IP Library Granted Patent US 10,801,714
Granted Patent B1
US 10,801,714 · App. 16/591,793 · Granted Oct 13, 2020

Lighting device

Inventor: Steven Jergensen (Ringwood, IL)
Assignee: CarJamz, Inc.
F21V29/83F21V19/0015F21V19/0035F21V19/02F21V29/89F21Y2115/10
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Quick Facts
Patent No.
US 10,801,714
App. No.
16/591,793
Granted
Oct 13, 2020
Kind
B1
Abstract

An improved lighting device includes a tower body, a pair of parallel PCBs attached to the tower body, a connector and a set of wires connecting the connector and the PCBs. The wires are wrapped inside a RF shielding and disposed inside a supply cable. Each PCB includes two arrays of LEDs. Each array of LEDs includes three LEDs. A set of omni-directional heat sinks are attached to the base of the tower body. Each sink includes a set of tinned stranded copper ropes. The copper ropes each have a free end. The lighting device further includes a plug metal retention nut attached to the connector, a ratcheting inner collar attached to the tower body, and a mounting collar. The mounting collar has tabs, a ratchet mechanism having a series of troughs spaced by approximately one millimeter, and two guidance grooves. The mounting collar is couple with the ratcheting inner collar.

Claims (55)

1. A lighting device for an automobile, said lighting device comprising:

1) a tower body having a front end and a base;

2) a wire channel machined out of said base of said tower body;

3) four omni-directional heat sinks, each of said four omni-directional heat sinks having four tinned stranded copper ropes respectively;

4) four heat sink channels machined out of said base of said tower body, said four omni-directional heat sinks slotted to said four heat sink channels respectively, each of said tinned stranded copper rope has a free end;

5) two printed circuit boards attached to said front end of said town body, said two printed circuit boards aligned in parallel and facing away from each other, each of said two printed circuit boards incorporating two light emitting diode arrays and four solder pads, each said light emitting diode array including three light emitting diodes;

6) a printed circuit board retention plate adapted to attach said two printed circuit boards to said tower body, said printed circuit board retention plate having a high beam deflector providing an opening of 90 degrees;

7) a connector including a connector alignment groove and a threading mechanism on an outer surface of said connector;

8) a set of eight electrical wires connecting said connector at one end and said solder pads at the opposite end, and extending through said wire channel;

9) a radio frequency shielding wrapping around said set of eight electrical wires;

10) a supply cable enclosing said radio frequency shielding;

11) a plug metal retention nut attached to said connector via said threading mechanism;

12) a plug strain relief attached to said supply cable;

13) a plug finger grip attached to said plug strain relief;

14) a ratcheting inner collar attached to said front end of said tower body and incorporating two ratchet tabs; and

15) a mounting collar incorporating three bulb base specific socket tabs, a ratchet mechanism having a series of troughs spaced by approximately one millimeter, and two guidance grooves, said mounting collar adapted to couple with said ratcheting inner collar using said two guidance grooves.

2. A lighting device for an automobile, said lighting device comprising:

1) a tower body having a front end and a base;

2) a wire channel machined out of said base of said tower body;

3) eight omni-directional heat sinks, each of said eight omni-directional heat sinks having two tinned stranded copper ropes respectively;

4) eight heat sink channels machined out of said base of said tower body, said eight omni-directional heat sinks slotted to said eight heat sink channels respectively, each of said tinned stranded copper rope has a free end;

5) two printed circuit boards attached to said front end of said town body, said two printed circuit boards aligned in parallel and facing away from each other, each of said two printed circuit boards incorporating two light emitting diode arrays and four solder pads, each said light emitting diode array including three light emitting diodes;

6) a printed circuit board retention plate adapted to attach said two printed circuit boards to said tower body, said printed circuit board retention plate having a high beam deflector providing an opening of 90 degrees;

7) a connector including a connector alignment groove and a threading mechanism on an outer surface of said connector;

8) a set of eight electrical wires connecting said connector at one end and said solder pads at the opposite end, and extending through said wire channel;

9) a radio frequency shielding wrapping around said set of eight electrical wires;

10) a supply cable enclosing said radio frequency shielding;

11) a plug metal retention nut attached to said connector via said threading mechanism;

12) a plug strain relief attached to said supply cable;

13) a plug finger grip attached to said plug strain relief;

14) a ratcheting inner collar attached to said front end of said tower body and incorporating two ratchet tabs; and

15) a mounting collar incorporating three bulb base specific socket tabs, a ratchet mechanism having a series of troughs spaced by approximately one millimeter, and two guidance grooves, said mounting collar adapted to couple with said ratcheting inner collar using said two guidance grooves.

3. A lighting device for an automobile, said lighting device comprising:

1) a tower body having a front end and a base;

2) a wire channel machined out of said base of said tower body;

3) a set of omni-directional heat sinks, each omni-directional heat sink within said set of omni-directional heat sinks having a set of tinned stranded copper ropes, each tinned stranded copper rope within said set of tinned stranded copper ropes having a free end;

4) a set of heat sink channels machined out of said base of said tower body, each omni-directional heat sink within said set of omni-directional heat sinks attached to a corresponding heat sink channel within said set of heat sink channels respectively;

5) two printed circuit boards attached to said front end of said town body, said two printed circuit boards aligned in parallel and facing away from each other, each of said two printed circuit boards incorporating two light emitting diode arrays and four solder pads, each said light emitting diode array including three light emitting diodes;

6) a printed circuit board retention plate adapted to attach said two printed circuit boards to said tower body, said printed circuit board retention plate having a high beam deflector providing an opening of 90 degrees;

7) a connector including a connector alignment groove and a threading mechanism on an outer surface of said connector

8) a set of eight electrical wires connecting said connector at one end and said solder pads at the opposite end, and extending through said wire channel;

9) a radio frequency shielding wrapping around said set of eight electrical wires

10) a supply cable enclosing said radio frequency shielding; and

11) a plug metal retention nut attached to said connector.

4. The lighting device of claim 3 further comprising:

1) a ratcheting inner collar attached to said front end of said tower body and incorporating two ratchet tabs; and

2) a mounting collar incorporating three bulb base specific socket tabs, a ratchet mechanism having a series of troughs spaced by approximately one millimeter, and two guidance grooves, said mounting collar adapted to couple with said ratcheting inner collar using said two guidance grooves.

5. The lighting device of claim 4 further comprising:

1) a plug strain relief attached to said supply cable; and

2) a plug finger grip attached to said plug strain relief.

6. The lighting device of claim 3 wherein said plug metal retention nut is made of alloy.

7. The lighting device of claim 3 wherein said connector incorporates a threading mechanism and a connector alignment groove, said plug metal retention nut attached to said connector via said threading mechanism.

8. The lighting device of claim 3 wherein each omni-directional heat sink within said set of omni-directional heat sinks is slotted to a corresponding heat sink channel within said set of heat sink channels respectively.

9. The lighting device of claim 3 wherein said set of omni-directional heat sinks consists of four omni-directional heat sinks and said set of tinned stranded copper ropes consists four tinned stranded copper ropes.

10. The lighting device of claim 3 wherein said set of omni-directional heat sinks consists of eight omni-directional heat sinks and said set of tinned stranded copper ropes consists two tinned stranded copper ropes.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 27, 2024
From: CARJAMZ COM INC. D/B/A RACESPORT
To: AAMP OF FLORIDA, INC.
Reel/Frame 068723/0273 →
SECURITY INTEREST Recorded Aug 27, 2024
From: AAMP OF FLORIDA, INC. AS GRANTOR
To: MIDCAP FINANCIAL TRUST, AS AGENT
Reel/Frame 068416/0192 →
CORRECTIVE ASSIGNMENT TO CORRECT THE THE ASSIGNEE NAME PREVIOUSLY RECORDED AT REEL: 50614 FRAME: 50. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Aug 15, 2024
From: JERGENSEN, STEVEN
To: CARJAMZ COM INC. D/B/A RACE SPORT
Reel/Frame 068656/0418 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 3, 2019
From: JERGENSEN, STEVEN
To: CARJAMZ, INC.
Reel/Frame 050614/0050 →