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 Fast Ethernet 100BASE-LX10 SFP Transceivers with Digital Diagnostics
TRXAFEEX/ZX
Product Description The TRXAFEEX/ZX SFP fiber optic transceivers provide a quick and reliable interface for 100BASE-LX10 Fast Ethernet single mode applications. The transceivers are compliant with IEEE802.3ah/D3.3 standard. The diagnostic functions, alarm and warning features as described in the Multi-Source Agreement (MSA) document, SFF-8472 (Rev. 9.4), are provided via an I2C serial interface. All transceiver modules satisfy Class I Laser Safety requirements in accordance with the U.S. FDA/CDRH and international IEC-60825 standards. The transceivers connect to standard 20-pad SFP connectors for hot plug capability. This allows the system designer to make configuration changes or maintenance by simply plugging in different types of transceivers without removing the power supply from The transceivers have bail-type latches, which offer an easy and convenient way to release the modules. The latch is compliant with the SFP MSA. The transmitter incorporates a highly reliable 1310nm InGaAsP laser and an integrated driver circuit. The receiver features a transimpedance amplifier IC optimized for high sensitivity and wide dynamic range. The transmitter and receiver DATA interfaces are AC-coupled internally. LVTTL Transmitter Disable control input and Loss of Signal (LOS) output interfaces are also provided. The transceivers operate from a single +3.3V power supply over operating case temperature range of -5Cto +70C ("B" option) or -40C to +85C ("A" option). The housing is made of plastic and metal for EMI immunity.
Features Lead Free Design & Fully RoHS Compliant Compatible with SFP MSA Compatible with IEEE802.3ah/D3.3 (100BASELX10) 1310nm FP & 1550nm DFB Laser Transmitters to Support Distances of 40km and 80km Eye Safe (Class I Laser Safety) Duplex LC Optical Interface Hot-pluggable TX Fault & Loss of Signal Outputs TX Disable Input Single +3.3V Power Supply
Absolute Maximum Ratings
Parameter Storage Temperature Operating Case Temperature 1 Supply Voltage Input Voltage Lead Terminal Finish, Reflow Profile Limits and MSL
1
Symbol Tst "B" option "A" option Top Vcc Vin -
Minimum - 40 -5 - 40 0 0 -
Maximum + 85 + 70 + 85 + 4.5 Vcc NA
Units C C V V -
Measured on top side of SFP module at the front center vent hole of the cage.
An Oplink Company
RevB-N.2009.04.01
TRXAFEEX/ZX
Transmitter Performance Characteristics (Over Operating Case Temperature, VCC = 3.13 to 3.47V)
All parameters guaranteed only at typical data rate Parameter Operating Data Rate 1 Optical Output Power 2 Center Wavelength Spectral Width (RMS) Spectral Width (-20dB) Side Mode Suppression Ratio Extinction Ratio Optical Output Power of OFF Transmitter Duty Cycle Distortion (Peak-to-Peak) Deterministic Jitter Optical Return Loss Tolerance Total Jitter Transmitter and Dispersion Penalty Optical Output Eye 3
1 2
Symbol B EX ZX EX ZX EX ZX ZX PO C RMS 20 SMSR Phi/Plo POFF DCD DJ ORLT TJ -
Minimum - 5.0 - 3.0 1260 1480 30 9 -
Typical 125 1310 1550 -
Maximum 0 + 2.0 1360 1580 3.0 1.0 - 45 0.6 2.44 12 2.48 4.5
Units Mb/s dBm nm nm nm dB dB dBm ns ns dB ns dB
Compliant with IEEE802.3ah/D3.3
Data rate ranges from 50Mb/s to 200Mb/s. However, some degradation may be incurred in overall performance. Measured average power coupled into single mode fiber. The minimum power specified is at Beginning-of-Life. 3 When tested with unbalanced pattern stated in IEEE802.3ah/D3.3 table 60-11.
Receiver Performance Characteristics (Over Operating Case Temperature, VCC = 3.13 to 3.47V)
All parameters guaranteed only at typical data rate Parameter Operating Data Rate 1 Receiver Sensitivity (10-12 BER) 2 Maximum Input Optical Power (10-12 BER)2 LOS Thresholds LOS Hysteresis LOS Thresholds Wavelength of Operation Jitter Tolerance Total Contributed Jitter Jitter Corner Frequency Receiver Reflectance
1 2
Symbol B EX ZX EX ZX Pmin Pmax Plos+ Plost_loss_off t_loss_on JT TJ EX ZX -
Minimum - 28.0 - 29.0 - 8.0 - 45.0 0.5 2.3 1100 -
Typical 125 - 31.0 - 32.0 - 5.0 20 -
Maximum - 28.0 - 29.0 100 100 1600 3.54 0.5 - 12 - 21
Units Mb/s dBm dBm dBm dB s nm ns ns kHz dB
Increasing Light Input Decreasing Light Input Increasing Light Input Decreasing Light Input
Data rate ranges from 50Mb/s to 200Mb/s. However, some degradation may be incurred in overall performance. Specified in average optical input power and measured at 1310nm (EX) and 1550nm (ZX) wavelengths, and at 125Mb/s with 223-1 PRBS.
Please refer to page 4 for Laser Safety information
Oplink Communications, Inc.
2
RevB-N.2009.04.01
TRXAFEEX/ZX
Transmitter Electrical Interface (Over Operating Case Temperature, VCC = 3.13 to 3.47V)
Parameter Input Voltage Swing (TD+ & TD-) 1 Input HIGH Voltage (TX Disable) 2 Input LOW Voltage (TX Disable) Output HIGH Voltage (TX Fault)
1 2
Symbol VPP-DIF VIH VIL VOH VOL
Minimum 0.25 2.0 0 2.0 0
Typical -
Maximum 2.4 VCC 0.8 VCC + 0.3 0.8
Units V V V V V
2 3
Output LOW Voltage (TX Fault) 3
Differential peak-to-peak voltage. There is an internal 4.7 to 10k pull-up resistor to VccT. 3 Open collector compatible, 4.7 to 10k pull-up resistor to Vcc (Host Supply Voltage).
Receiver Electrical Interface (Over Operating Case Temperature, VCC = 3.13 to 3.47V)
Parameter Output Voltage Swing (RD+ & RD-) Output HIGH Voltage (LOS) Output LOW Voltage (LOS)
1
Symbol
1
Minimum 0.6 2.0 0
Typical -
Maximum 2.0 VCC + 0.3 0.5
Units Vp-p V V
VPP-DIF VOH VOL
2
2
Differential peak-to-peak voltage across external 100 load. 2 Open collector compatible, 4.7 to 10k pull-up resistor to Vcc (Host Supply Voltage).
Electrical Power Supply Characteristics (Over Operating Case Temperature, VCC = 3.13 to 3.47V)
Parameter Supply Voltage Supply Current Symbol VCC ICC Minimum 3.13 Typical 3.3 185 Maximum 3.47 275 Units V mA
Module Definition
MOD_DEF(0) pin 6 TTL LOW MOD_DEF(1) pin 5 SCL MOD_DEF(2) pin 4 SDA Interpretation by Host Serial module definition protocol
Electrical Pad Layout
20 19 18 17 16 15 14 13 12 11
TX GND TD- (TX DATA IN-) TD+ (TX DATA IN+) TX GND VccTX VccRX RX GND RD+ (RX DATA OUT+) RD- (RX DATA OUT-) RX GND
Host Board Connector Pad Layout
1 2 3 4 5 6 7 8 9 10
TX GND TX Fault TX Disable MOD_DEF(2) MOD_DEF(1) MOD_DEF(0) NO CONNECTION LOS RX GND RX GND
1 2 3
Toward Bezel
20 19 18 17 16 15 14 13 12 11
Toward ASIC
4 5 6 7 8 9 10
Top of Board
Bottom of Board (as viewed thru top of board)
Oplink Communications, Inc.
3
RevB-N.2009.04.01
TRXAFEEX/ZX
Example of SFP host board schematic
1H coil or ferrite bead (<0.2 series resistance)
Vcc 3.3V
Vcc 3.3V
+
10
0.1
0.1
16 15
R
2 8 4 5 6
R
R
R
TX Fault LOS MOD_DEF(2) MOD_DEF(1) MOD_DEF(0) (100 to ground internally) RX DATA OUT+ to 50 load RX DATA OUTto 50 load
+
10
0.1
TRXAFE
3 100 18
TX Disable
50 line
TX DATA IN+ TX DATA IN50 line
50 line
13
50 line
19
12
1, 9, 10, 11, 14, 17, 20
R: 4.7 to 10k
Application Notes
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 - 10k resistor on the host board. Loss of Signal (LOS): The Loss of Signal circuit monitors the level of the incoming optical signal and generates a 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 - 10k resistor on the host board. TX Fault is non-latching (automatically deasserts when fault goes away). TX Disable: When the TX Disable pin is at logic HIGH, the transmitter optical output is disabled (less than -45dBm). Serial Identification and Monitoring: The module definition of SFP is indicated by the three module definition pins, MOD_DEF(0), MOD_DEF(1) and MOD_DEF(2). Upon power up, MOD_DEF(1:2)
appear as NC (no connection), and MOD_DEF(0) 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 SFP that are not write protected, and the negative edge clocks data from the SFP. This device does not require clock stretching. 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 of TX 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. 9.4. Power Supply and Grounding: The power supply line should be well-filtered. All 0.1F power supply bypass capacitors should be as close to the transceiver module as possible.
Laser Safety: All transceivers are Class I Laser products per FDA/CDRH and IEC-60825 standards. They must be operated under specified operating conditions.
Oplink Communications, Inc.
DATE OF MANUFACTURE: This product complies with 21 CFR 1040.10 and 1040.11 Meets Class I Laser Safety Requirements
Oplink Communications, Inc.
4
RevB-N.2009.04.01
TRXAFEEX/ZX
Package Outline
56.6 2.2 REF 13.67 13.54 .54 .53 1.02 .0 6.250.05 .246.002 8.89 .4 47.35 1.86 8.51 .335
46335 Landing Pkwy Fremont, CA 94538 Tel: (510) 933-7200 Fax: (510) 933-7300 Email: Sales@Oplink.com * www.oplink.com
13.870.20 .546.008 1.78 .1 41.800.15 1.646.006
44.980.20 1.771.008
Dimensions in inches [mm] Default tolerances: .xxx = .005", .xx = .01"
Ordering Information
Operation Case Temperature Nominal Wavelength
Model Name
Latch Color
Distance
1
TRXAFEEXEBGS TRXAFEEXEAGS TRXAFEZXGBMS TRXAFEZXGAMS
- 5C to +70C - 40C to +85C - 5C to +85C -- 40C to +85C
Green Green Magenta Magenta
1310nm FP 1310nm FP 1550nm DFB 1310nm DFB
40km 40km 80km 80km
Oplink Communications, Inc. reserves the right to make changes in equipment design or specifications without notice. Information supplied by Oplink Communications, Inc. is believed to be accurate and reliable. However, no responsibility is assumed by Oplink Communications, Inc. for its use nor for any infringements of third parties, which may result from its use. No license is granted by implication or otherwise under any patent right of Oplink Communications, Inc. RevB-N.2009.04.01 (c) 2008, Oplink Communications, Inc. 5


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