US2009163110A1PendingUtilityA1

Remote controlled toy helicopter

Assignee: SILVERLIT TOYS MANUFACTORY LTDPriority: Jan 19, 2006Filed: Mar 11, 2009Published: Jun 25, 2009
Est. expiryJan 19, 2026(expired)· nominal 20-yr term from priority
A63H 27/12A63H 30/04
66
PatentIndex Score
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Cited by
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References
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Claims

Abstract

A remote-controlled toy helicopter comprises a body; a motor in the helicopter, a battery for powering the motor, and a receiver for communicating signals between the motor and a separate remote controller. A main rotor with blades is driven by a rotor shaft and causing a first lift force developed by the main rotor when the helicopter is airborne. A system permits movement of the helicopter on the ground, and these can be wheels. The helicopter travels on a floor or ground surface when the main rotor develops a second degree of lift force. The helicopter includes a system to effect motion in a horizontal dimension thereby to direct the desired direction. The control includes an actuator for engaging with an assembly depending from the rotor, the inter-engagement of the actuator and assembly effecting a change in the angle of incidence of at least the one blade of the rotor. The system includes a rotor, preferably complemented with a stabilizer rotor.

Claims

exact text as granted — not AI-modified
1 . A toy helicopter comprising a body; a motor in the helicopter, a battery for powering the motor, and a receiver for communicating signals between the motor and a separate remote controller, a main rotor with blades which is driven by a rotor shaft and which is hinge-mounted on this rotor shaft, such that the angle between the plane of rotation of the main rotor and the rotor shaft may vary; a control for moving the angle of incidence of at least one blade of the rotor relative to the angle of incidence of another blade of the rotor cyclically along at least part of a 360 degree rotation path around the rotor shaft, causing a variation in lift force of the blade along at least part of the rotation path and thereby cause the body to be urged in a relatively horizontal direction from a relative position of rest, and such that for a first lift force developed by the main rotor, the helicopter is airborne, and including an element for assuring that the helicopter travels on a surface in a non airborne state when the main rotor develops a second degree of lift force, the non airborne travel is caused by the second degree lift force generated by the main rotor. 
   
   
       2 . A remote control toy helicopter comprising:
 a body having a longitudinal length;   a main motor;   a battery for powering the motor;   a receiver for communicating signals between the motor and a separate remote controller;   a main rotor with propeller blades driven by the main motor, the motor driving a rotor shaft and the rotor being hinge mounted on the rotor shaft and wherein the rotor shaft is relatively forwardly tilted relative to vertical; and   wherein there is a variation in lift force of the blade, being such that for a first lift force developed by the main rotor, the helicopter is airborne, and including wheels for assuring the helicopter to travel on a ground surface when the main rotor develops a second degree of lift force and not airborne travel.   
   
   
       3 . A helicopter of  claim 1  wherein the rotor shaft is relatively forwardly tilted relative to vertical. 
   
   
       4 . A helicopter of  claim 1  wherein the element for assuring movement on the surface, selectively the ground or a floor which is relatively smooth, are wheels, and preferably at least three wheels arranged in spaced relationship with the body, the wheels being arranged to permit a stable relationship of the helicopter on the ground when in an at rest position. 
   
   
       5 . A helicopter of  claim 4  including a single front wheel and two rear wheels, the rear wheels being spaced apart. 
   
   
       6 . A helicopter of  claim 4  wherein at least one wheel is mounted relative to the body such that it is relatively freely pivotable to adopt different angular positions about its pivot relative to a forward axis which extends between the front and the rear of the body, the forward axis being an axis directed in a normal forward direction for body movement. 
   
   
       7 . A helicopter of  claim 5  wherein the single front wheel is mounted relative to the body such that it is fixed relative to a forward axis which extends between the front and the rear of the body. 
   
   
       8 . A helicopter of  claim 6  further comprising a support for the at least one wheel, wherein the at least one wheel is mounted relative to the body such that the support point is located ahead of the wheel, and the support being inclined rearwardly from the support point towards an axle of the at least one wheel. 
   
   
       9 . A helicopter of  claim 2  wherein there are at least three wheels arranged in spaced relationship with the body, the wheels being arranged to permit a stable relationship of the helicopter on the ground when in a at rest position. 
   
   
       10 . A helicopter of  claim 9  including a single front wheel and two rear wheels, the rear wheels being spaced apart. 
   
   
       11 . A helicopter of  claim 9  wherein at least one wheel is mounted relative to the body such that it is relatively freely pivotable to adopt different angular positions about its pivot relative to a forward axis which extends between the front and the rear of the body, the forward axis being an axis directed in a normal forward direction for body movement. 
   
   
       12 . A helicopter of  claim 11  further comprising a support for the at least one wheel, wherein the at least one wheel is mounted relative to the body such that the support point is located ahead of the wheel, and the support being inclined rearwardly from the support point towards an axle of the at least one wheel. 
   
   
       13 . A helicopter of  claim 11  wherein the single front wheel is mounted relative to the body such that it is fixed relative to a forward axis, which extends between the front and the rear of the body. 
   
   
       14 . The toy helicopter of  claim 2  including a second motor; a tail rotor which is driven by a second rotor shaft from the second motor, and directed transversally to the rotor shaft of the main rotor, and wherein the controller applies relatively different speeds to the second motor when the main rotor develops a second degree lift force to thereby effect turning of the helicopter travelling on the ground relative to the different speeds to the second motor when the main rotor develops a first degree lift force to thereby effect turning of the helicopter is airborne.

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