請先看『使用說明』
IO Device:F81801 DIO under Windows
From LEXWiKi
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== The Sample code source you can download from == | == The Sample code source you can download from == | ||
- | = | ||
- | + | <Google Drive> | |
- | + | Source file: [https://drive.google.com/file/d/1Fciv3PDcxEip3CuulTCI-Qm40OIluT_a/view?usp=sharing F81801_DIO_v0.2W_Src] | |
- | + | ||
- | == | + | Binary file: [https://drive.google.com/file/d/16De8328hxGKQYdu01cwSAUrlsU4tIchL/view?usp=sharing F81801_DIO_v0.2W_Bin_x86] |
+ | [https://drive.google.com/file/d/12GDMH9O7fmINhEr3Vc42-k6c9mZEBq1v/view?usp=sharing F81801_DIO_v0.2W_Bin_x64]<br /> | ||
+ | <FTP> | ||
+ | |||
+ | Source file: [ftp://ftp.lex.com.tw/Engineer/SoftSupport/AP_Module/F81801_DIO/windows_base/F81801_DIO_v0.2_Src_W.zip F81801_DIO_v0.2W_Src] | ||
+ | |||
+ | Binary file: [ftp://ftp.lex.com.tw/Engineer/SoftSupport/AP_Module/F81801_DIO/windows_base/F81801_DIO_v0.2_x86_Bin_W.zip F81801_DIO_v0.2W_Bin_x86] | ||
+ | [ftp://ftp.lex.com.tw/Engineer/SoftSupport/AP_Module/F81801_DIO/windows_base/F81801_DIO_v0.2_x64_Bin_W.zip F81801_DIO_v0.2W_Bin_x64]<br /> | ||
+ | |||
+ | == How to use this Demo Application == | ||
+ | [[Image:F81801_DIO.jpg]] | ||
== Introduction == | == Introduction == |
Current revision
Contents |
The Sample code source you can download from
<Google Drive>
Source file: F81801_DIO_v0.2W_Src
Binary file: F81801_DIO_v0.2W_Bin_x86
F81801_DIO_v0.2W_Bin_x64
<FTP>
Source file: F81801_DIO_v0.2W_Src
Binary file: F81801_DIO_v0.2W_Bin_x86
F81801_DIO_v0.2W_Bin_x64
How to use this Demo Application
Introduction
F81801 OPEN
BOOL F81801U_Open() { SetPortVal(0x2e, 0x87, 1); SetPortVal(0x2e, 0x87, 1); if (F81801U_Read(CHIP_ID_REGISTER1) == CHIP_ID_DEFAULT_VALUE1 && F81801U_Read(CHIP_ID_REGISTER2) == CHIP_ID_DEFAULT_VALUE2) return TRUE; return FALSE; }
F81801 CLOSE
void F81801U_Close() { SetPortVal(0x2e, 0xaa, 1); }
Initial internal F81801
void F81801U_Init() { F81801U_Write(Logic_Device_Number_Register, GPIO_Device_Configuration_Registers);// GPIO Device Configuration Registers (LDN CR06) F81801U_Write(GPIO3_Output_Enable_Register, 0xf0);//GPIO34~GPIO37 OUTPUT SET / GPIO30~GPIO33 INPUT SET F81801U_Write(GPIO3_Drive_Enable_Register, 0xf0);//GPIO34~GPIO37 DRIVE SET F81801U_Write(Logic_Device_Number_Register, WDT_Registers); F81801U_Write(WDTDE, 0x01); F81801U_Write(WDT_REG1, 0x40); F81801U_Write(WDOUT_EN, 0x80); }
F81801U READ
DWORD F81801U_Read(DWORD dwAddrVal) { DWORD dwPortVal; ::SetPortVal(0x2e, dwAddrVal, 1); ::GetPortVal(0x2f, &dwPortVal, 1); return (dwPortVal & 0x00FF); }
F81801U WRITE
void F81801U_Write(DWORD dwAddrVal, DWORD dwPortVal) { ::SetPortVal(0x2e, dwAddrVal, 1); ::SetPortVal(0x2f, dwPortVal, 1); }
F81801U GetDigitalInput
BYTE F81801U_GetDigitalInput() { CString tmp; BYTE byteGPIO3X = 0; BYTE byteData = 0; byteGPIO3X = F81801U_Read(GPIO3_Pin_Status_Register); byteData = byteGPIO3X & 0x0F; return byteData; }
F81801U SetDigitalOutput
void F81801U_SetDigitalOutput(BYTE byteValue) { BYTE byteData = 0; byteData = (byteValue & 0x01) ? byteData + 0x10 : byteData; byteData = (byteValue & 0x02) ? byteData + 0x20 : byteData; byteData = (byteValue & 0x04) ? byteData + 0x40 : byteData; byteData = (byteValue & 0x08) ? byteData + 0x80 : byteData; F81801U_Write(GPIO3_Output_Data_Register, byteData); }