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Method and apparatus for statically aligning shafts and monitoring shaft alignment 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G01J-001/20
출원번호 US-0430333 (1982-09-30)
발명자 / 주소
  • Malak Stephen P. (Milwaukee WI)
출원인 / 주소
  • Spring-Mornne, Inc. (Milwaukee WI 02)
인용정보 피인용 횟수 : 106  인용 특허 : 0

초록

A method and apparatus for statically aligning, checking or monitoring the alignment of a first shaft with a second shaft, one shaft being preferably chosen as a reference shaft to which the other shaft is aligned, the apparatus comprising a first mount means mounted on the first shaft and having mo

대표청구항

A shaft alignment apparatus for statically aligning a first shaft with a second shaft, comprising: a first dual-axis position sensing detector providing a first signal; a second dual-axis position sensing detector providing a second signal; first mount means for mounting the first dual-axis position

이 특허를 인용한 특허 (106)

  1. Nower, Daniel L.; Abnett, Albert C.; Hinkle, David A., Accelerometer based angular position sensor.
  2. Angood,Stephen M.; McMurtry,David R., Aligning components of a measuring system.
  3. Angood,Stephen M.; McMurtry,David R., Aligning components of a measuring system.
  4. Chapman,Mark Adrian Vincent; McMurtry,David Roberts; Taylor,Benjamin Roller, Aligning optical components of an optical measuring system.
  5. Lindberg, Stefan; Hedlund, Hakan; Kummelstam, Jim; Lindberg, Jarl-Ove, Analysis system.
  6. Lindberg, Stefan; Hedlund, Hakan; Kummelstam, Jim; Lindberg, Jarl-Ove, Analysis system.
  7. Lindberg,Stefan; Hedlund,H책kan; Kummelstam,Jim; Lindberg,Jarl Ove, Analysis system.
  8. Lindberg,Stefan; Hedlund,H?kan; Kummelstam,Jim; Lindberg,Jarl Ove, Analysis system for analyzing the condition of a machine.
  9. Lindberg,Stefan; Hedlund,H?kan; Kummelstam,Jim; Lindberg,Jarl Ove, Analysis system for analyzing the condition of a machine.
  10. Hubble ; III Fred F. (Rochester NY) Martin James P. (Rochester NY) Powers Edward A. (Penfield NY) Ossman Kenneth R. (Macedon NY), Apparatus and method for beam steering in a raster output scanner.
  11. Hölzl, Roland, Apparatus and method for determining the target position deviation of two bodies.
  12. Alexander, Paul; Aragon, Steven, Apparatus and method utilizing forced convection for uniform thermal treatment of thin film devices.
  13. Lindberg,Stafan; Hedlund,H��kan; Kummelstam,Jim; Lindberg,Jarl Ove, Apparatus for analysing the condition of a machine.
  14. Doering, Kenneth B.; Wieting, Robert D., Apparatus for manufacturing thin film photovoltaic devices.
  15. Farris, III, Chester A.; Brown, Albert S., Application specific solar cell and method for manufacture using thin film photovoltaic materials.
  16. Farris, III, Chester A.; Brown, Albert S., Application specific solar cell and method for manufacture using thin film photovoltaic materials.
  17. Alexander, Paul, Bell jar extraction tool method and apparatus for thin film photovoltaic materials.
  18. Lee, Howard W. H., Bulk chloride species treatment of thin film photovoltaic cell and manufacturing method.
  19. Lee, Howard W. H., Bulk metal species treatment of thin film photovoltaic cell and manufacturing method.
  20. Lee, Howard W. H., Bulk sodium species treatment of thin film photovoltaic cell and manufacturing method.
  21. Lee, Howard W. H., Bulk sulfide species treatment of thin film photovoltaic cell and manufacturing method.
  22. Lee, Howard W. H., Chloride species surface treatment of thin film photovoltaic cell and manufacturing method.
  23. Brignone, Cyril; Mesarina, Malena; Recker, John, Configuring sensor network behavior using tag identifiers.
  24. Buquing, Miljon T., Consumable adhesive layer for thin film photovoltaic material.
  25. Lee, Howard W. H., Copper species surface treatment of thin film photovoltaic cell and manufacturing method.
  26. Weihrauch, Rainer, Device and method for determining the orientation of two shafts connected via two universal joints and a third shaft with a pivot joint.
  27. Canu, Gianluca; Glaser, Bernhard; Konetschny, Volker; Wegener, Martin, Device and method for determining the position of two coupled shafts with respect to each other.
  28. Strömberg, Peter, Device and method for measuring and aligning a first component and a second component in relation to each other.
  29. Hermann, Michael, Device and process for quantitative assessment of the three-dimensional position of two machine parts, shafts, spindles, workpieces or other articles relative to one another.
  30. Barth, Rudolf, Device for adjusting the light source of an electronic alignment device, operation being simplified by motorized adjustment of the light source, and a method in which this device is used.
  31. Lysen Heinrich (Munich DEX), Device for ascertaining alignment errors in shafts arranged in tandem.
  32. Lysen Heinrich (Kirchenstrasse 95 D-8000 Mnchen 80 DEX) Busch Dieter (Am Isarberg 1 D-8045 Ismaning DEX) Wagner Karl (Wackneroderstrasse 8 D-8000 Mnchen 83 DEX), Device for determining and monitoring changes in the position of shafts.
  33. Lysen, Heinrich, Device for determining the position of mechanical elements.
  34. Busch, Dieter; Holzl, Roland; Unger, Andreas; Pfister, Florian; Hermann, Michael, Device for precision alignment of shafts, rollers, axles, spindles or machine tools.
  35. Berend, Michael; Nielsen, Jonathan; van der Walt, Nicholas; Small, Scott Richard, Devices and methods for knee arthroplasty.
  36. Moradi Mohammad A. (W. Bloomfield MI) Rossman Michael D. (Canton MI) LaBell Larry (Grosse Ile MI) Holz Bonita (Dearborn MI), Driveline alignment apparatus and method.
  37. Busch Dieter (Ismaning DEX), Electro-optic device for continuously monitoring the relative positions of two machines or parts thereof.
  38. Hermann, Michael, Electrooptical measurement device for ascertaining the relative position of bodies or of surface areas of these bodies.
  39. Luterotti, Lorenzo; Ceppa, Mauro, False ceiling fire detector assembly.
  40. Lee, Howard W. H., High efficiency photovoltaic cell and manufacturing method free of metal disulfide barrier material.
  41. van der Walt, Nicholas; Ryan, Matthew; Nielsen, Jonathan, Hip replacement navigation system and method.
  42. Borja, Santiago P., Hip surgery systems and methods.
  43. Borja, Santiago P., Hip surgery systems and methods.
  44. Wieting, Robert D., Humidity control and method for thin film photovoltaic materials.
  45. Wieting, Robert D., In chamber sodium doping process and system for large scale cigs based thin film photovoltaic materials.
  46. Wieting, Robert D., Large scale chemical bath system and method for cadmium sulfide processing of thin film photovoltaic materials.
  47. Nower Daniel L. (Knoxville TN) Gaddis David Q. (Knoxville TN), Laser alignment head for use in shaft alignment.
  48. Malsam,Craig S., Laser alignment system for a mechanized irrigation system.
  49. Wieting, Robert D., Manufacturing method for patterning CIGS/CIS solar cells.
  50. Lysen,Heinrich, Measurement device and process for determining the straightness of hollow cylindrical or hollow conical bodies and their orientation relative to one another.
  51. Lee, Howard W. H., Metal species surface treatment of thin film photovoltaic cell and manufacturing method.
  52. Zöcke, Christine; Meunier, Nicolas; Brunn, Dietrich, Method and apparatus for determining the distance of a light beam from a point on a surface of an object.
  53. Foley,David, Method and apparatus for object alignment.
  54. Ramanathan, Kannan; Wieting, Robert D., Method and device for cadmium-free solar cells.
  55. Tandon, Ashish; Wieting, Robert D.; Schmizberger, Jurg; Alexander, Paul, Method and structure for processing thin film PV cells with improved temperature uniformity.
  56. Lee, Howard W. H., Method and structure for thin film photovoltaic cell using similar material junction.
  57. Lee, Howard W. H., Method and structure for thin film photovoltaic materials using bulk semiconductor materials.
  58. Wieting, Robert D., Method and structure for tiling industrial thin-film solar devices.
  59. Lee, Howard W. H.; Farris, III, Chester A., Method and system for large scale manufacture of thin film photovoltaic devices using multi-chamber configuration.
  60. Lee, Howard W. H.; Farris, III, Chester A., Method and system for large scale manufacture of thin film photovoltaic devices using multi-chamber configuration.
  61. Lee, Howard W. H.; Farris, III, Chester A., Method and system for large scale manufacture of thin film photovoltaic devices using single-chamber configuration.
  62. Weiting, Robert D., Method and system for recycling processing gas for selenization of thin film photovoltaic materials.
  63. Busch, Dieter; Lysen, Heinrich, Method for determining a quality characteristic and for vibration measurement.
  64. Busch, Dieter; Lysen, Heinrich, Method for determining a quality characteristic and vibration measurement method.
  65. Lenz, Hans, Method for determining the orientation of two shafts connected via two universal joints and a third shaft in the plane of the three shafts.
  66. Weihrauch, Rainer, Method for determining the orientation of two shafts connected via two universal joints and a third shaft with a pivot joint.
  67. Patterson, Frank, Method for improved patterning accuracy for thin film photovoltaic panels.
  68. Lee, Howard W. H.; Farris, III, Chester A., Method for large scale manufacture of thin film photovoltaic devices using multi-chamber configuration.
  69. Huang, Jinman; Lee, Howard W. H., Method for manufacture of semiconductor bearing thin film material.
  70. Wieting, Robert D., Method of manufacture of sodium doped CIGS/CIGSS absorber layers for high efficiency photovoltaic devices.
  71. Lysen Heinrich,DEX, Method of mutually aligning bodies and position-measuring sensor therefor.
  72. Lee, Howard W. H., Methods for infusing one or more materials into nano-voids of nanoporous or nanostructured materials.
  73. Garner Dennis B., Misalignment detection apparatus and method.
  74. Barbier, Bruno; Potin, Laurent; Rouzes, Siegfried, Optical system for measuring the orientation of a helmet using corner cubes and a telecentric emission lens.
  75. Christian Albrecht DE, Orientation measuring device.
  76. Wieting, Robert D., Patterning electrode materials free from berm structures for thin film photovoltaic cells.
  77. Lee, Howard W. H., Processing method for cleaning sulfur entities of contact regions.
  78. Alexander, Paul; Schmitzberger, Jurg; Tandon, Ashish; Wieting, Robert D., Quartz boat method and apparatus for thin film thermal treatment.
  79. Alexander, Sean J.; Johnston, Ronald K., Shaft alignment tools and methods.
  80. Lee, Howard W. H., Sodium species surface treatment of thin film photovoltaic cell and manufacturing method.
  81. Lee, Howard W. H., Sulfide species treatment of thin film photovoltaic cell and manufacturing method.
  82. Stone, A. Curt; Russial, Joseph F., Surgical orientation device and method.
  83. Stone, A. Curt; Russial, Joseph F., Surgical orientation device and method.
  84. Stone, A. Curt, Surgical orientation system and method.
  85. Stone, A. Curt, Surgical orientation system and method.
  86. Rubio Aguilera, Javier; Casanova Montpeyo, Oriol, Syringe needle position and deviation correction method in a machine for the automatic preparation of intravenous medication.
  87. Wieting, Robert D., System and method for transferring substrates in large scale processing of CIGS and/or CIS devices.
  88. Borja, Santiago P.; van der Walt, Nicholas, Systems and methods for joint replacement.
  89. van der Walt, Nicholas, Systems and methods for joint replacement.
  90. van der Walt, Nicholas; Borja, Santiago P., Systems and methods for joint replacement.
  91. van der Walt, Nicholas; Borja, Santiago P., Systems and methods for joint replacement.
  92. van der Walt, Nicholas; Borja, Santiago P., Systems and methods for joint replacement.
  93. van der Walt, Nicholas; Borja, Santiago P., Systems and methods for joint replacement.
  94. van der Walt, Nicholas; Shapiro, Charles S.; Borja, Santiago P., Systems and methods for joint replacement.
  95. van der Walt, Nicholas; Shapiro, Charles; Lane, Richard; Ryan, Matt, Systems and methods for joint replacement.
  96. van der Walt, Nicholas; Shapiro, Charles; Lane, Richard; Ryan, Matt, Systems and methods for joint replacement.
  97. van der Walt, Nicholas; Shapiro, Charles; Lane, Richard; Ryan, Matt, Systems and methods for joint replacement.
  98. van der Walt, Nicholas; Shapiro, Charles; Ryan, Matt; Nash, Sean, Systems and methods for joint replacement.
  99. Wieting, Robert D., Thermal management and method for large scale processing of CIS and/or CIGS based thin films overlying glass substrates.
  100. Wieting, Robert D., Thermal management and method for large scale processing of CIS and/or CIGS based thin films overlying glass substrates.
  101. Wieting, Robert D., Thermal management and method for large scale processing of CIS and/or CIGS based thin films overlying glass substrates.
  102. Wieting, Robert D., Thermal management and method for large scale processing of CIS and/or CIGS based thin films overlying glass substrates.
  103. Wieting, Robert D., Thermal pre-treatment process for soda lime glass substrate for thin film photovoltaic materials.
  104. Lee, Howard W. H., Thin film metal oxide bearing semiconductor material for single junction solar cell devices.
  105. Wieting, Robert D., Zinc oxide film method and structure for CIGS cell.
  106. Wieting, Robert D., Zinc oxide film method and structure for cigs cell.
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