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Vehicle steerable by movement of center of gravity 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • B62D-061/00
출원번호 US-0558739 (2004-06-01)
등록번호 US-7481291 (2009-01-27)
우선권정보 JP-2003-159546(2003-06-04)
국제출원번호 PCT/JP04/007908 (2004-06-01)
§371/§102 date 20051201 (20051201)
국제공개번호 WO04/108513 (2004-12-16)
발명자 / 주소
  • Nishikawa,Gousuke
출원인 / 주소
  • Toyota Jidosha Kabushiki Kaisha
대리인 / 주소
    Oblon, Spivak, McClelland, Maier & Neustadt, P.C.
인용정보 피인용 횟수 : 57  인용 특허 : 5

초록

The present invention relates to a vehicle which can travel in the front and back direction and which can turn by right and left wheels rotated when a rider riding on a step-board moves the position of rider's balance from the center of a vehicle base. A vehicle which can be steered based on movemen

대표청구항

The invention claimed is: 1. A vehicle which can be steered based on movement of balance comprising: first and second wheels located at least on the same axis; first rotary drive means for rotating said first wheel and second rotary drive means for rotating said second wheel; a vehicle base having

이 특허에 인용된 특허 (5)

  1. Kamen, Dean L.; Field, Douglas; Heinzmann, Richard Kurt, Balancing personal vehicle.
  2. Li John, Human balance driven joystick.
  3. John B. Morrell ; Jonathan B. Pompa, Traction control for a personal transporter.
  4. J. Douglas Field ; John David Heinzmann, Trailer for balancing vehicle.
  5. Kamen Dean L. ; Ambrogi Robert R. ; Duggan Robert J. ; Heinzmann Richard Kurt ; Key Brian R. ; Skoskiewicz Andrzej ; Kristal Phyllis K., Transportation vehicles and methods.

이 특허를 인용한 특허 (57)

  1. Ying, Jiawei, All-attitude human-machine interaction vehicle.
  2. Ying, Jiawei, All-attitude human-machine interaction vehicle.
  3. Kamen, Dean; Ambrogi, Robert R.; Dattolo, James J.; Duggan, Robert J.; Field, J. Douglas; Heinzmann, Richard Kurt; McCambridge, Matthew M.; Morrell, John B.; Piedmonte, Michael D.; Rosasco, Richard J., Control of a personal transporter based on user position.
  4. Kamen, Dean; Ambrogi, Robert R.; Dattolo, James J.; Duggan, Robert J.; Field, J. Douglas; Heinzmann, Richard Kurt; McCambridge, Matthew M.; Morrell, John B.; Piedmonte, Michael D.; Rosasco, Richard J., Control of a personal transporter based on user position.
  5. Kamen, Dean; Ambrogi, Robert R.; Dattolo, James J.; Duggan, Robert J.; Field, J. Douglas; Heinzmann, Richard Kurt; McCambridge, Matthew M.; Morrell, John B.; Piedmonte, Michael D.; Rosasco, Richard J., Control of a personal transporter based on user position.
  6. Kamen, Dean; Ambrogi, Robert R.; Dattolo, James J.; Duggan, Robert J.; Field, J. Douglas; Heinzmann, Richard Kurt; McCambridge, Matthew M.; Morrell, John B.; Piedmonte, Michael D.; Rosasco, Richard J., Control of a personal transporter based on user position.
  7. Kamen, Dean; Ambrogi, Robert R.; Dattolo, James J.; Duggan, Robert J.; Field, J. Douglas; Heinzmann, Richard Kurt; McCambridge, Matthew M.; Morrell, John B.; Piedmonte, Michael D.; Rosasco, Richard J., Control of a personal transporter based on user position.
  8. Kamen, Dean; Ambrogi, Robert R.; Dattolo, James J.; Duggan, Robert J.; Field, J. Douglas; Heinzmann, Richard Kurt; McCambridge, Matthew M.; Morrell, John B.; Piedmonte, Michael D.; Rosasco, Richard J., Control of a personal transporter based on user position.
  9. Kamen, Dean; Ambrogi, Robert R.; Dattolo, James J.; Duggan, Robert J.; Field, J. Douglas; Heinzmann, Richard Kurt; McCambridge, Matthew M.; Morrell, John B.; Piedmonte, Michael D.; Rosasco, Richard J., Control of a personal transporter based on user position.
  10. Kamen, Dean; Ambrogi, Robert R.; Dattolo, James J.; Duggan, Robert J.; Field, J. Douglas; Heinzmann, Richard Kurt; McCambridge, Matthew M.; Morrell, John B.; Piedmonte, Michael D.; Rosasco, Richard J., Control of a personal transporter based on user position.
  11. Kamen, Dean; Ambrogi, Robert R.; Dattolo, James J.; Duggan, Robert J.; Field, J. Douglas; Heinzmann, Richard Kurt; McCambridge, Matthew M.; Morrell, John B.; Piedmonte, Michael D.; Rosasco, Richard J., Control of a personal transporter based on user position.
  12. Kamen, Dean; Ambrogi, Robert R.; Dattolo, James J.; Duggan, Robert J.; Field, J. Douglas; Heinzmann, Richard Kurt; McCambridge, Matthew M.; Morrell, John B.; Piedmonte, Michael D.; Rosasco, Richard J., Control of a personal transporter based on user position.
  13. Kamen, Dean; Ambrogi, Robert R.; Dattolo, James J.; Duggan, Robert J.; Field, J. Douglas; Heinzmann, Richard Kurt; McCambridge, Matthew M.; Morrell, John B.; Piedmonte, Michael D.; Rosasco, Richard J., Control of a personal transporter based on user position.
  14. Kamen, Dean; Rosasco, Richard J.; Ambrogi, Robert R.; Dattolo, James J.; Duggan, Robert J.; Field, J. Douglas; Heinzmann, Richard Kurt; McCambridge, Matthew M.; Morrell, John B.; Piedmonte, Michael D., Control of a personal transporter based on user position.
  15. Kamen, Dean; Heinzmann, Richard Kurt; Ambrogi, Robert R, Control of a transporter based on attitude.
  16. Kamen, Dean; Heinzmann, Richard Kurt; Ambrogi, Robert R., Control of a transporter based on attitude.
  17. Ying, Jiawei; Cao, Shaojun, Electric balance vehicle.
  18. Chen, Shane, Foot placement sensor and self-balancing personal transportation device having same.
  19. Strack, Jason Thomas, Fully self-balanced hands-free portable vehicle.
  20. Ying, Jiawei, Human-machine interaction vehicle.
  21. Ying, Jiawei, Human-machine interaction vehicle.
  22. Ying, Jiawei, Human-machine interaction vehicle.
  23. Ying, Jiawei, Human-machine interaction vehicle.
  24. Ying, Jiawei, Human-machine interaction vehicle.
  25. Ying, Jiawei, Human-machine interaction vehicle.
  26. Adachi, Yuji, Inverted two-wheeled robot.
  27. Coulter, Stewart M.; Gray, Brian G.; van der Merwe, Dirk A.; Dastous, Susan D.; Pawlowski, Daniel F., Mobility device control system.
  28. Gulak, Benjamin, Motorized cycle.
  29. Hosoda, Yuji, Moving robot.
  30. Sato, Kuniaki; Beppu, Yasunori; Gohira, Sahoko; Iino, Kento; Iwata, Sho, One-man riding mobile apparatus.
  31. Bigler, Robert A., Pitch-propelled vehicle.
  32. Bigler, Robert A., Pitch-propelled vehicle.
  33. Bigler, Robert A., Pitch-propelled vehicle.
  34. Bigler, Robert A., Pitch-propelled vehicle.
  35. Bigler, Robert A., Pitch-propelled vehicle.
  36. Edney, Daniel Bryan Laird, Portable two-wheeled self-balancing personal transport vehicle.
  37. Ying, Jiawei; Lin, Yunfei, Pressure control steering.
  38. Blackwell, Trevor; Casner, Daniel; Wiley, Scott; Nelson, Benjamin, Remotely controlled self-balancing robot including a stabilized laser pointer.
  39. Blackwell, Trevor; Casner, Daniel; Wiley, Scott, Remotely controlled self-balancing robot including kinematic image stabilization.
  40. Yao, Yuman, Self-balance vehicle.
  41. Wood, Daniel J., Self-balancing electric vehicle with strain-based controls.
  42. Sokol, John L.; Blackwell, Trevor; Wiley, Scott; Casner, Daniel; Holson, Benjamin, Self-balancing robot having a shaft-mounted head.
  43. Blackwell, Trevor; Casner, Daniel; Nelson, Benjamin; Wiley, Scott, Self-balancing robot including an ultracapacitor power source.
  44. Wood, Daniel J., Self-balancing skateboard with strain-based controls and suspensions.
  45. Chen, Robert; Huang, Joey; Yang, Sheng-Chih; Desberg, Ian, Self-balancing two-wheeled board.
  46. Lee, So-Young; Kang, Jeong-Ho; Kim, Min-Kyu, Small mobile robot with built-in auxiliary wheel for overcoming topography.
  47. Ishii, Shinji; Yamano, Ikuo, Traveling apparatus.
  48. Desberg, Ian, Two wheeled board.
  49. Desberg, Ian, Two wheeled board.
  50. Desberg, Ian, Two wheeled board.
  51. Desberg, Ian, Two wheeled board.
  52. Desberg, Ian, Two wheeled board.
  53. Lu, Nanfang, Two-axle vehicle balance scooter.
  54. Chen, Shane, Two-wheel self-balancing vehicle with independently movable foot placement sections.
  55. Ito, Hirokazu; Koike, Kazuo; Fujimoto, Yoshitomo, Vehicle steerable by movement of center of gravity.
  56. Treadway, Peter, Wearable mobility device.
  57. Koide, Mitsuo; Sukigara, Kazutoshi; Tsusaka, Yuji; Izuo, Takashi; Yamaoka, Masaaki; Yamada, Koji, Wheeled inverted pendulum mobile unit.
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