implement status LEDs
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@ -12,6 +12,14 @@ My [geiger counter from RH Electronics](https://www.rhelectronics.store/arduino-
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You'll need to use a logic level shifter to convert the 5v signals to 3.3v.
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## Configuration
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The status LEDs are configured using a ranging approach. The green LED turns on when
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the uSv reading is below the configured `safe_level`. When the uSv reading is between
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`safe_level` and `warning_level`, the yellow LED turns on. All readings above `warning_level`
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trigger the red LED.
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## Example HA Config for Statistics
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```yaml
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@ -9,29 +9,74 @@ static const char *TAG = "geiger_counter_sensor.sensor";
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void GeigerCounterSensor::setup() {
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ESP_LOGCONFIG(TAG, "Setting up Geiger Counter Sensor...");
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ESP_LOGCONFIG(TAG, "Setting up Geiger Counter Sensor...");
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if (green_led_pin_ != nullptr) {
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green_led_pin_->setup();
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green_led_pin_->digital_write(false);
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}
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if (yellow_led_pin_ != nullptr) {
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yellow_led_pin_->setup();
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yellow_led_pin_->digital_write(false);
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}
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if (red_led_pin_ != nullptr) {
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red_led_pin_->setup();
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red_led_pin_->digital_write(false);
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}
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}
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void GeigerCounterSensor::loop() {
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const int max_line_length = 80;
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static char buffer[max_line_length];
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while (available()) {
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if(readline(read(), buffer, max_line_length) > 0) {
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if (readline(read(), buffer, max_line_length) > 0) {
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int cpm = atof(buffer);
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float usv = cpm * 0.0057;
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ESP_LOGCONFIG(TAG, "Received radiation level: %d cpm, %.2f μSv", cpm, usv);
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this->publish_state(usv);
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if (usv < safe_level_) {
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if (green_led_pin_ != nullptr) {
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green_led_pin_->digital_write(true);
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}
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if (yellow_led_pin_ != nullptr) {
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yellow_led_pin_->digital_write(false);
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}
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if (red_led_pin_ != nullptr) {
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red_led_pin_->digital_write(false);
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}
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} else if (usv >= safe_level_ && usv < warning_level_) {
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if (green_led_pin_ != nullptr) {
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green_led_pin_->digital_write(false);
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}
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if (yellow_led_pin_ != nullptr) {
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yellow_led_pin_->digital_write(true);
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}
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if (red_led_pin_ != nullptr) {
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red_led_pin_->digital_write(false);
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}
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} else {
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if (green_led_pin_ != nullptr) {
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green_led_pin_->digital_write(false);
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}
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if (yellow_led_pin_ != nullptr) {
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yellow_led_pin_->digital_write(false);
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}
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if (red_led_pin_ != nullptr) {
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red_led_pin_->digital_write(true);
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}
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}
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}
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}
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}
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void GeigerCounterSensor::dump_config() {
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LOG_SENSOR("", "Geiger Counter Sensor", this);
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}
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void GeigerCounterSensor::update() {
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}
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} // namespace geiger_counter_sensor
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@ -2,7 +2,7 @@
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#include "esphome/core/component.h"
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#include "esphome/components/sensor/sensor.h"
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#include "esphome/components/uart/uart.h"
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#include "esphome/core/gpio.h"
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namespace esphome {
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namespace geiger_counter_sensor {
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@ -14,6 +14,18 @@ class GeigerCounterSensor : public sensor::Sensor, public PollingComponent, publ
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void update() override;
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void loop() override;
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void dump_config() override;
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void set_green_led_pin(GPIOPin *pin) { green_led_pin_ = pin; }
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void set_yellow_led_pin(GPIOPin *pin) { yellow_led_pin_ = pin; }
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void set_red_led_pin(GPIOPin *pin) { red_led_pin_ = pin; }
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void set_safe_level(float safe_level) { safe_level_ = safe_level; }
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void set_warning_level(float warning_level) { warning_level_ = warning_level; }
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private:
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GPIOPin *green_led_pin_{nullptr};
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GPIOPin *yellow_led_pin_{nullptr};
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GPIOPin *red_led_pin_{nullptr};
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float safe_level_{0.35};
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float warning_level_{0.7};
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};
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} // namespace geiger_counter_sensor
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@ -2,6 +2,7 @@ import esphome.codegen as cg
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import esphome.config_validation as cv
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from esphome.components import uart, sensor
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from esphome.const import ICON_RADIATOR, UNIT_EMPTY
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from esphome import pins
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DEPENDENCIES = ["uart"]
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@ -10,6 +11,12 @@ GeigerCounterSensor = geiger_counter_sensor_ns.class_(
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"GeigerCounterSensor", cg.PollingComponent, uart.UARTDevice
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)
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CONF_GREEN_LED_PIN = "green_led_pin"
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CONF_YELLOW_LED_PIN = "yellow_led_pin"
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CONF_RED_LED_PIN = "red_led_pin"
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CONF_SAFE_LEVEL = "safe_level"
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CONF_WARNING_LEVEL = "warning_level"
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CONFIG_SCHEMA = (
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sensor.sensor_schema(
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GeigerCounterSensor,
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@ -19,6 +26,13 @@ CONFIG_SCHEMA = (
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)
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.extend(cv.polling_component_schema("60s"))
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.extend(uart.UART_DEVICE_SCHEMA)
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.extend({
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cv.Required(CONF_GREEN_LED_PIN): pins.gpio_output_pin_schema,
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cv.Required(CONF_YELLOW_LED_PIN): pins.gpio_output_pin_schema,
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cv.Required(CONF_RED_LED_PIN): pins.gpio_output_pin_schema,
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cv.Optional(CONF_SAFE_LEVEL, default=0.35): cv.float_,
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cv.Optional(CONF_WARNING_LEVEL, default=0.7): cv.float_,
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})
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)
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@ -26,3 +40,15 @@ 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 uart.register_uart_device(var, config)
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green_led_pin = await cg.gpio_pin_expression(config[CONF_GREEN_LED_PIN])
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cg.add(var.set_green_led_pin(green_led_pin))
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yellow_led_pin = await cg.gpio_pin_expression(config[CONF_YELLOW_LED_PIN])
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cg.add(var.set_yellow_led_pin(yellow_led_pin))
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red_led_pin = await cg.gpio_pin_expression(config[CONF_RED_LED_PIN])
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cg.add(var.set_red_led_pin(red_led_pin))
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cg.add(var.set_safe_level(config[CONF_SAFE_LEVEL]))
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cg.add(var.set_warning_level(config[CONF_WARNING_LEVEL]))
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@ -13,4 +13,8 @@ uart:
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sensor:
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- platform: geiger_counter_sensor
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name: geiger-counter
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# safe_rads: 55
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green_led_pin: GPIO0
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yellow_led_pin: GPIO4
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red_led_pin: GPIO5
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safe_level: 0.35
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warning_level: 0.7
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