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Add support for TMP1075 temperature sensor (#4776)
* Add support for TMP1075 temperature sensor TMP1075 is a temperature sensor with I2C interface in industry standard LM75 form factor and pinout. https://www.ti.com/product/TMP1075 Example YAML: ```yaml sensor: - platform: tmp1075 name: TMP1075 Temperature id: radiator_temp update_interval: 10s i2c_id: i2c_bus_1 conversion_rate: 27.5ms alert: limit_low: 50 limit_high: 75 fault_count: 1 polarity: active_high ``` * Add myself as codeowner of the TMP1075 component * Include '°C' unit when logging low/high limit setting * Reformat No functional changes. * Fix logging: use %.4f for temperatures, not %d * Fix config initialisation * Use relative include for `tmp1075.h` * Apply formatting changes suggested by script/clang-tidy for ESP32 * Add YAML to test1.yaml * Fix test1.yaml by giving TMP1075 a name * Less verbose logging (debug -> verbose level) * Schema: reduce accuracy_decimals to 2 * I2C address as hexadecimal * Proper name for enum in Python The enum on the C++ side was renamed (clang-tidy) but I forgot to take that into account in the Python code. * Expose 'alert function' to the code generator/YAML params and remove 'shutdown' Shutdown mode doesn't work the way I expect it, so remove it until someone actually asks for it. Also 'alert mode' was renamed to 'alert function' for clarity. * Move simple setters to header file * Remove `load_config_();` function
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6 changed files with 326 additions and 0 deletions
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@ -285,6 +285,7 @@ esphome/components/tm1637/* @glmnet
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esphome/components/tm1638/* @skykingjwc
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esphome/components/tm1651/* @freekode
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esphome/components/tmp102/* @timsavage
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esphome/components/tmp1075/* @sybrenstuvel
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esphome/components/tmp117/* @Azimath
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esphome/components/tof10120/* @wstrzalka
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esphome/components/toshiba/* @kbx81
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1
esphome/components/tmp1075/__init__.py
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1
esphome/components/tmp1075/__init__.py
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CODEOWNERS = ["@sybrenstuvel"]
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esphome/components/tmp1075/sensor.py
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esphome/components/tmp1075/sensor.py
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import esphome.codegen as cg
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import esphome.config_validation as cv
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from esphome.components import i2c, sensor
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from esphome.const import (
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DEVICE_CLASS_TEMPERATURE,
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STATE_CLASS_MEASUREMENT,
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UNIT_CELSIUS,
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ICON_THERMOMETER,
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)
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DEPENDENCIES = ["i2c"]
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tmp1075_ns = cg.esphome_ns.namespace("tmp1075")
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TMP1075Sensor = tmp1075_ns.class_(
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"TMP1075Sensor", cg.PollingComponent, sensor.Sensor, i2c.I2CDevice
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)
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EConversionRate = tmp1075_ns.enum("EConversionRate")
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CONVERSION_RATES = {
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"27.5ms": EConversionRate.CONV_RATE_27_5_MS,
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"55ms": EConversionRate.CONV_RATE_55_MS,
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"110ms": EConversionRate.CONV_RATE_110_MS,
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"220ms": EConversionRate.CONV_RATE_220_MS,
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}
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POLARITY = {
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"ACTIVE_LOW": 0,
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"ACTIVE_HIGH": 1,
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}
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EAlertFunction = tmp1075_ns.enum("EAlertFunction")
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ALERT_FUNCTION = {
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"COMPARATOR": EAlertFunction.ALERT_COMPARATOR,
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"INTERRUPT": EAlertFunction.ALERT_INTERRUPT,
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}
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CONF_ALERT = "alert"
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CONF_LIMIT_LOW = "limit_low"
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CONF_LIMIT_HIGH = "limit_high"
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CONF_FAULT_COUNT = "fault_count"
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CONF_POLARITY = "polarity"
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CONF_CONVERSION_RATE = "conversion_rate"
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CONF_FUNCTION = "function"
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CONFIG_SCHEMA = (
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sensor.sensor_schema(
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TMP1075Sensor,
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unit_of_measurement=UNIT_CELSIUS,
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icon=ICON_THERMOMETER,
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accuracy_decimals=2,
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device_class=DEVICE_CLASS_TEMPERATURE,
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state_class=STATE_CLASS_MEASUREMENT,
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)
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.extend(
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{
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cv.Optional(CONF_CONVERSION_RATE): cv.enum(CONVERSION_RATES, lower=True),
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cv.Optional(CONF_ALERT, default={}): cv.Schema(
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{
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cv.Optional(CONF_LIMIT_LOW): cv.temperature,
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cv.Optional(CONF_LIMIT_HIGH): cv.temperature,
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cv.Optional(CONF_FAULT_COUNT): cv.int_range(min=1, max=4),
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cv.Optional(CONF_POLARITY): cv.enum(POLARITY, upper=True),
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cv.Optional(CONF_FUNCTION): cv.enum(ALERT_FUNCTION, upper=True),
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}
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),
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}
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)
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.extend(cv.polling_component_schema("60s"))
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.extend(i2c.i2c_device_schema(0x48))
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)
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async def to_code(config):
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var = await sensor.new_sensor(config)
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await cg.register_component(var, config)
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await i2c.register_i2c_device(var, config)
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if CONF_CONVERSION_RATE in config:
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cg.add(var.set_conversion_rate(config[CONF_CONVERSION_RATE]))
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alert = config[CONF_ALERT]
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if CONF_LIMIT_LOW in alert:
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cg.add(var.set_alert_limit_low(alert[CONF_LIMIT_LOW]))
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if CONF_LIMIT_HIGH in alert:
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cg.add(var.set_alert_limit_high(alert[CONF_LIMIT_HIGH]))
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if CONF_FAULT_COUNT in alert:
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cg.add(var.set_fault_count(alert[CONF_FAULT_COUNT]))
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if CONF_POLARITY in alert:
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cg.add(var.set_alert_polarity(alert[CONF_POLARITY]))
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if CONF_FUNCTION in alert:
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cg.add(var.set_alert_function(alert[CONF_FUNCTION]))
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129
esphome/components/tmp1075/tmp1075.cpp
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esphome/components/tmp1075/tmp1075.cpp
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#include "esphome/core/log.h"
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#include "tmp1075.h"
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namespace esphome {
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namespace tmp1075 {
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static const char *const TAG = "tmp1075";
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constexpr uint8_t REG_TEMP = 0x0; // Temperature result
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constexpr uint8_t REG_CFGR = 0x1; // Configuration
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constexpr uint8_t REG_LLIM = 0x2; // Low limit
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constexpr uint8_t REG_HLIM = 0x3; // High limit
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constexpr uint8_t REG_DIEID = 0xF; // Device ID
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constexpr uint16_t EXPECT_DIEID = 0x0075; // Expected Device ID.
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static uint16_t temp2regvalue(float temp);
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static float regvalue2temp(uint16_t regvalue);
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void TMP1075Sensor::setup() {
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uint8_t die_id;
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if (!this->read_byte(REG_DIEID, &die_id)) {
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ESP_LOGW(TAG, "'%s' - unable to read ID", this->name_.c_str());
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this->mark_failed();
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return;
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}
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if (die_id != EXPECT_DIEID) {
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ESP_LOGW(TAG, "'%s' - unexpected ID 0x%x found, expected 0x%x", this->name_.c_str(), die_id, EXPECT_DIEID);
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this->mark_failed();
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return;
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}
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this->write_config();
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}
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void TMP1075Sensor::update() {
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uint16_t regvalue;
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if (!read_byte_16(REG_TEMP, ®value)) {
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ESP_LOGW(TAG, "'%s' - unable to read temperature register", this->name_.c_str());
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this->status_set_warning();
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return;
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}
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const float temp = regvalue2temp(regvalue);
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this->publish_state(temp);
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}
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void TMP1075Sensor::dump_config() {
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LOG_SENSOR("", "TMP1075 Sensor", this);
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if (this->is_failed()) {
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ESP_LOGE(TAG, " Communication with TMP1075 failed!");
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return;
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}
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ESP_LOGCONFIG(TAG, " limit low : %.4f °C", alert_limit_low_);
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ESP_LOGCONFIG(TAG, " limit high : %.4f °C", alert_limit_high_);
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ESP_LOGCONFIG(TAG, " oneshot : %d", config_.fields.oneshot);
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ESP_LOGCONFIG(TAG, " rate : %d", config_.fields.rate);
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ESP_LOGCONFIG(TAG, " fault_count: %d", config_.fields.faults);
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ESP_LOGCONFIG(TAG, " polarity : %d", config_.fields.polarity);
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ESP_LOGCONFIG(TAG, " alert_mode : %d", config_.fields.alert_mode);
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ESP_LOGCONFIG(TAG, " shutdown : %d", config_.fields.shutdown);
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}
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void TMP1075Sensor::set_fault_count(const int faults) {
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if (faults < 1) {
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ESP_LOGE(TAG, "'%s' - fault_count too low: %d", this->name_.c_str(), faults);
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return;
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}
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if (faults > 4) {
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ESP_LOGE(TAG, "'%s' - fault_count too high: %d", this->name_.c_str(), faults);
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return;
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}
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config_.fields.faults = faults - 1;
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}
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void TMP1075Sensor::log_config_() {
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ESP_LOGV(TAG, " oneshot : %d", config_.fields.oneshot);
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ESP_LOGV(TAG, " rate : %d", config_.fields.rate);
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ESP_LOGV(TAG, " faults : %d", config_.fields.faults);
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ESP_LOGV(TAG, " polarity : %d", config_.fields.polarity);
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ESP_LOGV(TAG, " alert_mode: %d", config_.fields.alert_mode);
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ESP_LOGV(TAG, " shutdown : %d", config_.fields.shutdown);
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}
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void TMP1075Sensor::write_config() {
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send_alert_limit_low_();
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send_alert_limit_high_();
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send_config_();
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}
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void TMP1075Sensor::send_config_() {
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ESP_LOGV(TAG, "'%s' - sending configuration %04x", this->name_.c_str(), config_.regvalue);
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log_config_();
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if (!this->write_byte_16(REG_CFGR, config_.regvalue)) {
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ESP_LOGW(TAG, "'%s' - unable to write configuration register", this->name_.c_str());
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return;
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}
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}
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void TMP1075Sensor::send_alert_limit_low_() {
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ESP_LOGV(TAG, "'%s' - sending alert limit low %.3f °C", this->name_.c_str(), alert_limit_low_);
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const uint16_t regvalue = temp2regvalue(alert_limit_low_);
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if (!this->write_byte_16(REG_LLIM, regvalue)) {
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ESP_LOGW(TAG, "'%s' - unable to write low limit register", this->name_.c_str());
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return;
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}
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}
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void TMP1075Sensor::send_alert_limit_high_() {
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ESP_LOGV(TAG, "'%s' - sending alert limit high %.3f °C", this->name_.c_str(), alert_limit_high_);
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const uint16_t regvalue = temp2regvalue(alert_limit_high_);
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if (!this->write_byte_16(REG_HLIM, regvalue)) {
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ESP_LOGW(TAG, "'%s' - unable to write high limit register", this->name_.c_str());
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return;
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}
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}
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static uint16_t temp2regvalue(const float temp) {
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const uint16_t regvalue = temp / 0.0625f;
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return regvalue << 4;
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}
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static float regvalue2temp(const uint16_t regvalue) {
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const int16_t signed_value = regvalue;
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return (signed_value >> 4) * 0.0625f;
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}
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} // namespace tmp1075
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} // namespace esphome
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92
esphome/components/tmp1075/tmp1075.h
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92
esphome/components/tmp1075/tmp1075.h
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#pragma once
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#include "esphome/components/i2c/i2c.h"
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#include "esphome/components/sensor/sensor.h"
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#include "esphome/core/component.h"
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namespace esphome {
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namespace tmp1075 {
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struct TMP1075Config {
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union {
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struct {
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uint8_t oneshot : 1; // One-shot conversion mode. Writing 1, starts a single temperature
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// conversion. Read returns 0.
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uint8_t rate : 2; // Conversion rate setting when device is in continuous conversion mode.
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// 00: 27.5 ms conversion rate
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// 01: 55 ms conversion rate
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// 10: 110 ms conversion rate
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// 11: 220 ms conversion rate (35 ms TMP1075N)
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uint8_t faults : 2; // Consecutive fault measurements to trigger the alert function.
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// 00: 1 fault
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// 01: 2 faults
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// 10: 3 faults (4 faults TMP1075N)
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// 11: 4 faults (6 faults TMP1075N)
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uint8_t polarity : 1; // Polarity of the output pin.
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// 0: Active low ALERT pin
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// 1: Active high ALERT pin
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uint8_t alert_mode : 1; // Selects the function of the ALERT pin.
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// 0: ALERT pin functions in comparator mode
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// 1: ALERT pin functions in interrupt mode
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uint8_t shutdown : 1; // Sets the device in shutdown mode to conserve power.
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// 0: Device is in continuous conversion
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// 1: Device is in shutdown mode
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uint8_t unused : 8;
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} fields;
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uint16_t regvalue;
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};
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};
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enum EConversionRate {
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CONV_RATE_27_5_MS,
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CONV_RATE_55_MS,
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CONV_RATE_110_MS,
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CONV_RATE_220_MS,
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};
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enum EAlertFunction {
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ALERT_COMPARATOR = 0,
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ALERT_INTERRUPT = 1,
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};
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class TMP1075Sensor : public PollingComponent, public sensor::Sensor, public i2c::I2CDevice {
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public:
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void setup() override;
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void update() override;
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float get_setup_priority() const override { return setup_priority::DATA; }
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void dump_config() override;
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// Call write_config() after calling any of these to send the new config to
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// the IC. The setup() function also does this.
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void set_alert_limit_low(const float temp) { this->alert_limit_low_ = temp; }
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void set_alert_limit_high(const float temp) { this->alert_limit_high_ = temp; }
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void set_oneshot(const bool oneshot) { config_.fields.oneshot = oneshot; }
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void set_conversion_rate(const enum EConversionRate rate) { config_.fields.rate = rate; }
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void set_alert_polarity(const bool polarity) { config_.fields.polarity = polarity; }
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void set_alert_function(const enum EAlertFunction function) { config_.fields.alert_mode = function; }
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void set_fault_count(int faults);
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void write_config();
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protected:
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TMP1075Config config_ = {};
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// Disable the alert pin by default.
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float alert_limit_low_ = -128.0f;
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float alert_limit_high_ = 127.9375f;
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void send_alert_limit_low_();
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void send_alert_limit_high_();
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void send_config_();
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void log_config_();
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};
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} // namespace tmp1075
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} // namespace esphome
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@ -1299,6 +1299,17 @@ sensor:
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id: temp_etuve
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humidity:
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name: "Humidity hyt271"
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- platform: tmp1075
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name: "Temperature TMP1075"
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update_interval: 10s
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i2c_id: i2c_bus
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conversion_rate: 27.5ms
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alert:
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limit_low: 50
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limit_high: 75
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fault_count: 1
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polarity: active_high
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function: comparator
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esp32_touch:
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setup_mode: false
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