Two-wheel dynamic balance vehicle

US10414456B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10414456-B2
Application numberUS-201615577368-A
CountryUS
Kind codeB2
Filing dateMay 10, 2016
Priority dateMay 28, 2015
Publication dateSep 17, 2019
Grant dateSep 17, 2019

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A two-wheel dynamic balance vehicle comprises two wheels, a vehicle body, a middle cabin, a steering mechanism, and a control rod. The vehicle body is disposed on the two wheels. A pedal is disposed on the vehicle body. The middle cabin is disposed right above the pedal. The middle cabin comprises a housing. A display device is disposed on the housing, so as to make human-machine interaction information visible to an operator standing on the pedal. The steering mechanism comprises a steering shaft and a sensor. The control rod is connected to the steering shaft at the rear end of the vehicle body and extends from the rear end of the vehicle body to a position suitable for leg control of the operator. The control rod is rotated under the control of the operator, so as to drive the steering shaft to rotate to control steering of the vehicle body.

First claim

Opening claim text (preview).

The invention claimed is: 1. A two-wheeled dynamic balance vehicle, comprising: two wheels; a vehicle body, provided on the two wheels, a pedal being provided on the vehicle body; a middle cabin, provided directly above the pedal, the middle cabin comprising a housing, a display device being provided on the housing to enable an operator standing on the pedal to read man-machine interaction information, wherein the housing is formed with an upper slope surface located at a rear end of the vehicle body and a lower slope surface connected with the upper slope surface, the upper slope surface being a surface bending upwards and extending from the rear end of the vehicle body towards a front end of the vehicle body, the lower slope surface being a surface bending downwards and extending from the upper slope surface towards the front end of the vehicle body, the display device being provided on the lower slope surface; a steering mechanism, accommodated in the housing and comprising a steering shaft and a sensor; and a control rod, the control rod being connected with the steering shaft at the rear end of the vehicle body and extending from the rear end of the vehicle body to a position suitable for leg-control of the operator, the control rod being formed with a bending portion matched with a shape of the upper slope surface, the control rod being rotated under control of the operator, thereby driving the steering shaft in rotation, so as to control steering of the vehicle body. 2. The two-wheeled dynamic balance vehicle according to claim 1 , wherein the housing is formed with a transparent region, the display device is located within the housing and corresponds to a position of the transparent region. 3. The two-wheeled dynamic balance vehicle according to claim 1 , wherein a clamping element suitable for being clamped by legs of the operator is connected to the control rod. 4. The two-wheeled dynamic balance vehicle according to claim 3 , wherein external of the clamping element is wrapped with a flexible part. 5. The two-wheeled dynamic balance vehicle according to claim 1 , wherein the control rod is connected with the steering shaft through a connecting seat, the connecting seat comprises a connecting sleeve and a connecting rod, the connecting sleeve is connected with the steering shaft, the connecting rod is connected with the control rod. 6. The two-wheeled dynamic balance vehicle according to claim 1 , wherein the display device is a Light Emitting Diode display screen or a Liquid Crystal display screen. 7. The two-wheeled dynamic balance vehicle according to claim 1 , wherein a handle portion is provided on the housing. 8. A combined mechanism of a middle cabin and a control rod, mounted on a vehicle body of a two-wheeled dynamic balance vehicle and comprising the middle cabin and the control rod, wherein the middle cabin is provided directly above the vehicle body, the middle cabin being provided with a housing, a display device is being provided on the housing to enable an operator standing on the vehicle body to read man-machine interaction information, wherein the housing is formed with an upper slope surface located at a rear end of the vehicle body and a lower slope surface connected with the upper slope surface, the upper slope surface being a surface bending upwards and extending from the rear end of the vehicle body towards a front end of the vehicle body, the lower slope surface being a surface bending downwards and extending from the upper slope surface towards the front end of the vehicle body, the display device being provided on the lower slope surface; wherein the housing is formed with an accommodation space, a steering mechanism for controlling steering of the vehicle body being accommodated in the accommodation space, the steering mechanism comprising a steering shaft and a sensor; and wherein the control rod is connected with the steering shaft at the rear end of the vehicle body, and extends from the rear end of the vehicle body to a position suitable for leg control of the operator, the control rod being formed with a bending portion matched with a shape of the upper slope surface, the control rod being rotated under control of the operator, thereby driving the steering shaft in rotation, so as to control steering of the vehicle body. 9. A two-wheeled dynamic balance vehicle, comprising: two wheels; a vehicle body, provided on the two wheels, a pedal being provided on the vehicle body; a middle cabin, provided directly above the pedal, the middle cabin comprising a housing, a display device being provided on the housing to enable an operator standing on the pedal to read man-machine interaction information, wherein the housing is formed with an upper slope surface, a flat surface and a lower slope surface, the upper slope surface being connected with the lower slope surface through the flat surface, the display device being provided on at least one of the flat surface or the lower slope surface; a steering mechanism, accommodated in the housing and comprising a steering shaft and a sensor; and a control rod, the control rod being connected with the steering shaft at a rear end of the vehicle body and extending from the rear end of the vehicle body to a position suitable for leg-control of the operator, the control rod being formed with a bending portion matched with a shape of the upper slope surface, the control rod being rotated under control of the operator, thereby driving the steering shaft in rotation, so as to control steering of the vehicle body. 10. The two-wheeled dynamic balance vehicle according to claim 9 , wherein the housing is formed with a transparent region, the display device is located within the housing and corresponds to a position of the transparent region. 11. The two-wheeled dynamic balance vehicle according to claim 9 , wherein a clamping element suitable for being clamped by legs of the operator is connected to the control rod. 12. The two-wheeled dynamic balance vehicle according to claim 11 , wherein external of the clamping element is wrapped with a flexible part. 13. The two-wheeled dynamic balance vehicle according to claim 9 , wherein the control rod is connected with the steering shaft through a connecting seat, the connecting seat comprises a connecting sleeve and a connecting rod, the connecting sleeve is connected with the steering shaft, the connecting rod is connected with the control rod. 14. The two-wheeled dynamic balance vehicle according to claim 9 , wherein the display device is a Light Emitting Diode display screen or a Liquid Crystal display screen. 15. The two-wheeled dynamic balance vehicle according to claim 9 , wherein a handle portion is provided on the housing. 16. A combined mechanism of a middle cabin and a control rod, mounted on a vehicle body of a two-wheeled dynamic balance vehicle and comprising the middle cabin and the control rod, wherein the middle cabin is provided directly above the vehicle body, the middle cabin being provided with a housing, a display device being provided on the housing to enable an operator standing on the vehicle body to read man-machine interaction information, wherein the housing is formed with an upper slope surface, a flat surface and a lower slope surface, the upper slope surface being connected with the lower slope surface through the flat surface, the display device being provided on at least one of the flat surface or the lower slope surface; wherein the housing is formed with an accommodation space, a steering mechanism for controlling steering of the vehicle body being accommodated

Assignees

Inventors

Classifications

  • Frame mounted hoods specially adapted for rider propelled cycles · CPC title

  • with the engine beside or within the driven wheel · CPC title

  • Motorcycles, engine-assisted cycles or motor scooters with one or two wheels (fairings or streamlining parts not forming part of the frame B62J; transmission of drive from engines to wheels B62M) · CPC title

  • Adaptations for driving cycles by electric motor · CPC title

  • B62K11/007Primary

    Automatic balancing machines with single main ground engaging wheel or coaxial wheels supporting a rider · CPC title

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What does patent US10414456B2 cover?
A two-wheel dynamic balance vehicle comprises two wheels, a vehicle body, a middle cabin, a steering mechanism, and a control rod. The vehicle body is disposed on the two wheels. A pedal is disposed on the vehicle body. The middle cabin is disposed right above the pedal. The middle cabin comprises a housing. A display device is disposed on the housing, so as to make human-machine interaction in…
Who is the assignee on this patent?
Ninebot Beijing Tech Co Ltd
What technology area does this patent fall under?
Primary CPC classification B62K11/007. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Sep 17 2019 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).