Important changes to repositories hosted on mbed.com
Mbed hosted mercurial repositories are deprecated and are due to be permanently deleted in July 2026.
To keep a copy of this software download the repository Zip archive or clone locally using Mercurial.
It is also possible to export all your personal repositories from the account settings page.
Dependencies: X_NUCLEO_IKS01A1 driver_mbed_TH02 LoRaWAN-lib-v1_0_1 SX1272Lib mbed
Fork of LoRaWAN-SX1272-Application-Demo by
LoRaWAN-SX1272-Application Demo uses https://os.mbed.com/components/SX1272MB2xAS/ mbed component shield on a nucleo board platform to demonstrate a Class-A LoRaWAN device in the 915MHz ISM band for North American region. It uses the LoRaWAN-lib and SX1272Lib libraries.
Comissioning.h (LoRaWAN Network Configuration)
The end-device can be activated in one of the two ways:
Over the Air (OTA) activation can be enabled as shown in the figure below.

The end-device must be configured with the following parameters:
LORAWAN_DEVICE_EUI(8 Bytes) : Fist 3 Bytes is the Organizationally Unique Identifier (OUI) followed by 5 bytes of unique ID. If not defined by user, then the firmware automatically assigns one to the end-deviceLORAWAN_APPLICATION_EUI(8 Bytes)LORAWAN_APPLICATION_KEY(or DEVKEY) (16 Bytes)

Activation by Personalization (ABP) can be enabled as shown in the figure below.

The end-device must be configured with the following parameters:
LORAWAN_DEVICE_ADDRESS(4 Bytes) : If not defined by user, then the firmware automatically assigns one to the end-deviceLORAWAN_NWKSKEY(16 Bytes)LORAWAN_APPSKEY(16 Bytes)

Config.h (LoRaWAN Communication Parameters)
- Mode of Operation : Hybrid
If the end-device needs to be configured to operate over 8-channels, then
Hybrid Modeneeds to be enabled
- Mode of Operation : Frequency Hop
If the end-device needs to be configured to operate over 64-channels, then
Hybrid Modeneeds to be disabled
- Delay between successive JOIN REQUESTs :
The delay between successive Join Requests (until the end-device joins the network) can be configured using the parameter
OVER_THE_AIR_ACTIVATION_DUTYCYCLE
- Inter-Frame Delay :
One can change the delay between each frame transmission using
APP_TX_DUTYCYCLEIt is advisable thatAPP_TX_DUTYCYCLEis greater than or equal to 3sec.
- Data Rate :
The data rate can be configured as per LoRaWAN specification using the paramter
LORAWAN_DEFAULT_DATARATE. The range of values are DR_0, DR_1, DR_2, DR_3 and DR_4
- Confirmed/Unconfirmed Messages :
The uplink message or payload can be chosen to be confirmed or unconfirmed using the parameter
LORAWAN_CONFIRMED_MSG_ON. When set to 1, the transmitted messages need to be confirmed with anACKby the network server in the subsequent RX window. When set to 0, noACKis requested.
- ADR ON/OFF :
The ADR can be enabled or disabled using the parameter
LORAWAN_ADR_ON. When set to 1, ADR is enabled and disabled when set to 0.
- Application Port :
The application port can be set using parameter
LORAWAN_APP_PORT. A few examples are associated to specific Application Port, and are defined in Config.h
- Payload Length :
The lenght of the payload (in bytes) to be transmitted can be configured using
LORAWAN_APP_DATA_SIZE
- Transmit Power :
The transmit power can be configured using
LORAWAN_TX_POWER(LoRaMAC verifies if the set power is compliant with the LoRaWAN spec and FCC guidelines)
The baud-rate for serial terminal display is 115200
board/board.cpp
- Committer:
- ubhat
- Date:
- 2017-11-28
- Revision:
- 8:7ddaacb6dda6
- Parent:
- 2:19dd7bfcacf7
File content as of revision 8:7ddaacb6dda6:
/*
/ _____) _ | |
( (____ _____ ____ _| |_ _____ ____| |__
\____ \| ___ | (_ _) ___ |/ ___) _ \
_____) ) ____| | | || |_| ____( (___| | | |
(______/|_____)_|_|_| \__)_____)\____)_| |_|
(C)2015 Semtech
Description: Target board general functions implementation
License: Revised BSD License, see LICENSE.TXT file include in the project
Maintainer: Miguel Luis and Gregory Cristian
*/
#include "mbed.h"
#include "board.h"
DigitalIn I2cInterrupt( D5 );
I2C I2c(I2C_SDA, I2C_SCL);
DigitalOut Pc7( D9 );
DigitalIn Pc1( A4 );
//DigitalIn UsrButton( PC_13 );
DigitalIn UsrButton( D10 );
DigitalOut Led( D6 );
#ifdef USE_IKS01A1_SENSOR
X_NUCLEO_IKS01A1 *mems_expansion_board = X_NUCLEO_IKS01A1::Instance();
MotionSensor *accelerometer = mems_expansion_board->GetAccelerometer();
HumiditySensor *humidity_sensor = mems_expansion_board->ht_sensor;;
PressureSensor *pressure_sensor = mems_expansion_board->pt_sensor;
TempSensor *temp_sensor1 = mems_expansion_board->ht_sensor;
TempSensor *temp_sensor2 = mems_expansion_board->pt_sensor;
#endif
SX1272MB2xAS Radio( NULL );
void BoardInit( void )
{
TimerTimeCounterInit( );
}
uint8_t BoardGetBatteryLevel( void )
{
return 0xFE;
}
uint32_t BoardGetRandomSeed( void )
{
return ( ( *( uint32_t* )ID1 ) ^ ( *( uint32_t* )ID2 ) ^ ( *( uint32_t* )ID3 ) );
}
void BoardGetDevEUI( uint8_t *id )
{
uint32_t DevEuiHWord = 0;
if( ( id[7] == 0 ) && ( id[6] == 0 ) && ( id[5] == 0 ) && ( id[4] == 0 ) )
{
DevEuiHWord = BoardGetRandomSeed( );
id[7] = (DevEuiHWord >> 3) & 0xFF;
id[6] = (DevEuiHWord >> 2) & 0xFF;
id[5] = (DevEuiHWord >> 1) & 0xFF;
id[4] = (DevEuiHWord >> 0) & 0xFF;
}
}
void BoardGetUniqueId( uint8_t *id )
{
id[7] = ( ( *( uint32_t* )ID1 )+ ( *( uint32_t* )ID3 ) ) >> 24;
id[6] = ( ( *( uint32_t* )ID1 )+ ( *( uint32_t* )ID3 ) ) >> 16;
id[5] = ( ( *( uint32_t* )ID1 )+ ( *( uint32_t* )ID3 ) ) >> 8;
id[4] = ( ( *( uint32_t* )ID1 )+ ( *( uint32_t* )ID3 ) );
id[3] = ( ( *( uint32_t* )ID2 ) ) >> 24;
id[2] = ( ( *( uint32_t* )ID2 ) ) >> 16;
id[1] = ( ( *( uint32_t* )ID2 ) ) >> 8;
id[0] = ( ( *( uint32_t* )ID2 ) );
}
