IP Library › Granted Patent US 10,097,272
Granted Patent B2
US 10,097,272 · App. 15/294,572 · Granted Oct 9, 2018

Optical module

Inventors: Yaqian Dong (Qingdao, CN); Long Zheng (Qingdao, CN); Hua Zhang (Qingdao, CN)
Assignees: HISENSE BROADBAND MULTIMEDIA TECHNOLOGIES CO., LTD; HISENSE BROADBAND MULTIMEDIA TECHNOLOGIES, LTD.
H04B10/40G02B6/00H04B10/503H04B10/60
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Quick Facts
Patent No.
US 10,097,272
App. No.
15/294,572
Granted
Oct 9, 2018
Kind
B2
Abstract

Some embodiments of the present application provide an optical module, including: a master control chip, a laser transmitter, and a laser receiver; the laser transmitter and the laser receiver being connected to the master control chip, respectively; where the laser receiver includes: a PIN photodiode, a trans-impedance amplifier with a transimpedance of no less than 43K ohms, a lens, and a shell; the PIN photodiode being electrically connected to the trans-impedance amplifier; the PIN photodiode, the trans-impedance amplifier and the lens being encapsulated within the shell in a manner of transistor out-line; and the lens being coated with an antireflection film.

Claims (19)

1. An optical module, comprising: a master control chip, a laser transmitter and a laser receiver, the laser transmitter and the laser receiver being connected to the master control chip, respectively, wherein the laser receiver comprises a PIN photodiode, a trans-impedance amplifier with a transimpedance of no less than 43K ohms, a lens and a shell, the PIN photodiode being electrically connected to the trans-impedance amplifier, and the PIN photodiode, the trans-impedance amplifier and the lens being encapsulated within the shell in a manner of transistor out-line;

wherein a conductive gasket is provided between the laser receiver and a housing of the optical module for making the laser receiver be in touch with the housing electrically;

wherein the optical module further comprises: a printed circuit board (PCB) on which the master control chip is provided, wherein the PCB is electrically connected to the laser transmitter and the laser receiver; and

wherein the optical module further comprises: a pin assembly, a bracket, a claw and a tail plug, wherein one end of the pin assembly is welded on the PCB and the other end is provided passing through the bracket; the laser transmitter and the laser receiver are fixed between the housing and the bracket by the claw; and one end of the tail plug is provided within the claw.

2. The optical module according to claim 1 , wherein the conductive gasket comprises conductive foam or conductive rubber.

3. The optical module according to claim 1 , wherein the optical module is of a pluggable structure, and the PCB is a four-layer board.

4. The optical module according to claim 1 , wherein the optical module is of a pigtail structure, and the PCB is a two-layer board.

5. The optical module according to claim 1 , wherein the laser transmitter is encapsulated in a transmitter optical subassembly (TOSA) and the laser receiver is encapsulated in a receiver optical subassembly (ROSA).

6. The optical module according to claim 1 , wherein the laser transmitter and the laser receiver are encapsulated in a bi-directional optical sub-assembly (BOSA).

7. The optical module according to claim 1 , wherein a laser driver, a receipt signal limiting amplifier and a microcontroller are integrated in the master control chip.

8. The optical module according to claim 7 , wherein a storage device is integrated in the master control chip.

9. The optical module according to claim 7 , wherein the master control chip is connected to a storage device through a bus.

10. The optical module according to claim 1 , wherein the trans-impedance amplifier has a transimpedance of 51K ohms.

11. The optical module according to claim 1 , wherein the lens is coated with an antireflection film.

12. The optical module according to claim 1 , wherein the PIN photodiode has a positive pole connected to a positive pole of the photodiode.

13. An optical module, comprising: a master control chip, a laser transmitter and a laser receiver, the laser transmitter and the laser receiver being connected to the master control chip, respectively, wherein the laser receiver comprises a PIN photodiode, a trans-impedance amplifier with a transimpedance of no less than 43K ohms, a lens and a shell, the PIN photodiode being electrically connected to the trans-impedance amplifier, and the PIN photodiode, the trans-impedance amplifier and the lens being encapsulated within the shell in a manner of transistor out-line;

wherein the optical module further comprises: a printed circuit board (PCB) on which the master control chip is provided, wherein the PCB is electrically connected to the laser transmitter and the laser receiver;

wherein the optical module further comprises: a pin assembly, a bracket, a claw and a tail plug, wherein one end of the pin assembly is welded on the PCB and the other end is provided passing through the bracket; the laser transmitter and the laser receiver are fixed between the housing and the bracket by the claw; and one end of the tail plug is provided within the claw.

14. The optical module according to claim 13 , wherein the optical module is of a pigtail structure, and the PCB is a two-layer board.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 8, 2017
From: HISENSE BROADBAND MULTIMEDIA TECHNOLOGIES, LTD.; HISENSE USA CORPORATION; HISENSE BROADBAND MULTIMEDIA TECHNOLOGIES CO., LTD.
To: HISENSE BROADBAND MULTIMEDIA TECHNOLOGIES CO., LTD.; HISENSE BROADBAND MULTIMEDIA TECHNOLOGIES, LTD.
Reel/Frame 043538/0930 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 14, 2016
From: DONG, YAQIAN; ZHENG, LONG; ZHANG, HUA
To: HISENSE BROADBAND MULTIMEDIA TECHNOLOGIES, LTD.; HISENSE USA CORPORATION; HISENSE INTERNATIONAL CO., LTD.
Reel/Frame 040373/0649 →
Priority Claims (1)
CN 2016 1 0184340 · Mar 28, 2016 · national
Continuity (1)
Related Publication 20170279534A1 · Sep 28, 2017