// CODE TESTED ON ARDUINO 1.6.7 IDE
// HEAVY MODIFIED BY SECURITYXIII TO GET 8 THERMISTORS
// OneWire DS18S20, DS18B20, DS1822 Temperature Example
// http://www.pjrc.com/teensy/td_libs_OneWire.html
// The DallasTemperature library can do all this work for you!
// http://milesburton.com/Dallas_Temperature_Control_Library
#include <OneWire.h>
OneWire ds(10); // on pin 10 (a 4.7K resistor is necessary)
// KNOWN ROMs (IDs of Thermistors) //
const char* therm1 = "28ff988b8141cd";
const char* therm2 = "28ffac6d68142bc";
const char* therm3 = "28ffe6746814243";
const char* therm4 = "28ffd96f681424";
const char* therm5 = "28ff734b814175";
const char* therm6 = "28ff7bb66814378";
const char* therm7 = "28ff8758691438";
const char* therm8 = "28ff57bb81418";
const char* therms[] = {therm1, therm2, therm3, therm4, therm5, therm6, therm7, therm8};
char rel1; char rel2; char rel3; char rel4; char rel5; char rel6; char rel7; char rel8;
char rels[] = {rel1, rel2, rel3, rel4, rel5, rel6, rel7, rel8};
int o; int z;
// RELAY LOGIC
char on = LOW; char off = HIGH;
// TEMP
int celmax = 40.00;
void setup() {
char x = OUTPUT;
for (z = 2; z < 10; z++) {
pinMode(z, x);
}
Serial.begin(9600);
}
void loop() {
///////// DO NOT TOUCH - THIS CODE IS WORKING WITH TEMP ! /////////
byte i;
byte present = 0;
byte type_s;
byte data[12];
byte addr[8];
float celsius;
String aa;
String ab;
String xx;
String check;
if ( !ds.search(addr)) {
Serial.println("No more addresses.");
Serial.println();
ds.reset_search();
delay(0);
return;
}
if (OneWire::crc8(addr, 7) != addr[7]) {
Serial.println("CRC is not valid!");
return;
}
// Serial.println();
// the first ROM byte indicates which chip
switch (addr[0]) {
case 0x10:
aa = "Chip = DS18S20,"; // or old DS1820
type_s = 1;
break;
case 0x28:
aa = "Chip = DS18B20,";
type_s = 0;
break;
case 0x22:
aa = "Chip = DS1822,";
type_s = 0;
break;
default:
aa = "Device is not a DS18x20 family device.";
return;
}
ds.reset();
ds.select(addr);
ds.write(0x44, 1); // start conversion, with parasite power on at the end
// delay(750); // maybe 750ms is enough, maybe not
// we might do a ds.depower() here, but the reset will take care of it.
aa += " Data = ";
present = ds.reset();
ds.select(addr);
ds.write(0xBE); // Read Scratchpad
aa += String(present, HEX);
//Serial.print(" ");
for ( i = 0; i < 9; i++) { // we need 9 bytes
data[i] = ds.read();
aa += String(data[i], HEX);
// Serial.print(" ");
}
aa += ", CRC = ";
aa += String(OneWire::crc8(data, 8), HEX);
//Serial.print
// Serial.println();
// Convert the data to actual temperature
// because the result is a 16 bit signed integer, it should
// be stored to an "int16_t" type, which is always 16 bits
// even when compiled on a 32 bit processor.
int16_t raw = (data[1] << 8) | data[0];
if (type_s) {
raw = raw << 3; // 9 bit resolution default
if (data[7] == 0x10) {
// "count remain" gives full 12 bit resolution
raw = (raw & 0xFFF0) + 12 - data[6];
}
} else {
byte cfg = (data[4] & 0x60);
// at lower res, the low bits are undefined, so let's zero them
if (cfg == 0x00) raw = raw & ~7; // 9 bit resolution, 93.75 ms
else if (cfg == 0x20) raw = raw & ~3; // 10 bit res, 187.5 ms
else if (cfg == 0x40) raw = raw & ~1; // 11 bit res, 375 ms
//// default is 12 bit resolution, 750 ms conversion time
}
celsius = (float)raw / 16.0;
aa += (", Temperature = ");
aa += (celsius);
aa += (" celsius, ");
delay(0);
aa += "ROM = ";
for( i = 0; i < 8; i++) {
//Serial.write(' '); // <- this can be used to add spaces
check += String(addr[i], HEX);
}
///////// IT'S MOSTLY SAFE TO TOUCH FROM HERE /////////
// Checking that temp is higher than celmax
for (o = 0; o < 8; o++) {
if (check == therms[o]) { if (celsius >= celmax) { rels[o] = on; } else { rels[o] = off; } }
digitalWrite(o+2, rels[o]);
}
aa += check;
Serial.print(aa);
Serial.println();
}
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