Electronic device and control method thereof

文档序号:863553 发布日期:2021-03-16 浏览:5次 中文

阅读说明:本技术 一种电子装置及其控制方法 (Electronic device and control method thereof ) 是由 唐义梅 于 2018-07-26 设计创作,主要内容包括:本申请公开了一种电子装置及其控制方法,该电子装置包括摄像头模组、升降壳体、固定壳体和动力机构,摄像头模组固定在升降壳体内,动力机构用于使升降壳体相对于固定壳体滑动;动力机构包括齿条、齿轮和电机,齿条设置于升降壳体内,电机固定在固定壳体上,齿轮与电机连接,电机用于带动齿轮沿齿条的齿条槽滚动,以使升降壳体相对于固定壳体滑动,从而使摄像头模组可在不被固定壳体遮挡或者被固定壳体遮挡的两种状态中进行切换。通过上述方式,可以避免在电子装置上开设用于供摄像头模组接收环境光的通孔。(The application discloses an electronic device and a control method thereof, wherein the electronic device comprises a camera module, a lifting shell, a fixed shell and a power mechanism, the camera module is fixed in the lifting shell, and the power mechanism is used for enabling the lifting shell to slide relative to the fixed shell; the power mechanism comprises a rack, a gear and a motor, the rack is arranged in the lifting shell, the motor is fixed on the fixed shell, the gear is connected with the motor, and the motor is used for driving the gear to roll along a rack groove of the rack so as to enable the lifting shell to slide relative to the fixed shell, so that the camera module can be switched between two states which are not shielded by the fixed shell or shielded by the fixed shell. Through the mode, the through hole for the camera module to receive the ambient light can be prevented from being formed in the electronic device.)

An electronic device, comprising:

the camera module is fixed in the lifting shell, and the power mechanism is used for enabling the lifting shell to slide relative to the fixed shell;

the power mechanism comprises a rack, a gear and a motor, the rack is arranged in the lifting shell, the motor is fixed on the fixed shell, the gear is connected with the motor, and the motor is used for driving the gear to roll along a rack groove of the rack, so that the lifting shell slides relative to the fixed shell, and the camera module can be switched between two states which are not shielded by the fixed shell or shielded by the fixed shell.

The electronic device of claim 1,

the length direction of the rack is the same as the sliding direction of the lifting shell, and the axial direction of the motor is perpendicular to the length direction of the rack.

The electronic device of claim 1,

the power mechanism further comprises a fixed frame, the fixed frame is assembled on the fixed shell, the gear is fixedly connected with the motor and rotatably connected with the fixed frame, and the rack is slidably connected with the fixed frame;

wherein the gear rotates relative to the fixed frame and rolls along the rack groove of the rack, so that the rack slides relative to the fixed frame.

The electronic device of claim 3,

the mount is including connecting gradually first baffle, second baffle, third baffle, first baffle with the third baffle sets up relatively, the gear with first baffle is connected and is passed the third baffle with motor rotatable coupling, the rack respectively with first baffle with third baffle slidable connection.

The electronic device of claim 4,

the fixing frame further comprises a sliding convex part arranged on the side faces, facing each other, of the first baffle and the third baffle, and the sliding convex part extends along the length direction of the fixing frame;

the rack has first face, second face and the third face that connects gradually, first face with the third face sets up back to back mutually, be provided with on the second face the rack groove in the length direction of rack first face with the spout has all been seted up to the third face, the slip convex part card is located in the spout and can follow the spout slides.

The electronic device of claim 5,

the first baffle plate is provided with a first side surface and a first top surface which are adjacently connected, the sliding convex part is arranged on the first side surface, the contact surface of the sliding convex part and the first side surface is arranged in a sinking way relative to the first top surface, the third baffle plate is provided with a second side surface and a second top surface which are adjacently connected, the sliding convex part is arranged on the second side surface, and the contact surface of the sliding convex part and the second side surface is arranged in a sinking way relative to the second top surface;

the rack is further provided with a fourth surface respectively connected with the first surface and the third surface, the fourth surface and the second surface are arranged in a back-to-back mode, the sliding convex part is clamped in the sliding groove, and the fourth surface is not more than the first top surface and the second top surface.

The electronic device of claim 5,

at least one of the first surface and the third surface is provided with a limiting groove, and the length of the limiting groove is smaller than that of the sliding groove;

the power mechanism further comprises a limiting column, and the limiting column is assembled on the fixing frame and extends out to be inserted into the limiting groove.

The electronic device of claim 7,

the limiting groove is formed in the bottom of the sliding groove.

The electronic device of claim 5,

the rack penetrates through the first surface and the third surface to be provided with a limiting hole, and the length of the limiting hole is smaller than that of the sliding chute;

the power mechanism further comprises a limiting column, and the limiting column is assembled on the first baffle and the second baffle and penetrates through the limiting hole.

The electronic device of claim 9,

the rack penetrates through the bottom of the sliding groove and is provided with the limiting hole.

The electronic device of claim 4,

the power mechanism further comprises a gearbox and a bearing, the gearbox is respectively connected with the motor and the gear, the bearing is accommodated in the first baffle in an interference fit mode, and the gear is rotatably connected with the first baffle through the bearing.

The electronic device of claim 11,

the gearbox comprises a shell and a speed change gear set accommodated in the shell, the speed change gear set is respectively connected with the motor and the gear, and the shell is respectively connected with the motor and the third baffle.

The electronic device of claim 4,

the second baffle is provided with an expansion space at a position corresponding to the gear in a protruding mode.

The electronic device of claim 3,

the fixed shell is provided with an opening, and when the lifting shell is accommodated in the opening, the peripheral surface of the lifting shell is flush with the peripheral surface of the fixed shell.

The electronic device of claim 14,

the fixed casing includes first bottom plate and first curb plate, first curb plate is followed bend on the first bottom plate and extend in order to with first bottom plate encloses jointly and establishes and form the opening, the mount with first bottom plate is connected, the lift casing include with the corresponding second bottom plate of first bottom plate and with the corresponding second curb plate of first curb plate, first trompil has been seted up to the second bottom plate, the second trompil has been seted up to the second curb plate, just first trompil with the second trompil communicates each other so that the lift casing dodges at gliding in-process the motor with the mount.

The electronic device of claim 15,

the protruding installation department that is provided with on the first bottom plate, the mount install in on the installation department, the length of mount is greater than the installation department is in the ascending length in the slip direction of lift casing.

The electronic device of claim 15,

the electronic device further comprises a display screen assembly, the display screen assembly is fixed on one side, far away from the rack, of the first base plate, the camera module comprises a front camera, the front camera is contained in the lifting shell, and a lens of the front camera faces the second base plate;

when the lifting shell slides out of the opening, ambient light can penetrate through the second bottom plate and enter the front camera.

The electronic device of claim 17,

the lifting shell further comprises a third bottom plate which is connected with the second side plate and is arranged opposite to the second bottom plate;

the camera module further comprises a rear camera, the rear camera is contained in the lifting shell, and a lens of the rear camera faces the third bottom plate;

when the lifting shell slides out of the opening, ambient light can penetrate through the third bottom plate and enter the rear camera.

The electronic device of claim 15,

the electronic device further comprises at least one of a light sensor, a distance sensor, a receiver and a dot matrix projector which are arranged in the lifting shell.

A control method of an electronic device is characterized in that,

the electronic device comprises a camera module, a lifting shell, a fixed shell and a power mechanism, wherein the camera module is fixed in the lifting shell; the power mechanism comprises a rack, a gear and a motor, the rack is arranged on the lifting shell, the motor is fixed on the fixed shell, and the gear is connected with the motor;

the control method comprises the following steps: the electronic device receives a control instruction;

the motor drives the gear to roll along the rack groove of the rack, so that the lifting shell slides relative to the fixed shell, and the camera module can be switched between two states of being not shielded by the fixed shell and being shielded by the fixed shell.

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