DATA SHEET 10 GBPS 1310NM ROSA LRM APPLICATIONS SC/LC ROSA PACKAGE PIN-1310-LRM-X FEATURES: SC ROSA PIN-1310-10LRM-SCA LC ROSA PIN-1310-10LRM-LCA Linear output Transimpedance Amplifier with large dynamic range The PIN-1310-LRM-x uses a high-performance InGaAs PIN photo-detector packaged with a transimpedance amplifier designed to meet performance requirements for 10Gbps data communication over multi-mode optical fiber at 1310nm. Applications include Ethernet, Fiber Channel and ATM protocols. The optical assembly is designed to interface either 50m or 62.5m multi-mode fiber. High performance InGaAs PIN photodiode Low electrical parasitic TO46 package Data rates up to 10.3125Gbps Receive Signal Strength Indicator Low power dissipation Interface directly to EDC circuits Flex circuit interface fits all 10Gbps MSAs Automatic Gain Control Part Number Description PIN-1310-10LRM-SCA SC ROSA, with flex PIN-1310-10LRM-LCA LC ROSA, with flex PIN-1310-LRM-X 10 GBPS 1310NM ROSA LRM APPLICATIONS ABSOLUTE MAXIMUM RATINGS NOTICE: Stresses greater than those listed under "Absolute Parameter Rating Storage temperature -40oC to +85oC Case Operating temperature -10o to +85oC Lead solder temperature 260oC, 10 seconds NOTICE: The inherent design of this component causes it Power Supply Voltage -0.3V to 3.6V PIN Voltage 10V to be sensitive to electrostatic discharge (ESD). To prevent ESD-induced damage and/or degradation to equipment, take normal ESD precautions when handling this product. Incident Optical Power +3 dBm average, +5 dBm peak Maximum Ratings" may cause permanent damage to the device. This is a stress rating only and functional operation of the device at these or any other conditions above those indicated in the operations section for extended periods of time may affect reliability. PIN-1310-LRM-X ELECTRICAL-OPTICAL CHARACTERISTICS Vcc=3.3V, AC coupled to 50 ohm differential), -10oC1MHz PSRR 10 15 70 JPK-PK 45 THD MMF/SMF S21 2,3,5,8 70 30 PR,OMA=1dBm, F=1GHz 1 3.3 27 PR,OMA=-6dBm, F=1GHz Gbps nm 3.0 PR=0W (dark), F<1MHz PSRR Total Harmonic Distortion 10.312 1360 +4 -70 PR,OMA=-6dBm Notes +2.5 GVD Pk-Pk Jitter Units 1310 +3 Stressed Sensitivity, OMA Per IEEE802.3aq PR OMA =-12dBm, (20%TR/TF Rise/Fall Time 80%) Differential Electrical Return Loss Max. 1260 +1.5 ICC RSSI Responsivity Power Supply Rejection Ratio Typ. DR ROVLD(AVG) ROVLD(OMA) TIA Supply Current Min. 2 5 4 10 ps dB 2,10 ps 12 % 13 0.8 3 dB PIN-1310-LRM-X 10 GBPS 1310NM ROSA LRM APPLICATIONS NOTES 1. The data rate can be increased to 10.7Gbps for Fibre Channel applications with minimal degradation in performance. 6. Bandwidth and Low Frequency Cutoff are measured with a small signal sinusoidal light source with -12dBm average power 2. PR is the average optical power at the fiber face. 7. Measured per IEEE802.3aqrequirements.. 3. PR,OMA is the peak to peak optical power at the fiber face (Optical Modulation Amplitude) Measured with 231 PRBS at 10.3 Gbps. 8. Stressed receiver sensitivity is measured with 3.5dB vertical eye closure (intersymbol interference) and jitter added to total 0.3 UI. The measurement technique is defined in IEEE 802.3aq at a bit rate of 10.3125 Gbps with BER=1E-12. For 10.55 Gbps, the sensitivity is degraded by 0.25dB. 9. Rise/Fall times are corrected for optical source Rise/Fall times. The corrected value is calculated as the square root of the difference of the squares of the measured differential detector output and the source. where ER is the extinction ratio (linear) of the optical source. 4. 5. The TIA incorporates automatic gain control, which maintains approximately 300mV differential electrical output over the entire operating range. Refer to the chart below for typical differential transimpedance as a function of both average optical power and optical modulation amplitude. The measurement of eye height includes the effects of noise on both the "1" and "0" of the TIA on the eye opening, and can be calculated from: . Eye Height=ZTIA(PR.OMAxR-2x(3xin)) in is the input referred noise of the transimpedance amplifier. Eye height is measured on an oscilloscope, and is not intended to be indicative of eye opening at a specific Bit Error Rate (BER). 10. Value shown is with external power supply filtering. 11. For best sensitivity, a CDR that incorporates EDC may be required. 12. With an IEEE802.3aq specified input stressed eye (see note 8) 13. Harmonic distortion is defined as the ratio of power in all harmonic frequencies divided by the power in the fundamental frequency. PIN-1310-LRM-X PINOUT PIN-1310-LRM-x Number Function 1 Vcc 2 CASE 3 OUTN 4 OUTP 5 CASE 6 RSSI PIN-1310-10LRM-SCA PIN-1310-10LRM-LCA PIN-1310-LRM-X 10 GBPS 1310NM ROSA LRM APPLICATIONS RECOMMENDED INTERFACE CIRCUIT FOR THE HFD6XXX-YYY Optional 100 differential termination for high impedance limiting amplifiers is shown in red PIN-1310-LRM-X MOUNTING DIMENSIONS: LC ROSA WITH FLEX (for reference only): Dimensions in millimeters PIN-1310-LRM-X 10 GBPS 1310NM ROSA LRM APPLICATIONS MOUNTING DIMENSIONS: SC ROSA WITH FLEX (for reference only): Dimensions in millimeters PIN-1310-LRM-X 10 GBPS 1310NM ROSA LRM APPLICATIONS ADVANCED OPTICAL COMPONENTS AOC CAPABILITIES Finisar's ADVANCED OPTICAL COMPONENTS division was formed through strategic acquisition of key optical component suppliers. The company has led the industry in high volume Vertical Cavity Surface Emitting Laser (VCSEL) and associated detector technology since 1996. VCSELs have become the primary laser source for optical data communication, and are rapidly expanding into a wide variety of sensor applications. VCSELs' superior reliability, low drive current, high coupled power, narrow and circularly symmetric beam and versatile packaging options (including arrays) are enabling solutions not possible with other optical technologies. ADVANCED OPTICAL COMPONENTS is also a key supplier of Fabrey-Perot (FP) and Distributed Feedback (DFB) Lasers, and Optical Isolators (OI) for use in single mode fiber data and telecommunications networks ADVANCED OPTICAL COMPONENTS' advanced capabilities include: 1, 2, 4, 8, and 10Gbps serial VCSEL solutions 1, 2, 4, 8, and 10Gbps serial SW DETECTOR solutions VCSEL and detector arrays 1, 2, 4, 8, and 10Gbps FP and DFB solutions at 1310 and 1550nm 1, 2, 4, 8, and 10Gbps serial LW DETECTOR solutions Optical Isolators from 1260 to 1600nm range Laser packaging in TO46, TO56, and Optical subassemblies with SC, LC, and MU interfaces for communication networks VCSELs operating at 670nm, 780nm, 980nm, and 1310nm in development LOCATION Allen, TX - Business unit headquarters, VCSEL wafer growth, wafer fabrication and TO package assembly. Fremont, CA - Wafer growth and fabrication of 1310 to 1550nm FP and DFB lasers. Sensor packages include surface mount, various plastics, chip on board, chipscale packages, etc. Custom packaging options Shanghai, PRC - Optical passives assembly, including optical isolators and splitters. SALES AND SERVICE Finisar's ADVANCED OPTICAL COMPONENTS division serves its customers through a worldwide network of sales offices and distributors. For application assistance, current specifications, pricing or name of the nearest Authorized Distributor, contact a nearby sales office or call the number listed below. Phone:1-866-MY-VCSEL USA (toll free) 1-214-509-2700 USA (Direct dial) 44 (0) 174 336 5533 Europe 886-935-409898 China & Taiwan 81-90-4437-1130 Japan 82-11-220-6153 Asia Pacific & Korea Fax: 1-214-509-3709 USA Email: support@adopco.com WEB: www.finisar.com/aoc.php (c)2007 Finisar Corporation. All rights reserved. Finisar is a registered trademark of Finisar Corporation. Features and specifications are subject to change without notice. 12/07 Rev. E