CN213461957U - Remote video conference camera - Google Patents

Remote video conference camera Download PDF

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Publication number
CN213461957U
CN213461957U CN202023035082.3U CN202023035082U CN213461957U CN 213461957 U CN213461957 U CN 213461957U CN 202023035082 U CN202023035082 U CN 202023035082U CN 213461957 U CN213461957 U CN 213461957U
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module
image
sound
sensor
control module
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CN202023035082.3U
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Chinese (zh)
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黄敏
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Shenzhen Zhongke Lingchuang Industrial Co ltd
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Shenzhen Zhongke Lingchuang Industrial Co ltd
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Abstract

The utility model discloses a remote video conference camera, which comprises a control module, an image acquisition module, an image sensor, a sound sensor, a data storage module, a data analysis module, a USB transmission port, a power supply module, an indicator light and a computer module; the utility model discloses an image acquisition module acquires image information, then turn into the image information that image acquisition module acquireed through image sensor and upload for control module, sound sensor acquires sound information simultaneously, and turn into the sound information that acquires and upload for control module on the signal of telecommunication, then control module sends received image signal and sound signal to data storage module simultaneously, and send image signal and sound signal to computer module through USB transmission port in step, thereby realize image and sound synchronous conveying, the communication of teleconference has been made things convenient for.

Description

Remote video conference camera
Technical Field
The utility model relates to a long-range video conference technical field specifically is a long-range video conference camera.
Background
A remote video conference system is an audio-visual conversational type conference service that provides two-way real-time transmission of voice and moving color pictures between a plurality of users located at two or more sites; the large-scale remote video conference system has wide application in military, government, trade and medical departments and the like.
The remote video conference system is a multimedia communication technology which enables people in different places to realize real-time, visual and interactive through a certain transmission medium, and can distribute various information such as static and dynamic images, voice, characters, pictures and the like of characters to terminal equipment of each user through various existing electric communication transmission media, so that the geographically dispersed users can share one place to exchange information through various modes such as graphics, sound and the like, the understanding capacity of the two parties on the content is increased, and the people can be as if they are personally attending a conference in the same meeting place.
In order to facilitate the implementation of the remote video conference, a camera special for the remote video conference is needed to be used, but the existing remote video conference camera has the following defects when in use:
the existing remote video conference camera has the defects of low picture definition, non-transparent picture, single image format and resolution and asynchronous audio and video, thereby influencing the remote video conference communication.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a long-range video conferencing camera to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a long-range video conferencing camera, includes control module, image acquisition module, image sensor, sound transducer, data storage module, data analysis module, USB transmission port, power module, pilot lamp and computer module, control module respectively with image sensor, sound transducer, data storage module, data analysis module, USB transmission port, power module and pilot lamp electric connection, USB transmission port with through data line electric connection between the computer module, control module passes through USB transmission port with computer module electric connection, image acquisition module with electric connection between the image sensor, control module passes through image sensor with image acquisition module electric connection.
The indicating lamp comprises a green LED lamp and a red LED lamp, the red LED lamp is a power supply indicating lamp, and the green LED lamp is an image preview indicating lamp.
The image acquisition module is a camera.
The image sensor adopts a crystalline phase F37 JX-F37-C1-M3 sensor, and the control module adopts a processor RTS 3903N.
The power supply module comprises three power supply chips RY3430 and one power supply chip AD 9193.
Compared with the prior art, the beneficial effects of the utility model are that:
the utility model discloses an image acquisition module acquires image information, then turn into the image information that image acquisition module acquireed into the signal of telecommunication and upload and give control module through image sensor, sound sensor acquires sound information simultaneously, and turn into the sound information who acquires and give control module on the signal of telecommunication, then control module sends received image signal and sound signal data storage module simultaneously, and send image signal and sound signal synchronous computer module of sending to through USB transmission port, thereby realize image and sound synchronous conveying, and this camera utilizes crystalline phase F37 JX-F37-C1-M3 sensor and treater RTS3903N cooperation, can improve the video definition of camera shooting, can satisfy the demand of different image formats simultaneously, the interchange of teleconference has been made things convenient for.
Drawings
Fig. 1 is a schematic diagram of the structure of the control system of the present invention.
In the figure: 10. a control module; 11. an image acquisition module; 12. an image sensor; 13. a sound sensor; 14. a data storage module; 15. a data analysis module; 16. a USB transmission port; 20. a power supply module; 30. an indicator light; 31. a green LED lamp; 32. a red LED lamp; 40. a computer module.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1, the present invention provides a technical solution: a remote video conference camera comprises a control module 10, an image acquisition module 11, an image sensor 12, a sound sensor 13, a data storage module 14, a data analysis module 15, a USB transmission port 16, a power supply module 20, an indicator light 30 and a computer module 40.
The control module 10 is electrically connected to the image sensor 12, the sound sensor 13, the data storage module 14, the data analysis module 15, the USB transmission port 16, the power supply module 20, and the indicator light 30.
The USB port 16 is electrically connected to the computer module 40 through a data line, and the control module 10 is electrically connected to the computer module 40 through the USB port 16.
The image acquisition module 11 is electrically connected to the image sensor 12, and the control module 10 is electrically connected to the image acquisition module 11 through the image sensor 12.
The control module 10 may be a circuit including at least one processor, a circuit including at least one single chip microcomputer, or a combination of multiple circuits or chips, as long as corresponding functions can be realized, and the control module 10 specifically employs a processor RTS 3903N.
The image acquisition module 11 is a camera, the image acquisition module 11 is specifically an M12 lens, and video information is acquired through the image acquisition module 11.
The image sensor 12 adopts a crystalline phase F37 JX-F37-C1-M3 sensor, video information acquired by the image acquisition module 11 is converted into an electric signal through the image sensor 12 and is uploaded to the control module 10, and format conversion, encoding, optimization and transmission can be carried out on the video information through the cooperation of the crystalline phase F37 JX-F37-C1-M3 sensor and the processor RTS3903N, so that the definition of videos shot by a camera can be improved, and the requirements of different image formats can be met.
The sound sensor 13 is used for acquiring sound signals, converting the acquired sound signals to electric signals and uploading the electric signals to the control module, informing the processor RTS3903N to be matched with the sound sensor 13, and performing format conversion, coding, optimization and transmission on the sound signals, so that the definition of acquiring sound by the camera can be improved, the requirements of different sound formats can be met, and the sound and video information can be ensured to be synchronously transmitted.
Wherein the data storage module 14 is used for storing the video information and the sound information received by the control module 10.
The data storage module 14 may be an erasable programmable read-only memory, and may also be a random access memory, and the data storage module 14 may read or write various data information and/or program codes.
The data analysis module 15 is configured to compare the video information and the sound information received by the control module 10, so as to synchronously integrate the video information and the sound information.
When the camera needs to be used, the camera is electrically connected with the computer module 40 through the USB transmission port 16, and then the computer module 40 can acquire video information and sound information collected by the computer.
The power supply module 20 comprises three power supply chips RY3430 and a power supply chip AD9193, the voltage which can be met by the power supply chip RY3430 is 3.3V, 1.8V and 0.9V, and the voltage which can be met by the power supply chip AD9193 is 1.5V and 2.8V, so that the power supply requirements of various computer modules 40 on working voltage are met.
The indicator lamp 30 includes a green LED lamp 31 and a red LED lamp 32, the red LED lamp 32 is a power indicator lamp, and the green LED lamp 31 is an image preview indicator lamp.
After the computer module 40 is electrically connected to the camera through the USB transmission port 16, the power supply of the computer module 40 supplies power to the camera, and then the red LED lamp 32 is turned on, which indicates that the camera is in a closed circuit state; when the computer module 40 acquires the audio and video information acquired by the camera through the USB transmission port 1, the green LED lamp 31 is on, which indicates that the camera is in a working state, and when the computer module 40 finishes acquiring the audio and video information of the camera, the green LED lamp 31 is off.
The computer module 40 is a computer terminal used for a remote video conference, and the computer module 40 can be electrically connected with the camera through the USB transmission port 16.
The working principle is as follows: when in use, the image information is obtained by the image acquisition module 11, then the image information obtained by the image acquisition module 11 is converted into an electric signal by the image sensor 12 and is uploaded to the control module 10, meanwhile, the sound sensor 13 acquires sound information, converts the acquired sound information into an electric signal and uploads the electric signal to the control module 10, the control module 10 then transmits the received image signal and sound signal to the data storage module 14 for storage, and the image signal and the sound signal are synchronously transferred to the computer module 40 through the USB transmission port 16, therefore, synchronous transmission of images and sound is achieved, the camera can improve the definition of videos shot by the camera by utilizing the cooperation of a crystal phase F37 JX-F37-C1-M3 sensor and the processor RTS3903N, the requirements of different image formats can be met, and the communication of a teleconference is facilitated.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (5)

1. A remote video conferencing camera, comprising: the intelligent control system comprises a control module (10), an image acquisition module (11), an image sensor (12), a sound sensor (13), a data storage module (14), a data analysis module (15), a USB transmission port (16), a power supply module (20), an indicator light (30) and a computer module (40), wherein the control module (10) is respectively electrically connected with the image sensor (12), the sound sensor (13), the data storage module (14), the data analysis module (15), the USB transmission port (16), the power supply module (20) and the indicator light (30), the USB transmission port (16) is electrically connected with the computer module (40) through a data line, the control module (10) is electrically connected with the computer module (40) through the USB transmission port (16), and the image acquisition module (11) is electrically connected with the image sensor (12), the control module (10) is electrically connected with the image acquisition module (11) through the image sensor (12).
2. The remote video conference camera of claim 1, wherein: the indicating lamp (30) comprises a green LED lamp (31) and a red LED lamp (32), the red LED lamp (32) is a power indicator, and the green LED lamp (31) is an image preview indicating lamp.
3. The remote video conference camera of claim 1, wherein: the image acquisition module (11) is a camera.
4. The remote video conference camera of claim 1, wherein: the image sensor (12) adopts a crystalline phase F37 JX-F37-C1-M3 sensor, and the control module (10) adopts a processor RTS 3903N.
5. The remote video conference camera of claim 1, wherein: the power supply module (20) comprises three power supply chips RY3430 and one power supply chip AD 9193.
CN202023035082.3U 2020-12-16 2020-12-16 Remote video conference camera Active CN213461957U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023035082.3U CN213461957U (en) 2020-12-16 2020-12-16 Remote video conference camera

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023035082.3U CN213461957U (en) 2020-12-16 2020-12-16 Remote video conference camera

Publications (1)

Publication Number Publication Date
CN213461957U true CN213461957U (en) 2021-06-15

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