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3 changed files with 5 additions and 9 deletions
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@ -28,7 +28,7 @@ CONFIG_SCHEMA = (
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}
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}
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)
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)
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.extend(cv.COMPONENT_SCHEMA)
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.extend(cv.COMPONENT_SCHEMA)
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.extend(i2c.i2c_device_schema(0x58)) # GP8211 I2C-Adresse
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.extend(i2c.i2c_device_schema(0x58))
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)
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)
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async def to_code(config):
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async def to_code(config):
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@ -6,11 +6,10 @@ namespace gp8211 {
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static const char *const TAG = "gp8211";
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static const char *const TAG = "gp8211";
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static const uint8_t RANGE_REGISTER = 0x01; // Register für die Spannungsrange
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static const uint8_t RANGE_REGISTER = 0x01;
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void GP8211::setup() {
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void GP8211::setup() {
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// Wähle den Spannungsmodus basierend auf der YAML-Konfiguration
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uint8_t voltage_setting = (this->voltage_ == GP8211_VOLTAGE_10V) ? 0x77 : 0x55;
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uint8_t voltage_setting = (this->voltage_ == GP8211_VOLTAGE_10V) ? 0x77 : 0x55; // 0x77 für 0-10V, 0x55 für 0-5V
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this->write_register(RANGE_REGISTER, &voltage_setting, 1);
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this->write_register(RANGE_REGISTER, &voltage_setting, 1);
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}
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}
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@ -13,14 +13,11 @@ void GP8211Output::dump_config() {
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}
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}
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void GP8211Output::write_state(float state) {
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void GP8211Output::write_state(float state) {
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// Ausgabe des ursprünglichen Helligkeitswerts von der Light-Komponente
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ESP_LOGD(TAG, "Original brightness state received from Light component: %.5f", state);
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ESP_LOGD(TAG, "Original brightness state received from Light component: %.5f", state);
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// Konvertiere den state (0.0 bis 1.0) in einen 15-Bit DAC-Wert (0 bis 32767)
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uint16_t value = static_cast<uint16_t>(state * 32767);
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uint16_t value = static_cast<uint16_t>(state * 32767);
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ESP_LOGD(TAG, "Calculated DAC value: %u", value); // Ausgabe des berechneten Wertes zur Überprüfung
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ESP_LOGD(TAG, "Calculated DAC value: %u", value);
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// Sende den Wert an den DAC (2 Bytes)
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i2c::ErrorCode err = this->parent_->write_register(OUTPUT_REGISTER, (uint8_t *)&value, 2);
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i2c::ErrorCode err = this->parent_->write_register(OUTPUT_REGISTER, (uint8_t *)&value, 2);
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if (err != i2c::ERROR_OK) {
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if (err != i2c::ERROR_OK) {
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