IP Library Granted Patent US 10,295,767
Granted Patent B2
US 10,295,767 · App. 15/876,572 · Granted May 21, 2019

Spoiler heat sink device in belly-to-belly transceiver

Inventors: Chao-Jung Chen (Taoyuan, TW); Yu-Nien Huang (Taoyuan, TW); Kuen-Hsien Wu (Taoyuan, TW); Kuo-Wei Lee (Taoyuan, TW)
Assignee: Quanta Computer Inc.
G02B6/4269G02B6/426G02B6/428G02B6/4284
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Quick Facts
Patent No.
US 10,295,767
App. No.
15/876,572
Granted
May 21, 2019
Kind
B2
Abstract

A transceiver cage and heat sink assembly for an optical switch is disclosed. A transceiver cage has an open front end to receive an optical transceiver and an opposite rear end. A front heat sink is mounted over the transceiver cage that includes a thermal interface material to contact a contact surface of an optical transceiver. A printed circuit board has a connector electronic circuit to receive a connector on the optical transceiver. A rear heat sink has a beveled surface facing the rear end of the transceiver cage. A cam structure in the front heat sink forces the transceiver into contact with the front heat sink. A metal foil layer is coated on the thermal interface material.

Claims (22)

1. An optical switch, comprising:

a first transceiver cage having an open front end and an opposite rear end, the open front end operable to receive an inserted optical transceiver;

a printed circuit board having a connector circuit operable to connect to the optical transceiver;

a forward heat sink mounted over the first transceiver cage, the forward heat sink in contact with the inserted optical transceiver;

a rear heat sink in proximity to the rear end of the first transceiver cage, the rear heat sink having a beveled surface facing the rear end of the first transceiver cage; and

a heat pipe coupling the forward and rear heat sink together.

2. The optical switch of claim 1 , wherein the forward heat sink includes a thermal interface material to contact the transceiver when the transceiver is inserted in the first transceiver cage.

3. The optical switch of claim 2 , wherein a metal foil is coated over the thermal interface material.

4. The optical switch of claim 3 , wherein the metal foil is copper.

5. The optical switch of claim 2 , wherein the forward heat sink includes a slot that holds a cam structure moveable between a forward position and a rear position.

6. The optical switch of claim 5 , wherein the forward heat sink holds a stop and a spring between the stop and the cam structure.

7. The optical switch of claim 1 , further comprising:

a second transceiver cage under the first transceiver cage, the second transceiver cage having an open front end operable to receive an inserted optical transceiver and an opposite rear end; and

a bottom forward heat sink located under the second transceiver cage operable to contact the transceiver inserted in the second transceiver cage.

8. The optical switch of claim 7 , further comprising a rear heat sink in proximity to the rear end of the second transceiver cage.

9. An optical switch, comprising:

a transceiver cage having an open front end and an opposite rear end, the open front end operable to receive an optical transceiver;

a front heat sink mounted over the transceiver cage, the front heat sink including a thermal interface material to contact a contact surface of the optical transceiver;

a printed circuit board having a connector electronic circuit to receive a connector on the optical transceiver;

a rear heat sink in proximity to the rear end of the transceiver cage, the rear heat sink having a beveled surface facing the rear end of the transceiver cage;

a cam structure in the front heat sink that forces the transceiver into contact with the thermal interface material; and

a metal foil layer coated on the thermal interface material.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 22, 2018
From: CHEN, CHAO-JUNG; HUANG, YU-NIEN; WU, KUEN-HSIEN; LEE, KUO-WEI
To: QUANTA COMPUTER INC.
Reel/Frame 045109/0900 →
Continuity (2)
Provisional Application 62534847 · Jul 20, 2017
Related Publication 20190025529A1 · Jan 24, 2019
Cited By (3)
US 12,272,896 US 12,321,023 US 12,529,855