IC-Hersteller MikroE

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MikroE 2618011181000 | Demoboard LR 16 Click

2618011181000

Details

TopologieRF signals / communications
Eingangsspannung3.3 V
IC-Revision1

Beschreibung

LR 16 Click is a compact add-on board that provides low-power, long-range wireless connectivity for IoT and industrial applications. It is based on the WIRL-LORA Daphnis-I (2618011181000) module from Würth Elektronik, which integrates the STM32WLE5CCU6 chip and supports both LoRaWAN® and proprietary communication modes. The board operates in the EU868 frequency band with an output power of 13.4dBm, fully compliant with LoRaWAN® 1.0.4 specification and supporting device classes A, B, and C. Proprietary protocols allow peer-to-peer, star, and mesh networking with broadcast, multicast, and unicast communication options. Additional features include UART communication with AT command support, firmware upgrades and boot control, SWD for debugging, Click Snap, and LED indicators for data activity and network status. This Click board™ is ideal for smart city, agriculture, logistics, healthcare, and Industry 4.0 applications.

Eigenschaften

LoRaWAN® and proprietary communication modes with peer-to-peer, star, and mesh topologies, compliance with LoRaWAN® specification 1.0.4 supporting device classes A, B, and C, operation in the EU868 frequency band, ultra-low power consumption, module based on the STM32WLE5CCU6 chip, UART interface with AT commands, boot control and firmware upgrade, SWD pads for flashing and debugging, Click Snap support, and more

Typische Anwendungen

  • IoT, LoRA

Weiterführende Informationen

Artikeldaten

Artikel Nr.
Daten­blatt
Man­ual
Downloads
Status
Produktserie
Description
VDD min.(V)
VDD max.(V)
ANTConn
Muster
Daphnis-I & EV-Kits, Daphnis-I LoRaWAN® und Proprietär (P2P, Star, Mesh) Modul, 2 V
Man­ual
Status Aktivi| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre.
DescriptionDaphnis-I LoRaWAN® und Proprietär (P2P, Star, Mesh) Modul 
Betriebsspannung Min.2 V
Betriebsspannung Max.3.6 V
AntennenanschlusstypRF pad, UMRF