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https://github.com/esphome/esphome.git
synced 2025-07-28 22:26:36 +00:00
unify lowercase x
in hexadecimal values (#8686)
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bc6ee20270
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670ad7192c
@ -7,7 +7,7 @@
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namespace esphome {
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namespace as7341 {
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static const uint8_t AS7341_CHIP_ID = 0X09;
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static const uint8_t AS7341_CHIP_ID = 0x09;
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static const uint8_t AS7341_CONFIG = 0x70;
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static const uint8_t AS7341_LED = 0x74;
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@ -45,7 +45,7 @@ static const uint8_t BL0906_WRITE_COMMAND = 0xCA;
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static const uint8_t BL0906_V_RMS = 0x16;
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// Total power
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static const uint8_t BL0906_WATT_SUM = 0X2C;
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static const uint8_t BL0906_WATT_SUM = 0x2C;
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// Current1~6
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static const uint8_t BL0906_I_1_RMS = 0x0D; // current_1
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@ -56,29 +56,29 @@ static const uint8_t BL0906_I_5_RMS = 0x13;
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static const uint8_t BL0906_I_6_RMS = 0x14; // current_6
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// Power1~6
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static const uint8_t BL0906_WATT_1 = 0X23; // power_1
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static const uint8_t BL0906_WATT_2 = 0X24;
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static const uint8_t BL0906_WATT_3 = 0X25;
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static const uint8_t BL0906_WATT_4 = 0X26;
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static const uint8_t BL0906_WATT_5 = 0X29;
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static const uint8_t BL0906_WATT_6 = 0X2A; // power_6
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static const uint8_t BL0906_WATT_1 = 0x23; // power_1
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static const uint8_t BL0906_WATT_2 = 0x24;
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static const uint8_t BL0906_WATT_3 = 0x25;
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static const uint8_t BL0906_WATT_4 = 0x26;
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static const uint8_t BL0906_WATT_5 = 0x29;
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static const uint8_t BL0906_WATT_6 = 0x2A; // power_6
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// Active pulse count, unsigned
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static const uint8_t BL0906_CF_1_CNT = 0X30; // Channel_1
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static const uint8_t BL0906_CF_2_CNT = 0X31;
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static const uint8_t BL0906_CF_3_CNT = 0X32;
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static const uint8_t BL0906_CF_4_CNT = 0X33;
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static const uint8_t BL0906_CF_5_CNT = 0X36;
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static const uint8_t BL0906_CF_6_CNT = 0X37; // Channel_6
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static const uint8_t BL0906_CF_1_CNT = 0x30; // Channel_1
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static const uint8_t BL0906_CF_2_CNT = 0x31;
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static const uint8_t BL0906_CF_3_CNT = 0x32;
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static const uint8_t BL0906_CF_4_CNT = 0x33;
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static const uint8_t BL0906_CF_5_CNT = 0x36;
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static const uint8_t BL0906_CF_6_CNT = 0x37; // Channel_6
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// Total active pulse count, unsigned
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static const uint8_t BL0906_CF_SUM_CNT = 0X39;
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static const uint8_t BL0906_CF_SUM_CNT = 0x39;
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// Voltage frequency cycle
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static const uint8_t BL0906_FREQUENCY = 0X4E;
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static const uint8_t BL0906_FREQUENCY = 0x4E;
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// Internal temperature
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static const uint8_t BL0906_TEMPERATURE = 0X5E;
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static const uint8_t BL0906_TEMPERATURE = 0x5E;
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// Calibration register
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// RMS gain adjustment register
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@ -32,7 +32,7 @@ const uint32_t FAN_MAX = 0x40;
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// Temperature
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const uint8_t TEMP_RANGE = TEMP_MAX - TEMP_MIN + 1;
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const uint32_t TEMP_MASK = 0XF00;
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const uint32_t TEMP_MASK = 0xF00;
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const uint32_t TEMP_SHIFT = 8;
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const uint16_t BITS = 28;
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@ -8,7 +8,7 @@
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namespace esphome {
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namespace hm3301 {
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static const uint8_t SELECT_COMM_CMD = 0X88;
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static const uint8_t SELECT_COMM_CMD = 0x88;
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class HM3301Component : public PollingComponent, public i2c::I2CDevice {
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public:
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@ -388,7 +388,7 @@ static const uint8_t PROGMEM INITCMD_GC9D01N[] = {
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0x8D, 1, 0xFF,
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0x8E, 1, 0xFF,
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0x8F, 1, 0xFF,
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0X3A, 1, 0x05, // COLMOD: Pixel Format Set (3Ah) MCU interface, 16 bits / pixel
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0x3A, 1, 0x05, // COLMOD: Pixel Format Set (3Ah) MCU interface, 16 bits / pixel
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0xEC, 1, 0x01, // Inversion (ECh) DINV=1+2H1V column for Dual Gate (BFh=0)
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// According to datasheet Inversion (ECh) value 0x01 isn't valid, but Lilygo uses it everywhere
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0x74, 7, 0x02, 0x0E, 0x00, 0x00, 0x00, 0x00, 0x00,
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@ -129,7 +129,7 @@ enum PeriodicDataStructure : uint8_t {
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LIGHT_SENSOR = 37,
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OUT_PIN_SENSOR = 38,
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};
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enum PeriodicDataValue : uint8_t { HEAD = 0XAA, END = 0x55, CHECK = 0x00 };
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enum PeriodicDataValue : uint8_t { HEAD = 0xAA, END = 0x55, CHECK = 0x00 };
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enum AckDataStructure : uint8_t { COMMAND = 6, COMMAND_STATUS = 7 };
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@ -105,7 +105,7 @@ enum PeriodicDataStructure : uint8_t {
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TARGET_RESOLUTION = 10,
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};
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enum PeriodicDataValue : uint8_t { HEAD = 0XAA, END = 0x55, CHECK = 0x00 };
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enum PeriodicDataValue : uint8_t { HEAD = 0xAA, END = 0x55, CHECK = 0x00 };
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enum AckDataStructure : uint8_t { COMMAND = 6, COMMAND_STATUS = 7 };
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@ -25,8 +25,8 @@ const uint8_t MITSUBISHI_FAN_AUTO = 0x00;
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const uint8_t MITSUBISHI_VERTICAL_VANE_SWING = 0x38;
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// const uint8_t MITSUBISHI_AUTO = 0X80;
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const uint8_t MITSUBISHI_OTHERWISE = 0X40;
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// const uint8_t MITSUBISHI_AUTO = 0x80;
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const uint8_t MITSUBISHI_OTHERWISE = 0x40;
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const uint8_t MITSUBISHI_POWERFUL = 0x08;
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// Optional presets used to enable some model features
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@ -42,13 +42,13 @@ const uint16_t MITSUBISHI_HEADER_SPACE = 1700;
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const uint16_t MITSUBISHI_MIN_GAP = 17500;
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// Marker bytes
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const uint8_t MITSUBISHI_BYTE00 = 0X23;
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const uint8_t MITSUBISHI_BYTE01 = 0XCB;
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const uint8_t MITSUBISHI_BYTE02 = 0X26;
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const uint8_t MITSUBISHI_BYTE03 = 0X01;
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const uint8_t MITSUBISHI_BYTE04 = 0X00;
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const uint8_t MITSUBISHI_BYTE13 = 0X00;
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const uint8_t MITSUBISHI_BYTE16 = 0X00;
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const uint8_t MITSUBISHI_BYTE00 = 0x23;
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const uint8_t MITSUBISHI_BYTE01 = 0xCB;
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const uint8_t MITSUBISHI_BYTE02 = 0x26;
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const uint8_t MITSUBISHI_BYTE03 = 0x01;
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const uint8_t MITSUBISHI_BYTE04 = 0x00;
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const uint8_t MITSUBISHI_BYTE13 = 0x00;
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const uint8_t MITSUBISHI_BYTE16 = 0x00;
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climate::ClimateTraits MitsubishiClimate::traits() {
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auto traits = climate::ClimateTraits();
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@ -123,8 +123,8 @@ enum class NCIState : uint8_t {
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RFST_POLL_ACTIVE,
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EP_DEACTIVATING,
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EP_SELECTING,
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TEST = 0XFE,
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FAILED = 0XFF,
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TEST = 0xFE,
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FAILED = 0xFF,
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};
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enum class TestMode : uint8_t {
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@ -138,8 +138,8 @@ enum class NCIState : uint8_t {
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RFST_POLL_ACTIVE,
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EP_DEACTIVATING,
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EP_SELECTING,
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TEST = 0XFE,
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FAILED = 0XFF,
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TEST = 0xFE,
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FAILED = 0xFF,
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};
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enum class TestMode : uint8_t {
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@ -1004,7 +1004,7 @@ void WaveshareEPaper1P54InBV2::initialize() {
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this->command(0x4E); // set RAM x address count to 0;
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this->data(0x00);
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this->command(0x4F); // set RAM y address count to 0X199;
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this->command(0x4F); // set RAM y address count to 0x199;
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this->data(0xC7);
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this->data(0x00);
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@ -1878,7 +1878,7 @@ void GDEY029T94::initialize() {
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this->command(0x4E); // set RAM x address count to 0;
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this->data(0x00);
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this->command(0x4F); // set RAM y address count to 0X199;
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this->command(0x4F); // set RAM y address count to 0x199;
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this->command(0x00);
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this->command(0x00);
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this->wait_until_idle_();
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@ -2070,7 +2070,7 @@ void GDEW029T5::init_full_() {
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this->init_display_();
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this->command(0x82); // vcom_DC setting
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this->data(0x08);
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this->command(0X50); // VCOM AND DATA INTERVAL SETTING
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this->command(0x50); // VCOM AND DATA INTERVAL SETTING
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this->data(0x97); // WBmode:VBDF 17|D7 VBDW 97 VBDB 57 WBRmode:VBDF F7 VBDW 77 VBDB 37 VBDR B7
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this->command(0x20);
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this->write_lut_(LUT_20_VCOMDC_29_5, sizeof(LUT_20_VCOMDC_29_5));
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@ -2090,7 +2090,7 @@ void GDEW029T5::init_partial_() {
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this->init_display_();
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this->command(0x82); // vcom_DC setting
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this->data(0x08);
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this->command(0X50); // VCOM AND DATA INTERVAL SETTING
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this->command(0x50); // VCOM AND DATA INTERVAL SETTING
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this->data(0x17); // WBmode:VBDF 17|D7 VBDW 97 VBDB 57 WBRmode:VBDF F7 VBDW 77 VBDB 37 VBDR B7
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this->command(0x20);
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this->write_lut_(LUT_20_VCOMDC_PARTIAL_29_5, sizeof(LUT_20_VCOMDC_PARTIAL_29_5));
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@ -4481,10 +4481,10 @@ void WaveshareEPaper7P5InHDB::initialize() {
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this->data(0x01); // LUT1, for white
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this->command(0x18);
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this->data(0X80);
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this->data(0x80);
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this->command(0x22);
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this->data(0XB1); // Load Temperature and waveform setting.
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this->data(0xB1); // Load Temperature and waveform setting.
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this->command(0x20);
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@ -32,7 +32,7 @@ void XPT2046Component::update_touches() {
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int16_t touch_pressure_1 = this->read_adc_(0xB1 /* touch_pressure_1 */);
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int16_t touch_pressure_2 = this->read_adc_(0xC1 /* touch_pressure_2 */);
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z_raw = touch_pressure_1 + 0Xfff - touch_pressure_2;
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z_raw = touch_pressure_1 + 0xfff - touch_pressure_2;
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ESP_LOGVV(TAG, "Touchscreen Update z = %d", z_raw);
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touch = (z_raw >= this->threshold_);
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if (touch) {
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