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| #include <windows.h>
#include <math.h>
#define ID_BUTTON_GO 3000
#define ID_BUTTON_CLOSE 3001
#define ID_EDIT_1 1000
#define ID_EDIT_2 1001
#define ID_EDIT_3 1002
#define ID_EDIT_4 1003
//объявление функций
BOOL RegClass(WNDPROC, LPCSTR,UINT);
LRESULT CALLBACK WndProc(HWND, UINT, WPARAM, LPARAM);
//описание глобальных переменных
HINSTANCE hInst;
TCHAR szClassName[] = "WindowAppClass";
TCHAR cutoffFrequencyText[] = "Граничная частота транзисторов VT1 и VT2, Гц: ";
TCHAR capacitorsText[] = "Ёмкости кондесаторов C1 и С2, мкФ:";
TCHAR supplyVoltageText[] = "Напряжение источника питания, В: ";
TCHAR resistanceR1R4Text[] = "Сопротивление резисторов R1 и R4, Ом: ";
TCHAR resistanceR2R3Text[] = "Сопротивление резисторов R2 и R3, кОм: ";
HWND buttonGo;
HWND buttonClose;
HWND edit1;
HWND edit2;
HWND edit3;
HWND edit4;
HWND label1;
HWND label2;
HWND label3;
HWND label4;
HWND cutoffFrequencyLabel;
HWND capacitorsLabel;
HWND supplyVoltageLabel;
HWND resistanceR1R4Label;
HWND resistanceR2R3Label;
TCHAR chBuff[100];
//описание главной функции
int WINAPI WinMain(HINSTANCE hInstance, HINSTANCE hPrevInstance, LPSTR lpszCmdLine, int nCmdShow)
{
MSG msg;
HWND hwnd;
hInst = hInstance;
if(!RegClass(WndProc,szClassName,COLOR_WINDOW)) return FALSE;
hwnd = CreateWindow(szClassName, "ЙА ПРАГРАММАА", WS_OVERLAPPEDWINDOW | WS_VISIBLE | WS_SYSMENU | WS_MINIMIZEBOX, 440, 480, CW_USEDEFAULT, CW_USEDEFAULT, 0, 0, hInstance, NULL);
if(!hwnd) return FALSE;
while(GetMessage(&msg, 0, 0, 0)) DispatchMessage(&msg);
return msg.wParam;
}
//описание функции регистрации классов
BOOL RegClass(WNDPROC Proc, LPCTSTR szName, UINT brBackground)
{
WNDCLASS wndClass;
wndClass.style = wndClass.cbClsExtra = wndClass.cbClsExtra = 0;
wndClass.lpfnWndProc = Proc;
wndClass.hInstance = hInst;
wndClass.hIcon = LoadIcon(NULL, IDI_APPLICATION);
wndClass.hCursor = LoadCursor(NULL, IDC_ARROW);
wndClass.hbrBackground = (HBRUSH)(brBackground + 1);
wndClass.lpszMenuName = NULL;
wndClass.lpszClassName = szName;
return(RegisterClass(&wndClass) != 0);
}
LRESULT CALLBACK WndProc(HWND hwnd,UINT msg,WPARAM wParam,LPARAM lParam)
{
HINSTANCE hInstance;
switch(msg)
{
case WM_DESTROY :
{
PostQuitMessage(0);
return 0;
}
case WM_CREATE :
{
buttonGo = CreateWindow("BUTTON", "Рассчитать", WS_CHILD | WS_VISIBLE | BS_DEFPUSHBUTTON, 30, 130, 90, 22, hwnd, (HMENU)ID_BUTTON_GO, hInstance, NULL);
buttonClose = CreateWindow("BUTTON", "Закрыть", WS_CHILD | WS_VISIBLE | BS_DEFPUSHBUTTON, 200, 130, 90, 22, hwnd, (HMENU)ID_BUTTON_CLOSE, hInstance, NULL);
edit1 = CreateWindow("EDIT",NULL, WS_BORDER | WS_VISIBLE | WS_CHILD | ES_MULTILINE, 330, 3, 70, 22, hwnd, (HMENU)ID_EDIT_1, hInstance, NULL);
edit2 = CreateWindow("EDIT", NULL, WS_CHILD | WS_VISIBLE | WS_BORDER | ES_LEFT, 330, 30, 70, 22, hwnd, (HMENU)ID_EDIT_2, hInstance, NULL);
edit3 = CreateWindow("EDIT", NULL, WS_CHILD | WS_VISIBLE | WS_BORDER | ES_LEFT, 330, 60, 70, 22, hwnd, (HMENU)ID_EDIT_3, hInstance, NULL);
edit4 = CreateWindow("EDIT", NULL, WS_CHILD | WS_VISIBLE | WS_BORDER | ES_LEFT, 330, 90, 70, 22, hwnd, (HMENU)ID_EDIT_4, hInstance, NULL);
label1 = CreateWindow("STATIC", "Значения h21э транзисторов VT1 и VT2: ", WS_CHILD | WS_VISIBLE | SS_CENTER, 5, 6, 320, 20, hwnd, (HMENU)0, hInstance, NULL);
label2 = CreateWindow("STATIC", "Токи коллекторов транзисторов VT1 и VT2, мА: ", WS_CHILD | WS_VISIBLE | SS_CENTER, 5, 31, 320, 20, hwnd, (HMENU)0, hInstance, NULL);
label3 = CreateWindow("STATIC", "Выходное напряжение, В: ", WS_CHILD | WS_VISIBLE | SS_CENTER, 5, 61, 320, 20, hwnd, (HMENU)0, hInstance, NULL);
label4 = CreateWindow("STATIC", "Частота генерируемых импульсов: ", WS_CHILD | WS_VISIBLE | SS_CENTER, 5, 91, 320, 20, hwnd, (HMENU)0, hInstance, NULL);
SetFocus(edit1);
/** textbox=CreateWindowEx(NULL,"EDIT","", WS_BORDER| WS_VISIBLE| WS_CHILD|ES_MULTILINE,
330, 3, 70, 22,hWnd,(HMENU)ID_EDIT,hInst,NULL);*/
static HWND resLabel = CreateWindow("STATIC", "Результат расчета: ", WS_CHILD | WS_VISIBLE | SS_CENTER, 5, 160, 400, 20, hwnd, (HMENU)0, hInstance, NULL);
cutoffFrequencyLabel = CreateWindow("STATIC", cutoffFrequencyText, WS_CHILD | WS_VISIBLE | SS_CENTER, 5, 200, 400, 20, hwnd, (HMENU)0, hInstance, NULL);
capacitorsLabel = CreateWindow("STATIC", capacitorsText, WS_CHILD | WS_VISIBLE | SS_CENTER, 5, 230, 400, 20, hwnd, (HMENU)0, hInstance, NULL);
supplyVoltageLabel = CreateWindow("STATIC", supplyVoltageText, WS_CHILD | WS_VISIBLE | SS_CENTER, 5, 260, 400, 20, hwnd, (HMENU)0, hInstance, NULL);
resistanceR1R4Label = CreateWindow("STATIC", resistanceR1R4Text, WS_CHILD | WS_VISIBLE | SS_CENTER, 5, 290, 400, 20, hwnd, (HMENU)0, hInstance, NULL);
resistanceR2R3Label = CreateWindow("STATIC", resistanceR2R3Text, WS_CHILD | WS_VISIBLE | SS_CENTER, 5, 320, 400, 20, hwnd, (HMENU)0, hInstance, NULL);
return 0;
}
case WM_COMMAND :
{
switch(LOWORD(wParam))
{
case ID_BUTTON_GO :
{
double cutoffFrequency; /** Граничная частота транзисторов VT1 и VT2 */
double capacitors; /** Ёмкости кондесаторов C1 и С2 */;
double supplyVoltage; /** Напряжение источника питания */;
double resistanceR1R4; /** Сопротивление резисторов R1 и R4 */;
double resistanceR2R3; /** Сопротивление резисторов R2 и R3 */
/** Декларирование переменных */
/** Исходные данные */
double h21, Ik, Un, F; /** h21 - это h21э, Ik - ток коллекторов транзисторов VT1 и VT2, Un - выходное напряжение; F - частота генерируемых импульсов */
/** Вспомогательные переменные */
float frequencyInput, frequencyOutput, capacitorsNF;
/** Результаты расчёта */
double frequencyMinimum;
SendMessage(edit1, EM_GETLINE, 0, (LPARAM)chBuff);
h21 = atof(chBuff);//TlsGetValue()
SendMessage(edit2, EM_GETLINE, 0, (LPARAM)chBuff);
Ik = atof(chBuff);
SendMessage(edit3, EM_GETLINE, 0, (LPARAM)chBuff);
Un = atof(chBuff);
SendMessage(edit4, EM_GETLINE, 0, (LPARAM)chBuff);
F = atof(chBuff);
/** begin */
// Пересчитываем частоту из кГц в Гц
F = frequencyInput * 1000.0;
// Расчёт
// Максимальная частота генерации, Гц
frequencyMinimum = (6.3 * F) / 1.2;
// Напряжение источника питания, В
cutoffFrequency = (1.2 * Un) + 0.6;
// Сопротивление коллекторного резистора, кОм
resistanceR1R4 = cutoffFrequency / (Ik * 0.7);
// Сопротивление в цепи базы R2, кОм
resistanceR2R3 = h21 * resistanceR1R4;
// Ёмкости конденсаторов C1 и C2, мкФ
capacitors = ((1.0 / F) / (0.6931471805599 * resistanceR2R3 * 1000.0)) * 1000000.0;
// Пересчитываем частоту из Гц в кГц
frequencyOutput = frequencyMinimum / 1000.0;
// Пересчитываем ёмкость C1 из мкФ в нФ
capacitorsNF = capacitors * 1000.0;
/** end */
if(frequencyOutput > 100.0)
{
frequencyOutput = floor(frequencyOutput + 0.5);
////Label10->Caption=FloatToStrF(frequencyOutput,ffFixed,18,0);
}
else
{
if(frequencyOutput > 10.0)
{
frequencyOutput *= 10.0;
frequencyOutput = (floor(frequencyOutput + 0.5)) / 10.0;
//Label10->Caption=FloatToStrF(frequencyOutput,ffFixed,17,1);
}
else
{
if((frequencyOutput < 10.0) && (frequencyOutput > 0.01))
{
frequencyOutput = frequencyOutput * 10000.0;
frequencyOutput = (floor(frequencyOutput + 0.5)) / 10000.0;
//Label10->Caption=FloatToStrF(frequencyOutput,ffFixed,14,4);
}
else
{
if((frequencyOutput < 0.01) && (frequencyOutput > 0.00001))
{
frequencyOutput = frequencyOutput * 100000000.0;
frequencyOutput = (floor(frequencyOutput + 0.5)) / 100000000.0;
//Label10->Caption=FloatToStrF(frequencyOutput,ffFixed,10,8);
}
else
{
if((frequencyOutput < 0.00001) && (frequencyOutput > 0.0000001))
{
frequencyOutput = frequencyOutput * 1000000000000.0;
frequencyOutput = (floor(frequencyOutput + 0.5)) / 1000000000000.0;
//Label10->Caption=FloatToStrF(frequencyOutput,ffFixed,6,12);
}
else
{
frequencyOutput = frequencyOutput * 100000000000000000.0;
frequencyOutput = (floor(frequencyOutput + 0.5)) / 100000000000000000.0;
//Label10->Caption=FloatToStrF(frequencyOutput,ffFixed,1,17);
}
}
}
}
}
if(capacitorsNF > 100.0)
{
capacitorsNF = floor(capacitorsNF + 0.5);
//Label11->Caption=FloatToStrF(capacitorsNF,ffFixed,18,0);
}
else
{
if(capacitorsNF > 10.0)
{
capacitorsNF *= 10.0;
capacitorsNF = (floor(capacitorsNF + 0.5)) / 10.0;
//Label11->Caption=FloatToStrF(capacitorsNF,ffFixed,17,1);
}
else
{
if((capacitorsNF < 10.0) && (capacitorsNF > 0.1))
{
capacitorsNF = capacitorsNF * 100.0;
capacitorsNF = (floor(capacitorsNF + 0.5)) / 100.0;
//Label11->Caption=FloatToStrF(capacitorsNF,ffFixed,16,2);
}
else
{
if((capacitorsNF < 0.1) && (capacitorsNF > 0.001))
{
capacitorsNF = capacitorsNF * 10000.0;
capacitorsNF = (floor(capacitorsNF + 0.5)) / 10000.0;
//Label11->Caption=FloatToStrF(capacitorsNF,ffFixed,14,4);
}
else MessageBox(NULL, "Ёмкости конденсаторов C1 и C2 получились менее 1 пФ. Реализовать такой мультивибратор будет крайне сложно:(", NULL, 0);
}
}
}
//////////////////////////////////////////
cutoffFrequency *= 10.0;
cutoffFrequency = (floor(cutoffFrequency + 0.5)) / 10.0;
//Label12->Caption=FloatToStrF(cutoffFrequency,ffFixed,17,1);
/////////////////////////////////////////
// Пересчитываем сопротивление R1 из кОм в Ом
resistanceR1R4 = resistanceR1R4 * 1000.0;
if(resistanceR1R4 > 10.0)
{
resistanceR1R4 = floor(resistanceR1R4 + 0.5);
//Label13->Caption=FloatToStrF(resistanceR1R4,ffFixed,18,0);
}
else
{
if((resistanceR1R4 < 10.0) && (resistanceR1R4 > 1))
{
resistanceR1R4 *= 10.0;
resistanceR1R4 = (floor(resistanceR1R4 + 0.5)) / 10.0;
//Label13->Caption=FloatToStrF(resistanceR1R4,ffFixed,17,1);
}
else MessageBox(NULL, "Сопротивления резисторов R1 и R4 получились менее 1 Ом. Реализовать такой мультивибратор будет сложно:(", NULL, 0);
}
//////////////////////////////////////////
if(resistanceR2R3 > 10.0)
{
resistanceR2R3 = floor(resistanceR2R3 + 0.5);
//Label14->Caption=FloatToStrF(R2,ffFixed,18,0);
}
else
{
if((resistanceR2R3 < 10.0) && (resistanceR2R3 > 0.1))
{
resistanceR2R3 *= 10.0;
resistanceR2R3 = (floor(resistanceR2R3 + 0.5)) / 10.0;
//Label14->Caption=FloatToStrF(R2,ffFixed,16,2);
}
else
{
if((resistanceR2R3 < 0.1) && (resistanceR2R3 > 0.001))
{
resistanceR2R3 = resistanceR2R3 * 10000.0;
resistanceR2R3 = (floor(resistanceR2R3 + 0.5)) / 10000.0;
//Label14->Caption=FloatToStrF(R2,ffFixed,14,4);
}
else MessageBox(NULL, "Сопротивления резисторов R2 и R3 получились менее 1 Ом. Реализовать такой мультивибратор будет крайне сложно:(", NULL, 0);
}
}
// MessageBox(hwnd, "Clicked it's buttonGo", "Message from button)", MB_OK);
// SendMessage((HWND)lParam, BM_SETSTATE, TRUE, 0L);
return 0;
}
case ID_BUTTON_CLOSE :
{
SendMessage(hwnd, WM_CLOSE, 0, 0);
return 0;
}
}
} /** end WM_COMMAND */
}
return DefWindowProc(hwnd, msg, wParam, lParam);
} |