XBP09-DPUIT-156 Digi International, XBP09-DPUIT-156 Datasheet - Page 11

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XBP09-DPUIT-156

Manufacturer Part Number
XBP09-DPUIT-156
Description
MODULE XBEE PRO W/U.FL
Manufacturer
Digi International
Series
XBEE-PRO™r
Datasheets

Specifications of XBP09-DPUIT-156

Frequency
902MHz ~ 928MHz
Data Rate - Maximum
156kbps
Modulation Or Protocol
FHSS
Applications
ISM
Power - Output
17dBm (50mW)
Sensitivity
-100dBm
Voltage - Supply
3 V ~ 3.6 V
Current - Receiving
80mA
Current - Transmitting
210mA
Data Interface
PCB, Through Hole
Antenna Connector
U.FL
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
602-1168
XBee‐PRO® 900 RF Modules  
GND
VCC
CTS
DOUT
RTS
DIN
Serial Flow Control
Serial Transmit
Receiver
Buffer
Serial
Buffer
Serial Receive Buffer
Serial Transmit Buffer
CTS Flow Control
Internal Data Flow Diagram
When serial data enters the RF module through the DIN Pin (pin 3), the data is stored in the serial
receive buffer until it can be processed. Under certain conditions, the module may not be able to
process data in the serial receive buffer immediately. If large amounts of serial data are sent to
the module, CTS flow control may be required to avoid overflowing the serial receive buffer.
Cases in which the serial receive buffer may become full and possibly overflow:
When RF data is received, the data is moved into the serial transmit buffer and is sent out the
serial port. If the serial transmit buffer becomes full enough such that all data in a received RF
packet won’t fit in the serial transmit buffer, the entire RF data packet is dropped.
Cases in which the serial transmit buffer may become full resulting in dropped RF
packets
The RTS and CTS module pins can be used to provide RTS and/or CTS flow control. CTS flow
control provides an indication to the host to stop sending serial data to the module. RTS flow
control allows the host to signal the module to not send data in the serial transmit buffer out the
UART. RTS and CTS flow control are enabled using the D6 and D7 commands.
If CTS flow control is enabled (D7 command), when the serial receive buffer is filled with FT bytes,
the module de-asserts CTS (sets it high) to signal to the host device to stop sending serial data.
CTS
description for the FT command.)
© 2009 Digi International, Inc.
• If the module is receiving a continuous stream of RF data, the data in the serial receive buffer
• For mesh networking firmware, if the module is transmitting an RF data packet, the module
• If the RF data rate is set higher than the interface data rate of the module, the module could
• If the host does not allow the module to transmit data out from the serial transmit buffer
will not be transmitted until the module is no longer receiving RF data.
may need to discover the destination address or establish a route to the destination. After
transmitting the data, the module may need to retransmit the data if an acknowledgment is
not received, or if the transmission is a broadcast. These issues could delay the processing of
data in the serial receive buffer.
receive data faster than it can send the data to the host. Even occasional transmissions from
a large number of modules can quickly add up and overflow the transmit buffer.
because of being held off by hardware flow control.
is re-asserted when less than FT - 16 bytes are in the UART receive buffer. (See command
Processor
RF RX
Buffer
RF TX
Buffer
Transmitter
Receiver
RF Switch
Antenna
Port
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