This commit is contained in:
Thomas von Dein
2020-03-07 15:17:26 +01:00
parent 0fb1be4440
commit ef00003cd0
8 changed files with 198 additions and 14 deletions

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@@ -43,7 +43,7 @@ SDO/MISO PA5 PA6 SDI/MOSI
#define OUTPUT_PIN 7
#define LED 2 //LED_BUILTIN // PORTB2
#define CS 3
#define DELAY 5000
#define DELAY 1000
static tiny::BME280 sensor;
RFTransmitter transmitter(OUTPUT_PIN, NODE_ID);
@@ -68,6 +68,7 @@ void print_asifloat(int32_t val, uint16_t factor) {
void print_measurements() {
uint32_t pres, humidity;
int32_t temp;
int vcc;
temp = sensor.readFixedTempC();
humidity = sensor.readFixedHumidity();
@@ -87,7 +88,19 @@ void print_measurements() {
print_asufloat(humidity, 1000);
Serial.println(" %");
ADCSRA |= _BV( ADSC );
while( ( (ADCSRA & (1<<ADSC)) != 0 ) );
//vcc = 1.1 * 1024 / ADCW;
vcc = 1024 / ADCW;
// vcc = (((InternalReferenceVoltage * 1024L) / ADC) + 5L) / 10L;
Serial.print(" Voltage: ");
Serial.println(vcc);
Serial.println();
transmitter.send((byte *)temp, sizeof(temp));
SET_HIGH(LED);
}
@@ -95,25 +108,16 @@ void halt() {
while(1);
}
void print_voltage() {
int value;
ADCSRA |= _BV( ADSC );
while( ( (ADCSRA & (1<<ADSC)) != 0 ) );
value = (((InternalReferenceVoltage * 1024L) / ADC) + 5L) / 10L;
Serial.print(" Voltage: ");
Serial.println(value);
Serial.println();
}
void setup() {
SET_OUTPUT(LED);
Serial.begin(115200);
Serial.println("init");
// Enable ADC
ADMUXB |= (0<<REFS0);
ADMUXA |= (13<<MUX0);
ADCSRB |= (0<<ADLAR);
ADCSRA |= (1 << ADEN);
ADMUXB = (0<<REFS2) | (1<<REFS1) | (0<<REFS0);
ADMUXA = (0<<MUX5) | (0<<MUX4) | (0<<MUX3) | (0<<MUX2) | (0<<MUX1) | (1<<MUX0);
ADCSRB = (0<<ADLAR);
//analogReference( INTERNAL );
if(sensor.beginSPI(CS) == false) {
@@ -124,7 +128,6 @@ void setup() {
void loop() {
print_measurements();
print_voltage();
delay(DELAY);
}

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@@ -0,0 +1,53 @@
# Arduino Make file. Refer to https://github.com/sudar/Arduino-Makefile
# attiny841:
# BOARD_TAG = attinyx41
# BOARD_SUB = 841
# attiny861:
# BOARD_TAG = attinyx61
# BOARD_SUB = 861
# attiny85:
# BOARD_TAG = attinyx5
# BOARD_SUB = 85
# attiny84:
# BOARD_TAG = attinyx4
# BOARD_SUB = 84
ARDUINO_VERSION = 10810
PROJECT_DIR = $(shell pwd)
BOARD_TAG = attinyx41
BOARD_SUB = 841
ARDUINO_DIR = /usr/local/arduino
ARDMK_DIR = /usr/local/arduino/Arduino-Makefile
MONITOR_PORT = /dev/ttyACM0
ISP_PORT = /dev/ttyACM0
AVRDUDE = /usr/local/bin/avrdude
ARDUINO_LIBS =
ARDUINO_SKETCHBOOK = .
# mk stuff
ALTERNATE_CORE = ATTinyCore
F_CPU = 8000000L
MONITOR_BAUDRATE = 115200
AVRDUDE_ARD_PROGRAMMER = stk500v2
AVRDUDE_ARD_BAUDRATE = 9600
AVR_TOOLS_DIR = /usr/local/avr
AVRDUDE_CONF = /usr/local/etc/avrdude.conf
# Micronucleus
MNINST = sudo micronucleus
# compiler stuff
CFLAGS_STD = -std=gnu11
CXXFLAGS_STD = -std=gnu++11
CXXFLAGS + = -pedantic -Wall -Wextra
CURRENT_DIR = $(shell pwd)
# keep this!
include $(ARDMK_DIR)/Arduino.mk
# install using micronucleus
install: $(TARGET_HEX) verify_size
@echo "########### Press RESET on the Nanite! ##############"
$(MNINST) $(TARGET_HEX)

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@@ -0,0 +1,17 @@
# Usable Pins
```
PIN_A0 (10)
PIN_A1 ( 9)
PIN_A2 ( 8)
PIN_A3 ( 7)
PIN_A4 ( 6)
PIN_A5 ( 5)
PIN_A6 ( 4)
PIN_A7 ( 3)
PIN_B0 ( 0)
PIN_B1 ( 1)
PIN_B2 ( 2)
PIN_B3 (11) /* RESET */
LED_BUILTIN (2)
```

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@@ -0,0 +1,107 @@
/* -*-c++-*-
Blink
Turns on an LED on for one second, then off for one second, repeatedly.
This example code is in the public domain.
*/
/*
./hardware/ATTinyCore/avr/cores/tinymodern/core_pins.h
Caution: reverse Pinout: PA3 => Pin 3
Nanite841 Pinout from above:
button
SDO/MISO PA5 PA6 SDI/MOSI
SCK PA4 PA7
CS PA3 PB2
RX0 PA2 PB2
TX0 PA1 PB1
PA0 PB0
GND VCC
usb
Bosch BME280 Breakout from above pin header left:
VCC
GND
SCL => SCK
SDI => MOSI
CSB => PA3/3
SDO => MISO
*/
#include <avr/io.h>
#include <util/delay.h>
#define NODE_ID 1
#define OUTPUT_PIN 7
#define LED 2 //LED_BUILTIN // PORTB2
#define CS 3
#define DELAY 2000
#define SET_OUTPUT(pin) DDRB |= (1 << pin)
#define SET_HIGH(pin) PORTB |= (1 << pin)
#define SET_LOW(pin) PORTB &= ~(1 << pin)
void print_asufloat(uint32_t val, uint16_t factor) {
Serial.print(val / factor);
Serial.print(".");
Serial.print(val % factor);
}
void print_asifloat(int32_t val, uint16_t factor) {
Serial.print(val / factor);
Serial.print(".");
Serial.print(val % factor);
}
void print_measurements() {
float vcc;
SET_LOW(LED);
ADCSRA = (1 << ADEN); // enable ADC
_delay_ms(10); // give it some time to settle
ADCSRA |= _BV( ADSC ); // start measuring
while( ( (ADCSRA & (1<<ADSC)) != 0 ) ); // till it's completed
// >> 1.1 * 1024 / 225 #=> 5.006222222222223
// >> 1.1 * 1024 / 341 #=> 3.3032258064516133
vcc = 1.1 * 1024 / ADCW; // read actual measurement
// ADCSRA &= ~(1<<ADEN); // we're done, disable ADC
Serial.print("Voltage: ");
Serial.println(vcc);
SET_HIGH(LED);
}
void halt() {
while(1);
}
void setup() {
SET_OUTPUT(LED);
Serial.begin(115200);
Serial.println("init");
// Setup the ADC
// https://www.avrfreaks.net/forum/measuring-vcc-attiny841-using-adc-and-internal-bandgap#comment-2862601
ADMUXB = (0<<REFS0); // enable REFS0 bit == internal 1.1 bandgap
ADMUXA = (13<<MUX0); // use channel #13 to read the bandgap (binary 1101, see table 16-3)
ADCSRB = (0<<ADLAR); // do not left shift result
// disable ADC for powersaving
// ADCSRA &= ~(1<<ADEN);
// disable analog comperators for powersaving
ACSR0A |= _BV(ACD0);
ACSR1A |= _BV(ACD1);
}
void loop() {
print_measurements();
delay(DELAY);
}

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@@ -0,0 +1 @@
/usr/local/arduino/hardware

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@@ -0,0 +1 @@
/usr/local/arduino/hardware/ATTinyCore/avr/libraries/RFTransmitter

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@@ -0,0 +1 @@
/usr/local/arduino/hardware/ATTinyCore/avr/libraries/SPI

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@@ -0,0 +1 @@
/usr/local/arduino/hardware/ATTinyCore/avr/libraries/TinyBME280