C code and C++ library, driver software for Maxim Integrated DS1775, DS75 thermometer and thermostat temperature sensor. Code supports continuous or shut-down/standby, hysteresis, alarm limits, comparator or interrupt mode, fault filtering, and active low/high. Compact 5-pin SOT23 packaging

Dependents:   DS1775_Digital_Thermostat_Temperature

Committer:
phonemacro
Date:
Sun Apr 07 09:55:29 2019 +0000
Revision:
11:c3367936f4f2
Parent:
10:03645de9c017
Child:
12:3ca79cd71289
updated

Who changed what in which revision?

UserRevisionLine numberNew contents of line
phonemacro 8:b2d4c71268aa 1 /*******************************************************************************
phonemacro 8:b2d4c71268aa 2 * Copyright (C) 2019 Maxim Integrated Products, Inc., All Rights Reserved.
phonemacro 8:b2d4c71268aa 3 *
phonemacro 8:b2d4c71268aa 4 * Permission is hereby granted, free of charge, to any person obtaining a
phonemacro 8:b2d4c71268aa 5 * copy of this software and associated documentation files (the "Software"),
phonemacro 8:b2d4c71268aa 6 * to deal in the Software without restriction, including without limitation
phonemacro 8:b2d4c71268aa 7 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
phonemacro 8:b2d4c71268aa 8 * and/or sell copies of the Software, and to permit persons to whom the
phonemacro 8:b2d4c71268aa 9 * Software is furnished to do so, subject to the following conditions:
phonemacro 8:b2d4c71268aa 10 *
phonemacro 8:b2d4c71268aa 11 * The above copyright notice and this permission notice shall be included
phonemacro 8:b2d4c71268aa 12 * in all copies or substantial portions of the Software.
phonemacro 8:b2d4c71268aa 13 *
phonemacro 8:b2d4c71268aa 14 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
phonemacro 8:b2d4c71268aa 15 * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
phonemacro 8:b2d4c71268aa 16 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
phonemacro 8:b2d4c71268aa 17 * IN NO EVENT SHALL MAXIM INTEGRATED BE LIABLE FOR ANY CLAIM, DAMAGES
phonemacro 8:b2d4c71268aa 18 * OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
phonemacro 8:b2d4c71268aa 19 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
phonemacro 8:b2d4c71268aa 20 * OTHER DEALINGS IN THE SOFTWARE.
phonemacro 8:b2d4c71268aa 21 *
phonemacro 8:b2d4c71268aa 22 * Except as contained in this notice, the name of Maxim Integrated
phonemacro 8:b2d4c71268aa 23 * Products, Inc. shall not be used except as stated in the Maxim Integrated
phonemacro 8:b2d4c71268aa 24 * Products, Inc. Branding Policy.
phonemacro 8:b2d4c71268aa 25 *
phonemacro 8:b2d4c71268aa 26 * The mere transfer of this software does not imply any licenses
phonemacro 8:b2d4c71268aa 27 * of trade secrets, proprietary technology, copyrights, patents,
phonemacro 8:b2d4c71268aa 28 * trademarks, maskwork rights, or any other form of intellectual
phonemacro 8:b2d4c71268aa 29 * property whatsoever. Maxim Integrated Products, Inc. retains all
phonemacro 8:b2d4c71268aa 30 * ownership rights.
phonemacro 8:b2d4c71268aa 31 *******************************************************************************
phonemacro 8:b2d4c71268aa 32 */
phonemacro 8:b2d4c71268aa 33 #include "ds1775.h"
phonemacro 8:b2d4c71268aa 34 #include "ds1775_cpp.h"
phonemacro 8:b2d4c71268aa 35 #include "mbed.h"
phonemacro 8:b2d4c71268aa 36 // #include "USBSerial.h"
phonemacro 8:b2d4c71268aa 37
phonemacro 8:b2d4c71268aa 38 /******************************************************************************
phonemacro 8:b2d4c71268aa 39 * C++ version for DS1775 driver *
phonemacro 8:b2d4c71268aa 40 ******************************************************************************
phonemacro 8:b2d4c71268aa 41 */
phonemacro 8:b2d4c71268aa 42
phonemacro 8:b2d4c71268aa 43 /******************************************************************************/
phonemacro 8:b2d4c71268aa 44 DS1775::DS1775(I2C &i2c_bus, uint8_t slave_address):
phonemacro 8:b2d4c71268aa 45 m_i2c(i2c_bus),
phonemacro 8:b2d4c71268aa 46 m_write_address(slave_address <<1),
phonemacro 8:b2d4c71268aa 47 m_read_address ((slave_address << 1) | 1)
phonemacro 8:b2d4c71268aa 48 {
phonemacro 8:b2d4c71268aa 49 }
phonemacro 8:b2d4c71268aa 50
phonemacro 8:b2d4c71268aa 51 /******************************************************************************/
phonemacro 8:b2d4c71268aa 52 DS1775::~DS1775(void)
phonemacro 8:b2d4c71268aa 53 {
phonemacro 8:b2d4c71268aa 54 /** empty block */
phonemacro 8:b2d4c71268aa 55 }
phonemacro 8:b2d4c71268aa 56
phonemacro 8:b2d4c71268aa 57 /******************************************************************************/
phonemacro 9:315236fb3c6a 58 int DS1775::read_cfg_reg(uint8_t *value)
phonemacro 9:315236fb3c6a 59 {
phonemacro 9:315236fb3c6a 60 int32_t ret;
phonemacro 9:315236fb3c6a 61 char data[1] = {0};
phonemacro 9:315236fb3c6a 62 char reg = DS1775_REG_CONFIGURATION;
phonemacro 9:315236fb3c6a 63
phonemacro 9:315236fb3c6a 64 /* write to the Register Select, true is for repeated start */
phonemacro 9:315236fb3c6a 65 ret = m_i2c.write(m_write_address, &reg, 1, true);
phonemacro 9:315236fb3c6a 66 if (ret == 0) {
phonemacro 9:315236fb3c6a 67 ret = m_i2c.read(m_read_address, data, 1, false);
phonemacro 9:315236fb3c6a 68 if (ret == 0) {
phonemacro 9:315236fb3c6a 69 *value = data[0];
phonemacro 9:315236fb3c6a 70 printf("%s: cfg %x\r\n", __func__, *value);
phonemacro 9:315236fb3c6a 71 return DS1775_NO_ERROR;
phonemacro 9:315236fb3c6a 72 } else {
phonemacro 9:315236fb3c6a 73 printf(
phonemacro 9:315236fb3c6a 74 "%s: failed to read data: ret: %d\r\n", __func__, ret);
phonemacro 9:315236fb3c6a 75 }
phonemacro 9:315236fb3c6a 76 } else {
phonemacro 9:315236fb3c6a 77 printf("%s: failed to write to Register Select: ret: %d\r\n",
phonemacro 9:315236fb3c6a 78 __func__, ret);
phonemacro 9:315236fb3c6a 79 }
phonemacro 9:315236fb3c6a 80 return DS1775_ERROR;
phonemacro 9:315236fb3c6a 81 }
phonemacro 9:315236fb3c6a 82
phonemacro 9:315236fb3c6a 83 /******************************************************************************/
phonemacro 10:03645de9c017 84 int DS1775::read_reg(int16_t *value, char reg)
phonemacro 8:b2d4c71268aa 85 {
phonemacro 8:b2d4c71268aa 86 int32_t ret;
phonemacro 8:b2d4c71268aa 87 char data[2] = {0, 0};
phonemacro 8:b2d4c71268aa 88 ds1775_raw_data tmp;
phonemacro 8:b2d4c71268aa 89
phonemacro 10:03645de9c017 90 if (reg == DS1775_REG_TEMPERATURE ||
phonemacro 11:c3367936f4f2 91 (reg == DS1775_REG_THYST_LOW_TRIP ||
phonemacro 11:c3367936f4f2 92 reg == DS1775_REG_TOS_HIGH_TRIP)) {
phonemacro 9:315236fb3c6a 93 /* write to the Register Select, true is for repeated start */
phonemacro 8:b2d4c71268aa 94 ret = m_i2c.write(m_write_address, &reg, 1, true);
phonemacro 8:b2d4c71268aa 95 /* read the two bytes of data */
phonemacro 8:b2d4c71268aa 96 if (ret == 0) {
phonemacro 8:b2d4c71268aa 97 ret = m_i2c.read(m_read_address, data, 2, false);
phonemacro 8:b2d4c71268aa 98 if (ret == 0) {
phonemacro 8:b2d4c71268aa 99 tmp.msb = data[0];
phonemacro 8:b2d4c71268aa 100 tmp.lsb = data[1];
phonemacro 9:315236fb3c6a 101 printf(
phonemacro 9:315236fb3c6a 102 "%s: MSB LSB %x %x\r\n", __func__, tmp.msb, tmp.lsb);
phonemacro 10:03645de9c017 103 *value = tmp.swrd;
phonemacro 8:b2d4c71268aa 104 return DS1775_NO_ERROR;
phonemacro 8:b2d4c71268aa 105 } else {
phonemacro 8:b2d4c71268aa 106 printf(
phonemacro 8:b2d4c71268aa 107 "%s: failed to read data: ret: %d\r\n", __func__, ret);
phonemacro 8:b2d4c71268aa 108 }
phonemacro 8:b2d4c71268aa 109 } else {
phonemacro 8:b2d4c71268aa 110 printf("%s: failed to write to Register Select: ret: %d\r\n",
phonemacro 8:b2d4c71268aa 111 __func__, ret);
phonemacro 8:b2d4c71268aa 112 }
phonemacro 8:b2d4c71268aa 113 } else {
phonemacro 8:b2d4c71268aa 114 printf("%s: register address is not correct: register: %d\r\n",
phonemacro 8:b2d4c71268aa 115 __func__, reg);
phonemacro 8:b2d4c71268aa 116 }
phonemacro 8:b2d4c71268aa 117 return DS1775_ERROR;
phonemacro 8:b2d4c71268aa 118 }
phonemacro 8:b2d4c71268aa 119
phonemacro 8:b2d4c71268aa 120 /******************************************************************************/
phonemacro 8:b2d4c71268aa 121 float DS1775::read_reg_as_temperature(uint8_t reg)
phonemacro 8:b2d4c71268aa 122 {
phonemacro 8:b2d4c71268aa 123 ds1775_raw_data tmp;
phonemacro 8:b2d4c71268aa 124 float temperature;
phonemacro 8:b2d4c71268aa 125 if (reg == DS1775_REG_TEMPERATURE ||
phonemacro 8:b2d4c71268aa 126 reg == DS1775_REG_THYST_LOW_TRIP || reg == DS1775_REG_TOS_HIGH_TRIP) {
phonemacro 10:03645de9c017 127 read_reg(&tmp.swrd, reg);
phonemacro 10:03645de9c017 128 temperature = (float)tmp.swrd;
phonemacro 10:03645de9c017 129 temperature *= DS1775_CF_LSB;
phonemacro 8:b2d4c71268aa 130 return temperature;
phonemacro 8:b2d4c71268aa 131
phonemacro 8:b2d4c71268aa 132 } else {
phonemacro 8:b2d4c71268aa 133 printf("%s: register is invalid, %d r\n", __func__, reg);
phonemacro 8:b2d4c71268aa 134 return 0;
phonemacro 8:b2d4c71268aa 135 }
phonemacro 8:b2d4c71268aa 136 }
phonemacro 8:b2d4c71268aa 137
phonemacro 8:b2d4c71268aa 138 /******************************************************************************/
phonemacro 10:03645de9c017 139 int DS1775::write_reg(int16_t value, char reg)
phonemacro 8:b2d4c71268aa 140 {
phonemacro 8:b2d4c71268aa 141 int32_t ret;
phonemacro 8:b2d4c71268aa 142 char cmd[3];
phonemacro 8:b2d4c71268aa 143 ds1775_raw_data tmp;
phonemacro 8:b2d4c71268aa 144
phonemacro 8:b2d4c71268aa 145 if (reg >= DS1775_REG_CONFIGURATION && reg <= DS1775_REG_MAX) {
phonemacro 8:b2d4c71268aa 146 cmd[0] = reg;
phonemacro 10:03645de9c017 147 tmp.swrd = value;
phonemacro 8:b2d4c71268aa 148 cmd[1] = tmp.msb;
phonemacro 8:b2d4c71268aa 149 cmd[2] = tmp.lsb;
phonemacro 8:b2d4c71268aa 150 ret = m_i2c.write(m_write_address, cmd, 3, false);
phonemacro 8:b2d4c71268aa 151 if (ret == 0) {
phonemacro 9:315236fb3c6a 152 return DS1775_NO_ERROR;
phonemacro 9:315236fb3c6a 153 } else {
phonemacro 9:315236fb3c6a 154 printf("%s: I2C write error %d\r\n",__func__, ret);
phonemacro 9:315236fb3c6a 155 return DS1775_ERROR;
phonemacro 9:315236fb3c6a 156 }
phonemacro 9:315236fb3c6a 157 } else {
phonemacro 9:315236fb3c6a 158 printf("%s: register value invalid %x\r\n",__func__, reg);
phonemacro 9:315236fb3c6a 159 return DS1775_ERROR;
phonemacro 9:315236fb3c6a 160 }
phonemacro 9:315236fb3c6a 161 }
phonemacro 9:315236fb3c6a 162
phonemacro 9:315236fb3c6a 163 /******************************************************************************/
phonemacro 9:315236fb3c6a 164 int DS1775::write_reg_one_byte(uint8_t value, char reg)
phonemacro 9:315236fb3c6a 165 {
phonemacro 9:315236fb3c6a 166 int32_t ret;
phonemacro 9:315236fb3c6a 167 char cmd[2];
phonemacro 9:315236fb3c6a 168
phonemacro 9:315236fb3c6a 169 if (reg == DS1775_REG_CONFIGURATION) {
phonemacro 9:315236fb3c6a 170 cmd[0] = reg;
phonemacro 9:315236fb3c6a 171 cmd[1] = value;
phonemacro 9:315236fb3c6a 172 ret = m_i2c.write(m_write_address, cmd, 2, false);
phonemacro 9:315236fb3c6a 173 if (ret == 0) {
phonemacro 8:b2d4c71268aa 174 return DS1775_NO_ERROR;
phonemacro 8:b2d4c71268aa 175 } else {
phonemacro 8:b2d4c71268aa 176 printf("%s: I2C write error %d\r\n",__func__, ret);
phonemacro 8:b2d4c71268aa 177 return DS1775_ERROR;
phonemacro 8:b2d4c71268aa 178 }
phonemacro 8:b2d4c71268aa 179 } else {
phonemacro 8:b2d4c71268aa 180 printf("%s: register value invalid %x\r\n",__func__, reg);
phonemacro 8:b2d4c71268aa 181 return DS1775_ERROR;
phonemacro 8:b2d4c71268aa 182 }
phonemacro 8:b2d4c71268aa 183 }
phonemacro 8:b2d4c71268aa 184
phonemacro 8:b2d4c71268aa 185 /******************************************************************************/
phonemacro 8:b2d4c71268aa 186 int DS1775::write_cfg(uint16_t cfg)
phonemacro 8:b2d4c71268aa 187 {
phonemacro 9:315236fb3c6a 188 return write_reg_one_byte(cfg, DS1775_REG_CONFIGURATION);
phonemacro 8:b2d4c71268aa 189 }
phonemacro 8:b2d4c71268aa 190
phonemacro 8:b2d4c71268aa 191 /******************************************************************************/
phonemacro 8:b2d4c71268aa 192 int DS1775::write_trip_low(float temperature)
phonemacro 8:b2d4c71268aa 193 {
phonemacro 8:b2d4c71268aa 194 ds1775_raw_data raw;
phonemacro 10:03645de9c017 195 temperature /= DS1775_CF_LSB;
phonemacro 10:03645de9c017 196 raw.swrd = int16_t(temperature);
phonemacro 10:03645de9c017 197 return write_reg(raw.swrd, DS1775_REG_THYST_LOW_TRIP);
phonemacro 8:b2d4c71268aa 198 }
phonemacro 8:b2d4c71268aa 199
phonemacro 8:b2d4c71268aa 200 /******************************************************************************/
phonemacro 8:b2d4c71268aa 201 int DS1775::write_trip_high(float temperature)
phonemacro 8:b2d4c71268aa 202 {
phonemacro 8:b2d4c71268aa 203 ds1775_raw_data raw;
phonemacro 10:03645de9c017 204 temperature /= DS1775_CF_LSB;
phonemacro 10:03645de9c017 205 raw.swrd = int16_t(temperature);
phonemacro 8:b2d4c71268aa 206 return write_reg(raw.uwrd, DS1775_REG_TOS_HIGH_TRIP);
phonemacro 8:b2d4c71268aa 207 }
phonemacro 8:b2d4c71268aa 208
phonemacro 8:b2d4c71268aa 209 /******************************************************************************/
phonemacro 8:b2d4c71268aa 210 float DS1775::celsius_to_fahrenheit(float temp_c)
phonemacro 8:b2d4c71268aa 211 {
phonemacro 8:b2d4c71268aa 212 float temp_f;
phonemacro 8:b2d4c71268aa 213 temp_f = ((temp_c * 9)/5) + 32;
phonemacro 8:b2d4c71268aa 214 return temp_f;
phonemacro 8:b2d4c71268aa 215 }