IP Library Granted Patent US 7,153,043
Granted Patent B1
US 7,153,043 · App. 11/336,724 · Granted Dec 26, 2006

Optical transceiver having improved printed circuit board

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Quick Facts
Patent No.
US 7,153,043
App. No.
11/336,724
Granted
Dec 26, 2006
Kind
B1
Abstract

An optical transceiver includes a multi-layer printed circuit board comprising a plurality of layers and a first electric circuit and a flexible printed circuit board comprising a second electric circuit in connection with the first electric circuit. At least one of the layers is a rigid printed circuit board layer. A flexible printed circuit board is an extension of one of the layers in the multi-layer printed circuit board. An electro-optical component in communication with the first electric circuit and the second electric circuit can convert an electric signal to an optical signal or an optical signal to an electric signal.

Claims (30)

1. An optical transceiver module configured to be connected with an optical fiber aligned in a longitudinal direction, comprising:

a multi-layer printed circuit board comprising a plurality of layers and a first electric circuit, wherein each of the layers comprises a first side and a second side, the first side being aligned substantially along the longitudinal direction;

a flexible printed circuit board comprising a second electric circuit in connection with the first electric circuit, wherein the flexible printed circuit board is an extension from the first side of a layer in the multi-layer printed circuit board; and

an electro-optical component in communication with the first electric circuit and the second electric circuit, wherein the electro-optical component is configured to convert a first electric signal to a first optical signal or a second optical signal to a second electric signal.

2. The optical transceiver module of claim 1 , wherein the flexible printed circuit board is connected with a portion of the first side of the layer in the multi-layer printed circuit board.

3. The optical transceiver module of claim 1 , wherein the first side is longer than the second side.

4. The optical transceiver module of claim 1 , wherein the first electric circuit is located on an outer layer or a middle layer in the plurality of layers of the multi-layer printed circuit board.

5. The optical transceiver module of claim 1 , wherein the flexible printed circuit board is an extension of a middle layer in the plurality of layers of the multi-layer printed circuit.

6. The optical transceiver module of claim 1 , wherein the flexible printed circuit board comprises a foldable portion adjacent to the first side of the layer in the multi-layer printed circuit board.

7. The optical transceiver module of claim 6 , wherein the flexible printed circuit board further comprises a second portion in connection with the foldable portion, wherein the second portion is configured to be positioned substantially vertical to or facing the multi-layer printed circuit board when the flexible printed circuit board is folded at the foldable portion.

8. The optical transceiver module of claim 7 , wherein the second portion of the flexible printed circuit board comprises substantially the same dimensions as the multi-layer printed circuit board.

9. The optical transceiver module of claim 1 , further comprising an electrical interface in electric connection with the first electric circuit, configured to receive the first electric signal and output the second electric signal.

10. The optical transceiver module of claim 1 , wherein the first side is substantially perpendicular to the second side.

11. The optical transceiver module of claim 1 , wherein at least a portion of the flexible printed circuit board is coated with a material that can control the rigidity of the flexible printed circuit board and provide electromagnetic shield to the flexible printed circuit board.

12. The optical transceiver module of claim 1 , wherein one of the layers in the multi-layer printed circuit board comprises an extended portion outside the second side of the multi-layer printed circuit board, wherein the extended portion is configured to be connected with one or more electro-optical components.

13. The optical transceiver module of claim 12 , wherein the extended portion is flexible or semi-flexible.

14. The optical transceiver module of claim 12 , wherein the extended portion is connected with same layer in multi-layer printed circuit that the flexible printed circuit is an extension of.

15. An optical transceiver module configured to be connected with an optical fiber aligned in a longitudinal direction, comprising:

a multi-layer printed circuit board comprising a plurality of layers and a first electric circuit, wherein each of the layers comprises a first side and a second side, the first side being aligned substantially along the longitudinal direction;

a flexible printed circuit board comprising a second electric circuit in connection with the first electric circuit, wherein the flexible printed circuit board is an extension from the first side of a layer in the multi-layer printed circuit board;

an electromagnetic shielding material on at least a portion of the flexible printed circuit board; and

an electro-optical component in communication with the first electric circuit and the second electric circuit, wherein the electro-optical component is configured to convert a first electric signal to a first optical signal or a second optical signal to a second electric signal.

16. The optical transceiver module of claim 15 , wherein the flexible printed circuit board comprises a foldable portion adjacent to the first side of the layer in the multi-layer printed circuit board.

17. The optical transceiver module of claim 16 wherein the flexible printed circuit board further comprises a second portion in connection with the foldable portion, wherein the second portion is configured to be positioned substantially vertical to or facing the multi-layer printed circuit board when the flexible printed circuit board is folded at the foldable portion.

18. The optical transceiver module of claim 15 , wherein one of the layers in the multi-layer printed circuit board comprises an extended portion outside the second side of the multi-layer printed circuit board, wherein the extended portion is configured to be connected with one or more electro-optical components.

19. The optical transceiver module of claim 18 , wherein the extended portion is connected with same layer in multi-layer printed circuit that the flexible printed circuit is an extension of.

20. An optical transceiver module configured to be connected with an optical fiber aligned in a longitudinal direction, comprising:

a multi-layer printed circuit board comprising a plurality of layers and a first electric circuit, wherein each of the layers comprises a first side and a second side, the first side being aligned substantially along the longitudinal direction;

a flexible printed circuit board comprising a first portion extended from the first side of a layer in the multi-layer printed circuit board and a second portion extended from the second side of the layer in the multi-layer printed circuit board, wherein the flexible printed circuit board comprises a second electric circuit in connection with the first electric circuit; and

an electro-optical component in communication with the first electric circuit and the second electric circuit, wherein the electro-optical component is capable of converting a first electric signal to a first optical signal or a second optical signal to a second electric signal.

Assignments (5)
RELEASE OF SECURITY INTEREST Recorded Feb 14, 2024
From: EAST WEST BANK
To: VENUS PEARL ACQUISITION CO LIMITED; SOURCE PHOTONICS HOLDING(CAYMAN) LIMITED; SOURCE PHOTONICS TAIWAN, INC.; SOURCE PHOTONICS, INC.; MAGNOLIA SOURCE (CAYMAN) LIMITED; SOURCE PHOTONICS USA INC.; SOURCE PHOTONICS SANTA CLARA, LLC; SOURCE PHOTONICS, LLC; SOURCE PHOTONICS HOLDINGS LIMITED
Reel/Frame 066599/0343 →
SECURITY INTEREST Recorded Jul 2, 2021
From: VENUS PEARL ACQUISITION CO LIMITED; SOURCE PHOTONICS HOLDING (CAYMAN) LIMITED; SOURCE PHOTONICS TAIWAN, INC.; SOURCE PHOTONICS, INC.; MAGNOLIA SOURCE (CAYMAN) LIMITED; SOURCE PHOTONICS USA, INC.; SOURCE PHOTONICS SANTA CLARA, LLC; SOURCE PHOTONICS, LLC; SOURCE PHOTONICS HOLDINGS LIMITED
To: EAST WEST BANK
Reel/Frame 056752/0653 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 28, 2013
From: SOURCE PHOTONICS SANTA CLARA L.L.P.
To: MAGNOLIA SOURCE (CAYMAN) LIMITED
Reel/Frame 029901/0103 →
CERTIFICATE OF CONVERSION Recorded Dec 7, 2010
From: SOURCE PHOTONICS SANTA CLARA, INC.
To: SOURCE PHOTONICS SANTA CLARA, LLC
Reel/Frame 025445/0796 →
CHANGE OF NAME Recorded Apr 8, 2009
From: FIBERXON, INC.
To: SOURCE PHOTONICS SANTA CLARA, INC.
Reel/Frame 022520/0532 →