RB8762CJF Designer’s Guide (RRD2Z50‐20190314001‐A09‐C2)
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Introduction
Thank you for choosing Radicom RB8762C Module. We are committed to providing you quality
service and technical support. The RB8762C modules are designed to meet OEM’s needs of
embedding low power, wireless data connectivity to their products. The RB8762C family offers a quick
and simple solution for wireless Bluetooth communications.
Radicom RB8762C module is designed to meet the emerging market for Bluetooth 5.1 applications.
These embedded Bluetooth 5.1 modules integrate entire profiles, applications, and Bluetooth
protocol stack, and no external processor is needed. It also contains 256KB flash memory and 80KB
RAM.
The RB8762C can be factory configured for other Bluetooth cost-effective and power-efficient
wireless consumer products such as watches, medical sensors, mice, TV remote controls and fitness
trainers.
Contact Radicom
for help to add the BLE Data Protocol functionality to your 5.1 Bluetooth
device or for help in determining which Bluetooth Module is the best fit for your particular Bluetooth
application.
The RB8762C family modules can be powered with standard 1.8V~3.6V low power. In lowest mode
it consumes only 1.1 nA level power and will wake up in few hundred microseconds. The RB8762C
family provides superior performance in the presence of interference from 802.11 (WiFi) wireless
devices and other 2.4GHz radios.
The RB8762C modules support quick connections and data transfers allowing an application to
establish a Bluetooth connection within a few milliseconds for short communication bursts before
quickly disconnecting the Bluetooth connection to save power. It takes much less time to make a
connection than conventional Bluetooth wireless technology and consumes approximately only 1/20
th
of the power of Bluetooth Basic Rate.
The RB8762C is available in surface mount (SMD) or through-hole (DIP) hardware designs. The
RB8762C module is the surface mount model. The RB8762C can also mounted on a conversion
board to create the RB8762CHM model for serial through-hole designs.