WO2019100527A1 - 摄像头模组及烹饪装置 - Google Patents

摄像头模组及烹饪装置 Download PDF

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Publication number
WO2019100527A1
WO2019100527A1 PCT/CN2017/119488 CN2017119488W WO2019100527A1 WO 2019100527 A1 WO2019100527 A1 WO 2019100527A1 CN 2017119488 W CN2017119488 W CN 2017119488W WO 2019100527 A1 WO2019100527 A1 WO 2019100527A1
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Prior art keywords
heat
camera module
hole
heat dissipation
lens
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PCT/CN2017/119488
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English (en)
French (fr)
Inventor
黄俊豪
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广东美的厨房电器制造有限公司
美的集团股份有限公司
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Publication of WO2019100527A1 publication Critical patent/WO2019100527A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof
    • H04N23/50Constructional details
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J37/00Baking; Roasting; Grilling; Frying
    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03BAPPARATUS OR ARRANGEMENTS FOR TAKING PHOTOGRAPHS OR FOR PROJECTING OR VIEWING THEM; APPARATUS OR ARRANGEMENTS EMPLOYING ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ACCESSORIES THEREFOR
    • G03B17/00Details of cameras or camera bodies; Accessories therefor
    • G03B17/55Details of cameras or camera bodies; Accessories therefor with provision for heating or cooling, e.g. in aircraft

Definitions

  • the present invention relates to the field of household appliances, and in particular to a camera module and a cooking device therewith.
  • the object of the present invention is to overcome the problem that the camera of the prior art is not suitable for high temperature or complicated structure, and provides a camera module, which can be used in a high temperature environment, has a simple structure, and has high safety in use.
  • Another object of the present invention is to provide a cooking apparatus including the above-described camera module.
  • an aspect of the present invention provides a camera module, the camera module includes: a camera body, the camera body includes a lens and a processing unit connected to the lens; a fixed seat, the fixed seat has a through hole, the camera body is sealingly mounted in the fixing seat and the lens is aligned with the through hole; the heat insulating transparent glass is mounted on the fixing seat and covers the same And a heat sink, the processing unit is thermally conductively coupled to the heat sink to dissipate heat through the heat sink.
  • the wall surface of the fixing seat is layered to form an inner wall surface and an outer wall surface, and a first hollow heat insulating layer is formed between the inner wall surface and the outer wall surface.
  • the camera module includes a plurality of the heat-insulating transparent glass disposed at intervals along the extending direction of the through hole, and a second hollow heat insulating layer is formed between the adjacent heat-insulating transparent glass.
  • the camera module includes two heat-insulating transparent glass disposed at intervals along an extending direction of the through hole, and a second hollow heat insulation is formed between two adjacent heat-insulating transparent glass a layer, the second hollow heat insulation layer is in communication with the first hollow heat insulation layer.
  • the heat dissipating device comprises a heat dissipating module made of a heat conductive material, the heat dissipating module comprising a main body and heat dissipating fins respectively disposed on two sides of the main body and a mounting seat having a mounting groove, the processing unit Mounted thermally in the mounting slot.
  • an angle formed between a direction in which the center line of the lens extends and a plane in which the main body is located is an acute angle.
  • the camera module further includes: a cover body disposed on the heat dissipating fin side of the heat dissipating device, and provided with an air inlet hole; and a cooling fan formed on the heat dissipating device Between the covers.
  • the heat dissipating device is formed with a groove for fitting the cooling fan on the heat dissipating fin side.
  • the cover body is provided with a fixing structure for fixing the cooling fan.
  • a second aspect of the present invention provides a cooking apparatus comprising: a heating chamber constituting a heating chamber for food placement, and the heating chamber has an opening; a door body mounted to the opening for The heating chamber is closed or opened, wherein the door module is mounted with the camera module described above, and the camera module is used for capturing an image in the heating chamber.
  • the camera body is sealingly mounted in the fixing base and the lens is aligned with the through hole, and the heat insulating transparent glass seal is mounted on the fixing seat and covers the through hole, thereby achieving good heat insulation effect.
  • the processing unit connected to the lens is thermally conductively connected to the heat dissipating device to dissipate heat through the heat dissipating device, and the heat can be actively radiated to the outside, and the heat dissipating effect is remarkable, so that the camera module can be used in a high temperature environment and the safety performance is used. It is taller and simpler and more compact, making it easy to install, disassemble and repair.
  • FIG. 1 is a cross-sectional structural view of a camera module according to a preferred embodiment of the present invention
  • FIG. 2 is a schematic exploded view of a camera module in accordance with a preferred embodiment of the present invention.
  • orientation words such as “up, down, left, and right” as used generally refer to the above, below, left, and right as shown in the accompanying drawings; "inside and outside”. It refers to the inside and outside of the contour of each component itself.
  • An aspect of the present invention provides a camera module including a camera body 1, a fixing base 2, a heat insulating transparent glass 3, and a heat dissipating device 4.
  • the camera body 1 includes a lens 11 and a processing unit 12 connected to the lens 11.
  • the fixing base 2 has a through hole 21, the camera body 1 is sealingly mounted in the fixing base 2, and the lens 11 is aligned with the through hole 21.
  • the heat insulating transparent glass 3 is sealingly mounted on the fixing base 2 and covering the through hole 21, and the processing unit 12 is
  • the heat sink 4 is thermally conductively connected to dissipate heat through the heat sink 4.
  • the processing unit 12 mainly includes an image processing chip with high heat generation, and the image processing chip can perform image recording and analysis processing.
  • the shape of the heat-insulating light-transmitting glass 3 can be variously selected, for example, a circular shape.
  • the camera body 1 is sealingly mounted in the fixing base 2 and the lens 11 is aligned with the through hole 21, and the heat insulating transparent glass 3 is sealed and mounted on the fixing base 2 and covered.
  • the through hole 21 can play a good thermal insulation function.
  • the processing unit 12 is thermally conductively connected to the heat dissipating device 4 to dissipate heat through the heat dissipating device 4, and the heat can be actively radiated to the outside, so that the heat dissipating effect is remarkable, thereby making the camera module
  • the group can be used in high temperature environment, and has high safety performance, and the structure is simple and compact, which is convenient for installation, disassembly and maintenance.
  • the wall surface of the fixing base 2 is layered to form the inner wall surface 2a and the outer wall surface 2b, and the first hollow heat insulation is formed between the inner wall surface 2a and the outer wall surface 2b.
  • the camera module includes a plurality of heat-insulating transparent glass 3 spaced apart along the extending direction of the through hole 21, and a second hollow heat insulating layer is formed between the adjacent heat-insulating light-transmitting glass 3 F. That is to say, a plurality of heat-insulating transparent glass 3 can be layered and fixed respectively with the fixing seat 2 to form a plurality of heat insulating spaces, and the heat insulating space can be vacuum-treated to further improve the heat insulating effect, generally every Adding a layer of heat-insulating light-transmissive glass 3 can reduce 6 degrees Celsius.
  • the fixing base 2 is provided with a fixing groove 22 in which the heat-transmissive transparent glass 3 is mounted. This also makes the heat-insulating light-transmitting glass 3 reliable in mounting position, compact in structure and simple in appearance.
  • the camera module includes two heat-insulating transparent glass 3 spaced apart along the extending direction of the through hole 21, and a second hollow heat insulating layer F is formed between the adjacent two heat-insulating transparent glass 3,
  • the second hollow heat insulating layer F is in communication with the first hollow heat insulating layer E.
  • the heat dissipating device 4 includes a heat dissipating module 41 made of a heat conductive material, and the processing unit 12 and the heat dissipating module 41 can be connected by a gel material having heat dissipation and blocking action, and the structure of the heat dissipating module 41 has various options.
  • the heat dissipation module 41 includes a main body 411 and heat dissipating fins 412 respectively disposed on both sides of the main body 411 and a mounting seat 413 having a mounting groove A.
  • the processing unit 12 is thermally conductively mounted to the mounting slot A, so that the processing unit 12 can conduct harmful heat to the heat dissipation module 41 in real time.
  • the heat dissipation module 41 can include a plurality of heat dissipation fins 412, and a plurality of The heat radiating fins 412 are circumferentially spaced around the main body 411 to uniformly dissipate heat to the outside.
  • the heat dissipation module 41 and the camera body 1 are independent components, and can be assembled by pasting. It can be understood that the heat dissipation module 41 can also be directly disposed on the camera body 1 (for example, a PCB board), that is, The camera body 1 is integrated with the camera body 1 to have a heat dissipation function.
  • the angle formed between the extending direction of the center line X of the lens 11 and the plane of the main body 411 is an acute angle, that is, the lens 11 can be inclined with respect to the heat dissipation module 41.
  • the main body 411 and the fixing base 2 may be connected by screws or rivets.
  • the camera module further includes a cover 42 and a cooling fan 43.
  • the cover 42 is disposed on the side of the heat dissipation fins 412 of the heat dissipation device 4, and the cover 42 is disposed. There is an air inlet hole, and the cover 42 can reduce the probability of the heat radiation fins 412 being damaged.
  • the cooling fan 43 is formed between the heat sink 4 and the cover 42 to increase the air intake amount. The cooling fan 43 can blow the heat dissipating fins 412 on the heat dissipating module 41 to dissipate heat as quickly as possible.
  • the heat dissipation speed can be directly increased by increasing the rotation speed of the cooling fan 43.
  • the lens 11 of the camera body 1 and the fixing base 2 are sealingly connected, the convection transmission of internal heat can be blocked.
  • the heat dissipating device 4 is formed with a groove B for the cooling fan 43 to be fitted on the side of the heat dissipating fin 412. Further, the cover 42 is provided with a cooling fan for fixing.
  • the fixed structure 421 of 43 may be, for example, a plurality of rods disposed around the outside of the cooling fan 43.
  • a second aspect of the present invention provides a cooking apparatus comprising a heating chamber and a door body, the heating chamber forming a heating chamber for placing food, and the heating chamber has an opening, the door body being mounted to the opening for closing or opening the heating a cavity, wherein the camera module is mounted on the door body, and the camera module is used for capturing an image in the heating cavity. Since the cooking device has the above-described camera module, it has all the advantages of the camera module.
  • the cooking device may be, for example, an oven, a microwave oven, an electric steamer, or the like.

Abstract

一种摄像头模组及烹饪装置,摄像头模组包括:摄像头本体(1),包括镜头(11)和与镜头相连的处理单元(12);固定座(2),具有通孔(21),摄像头本体密封安装在固定座内且镜头对准通孔;隔热透光玻璃(3),密封安装在固定座上并覆盖通孔;和散热装置(4),处理单元与散热装置热传导地连接,以通过散热装置散热。通过将隔热透光玻璃密封安装在固定座上并覆盖通孔,可起到良好的隔热作用,将处理单元与散热装置热传导地连接,以通过散热装置散热,可将热量主动向外部散发,散热效果显著,使摄像头模组可用于高温环境中,使用安全性能高,同时结构简单紧凑,便于安装拆卸和维修。

Description

摄像头模组及烹饪装置 技术领域
本发明涉及家用电器领域,具体地涉及一种摄像头模组及具有其的烹饪装置。
背景技术
带有摄像头的产品已广泛应用于日常生活的方方面面,除了传统的照相机和摄录机外,手机和手提电脑都配有摄像头。但是,现在摄像头产品因成本和技术限制,一般只能用在常温的环境,而不能承受较高的使用环境温度。当被直接使用在带加热功能的电器(例如烤箱)上时会因其工作环境温度较高而导致图象质量下降甚至损坏。
因此,存在设计一种能够用于高温环境的结构简单且使用安全性较高的摄像头模组的需要。
发明内容
本发明的目的是为了克服现有技术存在的摄像头不适用高温或结构复杂的问题,提供一种摄像头模组,该摄像头模组能够用于高温环境,且结构简单,使用安全性较高。
本发明的另一目的是为了提供一种包括上述摄像头模组的烹饪装置。
为了实现上述目的,本发明一方面提供一种摄像头模组,所述摄像头模组包括:摄像头本体,所述摄像头本体包括镜头和与所述镜头相连的处理单元;固定座,所述固定座具有通孔,所述摄像头本体密封安装在所述固定座内且所述镜头对准所述通孔;隔热透光玻璃,所述隔热透光玻璃密封安装在所述固定座上并覆盖所述通孔;和散热装置,所述处理单元与所 述散热装置热传导地连接,以通过所述散热装置散热。
优选地,所述固定座的壁面分层形成内壁面及外壁面,所述内壁面与所述外壁面之间形成第一中空隔热层。
优选地,所述摄像头模组包括沿所述通孔的延伸方向间隔设置的多个所述隔热透光玻璃,相邻的所述隔热透光玻璃之间形成第二中空隔热层。
优选地,所述摄像头模组包括沿所述通孔的延伸方向间隔设置的两个所述隔热透光玻璃,相邻的两个所述隔热透光玻璃之间形成第二中空隔热层,所述第二中空隔热层与所述第一中空隔热层连通。
优选地,所述散热装置包括由导热材料制成的散热模块,所述散热模块包括主板体以及分别设置在所述主板体两侧的散热翅片和具有安装槽的安装座,所述处理单元热传导地安装于所述安装槽。
优选地,所述镜头的中心线延伸方向与所述主板体所在的平面之间形成的夹角为锐角。
优选地,所述摄像头模组还包括:罩体,其盖设于所述散热装置的所述散热翅片侧,且其设置有进风孔;和冷却风机,其形成于所述散热装置与所述罩体之间。
优选地,所述散热装置在所述散热翅片侧形成有用于供所述冷却风机嵌合的凹槽。
优选地,所述罩体内设置有用于固定所述冷却风机的固定结构。
本发明第二方面提供一种烹饪装置,所述烹饪装置包括:加热腔体,其构成供食物放置的加热腔,且所述加热腔具有开口;门体,其安装于所述开口,用于封闭或打开所述加热腔,其中,所述门体上安装有上述的摄像头模组,所述摄像头模组用于拍摄所述加热腔内的图像。
在上述技术方案中,将摄像头本体密封安装在固定座内且镜头对准所述通孔,隔热透光玻璃密封安装在所述固定座上并覆盖通孔,可起到良好的隔热作用,另外,将与镜头相连的处理单元与散热装置热传导地连接, 以通过散热装置散热,可将热量主动向外部散发,散热效果显著,从而使摄像头模组可用于高温环境中,且使用安全性能较高,同时结构简单紧凑,便于安装拆卸和维修。
附图说明
图1是本发明优选实施方式的摄像头模组的剖视结构示意图;
图2是本发明优选实施方式的摄像头模组的分解结构示意图。
附图标记说明
1   摄像头本体           11  镜头
12  处理单元             2   固定座
21  通孔                 22  固定槽
3   隔热透光玻璃         4   散热装置
41  散热模块             411 主板体
412 散热翅片             413 安装座
42  罩体                 421 固定结构
43  冷却风机             X   中心线
A   安装槽               B   凹槽
2a  内壁面               2b  外壁面
E   第一中空隔热层       F   第二中空隔热层
具体实施方式
以下结合附图对本发明的具体实施方式进行详细说明。应当理解的是,此处所描述的具体实施方式仅用于说明和解释本发明,并不用于限制本发明。
在本发明中,在未作相反说明的情况下,使用的方位词如“上、下、 左、右”通常是指参考附图所示的上、下、左、右;“内、外”是指相对于各部件本身的轮廓的内、外。
本发明一方面提供一种摄像头模组,摄像头模组包括摄像头本体1、固定座2、隔热透光玻璃3和散热装置4,摄像头本体1包括镜头11和与镜头11相连的处理单元12,固定座2具有通孔21,摄像头本体1密封安装在固定座2内且镜头11对准通孔21,隔热透光玻璃3密封安装在固定座2上并覆盖通孔21,处理单元12与散热装置4热传导地连接,以通过散热装置4散热。
其中,处理单元12主要包括高发热量的图像处理芯片,该图像处理芯片可进行图像摄录和分析处理。另外,隔热透光玻璃3的形状可有多种选择,例如为圆形。
在上述技术方案中,如图1和图2所示,将摄像头本体1密封安装在固定座2内且镜头11对准通孔21,隔热透光玻璃3密封安装在固定座2上并覆盖通孔21,可起到良好的隔热作用,另外,将处理单元12与散热装置4热传导地连接,以通过散热装置4散热,可将热量主动向外部散发,散热效果显著,从而使摄像头模组可用于高温环境中,且使用安全性能较高,同时结构简单紧凑,便于安装拆卸和维修。
其中,为了使固定座2能够起到良好的隔热作用,优选地,固定座2的壁面分层形成内壁面2a及外壁面2b,内壁面2a与外壁面2b之间形成第一中空隔热层E。
为了增强隔热效果,优选地,摄像头模组包括沿通孔21的延伸方向间隔设置的多个隔热透光玻璃3,相邻的隔热透光玻璃3之间形成第二中空隔热层F。也就是说,多个隔热透光玻璃3可分层地分别与固定座2密封固定以形成多个隔热空间,且隔热空间可进行抽真空处理,以进一步提高隔热效果,一般每增加一层隔热透光玻璃3可降低6摄氏度。另外,为了方便将隔热透光玻璃3安装在固定座2上,优选地,固定座2上设置有安装隔 热透光玻璃3的固定槽22。这样也使隔热透光玻璃3的安装位置可靠,同时结构紧凑且外形简洁。
并且优选地,摄像头模组包括沿通孔21的延伸方向间隔设置的两个隔热透光玻璃3,相邻的两个隔热透光玻璃3之间形成第二中空隔热层F,第二中空隔热层F与第一中空隔热层E连通。这样能够在较大范围能形成中空隔热层,能够更好地提高隔热效果。
其中,优选地,散热装置4包括由导热材料制成的散热模块41,处理单元12与散热模块41可通过具有散热和带粘连作用的胶状材料连接,并且散热模块41的结构有多种选择,为了方便散热和使处理单元12能够可靠稳固地安装在散热模块41上,散热模块41包括主板体411以及分别设置在主板体411两侧的散热翅片412和具有安装槽A的安装座413,处理单元12热传导地安装于安装槽A,这样使处理单元12可实时地把有害的热量传导到散热模块41上,为了提高散热速度,散热模块41可包括多个散热翅片412,多个散热翅片412围绕主板体411的周向间隔设置,以便均匀地向外部散发热量。在上述实施例中,散热模块41与摄像头本体1是相互独立的部件,可通过粘贴组装在一起,可以理解的是散热模块41也可直接设置在摄像头本体1(例如PCB板)上,也就是与摄像头本体1整合在一起,使摄像头本体1具有散热功能。
其中,为了满足不同角度的拍摄需求,优选地,镜头11的中心线X延伸方向与主板体411所在平面之间形成的夹角为锐角,也就是说,镜头11可相对于散热模块41倾斜。另外,为了方便散热模块41与固定座2连接和进行拆卸维修,主板体411与固定座2可通过螺钉或铆钉连接。
另外,为了提高装置的安全使用性能和散热速度,优选地,摄像头模组还包括罩体42和冷却风机43,罩体42盖设于散热装置4的散热翅片412侧,且罩体42设置有进风孔,设置罩体42可降低散热翅片412被损坏的概率,另外,冷却风机43形成于散热装置4与罩体42之间,能够提高进 风量。冷却风机43可对散热模块41上的散热翅片412进行吹风,使热量尽快发散。通过提高冷却风机43的转速可直接提高散热速度。同时,由于摄像头本体1的镜头11与固定座2是密封连接的,可阻挡内部热量的对流传递。
为了使冷却风机43的固定位置更加可靠,优选地,散热装置4在散热翅片412侧形成有用于供冷却风机43嵌合的凹槽B,进一步地,罩体42内设置有用于固定冷却风机43的固定结构421。其中,如图2所示,固定结构421例如可以是围绕冷却风机43外部设置的多个杆体。
本发明第二方面提供一种烹饪装置,烹饪装置包括加热腔体和门体,加热腔体构成供食物放置的加热腔,且加热腔具有开口,门体安装于开口,用于封闭或打开加热腔,其中,门体上安装有上述的摄像头模组,摄像头模组用于拍摄加热腔内的图像。由于该烹饪装置具有上述的摄像头模组,因此具有该摄像头模组的所有优点。其中,烹饪装置例如可为烤箱、微波炉和电蒸炉等。
以上结合附图详细描述了本发明的优选实施方式,但是,本发明并不限于此。在本发明的技术构思范围内,可以对本发明的技术方案进行多种简单变型,包括各个具体技术特征以任何合适的方式进行组合。为了避免不必要的重复,本发明对各种可能的组合方式不再另行说明。但这些简单变型和组合同样应当视为本发明所公开的内容,均属于本发明的保护范围。

Claims (10)

  1. 一种摄像头模组,其特征在于,所述摄像头模组包括:
    摄像头本体(1),所述摄像头本体(1)包括镜头(11)和与所述镜头(11)相连的处理单元(12);
    固定座(2),所述固定座(2)具有通孔(21),所述摄像头本体(1)密封安装在所述固定座(2)内且所述镜头(11)对准所述通孔(21);
    隔热透光玻璃(3),所述隔热透光玻璃(3)密封安装在所述固定座(2)上并覆盖所述通孔(21);和
    散热装置(4),所述处理单元(12)与所述散热装置(4)热传导地连接,以通过所述散热装置(4)散热。
  2. 根据权利要求1所述的摄像头模组,其特征在于,所述固定座(2)的壁面分层形成内壁面(2a)及外壁面(2b),所述内壁面(2a)与所述外壁面(2b)之间形成第一中空隔热层(E)。
  3. 根据权利要求1所述的摄像头模组,其特征在于,所述摄像头模组包括沿所述通孔(21)的延伸方向间隔设置的多个所述隔热透光玻璃(3),相邻的所述隔热透光玻璃(3)之间形成第二中空隔热层(F)。
  4. 根据权利要求2所述的摄像头模组,其特征在于,所述摄像头模组包括沿所述通孔(21)的延伸方向间隔设置的两个所述隔热透光玻璃(3),相邻的两个所述隔热透光玻璃(3)之间形成第二中空隔热层(F),所述第二中空隔热层(F)与所述第一中空隔热层(E)连通。
  5. 根据权利要求1-4中任一项所述的摄像头模组,其特征在于,所述散热装置(4)包括由导热材料制成的散热模块(41),所述散热模块(41) 包括主板体(411)以及分别设置在所述主板体(411)两侧的散热翅片(412)和具有安装槽(A)的安装座(413),所述处理单元(12)热传导地安装于所述安装槽(A)。
  6. 根据权利要求5所述的摄像头模组,其特征在于,所述镜头(11)的中心线(X)延伸方向与所述主板体(411)所在的平面之间形成的夹角为锐角。
  7. 根据权利要求6所述的摄像头模组,其特征在于,所述摄像头模组还包括:
    罩体(42),其盖设于所述散热装置(4)的所述散热翅片(412)侧,且其设置有进风孔;和
    冷却风机(43),其形成于所述散热装置(4)与所述罩体(42)之间。
  8. 根据权利要求7所述的摄像头模组,其特征在于,所述散热装置(4)在所述散热翅片(412)侧形成有用于供所述冷却风机(43)嵌合的凹槽(B)。
  9. 根据权利要求8所述的摄像头模组,其特征在于,所述罩体(42)内设置有用于固定所述冷却风机(43)的固定结构(421)。
  10. 一种烹饪装置,其特征在于,所述烹饪装置包括:
    加热腔体,其构成供食物放置的加热腔,且所述加热腔具有开口;
    门体,其安装于所述开口,用于封闭或打开所述加热腔,
    其中,所述门体上安装有权利要求1-9中任一项所述的摄像头模组,所述摄像头模组用于拍摄所述加热腔内的图像。
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