REV. 1.0.0
XR21V1410 EVALUATION BOARD USER’S MANUAL
1.0 INTRODUCTION
This user’s manual is for the XR21V1410 evaluation board. It will describe the hardware setup required to
operate the part.
2.0 OVERVIEW
The XR21V1410 evaluation board has one 16-QFN package on it. Figure 1 shows a top view of XR21V1410
evaluation board layout.
FIGURE 1. TOP VIEW OF XR21V1410 EVALUATION BOARD LAYOUT
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XR21V1410 EVALUATION BOARD USER’S MANUAL
REV. 1.0.0
Figure 2 shows a bottom view of XR21V1410 evaluation board layout.
FIGURE 2. BOTTOM VIEW OF XR21V1410 EVALUATION BOARD LAYOUT
2.1
Evaluation Board Components
On the XR21V1410 evaluation board, some componets are required to install. Some are optional and some
are not installed. Table 1 shows the components:
TABLE 1: COMPONENTS OF THE XR21V1410 EVALUATION BOARD
UNIT
LOCATION
PART
U1
Top
U2
U3
Bottom
U4
Top
XR21V1410IL16-F
U5
Bottom
NC7SZ14M5X
U6
Top
AT24C02B
U7
Top
SP3245EEY-L
U8
Bottom
SN74LVC2G66DCT
U9
Top
SP3497EEN-L
CON1
Top
PJ-002A
FUNCTION
SP6669AEK-L/TRR3 Exar’s Voltage converter to step down voltage from 5V to 3.3V.
SN74LVC2G53DCTR Multiplexer to switch between RS-232 and RS-485 mode.
Exar’s USB 1 channel UART.
Invert LowPower (suspend) signal.
I2C EEPROM.
Exar’s RS-232 transceiver.
Analog switch.
Exar’s RS-485 transceiver.
External power input.
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XR21V1410 EVALUATION BOARD USER’S MANUAL
REV. 1.0.0
TABLE 1: COMPONENTS OF THE XR21V1410 EVALUATION BOARD
UNIT
LOCATION
PART
FUNCTION
CON2
Top
690-004-621-023
USB B-Type connector. Communication with USB host (USBD+,
USBD-) and power source for evaluation board (VBus).
CON3
Top
182-009-113R161
RS-232 mode DB9 male connector.
CON4
Top
ED555/4DS
RS-485 mode 4X1 terminal block.
NOTES:1) An external pull-up is required on the LOWPOWER pin for proper functionality. The external pull-up is not shown
in the evaluation board schematics, but has been added on the evaluation board. 2) An external pull-up is required on any
GPIO pins that is used as an input. In the suspend mode, the internal pull-up resistor is disabled and the input will be
floating if there is no external pull-up resistor. The external pull-ups have not been added to the GPIOs used as inputs on
this evaluation board.
2.2
Jumper Settings
2.2.1
Common jumpers
Common jumpers are those jumpers which should be set the same for both RS-232 and RS-485 mode. The
Table 2 shows the common jumpers setting on the evaluation board:
TABLE 2: COMMON JUMPERS SETTINGS
JUMPERS
LOCATION
FUNCTIONS
COMMENTS
JP1
Top
Power select
Jumper in 1&2 selects power from external power supply of 5V
Jumper in 2&3 selects power from USB VBUS power
JP2
Top
Selects RS-232 or RS-485 mode
Jumper in 1&2 selects RS-485 mode
Jumper in 2&3 selects RS-232 mode (default)
JP3
Top
External loopback or test header
Jumper in 1&2 selects external loopback
JP4
Top
SCL pull-up/pull-down select
Jumper in 1&2 selects pull-up resistor
Jumper in 2&3 selects pull-down resistor
JP5
Top
SDA pull-up/pull-down select
Jumper in 1&2 selects pull-up resistor
Jumper in 2&3 selects pull-down resistor
JP6
Top
Power supply for XR21V1410
Not installed. Trace between pin 1 & 2
JP7
Top
I2C EEPROM header
Jumper in 1&2 connects SCL to I2C EEPROM
Jumper in 3&4 connects SDA to I2C EEROM
NOTE: I2C EEPROM has not been programmed
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XR21V1410 EVALUATION BOARD USER’S MANUAL
2.2.2
REV. 1.0.0
Remote wakeup and jumper
The SDA and SCL are used to specify whether Remote Wakeup and/or Bus Powered configurations are to be
supported. These pins are sampled at power-up. The following Table 3 describes how Remote Wakeup and
Bus Powered support.
TABLE 3: REMOTE WAKEUP AND POWER MODES
SDA
SCL
REMOTE WAKE-UP
SUPPORT
POWER MODE
COMMENTS
1
1
No
Self-Powered
Default, if no EEPROM is present
1
0
No
Bus-Powered
0
1
Yes
Self-Powered
0
0
Yes
Bus-Powered
The following Table 4 shows jumpers related to remote wakeup.
TABLE 4: REMOTE WAKEUP JUMPERS SETTINGS
JUMPERS
LOCATION
JP8
Top
Select remote control wakeup signal
Jumper in 1&2 selects RS-232 (RI#) signal
Jumper in 2&3 selects push-button
SW1
Top
Generate remote wakeup signal
Push once to generate one remote wakeup signal
2.2.3
FUNCTIONS
COMMENTS
RS-232 mode jumpers (Default setting is RS-232)
The XR21V1410 evaluation board is set as RS-232 mode by default. The following Table 5 shows the jumper
settings apply to the RS-232 mode:
TABLE 5: JUMPER SETTINGS FOR RS-232 MODE
JUMPERS
LOCATION
JP9
Top
FUNCTIONS
COMMENTS
Selects power
Not installed. Trace between pin 1&2
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XR21V1410 EVALUATION BOARD USER’S MANUAL
REV. 1.0.0
2.2.4
RS-485 mode jumpers
The following Table 6 jumper setting applies to the RS-485 mode:
TABLE 6: JUMPER SETTINGS FOR RS-485 MODE
JUMPERS
LOCATION
FUNCTIONS
COMMENTS
JP10
Top
Select RTS or DTR direction control for
TX
Jumper in 1&2 selects RTS based direction control for
TX
Jumper in 2&3 selects DTR based direction control for
TX
JP11
Top
Select direction control for RX and TX or
always for RX
Jumper in 1&2 selects common direction control for
RX and TX
Jumper in 2&3 enables RX always
JP12
Top
Selects power for RS-485 transceiver
Not installed. Trace between pin 1 & 2.
JP13
JP14
Top
Selects half duplex or full duplex mode.
Jumper in 1&2 selects half duplex mode
Jumper in 2&3 selects full duplex mode
3.0 DRIVERS AND SUPPORT
For any questions about this evaluation board, software drivers or technical support, send an e-mail to
uarttechsupport@exar.com.
NOTICE
EXAR Corporation reserves the right to make changes to the products contained in this publication in order to
improve design, performance or reliability. EXAR Corporation assumes no responsibility for the use of any
circuits described herein, conveys no license under any patent or other right, and makes no representation that
the circuits are free of patent infringement. Charts and schedules contained here in are only for illustration
purposes and may vary depending upon a user’s specific application. While the information in this publication
has been carefully checked; no responsibility, however, is assumed for inaccuracies.
EXAR Corporation does not recommend the use of any of its products in life support applications where the
failure or malfunction of the product can reasonably be expected to cause failure of the life support system or
to significantly affect its safety or effectiveness. Products are not authorized for use in such applications unless
EXAR Corporation receives, in writing, assurances to its satisfaction that: (a) the risk of injury or damage has
been minimized; (b) the user assumes all such risks; (c) potential liability of EXAR Corporation is adequately
protected under the circumstances.
Copyright 2009 EXAR Corporation
Datasheet July 2009.
Send your UART technical inquiry with technical details to hotline: uarttechsupport@exar.com.
Reproduction, in part or whole, without the prior written consent of EXAR Corporation is prohibited.
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