// Variant definition for LilyGo T-Echo-Card (nRF52840) #ifndef _VARIANT_T_ECHO_CARD_ #define _VARIANT_T_ECHO_CARD_ /** Master clock frequency */ #define VARIANT_MCK (64000000ul) #define USE_LFXO // Board uses 32kHz crystal for LF /*---------------------------------------------------------------------------- * Headers *----------------------------------------------------------------------------*/ #include "WVariant.h" #ifdef __cplusplus extern "C" { #endif // __cplusplus // Number of pins defined in PinDescription array #define PINS_COUNT (48) #define NUM_DIGITAL_PINS (48) #define NUM_ANALOG_INPUTS (1) #define NUM_ANALOG_OUTPUTS (0) // LEDs - board only exposes 3x WS2812 addressable LEDs. No plain GPIO LEDs. // Intentionally do not define PIN_LED1 on this variant, so nRF52 platform // code does not auto-enable a nonexistent GPIO power/status LED. #define LED_STATE_ON 1 // Three independent WS2812 data lines (one LED per line, not a daisy chain). // Each is driven as a 1-pixel NeoPixel by StatusLEDModule / ExternalNotification, // assigns LED_POWER (red) and LED_NOTIFICATION (green). #define WS2812_DATA_1 (32 + 7) // P1.7 - charge/heartbeat (red) #define WS2812_DATA_2 (32 + 12) // P1.12 - external notification (green) #define WS2812_DATA_3 (0 + 28) // P0.28 - BLE pairing (blue) // Wire each WS2812 to a status role. Colour defaults are scaled to 25% // brightness (0x40) — the bare-die WS2812s on this board are very bright at // full intensity in a close-range enclosure. #define NEOPIXEL_STATUS_POWER_PIN WS2812_DATA_1 #define NEOPIXEL_STATUS_NOTIFICATION_PIN WS2812_DATA_2 #define NEOPIXEL_STATUS_PAIRING_PIN WS2812_DATA_3 #define NEOPIXEL_STATUS_POWER_COLOR 0x400000 // red @ 25% #define NEOPIXEL_STATUS_NOTIFICATION_COLOR 0x004000 // green @ 25% #define NEOPIXEL_STATUS_PAIRING_COLOR 0x000040 // blue @ 25% // The charger IC does not blink on its own; let StatusLEDModule do the // software blink while charging // If left defined: hardware would be expected to handle the charging pulse. // #define POWER_LED_HARDWARE_BLINKS_WHILE_CHARGING // Buttons #define PIN_BUTTON1 (32 + 10) // KEY_1: P1.10 #define BUTTON_CLICK_MS 400 // Analog pins #define PIN_A0 (0 + 2) // Battery ADC (BATTERY_ADC_DATA) #define BATTERY_PIN PIN_A0 static const uint8_t A0 = PIN_A0; #define ADC_RESOLUTION 14 // BATTERY_MEASUREMENT_CONTROL - enable divider for battery reading #define ADC_CTRL (0 + 31) #define ADC_CTRL_ENABLED HIGH // NFC placeholders, not used #define PIN_NFC1 (9) #define PIN_NFC2 (10) // Wire Interfaces (IIC_1 on the vendor header) #define WIRE_INTERFACES_COUNT 1 #define PIN_WIRE_SDA (32 + 4) // IIC_1_SDA: P1.4 #define PIN_WIRE_SCL (32 + 2) // IIC_1_SCL: P1.2 // External serial flash ZD25WQ32CEIGR // QSPI Pins #define PIN_QSPI_SCK (0 + 4) #define PIN_QSPI_CS (0 + 12) #define PIN_QSPI_IO0 (0 + 6) // MOSI if using two bit interface #define PIN_QSPI_IO1 (0 + 8) // MISO if using two bit interface #define PIN_QSPI_IO2 (32 + 9) // WP #define PIN_QSPI_IO3 (0 + 26) // HOLD // On-board QSPI Flash #define EXTERNAL_FLASH_DEVICES ZD25WQ32CEIGR #define EXTERNAL_FLASH_USE_QSPI // Lora S62F (SX1262) #define USE_SX1262 #define SX126X_CS (0 + 11) #define SX126X_DIO1 (32 + 8) #define SX126X_DIO2 (0 + 5) #define SX126X_BUSY (0 + 14) #define SX126X_RESET (0 + 7) #define SX126X_RXEN (32 + 1) // SX1262_RF_VC2 #define SX126X_TXEN (0 + 27) // SX1262_RF_VC1 #define SX126X_DIO3_TCXO_VOLTAGE 1.8 // ─────────────────────────────────────────────────────────────────────────── // OLED display: SSD1315 on I2C @ 0x3C (IIC_1). SSD1315 is register-compatible // with SSD1306, so USE_SSD1306 initializes the controller correctly. // // Viewport: the physical panel is 72×40, mapped into the SSD1315's 128×64 // GDDRAM at columns 28..99, pages 3..7 (rows 24..63). The firmware handles // this by: // * asking the library for GEOMETRY_72_40, which sets the framebuffer to // 72×40 and emits the right SETMULTIPLEX (39) / SETCOMPINS at init; // * relying on SSD1306Wire's built-in horizontal auto-centering // ((128 - width) / 2 = 28), so no horizontal shim is needed; // * calling SSD1306Wire::setYOffset(3) in Screen.cpp when // OLED_Y_OFFSET_PAGES is defined — this shifts every PAGEADDR write by // three pages (24 rows) so data lands on the visible rows. // ─────────────────────────────────────────────────────────────────────────── #define HAS_SCREEN 1 #define USE_SSD1306 #define OLED_GEOMETRY_OVERRIDE GEOMETRY_72_40 #define OLED_Y_OFFSET_PAGES 3 #define OLED_TINY // Controls power 3V3 for all peripherals (GPS + LoRa + Sensor) #define PIN_POWER_EN (0 + 30) // RT9080_EN // SPI1 is unused (no external SPI display). Keep declarations for the core. #define PIN_SPI1_MISO (-1) #define PIN_SPI1_MOSI (-1) #define PIN_SPI1_SCK (-1) // GPS pins #define GPS_L76K #define GPS_BAUDRATE 9600 #define HAS_GPS 1 #define PIN_GPS_EN (32 + 15) // GPS_EN: P1.15 - GPS power enable #define GPS_EN_ACTIVE 1 #define PIN_GPS_STANDBY (0 + 25) // GPS_WAKE_UP: P0.25 - wakeup pin #define PIN_GPS_PPS (0 + 23) // GPS_1PPS: P0.23 #define GPS_RX_PIN (0 + 19) // MCU RX ← GPS's TX (vendor GPS_UART_TX / P0.19) #define GPS_TX_PIN (0 + 21) // MCU TX → GPS's RX (vendor GPS_UART_RX / P0.21) #define PIN_GPS_RESET (0 + 29) // GPS_RF_EN: GPS RF enable / reset #define GPS_THREAD_INTERVAL 50 #define PIN_SERIAL1_RX GPS_RX_PIN #define PIN_SERIAL1_TX GPS_TX_PIN // SPI Interfaces (LoRa on SPI0) #define SPI_INTERFACES_COUNT 2 // For LORA, SPI 0 #define PIN_SPI_MISO (0 + 17) #define PIN_SPI_MOSI (0 + 15) #define PIN_SPI_SCK (0 + 13) // Battery // The battery sense is hooked to PIN_A0 (P0.2) via a divider controlled by ADC_CTRL. #define BATTERY_SENSE_RESOLUTION_BITS 12 #define BATTERY_SENSE_RESOLUTION 4096.0 #undef AREF_VOLTAGE #define AREF_VOLTAGE 3.0 #define VBAT_AR_INTERNAL AR_INTERNAL_3_0 #define ADC_MULTIPLIER (2.0F) // Buzzer (PWM output, passive piezo) #define PIN_BUZZER (32 + 6) // BUZZER_DATA: P1.6 // ─────────────────────────────────────────────────────────────────────────── // I²S speaker (MAX98357 Class-D amp). Stereo I²S data path. // Not supported on nrf52. These defines exist for out-of-tree code only. // ─────────────────────────────────────────────────────────────────────────── #define SPEAKER_EN (32 + 11) // P1.11 - amp main enable #define SPEAKER_EN_2 (0 + 3) // P0.3 - secondary enable (vendor firmware toggles both) #define SPEAKER_BCLK (0 + 16) // P0.16 - I2S bit clock #define SPEAKER_DATA (0 + 20) // P0.20 - I2S data (SDOUT) #define SPEAKER_WS_LRCK (0 + 22) // P0.22 - I2S word select / LRCK // ─────────────────────────────────────────────────────────────────────────── // PDM microphone (ST MP34DT05). // TODO to enable a mic path: // Use Adafruit nRF52 core's built-in PDM.h wrapper (Arduino-compatible // API exists on nRF52840). Clock on MIC_SCLK, data on MIC_DATA. // ─────────────────────────────────────────────────────────────────────────── #define MIC_SCLK (32 + 3) // P1.3 - PDM clock (MIC_SCLK on vendor header) #define MIC_DATA (32 + 5) // P1.5 - PDM data (MIC_DATA on vendor header) #define SERIAL_PRINT_PORT 0 #ifdef __cplusplus } #endif /*---------------------------------------------------------------------------- * Arduino objects - C++ only *----------------------------------------------------------------------------*/ #endif