Tehniskie dokumenti
Specifikācija
Brand
RF SolutionsMaximum Output Power
+13dBm
Receiver Sensitivity
-148dBm
Protocol Type
Lora
Supported Bus Interfaces
SPI
Supply Voltage
3.3V
Dimensions
16 x 16 x 1.8mm
Height
1.8mm
Length
16mm
Maximum Operating Temperature
+70 °C
Minimum Operating Temperature
-20 °C
Width
16mm
Izcelsmes valsts
China
Produkta apraksts
RFM9xW 433/868/915MHz ISM LoRa Transceivers, HopeRF
The RFM9xW Transceiver Modules feature the Semtech SX1272 transceiver chip which uses a variation of Chirp Spread Spectrum coding called LoRa™, to improve receiver sensitivity and hence achieve extended range. The module can also use OOK and FSK modulation schemes to maintain compatibility with other standards such as IEEE 802.15.4 and wMBUS. LoRa features increased interference immunity over conventional FSK providing an enhanced coexistence capability in crowded channels.
Wireless Modules - HopeRF
Noliktavas stāvoklis patreiz nav pieejams
Lūdzu pārbaudiet vēlreiz vēlāk
€ 22,20
Katrs (bez PVN)
€ 26,86
Katrs (Ieskaitot PVN)
1
€ 22,20
Katrs (bez PVN)
€ 26,86
Katrs (Ieskaitot PVN)
1
Pirkt iepakojumos
Daudzums | Vienības cena |
---|---|
1 - 4 | € 22,20 |
5+ | € 21,00 |
Tehniskie dokumenti
Specifikācija
Brand
RF SolutionsMaximum Output Power
+13dBm
Receiver Sensitivity
-148dBm
Protocol Type
Lora
Supported Bus Interfaces
SPI
Supply Voltage
3.3V
Dimensions
16 x 16 x 1.8mm
Height
1.8mm
Length
16mm
Maximum Operating Temperature
+70 °C
Minimum Operating Temperature
-20 °C
Width
16mm
Izcelsmes valsts
China
Produkta apraksts
RFM9xW 433/868/915MHz ISM LoRa Transceivers, HopeRF
The RFM9xW Transceiver Modules feature the Semtech SX1272 transceiver chip which uses a variation of Chirp Spread Spectrum coding called LoRa™, to improve receiver sensitivity and hence achieve extended range. The module can also use OOK and FSK modulation schemes to maintain compatibility with other standards such as IEEE 802.15.4 and wMBUS. LoRa features increased interference immunity over conventional FSK providing an enhanced coexistence capability in crowded channels.