CN104023190A - Automatic lifting camera and display device thereof - Google Patents

Automatic lifting camera and display device thereof Download PDF

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Publication number
CN104023190A
CN104023190A CN201410279179.9A CN201410279179A CN104023190A CN 104023190 A CN104023190 A CN 104023190A CN 201410279179 A CN201410279179 A CN 201410279179A CN 104023190 A CN104023190 A CN 104023190A
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China
Prior art keywords
camera
electromagnet
push rod
slide rail
assembly
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Granted
Application number
CN201410279179.9A
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Chinese (zh)
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CN104023190B (en
Inventor
谢素娟
黄庆敏
解治国
刘婷
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TPV Display Technology Xiamen Co Ltd
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TPV Display Technology Xiamen Co Ltd
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Priority to CN201410279179.9A priority Critical patent/CN104023190B/en
Publication of CN104023190A publication Critical patent/CN104023190A/en
Application granted granted Critical
Publication of CN104023190B publication Critical patent/CN104023190B/en
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Abstract

The invention discloses an automatic lifting camera and a display device thereof. The camera device is arranged on the display device. The camera device comprises a camera assembly, an electromagnet assembly, a camera sliding assembly, an instruction processing unit, a control circuit, a lower device shell and an upper device shell. The instruction processing unit is used for acquiring a signal input by a user and outputting a control signal to the control circuit, and the control circuit is used for controlling on-off of an electromagnet of the electromagnet assembly according to the control signal. The electromagnet assembly is matched with a spring connected to the camera sliding assembly to control the camera sliding assembly to move along a sliding rail. The camera sliding assembly drives the camera assembly to move. The camera device automatically ascends to be used or descends to be hidden in the display device according to the user input signal, namely, the camera can be automatically retracted to the display device without manual operation, the using convenience is improved, and the sense of science and technology of the automatic lifting camera is enhanced.

Description

A kind of camera of automatic lifting and display device thereof
Technical field
The present invention relates to a kind of camera with function of auto-lift, particularly a kind of built-in camera and display device thereof of television set.
Background technology
Along with the development of intelligent television and the lifting of life requirement, camera has become companion's product of TV gradually, also becomes gradually the standard configuration of intelligent high-end TV.The camera of TV generally has three kinds of patterns on the market at present, and a kind of for independent external camera box and TV carries out external use, the camera box price that this needs configure is in addition more expensive, and the very large impact of size is attractive in appearance; A kind of for being fixed on the camera carrying in television set, but non-telescoping, and need in appearance much more extra convex closures to place this to be fixed on the camera in television set, to affect the overall appearance of television set, easily disturb people to watch the sight line of TV programme at television set; Also has one also for inside television carries, different is that it is scalable, manually go by or press to make camera stretch out TV or press to be hidden in television set but but need to rely on, the sight line that makes the outward appearance that affects television set that camera can be not too much and user watch TV with this, but such mode still inconvenient user is used, not intelligence.
Summary of the invention
The object of this invention is to provide a kind of have the built-in camera system of function of auto-lift and the display device with this system.
The technical solution adopted for the present invention to solve the technical problems is:
A kind of automatic telescopic cam device, comprises CCD camera assembly, electromagnet assembly, camera slide assemblies, instruction processing unit, control circuit, device lower casing and device upper casing; Described instruction processing unit, electromagnet assembly and CCD camera assembly are electrically connected with control circuit, and described CCD camera assembly is fixed on camera slide assemblies; Described device lower casing is provided with slide rail, and camera slide assemblies is slidably connected on slide rail, and slides along slide rail; One end of described camera slide assemblies is connected with ejection spring; The other end that ejects spring is fixed on device lower casing; Described electromagnet assembly comprises the first electromagnet, the second electromagnet and the 3rd electromagnet; Described the first electromagnet and the second electromagnet are individually fixed in the stop bit place, two ends of the slide rail of device lower casing, and described the 3rd electromagnet is arranged on device upper casing, and the 3rd electromagnet is just to the next place in slide rail; Described instruction processing unit obtains the signal of user's input and outputs control signals to control circuit; Described control circuit is according to control signal control first, second, and third magnet switching electricity; The startup of described the first electromagnet and the second magnet control camera slide assemblies and stopping, described the first electromagnet and the 3rd electromagnet apply compression and eject the external force of spring in the time that cam device shrinks to camera slide assemblies; Described ejection spring drives camera slide assemblies to move along slide rail direction in the time that cam device stretches out; Described camera slide assemblies drives CCD camera assembly to move along slide rail direction; Described device upper casing and the device lower casing formation spatial accommodation that is interlocked, hold CCD camera assembly, electromagnet assembly, camera slide assemblies, instruction processing unit and control circuit; The corresponding CCD camera assembly of described device upper casing place is provided with through hole.
Described CCD camera assembly comprises camera, camera fixture and camera signal processor; Described camera is contained in camera fixture; Described camera signal processor is arranged in camera slide assemblies, and the input of camera signal processor connects camera output by electric wire; Described electric wire is flexible PCB, USB line.
Described camera fixture comprises fore shell, back cover, camera eyeglass and eyeglass gum, the corresponding cam lens of described fore shell place is provided with loophole, described camera eyeglass and eyeglass gum are sequentially arranged on loophole from outside to inside, described back cover has groove and holds camera, described fore shell and the back cover fixing camera that is interlocked.
In described camera fixture, be provided with microphone, the corresponding microphone of fore shell place is provided with through hole.
Described CCD camera assembly is fixed on camera slide assemblies by direction adaptor.
Described camera slide assemblies comprises push rod, push rod spring, sliding part; Described slide rail comprises push rod slide rail and sliding part slide rail; Described CCD camera assembly is fixed on push rod on one side, and described sliding part is arranged on the another side of push rod; Push rod connects push rod spring one end, and the other end of push rod spring is fixed on device lower casing; Described push rod spring drives push rod to slide along push rod slide rail; Described sliding part connects ejection spring one end, and the other end that ejects spring is fixed on device lower casing; Described ejection spring drives sliding part to slide along sliding part slide rail.
Described sliding part is more than one, and sliding part configures respectively spring.
The two ends of described slide rail are equipped with position-limit mechanism.
Described instruction processing unit comprises instruction fetch unit and instruction execution unit; Instruction fetch unit is obtained the signal of user input, and the signal that instruction execution unit receives instruction fetch unit judges and processes and export control signal.
The aspect of described user's input is that speech recognition, face recognition, remote controller or intelligent terminal application program are waken.
Described first, second or the 3rd electromagnet are monostable, or bistable.
The present invention also discloses a kind of display device, is provided with described a kind of automatic telescopic cam device on described display device housing.
The present invention utilizes electromagnet assembly, coordinate spring, slide rail and push rod etc., coordinate spring to drive sliding part to slide according to the signal controlling electromagnet assembly of user's input, thereby driving camera to rise use or fall is hidden in display device, do not need by manually can automatically making camera stretch in display device, improve the convenience using, promoted the science and technology sense of product.
Brief description of the drawings
Below in conjunction with the drawings and specific embodiments, the present invention is described in further details:
The display device front schematic view of Fig. 1 embodiment of the present invention;
The decomposition texture schematic diagram of the display device of Fig. 2 embodiment of the present invention;
The flow chart of the control method of Fig. 3 embodiment of the present invention;
Cam device internal structure schematic diagram in Fig. 4 embodiment of the present invention;
Fig. 5 embodiment of the present invention cam device shrinks the internal structure schematic diagram of display device;
The first electromagnet schematic diagram in Fig. 6 embodiment of the present invention;
The 3rd electromagnet schematic diagram in Fig. 7 embodiment of the present invention;
Internal structure schematic diagram when Fig. 8 embodiment of the present invention cam device stretches out display device;
The cooperation schematic diagram of the movable snap fit of the first electromagnet in Fig. 9 embodiment of the present invention;
Camera signal processor scheme of installation in Figure 10 embodiment of the present invention;
The STRUCTURE DECOMPOSITION schematic diagram of CCD camera assembly in Figure 11 embodiment of the present invention.
Embodiment
Be illustrated in figure 1 the structural representation of embodiment of the present invention display device, this display device 10 is provided with cam device 20 that can automatic lifting.User can pass through remote controller, terminal intelligent equipment as mobile phone, speech recognition, gesture identification or App application program the mode control cam device 20 such as are waken and are automatically risen and open, fall and close, improve the convenience using, and can in the time not using cam device 20, reduce the original lines attractive in appearance of display device, interference user is not watched the sight line of display device program.
As the decomposition texture schematic diagram of the display device of Fig. 2 embodiment of the present invention, it comprises display device 10, cam device 20, display device back cover 13, cam device 20 is arranged on the top side of display device 10, cam device 20 is fixed on the backboard 11 of display device 10, display device back cover 13 covers cam device 20, spatial accommodation 131 is set on back cover 13 and holds cam device 20, spatial accommodation 131 is provided with through hole 132 and exposes for cam device 20.Certainly cam device 20 is also can be arranged on arbitrary limit or angle of display device, as right side, left side downside etc.
Below in conjunction with accompanying drawing, cam device structure of the present invention is specifically described.
Be illustrated in figure 4 the internal structure decomposing schematic representation of cam device in the embodiment of the present invention,
Cam device 20 comprises CCD camera assembly, electromagnet assembly, camera slide assemblies, instruction processing unit, control circuit 234, device lower casing 211 and device upper casing 212; Described instruction processing unit and electromagnet assembly are electrically connected with control circuit 234, and described CCD camera assembly is fixed on camera slide assemblies; Described CCD camera assembly comprises camera 27, camera fixture 30 and camera signal processor 60; Described camera 27 is contained in camera fixture 30; Described camera signal processor 60 connects camera 27 by electric wire; Described device lower casing 211 is provided with slide rail, and camera slide assemblies is slidably connected on slide rail, and slides along slide rail; The two ends of described camera slide assemblies are connected with respectively push rod spring and eject spring; The other end of push rod spring and ejection spring is all fixed on device lower casing 211; Described electromagnet assembly comprises the first electromagnet 231, the second electromagnet 232 and the 3rd electromagnet 233; Described the first electromagnet 231 and the second electromagnet 232 are individually fixed in the stop bit place, two ends of the slide rail of device lower casing 211, and described the 3rd electromagnet 233 is arranged on device upper casing 212, the three electromagnet 233 just to the next in slide rail; Described instruction processing unit obtains the signal of user's input and outputs control signals to control circuit 234; Described control circuit 234 is according to control signal control the first electromagnet 231, the second electromagnet 232 and the 3rd electromagnet 233 power on/off; Described the first electromagnet 231 and the second electromagnet 232 are controlled the startup of camera slide assemblies and stop, and described the first electromagnet 231 and the 3rd electromagnet 233 provide external force in camera slide assemblies sliding process; Described camera slide assemblies drives CCD camera assembly to move along slide rail direction.Control circuit 234 is fixed in cam device 20, and control circuit 234 also can be arranged on the mainboard of display device certainly.
Described camera slide assemblies comprises push rod 25, sliding part 28; Described slide rail comprises push rod slide rail 222 and sliding part slide rail 221; Certainly sliding part slide rail 221 also can independently be fixed on device lower casing 211 as part with push rod slide rail 222; Described sliding part 28 comprises sliding part lower casing 281 and sliding part upper cover 282; Described CCD camera assembly is fixed on push rod 25; Push rod 25 connects one end of push rod spring 291 and 292, and the other end of push rod spring 291 and 292 is fixed on device lower casing 211; Described push rod spring 291 and 292 drives push rod 25 to slide along push rod slide rail 222; Described sliding part 28 connects the one end of ejecting spring 293 and 294, and the other end that ejects spring 293 and 294 is fixed on device lower casing 211; Described ejection spring 293 and 294 drives sliding part 28 to slide along sliding part slide rail 221.In the present embodiment, ejecting spring number is 2, but is not limited to 2.The above and below of this example on sliding part slide rail 221 is provided with position-limit mechanism 263 simultaneously, be provided with position-limit mechanism 261 and 262 in the above and below of push rod slide rail 222, position-limit mechanism 261,262 makes push rod 25 in the time reaching precalculated position, stop sliding, and position-limit mechanism 263 makes sliding part 28 in the time reaching precalculated position, stop sliding.
As shown in Figure 6, the first electromagnet 231 comprises movable push bar 2312, and when the first electromagnet 231 receives that control signal is opened snap fit 2311, movable push bar 2312 is rotated down, and applies active force on push rod 25, helps sliding part 28 to glide.
As shown in Figure 7, the 3rd electromagnet 233 comprises movable push bar 2331, in the flow process of setting, switches on, and movable push bar 2331 Unscrews on it, bounce on push rod 25 external force is provided.
As shown in figure 10, in the present embodiment, camera signal processor 60 is arranged in the lower casing 281 of lifting sliding part 28, be connected with the camera module 27 in camera fixture 30 by flexible PCB 271, also can connect by other electric wires such as USB lines.
Camera fixture 30 comprises fore shell 33, back cover 32, camera eyeglass 31 and eyeglass gum 34 as shown in figure 11, corresponding camera 27 camera lens places, described fore shell 33 centers are provided with loophole, described camera eyeglass 31 and eyeglass gum 34 are sequentially arranged on loophole from outside to inside, described back cover 32 is provided with groove and holds camera 27, described fore shell 33 and back cover 32 fixing camera 27 that is interlocked.In the present embodiment, back cover 32 is connected with direction adaptor 35, and CCD camera assembly is fixed on camera slide assemblies by direction adaptor 35, and the CCD camera assembly that direction adaptor 35 makes can be nodded up and down or shake the head in left and right.In addition microphone also can be arranged in camera fixture 30.
Be illustrated in figure 3 embodiment of the present invention control flow chart, the instruction fetch unit of instruction processing unit is obtained the signal of user's input, the signal that the instruction execution unit of instruction processing unit sends over according to instruction fetch unit judges and processes, and export associated control signal to control circuit 234, control circuit 234 reception control signals, control the running of electromagnet assembly, thereby control the elevating movement of camera slide assemblies, camera slide assemblies and then drive CCD camera assembly to stretch out and be accommodated in display device 10.
Describe in detail with regard to rising and the decline process of CCD camera assembly respectively below.
When rising: instruction processing unit output control signal is to control circuit, control circuit control the second electromagnet 232 is switched on, movable snap fit 2321 rotating opening that the second electromagnet 232 links, sliding part 28 breaks off relations, push rod spring 291 and 292 is started back to stretch by compressive state, eject spring 293 and 294 and start retraction by extended state, sliding part 28 is in push rod spring 291 and 292 and eject under the effect of spring 293 and 294 elastic force up along sliding part slide rail 221, drive push rod 25 up along push rod slide rail 222 simultaneously, push rod 25 is washed the movable snap fit 2311 on the first electromagnet 231 open.As shown in Figure 9, the movable snap fit 2311 on the first electromagnet 231 catches on push rod 25.As shown in Figure 8, now push rod spring 291 and 292, in extended state, ejects spring 293 and 294 in free state; The stroke of position-limit mechanism 261,263 restriction push rods 25 simultaneously, now cam device 20 has exposed display device, uses for user.
When decline: instruction processing unit output control signal is to control circuit 234, control circuit 234 is controlled the first electromagnet energising 231, movable snap fit 2311 rotating opening of the first electromagnet energising 231 interlocks, push rod 25 breaks off relations, movable push bar 2312 is rotated down simultaneously, apply active force on push rod 25, push rod 25 slide rails 222 are glided, and drive sliding part 28 to glide along sliding part slide rail 221.In the time of push rod 25 downslide certain hour, because the loss of frictional force, be not enough to sliding part 28 to be pushed into and the nextly to hook lock with movable snap fit 2321 the second electromagnet 232; Now control circuit control 234 the 3rd electromagnet 233 is switched on, on the 3rd electromagnet 233, movable push bar 2331 is opened, apply on power and push rod 25, make push rod 25 continue to drive sliding part 28 to glide and wash the movable snap fit 2321 on the second electromagnet 232 open, the movable snap fit 2321 of the second electromagnet 232 catches on lock slide 28, position-limit mechanism 262 stops push rod 25 to continue to glide, the 3rd electromagnet 233 power-off, and movable push bar 2331 sets back.Now cam device 20 has been hidden in display device 10, reaches the effect of hiding camera.Now as shown in Figure 5, push rod spring 291 and 292, in compressive state, ejects spring 293,294 and is in extended state the internal structure of cam device 20.
In sum, those skilled in the art, without departing from the spirit and scope of the present invention in the situation that, can also do various changes and replacement to the specific embodiment of the present invention.These changes and replacement all drop in the claims in the present invention book limited range.

Claims (12)

1. an automatic telescopic cam device, is characterized in that: it comprises CCD camera assembly, electromagnet assembly, camera slide assemblies, instruction processing unit, control circuit, device lower casing and device upper casing; Described instruction processing unit, electromagnet assembly and CCD camera assembly are electrically connected with control circuit, and described CCD camera assembly is fixed on camera slide assemblies; Described device lower casing is provided with slide rail, and camera slide assemblies is slidably connected on slide rail, and slides along slide rail; One end of described camera slide assemblies is connected with ejection spring; The other end that ejects spring is fixed on device lower casing; Described electromagnet assembly comprises the first electromagnet, the second electromagnet and the 3rd electromagnet; Described the first electromagnet and the second electromagnet are individually fixed in the stop bit place, two ends of the slide rail of device lower casing, and described the 3rd electromagnet is arranged on device upper casing, and the 3rd electromagnet is just to the next place in slide rail; Described instruction processing unit obtains the signal of user's input and outputs control signals to control circuit; Described control circuit is according to control signal control first, second, and third magnet switching electricity; The startup of described the first electromagnet and the second magnet control camera slide assemblies and stopping, described the first electromagnet and the 3rd electromagnet apply compression and eject the external force of spring in the time that cam device shrinks to camera slide assemblies; Described ejection spring drives camera slide assemblies to move along slide rail direction in the time that cam device stretches out; Described camera slide assemblies drives CCD camera assembly to move along slide rail direction; Described device upper casing and the device lower casing formation spatial accommodation that is interlocked, hold CCD camera assembly, electromagnet assembly, camera slide assemblies, instruction processing unit and control circuit; The corresponding CCD camera assembly of described device upper casing place is provided with through hole.
2. a kind of automatic telescopic cam device according to claim 1, is characterized in that: described CCD camera assembly comprises camera, camera fixture and camera signal processor; Described camera is contained in camera fixture; Described camera signal processor is arranged in camera slide assemblies, and the input of camera signal processor connects camera output by electric wire; Described electric wire is flexible PCB, USB line or electric wire.
3. a kind of automatic telescopic cam device according to claim 2, it is characterized in that: described camera fixture comprises fore shell, back cover, camera eyeglass and eyeglass gum, the corresponding cam lens of described fore shell place is provided with loophole, described camera eyeglass and eyeglass gum are sequentially arranged on loophole from outside to inside, described back cover has groove and holds camera, described fore shell and the back cover fixing camera that is interlocked.
4. a kind of automatic telescopic cam device according to claim 3, is characterized in that: in described camera fixture, be provided with microphone, the corresponding microphone of fore shell place is provided with through hole.
5. a kind of automatic telescopic cam device according to claim 1, is characterized in that: described CCD camera assembly is fixed on camera slide assemblies by direction adaptor.
6. a kind of automatic telescopic cam device according to claim 1, is characterized in that: described camera slide assemblies comprises push rod, push rod spring, sliding part; Described slide rail comprises push rod slide rail and sliding part slide rail; Described CCD camera assembly is fixed on one side of push rod, and described sliding part is arranged on the another side of push rod; Push rod connects one end of push rod spring, and the other end of push rod spring is fixed on device lower casing; Described push rod spring drives push rod to slide along push rod slide rail; One end of described sliding part connects ejects spring one end, and the other end that ejects spring is fixed on device lower casing; Described ejection spring drives sliding part to slide along sliding part slide rail.
7. a kind of automatic telescopic cam device according to claim 6, is characterized in that: described sliding part is more than one, and sliding part configures respectively spring.
8. a kind of automatic telescopic cam device according to claim 1, is characterized in that: the two ends of slide rail are equipped with position-limit mechanism.
9. a kind of automatic telescopic cam device according to claim 1, is characterized in that: described instruction processing unit comprises instruction fetch unit and instruction execution unit; Instruction fetch unit is obtained the signal of user input, and the signal that instruction execution unit receives instruction fetch unit judges and processes and export control signal.
10. a kind of automatic telescopic cam device according to claim 9, is characterized in that: the aspect of described user's input is that speech recognition, face recognition, remote controller or intelligent terminal application program are waken.
11. a kind of automatic telescopic cam devices according to claim 1, is characterized in that: described first, second or the 3rd electromagnet are monostable, or bistable.
12. 1 kinds of display devices, is characterized in that, are provided with a kind of automatic telescopic cam device described in any one in claim 1 to 11 on described display device housing.
CN201410279179.9A 2014-06-20 2014-06-20 Automatic lifting camera and display device thereof Active CN104023190B (en)

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