IP Library › Granted Patent US 10,112,531
Granted Patent B2
US 10,112,531 · App. 15/142,669 · Granted Oct 30, 2018

Vehicle badge with improved resolution

Inventors: Pietro Buttolo (Dearborn Heights, MI); Stuart C. Salter (White Lake, MI); Paul Kenneth Dellock (Northville, MI); James J. Surman (Clinton Township, MI); Michael A. Musleh (Canton, MI)
Assignee: Ford Global Technologies, LLC
B60Q1/56H05B33/0809H05B33/0845
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Quick Facts
Patent No.
US 10,112,531
App. No.
15/142,669
Granted
Oct 30, 2018
Kind
B2
Abstract

A vehicle badge is provided herein. A first number of light sources is configured to successively illuminate, wherein at least a majority of the first number of light sources ramps to a maximum intensity within a corresponding time interval prior to a time period elapsing. A second number of light sources is configured to successively illuminate, wherein each of the second number of light sources ramps to a maximum intensity once the time period is reached.

Claims (23)

1. A vehicle badge comprising:

a housing comprising a viewable portion defined by an opaque region, a light-transmissive insignia having a long arm and a short arm, and a light-transmissive rim portion, wherein the opaque region is bounded by the long arm, the short arm, and the rim portion, the insignia extending forwardly of the opaque region;

a printed circuit board coupled to a substrate and located behind the housing; and

a plurality of light sources disposed on the printed circuit board to complement the shape of the insignia and comprising:

a first number of light sources extending in a vertical direction to coincide with the long arm of the insignia; and

a second number of light sources extending in a horizontal direction to coincide with the short arm of the insignia, wherein the first and second number of light sources are configured to sequentially activate in an outward direction stemming from one of the plurality of light sources, and wherein the first number of light sources is greater than the second number of light sources.

2. The vehicle badge of claim 1 , wherein the first and second number of light sources become fully activated at the same time.

3. The vehicle badge of claim 2 , wherein when the first and second number of light sources have become fully activated, light sources disposed about a peripheral edge of the printed circuit board are then activated, and wherein the light sources coincide with a rim portion of the insignia.

4. The vehicle badge of claim 1 , wherein each of the first and second number of light sources are configured to ramp to a maximum intensity.

5. The vehicle badge of claim 4 , wherein the ramps of the first number of light sources are one of overlapping and non-overlapping and the ramps of the second number of light sources collectively define a homogenous ramp up.

6. The vehicle badge of claim 4 , wherein the ramps of each of the first and second number of light sources is one of linear and exponential.

7. The vehicle badge of claim 1 , further comprising at least one driver circuit operably coupled to the first and second number of light sources, and one of a transistor and a MOSFET connected in series with the at least one driver circuit.

8. The vehicle badge of claim 1 , further comprising at least one driver circuit operably coupled to the first and second number of light sources, and one of a logarithmic and an exponential amplifier disposed at an output of the at least one driver circuit.

9. A vehicle badge comprising:

a housing comprising a viewable portion defined by an opaque region, a light-transmissive insignia having a long arm and a short arm, and a light-transmissive rim portion, wherein the opaque region is bounded by the long arm, the short arm, and the rim portion, the insignia extending forwardly of the opaque region;

a first number of light sources extending in a vertical direction to coincide with the long arm of the insignia;

a second number of light sources extending in a horizontal direction to coincide with the short arm of the insignia, wherein the first and second number of light sources are configured to sequentially activate in an outward direction stemming from one of the first or second number of light sources; and

a driver circuit operably coupled to the first and second number of light sources and one of a transistor and a MO SFET connected in series with the at least one driver circuit.

10. A vehicle badge comprising:

a housing comprising a viewable portion defined by an opaque region, a light-transmissive insignia having a long arm and a short arm, and a light-transmissive rim portion, wherein the opaque region is bounded by the long arm, the short arm, and the rim portion, the insignia extending forwardly of the opaque region;

a first number of light sources extending in a vertical direction within the long arm;

a second number of light sources extending in a horizontal direction within the short arm, wherein the first and second number of light sources are configured to sequentially activate in an outward direction stemming from one of the first or second number of light sources; and

a driver circuit operably coupled to the first and second number of light sources and one of a logarithmic and an exponential amplifier disposed at an output of the at least one driver circuit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 17, 2016
From: BUTTOLO, PIETRO; SALTER, STUART C.; DELLOCK, PAUL KENNETH; SURMAN, JAMES J.; MUSLEH, MICHAEL A.
To: FORD GLOBAL TECHNOLOGIES, LLC
Reel/Frame 038615/0342 →
Continuity (1)
Related Publication 20170313243A1 · Nov 2, 2017
Cited By (4)
US 12,202,345 US 12,205,495 US 12,494,142 US 12,576,779