IP Library › Granted Patent US 12,198,993
Granted Patent B2
US 12,198,993 · App. 17/849,713 · Granted Jan 14, 2025

Manufacturing method of circuit carrier with chip mounted thereon

Inventor: Dyi-Chung Hu (Hsinchu, TW)
H01L23/13H01L21/566H01L23/481H01L23/5226H01L23/5283H01L24/09H01L24/17H01L2224/0231H01L2224/02373H01L2224/02381H01L2224/0401
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12,198,993
App. No.
17/849,713
Granted
Jan 14, 2025
Kind
B2
Abstract

A manufacturing method of a circuit carrier with a chip mounted thereon is provided. A fine redistribution structure is formed over a first temporary carrier. A first release layer is applied on the first temporary carrier. A plurality of conductive connectors is formed on the fine redistribution structure to form a first portion. The fine redistribution structure and the conductive connectors are transferred to a second temporary carrier. The second temporary carrier is provided with a second release layer. The first temporary carrier is removed after the conductive connectors inserted into the second release layer. A surface finishing process is performed on the fine conductive pattern distributed on the fine redistribution structure to form a surface finishing layer. The fine redistribution structure and the surface finishing layer formed thereon are adhered to a third temporary carrier through a third release layer. The first portion is disposed on a second portion.

Claims (15)

1. A manufacturing method of a circuit carrier with a chip mounted thereon, comprising:

forming a fine redistribution structure over a first temporary carrier, wherein a first release layer is applied on the first temporary carrier and the fine redistribution structure formed on the first release layer, the fine redistribution structure comprising a fine conductive pattern, a fine dielectric layer, and a fine conductive via is formed over the first temporary carrier;

forming a plurality of conductive connectors on the fine redistribution structure to form a first portion, wherein the conductive connectors are physically and electrically connected to the topmost layer of the fine conductive pattern distributed on a top surface of the fine redistribution structure, each of the plurality of conductive connectors comprising a bump portion physically connected to the fine conductive pattern, and a cap portion formed on the bump portion, the first portion further comprises a surface finishing layer;

transferring the fine redistribution structure and the plurality of conductive connectors to a second temporary carrier, wherein the second temporary carrier is provided with a second release layer, and the second release layer is spatially apart from the plurality of conductive connectors from the second temporary carrier;

removing the first temporary carrier after the plurality of conductive connectors inserted into the second release layer;

performing a surface finishing process on the bottommost layer of the fine conductive pattern distributed on a bottom surface of the fine redistribution structure to form a surface finishing layer after the bottom surface of the fine redistribution structure is exposed;

adhering the fine redistribution structure and the surface finishing layer formed thereon to a third temporary carrier through a third release layer; and

disposing the first portion on a second portion to form the circuit carrier, wherein the second portion comprising a top redistribution structure, a core layer, a plurality of through core vias, and a bottom redistribution structure, the plurality of conductive connectors of the first portion are disposed on the top redistribution structure of the second portion.

2. The manufacturing method of the circuit carrier with the chip mounted thereon according to claim 1 , wherein the first portion has surface finish including Ni/Au, ENIG, ENEPIG, or OSP on one side by using the second temporary carrier.

3. The manufacturing method of the circuit carrier with the chip mounted thereon according to claim 1 , wherein the third temporary carrier is a transparent glass carrier.

4. The manufacturing method of the circuit carrier with the chip mounted thereon according to claim 1 , wherein the first portion and the plurality of conductive connectors on the first portion are always disposed on the first temporary carrier or the second temporary carrier before the first portion is disposed on the second portion.

5. The manufacturing method of the circuit carrier with the chip mounted thereon according to claim 1 , further comprising:

performing an underfill process after the first portion is disposed on a second portion and before the third temporary carrier is still on the first portion.

6. The manufacturing method of the circuit carrier with the chip mounted thereon according to claim 5 , wherein an in-site observation of the underfill process is performed by using a transparent temporary carrier.

7. The manufacturing method of the circuit carrier with the chip mounted thereon according to claim 1 , wherein a thickness of the second release layer is greater than a length of each of the plurality of conductive connectors.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 6, 2026
From: HU, DYI-CHUNG
To: TAIWAN SEMICONDUCTOR MANUFACTURING COMPANY LIMITED
Reel/Frame 075543/0265 →
Continuity (4)
Continuation In Part 17322939 · May 18, 2021
Division 16558180 · Sep 2, 2019
Provisional Application 62744663 · Oct 12, 2018
Related Publication 20220328370A1 · Oct 13, 2022
References Cited (1)
US 10217695B2 · Meyer · 2019 [cited by examiner]