IP Library › Granted Patent US 11,270,972
Granted Patent B2
US 11,270,972 · App. 16/438,546 · Granted Mar 8, 2022

Package with conductive underfill ground plane

Inventors: Nishant Lakhera (Austin, TX); Akhilesh Kumar Singh (Austin, TX); Chee Seng Foong (Austin, TX)
Assignee: NXP B.V.
H01L24/73H01L23/49838H01L24/13H01L24/16H01L24/32H01L24/81H01L24/83H01L24/92H01L2224/10152H01L2224/1369H01L2224/13562H01L2224/16227H01L2224/32227H01L2224/73204H01L2224/8102H01L2224/81815H01L2224/83855H01L2224/92125
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 11,270,972
App. No.
16/438,546
Granted
Mar 8, 2022
Kind
B2
Abstract

Embodiments for a packaged semiconductor device and methods of making are provided herein, which includes a packaged semiconductor device including: a semiconductor die; a carrier; a plurality of electrical connections formed between the semiconductor die and the carrier; an electrical isolation layer that covers an outer surface of each of the plurality of electrical connections; and a conductive underfill structure between the semiconductor die and the carrier, and surrounding each of the plurality of electrical connections, wherein the electrical isolation layer electrically isolates each electrical connection from the conductive underfill structure.

Claims (48)

1. A packaged semiconductor device comprising:

a semiconductor die;

a carrier;

a plurality of electrical connections formed between the semiconductor die and the carrier;

an electrical isolation layer that covers an outer surface of each of the plurality of electrical connections; and

a conductive underfill structure between the semiconductor die and the carrier, and surrounding each of the plurality of electrical connections, wherein the electrical isolation layer electrically isolates each electrical connection from the conductive underfill structure;

an electrically conductive ground surface located between the semiconductor die and the conductive underfill, the electrically conductive ground surface facing the carrier, the electrically conductive ground surface is electrically coupled to a ground line of the semiconductor die, the conductive underfill structure directly contacts and is electrically connected to the electrically conductive ground surface at a location located between the semiconductor die and the carrier, wherein the electrically conductive ground surface is not part of a structure of the carrier.

2. The packaged semiconductor device of claim 1 , wherein

the semiconductor die comprises a plurality of die pads connected to active circuitry within the semiconductor die.

3. The packaged semiconductor device of claim 2 , wherein

each electrical connection of the plurality of electrical connections comprises:

under bump metallization (UBM) formed on each of a set of the plurality of die pads, and

a plurality of joints formed on the UBM of the set of the plurality of die pads.

4. The packaged semiconductor device of claim 2 , wherein

each electrical connection of the plurality of electrical connections comprises:

a plurality of joints formed on the set of the plurality of die pads.

5. The packaged semiconductor device of claim 2 , wherein

at least one of the plurality of die pads is a ground die pad connected to the ground line, and

the electrically conductive ground surface is a surface of the ground die pad.

6. The packaged semiconductor device of claim 2 , wherein

at least one of the plurality of die pads is a ground die pad connected to the ground line,

under bump metallization (UBM) is formed on the ground die pad, and

the electrically conductive ground surface is a surface of the UBM.

7. The packaged semiconductor device of claim 2 , wherein

each electrical connection of the plurality of electrical connections comprises:

a copper pillar formed on each of a set of the plurality of die pads, and

a solder cap formed on each copper pillar.

8. The packaged semiconductor device of claim 1 , wherein

the carrier comprises a plurality of landing pads, and

the plurality of electrical connections are attached to a set of the plurality of landing pads.

9. The packaged semiconductor device of claim 8 , wherein

at least one of the plurality of landing pads is a ground landing pad connected to a ground line, and

the conductive underfill structure directly contacts and is electrically connected to the ground landing pad.

10. The packaged semiconductor device of claim 2 , wherein

the semiconductor die is embedded in a package body, and

a redistributed layer (RDL) structure is formed over an active side of the semiconductor die, wherein

the RDL structure comprises connection paths that electrically connect the set of the plurality of die pads with a set of contact pads on an outer surface of the RDL structure, and

the plurality of electrical connections are attached to the set of contact pads.

11. The packaged semiconductor device of claim 10 , wherein

at least one of the plurality of die pads is a ground die pad connected to the ground line,

the RDL structure further comprises at least one connection path that electrically connects the ground die pad with a ground contact pad on the outer surface of the RDL structure, and

the electrically conductive ground surface is a surface of the ground contact pad.

12. The packaged semiconductor device of claim 1 , wherein

the conductive underfill structure comprises a conductive polymer having an electrical conductivity greater than 1×10{circumflex over ( )}5 Siemens/cm.

13. The packaged semiconductor device of claim 1 , wherein

the conductive underfill structure further comprises conductive filler or particles.

14. The packaged semiconductor device of claim 1 , wherein

the electrical isolation layer comprises a dielectric material that covers the outer surface of each electrical connection from a passivated surface of the semiconductor die to a passivated surface of the carrier.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 12, 2019
From: LAKHERA, NISHANT; SINGH, AKHILESH KUMAR; FOONG, CHEE SENG
To: NXP USA, INC.
Reel/Frame 049441/0110 →
Continuity (1)
Related Publication 20200395332A1 · Dec 17, 2020