CN207475704U - A kind of binocular In vivo detection camera - Google Patents
A kind of binocular In vivo detection camera Download PDFInfo
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- CN207475704U CN207475704U CN201721585880.9U CN201721585880U CN207475704U CN 207475704 U CN207475704 U CN 207475704U CN 201721585880 U CN201721585880 U CN 201721585880U CN 207475704 U CN207475704 U CN 207475704U
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Abstract
The utility model is related to camera technology fields, and in particular to a kind of binocular In vivo detection camera, including camera lens module, infrared lamp module and the first machine tooth screw;The camera lens module includes common lens, infrared lens, screw, camera lens protecgulum, lens circuit plate, camera lens back-cover and the second machine tooth screw;The common lens are connected with infrared lens by screw with camera lens protecgulum;The camera lens protecgulum and camera lens back-cover are joined together to form a closed cavity;The lens circuit plate setting is in the cavities;The infrared lamp module includes third machine tooth screw, circuit board, infrared lamp eyeglass and lamp plate protecgulum;The beneficial effects of the utility model are:The common lens of camera lens module and infrared lens are integrated in infrared lamp eyeglass in an overall structure by structure design so that whole device can work under complicated light environment, and vivo identification can also be carried out while capture suitable for face.
Description
Technical field
The utility model is related to camera technology fields, and in particular to a kind of binocular In vivo detection camera.
Background technology
Video camera applies to all trades and professions in daily life, largely applies to public place monitoring shooting, current big portion
Number camera is served only for a camera lens shooting, otherwise coloured image or black white image, but in recognition of face after treatment
Application field had both needed coloured image to capture face when shooting same face, carried out with the face inside image library
Compare, while need to clap black white image to carry out vivo identification, to prevent from being cheated with picture, video or mask etc..Therefore
Be carried out at the same time work with two video cameras, but can generate in this way volume excessively it is huge be inconvenient to install and capture a little have differences
The problems such as.
Industry linearly images camera using monocular and carries out recognition of face detection at this stage, but linear camera can not work
Make under complicated light environment and can not detect whether as In vivo detection, that is to say, that need staff under such state
Participant can avoid getting by under false pretences phenomenon using photo and other class pictures.In people-oriented today, under circumstances
A i.e. detectable live body of equal demand, release manpower, and the camera of character face's feature can be identified under complicated light environment.
Utility model content
The defects of in order to overcome the above-mentioned prior art, technical problem to be solved in the utility model are:A kind of knot is provided
Structure is simple, character face's feature can be identified under complicated light environment but also detect the binocular In vivo detection camera of live body.
In order to solve the above-mentioned technical problem, the technical solution adopted in the utility model is:A kind of binocular In vivo detection camera shooting
Head, including camera lens module, infrared lamp module and the first machine tooth screw;The camera lens module includes common lens, infrared lens, tight
Determine screw, camera lens protecgulum, lens circuit plate, camera lens back-cover and the second machine tooth screw;The common lens and infrared lens pass through
Screw is connected with camera lens protecgulum;The camera lens protecgulum and camera lens back-cover are joined together to form a closed cavity;Institute
State the setting of lens circuit plate in the cavities;The common lens are connected with infrared lens with lens circuit plate respectively;The camera lens
Protecgulum, lens circuit plate and camera lens back-cover are connected by the second machine tooth screw;
The infrared lamp module includes third machine tooth screw, circuit board, infrared lamp eyeglass and lamp plate protecgulum;The infrared lamp
Eyeglass is arranged in the groove of lamp plate protecgulum;The infrared lamp eyeglass is connected with circuit board;The lamp plate protecgulum, infrared lamp eyeglass
It is sequentially connected with circuit board by third machine tooth screw;
The camera lens module is connected with infrared lamp module by the first machine tooth screw.
Further, the backside structure of the camera lens back-cover is designed as radiator structure.
Further, the radiator structure is cooling fin.
Further, the common lens and infrared lens are fixed on by thread rotation on camera lens protecgulum.
Further, the shell of the camera lens module and infrared lamp module is made of aluminum alloy materials.
The beneficial effects of the utility model are:By structure design by the common lens of camera lens module and infrared lens with
Infrared lamp eyeglass is integrated in an overall structure, and whole device is compact-sized, small, can not only save manufacture into
This, and occupy little space.Common lens and infrared lens by screw fixed lens, can prevent from running it is burnt, while
Infrared lamp eyeglass is provided on lamp plate protecgulum, may be such that whole device can work under complicated light environment, be suitable for
Face can also carry out vivo identification while capture.
Description of the drawings
Fig. 1 show a kind of explosive view figure of binocular In vivo detection camera of specific embodiment of the present invention;
Fig. 2 show a kind of the quick-fried of the camera lens module of binocular In vivo detection camera of specific embodiment of the present invention
Fried figure;
Fig. 3 show a kind of infrared lamp module of binocular In vivo detection camera of specific embodiment of the present invention
Exploded perspective view;
Fig. 4 show a kind of structure diagram of binocular In vivo detection camera of specific embodiment of the present invention;
Fig. 5 show a kind of rearview of binocular In vivo detection camera of specific embodiment of the present invention;
Label declaration:1st, camera lens module;11st, common lens;12nd, infrared lens;13rd, screw;14th, camera lens protecgulum;
15th, lens circuit plate;16th, camera lens back-cover;17th, the second machine tooth screw;2nd, infrared lamp module;21st, third machine tooth screw;22nd, it is electric
Road plate;23rd, infrared lamp eyeglass;24th, lamp plate protecgulum;3rd, the first machine tooth screw;4th, radiator structure.
Specific embodiment
For technology contents, the objects and the effects of the utility model are described in detail, below in conjunction with embodiment and match
Attached drawing is closed to be explained.
The design of the utility model most critical is:By structure design by the common lens and infrared lens of camera lens module
It is integrated in an overall structure with infrared lamp eyeglass.
It please refers to shown in Fig. 1 to Fig. 5, a kind of binocular In vivo detection camera, including camera lens module 1,2 and of infrared lamp module
First machine tooth screw 3;The camera lens module includes common lens 11, infrared lens 12, screw 13, camera lens protecgulum 14, mirror
Head circuit board 15,16 and second machine tooth screw 17 of camera lens back-cover;The common lens 11 and infrared lens 12 pass through screw
13 and camera lens protecgulum 14 connect;The camera lens protecgulum 14 and camera lens back-cover 16 are joined together to form a closed cavity;Institute
Lens circuit plate 15 is stated to set in the cavities;The common lens 11 and infrared lens 12 connect respectively with lens circuit plate 15;
The camera lens protecgulum 14, lens circuit plate 15 and camera lens back-cover 16 are connected by the second machine tooth screw 17;
The infrared lamp module 2 includes third machine tooth screw 21, circuit board 22, infrared lamp eyeglass 23 and lamp plate protecgulum 24;
The infrared lamp eyeglass 23 is arranged in the groove of lamp plate protecgulum 24;The infrared lamp eyeglass 23 and circuit board 22 connect;It is described
Lamp plate protecgulum 24, infrared lamp eyeglass 23 and circuit board 22 are sequentially connected by third machine tooth screw 21;
The camera lens module 1 and infrared lamp module 2 are connected by the first machine tooth screw 3.
As can be seen from the above description, the course of work of above-mentioned binocular In vivo detection camera is:First, 11 He of common lens
Infrared lens 12 are sleeved on camera lens protecgulum 14, and camera lens back-cover 16 and lens circuit plate 15 are fixed successively by the second machine tooth screw 17
On camera lens protecgulum 14, camera lens is brought into focus, by 13 fixed lens of screw, it is made not run coke;It then will be infrared
Lamp eyeglass 23 is first placed in the groove of lamp plate protecgulum 24, and circuit board 22 is superimposed again to be pressed on infrared lamp eyeglass 23, passes through third
Machine tooth screw 21, which is sequentially connected, to be fixed on lamp plate protecgulum 24;Finally infrared lamp module 2 is sleeved on camera lens module 1, passes through
One machine tooth screw 3 is fixedly connected as an entirety.
As can be seen from the above description, the advantageous effect of above-mentioned binocular In vivo detection camera is:It will by structure design
The common lens 11 and infrared lens 12 of camera lens module 1 are integrated in infrared lamp eyeglass 23 in an overall structure, whole device
It is compact-sized, it is small, the cost of manufacture can not only be saved, and occupy little space.Common lens 11 and infrared lens 12
By 13 fixed lens of screw, it can prevent from running coke, while be provided with infrared lamp eyeglass 23 on lamp plate protecgulum 24, can make
Obtaining whole device can work under complicated light environment, and vivo identification can also be carried out while capture suitable for face.
Further, the backside structure of the camera lens back-cover 16 is designed as radiator structure 4.
As can be seen from the above description, due to 23 calorific value of infrared lamp eyeglass height, if device radiation is not in time, it will influence
The effect of shooting, therefore the backside structure of camera lens back-cover 16 should be designed as radiator structure 4.
Further, the radiator structure 4 is cooling fin.
As can be seen from the above description, radiator structure 4 is cooling fin, when 23 calorific value of infrared lamp eyeglass is high, improves dress
Put heat dissipation effect.
Further, the common lens 11 and infrared lens 12 are fixed on by thread rotation on camera lens protecgulum 14.
As can be seen from the above description, common lens 11 and infrared lens 12 are fixed on by thread rotation on camera lens protecgulum 14,
Facilitate installing and dismounting, it is easy to repair.
Further, the shell of the camera lens module 1 and infrared lamp module 2 is made of aluminum alloy materials.
As can be seen from the above description, the shell of whole device is made of aluminum alloy materials, the good heat dissipation effect of aluminium alloy, weight
Amount is light, not only facilitates the further heat dissipation of device, and convenient for the installation of device.
It please refers to shown in Fig. 1 to Fig. 5, the embodiment one of the utility model is:
A kind of binocular In vivo detection camera, including camera lens module 1,2 and first machine tooth screw 3 of infrared lamp module;It is described
Camera lens module includes common lens 11, infrared lens 12, screw 13, camera lens protecgulum 14, lens circuit plate 15, camera lens back-cover
16 and the second machine tooth screw 17;The common lens 11 and infrared lens 12 are connected by screw 13 and camera lens protecgulum 14;
The camera lens protecgulum 14 and camera lens back-cover 16 are joined together to form a closed cavity;The lens circuit plate 15 is arranged on
In cavity;The common lens 11 and infrared lens 12 connect respectively with lens circuit plate 15;The camera lens protecgulum 14, camera lens electricity
Road plate 15 and camera lens back-cover 16 are connected by the second machine tooth screw 17;
The infrared lamp module 2 includes third machine tooth screw 21, circuit board 22, infrared lamp eyeglass 23 and lamp plate protecgulum 24;
The infrared lamp eyeglass 23 is arranged in the groove of lamp plate protecgulum 24;The infrared lamp eyeglass 23 and circuit board 22 connect;It is described
Lamp plate protecgulum 24, infrared lamp eyeglass 23 and circuit board 22 are sequentially connected by third machine tooth screw 21;
The camera lens module 1 and infrared lamp module 2 are connected by the first machine tooth screw 3.
The backside structure of the camera lens back-cover 16 is designed as radiator structure 4.
The radiator structure 4 is cooling fin.
The common lens 11 and infrared lens 12 are fixed on by thread rotation on camera lens protecgulum 14.
The shell of the camera lens module 1 and infrared lamp module 2 is made of aluminum alloy materials.
In conclusion a kind of binocular In vivo detection camera provided by the utility model, by structure design by camera lens mould
The common lens and infrared lens of block are integrated in infrared lamp eyeglass in an overall structure, and whole device is compact-sized, volume
It is small, the cost of manufacture can not only be saved, and occupy little space.Common lens and infrared lens pass through screw fixed mirror
Head can prevent from running coke, while be provided with infrared lamp eyeglass on lamp plate protecgulum, may be such that whole device can be in complicated light
It works under environment, vivo identification can also be carried out while capture suitable for face.Since the calorific value of infrared lamp eyeglass is high, such as
Fruit device radiation is not in time, it will influences the effect of shooting, therefore the backside structure of camera lens back-cover should be designed as radiator structure.
Radiator structure is cooling fin, when infrared lamp eyeglass calorific value is high, improves device radiation effect.Common lens and infrared mirror
Head is fixed on by thread rotation on camera lens protecgulum, facilitates installing and dismounting, easy to repair.The shell of whole device uses aluminium alloy
Material is made, the good heat dissipation effect of aluminium alloy, light-weight, not only facilitates the further heat dissipation of device, and convenient for device
Installation.
The above description is only the embodiments of the present invention, and it does not limit the scope of the patent of the present invention, every
Equivalents made based on the specification and figures of the utility model are directly or indirectly used in relevant technology neck
Domain is equally included in the patent within the scope of the utility model.
Claims (5)
1. a kind of binocular In vivo detection camera, which is characterized in that including camera lens module, infrared lamp module and the first machine tooth spiral shell
Silk;The camera lens module include common lens, infrared lens, screw, camera lens protecgulum, lens circuit plate, camera lens back-cover and
Second machine tooth screw;The common lens are connected with infrared lens by screw with camera lens protecgulum;The camera lens protecgulum and
Camera lens back-cover is joined together to form a closed cavity;The lens circuit plate setting is in the cavities;The common lens
It is connected respectively with lens circuit plate with infrared lens;The camera lens protecgulum, lens circuit plate and camera lens back-cover pass through the second machine tooth
Screw connection;
The infrared lamp module includes third machine tooth screw, circuit board, infrared lamp eyeglass and lamp plate protecgulum;The infrared lamp eyeglass
It is arranged in the groove of lamp plate protecgulum;The infrared lamp eyeglass is connected with circuit board;The lamp plate protecgulum, infrared lamp eyeglass and electricity
Road plate is sequentially connected by third machine tooth screw;
The camera lens module is connected with infrared lamp module by the first machine tooth screw.
2. binocular In vivo detection camera according to claim 1, which is characterized in that the backside structure of the camera lens back-cover
It is designed as radiator structure.
3. binocular In vivo detection camera according to claim 2, which is characterized in that the radiator structure is cooling fin.
4. binocular In vivo detection camera according to claim 1, which is characterized in that the common lens and infrared lens
It is fixed on camera lens protecgulum by thread rotation.
5. binocular In vivo detection camera according to claim 1, which is characterized in that the camera lens module and infrared lamp mould
The shell of block is made of aluminum alloy materials.
Priority Applications (1)
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CN201721585880.9U CN207475704U (en) | 2017-11-23 | 2017-11-23 | A kind of binocular In vivo detection camera |
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CN201721585880.9U CN207475704U (en) | 2017-11-23 | 2017-11-23 | A kind of binocular In vivo detection camera |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109799664A (en) * | 2019-01-17 | 2019-05-24 | 深圳市迪威泰实业有限公司 | A kind of financial system logs in specialized camera |
CN111626192A (en) * | 2020-05-26 | 2020-09-04 | 上海云从企业发展有限公司 | Living body detection method, system, equipment and medium |
-
2017
- 2017-11-23 CN CN201721585880.9U patent/CN207475704U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109799664A (en) * | 2019-01-17 | 2019-05-24 | 深圳市迪威泰实业有限公司 | A kind of financial system logs in specialized camera |
CN111626192A (en) * | 2020-05-26 | 2020-09-04 | 上海云从企业发展有限公司 | Living body detection method, system, equipment and medium |
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