IP Library Granted Patent US 11,369,800
Granted Patent B2
US 11,369,800 · App. 16/181,613 · Granted Jun 28, 2022

EMI feedthrough filter terminal assembly containing a laminated insulative seal

Inventors: Don Dollar (Fountain Inn, SC); Rigoberto Rios (Fountain Inn, SC)
Assignee: KYOCERA AVX Components Corporation
A61N1/3754H01G4/224H01G4/236H01G4/35H03H1/0007H03H2001/0014H03H2001/0042
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Quick Facts
Patent No.
US 11,369,800
App. No.
16/181,613
Granted
Jun 28, 2022
Kind
B2
Abstract

The present invention is directed to an EMI feedthrough filter terminal assembly. The EMI feedthrough filter terminal assembly comprises: a feedthrough filter capacitor having a plurality of first electrode layers and a plurality of second electrode layers, a first passageway therethrough having a first termination surface conductively coupling the plurality of first electrode layers, a second termination surface conductively coupling the plurality of second electrode layers; a feedthrough ferrule conductively coupled to the feedthrough filter capacitor via the second termination surface; at least one conductive terminal pin extending through the passageway in conductive relation with the plurality of first electrode layers; an insulator fixed to the feedthrough ferrule for conductively isolating the conductive terminal pin from the feedthrough ferrule; and a laminated insulative layer between the insulator and the feedthrough filter capacitor.

Claims (47)

1. An EMI feedthrough filter terminal assembly comprising:

a feedthrough filter capacitor having

a plurality of first electrode layers and a plurality of second electrode layers,

a first passageway therethrough having a first termination surface conductively coupling the plurality of first electrode layers, and

a second termination surface conductively coupling the plurality of second electrode layers,

a feedthrough ferrule conductively coupled to the feedthrough filter capacitor via the second termination surface,

at least one conductive terminal pin extending through the first passageway in conductive relation with the plurality of first electrode layers wherein the at least one conductive terminal pin is made of a single solid material comprising one or more metals, one or more alloys, or a combination thereof,

an insulator fixed to the feedthrough ferrule for conductively isolating the at least one conductive terminal pin from the feedthrough ferrule,

a hermetically sealing material between the insulator and the at least one conductive terminal pin through a first passageway of the insulator wherein the hermetically sealing material extends at least 50% of the thickness through the insulator,

a laminated insulative layer between the insulator and the feedthrough filter capacitor wherein the at least one conductive terminal pin extends through and contacts the laminated insulative layer, and

a washer between the laminated insulative layer and the feedthrough filter capacitor wherein the washer surrounds the conductive terminal pin.

2. The EMI feedthrough filter terminal assembly of claim 1 , wherein the laminated insulative layer includes a polyimide layer.

3. The EMI feedthrough filter terminal assembly of claim 1 , wherein the laminated insulative layer includes a top layer, a middle layer, and a bottom layer opposite the top layer, wherein the middle layer comprises a polyimide layer.

4. The EMI feedthrough filter terminal assembly of claim 3 , wherein the top layer and the bottom layer comprise adhesive layers.

5. The EMI feedthrough filter terminal assembly of claim 1 , wherein the washer comprises a polyimide.

6. The EMI feedthrough filter terminal assembly of claim 1 , wherein the second termination surface is conductively coupled to the feedthrough ferrule via a conductive polyimide.

7. The EMI feedthrough filter terminal assembly of claim 6 , wherein the conductive polyimide directly contacts the feedthrough ferrule.

8. The EMI feedthrough filter terminal assembly of claim 1 , wherein the first termination surface comprises a conductive polyimide.

9. The EMI feedthrough filter terminal assembly of claim 1 , wherein the hermetically sealing material extends at least 60% of the thickness through the insulator.

10. The EMI feedthrough filter terminal assembly of claim 1 , further comprising a hermetically sealing material between the insulator and the feedthrough ferrule.

11. The EMI feedthrough filter terminal assembly of claim 10 , wherein the hermetically sealing material between the insulator and the feedthrough ferrule comprises gold brazing.

12. The EMI feedthrough filter terminal assembly of claim 1 , wherein the hermetically sealing material comprises gold brazing.

13. The EMI feedthrough filter terminal assembly of claim 1 , wherein the assembly includes four conductive terminal pins.

14. The EMI feedthrough filter terminal assembly of claim 1 , wherein the assembly further comprises an RF pin.

15. The EMI feedthrough filter terminal assembly of claim 1 , wherein the laminated insulative layer is only provided between the insulator and the feedthrough filter capacitor.

16. An EMI feedthrough filter terminal assembly comprising:

a feedthrough filter capacitor having

a plurality of first electrode layers and a plurality of second electrode layers,

a first passageway therethrough having a first termination surface conductively coupling the plurality of first electrode layers, and

a second termination surface conductively coupling the plurality of second electrode layers,

a feedthrough ferrule conductively coupled to the feedthrough filter capacitor via the second termination surface,

at least one conductive terminal pin extending through the first passageway in conductive relation with the plurality of first electrode layers,

an insulator fixed to the feedthrough ferrule for conductively isolating the at least one conductive terminal pin from the feedthrough ferrule,

a laminated insulative layer between the insulator and the feedthrough filter capacitor wherein the at least one conductive terminal pin extends through and contacts the laminated insulative layer,

a washer between the laminated insulative layer and the feedthrough filter capacitor wherein the washer surrounds the at least one conductive terminal pin, and

a hermetically sealing material between the insulator and the at least one conductive terminal pin.

17. An EMI feedthrough filter terminal assembly comprising:

a feedthrough filter capacitor having

a plurality of first electrode layers and a plurality of second electrode layers,

a first passageway therethrough having a first termination surface conductively coupling the plurality of first electrode layers, and

a second termination surface conductively coupling the plurality of second electrode layers,

a feedthrough ferrule conductively coupled to the feedthrough filter capacitor via the second termination surface,

at least one conductive terminal pin extending through the first passageway in conductive relation with the plurality of first electrode layers wherein the at least one conductive terminal pin is made of a single solid material comprising one or more metals, one or more alloys, or a combination thereof,

an insulator fixed to the feedthrough ferrule for conductively isolating the at least one conductive terminal pin from the feedthrough ferrule,

a hermetically sealing material between the insulator and the at least one conductive terminal pin through a first passageway of the insulator wherein the hermetically sealing material extends at least 50% of the thickness through the insulator and wherein the hermetically sealing material comprises gold brazing,

a laminated insulative layer between the insulator and the feedthrough filter capacitor, and

a washer between the laminated insulative layer and the feedthrough filter capacitor wherein the washer surrounds the conductive terminal pin.

Assignments (2)
CHANGE OF NAME Recorded Dec 22, 2021
From: AVX CORPORATION
To: KYOCERA AVX COMPONENTS CORPORATION
Reel/Frame 058563/0762 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 30, 2018
From: DOLLAR, DON; RIOS, RIGOBERTO
To: AVX CORPORATION
Reel/Frame 047632/0798 →
Continuity (3)
Provisional Application 62582028 · Nov 6, 2017
Provisional Application 62582040 · Nov 6, 2017
Related Publication 20190134406A1 · May 9, 2019