CN212788277U - Camera module for heating device and heating device - Google Patents

Camera module for heating device and heating device Download PDF

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Publication number
CN212788277U
CN212788277U CN202020905313.2U CN202020905313U CN212788277U CN 212788277 U CN212788277 U CN 212788277U CN 202020905313 U CN202020905313 U CN 202020905313U CN 212788277 U CN212788277 U CN 212788277U
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shell
circuit board
heating device
camera
heat dissipation
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CN202020905313.2U
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Chinese (zh)
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周晔
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Global Ai & Display Co ltd
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Global Ai & Display Co ltd
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Abstract

The utility model discloses a camera module and heating device for heating device, through opening the viewing aperture on heating the chamber, and set up the casing in this viewing aperture department, set up camera and circuit board in the casing, shoot the inside in heating chamber by the camera, and set up the radiating part in the casing, set up the breach on the casing, form the heat dissipation wind channel by radiating part to breach, and dispel the heat by camera and the circuit board in the wind channel to the casing, in order to guarantee at heating device operation in-process, the operating temperature of camera and circuit board can not be too high in the casing, in order to avoid camera and circuit board to lead to shutting down or unable use because of overheated, the life of camera and circuit board has further been prolonged simultaneously.

Description

Camera module for heating device and heating device
Technical Field
The utility model belongs to the technical field of household electrical appliances, especially, relate to a camera module and heating device for heating device.
Background
At present, the living standard of people is improved, and the electric oven enters thousands of households. With the further development of network information and the acceleration of the pace of life of people, the mechanical electric oven can not meet the daily life requirements of people gradually, and the intelligent electric oven based on machine vision can gradually enter the visual field of people. Install the camera in the oven, thereby on the one hand can intelligent recognition eat material and accomplish intelligent culinary art, also can share the culinary art process through picture or video in addition. However, the use and service life of cameras and electronic components are seriously affected by the over-high internal temperature (over 200 ℃ and close to 300 ℃) of the conventional electric oven.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to provide a camera module and heating device for heating device.
In order to solve the above problem, the technical scheme of the utility model is that:
the utility model discloses a camera module for heating device, be equipped with the heating chamber in the heating device, the viewing aperture has been seted up on the outer wall in heating chamber, include:
the heating chamber comprises a heating chamber, a shell, a heating cavity and a heating cavity, wherein the heating chamber is provided with an outer wall surface, the heating cavity is provided with an outer wall surface, and the outer wall surface is provided with an observation window;
the camera is arranged in the shell, corresponds to the observation window and is used for shooting the heating cavity through the observation window and the observation port;
the circuit board is fixedly connected in the shell and is electrically connected with the camera;
the heat dissipation part is fixedly connected in the shell and used for dissipating heat of the camera and the circuit board;
and the first end of the air pipe is communicated with an air inlet of the heat dissipation part, and the second end of the air pipe is connected to the shell of the heating device and is communicated with outside air.
The utility model relates to a camera module for a heating device, wherein the shell comprises an observation shell, a middle shell and a shell cover,
the observation window is arranged on the front surface of the observation shell, and the front surface of the observation shell is connected with and attached to the outer wall surface of the heating cavity;
the middle shell is provided with a channel for the camera to penetrate and extend into the observation window, and the periphery of the middle shell is provided with the notch; the front end of the middle shell is connected to the rear surface of the observation shell; the camera and the circuit board are both connected to the inner cavity of the middle shell; the heat dissipation part is connected to the rear end of the middle shell;
the shell cover is connected to the rear end of the middle shell and covers the heat dissipation part; the shell cover is provided with a communicating opening used for connecting the air pipe, and the air pipe is connected with the communicating opening.
The utility model discloses a camera module for heating device, the observation window includes the observation frame and the glass that the protruding locates the observation shell front surface; an opening is formed in the observation frame, and the glass is attached to the observation frame and covers the opening.
The utility model discloses a camera module for heating device, the inner chamber of middle casing is equipped with a plurality of circuit board spliced poles, and the circuit board spliced pole corresponds with the connecting hole on the circuit board; the circuit board is connected with the circuit board connecting column through the connecting hole on the circuit board connecting column through a bolt.
The utility model discloses a camera module for heating device, be equipped with a plurality of radiating part spliced poles in the inner chamber of middle casing, and radiating part spliced pole and the connecting hole on the radiating part correspond; the heat dissipation part is connected with the heat dissipation part connecting column through the connecting hole on the heat dissipation part through a bolt.
The utility model discloses a camera module for heating device, the radiating part is direct current radiator fan or exchanges radiator fan.
The utility model discloses a camera module for heating device, the second end of tuber pipe with the bottom or the side or the rear portion intercommunication of heating device's shell.
The utility model discloses a camera module for heating device still includes the light, locates in the casing and with circuit board electricity is connected, be used for doing the camera provides required light source.
The utility model discloses a camera module for heating device, the tuber pipe is metal panel beating pipe or plastic pipe.
The utility model discloses a heating device installs above-mentioned arbitrary one be used for heating device's camera module.
The utility model discloses owing to adopt above technical scheme, make it compare with prior art and have following advantage and positive effect:
the utility model relates to an embodiment is through opening the viewing aperture on heating the chamber, and set up the casing in this viewing aperture department, set up camera and circuit board in the casing, shoot the inside in heating chamber by the camera, and set up the radiating part in the casing, set up the breach on the casing, form the heat dissipation wind channel by radiating part to breach, and dispel the heat by camera and the circuit board in the wind channel to the casing, in order to guarantee at heating device operation in-process, the operating temperature of camera and circuit board can not be too high in the casing, in order to avoid camera and circuit board to lead to shutting down or unable use because of overheated, the life of camera and circuit board has further been prolonged simultaneously.
Drawings
Fig. 1 is a schematic view of a camera module according to the present invention;
fig. 2 is a schematic view of an observation window of the camera module of the present invention;
fig. 3 is another schematic view of the camera module according to the present invention;
fig. 4 is a schematic view of a middle housing of the camera module of the present invention;
fig. 5 is a schematic view of a heat dissipation portion of the camera module according to the present invention;
fig. 6 is a schematic view of an air duct of the camera module of the present invention;
fig. 7 is a schematic view of an exhaust notch of the camera module according to the present invention;
fig. 8 is another schematic view of the exhaust notch of the camera module according to the present invention;
fig. 9 is another schematic view of the air duct of the camera module according to the present invention.
Description of reference numerals: 1: observing the shell; 2: a middle housing; 3: a shell cover; 4: an observation window; 5: a communication port; 6: a flat cable notch; 7: glass; 8: a camera; 9: a circuit board; 10: a circuit board connection post; 11: a heat dissipation part connecting column; 12: a heat dissipating section; 13: an air duct; 14: and (4) an air exhaust notch.
Detailed Description
The following describes the camera module and the heating device for a heating device in detail with reference to the accompanying drawings and specific embodiments. The advantages and features of the present invention will become more fully apparent from the following description and appended claims.
Example one
Referring to fig. 1 to 7, in an embodiment, a camera module for a heating apparatus, a heating chamber is disposed in the heating apparatus, a viewing port is disposed on an outer wall surface of the heating chamber, and the camera module may include: the camera comprises a shell, a camera 8, a circuit board 9, a heat dissipation part 12 and an air duct 13. The concrete structure is as follows:
the front end of the shell is provided with an observation window 4, an exhaust gap 14 is arranged on the shell, the shell is attached to the outer wall surface of the heating cavity, and the observation window 4 corresponds to the observation port. The camera 8 is arranged in the shell and corresponds to the observation window 4 and is used for shooting the heating cavity through the observation window 4 and the observation port. The circuit board 9 is fixedly connected in the shell and electrically connected with the camera 8, and power supply communication and output signal lines and the like are wired through the wiring gap 6. The heat dissipation part 12 is fixedly connected in the housing and used for dissipating heat of the camera and the circuit board 9. The first end of the air duct 13 is communicated with an air inlet of the heat dissipation portion 12, and the second end is connected to the housing of the heating device and communicated with the outside air.
This embodiment is through opening the viewing aperture on the heating chamber, and set up the casing in this viewing aperture department, set up camera 8 and circuit board 9 in the casing, shoot the inside in heating chamber by camera 8, and set up heat dissipation part 12 in the casing, set up exhaust breach 14 on the casing, form the heat dissipation wind channel by heat dissipation part 12 to exhaust breach 14, and dispel the heat by camera 8 and circuit board 9 in the wind channel to the casing, in order to guarantee at heating device operation in-process, the operating temperature of camera 8 and circuit board 9 in the casing can not be too high, in order to avoid camera 8 and circuit board 9 to lead to shutting down or unable use because of overheated, the life of camera 8 and circuit board 9 has further been prolonged simultaneously.
Further, the heat dissipation parts at the positions of the camera 8 and the circuit board 9 are arranged to be fans, the power of the fans is small, meanwhile, the heat dissipation capacity is good, on the premise that the heat dissipation is achieved to guarantee normal work of the camera 8, targeted local heat dissipation is adopted, extra power consumption is reduced, the situation that the overall power of the heating device is greatly increased is avoided, and the burden on a household circuit is low.
The following further describes the specific structure of the present embodiment:
in this embodiment, the housing may specifically include an observation housing 1, an intermediate housing 2, and a housing cover 3.
Wherein, the observation window 4 is arranged on the front surface of the observation shell 1, and the front surface of the observation shell 1 is connected and attached to the outer wall surface of the heating cavity. Specifically, the observation window 4 is an observation frame and a glass 7 provided protrudingly on the front surface of the observation case 1. An opening is arranged on the observation shell 1, and the glass 7 is attached to the observation shell 1 and covers the opening. Observe shell 1 specifically and be a cavity sloping block, cavity sloping block down surface is just to the bottom surface in heating chamber, and this opening is seted up simultaneously to the holding region of food promptly, is passed through high temperature resistant rubber ring or sealed glue by glass 7 and is carried out cladding and sealed to the opening, sets up like this, and camera 8 can be through glass 7 to the food holding region in the heating chamber shoot. The observation shell 1 can be made of metal or high-temperature-resistant materials, and the glass 7 can be made of light-transmitting glass or light-transmitting materials, so that the camera 8 can shoot the containing area of the food.
Referring to fig. 7, the middle housing 2 is provided with a passage for the camera 8 to pass through and extend into the observation window 4, and an exhaust notch 14 for the heat dissipation portion 12 to flow out is provided on the periphery of the middle housing 2. The front end of the intermediate case 2 is attached to the rear surface of the observation case 1. The camera 8 and the circuit board 9 are both connected to the inner cavity of the middle housing 2. The heat dissipation portion 12 is connected to the rear end of the intermediate housing 2. The case cover 3 is connected to the rear end of the intermediate case 2 and covers the heat dissipation portion 12. The housing cover 3 is provided with a communication port 5 for connecting an air pipe 13, and the air pipe 13 is connected to the communication port 5. In other embodiments, the installation position of the heat dissipation portion 12 is not limited to just dissipating heat from the camera 8 and the circuit board 9, and may also be disposed on the periphery side of the middle housing 2, and only the requirement that the airflow for dissipating heat can dissipate heat through the camera 8 and the circuit board 9 is satisfied, which is not particularly limited herein.
That is, the middle shell 2 and the shell cover 3 are matched to form a hollow cavity, the front end of which is provided with a channel for shooting, the rear end of which is provided with a communicating port 5 of an air pipe 13, and the cavity is internally provided with a camera 8, a circuit board 9 and a heat dissipation part 12.
Referring to fig. 4, in particular, a plurality of circuit board connection posts 10 are disposed in the inner cavity of the middle housing 2, and the circuit board 9 corresponds to the connection holes on the circuit board connection posts 10. The circuit board 9 is connected with the connection column bolt of the circuit board connection column 10 through the connection hole on the circuit board. A plurality of heat dissipation part connecting columns 11 are arranged in the inner cavity of the middle shell 2, and the heat dissipation part connecting columns 11 correspond to the connecting holes in the heat dissipation part 12. The heat dissipation part 12 is bolted to the heat dissipation part connection post 11 through connection holes formed therein. The circuit board 9 and the heat dissipation part 12 are fixed in a mode of arranging the connecting columns, so that accurate and difficult loosening of positioning is guaranteed, meanwhile, assembly is facilitated, and labor is saved.
In the present embodiment, the heat dissipation portion 12 may be a dc heat dissipation fan or an ac heat dissipation fan.
In this embodiment, referring to fig. 6, the second end of the air duct 13 is communicated with the bottom, the side, or the rear of the housing of the heating device, and the connection position of the second end of the air duct 13 can be flexibly adjusted according to the structures of different heating devices, such as fig. 8 and 9, and the adjustment position of the air duct connection position has a higher degree of adaptability. Meanwhile, the air duct 13 may be a circular duct or a dedicated mold (such as a metal sheet or a plastic part), and the material of the air duct 13 may be a flexible material or a dedicated metal or non-metal material.
In this embodiment, the camera module may further include an illumination lamp disposed in the housing and electrically connected to the circuit board 9, so as to provide a light source for the camera 8, i.e., supplement light for the inside of the heating cavity. In other embodiments, other various sensors, such as a temperature sensor, etc., may be disposed in the housing, and are not specifically limited herein.
Example two
A heating device is provided with the camera module for the heating device in the first embodiment.
Set up this camera module in heating device's heating chamber, thereby can realize accomplishing only can cook to the intelligent recognition of eating the material, also can share the picture or the video of culinary art process in addition.
This camera module is through opening the viewing aperture on the heating chamber, and set up the casing in this viewing aperture department, set up camera 8 and circuit board 9 in the casing, shoot the inside in heating chamber by camera 8, and set up heat dissipation part 12 in the casing, set up exhaust breach 14 on the casing, form the heat dissipation wind channel by heat dissipation part 12 to exhaust breach 14, and dispel the heat by camera 8 and circuit board 9 in the wind channel to the casing, in order to guarantee at heating device operation in-process, camera 8 and circuit board 9's operating temperature can not be too high in the casing, in order to avoid camera 8 and circuit board 9 to lead to shutting down or unable use because of overheated, the life of camera 8 and circuit board 9 has further been prolonged simultaneously.
The embodiments of the present invention have been described in detail with reference to the accompanying drawings, but the present invention is not limited to the above embodiments. Even if various changes are made to the present invention, the changes are still within the scope of the present invention if they fall within the scope of the claims and their equivalents.

Claims (10)

1. The utility model provides a camera module for heating device, a serial communication port, be equipped with the heating chamber in the heating device, the viewing aperture has been seted up on the outer wall in heating chamber, include:
the front end of the shell is provided with an observation window, a gap is formed in the shell, the shell is attached to the outer wall surface of the heating cavity, and the observation window corresponds to the observation port;
the camera is arranged in the shell, corresponds to the observation window and is used for shooting the heating cavity through the observation window and the observation port;
the circuit board is fixedly connected in the shell and is electrically connected with the camera;
the heat dissipation part is fixedly connected in the shell and used for dissipating heat of the camera and the circuit board;
and the first end of the air pipe is communicated with an air inlet of the heat dissipation part, and the second end of the air pipe is connected to the shell of the heating device and is communicated with outside air.
2. The camera module for a heating device of claim 1, wherein the housing comprises a viewing shell, an intermediate shell, a shell cover,
the observation window is arranged on the front surface of the observation shell, and the front surface of the observation shell is connected with and attached to the outer wall surface of the heating cavity;
the middle shell is provided with a channel for the camera to penetrate and extend into the observation window, and the periphery of the middle shell is provided with the notch; the front end of the middle shell is connected to the rear surface of the observation shell; the camera and the circuit board are both connected to the inner cavity of the middle shell; the heat dissipation part is connected to the rear end of the middle shell;
the shell cover is connected to the rear end of the middle shell and covers the heat dissipation part; the shell cover is provided with a communicating opening used for connecting the air pipe, and the air pipe is connected with the communicating opening.
3. The camera module for a heating device of claim 2, wherein the viewing window comprises a viewing frame and a glass protruding from a front surface of the viewing housing; an opening is formed in the observation frame, and the glass is attached to the observation frame and covers the opening.
4. The camera module for the heating device according to claim 2, wherein a plurality of circuit board connection posts are provided in the inner cavity of the middle housing, and the circuit board connection posts correspond to the connection holes on the circuit board; the circuit board is connected with the circuit board connecting column through the connecting hole on the circuit board connecting column through a bolt.
5. The camera module for the heating device according to claim 2, wherein a plurality of heat dissipation connecting posts are arranged in the inner cavity of the middle shell, and the heat dissipation connecting posts correspond to the connecting holes on the heat dissipation part; the heat dissipation part is connected with the heat dissipation part connecting column through the connecting hole on the heat dissipation part through a bolt.
6. The camera module for a heating device according to claim 2, wherein the heat dissipation portion is a direct current heat dissipation fan or an alternating current heat dissipation fan.
7. The camera module for a heating device of claim 1, wherein the second end of the air duct is in communication with a bottom or side or rear portion of the housing of the heating device.
8. The camera module for a heating device of claim 1, further comprising a light disposed in the housing and electrically connected to the circuit board for providing a light source for the camera.
9. The camera module for a heating device of claim 1, wherein the air duct is a metal sheet metal tube or a plastic tube.
10. A heating apparatus, characterized in that a camera module for a heating apparatus according to any one of claims 1 to 9 is installed.
CN202020905313.2U 2020-05-26 2020-05-26 Camera module for heating device and heating device Active CN212788277U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020905313.2U CN212788277U (en) 2020-05-26 2020-05-26 Camera module for heating device and heating device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020905313.2U CN212788277U (en) 2020-05-26 2020-05-26 Camera module for heating device and heating device

Publications (1)

Publication Number Publication Date
CN212788277U true CN212788277U (en) 2021-03-26

Family

ID=75094091

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020905313.2U Active CN212788277U (en) 2020-05-26 2020-05-26 Camera module for heating device and heating device

Country Status (1)

Country Link
CN (1) CN212788277U (en)

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