IP Library Granted Patent US 9,506,617
Granted Patent B2
US 9,506,617 · App. 14/589,461 · Granted Nov 29, 2016

Combination LED fog lamp and daytime running lamp

Inventor: Robert T. Harrington, Jr. (Laguna Beach, CA)
Assignee: MYOTEK PACIFIC CORP.
F21S48/1747B60Q1/20F21S48/115F21S48/1159F21S48/1388F21S48/1705F21S48/215F21S48/218B60Q2400/30
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Quick Facts
Patent No.
US 9,506,617
App. No.
14/589,461
Granted
Nov 29, 2016
Kind
B2
Abstract

A combination lamp for use in a vehicle includes a number of reflector modules, with each reflector module including a reflector, a first light emitting diode (“LED”) positioned at a focus of the reflector, and a second LED offset from the focus of the reflector. The lamp may also include another reflector module having a reflector and a single, common LED positioned at a focus of the reflector. When the first LEDs and the common LED are energized, the combination lamp produces a first light pattern. When the second LEDs and the common LED are energized, the combination lamp produces a second light pattern. The first light pattern may be a fog lamp light pattern, and the second light pattern may be a daytime running lamp light pattern. The combination lamp may include four, five, or more reflector modules, including the one reflector module having the single, common LED.

Claims (69)

1. An automotive lamp comprising:

a plurality of reflectors,

a first plurality of light emitting diodes (LEDs) including a first LED positioned at a focus of a first reflector of the plurality of reflectors and operable to direct light at the first reflector, and

a second plurality of LEDs including a second LED offset from the focus of the first reflector and operable to direct light at the first reflector,

wherein the automotive lamp is configured to (i) produce a first light pattern when the first plurality of LEDs are energized, and (ii) produce a second light pattern when the second plurality of LEDs are energized, and

wherein the first light pattern is a fog lamp light pattern, and the second light pattern is a daytime running lamp light pattern.

2. The automotive lamp of claim 1 , further comprising:

a third LED positioned at the focus of a second reflector of the plurality of reflectors and operable to direct light at the second reflector, and

an electronic controller configured to (i) energize the first plurality of LEDs and the third LED to produce the first light pattern and (ii) energize the second plurality of LEDs and the third LED to produce the second light pattern.

3. The automotive lamp of claim 2 , wherein:

the first plurality of LEDs further includes a fourth LED positioned at a focus of a third reflector and operable to direct light at the third reflector,

the second plurality of LEDs further includes a fifth LED offset from the focus of the third reflector and operable to direct light at the third reflector, and

the second reflector is positioned between the first reflector and the third reflector.

4. The automotive lamp of claim 1 , wherein:

the plurality of reflectors comprises four reflectors,

the first plurality of LEDs comprises four LEDs, each LED being operable to direct light at one of the four reflectors and being positioned at a focus of the one reflector, and

the second plurality of LEDs comprises four LEDs, each LED being operable to direct light at one of the four reflectors and being positioned offset from the focus of the one reflector.

5. The automotive lamp of claim 1 , wherein:

when the first light pattern is viewed in an imaginary reference plane positioned a predefined distance in front of the automotive lamp, a first vertical distance is defined between an upper end and a lower end of the first light pattern, and

when the second light pattern is viewed in the reference plane, a second vertical distance is defined between an upper end and a lower end of the second light pattern, the second vertical distance being greater than the first vertical distance.

6. The automotive lamp of claim 5 , wherein:

the upper end of the first light pattern is positioned below an imaginary line in the reference plane that corresponds to the horizon, and

the upper end of the second light pattern is positioned above the imaginary line.

7. The automotive lamp of claim 5 , wherein:

a first horizontal distance is defined between a left end and a right end of the first light pattern, and

a second horizontal distance is defined between a left end and a right end of the second light pattern, the second horizontal distance being less than the first horizontal distance.

8. The automotive lamp of claim 2 , wherein the electronic controller is further configured to (i) de-energize the first plurality of LEDs when the second plurality of LEDs are energized and (ii) de-energize the second plurality of LEDs when the first plurality of LEDs are energized.

9. An automotive lamp comprising:

a lamp housing for installation in a vehicle, the lamp housing having an inboard side and an outboard side, wherein the vehicle defines a longitudinal vehicle axis, and

a plurality of reflector modules arranged linearly within the lamp housing, each reflector module including:

a support coupled to the lamp housing,

a reflector extending from the support and defining a focus on a surface of the support, and

a first light emitting diode (LED) positioned on the surface of the support at the focus of the reflector and operable to direct light at the reflector,

wherein each reflector module produces a first light pattern when the first LED is energized, and

wherein each of a first reflector module and a second reflector module of the plurality of reflector modules: (i) includes a second LED positioned on the surface of the support offset from the focus of the reflector, the second LED being operable to direct light at the reflector, and (ii) produces a second light pattern when the second LED is energized, and

wherein the first light pattern is a fog lamp light pattern, and the second light pattern is a daytime running lamp light pattern.

10. The automotive lamp of claim 9 , wherein:

when each first light pattern produced by the plurality of reflector modules is viewed in an imaginary reference plane positioned a predefined distance along the vehicle axis in front of the automotive lamp, an upper end of each first light pattern is positioned below an imaginary line in the reference plane that corresponds to the horizon, and

when each second light pattern produced by the plurality of reflector modules is viewed in the reference plane, a centroid of each second light pattern is offset vertically from a centroid of the first light pattern produced by the same reflector.

11. The automotive lamp of claim 9 , wherein the plurality of reflector modules further comprises a third reflector module positioned between the first reflector module and the second reflector module,

wherein the automotive lamp further comprises an electronic controller configured to (i) energize the first LED of the third reflector module when the first LEDs of the first reflector module and the second reflector module are energized and (ii) energize the first LED of the third reflector module when the second LEDs of the first reflector module and the second reflector module are energized.

12. The automotive lamp of claim 11 , wherein:

the plurality of reflector modules further comprises a fourth reflector module, the fourth reflector module (i) including a second LED positioned on the surface of the support offset from the focus of the reflector, the second LED being operable to direct light at the reflector, and (ii) producing a second light pattern when the second LED is energized,

the first reflector module is positioned inboard of the third reflector module,

the second reflector module is positioned outboard of the third reflector module, and

the fourth reflector module is positioned outboard of the second reflector module.

13. The automotive lamp of claim 11 , wherein:

the plurality of reflector modules further comprises a fourth reflector module, the fourth reflector module (i) including a second LED positioned on the surface of the support offset from the focus of the reflector, the second LED being operable to direct light at the reflector, and (ii) producing a second light pattern when the second LED is energized,

the first reflector module is positioned inboard of the third reflector module,

the second reflector module is positioned outboard of the third reflector module, and

the fourth reflector module is positioned inboard of the first reflector module.

14. The automotive lamp of claim 13 , wherein the plurality of the reflector modules further comprises a fifth reflector module, the fifth reflector module (i) including a second LED positioned on the surface of the support offset from the focus of the reflector, the second LED being operable to direct light at the reflector, (ii) producing a second light pattern when the second LED is energized, and (iii) being positioned outboard of the second reflector module.

15. The automotive lamp of claim 14 , wherein:

the second LEDs of the first reflector module and the fourth reflector module are positioned closer to the reflector than the focus, and

the second LEDs of the second reflector module and fifth reflector module are positioned further from reflector than the focus.

16. The automotive lamp of claim 15 , wherein:

when each second light pattern produced by the first reflector module and the fourth reflector module is viewed in an imaginary reference plane positioned a predefined distance along the vehicle axis in front of the automotive lamp, the second light pattern has a centroid positioned vertically above a centroid of the first light pattern produced by the same reflector module, and

when each second light pattern produced by the second reflector module and the fifth reflector module is viewed in the reference plane, the second light pattern has a centroid positioned vertically below a centroid of each first light pattern produced by the same reflector module.

17. The automotive lamp of claim 9 , wherein the reflectors of the plurality of reflector modules are configured to reflect the light produced by the first LEDs and the second LEDs out of the lamp housing without obstruction.

18. An automotive lamp comprising:

a lamp housing for installation in a vehicle, the lamp housing having an inboard side and an outboard side, wherein the vehicle defines a longitudinal vehicle axis, and

a plurality of reflector modules arranged linearly within the lamp housing, each reflector module including:

a support coupled to the lamp housing,

a reflector extending from the support and defining a focus on a surface of the support, and

a first light emitting diode (LED) positioned on the surface of the support at the focus of the reflector and operable to direct light at the reflector,

an electronic controller configured to selectively energize the first LED,

wherein each reflector module produces a first light pattern when the first LED is energized, and

wherein each of a first reflector module and a second reflector module of the plurality of reflector modules: (i) includes a second LED positioned on the surface of the support offset from the focus of the reflector, the second LED being operable to direct light at the reflector, and (ii) produces a second light pattern when the second LED is energized, and

wherein the electronic controller is further configured to (i) de-energize the first plurality of LEDs when the second plurality of LEDs are energized and (ii) de-energize the second plurality of LEDs when the first plurality of LEDs are energized.

Assignments (8)
RELEASE OF SECURITY INTEREST RECORDED AT REEL/FRAME 043651/0487 Recorded Oct 30, 2025
From: PNC BANK, NATIONAL ASSOCIATION
To: MYOTEK HOLDINGS, INC. (AS SUCCESSOR-IN-INTEREST TO MYOTEK PACIFIC CORP.)
Reel/Frame 073402/0231 →
RELEASE OF SECURITY INTERESTS RECORDED AT REEL/FRAMES 43657/0859 AND 60974/0582 Recorded Oct 29, 2025
From: GLADSTONE BUSINESS LOAN, LLC (AS SUCCESSOR-IN-INTEREST TO GLADSTONE CAPITAL CORPORATION)
To: MYOTEK HOLDINGS, INC. (AS SUCCESSOR-IN-INTEREST TO MYOTEK PACIFIC CORP.)
Reel/Frame 073424/0531 →
SECURITY INTEREST Recorded Oct 28, 2025
From: MYOTEK HOLDINGS, INC.
To: CIBC BANK USA
Reel/Frame 072703/0595 →
SECURITY INTEREST Recorded Oct 28, 2025
From: MYOTEK HOLDINGS, INC.
To: PINEY LAKE OPPORTUNITIES ECI MASTER FUND LP
Reel/Frame 072708/0539 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2019
From: MYOTEK PACIFIC CORP.
To: MYOTEK HOLDINGS, INC.
Reel/Frame 049017/0657 →
SECURITY INTEREST Recorded Sep 21, 2017
From: MYOTEK HOLDINGS, INC.; MYOTEK MIDWEST, INC.; MYOTEK NORTH AMERICA, INC.; MYOTEK PACIFIC CORPORATION
To: PNC BANK, NATIONAL ASSOCIATION
Reel/Frame 043651/0487 →
SECURITY INTEREST Recorded Sep 21, 2017
From: MYOTEK PACIFIC CORP.
To: GLADSTONE BUSINESS LOAN, LLC
Reel/Frame 043657/0859 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 11, 2017
From: HARRINGTON, ROBERT T., JR.
To: MYOTEK PACIFIC CORP.
Reel/Frame 043812/0473 →
Continuity (2)
Continuation 13957225 · Aug 1, 2013
Related Publication 20150117046A1 · Apr 30, 2015