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[mlx90393] Fix inverted gain and resolution, change default values
The old gain options were copied from the arduino-MLX90393 library. However, the library actually does the opposite thing from the sensor hardware. Low hardware gain settings are multiplied with large numbers, while high gains are multiplied with small numbers. This is done in order to get consistent readings in µT independent of gain setting. This is confusing from the user's perspective. The user configures the sensor, not the library. Therefore, this PR inverts (actually 5/x) all gain settings. This reflects the analog gain used inside the sensor. Furthermore, the resolution options are named more appropriately. The resolution is always 16 bit, we just choose which 16 bits we get. Additionally, the default values are changed. The old defaults offered high sensitivity, but caused integer overflows in strong magnetic fields. This easily happened when a neodymium magnet was held within a few cm of the sensor. The new default configuration prevents all integer overflows and can deal with strong fields easily. Higher sensitivity must now be explicitly configured by the user. The new documentation informs about integer overflows, mitigating the risk of false readings that existed previously. Finally, this commit exposes the already existing `hallconf` and `temperature_compensation` options.
This commit is contained in:
parent
ef6ccddc0d
commit
6f16365b2f
11 changed files with 137 additions and 46 deletions
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@ -1,20 +1,20 @@
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from esphome import pins
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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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import esphome.config_validation as cv
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from esphome.const import (
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CONF_FILTER,
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CONF_GAIN,
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CONF_ID,
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UNIT_MICROTESLA,
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UNIT_CELSIUS,
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STATE_CLASS_MEASUREMENT,
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CONF_OVERSAMPLING,
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CONF_RESOLUTION,
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CONF_TEMPERATURE,
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ICON_MAGNET,
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ICON_THERMOMETER,
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CONF_GAIN,
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CONF_RESOLUTION,
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CONF_OVERSAMPLING,
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CONF_FILTER,
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CONF_TEMPERATURE,
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STATE_CLASS_MEASUREMENT,
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UNIT_CELSIUS,
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UNIT_MICROTESLA,
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)
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from esphome import pins
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CODEOWNERS = ["@functionpointer"]
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DEPENDENCIES = ["i2c"]
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@ -26,30 +26,47 @@ MLX90393Component = mlx90393_ns.class_(
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)
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GAIN = {
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"1X": 7,
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"1_33X": 6,
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"1_67X": 5,
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"2X": 4,
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"2_5X": 3,
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"3X": 2,
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"4X": 1,
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"5X": 0,
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"1X": 0,
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"1_25X": 1,
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"1_67X": 2,
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"2X": 3,
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"2_5X": 4,
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"3X": 5,
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"3_75X": 6,
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"5X": 7,
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}
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RESOLUTION = {
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"16BIT": 0,
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"17BIT": 1,
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"18BIT": 2,
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"19BIT": 3,
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"DIV_8": 3,
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"DIV_4": 2,
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"DIV_2": 1,
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"DIV_1": 0,
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}
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CONF_X_AXIS = "x_axis"
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CONF_Y_AXIS = "y_axis"
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CONF_Z_AXIS = "z_axis"
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CONF_DRDY_PIN = "drdy_pin"
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CONF_TEMPERATURE_COMPENSATION = "temperature_compensation"
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CONF_HALLCONF = "hallconf"
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def mlx90393_axis_schema(default_resolution: str):
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def _validate(config):
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if config[CONF_TEMPERATURE_COMPENSATION]:
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for axis in [CONF_X_AXIS, CONF_Y_AXIS, CONF_Z_AXIS]:
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if axis not in config:
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continue
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if (res := config[axis][CONF_RESOLUTION]) in [
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"DIV_8",
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"DIV_4",
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]:
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raise cv.Invalid(
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f"{axis}: {CONF_RESOLUTION} cannot be {res} with {CONF_TEMPERATURE_COMPENSATION} enabled"
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)
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return config
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def mlx90393_axis_schema():
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return sensor.sensor_schema(
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unit_of_measurement=UNIT_MICROTESLA,
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accuracy_decimals=0,
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@ -58,7 +75,7 @@ def mlx90393_axis_schema(default_resolution: str):
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).extend(
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cv.Schema(
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{
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cv.Optional(CONF_RESOLUTION, default=default_resolution): cv.enum(
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cv.Optional(CONF_RESOLUTION, default="DIV_8"): cv.enum(
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RESOLUTION, upper=True, space="_"
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)
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}
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@ -66,19 +83,19 @@ def mlx90393_axis_schema(default_resolution: str):
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)
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CONFIG_SCHEMA = (
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CONFIG_SCHEMA = cv.All(
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cv.Schema(
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{
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cv.GenerateID(): cv.declare_id(MLX90393Component),
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cv.Optional(CONF_GAIN, default="2_5X"): cv.enum(
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GAIN, upper=True, space="_"
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),
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cv.Optional(CONF_GAIN, default="1X"): cv.enum(GAIN, upper=True, space="_"),
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cv.Optional(CONF_DRDY_PIN): pins.gpio_input_pin_schema,
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cv.Optional(CONF_OVERSAMPLING, default=2): cv.int_range(min=0, max=3),
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cv.Optional(CONF_OVERSAMPLING, default=0): cv.int_range(min=0, max=3),
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cv.Optional(CONF_FILTER, default=6): cv.int_range(min=0, max=7),
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cv.Optional(CONF_X_AXIS): mlx90393_axis_schema("19BIT"),
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cv.Optional(CONF_Y_AXIS): mlx90393_axis_schema("19BIT"),
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cv.Optional(CONF_Z_AXIS): mlx90393_axis_schema("16BIT"),
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cv.Optional(CONF_X_AXIS): mlx90393_axis_schema(),
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cv.Optional(CONF_Y_AXIS): mlx90393_axis_schema(),
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cv.Optional(CONF_Z_AXIS): mlx90393_axis_schema(),
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cv.Optional(CONF_TEMPERATURE_COMPENSATION, default=False): bool,
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cv.Optional(CONF_HALLCONF, default=0xC): cv.one_of(0xC, 0x0),
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cv.Optional(CONF_TEMPERATURE): sensor.sensor_schema(
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unit_of_measurement=UNIT_CELSIUS,
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accuracy_decimals=1,
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@ -96,7 +113,8 @@ CONFIG_SCHEMA = (
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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(0x0C))
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.extend(i2c.i2c_device_schema(0x0C)),
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_validate,
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)
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@ -43,6 +43,10 @@ void MLX90393Cls::setup() {
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this->mlx_.setDigitalFiltering(this->filter_);
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this->mlx_.setTemperatureOverSampling(this->temperature_oversampling_);
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this->mlx_.setTemperatureCompensation(this->temperature_compensation_);
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this->mlx_.setHallConf(this->hallconf_);
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}
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void MLX90393Cls::dump_config() {
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@ -29,7 +29,10 @@ class MLX90393Cls : public PollingComponent, public i2c::I2CDevice, public MLX90
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void set_resolution(uint8_t xyz, uint8_t res) { resolutions_[xyz] = res; }
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void set_filter(uint8_t filter) { filter_ = filter; }
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void set_gain(uint8_t gain_sel) { gain_ = gain_sel; }
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void set_temperature_compensation(bool temperature_compensation) {
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temperature_compensation_ = temperature_compensation;
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}
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void set_hallconf(uint8_t hallconf) { hallconf_ = hallconf; }
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// overrides for MLX library
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// disable lint because it keeps suggesting const uint8_t *response.
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@ -52,6 +55,8 @@ class MLX90393Cls : public PollingComponent, public i2c::I2CDevice, public MLX90
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uint8_t temperature_oversampling_ = 0;
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uint8_t filter_;
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uint8_t resolutions_[3] = {0};
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bool temperature_compensation_ = false;
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uint8_t hallconf_ = 0xC;
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GPIOPin *drdy_pin_{nullptr};
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};
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@ -7,14 +7,17 @@ sensor:
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- platform: mlx90393
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oversampling: 1
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filter: 0
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gain: 3X
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gain: 1X
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temperature_compensation: true
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x_axis:
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name: mlxxaxis
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resolution: DIV_2
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y_axis:
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name: mlxyaxis
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resolution: DIV_1
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z_axis:
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name: mlxzaxis
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resolution: 17BIT
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resolution: DIV_2
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temperature:
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name: mlxtemp
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oversampling: 2
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@ -7,14 +7,17 @@ sensor:
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- platform: mlx90393
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oversampling: 1
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filter: 0
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gain: 3X
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gain: 1X
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temperature_compensation: true
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x_axis:
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name: mlxxaxis
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resolution: DIV_2
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y_axis:
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name: mlxyaxis
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resolution: DIV_1
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z_axis:
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name: mlxzaxis
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resolution: 17BIT
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resolution: DIV_2
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temperature:
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name: mlxtemp
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oversampling: 2
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@ -7,14 +7,17 @@ sensor:
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- platform: mlx90393
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oversampling: 1
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filter: 0
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gain: 3X
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gain: 1X
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temperature_compensation: true
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x_axis:
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name: mlxxaxis
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resolution: DIV_2
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y_axis:
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name: mlxyaxis
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resolution: DIV_1
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z_axis:
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name: mlxzaxis
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resolution: 17BIT
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resolution: DIV_2
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temperature:
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name: mlxtemp
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oversampling: 2
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@ -7,14 +7,17 @@ sensor:
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- platform: mlx90393
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oversampling: 1
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filter: 0
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gain: 3X
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gain: 1X
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temperature_compensation: true
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x_axis:
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name: mlxxaxis
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resolution: DIV_2
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y_axis:
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name: mlxyaxis
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resolution: DIV_1
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z_axis:
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name: mlxzaxis
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resolution: 17BIT
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resolution: DIV_2
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temperature:
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name: mlxtemp
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oversampling: 2
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23
tests/components/mlx90393/test.esp32-s3-ard.yaml
Normal file
23
tests/components/mlx90393/test.esp32-s3-ard.yaml
Normal file
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i2c:
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- id: i2c_mlx90393
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scl: 5
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sda: 4
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sensor:
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- platform: mlx90393
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oversampling: 1
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filter: 0
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gain: 1X
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temperature_compensation: true
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x_axis:
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name: mlxxaxis
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resolution: DIV_2
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y_axis:
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name: mlxyaxis
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resolution: DIV_1
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z_axis:
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name: mlxzaxis
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resolution: DIV_2
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temperature:
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name: mlxtemp
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oversampling: 2
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23
tests/components/mlx90393/test.esp32-s3-idf.yaml
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23
tests/components/mlx90393/test.esp32-s3-idf.yaml
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i2c:
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- id: i2c_mlx90393
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scl: 5
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sda: 4
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sensor:
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- platform: mlx90393
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oversampling: 1
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filter: 0
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gain: 1X
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temperature_compensation: true
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x_axis:
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name: mlxxaxis
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resolution: DIV_2
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y_axis:
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name: mlxyaxis
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resolution: DIV_1
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z_axis:
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name: mlxzaxis
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resolution: DIV_2
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temperature:
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name: mlxtemp
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oversampling: 2
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- platform: mlx90393
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oversampling: 1
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filter: 0
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gain: 3X
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gain: 1X
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temperature_compensation: true
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x_axis:
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name: mlxxaxis
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resolution: DIV_2
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y_axis:
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name: mlxyaxis
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resolution: DIV_1
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z_axis:
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name: mlxzaxis
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resolution: 17BIT
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resolution: DIV_2
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temperature:
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name: mlxtemp
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oversampling: 2
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- platform: mlx90393
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oversampling: 1
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filter: 0
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gain: 3X
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gain: 1X
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temperature_compensation: true
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x_axis:
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name: mlxxaxis
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resolution: DIV_2
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y_axis:
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name: mlxyaxis
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resolution: DIV_1
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z_axis:
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name: mlxzaxis
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resolution: 17BIT
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resolution: DIV_2
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temperature:
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name: mlxtemp
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oversampling: 2
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