IP Library Granted Patent US 7,352,455
Granted Patent B2
US 7,352,455 · App. 10/829,761 · Granted Apr 1, 2008

Laser scanner with parabolic collector

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Quick Facts
Patent No.
US 7,352,455
App. No.
10/829,761
Granted
Apr 1, 2008
Kind
B2
Abstract

An improved laser scanning apparatus ( 46 ) for determining frame or unibody alignment or misalignment of a vehicle ( 40 ) is provided, which includes a laser assembly ( 54 ), a pair of rotatable mirror assemblies ( 56,58 ) and laser detectors ( 114,116 ) located within an enclosed housing ( 50,52 ). The laser assembly ( 54 ) has an upper pair of lasers ( 122,126 ) located in known, spaced relationship above a lower pair of lasers ( 124,128 ); detector assemblies ( 114, 116 ) are also provided including substantially parabolic reflective surfaces ( 118 a , 120 a ) with detectors ( 114 a , 116 a ) disposed substantially at the focal point of the surfaces ( 118 a, 120 a ). The apparatus ( 46 ) is used in conjunction with a plurality of individually coded reflective targets ( 44 ) which are suspended from known reference points on the vehicle ( 40 ). In use, the laser assembly ( 54 ) in conjunction with the mirror assemblies ( 56,58 ) directs upper and lower laser beams through 360 degree scans to impinge on the targets ( 44 ); laser radiation reflected from the targets ( 44 ) is detected by the detector assemblies ( 114, 116 ), allowing trigonometric calculation of target positions using information derived from the scans of the upper and lower beams. In this way, a determination can be made if any of the targets ( 44 ) are out of plumb (i.e., not truly vertical). Preferably, the housing ( 50,52 ) includes a pair of elongated, laser-transparent panels ( 88,90 ) and is effectively sealed to minimize contamination of the apparatus ( 46 ). The provision of parabolic detection assemblies 114, 116 increases the signal-to-noise ratio for the apparatus ( 46 ).

Claims (34)

1. A laser scanning apparatus for determining frame or unibody alignment of a vehicle, the vehicle having at least one reflective laser beam target placed in a known relationship relative to a selected vehicle reference point, the apparatus comprising:

at least one laser generating device, each laser generating device operable to produce at least two sets of vertically spaced apart laser beams that may be directed toward a laser beam target; and

at least one detector assembly, each detector assembly comprising a collector and a detector, the collector having a curved reflective surface operable to receive a laser beam reflected from a laser beam target and to direct the laser beam to the detector.

2. The apparatus of claim 1 wherein the reflective surface of each collector is substantially parabolic.

3. The apparatus of claim 1 wherein for each detector assembly the detector is located substantially at the focal point of the reflective surface of the collector.

4. The apparatus of claim 1 wherein the reflective surface of each collector includes an opening therethrough and a laser generating device is operable to direct a laser beam through the opening.

5. The apparatus of claim 1 wherein each of the reflective surfaces has a pair of vertically spaced apart openings therethrough and the at least one laser generating device produces two vertically spaced apart laser beams and directs a laser beam through each of the openings.

6. The apparatus of claim 1 further including a laser beam splitter device associated with at least one laser beam generating device.

7. A laser scanning apparatus for determining frame or unibody alignment of a vehicle, the vehicle having at least one reflective laser beam target placed in a known relationship relative to a selected vehicle reference point, the apparatus comprising:

at least one laser generating device, each laser generating device operable to produce at least one laser beam that may be directed toward a laser beam target;

at least one detector assembly, each detector assembly comprising a collector and a detector, the collector having a curved reflective surface operable to receive a laser beam reflected from a laser beam target and to direct the laser beam to the detector; and

a pair of rotating mirrors respectively located on opposite sides of the apparatus with each mirror operable to receive a laser beam produced by the at least one laser generating device and to direct the laser beam toward a laser beam target.

8. The apparatus of claim 7 wherein each mirror is operable to direct the laser beam through a 360° sweep.

9. The apparatus of claim 7 wherein each rotating mirror has a relatively wide reflective surface and a relatively narrow reflective edge.

10. A method of laser scanning for determining frame or unibody alignment of a vehicle, the method comprising:

directing a laser beam toward a reflective laser beam target placed in a known relationship relative to a selected vehicle reference point;

utilizing a curved reflective surface to direct a laser beam reflected from the target to a detector; and

detecting the laser beam reflected from the target using the detector.

11. The method of claim 10 wherein the curved reflective surface is a substantially parabolic reflective surface.

12. The method of claim 10 wherein the curved reflective surface directs the laser beam reflected from the target to a detector located at the focal point of the reflective surface.

13. The method of claim 10 wherein directing a laser beam toward the target comprises producing a laser beam and directing the laser beam toward a rotating mirror.

14. The method of claim 13 wherein directing the laser beam toward a rotating mirror comprises directing the laser beam toward a rotating mirror having a relatively wide reflective surface and a relatively narrow reflective edge.

15. The method of claim 10 wherein directing a laser beam toward the target comprises producing a pair of vertically spaced-apart laser beams and directing the laser beams toward the target.

16. A laser scanning apparatus for determining frame or unibody alignment of a vehicle, the vehicle having at least one reflective laser beam target placed in a known relationship relative to a selected vehicle reference point, the apparatus comprising:

a housing;

a laser assembly located within the housing, the laser assembly including a laser source operable to produce a laser beam, the laser assembly further including a detector assembly for receiving a laser beam reflected from a target, the detector assembly comprising a reflective surface operable to direct a laser beam reflected by a target to a detector; and

a pair of upright, rotatable mirrors located within the housing on opposite sides of the laser assembly, the mirrors operable to a direct the laser beam produced by the laser source toward a vehicle-mounted reflective target, each mirror coupled to a motor operable to rotate the mirror, the motor coupled to a control board that includes electronic components operable to receive a speed control signal and to produce a corresponding electronic output to the motor so that the motor rotates the mirror at substantially the speed indicated by the speed control signal.

17. The apparatus of claim 16 wherein the reflective surface of the detector assembly is substantially parabolic.

18. The apparatus of claim 17 wherein the detector is located at the focal point of the substantially parabolic reflective surface.

19. The apparatus of claim 16 wherein each mirror is operable to direct the laser beam through a 360° sweep.

20. A laser scanning apparatus for determining frame or unibody alignment of a vehicle, the vehicle having at least one reflective laser beam target placed in a known relationship relative to a selected vehicle reference point, the apparatus comprising:

at least one laser generating device, each laser generating device operable to produce at least one laser beam that may be directed toward a laser beam target;

at least one detector assembly, each detector assembly comprising a collector and a detector, the collector having a curved reflective surface operable to receive a laser beam reflected from a laser beam target and to direct the laser beam to the detector; and

wherein each of the reflective surfaces has a pair of vertically spaced apart openings therethrough and the at least one laser generating device produces two vertically spaced apart laser beams and directs a laser beam through each of the openings.

Assignments (5)
CERTIFICATE OF CONVERSION Recorded Dec 17, 2009
From: CHIEF AUTOMOTIVE TECHNOLOGIES, INC.
To: CHIEF AUTOMOTIVE TECHNOLOGIES, LLC
Reel/Frame 023668/0350 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 17, 2009
From: CHIEF AUTOMOTIVE TECHNOLOGIES, LLC
To: VEHICLE SERVICE GROUP, LLC
Reel/Frame 023668/0390 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 18, 2006
From: CLOVE PARK INSURANCE COMPANY
To: CP FORMATION LLC
Reel/Frame 017794/0242 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 18, 2006
From: DELAWARE CAPITAL FORMATINO, INC.
To: CLOVE PARK INSURANCE COMPANY
Reel/Frame 017794/0248 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 18, 2006
From: CP FORMATION LLC
To: CHIEF AUTOMOTIVE TECHNOLOGIES, INC.
Reel/Frame 017794/0258 →