IP Library Granted Patent US 10,833,775
Granted Patent B1
US 10,833,775 · App. 16/387,816 · Granted Nov 10, 2020

Techniques for magnetic shielding of an optical isolator to maintain nominal magnetic flux density and a transmitter or transceiver system implementing same

Inventors: Chong Wang (Stafford, TX); Kai-Sheng Lin (Sugar Land, TX); Yongxuan Liang (Stafford, TX); I-Lung Ho (Sugar Land, TX)
Assignee: Applied Optoelectronics Inc.
H04B10/802G02B6/4277H04B10/501H04J14/0287H05K9/0058
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Quick Facts
Patent No.
US 10,833,775
App. No.
16/387,816
Granted
Nov 10, 2020
Kind
B1
Abstract

In general, the present disclosure is directed to a transmitter optical subassembly (TOSA) module for use in an optical transceiver or transmitter that includes a magnetically-shielded optical isolator to minimize or otherwise reduce magnetization of TOSA components. An embodiment of the present disclosure includes a TOSA housing with magnetic shielding at least partially surrounding an optical isolator, with the magnetic shielding reflecting associated magnetic energy away from components, such as a metal TOSA housing or components disposed therein, that could become magnetized and adversely impact the magnetic flux density of the magnetic field associated with the optical isolator.

Claims (30)

1. A transmitter optical subassembly (TOSA) module for use in an optical transmitter or optical transceiver, the TOSA comprising:

a housing defining a cavity;

a laser diode disposed in the cavity to emit an associated channel wavelength;

an optical isolator, the optical isolator optically coupled to the laser diode and having an associated magnetic field to determine a direction of propagation for the associated channel wavelengths; and

a magnetic shield comprising a paramagnetic or non-magnetic material, the magnetic shield at least partially surrounding the optical isolator, the magnetic shield to reflect the associated magnetic field away from the housing of the TOSA module to maintain a magnetic flux density of the associated magnetic field.

2. The TOSA module of claim 1 , further comprising:

an optical coupling receptacle with a first end to couple to a ferrule and a second end to mate to the housing of the TOSA module; and

a coupler section with a first end to couple to the optical coupling receptacle and a second end to couple to the housing, the coupler section at least partially extending into the cavity of the housing.

3. The TOSA module of claim 2 , wherein the magnetic shield comprises a substantially cylindrical body, the substantially cylindrical body disposed in a cavity defined by the coupler section.

4. The TOSA module of claim 1 , wherein the magnetic shield is provided at least in part by the coupler section being formed from a paramagnetic material.

5. The TOSA module of claim 1 , wherein the cavity of the housing is hermetically-sealed, and wherein at least a portion of the magnetic shield extends into the hermetically-sealed cavity.

6. The TOSA module of claim 1 , wherein the housing is formed of a material prone to magnetization.

7. The TOSA module of claim 1 , wherein the magnetic shield comprises aluminum or an alloy thereof.

8. The TOSA module of claim 1 , wherein the housing comprises kovar.

9. The TOSA module of claim 1 , wherein the magnetic shield comprises a paramagnetic metal.

10. The TOSA module of claim 9 , wherein the paramagnetic metal of the magnetic shield at least partially surrounds the optical isolator to maintain the magnetic flux density of the associated magnetic field of the optical isolator.

11. A multi-channel optical transceiver comprising:

a substrate;

a transmitter optical subassembly (TOSA) module coupled to the substrate, the TOSA module comprising:

a TOSA housing defining a cavity;

an optical coupling receptacle and a coupler section to couple the optical coupling receptacle to the TOSA housing;

a laser diode disposed in the cavity to emit an associated channel wavelength;

an optical isolator, the optical isolator optically coupled to the laser diode and having an associated magnetic field to determine a direction of propagation for the associated channel wavelengths; and

a magnetic shield at least partially surrounding the optical isolator, the magnetic shield to reflect the associated magnetic field away from components of the TOSA module to maintain a magnetic flux density of the associated magnetic field, wherein the magnetic shield comprises a cylindrical body disposed in a cavity defined by the coupler section;

a receiver optical subassembly (ROSA) coupled to the substrate.

12. The multi-channel optical transceiver of claim 11 , wherein the magnetic shielding comprises a paramagnetic or non-magnetic metal.

13. The multi-channel optical transceiver of claim 11 , wherein the coupler section at least partially extends into the cavity of the housing when coupled thereto.

14. The multi-channel optical transceiver of claim 11 , wherein the coupler forms at least a portion of the magnetic shield.

15. The multi-channel optical transceiver of claim 11 , wherein the cavity of the housing is hermetically-sealed, and wherein at least a portion of the magnetic shield extends into the hermetically-sealed cavity.

16. The multi-channel optical transceiver of claim 11 , wherein the magnetic shield comprises aluminum or an alloy thereof.

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 Apr 18, 2019
From: WANG, CHONG; LIN, KAI-SHENG; LIANG, YONGXUAN; HO, I-LUNG
To: APPLIED OPTOELECTRONICS, INC.
Reel/Frame 048928/0357 →
Cited By (1)
US 12,313,892