$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

Light scanning system for measurement of orientation and physical features of a workpiece 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G01B-011/26
출원번호 US-0473754 (1990-02-02)
발명자 / 주소
  • Downing Elizabeth A. (Sunnyvale CA) Rogers Steven W. (Conway AR) Titsworth Raymond (Conway AR) Christian Donald J. (Fremont CA) Baird Michael L. (Los Altos CA)
출원인 / 주소
  • FMC Corporation (Chicago IL 02)
인용정보 피인용 횟수 : 77  인용 특허 : 0

초록

A structured light scanning system observes, interprets and provides structural feature size, position and movement data in automotive service equipment applications where such feature characteristics must be determined either preliminary to or ultimately for measurement of quantities affecting auto

대표청구항

Runout measurement apparatus for detecting runout in a rotatable member relative to a spin axis for the rotating member, comprising light beam projection means for projecting a light beam along a path toward the rotatable member, optical means for converting said light beam into a substantially plan

이 특허를 인용한 특허 (77)

  1. Zhu, Xiaoxun; Au, Ka Man; Germaine, Gennady; Good, Timothy A.; Schnee, Michael; Scott, Ian; Groot, John; Wilz, Sr., David M.; Rockstein, George B.; Blake, Robert E.; Dickson, LeRoy; Knowles, Carl Har, AUTOMATED METHOD OF AND SYSTEM FOR DIMENSIONING OBJECTS OVER A CONVEYOR BELT STRUCTURE BY APPLYING CONTOURING TRACING, VERTICE DETECTION, CORNER POINT DETECTION, AND CORNER POINT REDUCTION METHODS TO.
  2. Zhu, Xiaoxun; Au, Ka Man; Germaine, Gennady; Good, Timothy A.; Schnee, Michael; Scott, Ian; Groot, John; Wilz, Sr., David M.; Rockstein, George B.; Blake, Robert E.; Dickson, LeRoy; Knowles, Carl Har, AUTOMATED METHOD OF AND SYSTEM FOR DIMENSIONING OBJECTS TRANSPORTED THROUGH A WORK ENVIRONMENT USING CONTOUR TRACING, VERTICE DETECTION, CORNER POINT DETECTION, AND CORNER POINT REDUCTION METHODS ON .
  3. Podbielski, Sharon E.; Clothiaux, John D., Alignment device for rotating tire laser mapping machine.
  4. Harold Newell ; John Wiggins, Apparatus and method for automatically compensating for lateral runout.
  5. Harold Newell ; John Wiggins, Apparatus and method for automatically compensating for lateral runout.
  6. Newell Harold ; Wiggins John, Apparatus and method for automatically compensating for lateral runout.
  7. Newell Harold ; Wiggins John, Apparatus and method for automatically compensating for lateral runout.
  8. Newell Harold ; Wiggins John, Apparatus and method for automatically compensating for lateral runout.
  9. Newell Harold ; Wiggins John, Apparatus and method for automatically compensating for lateral runout.
  10. Newell Harold ; Wiggins John, Apparatus and method for automatically compensating for lateral runout.
  11. Newell, Harold; Wiggins, John, Apparatus and method for automatically compensating for lateral runout.
  12. Newell,Harold; Wiggins,John, Apparatus and method for automatically compensating for lateral runout.
  13. Newell,Harold; Wiggins,John, Apparatus and method for automatically compensating for lateral runout.
  14. Newell,Harold; Wiggins,John, Apparatus and method for automatically compensating for lateral runout.
  15. Hoenke, Mark S.; Hulbert, Jack A.; Lehman, James R.; Menkveld, Todd K.; Momber, Gregory J.; Smith, Thomas D., Apparatus and method for determining the orientation of an object such as vehicle wheel alignment.
  16. Berger, Phillip A., Apparatus and method for evaluating tire self-cleaning capability.
  17. Jones Barbara L.,GBX ; Davis Stephen J.,GBX ; Hawkins Marcus J.,GBX ; Stollery David,GBX, Apparatus and method for tire condition assessment.
  18. Braghiroli, Francesco, Apparatus for determining the condition of a tire tread of a vehicle wheel.
  19. Ye, Scott; Marler, James; Bond, Craig, Auto calibration method and apparatus for wheel balancer equipment.
  20. Zhu,Xiaoxun; Au,Ka Man; Germaine,Gennady; Good,Timothy A.; Schnee,Michael; Scott,Ian; Groot,John; Wilz, Sr.,David M.; Rockstein,George B.; Blake,Robert E.; Dickson,LeRoy; Knowles,Carl Harry, Automated method of and system for dimensioning objects over a conveyor belt structure by applying contouring tracing, vertice detection, corner point detection, and corner point reduction methods to two-dimensional range data maps of the space above the conveyor belt captured by an amplitude modulated laser scanning beam.
  21. Montanari, Marco, Balancing machine for vehicle wheels with analog to digital conversion and adjustable sampling frequency.
  22. Greenwald, Christopher L.; Hastings, Jeff, Brake rotor resurfacing.
  23. Falbaum, David J.; Jahnke, Darren M.; Kraus, Paul R.; Schilling, Paul S.; Lorenz, Mark, Configurable application of a tire dressing.
  24. Schilling, Paul S.; Lorenz, Mark, Determination of tire parameters for configurable application of a tire dressing.
  25. Andersson,Nils, Device and method for alignment.
  26. Kostka, Guenther; Schmitt, Peter; Huegel, Christian; Goldstein, Ralf, Device and method for measuring a complexly formed object.
  27. Schäfer, Frank H., Device for checking the tire profile depth and profile type, and the speed and ground clearance of vehicles in motion.
  28. Adolph, Dietrich, Device for determining wheel and/or axle geometry of motor vehicles.
  29. Bartko Robert J. (Shelby Township MI) Rosen Jack H. (Farmington Hills MI), Intelligent sensor method and apparatus for an optical wheel alignment machine.
  30. Bartko Robert J. ; Rosen Jack H., Intelligent sensor method and apparatus for an optical wheel alignment machine.
  31. Matteucci, Marco; Montanari, Marco; Nicolini, Roberto, Machine for balancing vehicle wheels.
  32. Corghi, Remo, Method and a machine for balancing vehicle wheels.
  33. Cullum,William David; Zhou,Wen Yu; Rogers,Frederick J., Method and apparatus for automotive rim edge analysis and corrective weight selection guide.
  34. Braghiroli,Francesco, Method and apparatus for balancing a motor vehicle wheel.
  35. Braghiroli,Francesco, Method and apparatus for determining geometrical data of a motor vehicle wheel mounted rotatably about an axis of rotation.
  36. Ulrich Diez DE, Method and apparatus for determining the impressing depth of a tire on a motor vehicle disk wheel.
  37. Kaneko, Tomoyuki; Murayama, Tokuhiro; Kobayashi, Tsuneo; Kokubu, Takao, Method and apparatus for inspecting appearance and shape of subject body.
  38. Braghiroli,Francesco, Method and apparatus for optically scanning a pneumatic tire of a vehicle wheel.
  39. Braghiroli,Francesco, Method and apparatus for optically scanning a vehicle wheel.
  40. Douglas, Michael W.; Reynolds, Sean D.; Meyer, Gregory F.; Dorrance, Daniel R., Method and apparatus for utilizing wheel profile data during wheel assembly service procedures.
  41. Voeller,David; Clasquin,Joel; Douglas,Michael W., Method and apparatus for vehicle service system with imaging components.
  42. Jones Barbara L.,GBX ; Davis Stephen J.,GBX, Method and apparatus for vehicle wheel alignment testing.
  43. Breed, David S., Method and arrangement for obtaining information about vehicle occupants.
  44. Boni, Fabio; Carfagni, Monica; Furferi, Rocco; Governi, Lapo, Method and device for non-contact measurement of the alignment of motor vehicle wheels.
  45. Roberto Battiti IT; Remo Corghi IT, Method and device for regulating the attitude of a motor vehicle.
  46. Burger Joachim,IEX, Method and gauge for measuring the tread depth of a motor vehicle tire.
  47. Montanari, Marco; Matteucci, Andrea, Method for detecting the shape and/or dimensions of a wheel on vehicle repair workshop machines or the like.
  48. Forster,Frank; Jahn,Lars; Laloni,Claudio, Method for determining an axle geometry and sensor for its execution.
  49. Berger, Phillip A.; Arant, Michael, Method for evaluating tire self-cleaning capability by analyzing recorded images.
  50. Williams, David B.; Gephardt, Robert J.; Rummel, Samuel A., Method for inspecting an automotive wheel and associated apparatus.
  51. Douglas,Michael W.; Golab,Thomas, Method for measuring optically reflective vehicle wheel surfaces.
  52. Flament, Julien Matthieu; Nicholson, Verner Steve; Thomas, Anton Felipe; Traylor, James Michael, Method for prediction and control of tire uniformity parameters from crown thickness variation.
  53. Dorrance, Daniel R.; Colarelli, III, Nicholas J.; Strege, Timothy A., Method for tire tread depth modeling and image annotation.
  54. Sotgiu, Paolo, Method of and apparatus for determining geometrical dimensions of a vehicle wheel.
  55. Douglas, Michael W.; Burns, Jr., Leigh R., Methods and systems for wheel profile measurement.
  56. De Sloovere, Kris; Beghuin, Didier; Verhaert, Koen, Non contact wheel alignment sensor and method.
  57. De Sloovere, Kris; Beghuin, Didier; Verhaert, Koen, Non contact wheel alignment sensor and method.
  58. De Sloovere, Kris; Beghuin, Didier; Verhaert, Koen, Non contact wheel alignment sensor and method.
  59. Koerner Arthur ; Hanson James, Non-contact method and apparatus for determining camber and caster of a vehicle wheel.
  60. Dale, Jr.,James L.; Zhou,Wen Yu; Rogers,Frederick J., Non-contact method and system for tire analysis.
  61. Cunningham, Charles L.; Carpenter, David M., On car brake lathe aligning apparatus.
  62. Benz, Eric W.; Offutt, Peter W.; Foster, Thomas R.; Bero, Josh, Process for determining whether used friction elements may be returned to service.
  63. Newell Harold ; Wiggins John, Runout measurement and control system for a disc brake lathe.
  64. Wallace, Jon K.; Zayan, Nicholas M.; Cooper, Stephen R. W.; Khairallah, Farid, Structured lighting detection of vehicle occupant type and position.
  65. Reese David Thomas, Tire and rim assembly centering method.
  66. Reese David Thomas ; Roethlisberger Ronald Simon, Tire and rim assembly centering method.
  67. Schartz, Alphonse; Hansenne, Jean-Pol; Winkin, Didier; Maleto, Joe; Yasse, Patrick, Tire and rim assembly centering method.
  68. Kaneko Tomoyuki,JPX ; Murayama Tokuhiro,JPX, Tire configuration judging device and tire classifying method using the same.
  69. Takahashi, Eiji; Sakoda, Naokazu; Morimoto, Tsutomu, Tire shape measuring system.
  70. Voeller,David A.; Clasquin,Joel; Douglas,Michael W., Vehicle tire changing system with imaging components.
  71. Clasquin, Joel; Gerdes, Michael D.; Hanneken, Doug; Colarelli, III, Nicholas J., Vehicle tire changing system with tool positioning sensor.
  72. Clasquin, Joel; Gerdes, Michael D.; Hanneken, Douglas; Colarelli, III, Nicholas J., Vehicle tire changing system with tool positioning sensor.
  73. Merrill,M. Stanley; Combs,Ted; Sutton,Richard, Vehicle wheel alignment by rotating vision sensor.
  74. Kitagawa, Hideo; Takagi, Hiroshi, Vehicle wheel alignment measuring apparatus.
  75. Douglas,Michael W.; Colarelli,Nicholas J., Vehicle wheel balancer system with projection display.
  76. McInnes Duncan W,IEX ; Fogarty Padraig,IEX ; Meaney Paul P,IEX ; Cullen Richard J,IEX, Wheel balancer.
  77. Bux Hermann,DEX ; Ross Peter,DEX ; Schommer Stefan,DEX ; Worm Michael,DEX, Wheel-balancing method and device.
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로