IP Library Granted Patent US 10,598,365
Granted Patent B2
US 10,598,365 · App. 15/894,349 · Granted Mar 24, 2020

Proximity sensor switched automotive lamp comprising an electrode to sense an electric field through the sensing location from the facing surface of a lens

Inventors: Paul J. Jensen (Seatac, WA); Steven P. Freeder (Renton, WA)
Assignee: GRAKON, LLC
F21V23/0485B60Q3/82F21V7/0066F21V15/01F21V31/005F21V3/00F21Y2115/10
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Quick Facts
Patent No.
US 10,598,365
App. No.
15/894,349
Granted
Mar 24, 2020
Kind
B2
Abstract

A lamp that includes a lens, an electrode, and a sensing circuit connected to a light source. The lens is spaced apart from the sensing circuit. The forward facing surface of the lens has a sensing location. The electrode has a first portion opposite a second portion. The first portion is connected to the sensing circuit. The second portion is positioned alongside a backward facing surface of the lens. The electrode senses an electric field through the lens at the sensing location. The sensing circuit is configured to turn on the light source when the light source is turned off and the electrode senses the electric field. The sensing circuit is configured to turn off the light source when the light source is turned on and the electrode senses the electric field.

Claims (51)

1. A lamp comprising:

a sensing circuit connected to a light source;

a lens spaced apart from the sensing circuit, the lens comprising a forward facing surface opposite a backward facing surface; the forward facing surface comprising a sensing location; and

an electrode having a first portion opposite a second portion, the first portion being connected to the sensing circuit, the second portion being positioned alongside the backward facing surface of the lens, the electrode being configured to sense an electric field through the lens at the sensing location, the sensing circuit being configured to turn on the light source when the light source is turned off and the electrode senses the electric field.

2. The lamp of claim 1 , further comprising:

a reflector positioned between the lens and the sensing circuit, the reflector being configured to direct light from the light source when the light source is turned on.

3. The lamp of claim 2 , wherein the reflector comprises an opening, the electrode extends through the opening in the reflector, and the lamp further comprises:

a support grommet configured to be received inside the opening, the support grommet comprising a through-channel, a lens facing side, and a reflector facing side, the electrode extending through the through-channel from the reflector facing side to the lens facing side, the electrode comprising a bend configured to position the second portion of the electrode against the lens facing side, the support grommet being configured to bias the second portion of the electrode against the backward facing surface of the lens.

4. The lamp of claim 3 , wherein the support grommet is compressed between the lens and the reflector, and

the support grommet exerts elastic pressure against the second portion of the electrode that biases the second portion of the electrode against the backward facing surface of the lens.

5. The lamp of claim 3 , wherein the support grommet is constructed from an electrically non-conductive material, and

the reflector is constructed from an electrically conductive material.

6. The lamp of claim 2 , wherein the light source comprises a plurality of light emitting diodes, and

the reflector comprises a plurality of reflecting portions each configured to direct light received from one or more of the plurality of light emitting diodes when the light source is turned on.

7. The lamp of claim 1 , further comprising:

a printed circuit board upon which the sensing circuit is mounted, the first portion of the electrode being soldered to a solder pad mounted on the printed circuit board, the solder pad being in electrical communication with the sensing circuit.

8. The lamp of claim 7 , further comprising:

a housing having a hollowing interior configured to house the printed circuit board, the light source, and the electrode, the lens being coupled to the housing and closing the interior, together the lens and the housing defining an enclosure without any openings through which a liquid or debris may enter the interior.

9. The lamp of claim 1 , wherein the electrode is constructed from a flexible metal.

10. The lamp of claim 1 , wherein the second portion of the electrode has an area of 15 mm 2 to 50 mm 2 .

11. The lamp of claim 1 , wherein the lens is free of through-holes and prevents liquids and debris from entering the lamp.

12. A method of constructing a lamp, the method comprising:

soldering an electrode to a solder pad mounted on a printed circuit board, the printed circuit board comprising a sensing circuit connected to the solder pad and one or more light emitting diodes, the solder pad being in electrical communication with the sensing circuit;

positioning the printed circuit board inside an interior of a housing, a free end portion of the electrode extending from the solder pad on the printed circuit board toward a front opening of the housing;

inserting a reflector into the front opening, the free end portion of the electrode extending through an opening in the reflector;

feeding the free end portion of the electrode through a channel formed in a support grommet;

positioning the support grommet inside the opening formed in the reflector; and

attaching a lens to the front opening of the housing, the lens bending the free end portion of the electrode to position a sensing portion of the electrode alongside a front facing side of the support grommet, the sensing portion of the electrode being positioned alongside a backward facing surface of the lens, a front facing surface of the lens opposite the sensing portion of the electrode being a sensing portion, the sensing portion of the electrode being configured to sense an electric field through the lens, the sensing circuit being configured to turn on the one or more light emitting diodes when the one or more light emitting diodes are turned off and the electrode senses the electric field.

13. The method of claim 12 , further comprising:

inserting a terminal set into plated through-holes formed in the printed circuit board, the plated through-holes being in electrical communication with the sensing circuit, the terminal set being configured to supply power to the sensing circuit via the plated through-holes.

14. The method of claim 13 , further comprising:

inserting the terminal set through channels formed in the housing, the channels opening up into a first connector configured to mate with a second connector.

15. The method of claim 12 , further comprising:

inserting an anchor portion of the electrode into a through-hole formed in the printed circuit board before the electrode is soldered to the solder pad.

16. A lamp comprising:

a lens with a rear facing surface;

an electrode having a sensing portion spaced apart from an anchor portion, the sensing portion being pressed against the rear facing surface of the lens; and

a sensing circuit connected to a light source, the anchor portion of the electrode being in electrical communication with the sensing circuit, the electrode being configured to sense an electric field through the lens, the sensing circuit being configured to turn on the light source when the light source is turned off and the electrode senses the electric field, the sensing circuit being configured to turn off the light source when the light source is turned on and the electrode senses the electric field.

17. The lamp of claim 16 , further comprising:

a support grommet configured to bias the sensing portion of the electrode against the rear facing surface of the lens.

18. The lamp of claim 16 , further comprising:

a reflector positioned between the lens and the sensing circuit, the reflector being configured to direct light from the light source when the light source is turned on, the reflector and the electrode each being constructed from an electrically conductive material; and

a support grommet configured to bias the sensing portion of the electrode against the rear facing surface of the lens, the support grommet being constructed from an electrically non-conductive material, the support grommet being positioned between the electrode and the reflector to insulate the electrode from the reflector.

19. The lamp of claim 18 , wherein the reflector comprises an opening,

a channel portion of the support grommet is positioned inside the opening,

the channel portion of the support grommet has a through-channel formed therein, and

the electrode extends through the through-channel.

20. The lamp of claim 19 , wherein the support grommet has a biasing portion connected to the channel portion,

the biasing portion is positioned between the reflector and the lens,

the sensing portion of the electrode is positioned alongside the biasing portion of the support grommet, and

the biasing portion of the support grommet biases the sensing portion of the electrode against the rear facing surface of the lens.

Assignments (2)
SECURITY INTEREST Recorded Jul 11, 2024
From: GRAKON, LLC
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 067958/0689 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 12, 2018
From: JENSEN, PAUL J.; FREEDER, STEVEN P.
To: GRAKON, LLC
Reel/Frame 047757/0237 →
Continuity (1)
Related Publication 20190249853A1 · Aug 15, 2019