2021-01-29 06:31:58 -05:00
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//
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// FILE: DS1821.cpp
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// AUTHOR: Rob Tillaart
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2022-11-02 14:58:31 -04:00
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// VERSION: 0.3.4
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2021-01-29 06:31:58 -05:00
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// DATE: 2014-10-05
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// PURPOSE: Arduino library for DS1821 temperature sensor
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// URL: https://github.com/RobTillaart/DS1821
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//
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2022-11-02 14:58:31 -04:00
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// HISTORY: see changelog.md
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2021-01-29 06:31:58 -05:00
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#include "DS1821.h"
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2021-05-28 07:24:52 -04:00
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2021-01-29 06:31:58 -05:00
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// CONFIG REGISTER MASKS... P7-8 datasheet
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#define DS1821_CONF_1SHOT 0x01
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#define DS1821_CONF_POL 0x02
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#define DS1821_CONF_TR 0x04
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#define DS1821_CONF_TLF 0x08
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#define DS1821_CONF_THF 0x10
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#define DS1821_CONF_NVB 0x20
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// skip always one 0x40
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#define DS1821_CONF_DONE 0x80
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// COMMANDS P10-11 datasheet
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#define START_CONVERT 0xEE
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#define STOP_CONVERT 0x22
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#define READ_CONFIG_REG 0xAC
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#define WRITE_CONFIG_REG 0x0C
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#define READ_TEMPERATURE 0xAA
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#define READ_COUNTER 0xA0
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#define LOAD_COUNTER 0x41
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#define WRITE_TH 0x01
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#define WRITE_TL 0x02
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#define READ_TH 0xA1
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#define READ_TL 0xA2
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////////////////////////////////////////////////////////////////
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//
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// PUBLIC
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//
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DS1821::DS1821(OneWire *ow)
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{
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_oneWire = ow;
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_error = DS1821_RESET_OK;
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}
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2021-01-29 06:31:58 -05:00
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// P5 - Operation measuring temperature
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int DS1821::requestTemperature()
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{
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if (_reset() != DS1821_RESET_OK) return DS1821_RESET_ERROR;
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_command(START_CONVERT);
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return DS1821_RESET_OK;
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}
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int DS1821::requestContinuous()
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{
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_clrConfigFlag(DS1821_CONF_1SHOT);
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return requestTemperature();
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}
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int DS1821::stopContinuous()
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{
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if (_reset() != DS1821_RESET_OK) return DS1821_RESET_ERROR;
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_command(STOP_CONVERT);
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return DS1821_RESET_OK;
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}
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int DS1821::conversionReady()
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{
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return _getConfigFlag(DS1821_CONF_DONE);
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}
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// P5 - Operation measuring temperature
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float DS1821::readTemperature()
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{
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if (_reset() != DS1821_RESET_OK) return DS1821_RESET_ERROR;
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_command(READ_TEMPERATURE);
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int temperature = _readByte();
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// Handle negative values: >= 200 ==> subtract 256;
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if (temperature >= 200) temperature -= 256;
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if (_reset() != DS1821_RESET_OK) return DS1821_RESET_ERROR;
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_command(READ_COUNTER);
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int countRemain = _readByte() * 256;
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countRemain += _readByte();
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// Load counter to populate the slope accumulator into counter register
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// Q: is this a fixed number? if so it could be hard coded...
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if (_reset() != DS1821_RESET_OK) return DS1821_RESET_ERROR;
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_command(LOAD_COUNTER);
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if (_reset() != DS1821_RESET_OK) return DS1821_RESET_ERROR;
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_command(READ_COUNTER);
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int countPerC = _readByte() * 256;
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countPerC += _readByte();
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return temperature + 0.5 - (1.0 * countRemain) / countPerC;
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}
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int DS1821::setLow(int8_t lo)
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{
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if (_reset() != DS1821_RESET_OK) return DS1821_RESET_ERROR;
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_command(WRITE_TL);
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_command(lo);
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return DS1821_RESET_OK;
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}
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int DS1821::getLow()
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{
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if (_reset() != DS1821_RESET_OK) return DS1821_RESET_ERROR;
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_command(READ_TL);
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return _readByte();
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}
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int DS1821::setHigh(int8_t hi)
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{
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if (_reset() != DS1821_RESET_OK) return DS1821_RESET_ERROR;
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_command(WRITE_TH);
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_command(hi);
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return DS1821_RESET_OK;
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}
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int DS1821::getHigh()
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{
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if (_reset() != DS1821_RESET_OK) return DS1821_RESET_ERROR;
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_command(READ_TL);
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return _readByte();
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}
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int DS1821::getHighFlag()
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{
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return _getConfigFlag(DS1821_CONF_THF);
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}
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int DS1821::clrHighFlag()
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{
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return _clrConfigFlag(DS1821_CONF_THF);
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}
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int DS1821::getLowFlag()
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{
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return _getConfigFlag(DS1821_CONF_TLF);
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}
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int DS1821::clrLowFlag()
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{
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return _clrConfigFlag(DS1821_CONF_TLF);
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}
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//////////////////////////////////////////////////////////
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//
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// THERMOSTAT CONFIG
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//
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int DS1821::setOneWireMode(uint8_t VDD, uint8_t DQ)
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{
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_VDD = VDD;
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_DQ = DQ;
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// switch off power
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pinMode(_VDD, OUTPUT);
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digitalWrite(_VDD, LOW);
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pinMode(_DQ, OUTPUT);
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digitalWrite(_DQ, HIGH);
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delay(1);
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// toggle 16 times.
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for(uint8_t i = 0; i < 16; i++)
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{
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digitalWrite(_DQ, LOW);
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digitalWrite(_DQ, HIGH);
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}
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pinMode(_DQ, INPUT);
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// switch power on again.
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digitalWrite(_VDD, HIGH);
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delay(1);
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return _clrConfigFlag(DS1821_CONF_TR);
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}
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int DS1821::setPolarity(int activeState)
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{
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if (activeState == HIGH) return _setConfigFlag(DS1821_CONF_POL);
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return _clrConfigFlag(DS1821_CONF_POL);
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}
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int DS1821::getPolarity()
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{
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return _getConfigFlag(DS1821_CONF_POL);
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}
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int DS1821::setThermostatMode()
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{
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int rv = _setConfigFlag(DS1821_CONF_TR);
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delay(10); // wait for copy to NVRAM
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digitalWrite(_VDD, LOW);
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delay(1000);
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digitalWrite(_VDD, HIGH);
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return rv;
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}
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////////////////////////////////////////////////////////////////
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//
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// PRIVATE
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//
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int DS1821::_getConfigFlag(uint8_t flag)
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{
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return ((_readConfig() & flag) > 0); // true = 1 / false = 0
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}
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// See page 4 datasheet
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uint8_t DS1821::_waitForNVB()
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{
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uint8_t config = 0;
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for (uint8_t i = 0; i < 10; i++)
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{
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config = _readConfig();
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if (!(config & DS1821_CONF_NVB)) break;
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delay(1);
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}
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return config;
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}
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int DS1821::_setConfigFlag(uint8_t flag)
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{
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uint8_t config = _waitForNVB();
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config |= flag;
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return _writeConfig(config);
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}
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int DS1821::_clrConfigFlag(uint8_t flag)
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{
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uint8_t config = _waitForNVB();
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config &= ~flag;
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return _writeConfig(config);
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}
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int DS1821::_readConfig()
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{
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if (_reset() != DS1821_RESET_OK) return DS1821_RESET_ERROR;
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_command(READ_CONFIG_REG);
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return _readByte();
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}
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int DS1821::_writeConfig(uint8_t val)
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{
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while (_getConfigFlag(DS1821_CONF_NVB)) delay(1);
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if (_reset() != DS1821_RESET_OK) return DS1821_RESET_ERROR;
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_command(WRITE_CONFIG_REG);
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_command(val);
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return DS1821_RESET_OK;
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}
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// -- END OF FILE --
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