IP Library › Granted Patent US 11,950,363
Granted Patent B2
US 11,950,363 · App. 17/542,977 · Granted Apr 2, 2024

Sensor interposer employing castellated through-vias

Inventors: Sean Frick (San Francisco, CA); Louis Jung (Foster City, CA); David Lari (San Francisco, CA)
Assignee: DexCom, Inc.
H05K1/112A61B5/6802H01L21/768H01L23/481H05K1/0262H05K3/403A61B5/14532A61B5/14546A61B5/1468A61B5/6848G01N27/327H05K1/0219H05K1/141H05K2201/0394H05K2201/049H05K2201/0792H05K2201/09063H05K2201/09181H05K2201/10151H05K2201/10378
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Quick Facts
Patent No.
US 11,950,363
App. No.
17/542,977
Granted
Apr 2, 2024
Kind
B2
Abstract

An example sensor interposer employing castellated through-vias formed in a PCB includes a planar substrate defining a plurality of castellated through-vias; a first electrical contact formed on the planar substrate and electrically coupled to a first castellated through-via; a second electrical contact formed on the planar substrate and electrically coupled to a second castellated through-via, the second castellated through-via electrically isolated from the first castellated through-via; and a guard trace formed on the planar substrate, the guard trace having a first portion formed on a first surface of the planar substrate and electrically coupling a third castellated through-via to a fourth castellated through-via, the guard trace having a second portion formed on a second surface of the planar substrate and electrically coupling the third castellated through-via to the fourth castellated through-via, the guard trace formed between the first and second electrical contacts to provide electrical isolation between the first and second electrical contacts.

Claims (29)

1. A sensor interposer comprising:

a planar substrate defining a plurality of castellated through-vias;

a first electrical contact formed on the planar substrate and electrically coupled to a first castellated through-via;

a second electrical contact formed on the planar substrate and electrically coupled to a second castellated through-via, the second castellated through-via electrically isolated from the first castellated through-via, wherein the planar substrate defines a closed perimeter through hole between the first and second electrical contacts;

a first guard trace formed on the planar substrate, the first guard trace electrically coupled between a third and a fourth castellated through-via, the first guard trace isolating the first and second electrical contacts, wherein the third castellated through-via is formed in a perimeter of the planar substrate, and the fourth castellated through-via is formed in a perimeter of the closed perimeter through hole, and;

a second guard trace formed on the planar substrate, the second guard trace electrically coupled between a fifth and a sixth castellated through-via, the second guard trace isolating the first and second electrical contacts, wherein the fifth castellated through-via is formed in the perimeter of the planar substrate, and the sixth castellated through-via is formed in the perimeter of the closed perimeter through hole.

2. The sensor interposer of claim 1 , wherein the first guard trace comprises

a first portion formed on a first surface of the interposer substrate and electrically coupling the third castellated through-via to the fourth castellated through-via, and

a second portion formed on a second surface of the interposer substrate and electrically coupling the third castellated through-via to the fourth castellated through-via,

the first guard trace formed between the first and second electrical contacts to provide electrical isolation between the first and second electrical contacts.

3. The sensor interposer of claim 1 , wherein the

second guard trace comprises a first portion formed on a first surface of the planar substrate and electrically coupling the fifth castellated through-via to the sixth castellated through-via, and a second portion formed on a second surface of the planar substrate and electrically coupling the fifth castellated through-via to the sixth castellated through-via, the second guard trace formed between the first and second electrical contacts to provide electrical isolation between the first and second electrical contacts.

4. The sensor interposer of claim 1 , further comprising a sensor wire electrically coupled to the first and second electrical contacts.

5. The sensor interposer of claim 4 , wherein the sensor wire comprises a first wire material and a second wire material, the second wire material formed coaxially around the first wire material, a first portion of the first wire material extending beyond the second wire material at a first end of the sensor wire,

wherein the first portion of the first wire material is electrically coupled to the first electrical contact, and the second wire material is coupled to the second electrical contact.

6. The sensor interposer of claim 5 , wherein the first wire material comprises a platinum wire or a platinum-coated wire, and the second wire material comprises silver or silver-chloride.

7. The sensor interposer of claim 4 , wherein the sensor wire is physically coupled to the first and second electrical contacts by clamps or adhesive.

8. The sensor interposer of claim 4 , wherein a proximate end of the sensor wire exposes a first and second electrode to enable the electrical coupling to the first and second electrical contacts.

9. The sensor interposer of claim 4 , wherein a distal end of the sensor wire is configured to be inserted into a wearer's skin.

10. The sensor interposer of claim 4 , wherein a sensor chemical is disposed on a distal end of the sensor wire.

11. The sensor interposer of claim 10 , wherein the sensor chemical comprises glucose oxidase.

12. The sensor interposer of claim 10 , wherein the sensor chemical comprises a chemical configured to react with one or more of glucose, lactate, or cholesterol.

13. The sensor interposer of claim 10 , wherein the sensor chemical comprises a chemical configured to sense one or more of acetyl choline, amylase, bilirubin, chorionic gonadotropin, creatine kinase, creatine, DNA, fructosamine, glutamine, growth hormones, hormones, ketones, peroxide, prostate-specific antigen, prothrombin, RNA, thyroid stimulating hormone, or troponin.

14. The sensor interposer of claim 1 , wherein the planar substrate is formed of FR4 or a polyimide material.

15. The sensor interposer of claim 1 , wherein the first electrical contact and the second electrical contact are formed on opposite sides of the planar substrate.

16. The sensor interposer of claim 1 , wherein the first guard trace is coupled to a ground plane configured to dissipate leakage current.

17. The sensor interposer of claim 1 , wherein an opening in the planar substrate is configured to engage with a surface feature of a main printed circuit board and configured to align the sensor interposer with the main printed circuit board.

18. The sensor interposer of claim 1 , further comprising an antenna.

19. The sensor interposer of claim 18 , wherein the antenna is formed as an electrical tracer on the planar substrate and is configured to electrically couple with an electrical contact on a main printed circuit board.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 6, 2021
From: FRICK, SEAN; JUNG, LOUIS; LARI, DAVID; VERILY LIFE SCIENCES LLC; VERILY IRELAND LIMITED
To: DEXCOM, INC.
Reel/Frame 058308/0488 →
Continuity (4)
Continuation 16850986 · Apr 16, 2020
Continuation 16282587 · Feb 22, 2019
Provisional Application 62634085 · Feb 22, 2018
Related Publication 20220095454A1 · Mar 24, 2022