IP Library Granted Patent US 7,178,991
Granted Patent B2
US 7,178,991 · App. 10/704,708 · Granted Feb 20, 2007

Optical transceiver module

Assignee: Industrial Technology Research Institute
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Quick Facts
Patent No.
US 7,178,991
App. No.
10/704,708
Granted
Feb 20, 2007
Kind
B2
Abstract

An optical transceiver module includes a plurality of optical signal transmission/receiving units to receive and transmit optical signals, and is fastened to a base by a fastening unit. Each optical signal transmission/receiving unit includes a heat sink to promote heat dissipation efficiency. An electromagnetic shielding part covers the optical receiver to isolate from electromagnetic interference. A guiding plate is provided in the module to comb terminals of the module when the low-density wavelength-multiplex transceiver module is to be placed in an electronic device.

Claims (17)

1. An optical transceiver module that communicates with an external communication device by receiving and/or transmitting an optical signal, the module comprising:

a base;

an optical wavelength multiplexer/demultiplexer, mounted inside the base for integration or division of the optical signal;

a plurality of optical transmitters and optical receivers, connecting to the multiplexer /demultiplexer to transmit and receive the optical signal;

a plurality of circuit boards, connected to the plurality of optical transmitters and optical receivers and each of the plurality of circuit boards having a plurality of pins for electrically communicating with the external communication device; and

a guiding plate mounted on the base, said guiding plate having a plurality of guiding holes with said guiding holes corresponding to and aligned with said plurality of pins, said guiding holes receiving said pins so as to properly align said pins for connection with said external communication device, whereby said pins extend through the guiding plate, but are free from the guiding plate.

2. The optical transceiver module of claim 1 , further comprising an upper lid covering the base to reduce electromagnetic interference of the optical transceiver module.

3. The optical transceiver module of claim 1 , wherein the circuit boards are parallel to each other and perpendicular to the base.

4. The optical transceiver module of claim 1 , further comprising at least one heat sink mounted on the base, the plurality of circuit boards including a plurality of heat generating components, the heat sink being in contact with the base and the plurality of heat generating components adjacent to the heat sink to conduct the heat from the plurality of heat generating components.

5. The optical transceiver module of claim 4 , wherein the heat sink further comprising a top far away from the base to increase heat conducting efficiency.

6. The optical transceiver module of claim 4 , wherein the heat sink further comprising a groove for containing a shielding material.

7. The optical transceiver module of claim 4 , further comprising a groove formed inside the heat sink and a metal mesh disposed inside the groove to prevent cross talk between the circuit boards.

8. The optical transceiver module of claim 1 , further comprising at least one electromagnetic shielding parts covering the optical receiver and connecting to the base to prevent electromagnetic interference.

9. The optical transceiver module of claim 8 , wherein the electromagnetic shielding parts further comprising at least one groove on two sides to connect to the optical receiver.

10. The optical transceiver module of claim 8 , wherein the electromagnetic shielding parts further comprising at least one protrusion to connect to the circuit board of the optical receiver.

11. The optical transceiver module of claim 1 , wherein the guiding plate is moved to comb said pins in order to align the pins for insertion into holes of a substrate which provide communication with the external communication device.

12. The optical transceiver module of claim 1 , wherein the guiding plate extends across a section of said base containing said pins and is connected to said base at opposite ends of said guiding plate.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 12, 2003
From: CHIU, CHIA-HUNG; SHAW, CHENG-DA; CHEN, YI-MING; WANG, CHIUNG-HUNG; CHANG, YUAN-JEN; HSU, CHI-LUN; HUANG, MING-FA; HSU, CHIH-HAO
To: INDUSTRIAL TECHNOLOGY RESEARCH INSTITUTE
Reel/Frame 014701/0013 →
Priority Claims (1)
TW 92116843 A · Jun 20, 2003 · national
Continuity (1)
Related Publication 20050089281A1 · Apr 28, 2005