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Type: | Development Board |
Trademark: | LoRa-E5 |
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Ultra-low Power Consumption:as low as 2.1uA sleep current (WOR mode)
Extremely Compacted Size:12mm * 12mm * 2.5mm 28 pins SMT
High Performance: TXOP=22dBm@868/915MHz; -136.5dBm sensitivity for SF12 with 125KHz BW
Long Distance Use:158dB link budget
Wireless Connectivity:Embedded LoRaWAN® protocol, AT command, support global LoRaWAN® frequency plan
Worldwide Compatibility: wide frequency range; EU868/US915/AU915/AS923/KR920/IN865
Great Flexibility:For users who want to develop software on the MCU of the module, other GPIOs of the MCU can be easily manipulated, including UART, I2C, ADC, etc. These rich GPIO interfaces are useful for users who need to expand peripherals.
FCC and CE Certified
Works for LoRaWAN sensor nodes and any wireless communication application.
1. Factory AT Firmware
LoRa-E5 series has a built-in AT command firmware, which supports LoRaWAN Class A/B/C protocol and a wide frequency plan: EU868/US915/AU915/AS923/KR920/IN865. With this AT command firmware, developers can easily and quickly build their prototype or application.
The AT command firmware contains a bootloader for DFU and the AT application. The "PB13/SPI_SCK/BOOT" pin is used to control LoRa-E5 to stay in the bootloader or jump to the AT application. When PB13 is HIGH, the module will jump to AT application after reset, with a default baud rate of 9600. When PB13 is LOW (press the "Boot" button on LoRa-E5 Dev Board or LoRa-E5 mini), the module will stay in the bootloader, and keep transmitting "C" character every 1S at baud rate 115200.
Attention
1. Factory AT Firmware is programmed with RDP(Read Protection) Level 1, developers need to remove RDP first with STM32Cube Programmer. Note that regression RDP to level 0 will cause a flash memory mass to erase and the Factory AT Firmware can't be restored again.
2. The "PB13/SPI_SCK/BOOT" pin on the LoRa-E5 module is just a normal GPIO, not the "BOOT0" pin of the MCU. This "PB13/SPI_SCK/BOOT" pin is used in the bootloader of the Factory AT firmware, to decide to jump to APP or stay in bootloader(for DFU). The real "BOOT0" pin doesn't pinout to the module, so developers need to be careful when developing low-power applications.
2. Clock Configuration
2.1 HSE
32MHz TCXO
TCXO power supply: PB0-VDD_TCXO
2.2 LSE
32.768KHz crystal oscillator
3. RF Switch
LoRa-E5 module ONLY transmits through RFO_HP:
Receive: PA4=1, PB5=0
Transmit(high output power, SMPS mode): PA4=0, PB5=1
ITEMs |
Parameter |
Specifications |
Unit |
|||
Core |
MCU |
ARM Cortex M4 |
|
|||
Storage |
256KB Flash, 64KB SRAM |
KB |
||||
Structure |
Size |
12(W)*12(L)*2.5(H) |
mm |
|||
Package |
28 pins, SMT |
|
||||
Electrical Characteristics |
power supply |
3.3V type |
V |
|||
sleep current |
2.1uA(WDT on) |
uA |
||||
Operation current (Transmitter+MCU) |
50mA @10dBm in 434MHz type |
mA |
||||
111mA @22dBm in 470MHz type |
||||||
111mA @22dBm in 868MHz type |
||||||
Operation current (Receiver+MCU) |
6.7mA @BW125kHz, 868MHz type |
mA |
||||
6.7mA @BW125kHz, 434MHz type |
||||||
6.7mA @BW125kHz, 470MHz type |
||||||
Output power |
10dBm max @434MHz |
dBm |
||||
22dBm max @470MHz |
||||||
22dBm max @868MHz |
||||||
Sensitivity |
@SF12, BW125kHz |
dBm |
||||
Fr(MHz) |
min |
type |
max |
|||
434 |
- |
-134.5 |
-136 |
|||
470 |
- |
-136.5 |
-137.5 |
|||
868 |
- |
-135 |
-137 |
|||
Harmonics |
< -36dBm below 1GHz |
dBm |
||||
< -40dBm above 1GHz |
dBm |
|||||
Interface |
RFIO |
RF port |
|
|||
UART |
3 group of UART, include 2 pins |
|
||||
I2C |
1 group of I2C, include 2 pins |
|
||||
ADC |
1 ADC Input, include 1 pins, 12-bit 1Msps |
|
||||
NRST |
Manual reset pin input |
|
||||
SPI |
1 group of SPI, include 4 pins |
|
HSCODE |
8517709000 |
UPC |
|
FCC |
1 |
CE |
1 |
LoRa-E5 datasheet and specifications
LoRa-E5 AT Command Specification
STM32WLE5JC Datasheet
LoRa-E5-HF Certification CE-VOC-RED
LoRa-E5-HF FCC Certification -DSS
LoRa-E5-HF FCC Certification -DTS
LoRa-E5 kicad library
LoRa-E5 HF 3D File
LoRa-E5 Eagle Library
STM32Cube MCU Package for STM32WL series