IP Library › Granted Patent US 10,866,373
Granted Patent B2
US 10,866,373 · App. 16/451,472 · Granted Dec 15, 2020

Optical transceiver and manufacturing method thereof

Inventors: Chen-Hua Yu (Hsinchu, TW); Hsing-Kuo Hsia (Jhubei, TW); Sung-Hui Huang (Dongshan Township, TW); Kuan-Yu Huang (Taipei, TW); Kuo-Chiang Ting (Hsinchu, TW); Shang-Yun Hou (Jubei, TW); Chi-Hsi Wu (Hsinchu, TW)
Assignee: Taiwan Semiconductor Manufacturing Company, Ltd.
G02B6/4255G02B6/4243G02B6/4246H01L24/16H01L24/81H01L23/481H01L2224/16148H01L2224/81815
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Quick Facts
Patent No.
US 10,866,373
App. No.
16/451,472
Granted
Dec 15, 2020
Kind
B2
Abstract

A structure including a photonic integrated circuit die, an electric integrated circuit die, a semiconductor dam, and an insulating encapsulant is provided. The photonic integrated circuit die includes an optical input/output portion and a groove located in proximity of the optical input/output portion, wherein the groove is adapted for lateral insertion of at least one optical fiber. The electric integrated circuit die is disposed over and electrically connected to the photonic integrated circuit die. The semiconductor dam is disposed over the photonic integrated circuit die. The insulating encapsulant is disposed over the photonic integrated circuit die and laterally encapsulates the electric integrated circuit die and the semiconductor dam.

Claims (43)

1. A structure comprising:

a photonic integrated circuit die comprising an optical input/output portion and a groove located adjacent to the optical input/output portion;

an electric integrated circuit die disposed over and electrically connected to the photonic integrated circuit die;

a semiconductor dam disposed over the photonic integrated circuit die, wherein the semiconductor dam comprises a notch, and the groove is accessibly exposed by the notch of the semiconductor dam; and

an insulating encapsulant disposed over the photonic integrated circuit die, laterally encapsulating the electric integrated circuit die, and in physical contact with the semiconductor dam.

2. The structure as claimed in claim 1 , wherein the electric integrated circuit die is electrically connected to the photonic integrated circuit die through a plurality of micro-bumps.

3. The structure as claimed in claim 1 further comprising:

a protrusion disposed over the photonic integrated circuit die, wherein the protrusion is accessibly exposed by the notch of the semiconductor dam.

4. The structure as claimed in claim 1 further comprising:

a glue layer between the semiconductor dam and the photonic integrated circuit die.

5. The structure as claimed in claim 1 , further comprising at least one optical fiber located within the groove.

6. The structure as claimed in claim 1 further comprising:

a circuit substrate, wherein the photonic integrated circuit die is disposed over and electrically connected to the circuit substrate.

7. The structure as claimed in claim 6 , further comprising:

a plurality of conductive bumps; and

an underfill disposed between the circuit substrate and the photonic integrated circuit die, wherein the photonic integrated circuit die is electrically connected to the circuit substrate through the conductive bumps, and the conductive bumps are encapsulated by the underfill.

8. A structure comprising:

a photonic integrated circuit die comprising an optical input/output portion and an optical fiber groove adjacent to the optical input/output portion;

an electric integrated circuit die and a semiconductor dam disposed over the photonic integrated circuit die in a side-by-side manner, the electric integrated circuit die being electrically connected to the photonic integrated circuit die;

an insulating encapsulant disposed over the photonic integrated circuit die, laterally encapsulating the electric integrated circuit die, and being in physical contact with multiple sides of the semiconductor dam, wherein a side surface of the semiconductor dam is accessibly exposed from the insulating encapsulation, and the semiconductor dam separates the optical fiber groove from the insulating encapsulant; and

at least one optical fiber located within the optical fiber groove.

9. The structure as claimed in claim 8 , wherein the semiconductor dam comprises a notch, the optical fiber groove is accessibly exposed by the notch of the semiconductor dam, and the insulating encapsulant is not located in the notch of the semiconductor dam.

10. The structure as claimed in claim 9 further comprising:

a protrusion disposed over the photonic integrated circuit die, wherein the protrusion is accessibly exposed by the notch of the semiconductor dam.

11. The structure as claimed in claim 9 , wherein a top surface of the electric integrated circuit die is level with a top surface of the semiconductor dam.

12. The structure as claimed in claim 8 further comprising:

a circuit substrate, wherein the photonic integrated circuit die is disposed over and electrically connected to the circuit substrate.

13. The structure as claimed in claim 12 further comprising:

a plurality of conductive bumps; and

an underfill disposed between the circuit substrate and the photonic integrated circuit die, wherein the photonic integrated circuit die is electrically connected to the circuit substrate through the conductive bumps, the conductive bumps are encapsulated by the underfill.

14. The structure as claimed in claim 13 , wherein the underfill entirely fills a space between the electric integrated circuit die and the semiconductor dam.

15. The structure as claimed in claim 13 , wherein the underfill and the insulating encapsulant entirely fills a space between the electric integrated circuit die and the semiconductor dam.

16. A method, comprising:

providing a photonic integrated circuit die comprising at least one optical input/output portion and at least one groove;

bonding an electric integrated circuit die and a dummy die onto the photonic integrated circuit die; and

removing a portion of the dummy die to form a semiconductor dam having a notch such that the at least one groove is exposed by the notch of the semiconductor dam.

17. The method as claimed in claim 16 further comprising:

assembling at least one optical fiber in the at least one groove.

18. The method as claimed in claim 16 further comprising:

prior to removing the portion of the dummy die, mounting the photonic integrated circuit die having the electric integrated circuit die and the dummy die bonded thereon over a circuit substrate.

19. The method as claimed in claim 16 further comprising:

prior to removing the portion of the dummy die, laterally encapsulating the electric integrated circuit die and the dummy die bonded on the photonic integrated circuit die.

20. The method as claimed in claim 16 , wherein a protrusion is disposed over the photonic integrated circuit die, and the protrusion is accessibly exposed by the notch of the semiconductor dam.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 19, 2019
From: YU, CHEN-HUA; HSIA, HSING-KUO; HUANG, SUNG-HUI; HUANG, KUAN-YU; TING, KUO-CHIANG; HOU, SHANG-YUN; WU, CHI-HSI
To: TAIWAN SEMICONDUCTOR MANUFACTURING COMPANY, LTD.
Reel/Frame 050087/0267 →
Continuity (3)
Provisional Application 62864608 · Jun 21, 2019
Provisional Application 62690658 · Jun 27, 2018
Related Publication 20200003975A1 · Jan 2, 2020
Cited By (1)
US 12,253,729