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Laser-based coordinate measuring device and laser-based method for measuring coordinates 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G01B-009/02
출원번호 UP-0621645 (2000-07-24)
등록번호 US-7800758 (2010-10-11)
발명자 / 주소
  • Bridges, Robert E.
  • Brown, Lawrence B.
  • West, James K.
  • Ackerson, D. Scott
출원인 / 주소
  • Faro Laser Trackers, LLC
대리인 / 주소
    Cantor Colburn LLP
인용정보 피인용 횟수 : 149  인용 특허 : 36

초록

A laser based coordinate measuring device measures a position of a remote target. The laser based coordinate measuring device includes a stationary portion, a rotatable portion, and at least a first optical fiber. The stationary portion has at least a first laser radiation source and at least a firs

대표청구항

What is claimed is: 1. A light based coordinate measuring device for measuring a position of a remote target, the measuring device comprising: a first portion having at least a first light source or a first optical detector; a second portion rotatable with respect to the first portion; a first moto

이 특허에 인용된 특허 (36)

  1. Goodwin Frank E. (Burke VA) Simonson Dana (Burke VA), 3-Dimensional vision system utilizing coherent optical detection.
  2. Pond C. Ray (Federal Way WA) Robinson Lawrence W. (Seattle WA) Texeira Patrick D. (Renton WA), Apparatus suitable for use in orienting aircraft in-flight for refueling or other purposes.
  3. Hutchin Richard A. (Marlboro MA), Beam director for optical ranging system.
  4. Bell Frederick K. (Centerville) Murata Yosuke (Centerville) Raleigh Freddie L. (Centerville OH), Coordinate measuring machine with laser interferometer and fiber optic laser delivery system.
  5. Tank Volker (Eching) Dietl Helmut (Munich) Lanzl Franz (Wessling DEX), Device for measuring the angle of rotation or of the angular position of a rotating object.
  6. Jelalian Albert V. (Bedford MA) Keene Wayne H. (Medfield MA) Sonnenschein Charles M. (Brookline MA) Harris Clarke E. (Wayland MA) Morrow Clifford E. (Wayland MA), FM-CW laser radar system.
  7. Morey William W. (West Hartford CT), Fiber optic angular sensor.
  8. Lau Kam C. ; Liu Yuan-Qen, Five-axis/six-axis laser measuring system.
  9. Uchino Akihiro (Hitachi) Naitoh Seigo (Kohriyama) Ouchi Hirobumi (Hino) Nakamura Shigeru (Tachikawa), Focusing error detecting system for optical head.
  10. Goodwin Frank E. (1300 #5 Mindanao Way Marina Del Ray CA 90292), Frequency modulated lasar radar.
  11. Tian Qian (1-20-17 Ogawa Beijing CNX) Zhang Enyao (1-20-17 Ogawa Beijing CNX) Tang Donglei (1-20-17 Ogawa Mitaka JPX) Shimokohbe Akira (1-20-17 Ogawa Machida-shi ; Tokyo JPX) Akahane Masahiro (Mitaka, Heterodyne interferometric optical fiber displacement sensor for measuring displacement of an object.
  12. Sciaky Mario (Paris FRX) Cazes Roland (St Maur FRX), Installation for determining the spatial coordinates of a point on a piece, in particular for controlling a plant such a.
  13. Merry J. Bradford (Annapolis MD) Brown Lawrence B. (Annapolis MD), Interferometer system for controlling non-rectilinear movement of an object.
  14. Frstenau Norbert (Braunschweig DEX), Laser interferometer strain sensor with adjustable feedback amplification in the form of a saw-tooth pattern.
  15. Nudelman Sol (Avon CT) Ouimette Donald R. (Plantsville CT), Lateral effect imaging system.
  16. Babbitt W. Randall (Bellevue WA) Bell John A. (Issaquah WA) Capron Barbara A. (Issaquah WA) deGroot Peter J. (Middletown CT) Hagman Ronald L. (Renton WA) McGarvey John A. (Bellevue WA) Sherman Willia, Method and apparatus for measuring distance to a target.
  17. Tearney Guillermo ; Boppart Stephen A. ; Bouma Brett E. ; Brezinski Mark ; Swanson Eric A. ; Fujimoto James G., Method and apparatus for performing optical measurements using a fiber optic imaging guidewire, catheter or endoscope.
  18. Lau Kam C., Method and apparatus for selectively locking a movement direction of a coordinate measurement probe.
  19. Pettersen Alf (Gjettum NOX), Method and sensor for opto-electronic angle measurements.
  20. Pettersen Alf,NOX ; R.o slashed.tvold .O slashed.yvind,NOX, Method and system for geometry measurements.
  21. Pettersen Alf (Gjettum NOX) Rotvold Oyvind (Hvalstad NOX), Method and system for point by point measurement of spatial coordinates.
  22. Busch-Vishniac Ilene J. (Austin TX) Buckman Alvin B. (Austin TX) Wang Wanjun (Austin TX) Oian Dahong (Dallas TX) Mancevski Vladimir (Austin TX), Noncontact position measurement systems using optical sensors.
  23. Chaney Raymond J. (Berkeley GBX), Optical apparatus for use with inteferometric measuring devices.
  24. Gelbart Daniel,CAX ; Laberge Michel G.,CAX, Optical coordinate measuring machine.
  25. Gelbart Daniel (Vancouver CAX) Laberge Michel G. (Vancouver CAX), Optical coordinate measuring system for large objects.
  26. Salcudean Septimiu E. (Vancouver CAX), Optical position and orientation sensor.
  27. Clendenin Ralph M. (Orlando FL) Freeman Raymond S. (Orlando FL), Optical target tracking and designating system.
  28. Prenninger Johann P. (Vienna ATX), Position and orientation measurement device.
  29. Cooke Claude R. (San Jose CA), Precision automatic tracking system.
  30. Ohsawa Nobuyuki,JPX, Precision indexing angle measuring method and system for machine tools.
  31. Greenleaf Allen H. (Lexington MA) Watson John T. (Lexington MA), Self calibrating contour measuring system using fringe counting interferometers.
  32. Taylor Henry F. (College Station TX) Sadkowski Roberto (Plano TX) Lee Chung E. (College Station TX), Signal conditioning unit for fiber optic sensors.
  33. Vann Charles S., Six degree of freedom sensor.
  34. Pettersen Alf D.,NOX ; R.o slashed.tvold .O slashed.yvind,NOX, System for point-by-point measuring of spatial coordinates.
  35. Lau Kam C. (Gaithersburg MD) Hocken Robert J. (Barnesville MD), Three and five axis laser tracking systems.
  36. Brown Lawrence B. (Annapolis MD) Wells David N. (Alexandria VA) Merry J. Bradford (Annapolis MD), Tracking laser interferometer.

이 특허를 인용한 특허 (149)

  1. Ditte, Andreas; Woloschyn, Andreas, 3-D measuring device with battery pack.
  2. Mertz, Jacob J.; Bridges, Robert E., Absolute distance meter based on an undersampling method.
  3. Mertz, Jacob J.; Bridges, Robert E., Absolute distance meter that uses a fiber-optic switch to reduce drift.
  4. Bridges, Robert E., Absolute distance meter with optical switch.
  5. Antoina, Mathieu; Brown, Lawrence B.; Day, Jonathan R.; Evans, Matthew Frederick; Martins, Ricardo; Mertz, Jacob J.; Mountney, John; Neal, Robert Mark; Schloss, James; Stotts, Quintin; Wang, Ding; Bridges, Robert E., Apparatus and method of measuring six degrees of freedom.
  6. Bridges, Robert E.; Sullivan, Raymond; Moy, Eric J.; Hale, Michael J., Apparatus and method to compensate bearing runout in an articulated arm coordinate measurement machine.
  7. Bridges, Robert E.; Sullivan, Raymond; Moy, Eric J.; Hale, Michael J., Apparatus and method to compensate bearing runout in an articulated arm coordinate measurement machine.
  8. Bridges, Robert E., Apparatus and method to compensate bearing runout in laser tracker.
  9. Hull, Jerald A., Apparatus and method to optically locate workpiece for robotic operations.
  10. Bridges, Robert E., Apparatus to compensate bearing runout in a three-dimensional coordinate measuring system.
  11. Bridges, Robert E.; Atwell, Paul C., Articulated arm coordinate measurement machine having a 2D camera and method of obtaining 3D representations.
  12. Bridges, Robert E.; Atwell, Paul C., Articulated arm coordinate measurement machine having a 2D camera and method of obtaining 3D representations.
  13. Bridges, Robert E.; Atwell, Paul C., Articulated arm coordinate measurement machine having a 2D camera and method of obtaining 3D representations.
  14. Bridges, Robert E., Augmented reality camera for use with 3D metrology equipment in forming 3D images from 2D camera images.
  15. Cramer, Peter G.; Steffey, Kenneth; Hoffer, Jr., John M., Automated warm-up and stability check for laser trackers.
  16. Steffey, Kenneth; Steffensen, Nils P.; Bridges, Robert E., Automatic measurement of dimensional data with a laser tracker.
  17. Steffey, Kenneth; Steffensen, Nils P.; Bridges, Robert E., Automatic measurement of dimensional data with a laser tracker.
  18. Steffey, Kenneth; Steffensen, Nils P.; Bridges, Robert E., Automatic measurement of dimensional data with a laser tracker.
  19. Steffey, Kenneth; Steffensen, Nils P.; Bridges, Robert E., Automatic measurement of dimensional data with a laser tracker.
  20. Steffey, Kenneth, Automatic measurement of dimensional data within an acceptance region by a laser tracker.
  21. Barber, Marc M.; Briggs, Clark H., Coordinate measurement device.
  22. Bridges, Robert E.; Parker, David H., Coordinate measurement machine with distance meter and camera to determine dimensions within camera images.
  23. Bridges, Robert E.; Briggs, Clark H.; Hoffer, Jr., John M., Coordinate measurement machine with distance meter used to establish frame of reference.
  24. Atwell, Paul C.; Briggs, Clark H.; Stokes, Burnham, Coordinate measurement machines with removable accessories.
  25. Bailey, Brent; Barber, Marc M.; Briggs, Clark H.; Atwell, Paul C., Coordinate measurement machines with removable accessories.
  26. Bridges, Robert E.; Briggs, Clark H.; Hoffer, Jr., John M., Coordinate measurement machines with removable accessories.
  27. Kretschmer, Klaus; Bridges, Robert E.; Briggs, Clark H., Coordinate measurement machines with removable accessories.
  28. Böckem, Burkhard; Fuchs, Simon, Coordinate measuring device.
  29. Tohme, Yazid; Bridges, Robert E., Coordinate measuring device with a six degree-of-freedom handheld probe and integrated camera for augmented reality.
  30. Tohme, Yazid; Bridges, Robert E., Coordinate measuring device with a six degree-of-freedom handheld probe and integrated camera for augmented reality.
  31. Briggs, Clark H.; Danielson, David, Coordinate measuring machine having an illuminated probe end and method of operation.
  32. Briggs, Clark H.; Danielson, David, Coordinate measuring machine having an illuminated probe end and method of operation.
  33. Briggs, Clark H.; Bailey, Brent; Campbell, Kenneth, Coordinate measuring machines with dual layer arm.
  34. Brown, Lawrence B.; Lasley, Daniel G.; Garey, Jeremy M.; Steffensen, Nils P., Cube corner retroreflector for measuring six degrees of freedom.
  35. Demopoulos, Andreas Haralambos, Determining positions.
  36. Bridges, Robert E., Determining retroreflector orientation by optimizing spatial fit.
  37. Bridges, Robert E.; Brown, Lawrence B.; Hoffer, Jr., John M., Device and method for measuring six degrees of freedom.
  38. Bridges, Robert E.; Brown, Lawrence B.; Hoffer, Jr., John M.; Ackley, Kevin R., Device and method for measuring six degrees of freedom.
  39. Neundorf, Christoph; Becker, Reinhard, Device for optically scanning and measuring an environment.
  40. Schumann, Philipp; Becker, Reinhard; Ossig, Martin; Gittinger, Jürgen, Device for optically scanning and measuring an environment.
  41. Schumann, Philipp; Greiner, Alexander, Device for optically scanning and measuring an environment.
  42. Bridges, Robert E., Diagnosing multipath interference and eliminating multipath interference in 3D scanners by directed probing.
  43. Tohme, Yazid; Bridges, Robert E., Diagnosing multipath interference and eliminating multipath interference in 3D scanners using automated repositioning.
  44. Bridges, Robert E., Diagnosing multipath interference and eliminating multipath interference in 3D scanners using projection patterns.
  45. Bailey, Brent; Barber, Marc M.; Briggs, Clark H., Display for coordinate measuring machine.
  46. Bailey, Brent; Barber, Marc M.; Briggs, Clark H., Display for coordinate measuring machine.
  47. Brown, Lawrence B.; Day, Jonathan Robert, Enhanced position detector in laser tracker.
  48. Day, Jonathan Robert; Brown, Lawrence B.; West, James K., Gimbal instrument having a prealigned and replaceable optics bench.
  49. Bridges, Robert E.; Brown, Lawrence B.; West, James K.; Ackerson, D. Scott, Intensity modulation at two frequencies for interferometric measuring of distance.
  50. Zweigle, Oliver; Becker, Bernd-Dietmar; Becker, Reinhard, Intermediate two-dimensional scanning with a three-dimensional scanner to speed registration.
  51. Smith, Daniel G.; Goodwin, Eric Peter; Slotwinski, Anthony R.; Rezk, Mina A.; Cooper, Alexander; Hedges, Thomas M., Laser radar with remote local oscillator.
  52. Bridges, Robert E.; Becker, Reinhard, Laser scanner having a multi-color light source and real-time color receiver.
  53. Briggs, Clark H., Laser scanner or laser tracker having a projector.
  54. Steffey, Kenneth; Garey, Jeremy Markee; Day, Jonathan Robert; McDermott, Ian C.; White, Ian Vance; Jackson, Jr., Joseph W.; Messinger, Mathew Joseph, Laser tracker.
  55. Steffey, Kenneth; Garey, Jeremy Markee; Day, Jonathan Robert; McDermott, Ian C.; White, Ian Vance; Jackson, Jr., Joseph W.; Messinger, Matthew Joseph, Laser tracker.
  56. Bridges, Robert E.; Mertz, Jacob J., Laser tracker that combines two different wavelengths with a fiber-optic coupler.
  57. Bridges, Robert E.; Mertz, Jacob J., Laser tracker that uses a fiber-optic coupler and an achromatic launch to align and collimate two wavelengths of light.
  58. Bridges, Robert E., Laser tracker used with six degree-of-freedom probe having separable spherical retroreflector.
  59. Garey, Jeremy M.; Day, Jonathan Robert; Steffey, Kenneth; West, James K., Laser tracker with enhanced handling features.
  60. Steffey, Kenneth, Laser tracker with enhanced illumination indicators.
  61. Böckem, Burkhard, Laser tracker with hybrid imaging method for extending the measuring range.
  62. Sherman, William D.; Voth, Mitchell; Saint Clair, Jonathan, Laser videogrammetry.
  63. Bridges, Robert E.; Brown, Lawrence B.; West, James K.; Ackerson, D. Scott, Laser-based coordinate measuring device and laser-based method for measuring coordinates.
  64. Bridges, Robert E.; Brown, Lawrence B.; West, James K.; Ackerson, D. Scott, Locator camera arrangement having multiple light sources.
  65. Slotwinski, Anthony R.; Rezk, Mina A., Low drift reference for laser radar.
  66. Grau, Markus; Parker, David H., Measurement machine utilizing a barcode to identify an inspection plan for an object.
  67. Cramer, Peter G.; Bridges, Robert E.; Steffensen, Nils P.; Mehler, Robert C.; Steffey, Kenneth; Hoffer, John M.; Lasley, Daniel G., Measurement system having air temperature compensation between a target and a laser tracker.
  68. Taketomi, Naoyuki, Measurement system using tracking-type laser interferometer and return method of the measurement system.
  69. Gittinger, Juergen; Becker, Bernd-Dietmar; Becker, Reinhard, Method and an apparatus for capturing three-dimensional data of an area of space.
  70. Nagalla, Kalyan; Mehler, Robert C.; Bridges, Robert E., Method and apparatus for following an operator and locking onto a retroreflector with a laser tracker.
  71. Nagalla, Kalyan; Mehler, Robert C.; Bridges, Robert E., Method and apparatus for following an operator and locking onto a retroreflector with a laser tracker.
  72. Nagalla, Kalyan; Mehler, Robert C.; Bridges, Robert E., Method and apparatus for following an operator and locking onto a retroreflector with a laser tracker.
  73. Bridges, Robert E.; Park, Jennifer K., Method and apparatus for locking onto a retroreflector with a laser tracker.
  74. York, Frederick John, Method and apparatus for synchronizing measurements taken by multiple metrology devices.
  75. Bridges, Robert E.; Parker, David H.; Fletcher, Kelley, Method and apparatus for using gestures to control a laser tracker.
  76. Bridges, Robert E.; Parker, David H.; Fletcher, Kelley, Method and apparatus for using gestures to control a laser tracker.
  77. Bridges, Robert E.; Parker, David H.; Fletcher, Kelley, Method and apparatus for using gestures to control a laser tracker.
  78. Steffensen, Nils P.; Parker, David H., Method and apparatus for using gestures to control a laser tracker.
  79. Steffensen, Nils P.; Steffey, Kenneth; Hoffer, Jr., John M.; Bridges, Robert E., Method and apparatus for using gestures to control a laser tracker.
  80. Steffensen, Nils P.; Steffey, Kenneth; Hoffer, Jr., John M.; Bridges, Robert E., Method and apparatus for using gestures to control a laser tracker.
  81. Steffensen, Nils P.; Wilson, Todd P.; Steffey, Kenneth; Hoffer, Jr., John M.; Bridges, Robert E., Method and apparatus for using gestures to control a laser tracker.
  82. Steffensen, Nils P.; Wilson, Todd P.; Steffey, Kenneth; Hoffer, Jr., John M.; Bridges, Robert E., Method and apparatus for using gestures to control a laser tracker.
  83. Steffensen, Nils P.; Wilson, Todd P.; Steffey, Kenneth; Hoffer, Jr., John M.; Bridges, Robert E., Method and apparatus for using gestures to control a laser tracker.
  84. Steffensen, Nils P.; Wilson, Todd P.; Steffey, Kenneth; Hoffer, Jr., John M.; Bridges, Robert E., Method and apparatus for using gestures to control a laser tracker.
  85. Steffensen, Nils P.; Wilson, Todd P.; Steffey, Kenneth; Hoffer, Jr., John M.; Bridges, Robert E., Method and apparatus for using gestures to control a laser tracker.
  86. McColloch, Laurence R.; Momtahan, Omid, Method and device for measuring alignment of an optical surface of a lens block.
  87. Bridges, Robert E., Method for correcting a 3D measurement of a spherically mounted retroreflector on a nest.
  88. Bridges, Robert E., Method for correcting a spherically mounted retroreflector when resetting a distance meter.
  89. Bridges, Robert E., Method for correcting three-dimensional measurements of a spherically mounted retroreflector.
  90. York, Frederick John; Bailey, Brent, Method for evaluating mounting stability of articulated arm coordinate measurement machine using inclinometers.
  91. Bridges, Robert E., Method for finding a home reference distance using a spherically mounted retroreflector.
  92. Bridges, Robert E., Method for measuring 3D coordinates of a spherically mounted retroreflector from multiple stations.
  93. Atwell, Paul C.; Gong, Yu, Method for measuring 3D coordinates of a surface with a portable articulated arm coordinate measuring machine having a camera.
  94. Ossig, Martin; Frommhold, Dag; Flohr, Daniel, Method for optically scanning and measuring an environment.
  95. Ossig, Martin; Frommhold, Dag; Flohr, Daniel, Method for optically scanning and measuring an environment.
  96. Steffey, Kenneth; Pease, Gregory D.; Bridges, Robert E., Method for using a handheld appliance to select, lock onto, and track a retroreflector with a laser tracker.
  97. Parker, David H.; Payne, John M., Methods for measuring and modeling the process of prestressing concrete during tensioning/detensioning based on electronic distance measurements.
  98. Parker, David H., Methods for modeling amplitude modulated light through dispersive optical systems and electronic distance measurement instruments.
  99. Moy, Eric J., Metrology device and a method for compensating for bearing runout error.
  100. Holzapfel, Wolfgang; Stepputat, Michael; Vogt, Gerhard; Garczarek, Florian, Optical distance-measuring device.
  101. York, Frederick John, Portable articulated arm coordinate measuring machine and integrated electronic data processing system.
  102. Atwell, Paul C.; Briggs, Clark H.; Stokes, Burnham, Portable articulated arm coordinate measuring machine having integrated software controls.
  103. York, Frederick, Portable articulated arm coordinate measuring machine with multi-bus arm technology.
  104. Briggs, Clark H.; York, Frederick, Portable articulated arm coordinate measuring machine with optical communications bus.
  105. Barbier, Bruno; Potin, Laurent; Rouzes, Siegfried, Posture detection system with retroreflector comprising a wire-meshing.
  106. Becker, Bernd-Dietmar; Heidemann, Rolf; Zweigle, Oliver; Wolke, Matthias, Probe that cooperates with a laser tracker to measure six degrees of freedom.
  107. Rezk, Mina A.; Slotwinski, Anthony R.; Smith, Daniel G.; Goodwin, Eric Peter; Cooper, Alexander; Hedges, Thomas M., Radar systems with dual fiber coupled lasers.
  108. Rezk, Mina A.; Slotwinski, Anthony R.; Smith, Daniel G.; Goodwin, Eric Peter; Cooper, Alexander; Hedges, Thomas M., Radar systems with dual fiber coupled lasers.
  109. Marsh, Bobby J.; Georgeson, Gary E.; Thompson, Jeffrey R., Rapid automated infrared thermography for inspecting large composite structures.
  110. Zweigle, Oliver; Becker, Bernd-Dietmar; Becker, Reinhard, Registration calculation between three-dimensional (3D) scans based on two-dimensional (2D) scan data from a 3D scanner.
  111. Zweigle, Oliver; Becker, Bernd-Dietmar; Becker, Reinhard, Registration calculation of three-dimensional scanner data performed between scans based on measurements by two-dimensional scanner.
  112. de Smet, Pierre, Robot-cell calibration.
  113. Winker, Bruce K.; Wen, Bing; Ma, Jian, SNR enhancement in modulating retroreflector optical communication links.
  114. Goodwin, Eric Peter; Smith, Daniel G.; Cooper, Alexander; Rezk, Mina A.; Slotwinski, Anthony R.; Hedges, Thomas M., Scan mirrors for laser radar.
  115. Bridges, Robert E., Six degree-of-freedom laser tracker that cooperates with a remote line scanner.
  116. Bridges, Robert E.; Parker, David H., Six degree-of-freedom laser tracker that cooperates with a remote projector to convey information.
  117. Bridges, Robert E., Six degree-of-freedom laser tracker that cooperates with a remote sensor.
  118. Bridges, Robert E., Six degree-of-freedom laser tracker that cooperates with a remote structured-light scanner.
  119. Bridges, Robert E., Six degree-of-freedom triangulation scanner and camera for augmented reality.
  120. Edmonds, Peter; Steffey, Kenneth, Sphere bar probe.
  121. Bridges, Robert E., Spherically mounted retroreflector and method to minimize measurement error.
  122. Bridges, Robert E.; Steffey, Kenneth, Spherically mounted retroreflector having an embedded temperature sensor and socket.
  123. Stathis, Sam, System and method capable of navigating and/or mapping any multi-dimensional space.
  124. Eckley, David J., System and method for operating a machine and performing quality assurance.
  125. Tohme, Yazid, System and method of acquiring three-dimensional coordinates using multiple coordinate measurement devices.
  126. Tohme, Yazid, System and method of acquiring three-dimensional coordinates using multiple coordinate measurment devices.
  127. Tohme, Yazid, System and method of acquiring three-dimensional coordinates using multiple coordinate measurment devices.
  128. Atlas, Mikhail; Brown, Lawrence B.; Christine, William W.; Kim, Max K.; O'Neill, Daniel J.; Schloss, James; Xu, Zhiguang Willam; Bridges, Robert E., System for measuring six degrees of freedom.
  129. Cramer, Peter G.; Bridges, Robert E.; Steffensen, Nils P.; Mehler, Robert C.; Steffey, Kenneth; Hoffer, Jr., John M.; Lasley, Daniel G., Target apparatus and method of making a measurement with the target apparatus.
  130. Cramer, Peter G.; Bridges, Robert E.; Steffensen, Nils P.; Mehler, Robert C.; Steffey, Kenneth; Hoffer, Jr., John M.; Lasley, Daniel G., Target apparatus for three-dimensional measurement system.
  131. Cramer, Peter G.; Bridges, Robert E.; Steffensen, Nils P.; Mehler, Robert C.; Steffey, Kenneth; Hoffer, Jr., John M.; Lasley, Daniel G., Target method using indentifier element to obtain sphere radius.
  132. Khatuntsev, Nikolay V., Three dimensional laser measuring system and method.
  133. Becker, Bernd-Dietmar; Bridges, Robert E., Three-dimensional coordinate scanner and method of operation.
  134. Becker, Bernd-Dietmar; Bridges, Robert E., Three-dimensional coordinate scanner and method of operation.
  135. Tohme, Yazid; Pfeffer, Charles; Bridges, Robert E., Three-dimensional coordinate scanner and method of operation.
  136. Bridges, Robert E.; Becker, Reinhard, Three-dimensional scanner with dichroic beam splitters to capture a variety of signals.
  137. Bridges, Robert E.; Becker, Reinhard, Three-dimensional scanner with enhanced spectroscopic energy detector.
  138. Bridges, Robert E.; Tohme, Yazid; Becker, Bernd-Dietmar; Pfeffer, Charles, Three-dimensional scanner with external tactical probe and illuminated guidance.
  139. Bridges, Robert E.; Becker, Reinhard, Three-dimensional scanner with spectroscopic energy detector.
  140. Nara, Masayuki, Tracking type laser gauge interferometer with rotation mechanism correction.
  141. Bridges, Robert E., Triangulation scanner and camera for augmented reality.
  142. Bridges, Robert E., Triangulation scanner and camera for augmented reality.
  143. Bridges, Robert E., Triangulation scanner and camera for augmented reality.
  144. Bridges, Robert E., Triangulation scanner and camera for augmented reality.
  145. Zweigle, Oliver; Becker, Bernd-Dietmar; Becker, Reinhard, Using a two-dimensional scanner to speed registration of three-dimensional scan data.
  146. Zweigle, Oliver; Becker, Bernd-Dietmar; Becker, Reinhard, Using a two-dimensional scanner to speed registration of three-dimensional scan data.
  147. Zweigle, Oliver; Becker, Bernd-Dietmar; Becker, Reinhard, Using depth-camera images to speed registration of three-dimensional scans.
  148. Zweigle, Oliver; Becker, Bernd-Dietmar; Becker, Reinhard, Using two-dimensional camera images to speed registration of three-dimensional scans.
  149. Lau, Kam C.; Liu, Yuanqun; Qiao, Guixiu; Xie, Liangyun, Volumetric error compensation system with laser tracker and active target.
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