P/N: ODP-35-DP-HDX-SSCA-XX 1310nm Emitting (DFB), 1550nm Receiving (Analog) , Bi-directional Diplexer Optical Module Features 1310nm DFB Laser Design, 1550nm Analog Receiver High Isolation 1GHz video Receiver Bandwidth RoHS Compliant available z z z z Application Design for fiber optic networks z Absolute Maximum Ratings Min Typical Max Unit 0 - 70 °C Storage Temperature -40 - 100 °C LD Reverse Voltage - - 2 V Symbol Min. Typ. Max. Unit λ 1290 - 1330 nm SMSR 30 35 - dB Δλ - - 1 nm Po 2 - - mW Bias Current at Po Ibias - - 75 mA Threshold Current Ith - - 40 mA Monitor Current at Po Ipd 100 - - μA Tracking Error TE -2 - 2 dB Forward Voltage VF - 1.2 1.6 V Tr / Tf - - 0.3 ns Monitor Dark Current Idk - - 0.1 μA Monitor Diode Capacitance Cpd - 6 15 pF Slope Efficiency at 25°C SE 0.1 - - mW/mA CRT - - -40 dB Parameter Operating Temperature (case) Transmitter Characteristics (Note 1) Parameter Wavelength at 25°C Side Mode Suppression Ratio Spectral Width (-20dB) Output Power at 25°C, Ith+20mA Rise/Fall Time Optical Crosstalk (Note 1) All data are specified across the operating temperature range 0~70°C. 1 DS-6174 Rev 0.0 2010-07-02 P/N: ODP-35-DP-HDX-SSCA-XX 1310nm Emitting (DFB), 1550nm Receiving (Analog) , Bi-directional Diplexer Optical Module Analog Receiver Characteristics (Note 1) Parameter Symbol Min. Typ. Max. Unit Detection Wavelength λ 1550 - 1560 nm Responsivity R 0.85 - - mA/mW Bandwidth (a) BW 1000 - - MHz Dark Current at Vr=5V Id - 2 5 nA Capacitance at Vr=5V and 1MHz C - 0.6 0.8 pF Optical Return Loss @1550nm ORL 30 40 - dB Polarization Dependent Loss PDL - - 0.5 dB DSO - -75 -70 dBc DTB - -80 -75 dBc (Note 1) All data are specified across the operating temperature range 0~70°C. (a) 0.5dB measurement. Pin Assignment PD Pin Assignment LD Pin Assignment D Type Pin 1 : Laser Anode and Monitor Diode Cathode Pin 2 : Case Gnd Pin 3 : Laser Cathode Pin 4 : Monitor Diode Anode PD- (1) PD+ (3) LD PD Functional Schematic 2 DS-6174 Rev 0.0 2010-07-02 P/N: ODP-35-DP-HDX-SSCA-XX 1310nm Emitting (DFB), 1550nm Receiving (Analog) , Bi-directional Diplexer Optical Module Mechanic Dimension units: inch[mm] Ordering Information Transmit 3=1310nm Tx Laser Receive 5=1550nm End Surface A=APC Fiber P=PIN D=DFB Output Power H Pin Assignment D=D type Blank=No Isolator I=Isolator Connector SC Fiber S=SM 9/125um RoHS Compliant Blank / G5 / GR Blank = RoHS non-compliant product G5 = RoHS 5/6-compliant product (lead exemption) GR = Full RoHS Compliant product (no exemption) 3 DS-6174 Rev 0.0 2010-07-02 P/N: ODP-35-DP-HDX-SSCA-XX 1310nm Emitting (DFB), 1550nm Receiving (Analog) , Bi-directional Diplexer Optical Module Warnings Handling Precautions: This device is susceptible to damage as a result of electrostatic discharge (ESD). A static free environment is highly recommended. Follow guidelines according to proper ESD procedures. Laser Safety: Radiation emitted by laser devices can be dangerous to human eyes. Avoid eye exposure to direct or indirect radiation. Legal Notice IMPORTANT NOTICE! All information contained in this document is subject to change without notice, at Source Photonics’s sole and absolute discretion. Source Photonics warrants performance of its products to current specifications only in accordance with the company’s standard one-year warranty; however, specifications designated as “preliminary” are given to describe components only, and Source Photonics expressly disclaims any and all warranties for said products, including express, implied, and statutory warranties, warranties of merchantability, fi tness for a particular purpose, and non-infringement of proprietary rights. Please refer to the company’s Terms and Conditions of Sale for further warranty information. 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Customer agrees that Source Photonics is not liable for any actual, consequential, exemplary, or other damages arising directly or indirectly from any use of the information contained in this document. Customer must contact Source Photonics to obtain the latest version of this publication to verify, before placing any order, that the information contained herein is current. © Copyright Source Photonics, Inc. 2010 All rights reserved 4 DS-6174 Rev 0.0 2010-07-02