Mario Quartey's Accelerometer Code
Dependencies: MMA8452 N5110 PowerControl mbed
Diff: Accel.cpp
- Revision:
- 2:c3e9a24a3ddf
--- /dev/null Thu Jan 01 00:00:00 1970 +0000 +++ b/Accel.cpp Mon May 11 22:54:16 2015 +0000 @@ -0,0 +1,108 @@ +/** +@file Accel.cpp +@brief Program Implementation +*/ + +#include "Accel.h" +#include "mbed.h" +#include "N5110.h" +#include "MMA8452.h" +#include "PowerControl/PowerControl.h" +#include "PowerControl/EthernetPowerControl.h" + +/// Buffers for values to be read or calculated +char buffer[14]; // each character is 6 pixels wide, screen is 84 pixels (84/6 = 14) +char buffer1[14]; // each character is 6 pixels wide, screen is 84 pixels (84/6 = 14) +char buffer2[14]; // each character is 6 pixels wide, screen is 84 pixels (84/6 = 14) +char buffer3[14]; // each character is 6 pixels wide, screen is 84 pixels (84/6 = 14) + +/// Gets Readings and Displays them +void readings(); + +PwmOut myled(p22); +PwmOut buzzer(p21); +// VCC,SCE,RST,D/C,MOSI,SCLK,LED order of mbed pins should match +N5110 lcd(p7,p8,p9,p10,p11,p13,p26); +MMA8452 mma8452(p28,p27); // SDA, SCL +Serial serial(USBTX,USBRX); +AnalogIn pot(p20); + +Timeout timer; // create ticker object + +/// sets flag to 0 +int timerFlag = 0; // flag for timer + +///Interrupt Service Routine +void timerExpired() { + timerFlag = 1; + + /// sets the scale for x to be able to reach 1-45 readings per second + float x=-(1-pot.read())*44/45+1; + timer.detach(); + timer.attach(&timerExpired,x); + +} +///Turns on LCD AND Accelerometer. +void turnon () { + lcd.init(); + lcd.printString("Mario Quartey", 0,0); + lcd.printString("Accelerometer", 0,1); + lcd.printString("Elec 2645", 0,2); + lcd.printString("Dr C Evans!", 0,3); + lcd.refresh(); + wait(2); + lcd.clear(); + mma8452.init(); // 100 Hz update rate, ±4g scale + } +/// Gets readings and Prints to LCD +void readings () { + Acceleration acceleration; + lcd.printString("X Y Z Values", 0,0); + acceleration = mma8452.readValues(); // read current values and print over serial port + int xx = sprintf(buffer, "x = %.2f", acceleration.x); // figure eout the length of chars + int yy = sprintf(buffer1, "y = %.2f", acceleration.y); + int zz = sprintf(buffer2, "z = %.2f", acceleration.z); + ///calculates the square root,multiplication and addition of the 3 arguments and return + float mag = sqrt((acceleration.x*acceleration.x + acceleration.y*acceleration.y + acceleration.z*acceleration.z)); + int ff = sprintf(buffer3, "Mag = %.2f", mag); + wait(0.1); // short delay until next reading + if (xx <= 14){ // if the length is smaller than 14 chars. it prints + lcd.printString(buffer, 10, 1); + if (yy <= 14){ // if the length is smaller than 14 chars. it prints + lcd.printString(buffer1, 10, 2); + if (zz <= 14){ // if the length is smaller than 14 chars. it prints + lcd.printString(buffer2, 10, 3); + if (mag <= 14){ // if the length is smaller than 14 chars. it prints + lcd.printString(buffer3, 10, 4); + + /// Compares Values for magnitude and Triggers Buzzer + if (mag > 1.5) + for(float p = 0.0f; p < 1.0f; p += 0.1f) { + buzzer = p; + wait (0.3); + buzzer = 0; + }}}}}} + + +int main() { + turnon(); + + timer.attach(&timerExpired,1); + +PHY_PowerDown(); //Powers Down ethernet + +/// Flash LED in Infinite loop, while readings are being taken. + while (1) { + + for(float p = 0.0f; p < 1.0f; p += 0.1f) { + myled = p; + } + if (timerFlag) { + readings (); + + timerFlag = 0; + } + lcd.refresh(); + } + + }