Claims
- 1. An attachment mechanism for attaching a motor to a transport, said attachment mechanism comprising:
a housing for containing said motor; and attachment means for attaching said housing in a fixed relationship with said transport, said attachment means being movably attached to said housing; wherein said attachment mechanism is configured such that when the housing containing the motor is attached to said transport, said attachment means is fixed with respect to said transport and said housing is moveable with respect to said transport.
- 2. The attachment mechanism of claim 1, further comprising a motor support for attaching to said transport and to the housing.
- 3. The attachment mechanism of claim 2, wherein said motor support comprises at least one projection for attaching to said housing.
- 4. The attachment mechanism of claim 3, wherein said at least one projection comprises two projections disposed on opposing sides of a bottom of said motor support.
- 5. The attachment mechanism of claim 2, wherein said motor support comprises a mounting slot for receiving said attachment means.
- 6. The attachment mechanism of claim 5, wherein said attachment means further comprises a tab, and said mounting slot is defined in part by an abutment wall for contacting said tab to hold said motor to said transport.
- 7. The attachment mechanism of claim 2, wherein said motor support further comprises a bracket for attaching said motor support to said transport.
- 8. The attachment mechanism of claim 7,wherein said bracket has an interior surface and said motor support has a complementary interior surface, said interior surface and said complementary interior surface being configured to engage posts having different diameters.
- 9. The attachment mechanism of claim 1, wherein said housing further comprises a groove for defining a movement path of said housing with respect to said transport.
- 10. The attachment mechanism of claim 9, further comprising a motor support for attaching to said transport, said motor support comprises at least one projection, wherein said at least one projection is received in said groove to limit movement of said housing to said movement path.
- 11. The attachment mechanism of claim 1, further comprising an arm for operating said attachment means.
- 12. The attachment mechanism of claim 1, wherein said housing further comprises an oblong opening for receiving said attachment means.
- 13. The attachment mechanism of claim 1, further comprising a front cover attached to said housing.
- 14. The attachment mechanism of claim 13, wherein said front cover comprises a vent for allowing air to circulate within said housing.
- 15. The attachment mechanism of claim 13, wherein said front cover is pivotally attached to said housing.
- 16. The attachment mechanism of claim 15, wherein said front cover further comprises a latch to connect said front cover to said housing.
- 17. The attachment mechanism of claim 1, further comprising a biasing member attached to said housing and said attachment means for biasing said motor into engagement with a wheel of said transport.
- 18. The attachment mechanism of claim 1, wherein said attachment means further comprises a tab for interlocking with a mounting slot affixed to said transport.
- 19. The attachment mechanism of claim 18, wherein said attachment means further comprises a shaft for connecting with an arm to operate said attachment means.
- 20. An attachment mechanism for attaching a motor to a transport, said attachment mechanism comprising:
a motor support configured to be attached to said transport; a housing for said motor; and an attachment lever for attaching said housing to said motor support; wherein said attachment mechanism is configured such that when said housing is attached to said motor support, said attachment lever is fixed with respect to said motor support and said housing is permitted to move with respect to said motor support.
- 21. The attachment mechanism of claim 20, wherein said motor support comprises at least one projection for attaching to said housing.
- 22. The attachment mechanism of claim 20, wherein said motor support comprises a mounting slot for receiving said attachment lever.
- 23. The attachment mechanism of claim 22, wherein said attachment lever further comprises a tab, and said mounting slot is defined in part by an abutment wall for contacting said tab to hold said motor to said transport.
- 24. The attachment mechanism of claim 20, wherein said motor support further comprises a bracket for attaching said motor support to said transport.
- 25. The attachment mechanism of claim 24, wherein said bracket has an interior surface and said motor support has a complementary interior surface, said interior surface and said complementary interior surface being configured to engage posts having different diameters.
- 26. The attachment mechanism of claim 25, wherein said interior surface of said bracket and said complementary interior surface of said motor support have a substantially V shape.
- 27. The attachment mechanism of claim 21, wherein said housing further comprises a groove for receiving said at least one projection to define a movement path of said housing with respect to said transport.
- 28. The attachment mechanism of claim 20, wherein said attachment lever further comprises a shaft.
- 29. The attachment mechanism of claim 28, wherein said housing further comprises an oblong opening for receiving said shaft.
- 30. The attachment mechanism of claim 29, further comprising an arm attached to said shaft for operating said attachment lever.
- 31. The attachment mechanism of claim 30, further comprising a biasing member attached to said housing and said attachment lever for biasing said motor into engagement with a wheel of said transport.
- 32. The attachment mechanism of claim 31, further comprising a spring bracket attached to said shaft and said biasing member.
- 33. An attachment mechanism for attaching a motor to a transport, said attachment mechanism comprising:
a housing for said motor, said housing including a groove defining a movement path; and a motor support configured to be attached to said transport, said motor support including a projection; wherein said groove is configured to receive said projection to allow movement of said housing with respect to said motor support along said movement path.
- 34. The attachment mechanism of claim 33, wherein said movement path is configured to extend in a substantially vertical direction when said motor is attached to said transport.
- 35. The attachment mechanism of claim 33, further comprising an attachment lever rotatably attached to said housing for attaching said housing to said motor support.
- 36. The attachment mechanism of claim 35, wherein said motor support further comprises a mounting slot for receiving said attachment lever.
- 37. The attachment mechanism of claim 36, wherein said attachment lever further comprises a tab, and said mounting slot is defined in part by an abutment wall for contacting said tab to hold said motor to said transport.
- 38. The attachment mechanism of claim 35, wherein said attachment lever further comprises a shaft and said housing comprises an oblong opening extending parallel to said movement path, said shaft being received in said oblong opening.
- 39. The attachment mechanism of claim 38, further comprising an arm attached to said shaft for operating said attachment lever.
- 40. The attachment mechanism of claim 33, further comprising a biasing member attached to said housing for biasing said motor into engagement with a wheel of said transport.
- 41. An attachment mechanism for attaching a motor device having a friction wheel and containing a motor, to a wheel of a transport, said attachment mechanism comprising:
a housing for containing said motor; an attachment lever for attaching said housing to said transport; and a biasing member attached to said housing and said attachment lever; wherein said biasing member is configured and arranged to force the friction wheel into contact with the wheel of said transport such that said attachment mechanism is adjustable to fit wheels of different sizes.
- 42. The attachment mechanism of claim 41, wherein said attachment lever comprises a shaft defining a pivot axis of said attachment lever.
- 43. The attachment mechanism of claim 42, wherein said housing comprises an oblong opening for receiving said shaft such that said housing is configured to allow movement of said shaft with respect to said housing in said oblong opening.
- 44. The attachment mechanism of claim 42, wherein said biasing member is connected to said attachment lever through a spring bracket.
- 45. The attachment mechanism of claim 44, wherein said spring bracket is attached to said shaft such that said shaft is allowed to rotate with respect to said spring bracket.
- 46. The attachment mechanism of claim 42, further comprising an arm attached to said shaft for operating said attachment lever.
- 47. A method of attaching a motor device to a transport, said motor device comprising a housing and an arm, said method comprising the steps of:
(a) joining said housing with said transport such that said housing is allowed to move along a movement path with respect to said transport; (b) rotating said arm to attach said arm to said transport; and (c) allowing said housing to move along said movement path while said arm is fixed to said transport.
- 48. The method of claim 47, wherein step (a) further comprises inserting a projection on said transport into a groove on said housing.
- 49. The method of claim 47, wherein step (a) further comprises inserting an attachment lever into a mounting slot.
- 50. The method of claim 47, wherein step (b) comprises rotating said arm through an angle of less than 180 degrees.
- 51. The method of claim 47, wherein step (c) further comprises allowing said housing to move in a substantially vertical movement path.
- 52. The method of claim 51, further comprising preventing said housing from moving in a lateral direction with respect to said transport.
- 53. A method of detaching a motor device from a transport, said motor device comprising a housing and an arm, said method consisting essentially of the steps of:
(a) rotating said arm through an angle of less than 180 degrees; and (b) sliding said housing with respect to said transport until said motor device is detached from said transport.
- 54. A method of operating a transport comprising the steps of:
(a) providing a first motor device and a second motor device; (b) attaching said first motor device to said transport for driving said transport; (c) detaching said first motor device from said transport; (d) operating said transport without said first motor device or said second motor device; and (e) attaching said second motor device to said transport for driving said transport.
- 55. The method of claim 54, wherein step (c) further comprises recharging at least one battery in said first motor device.
- 56. The method of claim 54, wherein step (b) comprises inserting a projection on said transport into a groove on said motor device.
- 57. The method of claim 56, further comprising inserting an attachment lever into a mounting slot.
- 58. The method of claim 57, further comprising rotating an attachment arm through an angle of less than 180 degrees.
- 59. The method of claim 58, further comprising allowing a portion of said motor device to move along a movement path while said motor device is attached to said transport.
- 60. The method of claim 54, wherein step (c) further comprises rotating an attachment arm through an angle of less than 180 degrees.
- 61. The method of claim 60, wherein step (c) further comprises sliding said motor device with respect to said transport.
- 62. A method of operating a scooter comprising the steps of:
(a) providing a scooter; (b) providing a motor device for attachment to said scooter; (c) attaching said motor device to said scooter for driving said scooter; (d) detaching said motor device from said scooter; (e) recharging said motor device; and (f) re-attaching said motor device to said scooter.
- 63. The method of claim 62, wherein step (c) comprises inserting a projection on said scooter into a groove on said motor device.
- 64. The method of claim 63, wherein step (c) further comprises inserting an attachment lever into a mounting slot.
- 65. The method of claim 64, wherein step (c) further comprises rotating an attachment arm through an angle of less than 180 degrees.
- 66. The method of claim 62, further comprising allowing said motor device to move along a movement path while said motor device is attached to said scooter.
- 67. The method of claim 62, wherein step (d) further comprises rotating an attachment arm through an angle of less than 180 degrees.
- 68. The method of claim 62, wherein step (d) further comprises sliding said motor device with respect to said scooter.
- 69. The method of claim 62, further comprising operating said scooter while said motor device is detached from said scooter.
- 70. The method of claim 62, wherein step (c) further comprises attaching a motor support to said scooter, and attaching said motor device to said motor support.
- 71. A motor support for attaching a motor device to a post of a transport, said motor support comprising:
a front face configured to face said motor device; a rear face configured to face said post; a mounting slot for receiving an attachment lever of said motor device; and means for attaching said motor support to said post such that a plurality of points on said post are contacted to provide a stable attachment to posts of different sizes.
- 72. The motor support of claim 71, wherein said means for attaching said motor support to said post comprises a bracket.
- 73. The motor support of claim 72, wherein said bracket has an interior surface and said motor support has a complementary interior surface on said rear face, said interior surface and said complementary interior surface each having a substantially V shape.
- 74. The motor support of claim 72, wherein said bracket includes fasteners to attach said bracket to said rear face.
- 75. The motor support of claim 71, further comprising at least one projection for inserting in a groove in the motor device for preventing lateral movement of said motor device with respect to said motor support.
- 76. The motor support of claim 75, wherein said at least one projection comprises two projections extending from opposing sides of said motor support.
- 77. The motor support of claim 71, further comprising an opening formed in said motor support to facilitate viewing said post through said motor support to assist in installation of the motor support.
- 78. The motor support of claim 71, wherein said mounting slot extends across said front face and is defined in part by an abutment wall, said abutment wall defining a plane substantially parallel to said front face.
- 79. The motor support of claim 71, further comprising a support base on a bottom portion of said motor support for contacting a front fork of said transport.
- 80. The motor support of claim 79, wherein said support base comprises a fork slot for receiving said front fork to align said motor support with said fork.
- 81. The motor support of claim 71, further comprising a fork support configured for abutting an upper portion of a fork of said transport to restrict vertical movement of said motor support.
- 82. The motor support of claim 71, further comprising at least one protruding ledge extending from a bottom portion of said motor support for abutting a front fork of said transport to align the motor support with said front fork.
- 83. A motor device for driving a transport, said motor device comprising:
a housing having a back side configured to be attached to a post of said transport, and a front side configured to face away from said transport; a friction wheel disposed on said housing for driving a wheel of said transport; a motor positioned in said housing for powering said friction wheel; and an attachment arm for operating an attachment mechanism to attach said motor device to said transport, said attachment arm being connected to said back side of said housing.
- 84. The motor device of claim 83, wherein said attachment arm extends from said back side of said housing to said front side of said housing.
- 85. The motor device of claim 84, wherein said attachment arm extends across said front side of said housing.
- 86. The motor device of claim 83, further comprising means for attaching the motor device to the transport, said means including the attachment arm and the attachment mechanism.
- 87. The motor device of claim 86, wherein said means for attaching the motor device to the transport comprises a shaft attached to said attachment arm.
- 88. The motor device of claim 87, wherein said housing comprises an oblong opening for receiving said shaft such that said shaft is configured to move with respect to said housing within said oblong opening.
- 89. The motor device of claim 88, further comprising a biasing member to bias said shaft toward an end of said oblong opening.
- 90. The motor device of claim 83, further comprising at least one battery disposed in said housing for providing power to said motor.
- 91. The motor device of claim 90, wherein said at least one battery comprises a plurality of rechargeable batteries wherein in a low speed setting, electricity may be drawn from one of the batteries, whereas in a high speed setting, electricity may be drawn from more than one of the batteries.
- 92. The motor device of claim 83, further comprising a clutch attached to the friction wheel to allow the friction wheel to be disengaged from the motor so that the friction wheel can spin freely without a force being exerted by the motor on the friction wheel.
- 93. The motor device of claim 83, wherein said friction wheel has a diameter measuring at least 0.5 inches.
- 94. The motor device of claim 93, wherein said diameter of said friction wheel is approximately one inch.
- 95. The motor device of claim 83, wherein said friction wheel comprises a plurality of ridges formed on an exterior surface of said friction wheel, said ridges extending substantially parallel to an axis of said friction wheel.
- 96. The motor device of claim 95, wherein said friction wheel comprises at least fifty ridges.
- 97. The motor device of claim 96, wherein said friction wheel comprises at least seventy-five ridges.
- 98. The motor device of claim 83, wherein said motor is configured to have dual modes of operation.
- 99. The motor device of claim 98, wherein said dual modes of operation include a switchable voltage.
- 100. The motor device of claim 83, further comprising a control switch for attaching to handlebars of the transport for activating the motor.
- 101. The motor device of claim 100, further comprising a cord extending from said housing to said control switch.
- 102. The motor device of claim 101, further comprising a plug and a jack attached to said cord.
- 103. The motor device of claim 102, wherein said plug and jack are positioned on said cord a distance spaced apart from said housing to allow portions of said cord to be pulled apart and separated.
- 104. The motor device of claim 102, wherein said plug is located on said housing.
- 105. The motor device of claim 89, further comprising an adjustable connection for connecting said biasing member to said housing.
- 106. The motor device of claim 105, wherein said adjustable connection comprises a spring bracket comprising a plurality of openings positioned for receiving the biasing member at different locations.
- 107. A motorized scooter comprising:
a platform for enabling a user to stand on said scooter; a handlebar attached to a post for steering said scooter; a front wheel and a rear wheel, said front wheel being steerable by said handlebar; a motor device removably attachable to said post for driving said front wheel; and attachment means for attaching said motor device to said scooter such that such that said motor device can be attached and released from said scooter by rotation of an arm.
- 108. The motorized scooter of claim 107, further comprising a motor support attached to said post for supporting said motor device.
- 109. The motorized scooter of claim 107, further comprising a control switch attached to the handlebar for operating said motor device.
- 110. The motorized scooter of claim 107, wherein said motor device comprises a friction wheel for driving said front wheel.
- 111. The motorized scooter of claim 110, wherein said friction wheel is configured to have a diameter ratio with respect to a diameter of said front wheel of at least 0.1.
- 112. The motorized scooter of claim 111, wherein said diameter ratio is at least 0.25.
- 113. A motor support for attaching a motor device to a post of a transport, said motor support comprising:
a front face configured to face said motor device; a rear face configured to face said post; and means for attaching said motor support to said post; wherein said motor support comprises a support base positioned on a lower portion of said motor support, and at least one fork slot formed in said support base for receiving a fork of said transport therein to align said motor support with a wheel of said transport.
- 114. The motor support of claim 113, further comprising at least one knob extending from said support base for contacting said fork for aligning said motor support with said wheel of said transport.
- 115. The motor support of claim 113, further comprising at least one projection for inserting in a groove in the motor device for preventing lateral movement of said motor device with respect to said motor support.
- 116. The motor support of claim 113, further comprising a mounting slot formed in said motor support for receiving an attachment lever of said motor device.
- 117. The motor support of claim 113, said motor support defining a frontal line, and wherein the support base comprises a second fork slot, and wherein both fork slots are defined by orthogonal edges forming a square-shaped slot end, said slots being configured and arranged for receiving prongs of the fork to thereby position the motor support such that the frontal line of said motor support is parallel to an axis of rotation of the wheel of the transport.
- 118. A motor assembly for driving a transport, said motor assembly comprising:
a motor device having a friction wheel, said motor device being configured to be attached to a post of the transport such that the friction wheel is held in continuous contact with a wheel of the transport; and a motor support having a front face configured to face the motor device, a rear face configured to face said post, a mounting slot for receiving an attachment lever of said motor device, and a means for attaching said motor support to said post such that a plurality of points on said post are contacted to provide a stable attachment to posts of different sizes.
- 119. The motor support of claim 73, wherein the interior surface of the bracket and the complementary interior surface of the rear face of the motor support are configured to be collectively disposed in contact with four points on the post of the transport when they have been installed.
- 120. The motor support of claim 73, wherein said plurality of points on said post comprises four points for allowing a stable attachment to be accomplished with posts of different sizes.
- 121. A motor device for driving a front wheel of a scooter, said motor device comprising:
a housing, said housing containing at least one battery and a motor; a motor support for attaching to said scooter; and attachment means for attaching said housing to said scooter, said attachment means being movably attached to said housing such that when said motor is attached to said scooter, said attachment means is fixed with respect to said scooter and said housing is moveable with respect to said scooter; wherein said motor support comprises at least one projection for attaching to said housing; wherein said at least one projection comprises two projections disposed on opposing sides of a bottom of said motor support; wherein said motor support comprises a mounting slot for receiving said attachment means; wherein said attachment means further comprises a tab, and said mounting slot is defined in part by an abutment wall for contacting said tab to hold said motor to said scooter; wherein said motor support further comprises a bracket for attaching said motor support to said scooter; wherein said bracket has an interior surface and said motor support has a complementary interior surface, said interior surface and said complementary interior surface being configured to engage scooters having posts of different diameters; wherein said housing further comprises a pair of grooves for receiving said projections and for defining a movement path of said housing with respect to said scooter; wherein said attachment means further comprises a shaft connected to an arm for operating said attachment means; wherein said housing further comprises oblong opening for receiving said shaft; wherein said motor device further comprises a front cover; wherein said front cover comprises a vent for allowing air to circulate within said housing; wherein said front cover is pivotally attached to said housing; wherein said front cover further comprises a latch to connect said front cover to said housing; and wherein said motor device further comprises a biasing member attached to said housing and said attachment means for biasing said motor device into engagement with said front wheel of said scooter.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Application No. 60/347,488, filed Jan. 10, 2002, and U.S. Provisional Application No. 60/351,327, filed Jan. 21, 2002 which applications are hereby incorporated by reference herein in their entireties, including but not limited to those portions that specifically appear hereinafter, the incorporation by reference being made with the following exception: In the event that any portion of the above-referenced applications is inconsistent with this application, this application supercedes said above-referenced applications.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60347488 |
Jan 2002 |
US |
|
60351327 |
Jan 2002 |
US |