NUMBER GS-12-0984
TYPE Product Specification
TITLE
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REVISION
TRX10GDL0610C3 (SFP+ LRM Module)
1 of 16
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DATE
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Information in this document is believed to be reliable. However, no responsibility is assumed for possible inaccuracy or omission.
Product Specification
10 GBd SFP+ 1310 nm LRM Linear Transceiver
TRX10GDL0610C3
Product Features:
Hot pluggable SFP+ optical transceiver
Programmable input equalizer
Data rate transparent from 9.95 to 11.3 Gbps
Low power consumption, 0.75 W typ.
Excellent EMI performance
Transmission distance up to 220 m MMF
0 °C to +70 °C case operating temperature
1310 nm DFB laser
Duplex LC connector
Laser Class 1
RoHS 6/6 compliant
Applications:
10G Ethernet 10GBASE-LRM
FCIs SFP+ optical transceiver TRX10GDL0610C3 is a module for transmission over legacy
multimode fibers. It complies with the SFP+ MSA specifications (SFF-8431 and SFF-8432) and
with 10GBASE-LRM per IEEE 802.3. It is RoHS 6/6 compliant per Directive 2002/95/EC and laser
class 1 safety compliant per IEC/CDRH. The sub-Watt power consumption and the excellent EMI
performance allow system design with high port density. An adjustable input equalizer allows to
overcome host board high frequency signal loss and to optimize module performance in interaction
with a host board transmit equalizer.
Supported Standards
Application
Data Rate
10G Ethernet
10.3125 Gbps
NUMBER GS-12-0984
TYPE Product Specification
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Information in this document is believed to be reliable. However, no responsibility is assumed for possible inaccuracy or omission.
Table of Contents
Table of Contents ............................................................................................................................................ 2
Functional Description .................................................................................................................................... 3
Electrical Characteristics ................................................................................................................................ 4
Absolute Maximum Ratings ........................................................................................................................... 4
Recommended Operating Conditions ............................................................................................................ 4
Low Speed Characteristics ............................................................................................................................ 4
SFI Module Transmitter Input Characteristics................................................................................................ 5
SFI Module Receiver Output Characteristics ................................................................................................. 5
Optical Characteristics.................................................................................................................................... 6
General Parameters ....................................................................................................................................... 6
Optical Transmitter ......................................................................................................................................... 6
Optical Receiver ............................................................................................................................................. 6
Application Information .................................................................................................................................. 7
Connector Pinout ........................................................................................................................................... 7
Electrical Pin Definition .................................................................................................................................. 7
Application Schematics .................................................................................................................................. 8
Interfacing the Transceiver............................................................................................................................. 9
Digital Optical Monitoring ............................................................................................................................... 9
Tx Input Equalizer Adjustment ..................................................................................................................... 10
Programmability Feature Code .................................................................................................................... 11
Passcode Entry and Modification ................................................................................................................. 11
Module Outline ............................................................................................................................................. 12
Module Safety & Compliance ....................................................................................................................... 13
ESD & Electromagnetic Compatibility ......................................................................................................... 13
Eye Safety ....................................................................................................................................................... 14
Ordering Information ..................................................................................................................................... 15
NUMBER GS-12-0984
TYPE Product Specification
TITLE
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Functional Description
The transmit path is based on an AC coupled 100 ohm differentially terminated driver coupled to a 1310 nm
DFB laser. Laser output may be disabled by pulling the transmitter disable (TX_DIS) line high which is its
default state when leaving the input floating due to an internal pull-up resistor. A fault condition is raised
upon detection of an abnormal laser state.
The receive path consists of a receiver optical sub-assembly (ROSA) for optical to electrical conversion,
followed by a linear amplifier to boost the electrical signal. A loss of signal (LOS) status line provides
information to facilitate easy link detection.
Complete digital optical monitoring is implemented in compliance to SFF-8472 and made accessible via the
2-wire interface providing real time information about all important module parameters and status
information.
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TYPE Product Specification
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Information in this document is believed to be reliable. However, no responsibility is assumed for possible inaccuracy or omission.
Electrical Characteristics
Absolute Maximum Ratings
Rating
Conditions
Symbol
Min
Max
Units
Storage Ambient Temperature
stg
-40
+85
°C
Powered Case Temperature
c
0
+75
°C
Operating Relative Humidity
Non condensing
RH
0
95
%
Supply Voltage Range
VCCT/R
-0.5
4.0
V
Any stress beyond the maximum ratings may result in permanent damage to the device. Specifications are guaranteed only under
recommended operating conditions.
Recommended Operating Conditions
Parameter
Conditions
Symbol
Min
Typ
Max
Units
Operating Case Temperature
Case
0
+70
°C
Power Supply Voltage
VCCT/R
3.135
3.30
3.465
V
DC Common Mode Voltage
SFI Signals
VCM
-0.5
4.0
V
Low Speed Characteristics
Parameter
Conditions
Symbol
Min
Typ
Max
Units
Supply Current Transmitter
@ VCCT
IVCCTX
150
mA
Supply Current Receiver
@ VCCR
IVCCRX
70
mA
Total Supply Current
@ VCCT/R
IVCC
280
mA
Power Consumption
0.75
1.0
W
TX_Fault, RX_LOS
Host Vcc Range 2 V 3.47 V,
IOL_max = 4 mA
VOL
0
0.4
V
VOH
Host_
Vcc
0.5
Host_
Vcc +
0.3
TX_Dis, RS0, RS1
Low Voltage TTL
VIL
-0.3
0.8
VIH
2.0
VccT +
0.5
SCL, SDA
Host Vcc Range 3.13 V 3.47 V,
IOL_max = 4 mA
VIL
-0.3
VccT
* 0.3
VIH
VccT
* 0.7
VccT +
0.5
VOL
0.0
0.4
VOH
Host_
Vcc
0.5
Host_
Vcc +
0.3
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SFI Module Transmitter Input Characteristics
Parameter
Conditions
Symbol
Min
Typ
Max
Units
Nominal Data Rate
10.3125
Gbd
Reference Differential Input
Impedance
Zd
100
Input AC Common Mode Input
Voltage
0
25
mV
(RMS)
Differential Input Voltage Swing
2 x |V(TD+) V(TD-)|
VID
150
900
mV
Differential Input S-parameter
0.01 4.1 GHz
SDD11
1)
dB
4.1 11.1 GHz
2)
dB
Differential to Common Mode
Conversion 3)
0.01 11.1 GHz
SCD11
-10
dB
Total Jitter
TJ
0.28
UI(p-p)
Data Dependent Jitter
DDJ
0.1
UI(p-p)
Uncorrelated Jitter
UJ
0.023
RMS
1) Reflection coefficient given by equation SDD11(dB) < -12 + 2 x SQRT(f), with f in GHz.
2) Reflection coefficient given by equation SDD11(dB) < -6.3 + 13 x Log10(f/5.5), with f in GHz.
3) Common mode reference impedance is 25Ω.
SFI Module Receiver Output Characteristics
Parameter
Conditions
Symbol
Min
Typ
Max
Units
Nominal Data Rate
10.3125
Gbd
Reference Differential Output
Impedance
Zd
100
Termination Mismatch
ΔZd
5
%
Output AC Common Mode Voltage
7.5
mV
(RMS)
Differential Output Amplitude
RLoad = 100 ohm,
PIN_OMA -8 dBm
2 x |V(RD+) V(RD-)|
VOSPP
180
250
400
mV
Differential Output S-parameter
0.01 4.1 GHz
SDD22
1)
dB
4.1 11.1 GHz
2)
dB
Common Mode Output Return Loss4)
0.01 2.5 GHz
SCC22
3)
dB
2.5 11.1 GHz
-3
dB
Receiver Waveform Distortion
Penalty
dWDP
1.5
dB
1) Reflection coefficient given by equation SDD22(dB) < -12 + 2 x SQRT(f), with f in GHz.
2) Reflection coefficient given by equation SDD22(dB) < -6.3 + 13 x Log10(f/5.5), with f in GHz.
3) Reflection coefficient given by equation SCC22(dB) = -7 + 1.6 x f, with f in GHz
4) Common mode reference impedance is 25Ω.
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Optical Characteristics
General Parameters
Parameter
Conditions
Min Modal
Bandwidth
(MHz*km)
Symbol
Min
Typical
10GBd
Units
Operating Range
62.5 µm FDDI MMF
62.5 µm OM1 MMF
50 µm OM2 MMF
50 µm OM3 MMF
lOP
0.5
220
m
Optical Transmitter
Parameter
Conditions
Symbol
Min
Typ
Max
Units
Center Wavelength
TRP
1290
1310
1330
nm
RMS Spectral Width
3.6
nm
Average Launch Power
Pavg
-6.5
0.5
dBm
Optical Modulation Amplitude
POMA
-4.5
1.5
dBm
Extinction Ratio
ER
3.5
dB
Relative Intensity Noise
RIN
-128
dB/Hz
Optical Receiver
Parameter
Conditions
Symbol
Min
Typ
Max
Units
Center Wavelength
C
1260
1310
1355
nm
Average Input Power
Pavg
0.5
dBm
Overload Power in OMA
PMAX_OMA
1.5
dBm
Receiver Sensitivity
PRBS 231-1, BER < 1*10-12
@10.3125GBd
PIN(OMA)
-16
-13
dBm
Stressed Receiver Sensitivity
PRBS 231-1, BER < 1*10-12
@ 10.3125GBd
PIN(OMA)
-11.5
-8.5
dBm
Stressed Receiver Sensitivity
Symmetrical Test
PRBS 231-1, BER < 1*10-12
@ 10.3125GBd
PIN(OMA)
-11
-8
dBm
Loss of Signal
Assert
Pavg_as
-25
-13
dBm
De-Assert
POMA_deas
-11
-8
Loss of Signal Hysteresis
Hyst
0.5
dB
Note: The specified characteristics are met within the recommended range of operating. Unless otherwise noted, typical data are quoted
at nominal voltages and +25°C ambient temperature.
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Information in this document is believed to be reliable. However, no responsibility is assumed for possible inaccuracy or omission.
Application Information
Connector Pinout
Electrical Pin Definition
PIN
Logic
Symbol
Name / Description
Note
1
VeeT
Module Transmitter Ground
1
2
LVTTL-O
TX_Fault
Module Transmitter Fault
3
LVTTL-I
TX_Dis
Transmitter Disable; Turns off transmitter laser output
4
LVTTL-I/O
SDA
2-Wire Serial Interface Data Line
2
5
LVTTL-I
SCL
2-Wire Serial Interface Clock
2
6
MOD_ABS
(=MOD_DEF0) Module Absent, shorted to module ground
7
LVTTL-I
RS0
Receiver Rate Select
8
LVTTL-O
RX_LOS
Receiver Loss of Signal Indication Active LOW
9
LVTTL-I
RS1
Transmitter Rate Select
10
VeeR
Module Receiver Ground
1
11
VeeR
Module Receiver Ground
1
12
CML-O
RD-
Receiver Inverted Data Output
13
CML-O
RD+
Receiver Data Output
14
VeeR
Module Receiver Ground
1
15
VccR
Module Receiver 3.3 V Supply
16
VccT
Module Transmitter 3.3 V Supply
17
VeeT
Module Transmitter Ground
1
18
CML-I
TD+
Transmitter Non-Inverted Data Input
19
CML-I
TD-
Transmitter Inverted Data Input
20
VeeT
Module Transmitter Ground
1
1. Module ground pins Vee are isolated from the module case.
2. Shall be pulled up with 1k-10k ohms to a voltage between 3.13 V and 3.47 V on the host board.
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Information in this document is believed to be reliable. However, no responsibility is assumed for possible inaccuracy or omission.
Application Schematics
Recommended electrical connections to transceiver are shown below. Pull-ups: 1k 10k ohms.
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Interfacing the Transceiver
Communication is done by a serial 2-wire interface compatible to the I2C bus protocol. Refer to SFF-8472 for
a more detailed explanation of the registers:
Base Address A0h
Register
Content
0 - 95
Serial Transceiver ID as
defined in SFP MSA
96 - 127
FCI Specific
128 - 255
Reserved
Digital Optical Monitoring
The transceiver offers the ability to monitor important module parameter during operation. All five parameters
listed below are continuously monitored for getting information about the current module status. All data is
calibrated internally; there is no need for external post processing.
Temperature
Internally measured temperature data is represented as two’s complement of a signed 16-bit value in
increments of 1/256 °C over a range of -40 to +100 °C. Accuracy is better than +/-3 °C.
Supply Voltage (VCC)
Internally measured supply voltage. Represented as a 16-bit unsigned integer with the voltage defined as the
full 16 bit value (0 65535) with LSB equal to 100 μVolt, which yields to a total range of 0 to +6.55 Volts.
Accuracy is better than +/-3 %.
Laser Bias Current
The DFB laser bias current is represented as a 16 bit unsigned integer with the current defined as the full 16-
bit value (0 65535) with LSB equal to 2 μA. Accuracy is better than +/-10 %.
Optical Transmitter Power
TX output power measurement is based on internal monitor diode feedback. Represented as a 16-bit
unsigned integer with the power defined as the full 16 bit value (0 65535) with LSB equal to 0.1 μW.
Accuracy is better than +/-3 dB over a range of Pavgmin to Pavgmax.
Base Address A2h
Register
Content
0 - 55
Alarm & Warnings
Thresholds & Limits
56 - 95
External calibration
constants (not used)
96 119
Values from real time
diagnostic monitoring
120(LSB)
123(MSB)
Passcode change field
124(LSB)
127(MSB)
Passcode entry field
128 247
Customer specific, writable
area
248
Input equalizer setting
249 - 253
Reserved
254
Feature code
255
Reserved
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Receiver Optical Power
RX input power measurement is based on photodiode average current. Represented as a 16-bit unsigned
integer with the power defined as the full 16 bit value (0 65535) with LSB equal to 0.1 μW. Accuracy is
better than +/-3 dB over a range of -13 dBm to 0.5 dBm.
Note: The specified characteristics are met within the recommended range of operating conditions regarding temperature and voltage.
Tx Input Equalizer Adjustment
The transceiver is equipped with an equalizer at the transmitter input (at the electrical module interface) to
compensate for high frequency signal loss on the host board printed circuit board (Host-PCB) into which the
transceiver is plugged and to allow performance optimization in interaction with an host board equalizers (if
there is one).
There are different module equalizer settings available to adjust the strength of the equalization which may
be selected according to the line length of Host-PCB signal tracks.
MSB
Content of Register 248 in Table A2h
LSB
reserved
Tx2
Tx1
Tx0
reserved
reserved
reserved
reserved
Register 248 is always readable, but only writable if a valid passcode has been written to registers 124 127
of table A2h before (see paragraph Passcode Entry and Modification below). Reserved bits of register 248
should be written to 0. After power up, the module always comes up with its factory programmed default
equalizer setting.
Transmitter Input Signal Equalizer Settings:
Tx2
Tx1
Tx0
Description
0
X
X
Input equalizer off
1
0
0
Low equalization
1
0
1
Reserved
1
1
0
Default equalization (factory setting)
1
1
1
Reserved
X: don’t care
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Programmability Feature Code
Register 254 of table A2h indicates the programmability features available and an implementation code to
distinguish different implementations. This is a read only register.
MSB
Content of Register 254 in Table A2h
LSB
Tx Equal.
reserved
reserved
reserved
reserved
I-Code2
I-Code1
I-Code0
Tx Equal.: is set to 1 if the transceiver supports programming of the Tx equalizer.
I-Code2…0: implementation code. Yields 001b at read out.
Passcode Entry and Modification
Write-access to the transceiver programmability features and to the customer specific writable area (128
247 of table A2h) is granted via a valid passcode which has to be written to the passcode entry field
(registers 124-127 of table A2h). Please contact FCI for the factory preset initial passcode. The passcode
may be changed to a proprietary one by entering the new one into the passcode change field (registers 120-
123 of table A2h) after a valid passcode has been written to the passcode entry field.
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Module Outline
All dimensions shown are in millimeters.
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Information in this document is believed to be reliable. However, no responsibility is assumed for possible inaccuracy or omission.
Module Safety & Compliance
FCI’s SFP+ LRM module is designed to meet international standards and requirements. The module is
RoHS compliant according to the European Parliament requirements on the restriction of the use of
hazardous substances in electrical and electronic equipment (RoHS). The module optical output power
meets Class 1 requirements for laser safety.
Requirements
Standard
Module Safety
IEC 60950-1:2001
EN 60950-1:2001
RoHS Compliance
RoHS 6/6 Directive 2002/95/EC
Amendment 4054 (2005/747/EC)
Laser Safety (Class 1)
CDRH 21 CFR 1040.10 and 1040.11 (according FDA)
IEC 60825-1 Rev2 2007 (according IEC)
ESD & Electromagnetic Compatibility
Requirements
Standard
Value
EMI (Emission)
FCC Part 15 B
EN 55022 Class B
CISPR 22
30 MHz … 40 GHz
At least 6 dB
margin to
Class B limit
EMI (Immunity)
IEC 61000-4-3, 10 MHz … 1 GHz
No bit errors
at sensitivity
limit
ESD (Electrical connector)
EIA/JESD22-A114-B
MIL-STD 883C Method 3015.7
≥ 2 kV
≥ 1 kV (SFI
signals)
ESD (Module case)
Air Discharge
EN61000-4-2, Criterion B
15 kV
ESD (Module case)
Contact Discharge
EN61000-4-2, Criterion B
8 kV
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Eye Safety
This laser based singlemode transceiver is a Class 1 product. It complies with IEC 60825-1 Edition 2 and
FDA performance standards for laser products (21 CFR 1040.10 and 1040.11) except for deviations
pursuant to Laser Notice 50, dated July 26, 2001.
CLASS 1 LASER PRODUCT
To meet laser safety requirements the transceiver shall be operated within the Absolute Maximum Ratings.
Note: All adjustments have been made at the factory prior to shipment of the devices. No maintenance or
alteration to the device is required. Tampering with or modifying the performance of the device will result in
voided product warranty. Failure to adhere to the above restrictions could result in a modification that is
considered an act of “manufacturing”, and will require, under law, recertification of the modified product with
the U.S. Food and Drug Administration (ref. 21 CFR 1040.10 (i)).
LASER EMISSION DATA
Wavelength
1310 nm
Maximum total output power
(as defined by IEC: within 7 mm aperture at 70 mm distance)
15.6 mW / 11.9 dBm
Beam divergence (full angle) / NA (half angle)
11° / 0.1 rad
Product Top View
Rx
Tx
Laser
Emission
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Information in this document is believed to be reliable. However, no responsibility is assumed for possible inaccuracy or omission.
Ordering Information
Application
Part Number
10G Ethernet
TRX10GDL0610C3
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TYPE Product Specification
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REVISION RECORD
Rev
Page
Description
EC#
Date
A
Initial version.
27 Apr. 2011