Programming # The NORVI EC-M11-BC-C2-S has a mini USB port for serial connection with the SoC for programming. Any ESP32-supported programming IDE can be used to program the controller. Follow this guide to programming NORVI ESP32-based controllers with the Arduino IDE.
SoC: ESP32-WROOM32 Programming Port: USB UART
Wiring digital inputs, 12V power outputs, and solar # 8-pin and 3-pin connectors and wire harness # Pin Description # 8P Male Wire color I/O Configuration 1 White Digital In A+ 2 Brown Digital In A- 3 Green Digital In B+ 4 Yellow Digital In B- 5 Gray 12V+ 6 Pink 12V GND 7 Blue – 8 Red –
3P Male Wire color I/O Configuration 1 Blue Solar Panel + 2 Black Not in Use 3 Brown Solar Panel –
Digital Inputs # Wiring Digital Inputs # The digital inputs of NORVI EC-M11-BC-C2-S can be configured as both a sink and a source connection. The inverse of the digital input polar should be supplied to the common terminal.
Programming Digital Inputs # Reading the relevant GPIO of the ESP32 gives the value of the digital input. When the inputs are in the OFF state, the GPIO goes HIGH, and when the inputs are in the ON state, the GPIO goes LOW. Refer to the GPIO allocation table in the datasheet for the digital input GPIO.
#define INPUT1 34
void setup() {
Serial.begin(115200);
Serial.println("Device Starting");
pinMode(INPUT1, INPUT);
}
void loop() {
Serial.print(digitalRead(INPUT1));
Serial.println("");
delay(500);
}
12V Power Output # Programming power output # #include <Adafruit_ADS1015.h>
Adafruit_ADS1115 ads1(0x49);
void setup() {
Serial.begin(115200);
pinMode(18, OUTPUT); // 12V boosted output enable
ads1.begin();
ads1.setGain(GAIN_ONE);
Serial.println("Initialized 12V battery power control");
}
void loop() {
digitalWrite(18, HIGH); // Enable 12V battery power
delay(800);
}
void disable12VBatteryPower() {
digitalWrite(18, LOW); // Disable 12V battery power
}
LoRa Transceiver Module # Specification Long Range(LoRa) RF Transceiver Order depending on regional regulations SPI MISO GPIO19 SPI MOSI GPIO23 SPI SCK GPIO14 NSS GPIO26 DIO0 GPIO25 DIO1 GPIO27 DIO2 NOT CONNECTED RESET GPIO15
Programming LoRa Modules # #include <lmic.h>
#include <hal/hal.h>
#include <SPI.h>
#define CONFIRMED_MSG_RETRY_COUNT 3
static const u1_t PROGMEM APPEUI[8] = { 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00 };
void os_getArtEui (u1_t* buf) {
memcpy_P(buf, APPEUI, 8);
}
static const u1_t PROGMEM DEVEUI[8] = {0x4B, 0x11, 0x3F, 0xB1, 0x3C, 0xBE, 0xD6, 0x56};
void os_getDevEui (u1_t* buf) {
memcpy_P(buf, DEVEUI, 8);
}
static const u1_t PROGMEM APPKEY[16] = {0xF9, 0x65, 0xE4, 0xED, 0xFF, 0x8A, 0x89, 0x27, 0x23, 0xA6, 0xB7, 0x42, 0x2F, 0x05, 0x8E, 0x9F};
void os_getDevKey (u1_t* buf) {
memcpy_P(buf, APPKEY, 16);
}
static uint8_t mydata[] = "Hello, world!";
static osjob_t sendjob;
const unsigned TX_INTERVAL = 60;
const lmic_pinmap lmic_pins = {
.nss = 26,
.rxtx = LMIC_UNUSED_PIN,
.rst = 15,
.dio = {25, 27, -1},
};
void printHex2(unsigned v) {
v &= 0xff;
if (v < 16)
Serial.print('0');
Serial.print(v, HEX);
}
Solar Input # Solar Powered Model CN3083 Maximum Charge Current 600mA Maximum Voltage 6V Input Voltage monitor ADS1115 – 0x49 – AIN2
Battery Input # Battery Type 103040 Lithium polymer battery Nominal Capacity 1200mAh Nominal Voltage 3.75V Overcharge 4.2V Over-discharge Cutoff Voltage 3V
Programming Solar and Battery # #include <Adafruit_SSD1306.h>
#include <Adafruit_ADS1X15.h>
Adafruit_ADS1115 ads1;
int analog_value = 0;
void setup() {
Serial.begin(115200);// put your setup code here, to run once:
Wire.begin(16,17);
if (!ads1.begin(0x49)) {
Serial.println("Failed to initialize ADS 1 .");
while (1);
}
}
void loop() {
int16_t adc0, adc1, adc2, adc3;
adc0 = ads1.readADC_SingleEnded(0);
adc1 = ads1.readADC_SingleEnded(1);
adc2 = ads1.readADC_SingleEnded(2);
adc3 = ads1.readADC_SingleEnded(3);
Serial.println("-----------------------------------------------------------");
Serial.print("AIN1: "); Serial.print(adc0); Serial.println(" ");
Serial.print("AIN2: "); Serial.print(adc1); Serial.println(" ");
Serial.print("SOLAR: "); Serial.print(adc2); Serial.println(" ");
Serial.print("AIN4: "); Serial.print(adc3); Serial.println(" ");
}