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main.cpp
00001 // A simple IO demo using the MCP23S17 library 00002 // 00003 // MCP23S17 Library Copyright (c) 2010 Romilly Cocking 00004 // Released under the MIT License: http://mbed.org/license/mit 00005 // 00006 // See http://mbed.org/users/romilly/notebook/mcp23s17-addressable-16-bit-io-expander-with-spi/ 00007 // 00008 // 00009 // MCP23S17 datasheet http://ww1.microchip.com/downloads/en/DeviceDoc/21952b.pdf 00010 // uses MCP23S17 library version 0.4 00011 00012 #include "mbed.h" 00013 #include "MCP23S17.h" 00014 // Create SPI bus 00015 SPI spi(p5, p6, p7); 00016 // 00017 // Wiring Connections: 00018 // mbed p5,p6,p7 are tied to MCP23S17 SI, SO, SCK pins 00019 // mbed p19 to MCP23S17 CS 00020 // MCP23S17 reset pin pulled high 00021 // MCP23S17 GPA0 connected to GPB0 for loopback test 00022 // A0, A1, A2 of the MCP23S17 are tied to ground on the breadboard, so the 8-bit address for writes is 0x40 00023 // This is referred to as the opcode in the device datasheet 00024 char Opcode = 0x40; 00025 char Opcode2 = 0x42; 00026 00027 // Next create a MCP23S17 00028 // mbed p19 is connected to ~chipSelect on the MCP23S17 00029 MCP23S17 chip = MCP23S17(spi, p19, Opcode); 00030 MCP23S17 chip2 = MCP23S17(spi, p19, Opcode2); 00031 00032 // Optional software reset - mbed p14 to MCP23S17 reset pin 00033 // DigitalOut reset(p14); 00034 00035 DigitalOut led1(LED1); // mbed LED1 is used for test status display 00036 00037 int main() 00038 { 00039 // The MCP23S17 reset pin can just be pulled high, since it has a power on reset circuit. 00040 // The reset pin can be used for a software forced reset by pulling it low with an mbed GPIO pin. 00041 // But just leave it pulled high for this simple demo code. 00042 // After a power on reset, both IO ports default to input mode 00043 // 00044 // Here is the optional code for a software reset 00045 // reset = 0; 00046 // wait_us(1); 00047 // reset = 1; 00048 // 00049 // Set all 8 Port A bits to output direction 00050 chip.direction(PORT_A, 0x00); 00051 chip2.direction(PORT_A, 0x00); 00052 // Set all 8 Port B bits to input direction 00053 chip.direction(PORT_B, 0xFF); 00054 chip2.direction(PORT_B, 0xFF); 00055 led1=0; 00056 00057 while (1) { 00058 chip2.write(PORT_A, !chip.read(PORT_B) & 0x01); 00059 } 00060 }
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