IP Library Granted Patent US 9,637,376
Granted Patent B2
US 9,637,376 · App. 15/133,309 · Granted May 2, 2017

Gyro MEMS sensor package

Inventors: Kelvin Po Leung Pun (Hong Kong, HK); Chee Wah Cheung (Hong Kong, HK)
Assignee: Compass Technology Company Limited
B81B7/007B81C1/00301G01C19/00G01C19/5783B81B2201/0242B81B2207/097
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Quick Facts
Patent No.
US 9,637,376
App. No.
15/133,309
Granted
May 2, 2017
Kind
B2
Abstract

An integrated circuit packaging structure comprises at least one Micro Electrical Mechanical Systems (MEMS) gyroscope die mounted directly on a multi-layer flexible substrate having at least one metal layer and wire-bonded to the flexible substrate and a lid or die coating protecting the MEMS die and wire bonds.

Claims (31)

1. An integrated circuit packaging structure comprising:

at least one Micro Electrical Mechanical Systems (MEMS) die mounted directly on a multi-layer flexible substrate and wire-bonded to said flexible substrate wherein said flexible substrate has at least one metal layer and wherein said flexible substrate remains underlying said MEMS die;

a MEMS cap mounted on said at least one MEMS die and wirebonded to said MEMS die; and

a lid or die coating protecting sides and top surfaces of said MEMS die and wire bonds.

2. The structure according to claim 1 wherein said at least one MEMS die comprises a gyroscope.

3. The structure according to claim 1 wherein said at least one MEMS die is mounted on said flexible substrate by conductive or non-conductive epoxy paste or film.

4. The structure according to claim 1 wherein said MEMS die is wire-bonded to gold fingers on said flexible substrate.

5. The structure according to claim 1 wherein said die coating encapsulates said MEMS die and wire bonds.

6. The structure according to claim 1 wherein said lid comprises metal or liquid crystal polymer and wherein said lid is attached to said flexible substrate by conductive or non-conductive epoxy.

7. The structure according to claim 1 wherein said flexible substrate is attached to a multi-layer flexible substrate on a side opposite to said MEMS die wherein said multi-layer flexible substrate comprises one or more conductive metal layers and one or more dielectric layers wherein said attaching is by solder or conductive adhesive or a combination of solder and conductive adhesive.

8. The structure according to claim 1 wherein said flexible substrate is a multi-layer flexible substrate comprising one or more conductive metal layers and one or more dielectric layers.

9. A method of assembling an integrated circuit packaging structure comprising:

mounting one or more Micro Electrical Mechanical Systems (MEMS) dies directly on a multi-layer flexible substrate having at least one metal layer wherein said flexible substrate remains underlying said MEMS die;

mounting a MEMS cap mounted on each of said one or more MEMS dies;

making electrical connections between each said MEMS cap and said MEMS die and between said one or more MEMS dies and said flexible substrate; and

protecting top and side surfaces of said MEMS die and electrical connections with a lid or die coating.

10. The method according to claim 9 wherein said one or more MEMS dies comprises gyroscopes.

11. The method according to claim 9 wherein said at least one MEMS die is mounted on said flexible substrate by conductive or non-conductive epoxy paste or film.

12. The method according to claim 9 wherein said making electrical connections comprises wire-bonding said MEMS die to gold fingers on said flexible substrate and wherein wire bonds comprise Cu, Au, Pd, or Al.

13. The method according to claim 9 wherein said die coating encapsulates said MEMS die and wire bonds.

14. The method according to claim 9 wherein said lid comprises metal or liquid crystal polymer and wherein said lid is attached to said flexible substrate by conductive or non-conductive epoxy.

15. The method according to claim 9 further comprising:

attaching said flexible substrate to a multi-layer flexible substrate on a side opposite to said MEMS die wherein said multi-layer flexible substrate comprises one or more conductive metal layers and one or more dielectric layers wherein said attaching comprises solder or conductive adhesive or a combination of solder and conductive adhesive.

16. A Micro Electrical Mechanical Systems (MEMS) gyroscope package comprising:

only one or more MEMS gyroscope dies mounted directly on a multi-layer flexible substrate having at least one metal layer and wire-bonded to said flexible substrate wherein said flexible substrate has at least one metal layer and wherein said flexible substrate remains underlying said MEMS die;

a MEMS cap mounted on each of said one or more MEMS gyroscope dies and wirebonded to said MEMS gyroscope dies; and

a lid or die coating protecting top and side surfaces of said MEMS die and wire bonds.

17. The structure according to claim 16 wherein said die coating encapsulates said MEMS die and wire bonds.

18. The structure according to claim 16 wherein said lid comprises metal or liquid crystal polymer and wherein said lid is attached to said flexible substrate by conductive or non-conductive epoxy.

19. The structure according to claim 16 wherein said flexible substrate is attached to a multi-layer flexible substrate on a side opposite to said MEMS die wherein said multi-layer flexible substrate comprises one or more conductive metal layers and one or more dielectric layers wherein said attaching is by solder or conductive adhesive or a combination of solder and conductive adhesive.

20. The structure according to claim 16 wherein said flexible substrate is a multi-layer flexible substrate comprising one or more conductive metal layers and one or more dielectric layers.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 8, 2024
From: COMPASS TECHNOLOGY CO., LTD.
To: XIAMEN COMPASS SEMICONDUCTOR CO., LTD.
Reel/Frame 067925/0771 →
Continuity (2)
Continuation 14580297 · Dec 23, 2014
Related Publication 20160229686A1 · Aug 11, 2016