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    • 5. 发明授权
    • Pneumatic-operated toothbrush
    • 气动牙刷
    • US06622333B1
    • 2003-09-23
    • US10233687
    • 2002-09-04
    • Steven RehkemperJeffrey RehkemperCharles HartlaubTodd Hannon
    • Steven RehkemperJeffrey RehkemperCharles HartlaubTodd Hannon
    • A61C1732
    • A61C17/30A46B13/06A46B2200/1066A61B17/244A61C17/0202A61C17/3436
    • In accordance with one embodiment of the present invention a pneumatic-operated toothbrush incorporates a pump that a user may utilize to pump are into and pressurize air in a reservoir. The reservoir is attached to a pneumatic motor, which utilizes the pressurized air inside the reservoir to rotate a drive shaft. Attached to the end of the drive shaft is a plurality of bristles that rotate when the drive shaft is rotating. The motor will continue to rotate the bristles as long as the pressure inside the reservoir is sufficient enough to force the air into the pneumatic motor. When the motor stops rotating the bristles, the user can pump air back inside the reservoir for continued use. It is important to note that the pneumatic toothbrush for the present invention is a self-contained device, meaning that the reservoir, motor and pump are incorporated into a single toothbrush. In addition the present invention does not use batteries or other electrical elements to power the motor.
    • 根据本发明的一个实施例,气动操作的牙刷结合了用户可以利用的泵进入储存器中并对其中的空气加压的泵。 储存器附接到气动马达,其利用储存器内部的加压空气来旋转驱动轴。 驱动轴的端部附近是当驱动轴旋转时旋转的多个刷毛。 只要储存器内的压力足够大以迫使空气进入气动马达,马达将继续旋转刷毛。 当电机停止旋转刷毛时,用户可以将空气抽回储存器内以继续使用。 重要的是要注意,用于本发明的气动牙刷是独立的装置,这意味着储存器,马达和泵被并入单个牙刷中。 此外,本发明不使用电池或其他电气元件为马达供电。
    • 7. 发明申请
    • TOY VEHICLE WITH ROLLOVER STUNT MOVEMENTS
    • 玩具车,带有滚动动作
    • US20140065926A1
    • 2014-03-06
    • US13597443
    • 2012-08-29
    • Steven RehkemperJeffrey RehkemperJeremy Posner
    • Steven RehkemperJeffrey RehkemperJeremy Posner
    • A63H30/04
    • A63H30/04A63H17/004A63H17/26
    • An illustrative toy vehicle is provided having a two-section chassis and a pivot mechanism rotatably attaching the two sections. The vehicle has the ability to move in multiple orientations and execute movements including a side rollover movement where the pivot mechanism assists in directing the vehicle to roll over from a first orientation to a second orientation about a central axis. A modified wheel design further assists in facilitating movements including the rollover movement. The vehicle may perform movements without user control where the vehicle responds to external factors, such as objects or terrain or the vehicle may use control systems such as radio or remote control with a transmitter/receiver pair, on vehicle switches or sensors utilizing interactive preprogrammed content.
    • 提供了一种说明性的玩具车,其具有两部分底盘和可旋转地连接两个部分的枢转机构。 车辆具有在多个方向上移动并执行包括侧部翻转运动的运动的能力,其中枢转机构有助于引导车辆从中心轴线从第一方向滚动到第二方位。 改进的车轮设计还有助于促进包括翻车运动的运动。 车辆可以在没有用户控制的情况下执行运动,其中车辆对外部因素(例如物体或地形)做出响应,或者车辆可以使用诸如使用发射器/接收器对的无线电或远程控制的控制系统在车辆开关或传感器上使用交互式预编程内容 。
    • 8. 发明授权
    • Rotating pattern matching board game
    • 旋转图案匹配板游戏
    • US07374481B2
    • 2008-05-20
    • US10825055
    • 2004-04-16
    • Steven RehkemperJeffrey Rehkemper
    • Steven RehkemperJeffrey Rehkemper
    • A63F9/24A63F13/00G06F17/00G06F19/00
    • A63F9/00A63F3/00643A63F9/0096A63F9/24
    • A sequencing game is provided with a housing and a microprocessor disposed within the housing. A plurality of manually operable controls are affixed to the housing and are in communication with the microprocessor. The microprocessor generates and sensorially renders a sequence of events, wherein each event is related to one of the manually operable controls. Each manually operable control is externally acutable by a participant for responding to said sequence of signals. The microprocessor further compares the participant's response to said sequence of events for determining the correctness of the participant's response. The difficultly of the game is increased with a motor that drives wheels which move the game while the sequence of events are being sensorially rendered.
    • 排序游戏设置有壳体和设置在壳体内的微处理器。 多个可手动操作的控制器固定到壳体并与微处理器通信。 微处理器产生并传感地呈现事件序列,其中每个事件与手动操作的控制之一相关。 每个可手动操作的控制由参与者在外部被可修改以响应于所述信号序列。 微处理器进一步比较参与者对所述事件序列的响应以确定参与者的响应的正确性。 随着电动机驱动轮子移动游戏,同时事件序列被传感地渲染,游戏的难度增加。
    • 9. 发明授权
    • Mono-wheel vehicle with tilt mechanism
    • 单轮车辆倾斜机构
    • US07337862B1
    • 2008-03-04
    • US11144997
    • 2005-06-03
    • Peter GreenleyJeffrey Rehkemper
    • Peter GreenleyJeffrey Rehkemper
    • A63G25/00
    • A63H17/25A63H30/04
    • In accordance with the present invention a mono-wheel vehicle is provided. The vehicle includes a housing with an inner circumference. A wheel is connected to the housing such that the wheel is able to rotate independently of the housing. The wheel has an outside portion that makes contact with a surface. A motor mechanism is provided for rotation of the wheel. Gyroscopic forces acting on the rotating wheel maintain the vehicle in a substantially upright position such that the vehicle is able to travel along the surface in a first direction. A platform connected to the inner circumference of the housing is pivotable in relation to the housing to causes a change in a center of gravity. The change in center of gravity causes the gyroscopic forces acting on the vehicle to turn the vehicle towards the changing center of gravity in order to maintain the vehicle in a more upright position.
    • 根据本发明,提供了单轮车辆。 车辆包括具有内圆周的壳体。 轮连接到壳体,使得轮能够独立于壳体旋转。 轮具有与表面接触的外部部分。 提供用于轮的旋转的马达机构。 作用在旋转轮上的陀螺仪力将车辆保持在基本直立的位置,使得车辆能够沿着第一方向沿着表面行进。 连接到壳体的内圆周的平台相对于壳体可枢转以引起重心的变化。 重心的变化导致作用在车辆上的陀螺力将车辆转向变化的重心,以保持车辆处于更直立的位置。
    • 10. 发明授权
    • Training device for wheeled vehicles
    • 轮式车辆训练装置
    • US07163210B1
    • 2007-01-16
    • US10746489
    • 2003-12-29
    • Steven RehkemperJeffrey Rehkemper
    • Steven RehkemperJeffrey Rehkemper
    • A63C17/12
    • A63C17/12A63C17/01A63C17/06A63C17/223
    • In accordance with one embodiment of the present invention there is provided a vehicle with a training device for use on a skateboard. The training device includes an assembly disposed about one of a plurality of axles of the skateboard. The assembly has a transfer gear horizontally moveably to a first position to engage a flywheel wheel to provide resistance to the skateboard and to charge the flywheel when a wheel corresponding to one of the plurality of axles spins, such that when the flywheel is charged the flywheel provides inertia to the wheel. The training device may also be designed to be entirely incorporated with a single wheel for use with in-line skate or scooters. In either embodiments the training device includes the ability to have more resistance when the wheels first begin to rotate (as the user first begins to ride the vehicle), a continual reduction in resistance as the wheels begin to rotate faster, and a build up of inertia during use such that when the user pauses, the inertia continues to rotate the wheels.
    • 根据本发明的一个实施例,提供了一种具有用于滑板的训练装置的车辆。 训练装置包括围绕滑板的多个轴中的一个安置的组件。 组件具有水平移动到第一位置的传送齿轮,以接合飞轮轮以提供对滑板的阻力,并且当与多个轴中的一个相对应的车轮旋转时对飞轮充电,使得当飞轮向飞轮充电时 向车轮提供惯性。 训练装置也可以被设计成完全与一个单一的轮子一起使用以与直排式滑冰板或踏板车一起使用。 在任一实施例中,训练装置包括当车轮首次开始旋转(当使用者首次开始骑车时)具有更多阻力的能力,随着车轮开始更快地旋转而持续减小阻力,并且建立 在使用期间的惯性使得当用户停止时,惯性继续转动车轮。