IP Library Granted Patent US 10,295,765
Granted Patent B2
US 10,295,765 · App. 15/413,514 · Granted May 21, 2019

TO-Can photodiode package with integrated coupling member and exposed active region, and a receiver optical subassembly (ROSA) using the same

Inventors: Kai-Sheng Lin (Sugar Land, TX); YongXuan Liang (Stafford, TX); Justin Lii (Houston, TX)
Assignee: Applied Optoelectronics, Inc.
G02B6/4263G02B6/4251G02B6/4274H04B10/40H04B10/66H04B10/69
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Quick Facts
Patent No.
US 10,295,765
App. No.
15/413,514
Granted
May 21, 2019
Kind
B2
Abstract

A photodiode package is disclosed that includes a TO-Can style body with an exposed sensor cavity that eliminates the necessity of an encapsulant dispensing process. The TO-Can body of the photodiode package includes an integrated coupling member to allow for coupling to a ROSA housing without an intermediate member. The photodiode package includes a base portion with a cylindrical wall portion that extends therefrom to form an optical coupling cavity. A surface of the base portion provides at least one mounting surface within the optical coupling cavity for coupling to a photodiode chip. The cylindrical wall may function as an integrated coupling member and may be used to directly couple the photodiode package, e.g., without an intermediate cap/ring, into a socket of a ROSA housing. The base portion and cylindrical wall may be formed from a single piece of material, or from multiple pieces depending on a desired configuration.

Claims (30)

1. A photodiode package for use in a receiver optical subassembly (ROSA), the photodiode package comprising:

a base portion having a first cylindrical sidewall extending from a first end to a second end along a longitudinal axis;

a mounting surface for coupling to at least one optical component disposed at the first end of the base portion, the mounting surface extending substantially transverse relative to the longitudinal axis of the base portion;

a second cylindrical sidewall extending from the base portion at the first end, the second cylindrical sidewall having an outer surface extending away from the base portion and an inner surface disposed opposite the outer surface; and

an exposed optical coupling cavity defined at least in part by the mounting surface of the base portion and the inner surface of the second cylindrical sidewall.

2. The photodiode package of claim 1 , wherein the base portion and second cylindrical sidewall are integrally formed from a single piece of metal or metal alloy.

3. The photodiode package of claim 1 , wherein the optical coupling cavity includes a first region having a first diameter D 1 and a second region having a second diameter D 2 , and wherein the first diameter D 1 is greater than the second diameter D 2 .

4. The photodiode package of claim 3 , wherein the first region is configured to receive at least a portion of a focusing lens.

5. The photodiode package of claim 3 , further comprising a plurality of electrical leads that extend through the base portion, each of the electrical leads including a first portion that extends partially through the first region of the optical coupling cavity and a second portion that extends from the second end of the base portion.

6. The photodiode package of claim 5 , further comprising the optical component coupled to the mounting surface, wherein the optical component is a photodiode chip.

7. The photodiode package of claim 6 , wherein the plurality of electrical leads are electrically coupled to the optical component via wire bonding.

8. The photodiode package of claim 7 , wherein the wire bonding is disposed within the second region of the optical coupling cavity below the first region.

9. The photodiode package of claim 1 , wherein the mounting surface comprises a reference marker.

10. The photodiode package of claim 1 , wherein the photodiode package is implemented as a TO-33 photodiode package.

11. An optical transceiver module comprising:

a multi-channel receiver optical sub-assembly (ROSA) having a plurality of sockets for coupling to photodiode packages; and

at least one photodiode package coupled into a socket of the plurality of sockets, the at least one photodiode package comprising:

a base portion having a first cylindrical sidewall extending from a first end to a second end along a longitudinal axis;

a mounting surface for coupling to at least one optical component disposed at the first end of the base portion, the mounting surface extending substantially transverse relative to the longitudinal axis of the base portion;

a second cylindrical sidewall extending from the base portion at the first end, the second cylindrical sidewall having an outer surface extending away from the base portion and an inner surface disposed opposite the outer surface; and

an exposed optical coupling cavity defined at least in part by the mounting surface of the base portion and the inner surface of the second cylindrical sidewall.

12. The optical transceiver module of claim 11 , wherein the base portion and second cylindrical sidewall of the at least one photodiode package are integrally formed from a single piece of metal or metal alloy.

13. The optical transceiver module of claim 11 , wherein the optical coupling cavity of the at least one photodiode package includes a first region having a first diameter D 1 and a second region having a second diameter D 2 , and wherein the first diameter D 1 greater than the second diameter D 2 .

14. The optical transceiver module of claim 13 , wherein the first region of the at least one photodiode package is configured to receive at least a portion of a focusing lens.

15. The optical transceiver module of claim 13 , wherein the at least one photodiode package further comprises a plurality of electrical leads that extend through the base portion, each of the electrical leads including a first portion that extends partially through the first region of the optical coupling cavity and a second portion that extends from the second end of the base portion.

16. The optical transceiver module of claim 15 , further comprising the optical component coupled to the mounting surface of the at least one photodiode package, wherein the optical component is a photodiode chip.

17. The optical transceiver module of claim 16 , wherein the plurality of electrical leads of the at least one photodiode package are electrically coupled to the photodiode chip via wire bonding.

18. The optical transceiver module of claim 17 , wherein the wire bonding is disposed within the second region of the optical coupling cavity of the at least one photodiode package below the first region.

19. The optical transceiver module of claim 11 , wherein the optical transceiver module is a Quad Small Form-factor Pluggable (QSFP) transceiver module and the ROSA is configured to receive at four different channel wavelengths at transmission rates of at least about 10 Gbps per channel.

20. The photodiode package of claim 1 , wherein at least a portion of the first and/or second cylindrical sidewall provide an integrated coupling member for directly coupling the photodiode package to a receiver optical subassembly (ROSA) housing.

Assignments (4)
SECURITY INTEREST Recorded Aug 1, 2025
From: APPLIED OPTOELECTRONICS, INC.
To: BOKF, NA D/B/A BOK FINANCIAL
Reel/Frame 072338/0695 →
TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS Recorded Nov 20, 2023
From: CIT NORTHBRIDGE CREDIT LLC
To: APPLIED OPTOELECTRONICS, INC.
Reel/Frame 065630/0906 →
PATENT SECURITY AGREEMENT Recorded Nov 28, 2022
From: APPLIED OPTOELECTRONICS, INC.
To: CIT NORTHBRIDGE CREDIT LLC
Reel/Frame 062003/0523 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 24, 2017
From: LIN, KAI-SHENG; LIANG, YONGXUAN; LII, JUSTIN
To: APPLIED OPTOELECTRONICS, INC.
Reel/Frame 041467/0317 →
Continuity (1)
Related Publication 20180210156A1 · Jul 26, 2018