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SBL52414Z

Infineon Technologies AG

Low Power BIDI Optical Standard Module 1310 nm Emitting/ 1550 nm Receiving - Infineon Technologies AG


SBL52414Z
SBL52414Z

PDF File SBL52414Z PDF File



Description
Fiber Optics Low Power BIDI® Optical Standard Module 1310 nm Emitting, 1310 nm Receiving SBL52214x Features • Designed for application in passive-optical networks • Integrated Wavelength Division Multiplexer (WDM) or Beam Splitter • Bi-Directional Transmission in one optical window • Single fiber solution • FP-Laser Diode with Multi-Quantum Well structure • Class 3B Laser Product • Suitable for bit rates up to 1.
25 Gbit/s • Ternary Photodiode at rear mirror for monitoring and control of radiant power • Low noise / high bandwidth PIN diode • Hermetically sealed subcomponents, similar to TO 46 • With singlemode fiber pigtail BIDI® is a registered trademark of Infineon Technologies Data Sheet 1 2002-05-01 SBL52214x Pin Configuration Pin Configuration Transmitter (bottom view) 2.
54 mm 2 1 3 4 4 Pinning 1 (on request) LD 1 2 3 MD Pinning 2 (Standard) 1 2 LD 3 MD 4 Figure 1 Transmitter Receiver (bottom view) 2.
54 mm Pinning 1 (Standard) Pinning 1 3 1 2 3 2 1 2.
54 mm 3 Pinning 2 (on request) 1 3 Pinning 2 2 1 2 Figure 2 Receiver Available Pinnings Type SBL52214x SBL51214x Transmitter 2 (Standard) 1 (on request) Receiver 1 (Standard) 1 (on request) Other Pinnings on request / different drawing set required for non standard pinning Data Sheet 2 2002-05-01 SBL52214x Description Description The Infineon module for bidirectional optical transmission has been designed for different optical networks structures.
In the last few years the structure has changed from point to point planned for Broad band ISDN to a point to multipoint passive optical network (PON) architecture for the optical network in the subscriber loop.
A transceiver can be realized with discrete elements (Figure 3).
Transmitter and receiver with pigtails are connected with a fiber-coupler (2:1 or 2:2, wavelength independent or WDM).
Transmitter Coupler Receiver 2:1 or 2:2 3 dB wavelength independent or wavelength division multiplexing Figure 3 Realization with Discrete Elements I...



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