IPC분류정보
국가/구분 |
United States(US) Patent
등록
|
국제특허분류(IPC7판) |
|
출원번호 |
US-0361832
(2009-01-29)
|
등록번호 |
US-8164429
(2012-04-24)
|
발명자
/ 주소 |
- Reynolds, Jeffrey W.
- Zirnheld, Richard A.
|
출원인 / 주소 |
|
대리인 / 주소 |
Dascenzo Intellectual Property Law, P.C.
|
인용정보 |
피인용 횟수 :
7 인용 특허 :
28 |
초록
▼
A children's ride-on vehicle is disclosed. In some embodiments, the vehicle may include at least one driven wheel and a drive assembly adapted to selectively drive the rotation of the at least one driven wheel. The drive assembly may include at least one electric motor, a battery assembly including
A children's ride-on vehicle is disclosed. In some embodiments, the vehicle may include at least one driven wheel and a drive assembly adapted to selectively drive the rotation of the at least one driven wheel. The drive assembly may include at least one electric motor, a battery assembly including at least one battery and adapted to provide a plurality of voltages to the at least one electric motor, and at least one user input device positioned to receive inputs from a child sitting on the at least one seat, and adapted to select among the plurality of voltages and to apply that selected voltage to the at least one electric motor; and an electronics system adapted to detect the applied voltage to the at least one electric motor and to generate at least one of an audio output and a visual output based, at least in part, on the applied voltage.
대표청구항
▼
1. A children's ride-on vehicle, comprising: a body having at least one seat sized for a child;a plurality of wheels rotatably coupled to the body, wherein the plurality of wheels includes at least one driven wheel;a drive assembly adapted to selectively drive the rotation of the at least one driven
1. A children's ride-on vehicle, comprising: a body having at least one seat sized for a child;a plurality of wheels rotatably coupled to the body, wherein the plurality of wheels includes at least one driven wheel;a drive assembly adapted to selectively drive the rotation of the at least one driven wheel, wherein the drive assembly comprises: at least one electric motor,a battery assembly including at least one battery and adapted to provide a plurality of voltages to the at least one electric motor, andat least one user input device positioned to receive inputs from a child sitting on the at least one seat, and adapted to select among the plurality of voltages and to apply that selected voltage to the at least one electric motor; andan electronics system adapted to detect the applied voltage to the at least one electric motor and to generate at least one of an audio output and a visual output based, at least in part, on the applied voltage, wherein the electronics system is further adapted to interrupt the generation of the at least one of an audio output and a visual output when the electronics system detects a change in the applied voltage to the at least one electric motor. 2. The vehicle of claim 1, wherein the electronics system is further adapted to generate at least one of a different audio output and a different visual output for each of two or more of the plurality of voltages applied to the at least one electric motor. 3. The vehicle of claim 2, wherein the electronics system is further adapted to generate at least one of a different audio output and a different visual output for each of the plurality of voltages applied to the at least one electric motor. 4. The vehicle of claim 1, wherein each of the plurality of voltages is included in one of a plurality of voltage ranges, and wherein the electronics system is further adapted to generate at least one of a different audio output and a different visual output for each of the plurality of voltage ranges applied to the at least one electric motor. 5. The vehicle of claim 1, wherein the electronics system is further adapted to generate at least one of a different audio output and a different visual output after interrupting the generation of the at least one of an audio output and a visual output based, at least in part, on the changed voltage to the at least one electric motor. 6. The vehicle of claim 1, wherein the drive assembly is adapted to selectively drive the rotation of the at least one driven wheel in a plurality of drive configurations, and wherein each of the plurality of voltages corresponds to a different drive configuration of the drive assembly when that voltage is applied to the at least one electric motor. 7. The vehicle of claim 6, wherein the plurality of voltages includes a low forward voltage that corresponds, when applied to the at least one electric motor, to a low forward drive configuration in which the at least one electric motor is adapted to drive the rotation of the at least one driven wheel in a forward direction at a first speed. 8. The vehicle of claim 7, wherein the electronics system is further adapted to detect the applied low forward voltage and to generate at least one of a low forward audio output and a low forward visual output based, at least in part, on the applied low forward voltage. 9. The vehicle of claim 7, wherein the plurality of voltages includes a high forward voltage that corresponds, when applied to the at least one electric motor, to a high forward drive configuration in which the at least one electric motor is adapted to drive the rotation of the at least one driven wheel in the forward direction at a second speed that is greater than the first speed. 10. The vehicle of claim 9, wherein the electronics system is further adapted to detect the applied high forward voltage and to generate at least one of a high forward audio output and a high forward visual output based, at least in part, on the applied high forward voltage. 11. The vehicle of claim 6, wherein the plurality of voltages includes a reverse voltage that corresponds, when applied to the at least one electric motor, to a reverse drive configuration in which the at least one electric motor is adapted to drive the rotation of the at least one driven wheel in a reverse direction. 12. The vehicle of claim 11, wherein the electronics system is further adapted to detect the applied reverse voltage and to generate at least one of a reverse audio output and a reverse visual output based, at least in part, on the applied reverse voltage. 13. The vehicle of claim 6, wherein the plurality of voltages includes a braking voltage that corresponds, when applied to the at least one electric motor, to a braking drive configuration in which the at least one electric motor is adapted not to drive the rotation of the at least one driven wheel. 14. The vehicle of claim 13, wherein the electronics system is further adapted to detect the applied braking voltage and to generate at least one of a braking audio output and a braking visual output based, at least in part, on the applied braking voltage. 15. A children's ride-on vehicle, comprising: a body having at least one seat sized for a child;a plurality of wheels rotatably coupled to the body, wherein the plurality of wheels includes at least one driven wheel;a drive assembly adapted to selectively drive the rotation of the at least one driven wheel in a plurality of drive configurations, wherein the drive assembly comprises: at least one electric motor,a battery assembly including at least one battery and adapted to provide a plurality of voltages to the at least one electric motor, andat least one user input device positioned to receive inputs from a child sitting on the at least one seat, and adapted to select among the plurality of voltages and to apply that selected voltage to the at least one electric motor; andan electronics system adapted to detect the applied voltage to the at least one electric motor and to generate at least one of an audio output and a visual output based, at least in part, on the applied voltage, wherein each of the plurality of voltages corresponds to a different drive configuration of the drive assembly when that voltage is applied to the at least one electric motor, wherein the electronics system is further adapted to interrupt the generation of the at least one of an audio output and a visual output when the electronics system detects a change in the applied voltage to the at least one electric motor. 16. The vehicle of claim 15, wherein the electronics system is further adapted to generate at least one of a different audio output and a different visual output after interrupting the generation of the at least one of an audio output and a visual output based, at least in part, on the changed voltage to the at least one electric motor. 17. The vehicle of claim 15, wherein the electronics system is further adapted to generate at least one of a different audio output and a different visual output for each of the plurality of voltages applied to the at least one electric motor. 18. A children's ride-on vehicle, comprising: a body having at least one seat sized for a child;a plurality of wheels rotatably coupled to the body, wherein the plurality of wheels includes at least one driven wheel;a drive assembly adapted to selectively drive the rotation of the at least one driven wheel in a plurality of drive configurations, wherein the drive assembly comprises: at least one electric motor,a battery assembly including at least one battery and adapted to provide a plurality of voltages to the at least one electric motor, andat least one user input device positioned to receive inputs from a child sitting on the at least one seat, and adapted to select among the plurality of voltages and to apply that selected voltage to the at least one electric motor; andan electronics system adapted to (1) detect the applied voltage to the at least one electric motor and to generate at least one of an audio output and a visual output based, at least in part, on the applied voltage, (2) interrupt the generation of the at least one of an audio output and a visual output when the electronics system detects a change in the applied voltage to the at least one electric motor, and (3) generate at least one of a different audio output and a different visual output after interrupting the generation of the at least one of an audio output and a visual output based, at least in part, on the changed voltage to the at least one electric motor.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.