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TPP5XGFLRC000E2A Datasheet(PDF) 4 Page - OPLINK Communications Inc.

Part No. TPP5XGFLRC000E2A
Description  1310nm 10km SFP Transceivers
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Maker  OPLINK [OPLINK Communications Inc.]
Homepage  http://www.oplink.com
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 4 page
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4
S0514 Rev.01. (web) 2016-01-08
Oplink Communications, LLC
TPP5XGFLRx000E2A
Application Notes
Electrical Pin Description
Electrical Interface: All signal interfaces are compliant with
the SFP+ MSA specification. The high speed DATA interface
is differential AC-coupled internally and can be directly
connected to a 3.3V SERDES IC. All low speed control and sense
output signals are open collector TTL compatible and should
be pulled up with a 4.7 – 10 kΩ resistor on the host board.
Loss of Signal (LOS): The Loss of Signal circuit monitors the
level of the incoming optical signal and generates logic HIGH
when an insufficient photocurrent is produced.
TX_Fault: The output indicates LOW when the transmitter
is operating normally and HIGH with a laser fault including
laser end-of-life. TX Fault is an open collector/drain output
and should be pulled up with a 4.7 – 10 kΩ resistor on the
host board.
TX_Disable: : When the TX Disable pin is at logic HIGH,
the transmitter optical output is disabled. The laser is also
disabled if this line is left floating, as it is pulled high inside
the transceiver.
Serial Identification and Monitoring: The module definition
of SFP is indicated by the MOD_ABS pin and the 2-wrie serial
interface. Upon power up, the 2-wrie interface appears as NC
(no connection), and MOD_ABS is TTL LOW. When the host
system detects this condition, it activates the serial protocol
(standard two-wire I2C serial interface) and generates the
serial clock signal (SCL).The positive edge clocks data into the
EEPROM segments of the device that are not write protected,
and the negative edge clocks data from the device. The serial
data signal (SDA) is for serial data transfer. The host uses SDA
in conjunction with SCL to mark the start and end of serial
protocol activation. The supported monitoring functions
are temperature, voltage, bias current, transmitter power,
average receiver signal, all alarms and warnings, and software
monitoring ofTX Fault/LOS.The device is internally calibrated.
The data transfer protocol and the details of the mandatory
and vendor specific data structures are defined in the SFP
MSA, and SFF-8472, Rev. 10.4.
Power Supply and Grounding: The power supply line
should be well-filtered. All power supply bypass capacitors
should be as close to the transceiver module as possible.
Pin
Logic
Symbol
Description
1
-
VeeT
Module Transmitter Ground
2
LVTTL-O
TX_Fault
Module Transmitter Fault
3
LVTTL-I
TX_Disable
Transmitter Disable; Turns off transmitter laser output
4
LVTTL-I/O
SDA
2-Wire Serial Interface Data Line
5
LVTTL-I/O
SCL
2-Wire Serial Interface Clock
6
-
MOD-ABS
Module Definition, Grounded in the module
7
LVTTL-I
RS0
No function implemented
8
LVTTL-O
RX_LOS
Receiver Loss of Signal Indication
9
LVTTL-I
RS1
No function implemented
10
-
VeeR
Module Receiver Ground
11
-
VeeR
Module Receiver Ground
12
CML-O
RD-
Receiver Inverted Data Output
13
CML-O
RD+
Receiver Non-Inverted Data Output
14
-
VeeR
Module Receiver Ground
15
-
VccR
Module Receiver 3.3V Supply
16
-
VccT
Module Transmitter 3.3V Supply
17
-
VeeT
Module Transmitter Ground
18
CML-I
TD+
Transmitter Non-Inverted Data Input
19
CML-I
TD-
Transmitter Inverted Data Input
20
-
VeeT
Module Transmitter Ground




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