XBP24-DMWIT-250 Digi International, XBP24-DMWIT-250 Datasheet - Page 10

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XBP24-DMWIT-250

Manufacturer Part Number
XBP24-DMWIT-250
Description
XBEE-PRO MESH 2.4 EXTENDED
Manufacturer
Digi International
Series
XBEE-PRO™r
Datasheets

Specifications of XBP24-DMWIT-250

Frequency
2.4GHz
Data Rate - Maximum
250kbps
Modulation Or Protocol
ISM
Applications
General Purpose
Power - Output
18dBm
Sensitivity
-100dBm
Voltage - Supply
2.8 V ~ 3.4 V
Current - Receiving
55mA
Current - Transmitting
250mA
Data Interface
PCB, Through Hole
Antenna Connector
On-Board, Wire Whip
Operating Temperature
-40°C ~ 85°C
Package / Case
Module
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Memory Size
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
Q4542387
2. RF Module Operation
XBee/XBee‐PRO DigiMesh 2.4  RF Modules  
Serial Communications
The XBee/XBee-PRO 2.4 DigiMesh RF Modules interface to a host device through a logic-level asynchronous serial port. Through
its serial port, the module can communicate with any logic and voltage compatible UART; or through a level translator to any
serial device (For example: Through a Digi proprietary RS-232 or USB interface board).
UART Data Flow
Serial Buffers
Devices that have a UART interface can connect directly to the pins of the RF module as shown in the figure below.
The modules maintain buffers to collect received serial and RF data, which is illustrated in the figure below. The serial
receive buffer collects incoming serial characters and holds them until they can be processed. The serial transmit buffer col-
lects data that is received via the RF link that will be transmitted out the UART.
Serial Data
Data enters the module UART through the DIN (pin 3) as an asynchronous serial signal. The signal should idle high
when no data is being transmitted.
Each data byte consists of a start bit (low), 8 data bits (least significant bit first) and a stop bit (high). The following
figure illustrates the serial bit pattern of data passing through the module.
The module UART performs tasks, such as timing and parity checking, that are needed for data communications.
Serial communications depend on the two UARTs to be configured with compatible settings (baud rate, parity, start
bits, stop bits, data bits).
System Data Flow Diagram in a UART‐interfaced environment
UART data packet 0x1F (decimal number ʺ31ʺ) as transmitted through the RF module
Microcontroller
© 2010 Digi International, Inc.
CMOS Logic (3.0 - 3.6V)
(Low‐asserted signals distinguished with horizontal line over signal name.)
Example Data Format is 8‐N‐1 (bits ‐ parity ‐ # of stop bits)
DIN (data in)
DOUT (data out)
CTS
RTS
Module
XBee
Module
XBee
CMOS Logic (3.0 - 3.6V)
DOUT (data out)
DIN (data in)
CTS
RTS
Microcontroller
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