TRC1G1JC1C000F6G OPLINK | Alldatasheet
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RevB-PN.2009.06.25 TRXAG1ZXM CWDM An Oplink Company
Oplink Communications, Inc. Transmitter Performance Characteristics (Over Operating Case Temperature, VCC = 3.13 to 3.47V) Receiver Performance Characteristics (Over Operating Case Temperature, VCC = 3.13 to 3.47V) TRXAG1ZXM CWDM 2 RevB-PN.2009.06.25 Parameter Symbol Minimum Typical Maximum Units Operating Data Rate B 125 - 1250 Mb/s Optical Output Power 1 Po 0 - + 5.0 dBm Center Wavelength 1471 λC 1464.5 1471 1477.5 nm 1491 1484.5 1491 1497.5 1511 1504.5 1511 1517.5 1531 1524.5 1531 1537.5 1551 1544.5 1551 1557.5 1571 1564.5 1571 1577.5 1591 1584.5 1591 1597.5 1611 1604.5 1611 1617.5 Spectral Width (-20dB) Δλ20 - - 1.0 nm Side Mode Suppression Ratio SMSR 30 - - dB Extinction Ratio Phi /Plo 9 - - dB Deterministic Jitter DJ - - 80 ps Total Jitter TJ - - 227 ps Optical Rise/Fall Time (20% to 80%) tr ,tf - - 0.32 ns Relative Intensity Noise RIN - - - 120 dB/Hz Dispersion Penalty 2 - - - 1.5 dB Transmitter Output Eye Compliant with IEEE 802.3z & FC-PI Eye Mask 1 Measured average power coupled into single mode fiber. 2 Specified at 1540ps/nm dispersion, which corresponds to the approximate worst-case dispersion for 70km G.652 fiber over the wavelength range of 1464.5 to 1617.5nm Parameter Symbol Minimum Typical Maximum Units Operating Data Rate B 125 - 1250 Mb/s Minimum Input Optical Power (10-12 BER) 1 Pmin - 24.0 - - dBm Maximum Input Optical Power (10-12 BER) 1 Pmax - 3.0 - - dBm LOS Thresholds Increasing Light Input Plos+ - - - 24.0 dBm Decreasing Light Input Plos- - 35.0 - - LOS Timing Delay Increasing Light Input t_loss_off - - 100 µs Decreasing Light Input t_loss_on - - 100 LOS Hysteresis - 0.5 - - dB Deterministic Jitter DJ - - 170 ps Total Jitter TJ - - 266 ps Wavelength of Operation λ 1260 - 1620 nm Optical Return Loss ORL 12 - - dB Electrical 3dB Upper Cutoff Frequency - - - 1500 MHz 1 Measured with 27-1 PRBS at 125Mb/s, 1062.5Mb/s and 1250Mb/s. Please refer to page 4 for Laser Safety information
Oplink Communications, Inc. Electrical Pad Layout Host Board Connector Pad Layout Toward Bezel Toward ASIC 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 TX GND TX Fault TX Disable MOD_DEF(2) MOD_DEF(1) MOD_DEF(0) NO CONNECTION LOS RX GND RX GND Bottom of Board (as viewed thru top of board)Top of Board TRXAG1ZXM CWDM RevB-PN.2009.06.253 Parameter Symbol Minimum Typical Maximum Units Input Voltage Swing (TD+ & TD-) 1 VPP-DIF 0.50 - 2.4 V Input HIGH Voltage (TX Disable) 2 VIH 2.0 - VCC V Input LOW Voltage (TX Disable) 2 VIL 0 - 0.8 V Output HIGH Voltage (TX Fault) 3 VOH 2.0 - VCC + 0.3 V Output LOW Voltage (TX Fault) 3 VOL 0 - 0.8 V 1 Differential peak-to-peak voltage. 2 There is an internal 4.7 to 10kΩ pull-up resistor to VccT. 3 Open collector compatible, 4.7 to 10kΩ pull-up resistor to Vcc (Host Supply Voltage). Parameter Symbol Minimum Typical Maximum Units Output Voltage Swing (RD+ & RD-) 1 VPP-DIF 0.6 - 2.0 V Output HIGH Voltage (LOS) 2 VOH 2.0 - VCC + 0.3 V Output LOW Voltage (LOS) 2 VOL 0 - 0.5 V 1 Differential peak-to-peak voltage across external 100Ω load. 2 Open collector compatible, 4.7 to 10kΩ pull-up resistor to Vcc (Host Supply Voltage). Parameter Symbol Minimum Typical Maximum Units Supply Voltage VCC 3.13 3.3 3.47 V Supply Current ICC - 200 300 mA MOD_DEF(0) pin 6 MOD_DEF(1) pin 5 MOD_DEF(2) pin 4 Interpretation by Host TTL LOW SCL SDA Serial module definition protocol Transmitter Electrical Interface (Over Operating Case Temperature, VCC = 3.13 to 3.47V) Receiver Electrical Interface (Over Operating Case Temperature, VCC = 3.13 to 3.47V) Electrical Power Supply Characteristics (Over Operating Case Temperature, VCC = 3.13 to 3.47V) Module Definition
1µH coil or ferrite bead (<0.2Ω series resistance) 0.1 TX DATA IN- TX Disable 0.1+ 50Ω line 50Ω line 50Ω line50Ω line 1, 9, 10, 11, 14, 17, 20 0.1+ (100Ω to ground internally) to 50Ω load Vcc 3.3V RX DATA OUT+ 13
12 RX DATA OUT-
6 MOD_DEF(0)
MOD_DEF(1) MOD_DEF(2) LOS to 50Ω load R
2 TX Fault
3.3V 100 Oplink Communications, Inc. RevB-PN.2009.06.25 R: 4.7 to 10kΩ Example of SFP host board schematic TRXAG1ZXM CWDM 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 - 10kΩ 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 - 10kΩ 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 -35dBm). Optical output is disabled from cold start until operating wavelength is within specified range. 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 I 2C 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 . 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 0.1μF power supply bypass capacitors should be as close to the transceiver module as possible. TRXAG1ZXM CWDM 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. reserves the right to make changes in equipment design or specifications without notice. Information supplied by Oplink Commu- nications, 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. © 2008, Oplink Communications, Inc. 46335 Landing Pkwy Fremont, CA 94538 T el: (510) 933-7200 Fax: (510) 933-7300 Email: Sales@Oplink.com • www.oplink.com Oplink can provide a remarkable range of customized optical solutions. For detail, please contact Oplink’s Sales and Marketing for your requirements and ordering information (5 1 0) 933-7200 or Sales@oplink.com. 41.8±0.15 1.645±.006 45±0.20 1.772±.008 15.67 .62 1.27 .05 MAX .04 MAX 13.56 .53 54.6 2.15 9.55 .38 47.50
1.87 REF
1.8 .07 .04 8.51 .34 8.9 .35 FRONT EDGE OF TRANSCEIVER CAGE 6.25±0.051 .25±.002 13.9±0.1 .546±.004
Ordering Information
RevB-PN.2009.06.255 Dimensions in inches [mm] Default tolerances: Model Name Latch Color Nominal Wave- length (nm) Optical Link Power Budget Distance 1Oplink Order Number For Reference (OCP order number) Oplink Order Number For Reference (OCP order number) - 5°C to +70°C - 5°C to +85°C TRC1G1JC1C000F6G TRXAG1ZXIBAM1 TRC1G1JC1E000F6G TRXAG1ZXIEAM1 Gray 1471 24dB 70km TRC1G1JC2C000F6G TRXAG1ZXIBVM2 TRC1G1JC2E000F6G TRXAG1ZXIEVM2 Violet 1491 24dB 70km TRC1G1JC3C000F6G TRXAG1ZXIBBM3 TRC1G1JC3E000F6G TRXAG1ZXIEBM3 Blue 1511 24dB 70km TRC1G1JC4C000F6G TRXAG1ZXIBGM4 TRC1G1JC4E000F6G TRXAG1ZXIEGM4 Green 1531 24dB 70km TRC1G1JC5C000F6G TRXAG1ZXIBYM5 TRC1G1JC5E000F6G TRXAG1ZXIEYM5 Yellow 1551 24dB 70km TRC1G1JC6C000F6G TRXAG1ZXIBOM6 TRC1G1JC6E000F6G TRXAG1ZXIEOM6 Orange 1571 24dB 70km TRC1G1JC7C000F6G TRXAG1ZXIBRM7 TRC1G1JC7E000F6G TRXAG1ZXIERM7 Red 1591 24dB 70km TRC1G1JC8C000F6G TRXAG1ZXIBNM8 TRC1G1JC8E000F6G TRXAG1ZXIENM8 Brown 1611 24dB 70km 1 The indicated transmission distance is for guidelines only, not guaranteed. It assumes a total connector/splice/CWDM mux and demux loss of