/* Copyright (c) 2014-2015 Arduino LLC. All right reserved. Copyright (c) 2016 Sandeep Mistry All right reserved. Copyright (c) 2018, Adafruit Industries (adafruit.com) This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. This library is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public License for more details. You should have received a copy of the GNU Lesser General Public License along with this library; if not, write to the Free Software Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef _VARIANT_HELTEC_NRF_ #define _VARIANT_HELTEC_NRF_ /** 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) #define PIN_LED1 (32 + 15) // green #define LED_BLUE PIN_LED1 // fake for bluefruit library #define LED_GREEN PIN_LED1 #define LED_STATE_ON 0 // State when LED is lit /* * Buttons */ #define PIN_BUTTON1 (32 + 10) // P1.10, MCU_USER /* No longer populated on PCB */ #define PIN_SERIAL2_RX (-1) #define PIN_SERIAL2_TX (-1) /* * I2C */ #define WIRE_INTERFACES_COUNT 1 // I2C bus 0, routed to HUSB238 USB PD sink controller. #define PIN_WIRE_SDA (0 + 30) // P0.30, PD_SINK_SDA #define PIN_WIRE_SCL (0 + 5) // P0.05, PD_SINK_SCL /* * Lora radio */ #define USE_SX1262 #define SX126X_CS (0 + 24) #define LORA_CS SX126X_CS #define SX126X_DIO1 (0 + 20) #define SX126X_BUSY (0 + 17) #define SX126X_RESET (0 + 25) #define SX126X_DIO2_AS_RF_SWITCH #define SX126X_DIO3_TCXO_VOLTAGE 1.8 #define USE_KCT8103L_PA_ONLY #define LORA_KCT8103L_EN (0 + 15) // CSD - KCT8103L chip enable (HIGH=on) #define LORA_KCT8103L_TX_RX (0 + 16) // TX or bypass control (HIGH=TX, LOW=RX) #define LORA_PA_POWER LORA_KCT8103L_EN #define RF_PA_DETECT_PIN (0 + 13) // HIGH=high-power PA, LOW=low-power #define RF_PA_HIGH_POWER_VALUE HIGH /* * SPI Interfaces */ #define SPI_INTERFACES_COUNT 1 // For LORA, spi 0 #define PIN_SPI_MISO (0 + 23) #define PIN_SPI_MOSI (0 + 22) #define PIN_SPI_SCK (0 + 19) /* * GPS pins */ #define GPS_L76K #define PIN_GPS_RESET (32 + 6) #define GPS_RESET_MODE LOW #define PIN_GPS_EN (0 + 7) // P0.07, VGNSS_Ctrl #define GPS_EN_ACTIVE LOW #define PERIPHERAL_WARMUP_MS 1000 // Make sure GNSS power is stable before continuing #define PIN_GPS_STANDBY (32 + 2) // P1.02, WAKE_UP. Low allows sleep, high forces wake. #define PIN_GPS_PPS (32 + 4) // P1.04, 1PPS #define GPS_RX_PIN (32 + 5) // P1.05, MCU RX connected to GPS TXD. #define GPS_TX_PIN (32 + 7) // P1.07, MCU TX connected to GPS RXD. #define GPS_THREAD_INTERVAL 50 #define PIN_SERIAL1_RX GPS_RX_PIN #define PIN_SERIAL1_TX GPS_TX_PIN // Hardware watchdog #define HAS_HARDWARE_WATCHDOG #define HARDWARE_WATCHDOG_DONE (0 + 9) #define HARDWARE_WATCHDOG_WAKE (0 + 10) #define HARDWARE_WATCHDOG_TIMEOUT_MS (6 * 60 * 1000) // 6 minute watchdog #define SERIAL_PRINT_PORT 0 #define ADC_CTRL (0 + 21) // P0.21, ADC_Ctrl #define ADC_CTRL_ENABLED HIGH #define BATTERY_PIN (0 + 4) // P0.04, ADC_IN #define ADC_RESOLUTION 14 #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 (4.916F) // nRF52840 AIN2 is P0.04 on the MeshTower V2 battery divider. #define BATTERY_LPCOMP_INPUT NRF_LPCOMP_INPUT_2 // We have AIN2 with a VBAT divider so AIN2 = VBAT * (100/490) // We have the device going deep sleep under 3.1V, which is AIN2 = 0.63V // So we can wake up when VBAT>=VDD is restored to 3.3V, where AIN2 = 0.67V // Ratio 0.67/3.3 = 0.20, so we can pick a bit higher, 2/8 VDD, which means // VBAT=4.04V #define BATTERY_LPCOMP_THRESHOLD NRF_LPCOMP_REF_SUPPLY_2_8 #ifdef __cplusplus } #endif /*---------------------------------------------------------------------------- * Arduino objects - C++ only *----------------------------------------------------------------------------*/ #endif