A multifunctional and modular Firmware for Multitech's mDot based on ARM mBed provides a widerange of functionality for several Sensors such as MAX44009, BME280, MPU9250, SI1143 and uBlox. It allows you to quickly build a Sensornode that measures specific data with its sensors and sends it via LoRaWAN.

Dependencies:   mDot_LoRa_Sensornode_Flowmeter_impl mbed-rtos mbed

LoRa-Sensornode Firmware for Multitech mDot

A multifunctional and modular Firmware for Multitech's mDot which provides a widerange of functionality for several Sensors. It allows you to quickly build a Sensornode that measures specific data with its sensors and sends it via LoRaWAN.

/media/uploads/mitea1/logo-lora-600x370.png /media/uploads/mitea1/mt_mdot_family_642px.png

Supported Sensors

Idea

The Firmware has some predefined Application Modes running different Tasks(Measurements). Each mode can be used in a different Scenario. Application_Modes define which sensors are used, how often they aquire data and how often the data has to be sent via LoRa. Lets say you just want to measure the Light then you choose an Application_Mode (or define one) that only runs TaskLight for light measurement. As a standard all measurements are taken every second and sent via LoRa but you can change that interval depending on your usage Scenario

Committer:
mitea1
Date:
Wed Jul 06 20:40:36 2016 +0000
Revision:
0:f2815503561f
initial commit;

Who changed what in which revision?

UserRevisionLine numberNew contents of line
mitea1 0:f2815503561f 1 /*
mitea1 0:f2815503561f 2 * BME280HumidityMessage.cpp
mitea1 0:f2815503561f 3 *
mitea1 0:f2815503561f 4 * Created on: Jun 1, 2016
mitea1 0:f2815503561f 5 * Author: Adrian
mitea1 0:f2815503561f 6 */
mitea1 0:f2815503561f 7
mitea1 0:f2815503561f 8 #include "BME280HumidityMessage.h"
mitea1 0:f2815503561f 9 #include "main.h"
mitea1 0:f2815503561f 10
mitea1 0:f2815503561f 11 BME280HumidityMessage::BME280HumidityMessage() {
mitea1 0:f2815503561f 12 loraMessageId.push_back(BME280_HUMIDITY_MESSAGE_ID);
mitea1 0:f2815503561f 13 }
mitea1 0:f2815503561f 14
mitea1 0:f2815503561f 15 BME280HumidityMessage::~BME280HumidityMessage() {
mitea1 0:f2815503561f 16 // TODO Auto-generated destructor stub
mitea1 0:f2815503561f 17 }
mitea1 0:f2815503561f 18
mitea1 0:f2815503561f 19 void BME280HumidityMessage::setHumidity(float humidity){
mitea1 0:f2815503561f 20 this->humidity = humidity;
mitea1 0:f2815503561f 21 }
mitea1 0:f2815503561f 22
mitea1 0:f2815503561f 23 float BME280HumidityMessage::getHumidity(){
mitea1 0:f2815503561f 24 return humidity;
mitea1 0:f2815503561f 25 }
mitea1 0:f2815503561f 26
mitea1 0:f2815503561f 27 char* BME280HumidityMessage::getLoRaMessageString(){
mitea1 0:f2815503561f 28
mitea1 0:f2815503561f 29 char buffer[20];
mitea1 0:f2815503561f 30 sprintf(buffer,"%s:%.2f,",loraMessageId.at(0).c_str(),getHumidity());
mitea1 0:f2815503561f 31 loraMessage.clear();
mitea1 0:f2815503561f 32 loraMessage.append(buffer);
mitea1 0:f2815503561f 33 return (char*) loraMessage.c_str();
mitea1 0:f2815503561f 34 }
mitea1 0:f2815503561f 35