: TFloatSpinEdit;
FlSpWeg: TFloatSpinEdit;
FlSpWiderstand: TFloatSpinEdit;
FlSpDurchmesser: TFloatSpinEdit;
GroupBox1: TGroupBox;
HTMLBrowserHelpViewer1: THTMLBrowserHelpViewer;
HTMLHelpDatabase1: THTMLHelpDatabase;
Image1: TImage;
Image2: TImage;
Image3: TImage;
Image4: TImage;
Label1: TLabel;
Label10: TLabel;
Label11: TLabel;
Label13: TLabel;
Label14: TLabel;
Label19: TLabel;
LaOhmAb: TLabel;
LaOhmHalb: TLabel;
LaOhmAuf: TLabel;
Label18: TLabel;
LaWindAb: TLabel;
LaWindHalb: TLabel;
LaWindAuf: TLabel;
Label15: TLabel;
Label16: TLabel;
Label17: TLabel;
LaWindungen: TLabel;
Label12: TLabel;
LaLaenge: TLabel;
Label2: TLabel;
Label3: TLabel;
Label4: TLabel;
Label5: TLabel;
Label6: TLabel;
Label7: TLabel;
Label8: TLabel;
Label9: TLabel;
MainMenu: TMainMenu;
MDatei: TMenuItem;
MBeenden: TMenuItem;
MenuItem1: TMenuItem;
MenuItem2: TMenuItem;
MenuItem3: TMenuItem;
MenuItem4: TMenuItem;
MHilfe: TMenuItem;
OpenDialog1: TOpenDialog;
Panel1: TPanel;
RaBSingle: TRadioButton;
RaBDual: TRadioButton;
RaBQuad: TRadioButton;
SaveDialog1: TSaveDialog;
Shape1: TShape;
SpBSwitch: TSpeedButton;
StatusBar1: TStatusBar;
procedure BtMatEditClick(Sender: TObject);
procedure CBMaterialChange(Sender: TObject);
procedure ECSwitch1Change(Sender: TObject);
procedure FlSpAWGChange(Sender: TObject);
procedure FlSpBreiteChange(Sender: TObject);
procedure FlSpDurchmesserChange(Sender: TObject);
procedure FlSpmmChange(Sender: TObject);
procedure FlSpSpannungChange(Sender: TObject);
procedure FlSpStaerkeChange(Sender: TObject);
procedure FlSpWegChange(Sender: TObject);
procedure FlSpWiderstandChange(Sender: TObject);
procedure FormClose(Sender: TObject; var CloseAction: TCloseAction);
procedure FormCreate(Sender: TObject);
procedure MBeendenClick(Sender: TObject);
procedure MenuItem1Click(Sender: TObject);
procedure MenuItem2Click(Sender: TObject);
procedure MenuItem3Click(Sender: TObject);
procedure MenuItem4Click(Sender: TObject);
procedure RaBDualChange(Sender: TObject);
procedure RaBQuadChange(Sender: TObject);
procedure RaBSingleChange(Sender: TObject);
procedure CalculateWraps;
procedure SpBSwitchClick(Sender: TObject);
private
{ private declarations }
public
{ public declarations }
end;
var
MainForm: TMainForm;
Durchmesser, Drahtstaerke, FBreite, FStaerke, Wunschohm, Ohmm, Laenge,
Wicklungszahl, Weg, Coils, vohm, vhohm, vpohm, Hflx,
urip_u, urip_r, urip_i, urip_p : Float;
vwraps, vhwraps, vpwraps : String;
Flachdraht : Boolean;
implementation
{$R *.lfm}
{ TMainForm }
function AWGTomm(AWG : Integer) : Float; // Umwandlung AWG (Gauge) in Millimeter
begin
AWGTomm := 0.127 * (92 ** ((36 - AWG)/39));
end;
function mmToAWG(mm : Float) : Integer; // Umwandlung Millimeter in AWG (Gauge)
var AW : Float;
begin
AW := -39 * logn(92, (mm / 0.127)) + 36;
mmToAWG := round(AW);
end;
function ohmpermeter(rho, d : Float) : Float; // Errechnen Ohm/m
begin
ohmpermeter := rho * (1 / (PI * (power(d,2) / 4)));
end;
function ohmpermeter_flat(rho, breite, staerke : Float) : Float; // Errechnen Ohm/m für Flachdraht
begin
ohmpermeter_flat := rho * (1 / (breite * staerke));
end;
procedure TMainForm.CalculateWraps; // Wicklungen berechnen
var
Radius, Umfang, Wohm, pvh, pvg : Float;
dz : Integer;
begin
Wohm := Wunschohm * Coils;
Laenge := Wohm * 1000 / Ohmm;
Radius := Durchmesser / 2;
Radius := Radius + Drahtstaerke;
Umfang := 2 * pi * Radius;
Wicklungszahl := (Laenge - Weg) / Umfang;
dz := trunc(Wicklungszahl);
vwraps := IntToStr(dz) + '.0'; // ganze Wicklung
vhwraps := IntToStr(dz) + '.5'; // + halbe Wicklung
vpwraps := IntToStr(dz+1) + '.0'; // ganze Wicklung + 1
vohm := (Umfang * dz + Weg * 2) * Ohmm / 1000;
pvh := (Umfang / 2) * Ohmm / 1000;
vhohm := vohm + pvh;
pvg := Umfang * Ohmm / 1000;
vpohm := vohm + pvh + pvg;
urip_r := (Umfang * Wicklungszahl + Weg * 2) * Ohmm / 1000;
urip_r := urip_r / Coils;
urip_i := urip_u / urip_r;
urip_p := urip_u * urip_i;
LaLaenge.Caption := FloatToStrF(Laenge,ffFixed,2,2);
LaWindungen.Caption := FloatToStrF(Wicklungszahl,ffFixed,2,2);
LaWindAb.Caption := vwraps;
LaWindHalb.Caption := vhwraps;
LaWindAuf.Caption := vpwraps;
LaOhmAb.Caption := FloatToStrF(vohm,ffFixed,2,2) + ' Ω';
LaOhmHalb.Caption := FloatToStrF(vhohm,ffFixed,2,2) + ' Ω';
LaOhmAuf.Caption := FloatToStrF(vpohm,ffFixed,2,2) + ' Ω';
EdStrom.Caption := FloatToStrF(urip_i,ffFixed,2,2);
EdLeistung.Caption := FloatToStrF(urip_p,ffFixed,2,2);
if urip_i >= 10.0 then
begin
Shape1.Pen.Color := clRed;
Shape1.Brush.Color := clRed
end
else
Shape1.Pen.Color := clGreen;
Hflx := (urip_p*1000)/(2*PI*(Drahtstaerke/2)*Laenge);
EdHflx.Caption := FloatToStrF(Hflx,ffFixed,4,0);
if Hflx < 775 then
begin
Shape1.Pen.Color := RGBToColor(234, 190, 14);
Shape1.Brush.Color := RGBToColor(234, 190, 14)
end;
if Hflx < 550 then
begin
Shape1.Pen.Color := clLime;
Shape1.Brush.Color := clLime
end;
if Hflx < 325 then
begin
Shape1.Pen.Color := clAqua;
Shape1.Brush.Color := clAqua
end;
if Hflx >= 775 then
begin
Shape1.Pen.Color := clRed;
Shape1.Brush.Color := clRed
end;
end;
procedure TMainForm.SpBSwitchClick(Sender: TObject); // Breite und Stärke tauschen
var ValTmp : Double;
begin
ValTmp := FlSpBreite.Value;
FlSpBreite.Value := FlSpStaerke.Value;
FlSpStaerke.Value := ValTmp;
CalculateWraps;
end;
procedure TMainForm.FormCreate(Sender: TObject);
begin
InitData; // Werte initialisieren
CBMaterial.Items := materialien;
Durchmesser := 3.0;
Wunschohm := 0.5;
if Flachdraht then
Ohmm := ohmpermeter_flat(spezwid[0], 0.25, 0.12)
else
Ohmm := ohmpermeter(spezwid[0], 0.4);
Drahtstaerke := 0.4;
Weg := 1.0;
Coils := 1.0;
urip_u := 3.6;
urip_i := 7.23;
urip_p := 26.76;
if urip_i >= 10.0 then
EdStrom.Font.Color := clRed
else
EdStrom.Font.Color := clGreen;
Flachdraht := false
end;
procedure TMainForm.MBeendenClick(Sender: TObject);
begin
application.terminate;
end;
procedure TMainForm.MenuItem1Click(Sender: TObject);
var
CoilSetup : TStringList;
filename : string;
begin
CoilSetup := TStringList.Create;
CoilSetup.Add(CBMaterial.Items[CBMaterial.ItemIndex]);
CoilSetup.Add(FloatToStrF(FlSpmm.Value,ffFixed,2,2));
CoilSetup.Add(FloatToStrF(FlSpWiderstand.Value,ffFixed,2,2));
CoilSetup.Add(FloatToStrF(FlSpDurchmesser.Value,ffFixed,2,2));
CoilSetup.Add(FloatToStrF(FlSpWeg.Value,ffFixed,2,2));
CoilSetup.Add(FloatToStrF(Coils,ffFixed,1,1));
CoilSetup.Add(FloatToStrF(FlSpBreite.Value,ffFixed,2,2));
CoilSetup.Add(FloatToStrF(FlSpStaerke.Value,ffFixed,2,2));
if Flachdraht then
CoilSetup.Add('f')
else
CoilSetup.Add('r');
if SaveDialog1.Execute then
begin
if FileExists(SaveDialog1.FileName) then
if MessageDlg('Datei überschreiben', 'Die Datei ' + ExtractFileName(SaveDialog1.FileName) + ' existiert bereits! Datei überschreiben?',
mtConfirmation, [mbYes, mbNo],0) = mrYes then
begin
filename := SaveDialog1.Filename;
CoilSetup.SaveToFile(filename);
EdFile.Text := ExtractFileName(SaveDialog1.FileName)
end;
if not FileExists(SaveDialog1.FileName) then
begin
filename := SaveDialog1.Filename;
CoilSetup.SaveToFile(filename);
EdFile.Text := ExtractFileName(SaveDialog1.FileName)
end;
end;
CoilSetup.Free;
end;
procedure TMainForm.MenuItem2Click(Sender: TObject);
var
CoilSetup : TStringList;
filename : string;
Mater, mil, Widerst, Durchm, We, Cls, Bre, Stae : string;
i : Integer;
begin
CoilSetup := TStringList.Create;
if OpenDialog1.Execute then
begin
filename := OpenDialog1.Filename;
CoilSetup.LoadFromFile(filename);
Mater := CoilSetup[0];
mil := CoilSetup[1];
Widerst := CoilSetup[2];
Durchm := CoilSetup[3];
We := CoilSetup[4];
Cls := CoilSetup[5];
if CoilSetup.Count < 7 then
begin
Bre := '0.25';
Stae := '0.12';
ECSwitch1.Checked := false;
Flachdraht := false;
Label3.Caption:='mm';
Label4.Caption:='AWG';
FlSpmm.Visible:=true;
FlSpAWG.Visible:=true;
FlSpBreite.Visible:=false;
FlSpStaerke.Visible:=false;
Drahtstaerke := FlSpmm.Value;
Ohmm := ohmpermeter(spezwid[CBMaterial.ItemIndex], Drahtstaerke);
ShowMessage('Alte Sicherungsdatei!');
end
else
begin
Bre := CoilSetup[6];
Stae := CoilSetup[7];
if CoilSetup[8] = 'f' then
begin
ECSwitch1.Checked := true;
Flachdraht := true;
Label3.Caption:='Breite';
Label4.Caption:='Stärke';
FlSpmm.Visible:=false;
FlSpAWG.Visible:=false;
FlSpBreite.Visible:=true;
FlSpStaerke.Visible:=true;
FBreite := FlSpBreite.Value;
FStaerke := FlSpStaerke.Value;
Ohmm := ohmpermeter_flat(spezwid[CBMaterial.ItemIndex], FBreite, FStaerke);
end
else
begin
ECSwitch1.Checked := false;
Flachdraht := false;
Label3.Caption:='mm';
Label4.Caption:='AWG';
FlSpmm.Visible:=true;
FlSpAWG.Visible:=true;
FlSpBreite.Visible:=false;
FlSpStaerke.Visible:=false;
Drahtstaerke := FlSpmm.Value;
Ohmm := ohmpermeter(spezwid[CBMaterial.ItemIndex], Drahtstaerke);
end;
end;
for i := 0 to materialien.Count -1 do
if Mater = materialien[i] then
begin
CBMaterial.Text := materialien[i];
CBMaterial.ItemIndex := i;
end;
FlSpmm.value := MyStrToFloat(mil);
FlSpAWG.Value := mmToAWG(FlSpmm.Value);
FlSpBreite.Value := MyStrToFloat(bre);
FlSpStaerke.Value := MyStrToFloat(stae);
Drahtstaerke := FlSpmm.Value;
FBreite := FlSpBreite.Value;
FStaerke := FlSpStaerke.Value;
if Flachdraht then
Ohmm := ohmpermeter_flat(spezwid[CBMaterial.ItemIndex], FBreite, FStaerke)
else
Ohmm := ohmpermeter(spezwid[CBMaterial.ItemIndex], Drahtstaerke);
FlSpWiderstand.Value := MyStrToFloat(Widerst);
Wunschohm := FlSpWiderstand.Value;
FlSpDurchmesser.Value := MyStrToFloat(Durchm);
Durchmesser := FlSpDurchmesser.Value;
FlSpWeg.Value := MyStrToFloat(We);
Weg := FlSpWeg.Value;
case trunc(MyStrToFloat(Cls)) of
1: RaBSingle.Checked := true;
2: RaBDual.Checked := true;
4: RaBQuad.Checked := true;
end;
if RaBSingle.Checked then Coils := 1.0;
if RaBDual.Checked then Coils := 2.0;
if RaBQuad.Checked then Coils := 4.0;
CalculateWraps;
EdFile.Text := ExtractFileName(OpenDialog1.FileName)
end;
CoilSetup.Free;
end;
procedure TMainForm.MenuItem3Click(Sender: TObject);
begin
FUeber.ShowModal;
end;
procedure TMainForm.MenuItem4Click(Sender: TObject);
begin
OpenURL('docs/help.html');
end;
procedure TMainForm.RaBDualChange(Sender: TObject);
begin
if RaBSingle.Checked then Coils := 1.0;
if RaBDual.Checked then Coils := 2.0;
if RaBQuad.Checked then Coils := 4.0;
CalculateWraps;
end;
procedure TMainForm.RaBQuadChange(Sender: TObject);
begin
if RaBSingle.Checked then Coils := 1.0;
if RaBDual.Checked then Coils := 2.0;
if RaBQuad.Checked then Coils := 4.0;
CalculateWraps;
end;
procedure TMainForm.RaBSingleChange(Sender: TObject);
begin
if RaBSingle.Checked then Coils := 1.0;
if RaBDual.Checked then Coils := 2.0;
if RaBQuad.Checked then Coils := 4.0;
CalculateWraps;
end;
procedure TMainForm.FormClose(Sender: TObject; var CloseAction: TCloseAction);
begin
application.terminate;
end;
procedure TMainForm.FlSpAWGChange(Sender: TObject);
begin
FlSpmm.Value := AWGTomm(trunc(FlSpAWG.Value));
Drahtstaerke := FlSpmm.Value;
Ohmm := ohmpermeter(spezwid[CBMaterial.ItemIndex], Drahtstaerke);
CalculateWraps;
end;
procedure TMainForm.FlSpBreiteChange(Sender: TObject);
begin
FBreite := FlSpBreite.Value;
FStaerke := FlSpStaerke.Value;
Ohmm := ohmpermeter_flat(spezwid[CBMaterial.ItemIndex], FBreite, FStaerke);
CalculateWraps;
end;
procedure TMainForm.FlSpDurchmesserChange(Sender: TObject);
begin
Durchmesser := FlSpDurchmesser.Value;
CalculateWraps;
end;
procedure TMainForm.FlSpmmChange(Sender: TObject);
begin
FlSpAWG.Value := mmToAWG(FlSpmm.Value);
Drahtstaerke := FlSpmm.Value;
Ohmm := ohmpermeter(spezwid[CBMaterial.ItemIndex], Drahtstaerke);
CalculateWraps;
end;
procedure TMainForm.FlSpSpannungChange(Sender: TObject);
begin
urip_u := FlSpSpannung.Value;
CalculateWraps;
EdStrom.Caption := FloatToStrF(urip_i,ffFixed,2,2);
EdLeistung.Caption := FloatToStrF(urip_p,ffFixed,2,2);
if urip_i >= 10.0 then
Label13.Font.Color := clRed
else
Label13.Font.Color := clGreen
end;
procedure TMainForm.FlSpStaerkeChange(Sender: TObject);
begin
FBreite := FlSpBreite.Value;
FStaerke := FlSpStaerke.Value;
Ohmm := ohmpermeter_flat(spezwid[CBMaterial.ItemIndex], FBreite, FStaerke);
CalculateWraps;
end;
procedure TMainForm.FlSpWegChange(Sender: TObject);
begin
Weg := FlSpWeg.Value;
CalculateWraps;
end;
procedure TMainForm.FlSpWiderstandChange(Sender: TObject);
begin
Wunschohm := FlSpWiderstand.Value;
CalculateWraps;
end;
procedure TMainForm.CBMaterialChange(Sender: TObject);
begin
FBreite := FlSpBreite.Value;
FStaerke := FlSpStaerke.Value;
if Flachdraht then
Ohmm := ohmpermeter_flat(spezwid[CBMaterial.ItemIndex], FBreite, FStaerke)
else
Ohmm := ohmpermeter(spezwid[CBMaterial.ItemIndex], Drahtstaerke);
CalculateWraps;
end;
procedure TMainForm.ECSwitch1Change(Sender: TObject);
begin
if ECSwitch1.Checked then
begin
Flachdraht := true;
Label3.Caption:='Breite';
Label4.Caption:='Stärke';
FlSpmm.Visible:=false;
FlSpAWG.Visible:=false;
FlSpBreite.Visible:=true;
FlSpStaerke.Visible:=true;
FBreite := FlSpBreite.Value;
FStaerke := FlSpStaerke.Value;
Ohmm := ohmpermeter_flat(spezwid[CBMaterial.ItemIndex], FBreite, FStaerke);
SpBSwitch.Visible := true;
end
else
begin
Flachdraht := false;
Label3.Caption:='mm';
Label4.Caption:='AWG';
FlSpmm.Visible:=true;
FlSpAWG.Visible:=true;
FlSpBreite.Visible:=false;
FlSpStaerke.Visible:=false;
Drahtstaerke := FlSpmm.Value;
Ohmm := ohmpermeter(spezwid[CBMaterial.ItemIndex], Drahtstaerke);
SpBSwitch.Visible := false;
end;
CalculateWraps;
end;
procedure TMainForm.BtMatEditClick(Sender: TObject);
begin
MatEditor.ShowModal;
CBMaterial.Items := materialien;
CBMaterial.ItemIndex := 0;
Durchmesser := 3.0;
Wunschohm := 0.5;
if Flachdraht then
Ohmm := ohmpermeter_flat(spezwid[0], 0.25, 0.12)
else
Ohmm := ohmpermeter(spezwid[0], 0.4);
Drahtstaerke := 0.4;
FBreite := 0.25;
FStaerke := 0.12;
Weg := 1.0;
Coils := 1.0;
urip_u := 3.6;
urip_i := 7.23;
urip_p := 26.76;
if urip_i >= 10.0 then
EdStrom.Font.Color := clRed
else
EdStrom.Font.Color := clGreen;
CalculateWraps;
end;
end.

1853
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unit Unit2;
{$mode objfpc}{$H+}
interface
uses
Classes, SysUtils, FileUtil, Forms, Controls, Graphics, Dialogs, ExtCtrls,
StdCtrls, LCLIntf;
type
{ TFUeber }
TFUeber = class(TForm)
Button1: TButton;
Image1: TImage;
Label1: TLabel;
Label2: TLabel;
Label3: TLabel;
procedure Button1Click(Sender: TObject);
procedure Label3Click(Sender: TObject);
procedure Label3MouseEnter(Sender: TObject);
procedure Label3MouseLeave(Sender: TObject);
private
{ private declarations }
public
{ public declarations }
end;
var
FUeber: TFUeber;
implementation
{$R *.lfm}
{ TFUeber }
// Programm-Info / Splash anzeigen
procedure TFUeber.Label3MouseEnter(Sender: TObject);
begin
Label3.Font.Color:=clRed;
end;
procedure TFUeber.Label3Click(Sender: TObject);
begin
OpenURL('https://framagit.org/PepeCyB/keulkulator');
end;
procedure TFUeber.Button1Click(Sender: TObject);
begin
FUeber.Close;
end;
procedure TFUeber.Label3MouseLeave(Sender: TObject);
begin
Label3.Font.Color:=clBlue;
end;
end.

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object MatEditor: TMatEditor
Left = 330
Height = 314
Top = 339
Width = 769
BorderStyle = bsSingle
Caption = 'Material-Editor'
ClientHeight = 314
ClientWidth = 769
OnCreate = FormCreate
OnShow = FormShow
LCLVersion = '2.0.6.0'
object LiBMaterial: TListBox
Left = 8
Height = 252
Top = 48
Width = 216
ItemHeight = 0
OnSelectionChange = LiBMaterialSelectionChange
ScrollWidth = 214
TabOrder = 0
TopIndex = -1
end
object Label1: TLabel
Left = 14
Height = 17
Top = 16
Width = 191
Caption = 'Material -> Ω mm²/m'
Font.Height = -16
Font.Name = 'Sans'
Font.Style = [fsBold]
ParentColor = False
ParentFont = False
end
object GroupBox1: TGroupBox
Left = 247
Height = 170
Top = 30
Width = 513
Caption = 'Daten bearbeiten'
ClientHeight = 150
ClientWidth = 511
Font.Height = -16
Font.Name = 'Sans'
Font.Style = [fsBold]
ParentFont = False
TabOrder = 1
object EdMatName: TEdit
Left = 208
Height = 34
Top = 0
Width = 295
Font.Height = -15
Font.Name = 'Sans'
ParentFont = False
TabOrder = 0
Text = 'EdMatName'
end
object Label2: TLabel
Left = 8
Height = 16
Top = 8
Width = 184
Caption = 'Materialbezeichnung:'
Font.Height = -15
Font.Name = 'Sans'
Font.Style = [fsBold]
ParentColor = False
ParentFont = False
end
object Label3: TLabel
Left = 8
Height = 16
Top = 56
Width = 308
Caption = 'spezifischer Widerstand (Ω mm²/m):'
Font.Height = -15
Font.Name = 'Sans'
Font.Style = [fsBold]
ParentColor = False
ParentFont = False
end
object FlSpspzW: TFloatSpinEdit
Left = 328
Height = 34
Top = 48
Width = 175
Font.Height = -15
Font.Name = 'Sans'
Increment = 0.01
MaxValue = 3
MinValue = 0.01
ParentFont = False
TabOrder = 1
Value = 0.01
end
object BitBtAdd: TBitBtn
Left = 8
Height = 40
Hint = 'Die aktuellen Inhalte der Eingabefelder'#10'als neuen Materialeintrag zufügen'
Top = 96
Width = 159
Caption = 'Eintrag zufügen'
Font.Height = -15
Font.Name = 'Sans'
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}
OnClick = BitBtAddClick
ParentFont = False
ParentShowHint = False
ShowHint = True
TabOrder = 2
end
object BitBtClear: TBitBtn
Left = 176
Height = 40
Hint = 'Inhalt der Eingabefelder zurücksetzen'
Top = 96
Width = 159
Caption = 'Felder löschen'
Font.Height = -15
Font.Name = 'Sans'
Glyph.Data = {
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OnClick = BitBtClearClick
ParentFont = False
ParentShowHint = False
ShowHint = True
TabOrder = 3
end
object BitBtEntryOK: TBitBtn
Left = 343
Height = 40
Hint = 'Geänderten Inhalt der Eingabefelder'#10'übernehmen'
Top = 96
Width = 160
Caption = 'Übernehmen'
Font.Height = -15
Font.Name = 'Sans'
Glyph.Data = {
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OnClick = BitBtEntryOKClick
ParentFont = False
ParentShowHint = False
ShowHint = True
TabOrder = 4
end
end
object BitBtSave: TBitBtn
Left = 424
Height = 36
Hint = 'Aktuelle Materialliste in'#10'Konfigurationsdatei speichern'
Top = 264
Width = 160
Caption = 'Speichern'
Glyph.Data = {
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OnClick = BitBtSaveClick
ParentShowHint = False
ShowHint = True
TabOrder = 3
end
object BitBtClose: TBitBtn
Left = 600
Height = 36
Hint = 'Änderungen verwerfen'
Top = 264
Width = 160
Caption = 'Verwerfen'
Glyph.Data = {
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OnClick = BitBtCloseClick
ParentShowHint = False
ShowHint = True
TabOrder = 4
end
object BitBtOK: TBitBtn
Left = 247
Height = 36
Hint = 'Änderungen in den Keulkulator'#10'übernehmen'
Top = 264
Width = 160
Caption = 'OK'
Glyph.Data = {
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OnClick = BitBtOKClick
ParentShowHint = False
ShowHint = True
TabOrder = 2
end
end

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unit Unit3;
{$mode objfpc}{$H+}
interface
uses
Classes, SysUtils, FileUtil, Forms, Controls, Graphics, Dialogs, StdCtrls,
Spin, Buttons, math, UData, LCLType;
type
{ TMatEditor }
TMatEditor = class(TForm)
BitBtAdd: TBitBtn;
BitBtClear: TBitBtn;
BitBtClose: TBitBtn;
BitBtEntryOK: TBitBtn;
BitBtOK: TBitBtn;
BitBtSave: TBitBtn;
EdMatName: TEdit;
FlSpspzW: TFloatSpinEdit;
GroupBox1: TGroupBox;
Label1: TLabel;
Label2: TLabel;
Label3: TLabel;
LiBMaterial: TListBox;
procedure BitBtAddClick(Sender: TObject);
procedure BitBtClearClick(Sender: TObject);
procedure BitBtCloseClick(Sender: TObject);
procedure BitBtEntryOKClick(Sender: TObject);
procedure BitBtOKClick(Sender: TObject);
procedure BitBtSaveClick(Sender: TObject);
procedure FormCreate(Sender: TObject);
procedure FormShow(Sender: TObject);
procedure LiBMaterialSelectionChange(Sender: TObject; User: boolean);
private
{ private declarations }
public
{ public declarations }
end;
var
MatEditor: TMatEditor;
implementation
{$R *.lfm}
{ TMatEditor }
procedure TMatEditor.FormCreate(Sender: TObject);
var
i : Integer;
begin
LiBMaterial.Items.Clear;
for i := 0 to nummat - 1 do
LiBMaterial.Items.Add(materialien[i] + ' -> ' + FloatToStrF(spezwid[i],ffFixed,2,2));
LiBMaterial.ItemIndex := 0;
EdMatName.Text := materialien[LiBMaterial.ItemIndex];
FlSpspzW.Value := spezwid[LiBMaterial.ItemIndex];
end;
procedure TMatEditor.BitBtCloseClick(Sender: TObject);
var
i : Integer;
begin
configdat.Clear;
configdat.LoadFromFile('material.dat');
nummat := trunc(configdat.Count / 2); // Double Count -> Int64
materialien := TStringList.Create; // Materialien-Liste initialisieren
SetLength(spezwid, nummat); // Array initialisieren
for i := 0 to nummat-1 do
begin
materialien.Add(configdat[i*2]); // Durchlauf in 2er-Schritten
spezwid[i] := MyStrToFloat(configdat[i*2+1]);
end;
Close;
end;
procedure TMatEditor.BitBtEntryOKClick(Sender: TObject);
var
i : Integer;
begin
i := LiBMaterial.ItemIndex;
materialien[i] := EdMatName.Text;
spezwid[i] := FlSpspzW.Value;
LiBMaterial.Items[i] := materialien[i] + ' -> ' + FloatToStrF(spezwid[i],ffFixed,2,2);
end;
procedure TMatEditor.BitBtOKClick(Sender: TObject);
begin
Close;
end;
procedure TMatEditor.BitBtSaveClick(Sender: TObject);
var
savelist : TStringList;
i : Integer;
begin
savelist := TStringList.Create;
for i := 0 to nummat-1 do
begin
savelist.Add(materialien[i]);
savelist.Add(FloatToStrF(spezwid[i],ffFixed,2,2));
end;
savelist.SaveToFile('material.dat');
Application.MessageBox('Materialkonfiguration gespeichert!', 'Speichern',MB_ICONINFORMATION);
close;
end;
procedure TMatEditor.BitBtClearClick(Sender: TObject);
begin
EdMatName.Text := '';
FlSpspzW.Value := 0.01;
end;
procedure TMatEditor.BitBtAddClick(Sender: TObject);
var
i : Integer;
begin
materialien.Add(EdMatName.Text);
nummat := nummat + 1;
SetLength(spezwid, nummat);
spezwid[nummat - 1] := FlSpspzW.Value;
LiBMaterial.Items.Clear;
for i := 0 to nummat - 1 do
LiBMaterial.Items.Add(materialien[i] + ' -> ' + FloatToStrF(spezwid[i],ffFixed,2,2));
LiBMaterial.ItemIndex := 0;
EdMatName.Text := materialien[LiBMaterial.ItemIndex];
FlSpspzW.Value := spezwid[LiBMaterial.ItemIndex];
end;
procedure TMatEditor.FormShow(Sender: TObject);
var
i : Integer;
begin
LiBMaterial.Items.Clear;
for i := 0 to nummat - 1 do
LiBMaterial.Items.Add(materialien[i] + ' -> ' + FloatToStrF(spezwid[i],ffFixed,2,2));
LiBMaterial.ItemIndex := 0;
EdMatName.Text := materialien[LiBMaterial.ItemIndex];
FlSpspzW.Value := spezwid[LiBMaterial.ItemIndex];
end;
procedure TMatEditor.LiBMaterialSelectionChange(Sender: TObject; User: boolean);
begin
EdMatName.Text := materialien[LiBMaterial.ItemIndex];
FlSpspzW.Value := spezwid[LiBMaterial.ItemIndex];
end;
end.