$\require{mediawiki-texvc}$

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.

Device for measuring components of force and moment in plural directions 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G01L-005/16
출원번호 US-0365797 (1982-04-05)
우선권정보 JP-0056004 (1981-04-13)
발명자 / 주소
  • Hayashi Junichi (Akashi JPX)
출원인 / 주소
  • Yamato Scale Company, Ltd. (Hyogo JPX 03)
인용정보 피인용 횟수 : 104  인용 특허 : 1

초록

A device for measuring components of force and moment along and about three orthogonal axes, composed generally of a central hub portion, an annular rim portion and four radial spoke portions connecting the hub and rim portions and having strain gages adhered thereon for producing electric signals i

대표청구항

A device for measuring components of force and moment in plural directions, comprising a central hub portion, a rigid annular rim portion, a plurality of spoke portions extending outwardly from said hub portion with pairs of spoke portions positioned in mutually orthogonal radial directions and each

이 특허에 인용된 특허 (1)

  1. Ormond Alfred Newman (11969 E. Rivera Road Santa Fe Springs CA 90670), Shear measuring flexure isolated load cells.

이 특허를 인용한 특허 (104)

  1. Kim, Jong Ho; Kwon, Hyun Joon; Kim, Dong-ki, 6-axis sensor structure using force sensor and method of measuring force and moment therewith.
  2. Kang Dae Im,KRX ; Kim Gab Soon,KRX ; Song Hou Keun,KRX, 6-component load cell.
  3. Kicher Thomas P. ; Kicher Paul T., Acceleration transducer and method.
  4. Li, Hongmei; Williams, Richard Q., Analysis of compensated layout shapes.
  5. Ulman, Richard J.; Teman, William R.; Rohrig, David A., Apparatus and method for measuring forces and moments acting on models tested in aerodynamic wind tunnels.
  6. Okada, Toru; Kakebayashi, Yasunori, Calibration method for multi-component force measuring spindle unit used in tire testing machine.
  7. Sakurai, Nobuhiro; Ohsato, Takeshi, Chip for force sensor and force sensor.
  8. Rosenberg, Louis B.; Schena, Bruce M., Computer interface apparatus including linkage having flex.
  9. Rosenberg, Louis B.; Schena, Bruce M., Computer interface apparatus including linkage having flex.
  10. Rosenberg,Louis B.; Chang,Dean C., Designing force sensations for force feedback computer applications.
  11. Schmieder Lothar (Gernholzweg 4 8031 Gilching DEX), Device for measuring forces and torque in different directions.
  12. Rosenberg, Louis B.; Schena, Bruce M.; Brave, Scott B.; Jackson, Bernard G., Digitizing system and rotary table for determining 3-D geometry of an object.
  13. Rosenberg,Louis B.; Schena,Bruce M.; Jackson,Bernard G., Digitizing system and rotary table for determining 3-D geometry of an object.
  14. Moore, David F.; Martin, Kenneth M.; Vassallo, Steve P.; Rosenberg, Louis B., Flexure mechanism for interface device.
  15. Hirabayashi, Yusuke; Ohsato, Takeshi; Sakurai, Nobuhiro; Yasuie, Shigenori; Yokobayashi, Hiroshi, Force Sensor.
  16. Rosenberg,Louis B.; Chang,Dean C., Force feedback applications based on cursor engagement with graphical targets.
  17. Louis B. Rosenberg ; Bernard G. Jackson, Force feedback device including flexure member between actuator and user object.
  18. Rosenberg,Louis B.; Jackson,Bernard G., Force feedback device including non-rigid coupling.
  19. Rosenberg,Louis B., Force feedback device with microprocessor receiving low level commands.
  20. Rosenberg,Louis B.; Schena,Bruce M., Force feedback devices using fluid braking.
  21. Rosenberg, Louis B.; Tan, Sian W., Force feedback enabled over a computer network.
  22. Rosenberg Louis B., Force feedback interface apparatus including backlash and for generating feel sensations.
  23. Rosenberg Louis B. ; Schena Bruce M., Force feedback interface device including grounded sensor system.
  24. Rosenberg Louis B. ; Schena Bruce M. ; Gillespie Richard B., Force feedback interface devices providing resistance forces using a fluid.
  25. Izumi Kohji (Yokohama JPX) Eguti Hirotoshi (Yokohama JPX) Ohta Eiichi (Yokohama JPX) Kimura Yuhji (Yokohama JPX) Ebi Yutaka (Yokohama JPX), Force sensing apparatus.
  26. Izumi Kohji (Yokohama JPX) Eguti Hirotoshi (Yokohama JPX) Ohta Eiichi (Yokohama JPX) Kimura Yuhji (Yokohama JPX) Ebi Yutaka (Yokohama JPX), Force sensing apparatus.
  27. Oddsson Lars I. E. ; Cardoza Charles M., Force sensing device.
  28. Hirabayashi, Yusuke, Force sensor.
  29. Hirabayashi, Yusuke; Ohsato, Takeshi; Sakurai, Nobuhiro; Yasuie, Shigenori; Yokobayashi, Hiroshi, Force sensor.
  30. Hirabayashi, Yusuke; Sakurai, Nobuhiro; Ohsato, Takeshi, Force sensor chip.
  31. Sakurai, Nobuhiro; Ohsato, Takeshi, Force sensor chip.
  32. Blumenkranz, Stephen J, Force sensor temperature compensation.
  33. Blumenkranz, Stephen J., Force sensor temperature compensation.
  34. Kim, Bongseok; Hwang, Junghoon; Park, Changwoo; Kim, Taekeun; Choi, Seungyun, Force torque sensor, force torque sensor frame, and force torque measurement method.
  35. Lauzier, Nicolas; Lefrançois, Simon; Castonguay, David; Allen Demers, Louis-Alexis; Duval, Jean-François; Drolet Mihelic, Yan; Proulx, Pierre Olivier; Bekhti, Rachid; Cardou, Philippe; Duchaine, Vincent; Bouchard, Samuel; Jobin, Jean-Philippe, Force/torque sensor, apparatus and method for robot teaching and operation.
  36. Lauzier, Nicolas; Lefrançois, Simon; Castonguay, David; Allen Demers, Louis-Alexis; Duval, Jean-François; Drolet Mihelic, Yan; Proulx, Pierre Olivier; Bekhti, Rachid; Cardou, Philippe; Duchaine, Vincent; Bouchard, Samuel; Jobin, Jean-Philippe, Force/torque sensor, apparatus and method for robot teaching and operation.
  37. Rosenberg Louis B. ; Schena Bruce M., High bandwidth force feedback interface using voice coils and flexures.
  38. Rosenberg,Louis B.; Brave,Scott B., Interactions between simulated objects with force feedback.
  39. Brannon Daniel J., Joystick apparatus for measuring handle movement with six degrees of freedom.
  40. Rosenberg,Louis B., Laparoscopic simulation interface.
  41. Meyer Richard A. ; Burruss David M. ; Schulz Michael Gary ; Leise Philip E., Load cell body.
  42. Meyer Richard A. (Carver MN) Olson Douglas J. (Plymouth MN), Load transducer.
  43. Berme, Necip; Hoffman, Benjamin Robert, Load transducer and force measurement assembly using the same.
  44. Berme, Necip; Hoffman, Benjamin Robert, Load transducer and force measurement assembly using the same.
  45. Berme, Necip; Ober, Jan Jakub, Load transducer system configured to correct for measurement errors in the output forces and/or moments of the system.
  46. Berme, Necip; Hoffman, Benjamin Robert, Low profile load transducer.
  47. Sato Akira (Saitama JPX) Hama Kazuaki (Tokyo JPX) Nakao Makoto (Tokyo JPX) Misawa Junichi (Tokyo JPX) Suzuki Hiroyuki (Kanagawa JPX), Measuring apparatus.
  48. Ryan D. Bruneau ; Kenneth M. Martin ; Louis B. Rosenberg ; David F. Moore ; Bruce M. Schena, Mechanical and force transmission for force feedback devices.
  49. Rosenberg Louis B. ; Jackson Bernard G., Method and apparatus for controlling human-computer interface systems providing force feedback.
  50. Rosenberg, Louis B., Method and apparatus for controlling human-computer interface systems providing force feedback.
  51. Norm Gitis ; Michael Vinogradov ; Vlad Dorfman, Method and apparatus for measuring friction and wear characteristics of materials.
  52. Bevirt, JoeBen; Moore, David F.; Norwood, John Q.; Rosenberg, Louis B.; Levin, Mike D., Method and apparatus for providing an interface mechanism for a computer simulation.
  53. Bevirt,JoeBen; Moore,David F.; Norwood,John Q.; Rosenberg,Louis B.; Levin,Mike D., Method and apparatus for providing an interface mechanism for a computer simulation.
  54. Rosenberg,Louis B.; Chang,Dean C., Method and apparatus for providing dynamic force sensations for force feedback computer applications.
  55. Martin, Kenneth M.; Levin, Mike D.; Rosenberg, Louis B., Method and apparatus for providing force feedback using multiple grounded actuators.
  56. Anastas, George V.; Olien, Neil T., Method and apparatus for providing haptic effects to a touch panel using magnetic devices.
  57. Rosenberg Louis B., Method and apparatus for providing high bandwidth, low noise mechanical I/O for computer systems.
  58. Louis B. Rosenberg ; Bruce M. Schena ; Richard B. Gillespie, Method and apparatus for providing passive fluid force feedback.
  59. Rosenberg Louis B. ; Brave Scott B., Method and apparatus for providing simulated physical interactions within computer generated environments.
  60. Rosenberg,Louis B.; Braun,Adam C., Method and apparatus for streaming force values to a force feedback device.
  61. Rosenberg Louis B. ; Schena Bruce M. ; Brave Scott B., Method and apparatus for tracking the position and orientation of a stylus and for digitizing a 3-D object.
  62. Rosenberg Louis B. ; Schena Bruce M. ; Jackson Bernard G., Method and apparatus for tracking the position and orientation of a stylus and for digitizing a 3-D object.
  63. Gutierrez Lopez, Maria Dolores; Garcia De Jalon De La Fuente, Javier, Method and system for estimating the forces and torques generated by the contact of a tire with the road in an instrumented wheel.
  64. Caretta, Renato; Mancosu, Federico; Calatroni, Andrea; Diana, Giorgio; Cheli, Federico; Cigada, Alfredo, Method for determining a force at the hub of a wheel of a vehicle while traveling and wheel suitable for allowing said method to be carried out.
  65. Rosenberg Louis B. ; Brave Scott B., Method for providing force feedback to a user of an interface device based on interactions of a controlled cursor with graphical elements in a graphical user interface.
  66. Yasutake, Taizo, Methods and apparatus for providing touch-sensitive input in multiple degrees of freedom.
  67. Yasutake, Taizo, Methods and apparatus for providing touch-sensitive input in multiple degrees of freedom.
  68. Ohsato,Takeshi; Sakurai,Nobuhiro; Hirabayashi,Yusuke; Yokobayashi,Hiroshi, Multi-axis force sensor chip and multi-axis force sensor using same.
  69. Meyer Richard A., Multi-axis load cell.
  70. Meyer, Richard A.; Olson, Douglas J., Multi-axis load cell.
  71. Sommerfeld Jodi L. ; Meyer Richard A. ; Larson Brett A. ; Olson Douglas J., Multi-axis load cell.
  72. Meyer, Richard A.; Kempainen, Alan J.; Olson, Douglas J., Multi-axis load cell body.
  73. Sumitani, Takashi; Sumimoto, Yu; Kanei, Naofumi, Multi-component force measurement spindle unit of tire testing machine.
  74. Siklos, Norbert; Czupi, Balint; Krizsan, Norbert; Beky, Zsofia, Multi-degree of freedom transducer.
  75. Szasz, Paul; Wetzko, Manfred; Krippner, Peter; Brogardh, Torgny; Roos, Markus, Multiaxial force-torque sensors.
  76. Bacher, Gerarld; Dorrie, Dieter, Multicomponent measuring wheel.
  77. Kurtz, Anthony D.; Kane, Adam; Martin, Richard; Gardner, Robert, Multiple axis load cell controller.
  78. Rosenberg Louis B., Multiple degree-of-freedom mechanical interface to a computer system.
  79. Rosenberg, Louis B.; Brave, Scott B.; Tan, Sian W., Networked applications including haptic feedback.
  80. Rosenberg, Louis B.; Brave, Scott B.; Tan, Sian W., Networked applications including haptic feedback.
  81. Rosenberg, Louis B., Passive force feedback for computer interface devices.
  82. Meyer, Richard A.; Olson, Douglas J.; Kunsch, Ian T., Platform balance.
  83. Boronkay,Allen R.; Schena,Bruce M.; Hasser,Christopher J., Position sensor with resistive element.
  84. Rosenberg,Louis B.; Braun,Adam C.; Schena,Bruce M., Power management for interface devices applying forces.
  85. Rosenberg Louis B. ; Schena Bruce M. ; Jackson Bernard G., Probe apparatus and method for tracking the position and orientation of a stylus and controlling a cursor.
  86. Rosenberg,Louis B.; Brave,Scott B., Providing force feedback to a user of an interface device based on interactions of a user-controlled cursor in a graphical user interface.
  87. Blumenkranz, Stephen J.; Hasser, Christopher J., Ribbed force sensor.
  88. Blumenkranz, Stephen J.; Hasser, Christopher J., Ribbed force sensor.
  89. Christmann, H. Aaron, Rotatable torque-measuring apparatus and method.
  90. Rosenberg Louis B. (Pleasanton CA) Braun Adam C. (Sunnyvale CA) Schena Bruce M. (Menlo Park CA), Safe and low cost computer peripherals with force feedback for consumer applications.
  91. Ohsato, Takeshi; Hirabayashi, Yusuke, Six-axis force sensor.
  92. Ohsato, Takeshi; Hirabayashi, Yusuke, Six-axis force sensor chip and six-axis force sensor using the same.
  93. Bryant, Thomas M.; Harkawik, Phillip T.; Nord, Joseph E.; Shapiro, Danny; Wostbrock, Neal, Strain sensor assembly.
  94. Kistler,Walter P., Strain sensor that compensates for thermal strain.
  95. Miyazaki Nagao,JPX, Stress composite sensor and stress measuring device using the same for structure.
  96. Moore, David F.; Shahoian, Erik J.; Schena, Bruce M., System and method for providing directional tactile sensations.
  97. Kempainen, Alan J.; Sauber, Justin, Three-axis low profile load cell and sensing beam.
  98. Stopps, Alexander Thomas James, Torque measurement flexplates.
  99. Yasutake Taizo, Touch sensitive input control device.
  100. Yasutake Taizo, Touch sensitive input control device.
  101. Haeg, Steve R.; Meyer, Richard A., Transducer for measuring displacement of a vehicle spindle.
  102. Meyer, Richard A.; Josephson, Robert L.; Christopherson, Jason A.; Osmundson, Todd Robert; LaMoore, Nicholas Devon; Rogotzke, Riley August, Two-axis sensor body for a load transducer.
  103. Abu-Farha, Fadi; Khraisheh, Marwan, Uniaxially-driven controlled biaxial testing fixture.
  104. Kuchler Maximilian,DEX ; Meier Hubert,DEX ; Nohl Friedrich,DEX ; Ferrufino-Camacho David-Alfredo,DEX, Wheel force measuring hub assembly.
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