WO2023070410A1 - 拍摄装置 - Google Patents

拍摄装置 Download PDF

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Publication number
WO2023070410A1
WO2023070410A1 PCT/CN2021/126847 CN2021126847W WO2023070410A1 WO 2023070410 A1 WO2023070410 A1 WO 2023070410A1 CN 2021126847 W CN2021126847 W CN 2021126847W WO 2023070410 A1 WO2023070410 A1 WO 2023070410A1
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WO
WIPO (PCT)
Prior art keywords
photographing device
board
circuit board
assembly
main body
Prior art date
Application number
PCT/CN2021/126847
Other languages
English (en)
French (fr)
Inventor
马舜
李德熙
Original Assignee
深圳市大疆创新科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳市大疆创新科技有限公司 filed Critical 深圳市大疆创新科技有限公司
Priority to PCT/CN2021/126847 priority Critical patent/WO2023070410A1/zh
Publication of WO2023070410A1 publication Critical patent/WO2023070410A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets

Definitions

  • the embodiments of the present application relate to the field of photography, and in particular, to a photography device.
  • the requirements for the portability and miniaturization of shooting devices are getting higher and higher, especially for sports cameras, the layout of internal components is not reasonable enough, and internal components such as batteries occupy a large space, making the layout freedom of other modules less , the layout flexibility is reduced, either making the lateral length of the shooting device larger, or making the shooting device thicker, resulting in a larger volume of the whole shooting device, which is not conducive to the miniaturization design of the shooting device.
  • an embodiment of the present application provides a photographing device.
  • An embodiment of the present application provides a photographing device, including:
  • a lens assembly at least a part of which is disposed inside the host housing
  • the battery assembly is arranged inside the main body casing, the battery assembly includes at least two battery cells, at least two of the battery cells are arranged at intervals relative to each other to form a storage space, at least a part of the lens assembly is accommodated in the storage inside the space.
  • the camera also includes:
  • a plurality of electronic modules at least one electronic module is arranged around the lens assembly and accommodated in the containing space.
  • At least one electronic module is disposed under at least two of the electric cores, arranged with at least two of the electric cores in a U-shaped accommodation space, and at least another electronic module is accommodated in the U-shaped inside the containment space.
  • the electronic module includes at least a first circuit board, a core board, a radio frequency board, and a sensor board; wherein, the first circuit board is disposed under at least two of the electric cores and the lens assembly , arranged together with at least two of the electric cores to form a U-shaped accommodation space, at least one of the radio frequency board and the sensor board is accommodated in the U-shaped accommodation space.
  • the radio frequency board, the first circuit board and the sensor board are respectively arranged above, below and behind the lens assembly.
  • the side surface of the electric core facing the main body casing is fixedly connected with the main body casing.
  • the battery cell is bonded and fixed to the host casing
  • a main buffer is extruded between the battery cell and the main body casing, wherein the main buffer includes at least one of the following: foam and rubber.
  • the battery cell is fixed on the first circuit board.
  • the battery core is welded to the first circuit board
  • the battery core is bonded to the first circuit board.
  • the host housing includes:
  • At least one support for mounting the electronic module.
  • the support includes at least two, at least two of the supports are arranged at intervals relative to each other along the height direction of the battery core, and at least one of the electronic modules is fixed on the support.
  • a heat conduction layer is provided between the electronic module and the support, and the heat conduction layer is used to conduct heat from the electronic module to the support.
  • a metal shielding layer is further included, and the metal shielding layer is disposed between the electronic module and the supporting member.
  • the thermally conductive layer includes a first thermally conductive layer and a second thermally conductive layer
  • the electronic module, the first heat-conducting layer, the metal shielding layer, the second heat-conducting layer, and the support are sequentially stacked and arranged along a predetermined direction.
  • the supporting member includes: a first supporting member, the first supporting member is arranged in the receiving space, and the supporting surface of the first supporting member is substantially perpendicular to the side surface of the electric core .
  • the first supporting member is in contact with the battery core through a middle buffer member.
  • the middle cushioning member includes at least one of the following: foam and rubber.
  • the support includes:
  • the second support is located at the bottom of the height direction of the two electric cores, and a gap is formed between the second support and the bottom of the electric core, the first circuit board accommodated in the gap.
  • the first circuit board includes an upper surface facing the battery core, and a lower surface facing the second support member;
  • a first buffer is provided on the upper surface of the first circuit board, and the first buffer is fixedly connected to the opposite side walls of the two electric cores.
  • the lower surface of the first circuit board is provided with a second buffer, and the second buffer is squeezed between the lower surface of the first circuit board and the second supporting member.
  • the first cushioning member includes at least one of the following: foam, rubber;
  • the second cushioning member includes at least one of the following: foam and rubber.
  • the lens assembly is fixed on the housing of the main body, and is located in the middle of the arrangement direction of at least two of the battery cells.
  • the electronic module includes a core board and a radio frequency board, the core board is arranged on one of the first support member and the second support member, and the radio frequency board is arranged on the first support member A support and the other of said second support.
  • the core board and the radio frequency board are away from each other;
  • the radio frequency board is located on the first support member, and the core board is located on the second support member.
  • the core board and the first circuit board are respectively located on two sides of the second supporting member.
  • the electronic module includes a sensor board, the sensor board is located in the receiving space, and the central axis of the lens assembly passes through the sensor board.
  • the lens assembly includes a front end protruding from the main body housing, and a rear end facing the receiving space, and the sensor board is directly opposite to the rear end of the lens assembly.
  • the host housing includes:
  • a front cover assembly, the battery assembly, the electronic module, and the support are all arranged on the front cover assembly;
  • the middle frame assembly an accommodation cavity is formed between the middle frame assembly and the front cover assembly, the electronic module is located in the accommodation cavity, and the accommodation space is formed in the accommodation cavity.
  • the lens assembly is fixed to the front cover assembly
  • the middle frame assembly includes a fixing bracket
  • the sensor board is disposed between the lens assembly and the fixing bracket of the middle frame assembly.
  • it also includes: an auxiliary heat dissipation layer;
  • the sensor board Along the direction in which the lens assembly points to the middle frame assembly, the sensor board, the third heat conduction layer, the auxiliary heat dissipation layer, and the fixing bracket are sequentially stacked.
  • the electronic module further includes: an antenna module;
  • the photographing device further includes an antenna bracket, the antenna module is connected to the antenna bracket, and the antenna bracket is detachably connected to the main body casing.
  • the antenna module is bonded to the antenna bracket through a flexible circuit board.
  • the radio frequency board and the antenna bracket are jointly connected to the main body casing through fasteners.
  • the antenna module includes at least one of the following: GPS antenna, WIFI antenna, and Bluetooth antenna.
  • the antenna module includes a connecting elastic piece, and the antenna module is connected to the radio frequency board through the connecting elastic piece.
  • the antenna module is disposed on a side of the first support that is away from the second support.
  • a first flexible circuit board is further included, the first flexible circuit board is connected to the core board, and the first flexible circuit board is connected to the host casing.
  • a color temperature sensor is pasted on the first flexible circuit board.
  • the camera also includes:
  • An external connector the external connector is used to connect with an external accessory, so that the external accessory can establish an electrical connection and/or a communication connection with the shooting device.
  • the external connector is fixed to the middle frame.
  • the external connector includes:
  • the fixing part is used for fixing with the middle frame
  • the movable part, the movable part includes a plurality of connection contacts, and the connection contacts are used for contacting and conducting with external accessories.
  • the photographing device further includes a first flexible circuit board, and the first flexible circuit board is connected to the core board, and the movable part is used to communicate with the copper drain of the first flexible circuit board. District electricity connection.
  • the fixed part includes a conductive column
  • the movable part includes a first metal elastic part
  • the first metal elastic part is fixed to the copper leakage area of the first flexible circuit board, and the The conducting column abuts against the first metal elastic member.
  • the fixed part includes a conductive column
  • the movable part is slidably disposed in the conductive column, and the movable part abuts against the copper leakage area of the first flexible circuit board.
  • the photographing device further includes: a vibration motor; the vibration motor is arranged on the middle frame.
  • a third buffer is further included, and the third buffer is squeezed between the vibration motor and the front cover assembly.
  • the photographing device further includes a first flexible circuit board, and the first flexible circuit board is connected to the core board, and the vibration motor is connected to the first flexible circuit through a second metal elastic member. board connection.
  • the middle frame assembly and the front cover assembly are slidingly fitted, and the middle frame assembly and the front cover assembly can slide relative to each other along a preset sliding direction to an assembled state.
  • a first waterproof seal is provided between the front cover assembly and the middle frame assembly.
  • a second waterproof sealing member is provided between the external connector and the middle frame assembly.
  • the main body casing has a key module, and a third waterproof sealing member is provided between the key module and the main body casing.
  • the electronic module includes a lens assembly, and the lens assembly includes a lens glass, and the lens glass is sealed with the host housing through a fourth waterproof seal.
  • the electronic module includes a lens assembly, and the lens assembly includes a plurality of lens assemblies, and the plurality of lens assemblies are sealed by a fifth waterproof seal.
  • a display screen is provided on the main body casing, and the sixth waterproof seal is used to seal the display screen and the main body casing.
  • the electronic module includes a lens assembly, the lens assembly is connected to a color temperature sensor, and the color temperature sensor includes a plurality of color temperature sensor assemblies, and a seventh waterproof seal is used between the plurality of color temperature sensor assemblies parts are sealed.
  • At least one air vent is provided on the housing of the main body, and a waterproof and air-permeable film is bonded to the opening of the air vent.
  • a microphone hole is provided on the housing of the main body, and a waterproof sound-permeable film is bonded to the opening of the microphone hole.
  • the main body casing has a connecting portion connected to an external accessory, and the external accessory can be detachably connected to the main body casing through the connecting portion.
  • the connecting portion includes a magnetic attraction.
  • the photographing device includes an action camera.
  • the battery assembly is designed to include at least two electric cells, and the at least two electric cells are arranged at intervals to form a storage space for the lens assembly, and at least a part of the lens assembly is arranged on at least two electric cells. Between the cores, the layout is reasonable, the size of the whole machine is reduced, which is beneficial to the miniaturization design of the entire shooting device and improves its portability.
  • FIG. 1 is a partial structural schematic diagram of a photographing device provided by an embodiment of the present application.
  • Fig. 2 is a schematic diagram of the separation structure of the battery assembly and the front cover assembly in Fig. 1;
  • Fig. 3 is a schematic structural diagram of the battery assembly in Fig. 2;
  • Fig. 4 is a schematic structural diagram of the front cover assembly and the middle frame assembly in the embodiment of the present application.
  • Fig. 5 is a schematic diagram of a state in which an electronic module is installed in the front cover assembly provided by the embodiment of the present application;
  • Fig. 6 is a schematic diagram of the separation state of the electronic module provided by the embodiment of the present application on the front cover assembly;
  • Fig. 7 is a schematic diagram of the separation state of the front cover assembly and the middle frame assembly provided by the embodiment of the present application;
  • Fig. 8 is a side sectional view of the photographing device provided by the embodiment of the present application.
  • Fig. 9a is an exploded view of a partial structure of a photographing device including an antenna module provided by an embodiment of the present application;
  • Fig. 9b is a partial structural schematic diagram of a photographing device including an antenna module provided by an embodiment of the present application.
  • Fig. 10a is an exploded schematic diagram of a partial structure of the front cover assembly provided by the embodiment of the present application.
  • Figure 10b is a cross-sectional view of the front cover assembly provided by the embodiment of the present application.
  • Figure 10c is an enlarged view at A of Figure 10b;
  • Fig. 11a is a schematic structural diagram of a photographing device including an external connector provided by an embodiment of the present application.
  • Fig. 11b is a schematic structural diagram of a photographing device including another external connector provided by the embodiment of the present application.
  • FIG. 12 is a schematic structural diagram of a photographing device including a vibration motor provided by an embodiment of the present application.
  • FIG. 13 is a schematic diagram of a separation state of the front cover assembly and the middle frame assembly of the photographing device provided by the embodiment of the present application.
  • connection herein includes any direct and indirect means of connection. Therefore, if it is described herein that a first device is connected to a second device, it means that the first device may be directly connected to the second device, or indirectly connected to the second device through other devices.
  • the stacking method of the battery and other internal components in the camera has a great influence on the volume of the entire camera.
  • the stacking manner results in a larger lateral length of the photographing device, or a thicker thickness of the photographing device, resulting in a larger volume of the entire photographing device.
  • the stacking manner of components such as batteries in the photographing device also affects the heat dissipation effect of the entire photographing device.
  • the embodiments of the present application creatively design the battery in the shooting device as at least two batteries, and at least two batteries are arranged at intervals, so as to ensure the capacity of the battery and at the same time make the arrangement of the batteries degrees of freedom increase.
  • the spaces arranged at intervals can be used to set up modules such as lens components, better arrange a more favorable stacking structure, and thus make the internal structure of the entire shooting device reasonable and compact, which is conducive to the miniaturization design of the shooting device and improves its performance. portability.
  • the battery is divided into a plurality of battery cells arranged at intervals, the contact area with the outside becomes larger, so that the heat dissipation effect is better, which is beneficial to the heat dissipation of the entire shooting device.
  • Fig. 1 is a schematic diagram of a partial structure of a photographing device provided by an embodiment of the present application
  • Fig. 2 is a schematic diagram of the separation structure of the battery assembly and the front cover assembly in Fig. 1
  • Fig. 3 is a schematic diagram of the structure of the battery assembly in Fig. 2
  • Fig. 4 It is a schematic structural diagram of the front cover assembly and the middle frame assembly in the embodiment of the application; please refer to accompanying drawings 1 to 4, the photographing device provided in the embodiment of the application includes a sports camera or other ordinary cameras.
  • the photographing device includes: a main body housing 10 , a lens assembly 20 and a battery assembly 30 .
  • the lens assembly 20 is disposed inside the main body casing 10; as shown in FIG. 4 , the main body casing 10 may include a front cover assembly 10a and a middle frame assembly 10b, and the front cover assembly 10a and the middle frame assembly 10b may be docked to form an accommodating cavity , the electronic module and the mechanical module of the photographing device are accommodated in the accommodating cavity.
  • the middle frame assembly 10b may include a display screen F, and the display screen F may be arranged facing the lens assembly 20 .
  • the lens assembly 20 is used to capture pictures, record videos, etc., and its weight and volume generally occupy a relatively large position in the entire shooting device. Therefore, a reasonable arrangement of the lens assembly 20 is particularly important.
  • At least part of the lens assembly 20 is located inside the main body housing 10 .
  • a part of the lens assembly 20 can protrude out of the host housing 10 , and another part can protrude into the host housing 10 .
  • the lens assembly 20 is completely inside the main body casing 10 , and the main body casing 10 may have a window for projecting light to the lens assembly 20 .
  • the battery assembly 30 is disposed inside the main body housing 10 , for example, the battery assembly 30 is used to provide electric energy for other electronic modules of the entire camera.
  • the battery assembly 30 can be connected to an external power supply, charged by the external power supply, and can be discharged to provide electric energy for other electronic modules of the entire shooting device.
  • the battery assembly 30 includes at least two battery cells 31 , and the at least two battery cells 31 are arranged at a distance from each other to form a receiving space C, and at least a part of the lens assembly 20 is accommodated in the receiving space C.
  • the total capacity of all battery cells 31 is the total capacity of the battery assembly 30 of the entire shooting device. Under the goal of keeping the overall stack as small as possible, the capacity is equivalent to that of a whole battery to meet the requirements for battery life.
  • the volume of a single cell 31 and the number of cells 31 can be determined according to the total capacity required by the battery of the photographing device. In an exemplary embodiment, as shown in FIG. 1 and FIG.
  • the battery assembly 30 includes two battery cells 31 , the volume and shape of the two battery cells 31 can be the same, and they can be positioned in the predetermined direction of the main body casing 10
  • the upper symmetrical arrangement for example, is arranged symmetrically in the width direction of the main body casing 10, so as to ensure the stability of the weight of the photographing device as much as possible, and to concentrate the weight of the photographing device at the central position as much as possible.
  • the lens assembly 20 is arranged in the accommodation space C, so that the heavy lens assembly 20 is arranged between the battery cells 31 arranged at intervals, and the space between adjacent battery cells 31 is fully utilized.
  • the space layout is reasonable and the structure is compact.
  • the lens assembly 20 may be fixed on the main body casing 10 and located in the middle of the direction in which at least two battery cells 31 are arranged at intervals. At least two battery cells 31 can be symmetrically arranged with respect to the lens assembly 20, which is beneficial to ensure that the lens assembly 20 is located in the middle of the whole camera, so that the appearance of the entire camera is more symmetrical and aesthetically pleasing.
  • the battery assembly is designed to include at least two batteries, and at least two batteries are arranged at intervals to form a storage space for the lens assembly, so that the main heat generating modules are dispersed and distributed to avoid excessive heat concentration , and the lens assembly is arranged between at least two battery cells, the layout is reasonable, the size of the whole machine is reduced, it is beneficial to the miniaturization design of the whole shooting device, and its portability is improved.
  • FIG. 5 is a schematic diagram of a state in which an electronic module is installed in the front cover assembly provided by the embodiment of the present application.
  • the photographing device may further include: a plurality of electronic modules 40 . At least one electronic module 40 is disposed around the lens assembly 20 and accommodated in the containing space C. As shown in FIG.
  • the lens assembly 20 is arranged in the storage space C, and the storage space C is formed by at least two batteries 31 arranged at intervals, in the storage space C, other positions except the lens assembly 20 also have a certain degree of accommodation, so , disposing at least one electronic module 40 in the receiving space C and around the lens assembly 20 makes the structural layout of the entire shooting device more reasonable.
  • the surroundings of the lens assembly 20 refer to the surroundings of any position of the lens assembly 20, up, down, left, right, front, back, and a position that is relatively close to the lens assembly 20, so that the weight is concentrated in the middle of the shooting device as much as possible, which is conducive to shooting. stability of the device.
  • the electronic module 40 may at least include a first circuit board 41 , a core board 42 , a radio frequency board 43 and a sensor board 44 .
  • the first circuit board 41 is used to provide a carrier for electrical connection of electronic components of the camera.
  • the first circuit board 41 may be a battery protection board, which is integrated with at least two battery cells 31.
  • the core board 42 can be used to integrate computing units, controllers, and memory.
  • the radio frequency board 43 is used for transmitting and receiving radio frequency modulation signals.
  • Various sensors are integrated on the sensor board 44 for sensing related actions of the shooting device, and the image quality and frame size can be directly determined by the sensors.
  • At least one electronic module 40 can be arranged under the at least two electric cores 31 and arranged with the at least two electric cores 31 in a U-shaped accommodation space C, and at least another electronic module 40 is accommodated in the U-shaped accommodation space C.
  • the first circuit board 41 may be disposed under at least two battery cells 31 .
  • the first circuit board 41 may be disposed under the at least two battery cells 31 and the lens assembly 20 , and be arranged together with the at least two battery cells 31 to form a U-shaped accommodation space C.
  • At least one of the radio frequency board 43 and the sensor board 44 can be accommodated in the U-shaped accommodation space C.
  • the electric core 31 can be fixed on the first circuit board 41, and in some embodiments, the electric core 31 can be welded on the first circuit board 41, so as to maintain the power supply connection with the first circuit board 41; In some embodiments, the electric core 31 It can also be bonded with the first circuit board 41 .
  • the battery core 31 can be welded on the first circuit board 41 through tabs, and can be kept in shape by using a U-shaped steel sheet (PC sheet and other rigid support structures), and then the whole can be wrapped with tape or glued The connection is fixed.
  • the battery cell 31 is reliably fixed on the first circuit board 41 and maintains a U-shaped structure, forming a U-shaped whole in appearance, which facilitates disassembly and assembly of the whole body on the main body casing 10, and is conducive to improving disassembly and assembly efficiency.
  • At least another electronic module 40 is accommodated in the U-shaped accommodation space C, at least another electronic module 40 can be arranged around the lens assembly 20, and can also be arranged in the U-shaped accommodation space C, but the distance from the lens assembly 20 far. Specifically, the distance between at least one electronic module 40 and the lens assembly 20 may be greater than the distance between the electronic module 40 and the first circuit board 41, or the distance between the at least one electronic module 40 and the lens assembly 20 may be smaller than the distance between the electronic module 40 and the first circuit board 41. A circuit board 41 distance.
  • the side surface of the battery cell 31 facing the host housing 10 can be fixedly connected to the host housing 10 .
  • the battery cell 31 can be fixedly connected to the front cover assembly 10a of the main body casing 10, so that when the battery cell 31 is installed in the main body casing 10, the installation is stable, and it is not easy to shake or fall off, which is beneficial to ensure the power supply. reliability.
  • the battery cell 31 can be bonded and fixed to the main body casing 10, and the battery cell 31 is fixed by bonding, which can make the battery cell 31
  • the surface is evenly fixed, and it is relatively firm after fixing.
  • the main buffer 32 may be foam, rubber, etc.
  • the main buffer 32 may be bonded to the main body casing by adhesive 10 (specifically, it may be the front cover assembly 10a), the main buffer 32 is squeezed and fixed, so that the battery cell 31 is fixed more reliably, and the battery cell 31 is prevented from shaking during use and when it is dropped.
  • the main buffer 32 may be smaller than the area of the side surface of the battery cell 31 for fixing to the main body casing 10, so that the battery cell 31 is reliably fixed on the main body casing 10 while the battery cell 31 A heat dissipation gap can also be formed with the main body casing 10 .
  • the battery cell 31 can also be fixed to the main body casing 10 in a clamping manner.
  • the form of the host housing 10 is not particularly limited in this embodiment.
  • radio frequency board 43, first circuit board 41 (the first circuit board 41 is not shown in accompanying drawing 5) and sensor board 44 can be respectively arranged in the top, bottom and rear of lens assembly 20 .
  • the top, bottom and rear of the lens assembly 20 can be based on the orientations shown in FIG. 1 and FIG. 5 .
  • the radio frequency board 43 is arranged above the lens assembly 20 so that the lens assembly 20 will not block the signal of the radio frequency board 43 as much as possible, which is beneficial to ensure the reliability and sensitivity of the signal transmission and reception of the radio frequency board 43 .
  • the sensor board 44 can be located in the storage space C, and the sensor board 44 is arranged behind the lens assembly 20 to more conveniently detect the relative positions of the optical components of the lens assembly 20 , thereby detecting the shooting parameters of the lens assembly 20 more reliably.
  • the central axis of the lens assembly 20 passes through the sensor board 44 , that is to say, the sensor board 44 and the lens assembly 20 are stacked along the front-to-rear direction, which is beneficial to ensure that the volume of each component after stacking is small.
  • the lens assembly 20 includes a front end protruding from the main body housing 10 and a rear end facing the receiving space C, and the sensor board 44 is directly opposite to the rear end of the lens assembly 20 .
  • the overall volume after installation can be reduced to the greatest extent, and it is beneficial for the center of gravity of the complete machine to be in the middle position, which is more conducive to the stability of the complete machine.
  • the heating modules such as the radio frequency board 43 , the first circuit board 41 and the sensor board 44 are arranged in a dispersed manner, which is also beneficial to reduce the heat concentration effect.
  • the first circuit board 41 may be a battery protection board or other circuit boards, and the first circuit board 41 may be arranged above the battery cell 31 to form an inverted U shape with the battery cell 31 .
  • the core board 42 or the radio frequency board 43 may be stacked on the first circuit board 41 .
  • the relative positions of the first circuit board 41, the core board 42, and the radio frequency board 43 are not limited, and the positions of the circuit boards such as the first circuit board 41, the core board 42, and the radio frequency board 43 can be optionally placed on the top of the lens assembly 20 , below or sideways. As long as the first circuit board 41 , the core board 42 , and the radio frequency board 43 are placed in the above-mentioned accommodation space C, it is sufficient.
  • the host casing 10 may include: at least one support member 50 .
  • the support 50 is used for installing the electronic module 40 .
  • the supporting member 50 may be made of metal or such as hard plastic to ensure its supporting strength.
  • the supporting member 50 can be integrally formed with the host housing 10 to improve molding efficiency, or the supporting member 50 can be detachably connected with the host housing 10 for easy assembly and disassembly.
  • the support member 50 may include at least two, at least two support members 50 are arranged at intervals along the height direction of the battery core 31 (the up-and-down direction shown in FIG. 1 ), and at least one electronic module 40 may be fixed on the support 50 pieces.
  • at least one support member 50 may be located below the battery cell 31 and directly or indirectly support the battery cell 31 to further improve the installation stability of the battery cell 31 .
  • the supporting member 50 may be in the shape of a plate. If the strength of the material is sufficient, the smaller the thickness of the plate-shaped supporting member 50 is, the more conducive to miniaturization of the photographing device.
  • the first circuit board 41 can be located between at least one support member 50 and the electric core 31, the support member 50 can support the first circuit board 41, and since the electric core 31 is fixed on the first circuit board 41, therefore , the supporting member 50 also plays a role of supporting and fixing the battery cell 31 to a certain extent.
  • a heat conduction layer may also be provided between the electronic module 40 and the support member 50 , and the heat conduction layer is used to conduct heat from the electronic module 40 to the support member 50 .
  • the support member 50 can preferably be made of a material with good heat conduction effect, such as a metal material, so that heat can be dissipated from the support member 50 to the air.
  • the photographing device further includes a metal shielding layer, and the metal shielding layer is disposed between the electronic module 40 and the supporting member 50 .
  • the metal shielding layer can be used to shield interference signals, prevent interference signals from affecting the electronic modules 40 , and ensure that the functions of each electronic module 40 operate normally.
  • the heat conduction layer can be made of heat conduction silica gel, and the heat conduction silica gel can be bonded with the electronic module 40 , the metal shielding layer 70 , and the support member 50 .
  • the heat conduction layer may include a first heat conduction layer (not shown in the figure) and a second heat conduction layer (not shown in the figure); the electronic module 40, the first heat conduction layer, the metal shielding layer 70, the second heat conduction layer, the support member 50 Arranged sequentially in layers along a preset direction. In this way, the heat generated by the operation of the electronic module 40 can first pass through the first heat-conducting layer, and then pass through the metal shielding layer 70.
  • the metal shielding layer 70 is made of metal and can conduct heat quickly.
  • the heat of the metal shielding layer 70 passes through the second heat-conducting layer. Then conduct to the support member 50 , because the support member 50 is connected with the host housing 10 , the heat can finally be quickly dissipated through the host housing 10 , preventing the electronic module 40 from being overheated and affecting performance. Through the above reasonable arrangement, the heat dissipation of the electronic module 40 can be accelerated, and the service life of the electronic module 40 can be improved.
  • the support member 50 may include: a first support member 51, the first support member 51 may be disposed in the accommodation space C, and the support surface A of the first support member 51 is substantially perpendicular to the cell 31 sides.
  • the first supporting member 51 includes a supporting surface A.
  • the so-called supporting surface A of the first supporting member 51 refers to a surface on the first supporting member 51 for carrying the electronic module 40 .
  • the surface of the first supporting member 51 opposite to the supporting surface A is also substantially perpendicular to the side of the battery cell 31 .
  • substantially perpendicular means that the angle between the two is approximately 90° ⁇ 5°.
  • the supporting surface A of the first supporting member 51 is substantially perpendicular to the side surface of the electric core 31, so that the first supporting member 51 occupies as little storage space C as possible while ensuring a good supporting effect on the electronic module 40, so that the storage space
  • the margin of C is relatively large, so that the heat dissipation effect of the entire shooting device is better.
  • the first support member 51 and the battery cell 31 may be in contact with each other through the middle buffer member 81 .
  • the middle buffer member 81 may include at least one of the following: foam and rubber.
  • the middle buffer member 81 can be bonded to the opposite sides of at least two battery cells 31, the middle buffer member 81 can be bonded to the battery cells 31 with adhesive backing, and the first support member 51 can be fixedly connected to the host housing 10, for example, integrated forming.
  • the first support member 51 is in contact with the middle buffer member 81 , which is beneficial to the reliable fixing between the battery cell 31 and the first support member 51 .
  • the photographing device falls, due to the extrusion of the middle buffer member 81 , it can prevent the electric core 31 from being misaligned relative to the first supporting member 51 .
  • the heat insulation effect of the middle buffer member 81 made of foam, rubber and other materials is better, which can prevent the heat transferred from the electronic module 40 to the first support member 51 from being transferred to the battery cell 31, which will cause the battery cell 31 to overheat. liter problem.
  • the supporting member 50 may include: a second supporting member 52 .
  • the second support member 52 is located at the bottom of the height direction of the two electric cores 31, and a gap (not shown) is formed between the second support member 52 and the bottom of the electric core 31, and the first circuit board 41 can be accommodated in in the gap.
  • the second support member 52 can be arranged substantially parallel to the first support member 51, and the second support member 52 can constitute the overall support structure of the electric core 31 and the first circuit board 41, so that the electric core 31 and the first circuit board 41 constitute The whole body is reliably maintained at a preset position on the main body casing 10 .
  • the first circuit board 41 may include an upper surface facing the battery core 31 and a lower surface facing the second support member 52; the upper surface of the first circuit board 41 is provided with a first buffer member 91, and the first The buffer member 91 is fixedly connected to the opposite side walls of the two battery cells 31 .
  • the first buffer member 91 includes at least one of the following: foam and rubber.
  • the lower surface of the first circuit board 41 is provided with the second buffer member 92 , and the second buffer member 92 can be squeezed between the lower surface of the first circuit board 41 and the second supporting member 52 .
  • the second buffer member 92 includes at least one of the following: foam and rubber.
  • the first buffer member 91 is arranged on the upper surface of the first circuit board 41, and the first buffer member 91 can be fixed on the first circuit board 41 and the battery cell 31 by adhesive backing, and is small in size and light in weight, and meets the requirements of firm fixing. Moreover, the first buffer member 91 made of foam, rubber, etc. has a better heat insulation effect, and can also reduce the heat generated by the first circuit board 41 from being conducted to the battery cell 31 . Similarly, the second buffer member 92 is set between the second support member 52 and the first circuit board 41, which also avoids or improves the working of the first circuit board 41 while improving the fixing reliability of the first circuit board 41. The heat is conducted to the second support member 52 and then to the battery cell 31 .
  • the setting of the first buffer member 91 and/or the second buffer member 92 can help reduce the hard collision between the first circuit board 41 and the battery cell 31 and/or the second support member 52 when the shooting device falls. The probability makes the first circuit board 41 and the electric core 31 less likely to be damaged by falling.
  • the core board 42 may be disposed on one of the first support member 51 and the second support member 52
  • the radio frequency board 43 may be disposed on the other of the first support member 51 and the second support member 52 . That is to say, the core board 42 and the radio frequency board 43 are arranged separately, and the distance is slightly larger, so as to avoid mutual interference between the two.
  • the core board 42 and the radio frequency board 43 are away from each other; in some embodiments, the radio frequency board 43 is located on the first support member 51 , and the core board 42 is located on the second support member 52 .
  • the radio frequency board 43 is located above the lens assembly 20 , and there is basically no shielding along its transmitting and receiving direction, and it is not easily interfered by other signals.
  • the core board 42 accommodates more components, resulting in a larger volume. Setting the core board 42 under the second support member 52 can provide sufficient space for arranging the larger core board 42 .
  • the core board 42 and the first circuit board 41 may be respectively located on two sides of the second supporting member 52 . Specifically, the first circuit board 41 is located on the side of the second supporting member 52 facing the battery core 31 , and the core board 42 is located on the side of the second supporting member 52 facing away from the battery core 31 . In order to fix the battery cell 31 on the first circuit board 41 to form a U-shaped whole, and the core board 42 has enough installation space, and the layout is very reasonable.
  • the above-mentioned battery assembly 30, electronic module 40, and support member 50 may all be arranged on the front cover assembly 10a; a housing cavity is formed between the middle frame assembly 10b and the front cover assembly 10a, and the electronic module 40 may be located in the housing The cavity, the accommodation space C is formed in the accommodation cavity.
  • the lens assembly 20 can be fixed on the front cover assembly 10a
  • the middle frame assembly 10b can include a fixing bracket 11b
  • the sensor board 44 is arranged between the lens assembly 20 and the fixing bracket 11b of the middle frame assembly 10b.
  • the fixing bracket 11b can be made of metal, and the sensor board 44 can dissipate heat through the fixing bracket 11b. More specifically, there may be a third heat conducting layer R between the sensor board 44 and the fixing bracket 11b.
  • auxiliary heat dissipation layer S along the direction from the lens assembly 20 to the middle frame assembly 10b, the sensor board 44, the third heat conduction layer R, the auxiliary heat dissipation layer S and the fixing bracket 11b are sequentially stacked.
  • the third heat conduction layer R can be heat conduction silica gel
  • the auxiliary heat dissipation layer S can be a metal heat sink.
  • the bracket 11b is connected.
  • Fig. 9a is an exploded view of a partial structure of a photographing device including an antenna module provided by an embodiment of the present application
  • Fig. 9b is a schematic diagram of a partial structure of a photographing device including an antenna module provided by an embodiment of the present application
  • the above-mentioned electronic module 40 may further include: an antenna module 45 ;
  • the antenna module 45 can be bonded to the antenna bracket 1000 through a flexible circuit board.
  • the antenna module 45 is bonded to the antenna bracket 1000 through a flexible circuit board, and has a compact structure, which can meet the requirements of a small and light machine.
  • the antenna module 45 is detachably mounted on the main body casing 10 through the antenna bracket 1000 , which can facilitate the modularization and detachability of the antenna module 45 .
  • the radio frequency board 43 and the antenna bracket 1000 are jointly connected to the main body casing 10 through fasteners.
  • the radio frequency board 43 and the antenna bracket 1000 can be mounted to the main body housing 10 by fasteners such as screws, which is beneficial to reduce the number of fasteners used, reduce the cost and weight of the whole machine, and further increase the demand for lightweight.
  • the radio frequency board 43 and the antenna bracket 1000 share fasteners, which can improve the disassembly efficiency of the radio frequency board 43 and the antenna bracket 1000 .
  • the antenna module 45 may include a connection spring, and the antenna module 45 is connected to the radio frequency board 43 through the connection spring. Since the radio frequency board 43 and the antenna support 1000 are connected by a shared fastener, when the tightness of the fastener is adjusted, the tightness of the electrical connection between the antenna module 45 and the radio frequency board 43 can be adjusted, and the antenna module 45 and the radio frequency board 43 are connected by a shrapnel Make an electrical connection. Specifically, the antenna module 45 can be abutted against the radio frequency board 43 through the connecting elastic piece. When the two are separated, the connection can be automatically disconnected, and when the two are connected by fasteners, the two can automatically form an electrical connection.
  • the antenna module 45 may be disposed on a side of the first supporting member 51 away from the second supporting member 52 . That is to say, the antenna module 45 is also arranged above the first support member 51 , and there is no other parts above, which is beneficial to the signal transmission and reception of the antenna module 45 and ensures the performance of the antenna module 45 .
  • the photographing device provided by the embodiment of the present application may also include a first flexible circuit board 2000, and the first flexible circuit board 2000 may be connected to the core board 42 (as shown in FIG. 2, through the core board connector 2001 Connected to the core board 42 ), the first flexible circuit board 2000 can be connected to the host casing 10 .
  • a color temperature sensor 2002 is pasted on the first flexible circuit board 2000 .
  • the lens assembly 20 cooperates with the color temperature sensor 2002 to achieve more realistic and powerful shooting.
  • the color temperature sensor 2002 can be used together with the light equalizing sheet 22 and the lens glass 21 . Improve the shooting effect of the entire shooting device.
  • the photographing device may further include: an external connector 3000 for connecting with an external accessory, so that the external accessory and the photographing device establish an electrical connection and/or a communication connection.
  • the external accessory can be an external power supply, and when the external power supply is connected to the shooting device through the external connector 3000 , it can supply power to the battery assembly 30 in the shooting device.
  • the camera when the external accessory is USB, the camera can establish a connection with the USB through the external connector 3000, and store the data of the camera to the USB, or read the data stored in the USB in the camera. data etc.
  • the external accessory may be an extended screen component, which not only charges the battery of the shooting device, but also enables the shooting device to transmit shooting data to the extended screen component through the external connector 3000 to display the shooting picture in real time.
  • the external connector 3000 can be fixed to the middle frame assembly 10b. As shown in FIG. 11 a and FIG. 11 b , the external connector 3000 may include: a fixed part 3001 and a movable part 3002 .
  • the fixing part 3001 is used for fixing with the middle frame assembly 10b, specifically, the fixing part 3001 can be fixed to the middle frame assembly 10b by bonding.
  • the side of the middle frame assembly 10b may have a mounting hole 11b for fixing the external connector 3000, and the fixing part 3001 may be fixed to the hole wall of the mounting hole 11b by bonding.
  • the movable part 3002 includes a plurality of connecting contacts, and the connecting contacts are used for contacting and conducting with external accessories.
  • the active part 3002 can be used for electrical connection with the copper leakage area of the first flexible circuit board 2000 . Since the first flexible circuit board 2000 is electrically connected to the core board 42, when the external accessory is connected to the external connector 3000, it will abut against the movable part 3002 and interact with the connection contacts of the movable part 3002, thereby realizing an external connection The electrical connection between the controller 3000 and the core board 42, and the data stored on the core board 42 can be transmitted to external accessories through the external connector 3000.
  • the main body housing 10 may also have a connection portion 11 connected to an external accessory, and the external accessory can be detachably connected to the main body housing 10 through the connection portion 11 .
  • the connecting part 11 may include a magnetic attraction.
  • the external accessory may have another magnetic attraction that cooperates with the magnetic attraction.
  • the connecting portion 11 may also be a structure such as a buckle, which is not limited in this embodiment of the present application.
  • the connecting part 11 is a magnetic attraction part, it is beneficial to quickly dock the external accessory and the shooting device to a preset docking position, and facilitate quick detachment of the two. It should be noted that, in FIG. 11 a , the connecting portion 11 is located beside the external connector 3000 . In some embodiments, the connecting portion 11 may also be arranged around the external connector 3000 , which is not particularly limited in this application.
  • the fixed part 3001 may include a conductive column (not shown in the figure)
  • the movable part 3002 may include a first metal elastic member (3002 in Figure 11a)
  • the first metal The elastic element (for example, a metal elastic piece) is fixed on the copper leakage area of the first flexible circuit board 2000 , and the conducting column abuts against the first metal elastic element.
  • the contact position can be achieved by compressing the metal elastic parts through the conductive column.
  • the conductive column can be a copper column.
  • the impedance of the pure copper column is small, and the use cost of the shrapnel is low.
  • the shrapnel can absorb the tolerance to ensure the reliability and reliability of the electrical connection. stability.
  • the fixed part 3001 may include a conductive post 30011, the movable part 3002 may be slidably disposed in the conductive post 30011, and the movable part 3002 and the first flexible circuit board 2000 The copper leakage area is abutted.
  • the external fitting When the external fitting is docked with the external connector 3000 , the external fitting abuts against the movable part 3002 , so that the movable part 3002 contacts the copper leakage area of the first flexible circuit board 2000 to realize conduction.
  • This kind of movable part 3002 realizes the conduction with the first flexible circuit board 2000 in the form of a spring pin, has few parts and can be assembled in place at one time.
  • an elastic member such as a spring between the movable part 3002 and the fixed part 3001, so that the movable part 3002 can return to the copper leakage area detached from the first flexible circuit board 2000 without the force of an external device, and disconnect It is electrically connected to the contacts of the core board 42 .
  • Elastic parts such as springs are disposed between the movable part 3002 and the fixed part 3001 to absorb fit tolerances, so that the movable part 3002 can be electrically connected to the first flexible circuit board 2000 better.
  • the middle frame assembly 10b and the front cover assembly 10a can be slidably fitted, and the middle frame assembly 10b and the front cover assembly 10a can slide relative to each other along a preset sliding direction to an assembled state. That is to say, the front cover assembly 10a and the middle frame assembly 10b can be assembled in a push-pull sliding assembly manner to improve assembly efficiency.
  • the movable part 3002 and the first flexible circuit board 2000 are in contact conduction mode, the movable part 3002 has an elastic expansion space, so when the front cover assembly 10a and the middle frame assembly 10b are pushed and pulled together, the movable part 3002 can achieve the effect of moving and compressing without affecting the assembly of the front cover assembly 10a and the middle frame assembly 10b.
  • the photographing device may further include: a vibration motor 4000; the vibration motor 4000 may be disposed in the middle frame assembly 10b.
  • the vibration motor 4000 may be a linear vibration motor.
  • the vibration motor 4000 may be bonded to the middle frame assembly 10b through adhesive.
  • the vibration motor 4000 may be disposed inside the middle frame assembly 10b.
  • the photographing device may further include a third buffer (not shown in the figure), and the third buffer is squeezed between the vibration motor 4000 and the front cover assembly 10a.
  • the third buffer member 4001 may be foam or rubber.
  • the third buffer member can be bonded to the middle frame assembly 10b, and the vibration motor 4000 can be effectively pressed against the front cover assembly 10a by arranging the third buffer member.
  • the vibration motor 4000 may be connected to the first flexible circuit board 2000 through a second metal elastic member (not shown in the figure).
  • the vibration motor 4000 is connected to the first flexible circuit board 2000, and then realizes the indirect connection between the vibration motor 4000 and the core board 42, so that the vibration signal of the vibration motor 4000 is transmitted to the core board 42, and the core board 42 can also send a signal for controlling the vibration motor.
  • the working control signal of 4000 is given to the vibration motor 4000, so that the vibration motor 2000 is controllable. Since the electrical connection between the vibration motor 4000 and the first flexible circuit board 2000 is also through the elastic piece to achieve contact conduction, the push-pull assembly of the front cover assembly 10a and the middle frame assembly 10b can be satisfied.
  • the shooting device provided by the embodiment of the present application has high requirements for waterproofing, so that even if the shooting device falls into water or is inadvertently soaked by liquid, it will not affect or corrode the internal components of the shooting device , the application also designs the waterproof structure of the shooting device, as follows:
  • a first waterproof seal can be provided between the front cover assembly 10a and the middle frame assembly 10b, and the first waterproof seal can be a sealant, specifically, it can be provided on the front cover assembly 10a in the form of smearing. In some embodiments, the sealant can be replaced by a removable seal. More specifically, on the side of the front cover assembly 10a facing the middle frame assembly 10b, there may be a first waterproof groove P1 for setting a first waterproof seal, and the first waterproof seal is filled in the first waterproof groove P1, and then It is sealingly docked with the middle frame assembly 10b to ensure the sealing between the front cover assembly 10a and the middle frame assembly 10b.
  • a second waterproof seal is provided between the external connector 3000 and the middle frame assembly 10b.
  • the second waterproof seal can be arranged at the hole wall of the mounting hole 11b on the middle frame assembly 10b (as shown at P2 in Figure 11b).
  • the second waterproof seal can also be a sealant or a seal ring.
  • the second waterproof sealing member effectively prevents moisture from entering the body from the connection between the external connector 3000 and the middle frame assembly 10b.
  • the main body casing 10 may have a key module (not shown in the figure), and a third waterproof seal (not shown in the figure) is provided between the key module and the main body casing 10 .
  • the button module can be used to selectively display pictures or images displayed on the display screen F for operation, for example, the button module can realize the determination, cancellation, and deletion of the pictures displayed on the display screen F , turn left, turn right, slide up, and slide down.
  • the button module can be arranged in the front cover assembly 10a, or in the middle frame assembly 10b, which is not limited in the embodiment of the present application.
  • the key module and the host housing 10 can also be sealed with a third waterproof seal.
  • the third waterproof seal can be molded with the key module by two-color injection molding of soft and hard rubber. Through the setting of the third waterproof seal, it can Prevent moisture from entering the host housing 10 from the gap between the key module and the host housing 10 .
  • the lens assembly 20 may include a lens glass 21, and the lens glass 21 and the main body housing 10 pass through a fourth waterproof seal (as shown in P4 in FIG. 10, a fourth waterproof seal is set. place) sealed.
  • a fourth waterproof seal as shown in P4 in FIG. 10, a fourth waterproof seal is set. place
  • the lens assembly 20 may include a plurality of lens assemblies (not shown in the figure), and the plurality of lens assemblies are sealed by a fifth waterproof seal (not shown in the figure).
  • the lens assembly may include a plurality of optical lenses, and a silicone ring (fifth waterproof seal) may be used to seal between each optical lens and its corresponding assembly to prevent water from entering between the lens assemblies 20 .
  • the display screen F on the main body casing can be sealed with the main body casing 10 through a sixth waterproof seal (not shown in the figure).
  • the display screen F can be fixed on the main body casing 10 by gluing, specifically on the middle frame assembly 10b, and the glue forms a sixth waterproof seal to prevent moisture from leaking from the gap between the display screen F and the middle frame assembly 10b. into the body.
  • the electronic module includes a lens assembly 20 connected to a color temperature sensor.
  • the color temperature sensor includes a plurality of color temperature sensor assemblies, and the plurality of color temperature sensor assemblies are sealed by a seventh waterproof seal (not shown in the figure).
  • a seventh waterproof seal (not shown in the figure).
  • waterproof double-sided adhesive tape is pasted between the color temperature sensor assembly parts.
  • the seventh waterproof sealing member is provided to prevent moisture from entering the color temperature sensor and affecting the shooting effect.
  • At least one air vent is provided on the main body casing 10, and a waterproof and air-permeable film is bonded to the opening of the air vent. Since there are many electronic modules inside the main body casing 10, these electronic modules will generate heat during the working process, which may eventually increase the pressure in the main body casing 10. At least one air vent is provided on the top to balance the pressure difference between the inside and outside of the host housing 10 . At the same time, in order to prevent moisture from entering the host housing 10 through the vent hole, the vent hole can be covered with a waterproof and breathable film.
  • a microphone hole may also be provided on the host housing 10, and a waterproof sound-permeable film is bonded to the opening of the microphone hole.
  • the microphone hole is used to play the sound of the video taken by the shooting device.
  • a waterproof sound-permeable membrane is provided at the microphone hole, which is beneficial to prevent moisture from entering the microphone hole without affecting the normal sound playback function of the shooting device.
  • the mutual coupling or direct coupling or communication connection shown or discussed may be through some interfaces, indirect coupling or communication connection of devices or units, which may be electrical, mechanical or other forms.

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Abstract

一种拍摄装置,包括:主机壳体(10);镜头组件(20),所述镜头组件(20)的至少一部分设于所述主机壳体(10)内部;电池组件(30),设于所述主机壳体(10)内部,所述电池组件(30)包括至少两个电芯(31),至少两个所述电芯(31)相对间隔布置以形成收容空间C,所述镜头组件(20)的至少一部分容纳于所述收容空间(C)内。本技术方案所提供的拍摄装置,电芯间隔布置,镜头组件布局于间隔布置的电芯之间,布局合理,集成度高,有利于拍摄装置的小型化设计。

Description

拍摄装置 技术领域
本申请实施例涉及摄像领域,尤其涉及一种拍摄装置。
背景技术
对于拍摄装置的便携性和小型化的要求越来越高,特别的,对于运动相机而言,其内部部件布局不够合理,电池等内部部件占用较大空间,使得其他模块的布局自由度较小,布局灵活性降低,要么使得拍摄装置的横向长度较大,要么使得拍摄装置的厚度较厚,从而导致整个拍摄装置的体积较大,不利于拍摄装置的小型化设计。
发明内容
针对现有技术中的上述缺陷,本申请实施例提供一种拍摄装置。
本申请实施例提供一种拍摄装置,包括:
主机壳体;
镜头组件,所述镜头组件的至少一部分设于所述主机壳体内部;
电池组件,设于所述主机壳体内部,所述电池组件包括至少两个电芯,至少两个所述电芯相对间隔布置以形成收容空间,所述镜头组件的至少一部分容纳于所述收容空间内。
在一些实施例中,所述拍摄装置还包括:
多个电子模块,至少一个电子模块设于所述镜头组件的周围,且容纳于所述收容空间内。
在一些实施例中,至少一个电子模块设置在至少两个所述电芯的下方,与至少两个所述电芯布置呈U形的收容空间,至少另一个电子模块容纳于所述U形的收容空间内。
在一些实施例中,所述电子模块至少包括第一电路板、核心板、射频板和传感器板;其中,所述第一电路板设置在至少两个所述电芯和所述镜 头组件的下方,与至少两个所述电芯共同布置成U形的收容空间,所述射频板和所述传感器板中的至少一个容纳于所述U形的收容空间内。
在一些实施例中,所述射频板、第一电路板和传感器板分别布置在所述镜头组件的上方、下方和后方。
在一些实施例中,所述电芯朝向主机壳体的一侧表面与所述主机壳体固定连接。
在一些实施例中,所述电芯与所述主机壳体粘接固定;
及/或,所述电芯与所述主机壳体之间挤压有主缓冲件,其中所述主缓冲件包括以下至少一种:泡棉、橡胶。
在一些实施例中,所述电芯固定于所述第一电路板。
在一些实施例中,
所述电芯焊接于所述第一电路板;
及/或,所述电芯与所述第一电路板粘接。
在一些实施例中,所述主机壳体包括:
至少一个支撑件,所述支撑件用于安装所述电子模块。
在一些实施例中,
所述支撑件包括至少两个,至少两个所述支撑件沿所述电芯的高度方向相对间隔布置,至少一个所述电子模块固定于所述支撑件。
在一些实施例中,所述电子模块与所述支撑件之间设有导热层,所述导热层用于将所述电子模块的热量传导至所述支撑件。
在一些实施例中,还包括金属屏蔽层,所述金属屏蔽层设于所述电子模块与所述支撑件之间。
在一些实施例中,所述导热层包括第一导热层和第二导热层;
所述电子模块、第一导热层、所述金属屏蔽层、所述第二导热层、所述支撑件沿预设方向依次层叠布置。
在一些实施例中,所述支撑件包括:第一支撑件,所述第一支撑件设 于所述收容空间内,且所述第一支撑件的支撑面基本垂直于所述电芯的侧面。
在一些实施例中,所述第一支撑件与所述电芯之间通过中部缓冲件抵顶接触。
在一些实施例中,所述中部缓冲件包括以下至少一种:泡棉、橡胶。
在一些实施例中,所述支撑件包括:
第二支撑件,所述第二支撑件位于两个所述电芯的高度方向的底部,且所述第二支撑件与所述电芯的底部之间形成有间隙,所述第一电路板容纳于所述间隙中。
在一些实施例中,所述第一电路板包括朝向所述电芯的上表面,以及朝向所述第二支撑件的下表面;
所述第一电路板的上表面设有第一缓冲件,所述第一缓冲件与两个所述电芯相对的侧壁固定连接。
及/或,所述第一电路板的下表面设有第二缓冲件,所述第二缓冲件挤压于所述第一电路板的下表面和所述第二支撑件之间。
在一些实施例中,所述第一缓冲件包括以下至少一种:泡棉、橡胶;
及/或,所述第二缓冲件包括以下至少一种:泡棉、橡胶。
在一些实施例中,所述镜头组件固定于所述主机壳体上,且位于至少两个所述电芯的间隔排布方向的中间位置。
在一些实施例中,所述电子模块包括核心板和射频板,所述核心板设于所述第一支撑件和所述第二支撑件中的其中一个,所述射频板设于所述第一支撑件和所述第二支撑件的另一个。
在一些实施例中,在安装状态下,所述核心板与所述射频板相互背离;
及/或,所述射频板位于所述第一支撑件,所述核心板位于所述第二支撑件。
在一些实施例中,所述核心板和所述第一电路板分别位于所述第二支 撑件的两侧。
在一些实施例中,所述电子模块包括传感器板,所述传感器板位于所述收容空间,且所述镜头组件的中心轴线穿过所述传感器板。
在一些实施例中,所述镜头组件包括从所述主机壳体穿出的前端,以及朝向所述收容空间的后端,所述传感器板与所述镜头组件的后端正相对设置。
在一些实施例中,所述主机壳体包括:
前盖组件,所述电池组件、所述电子模块、所述支撑件均设于所述前盖组件;
中框组件,所述中框组件与所述前盖组件之间形成有容纳腔,所述电子模块位于所述容纳腔,所述收容空间形成于所述容纳腔。
在一些实施例中,所述镜头组件固定于所述前盖组件,所述中框组件包括固定支架,所述传感器板设于所述镜头组件与所述中框组件的固定支架之间。
在一些实施例中,所述传感器板与所述固定支架之间具有第三导热层。
在一些实施例中,还包括:辅助散热层;
沿所述镜头组件指向所述中框组件的方向,所述传感器板、所述第三导热层、所述辅助散热层以及所述固定支架依次层叠布置。
在一些实施例中,所述电子模块还包括:天线模块;
所述拍摄装置还包括天线支架,所述天线模块连接于所述天线支架,所述天线支架与所述主机壳体可拆卸地连接。
在一些实施例中,
所述天线模块通过柔性电路板粘接于所述天线支架。
在一些实施例中,所述射频板和所述天线支架通过紧固件共同连接至所述主机壳体。
在一些实施例中,所述天线模块包括以下至少一种:GPS天线、WIFI天线、蓝牙天线。
在一些实施例中,所述天线模块包括连接弹片,所述天线模块通过所述连接弹片与所述射频板连接。
在一些实施例中,所述天线模块设于所述第一支撑件上背离所述第二支撑件的一侧。
在一些实施例中,还包括第一柔性电路板,所述第一柔性电路板与所述核心板连接,所述第一柔性电路板连接于所述主机壳体。
在一些实施例中,所述第一柔性电路板上贴设有色温传感器。
在一些实施例中,所述拍摄装置还包括:
外接连接器,所述外接连接器用于与外部配件连接,以使所述外部配件与所述拍摄装置建立电连接及/或通信连接。
在一些实施例中,所述外接连接器固定于所述中框。
在一些实施例中,所述外接连接器包括:
固定部,所述固定部用于与所述中框固定;
活动部,所述活动部包括多个连接触点,所述连接触点用于与外部配件接触导通。
在一些实施例中,所述拍摄装置还包括第一柔性电路板,且所述第一柔性电路板与所述核心板连接,所述活动部用于与所述第一柔性电路板的漏铜区电连接。
在一些实施例中,所述固定部包括导通柱,所述活动部包括第一金属弹性件,所述第一金属弹性件固定于所述第一柔性电路板的漏铜区,且所述导通柱与所述第一金属弹性件抵接。
在一些实施例中,所述固定部包括导通柱,所述活动部滑设于所述导通柱内,且所述活动部与所述第一柔性电路板的漏铜区抵接。
在一些实施例中,所述拍摄装置还包括:振动马达;所述振动马达设 于所述中框。
在一些实施例中,还包括第三缓冲件,所述第三缓冲件挤压于所述振动马达与所述前盖组件之间。
在一些实施例中,所述拍摄装置还包括第一柔性电路板,且所述第一柔性电路板与所述核心板连接,所述振动马达通过第二金属弹性件与所述第一柔性电路板连接。
在一些实施例中,所述中框组件与所述前盖组件之间滑动配合,所述中框组件与所述前盖组件能够沿预设滑动方向相对滑动至装配状态。
在一些实施例中,所述前盖组件与所述中框组件之间设有第一防水密封件。
在一些实施例中,所述外接连接器与所述中框组件之间设有第二防水密封件。
在一些实施例中,所述主机壳体具有按键模块,所述按键模块与所述主机壳体之间设有第三防水密封件。
在一些实施例中,所述电子模块包括镜头组件,所述镜头组件包括镜头玻璃,所述镜头玻璃与所述主机壳体通过第四防水密封件密封。
在一些实施例中,所述电子模块包括镜头组件,所述镜头组件包括多个镜头装配件,多个所述镜头装配件之间通过第五防水密封件密封。
在一些实施例中,所述主机壳体上设有显示屏,所述显示屏与所述主机壳体之间通过第六防水密封件密封。
在一些实施例中,所述电子模块包括镜头组件,所述镜头组件连接有色温传感器,所述色温传感器包括多个色温传感器装配件,多个所述色温传感器装配件之间通过第七防水密封件密封。
在一些实施例中,所述主机壳体上设有至少一个透气孔,所述透气孔的开口处粘接有防水透气膜。
在一些实施例中,所述主机壳体上设有麦克风孔,所述麦克风孔的开 口处粘接有防水透声膜。
在一些实施例中,所述主机壳体具有与外部配件连接的连接部,所述外部配件能够通过所述连接部与所述主机壳体可拆卸地连接。
在一些实施例中,所述连接部包括磁吸件。
在一些实施例中,所述拍摄装置包括运动相机。
本申请实施例提供的拍摄装置,将电池组件设计为包括至少两个电芯,而至少两个电芯间隔布置形成供镜头组件容纳的收容空间,将镜头组件的至少一部分布局于至少两个电芯之间,布局合理,减小了整机尺寸,有利于整个拍摄装置的小型化设计,提高了其便携性。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例描述中所需要使用的附图作一简单地介绍,显而易见地,下面描述中的附图是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他的附图。
图1为本申请一实施例提供的拍摄装置的部分结构示意图;
图2为图1中的电池组件与前盖组件的分离结构示意图;
图3为图2中的电池组件的结构示意图;
图4为本申请实施例中的前盖组件与中框组件的结构示意图;
图5为本申请实施例提供的前盖组件安装有电子模块的状态示意图;
图6为本申请实施例提供的电子模块在前盖组件上的分离状态示意图;
图7为本申请实施例提供的前盖组件与中框组件的分离状态示意图;
图8为本申请实施例提供的拍摄装置的侧剖视图;
图9a为本申请实施例提供的包括有天线模块的拍摄装置的部分结构爆炸图;
图9b为本申请实施例提供的包括有天线模块的拍摄装置的部分结构 示意图;
图10a为本申请实施例提供的前盖组件的部分结构爆炸示意图;
图10b为本申请实施例提供的前盖组件的剖视图;
图10c为图10b的A处放大图;
图11a为本申请实施例提供的包含有一种外接连接器的拍摄装置的结构示意图;
图11b为本申请实施例提供的包含有另一种外接连接器的拍摄装置的结构示意图;
图12为本申请实施例提供的包含有振动马达的拍摄装置的结构示意图;
图13为本申请实施例提供的拍摄装置的前盖组件与中框组件的分离状态示意图。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚地描述,显然,所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
除非另有定义,本文所使用的所有的技术和科学术语与属于本申请的技术领域的技术人员通常理解的含义相同。本文中在本申请的说明书中所使用的术语只是为了描述具体的实施例的目的,不是旨在于限制本申请。
在通篇说明书及权利要求当中所提及的“包括”为一开放式用语,故应解释成“包括但不限定于”。“大致”是指在可接收的误差范围内,本领域技术人员能够在一定误差范围内解决所述技术问题,基本达到所述技术效果。
此外,“连接”一词在此包含任何直接及间接的连接手段。因此,若文中描述一第一装置连接于一第二装置,则代表所述第一装置可直接连接于所述第二装置,或通过其它装置间接地连接至所述第二装置。
应当理解,本文中使用的术语“及/或、和/或”仅仅是一种描述关联对象的关联关系,表示可以存在三种关系,例如,A1及/或B1,可以表示:单独存在A1,同时存在A1和B1,单独存在B1这三种情况。另外,本文中字符“/”,一般表示前后关联对象是一种“或”的关系。
下面结合附图,对本申请的一些实施方式作详细说明。在不相互矛盾的情况下,本领域的技术人员可以将本说明书中描述的不同实施例或示例以及不同实施例或示例的特征进行结合和组合。
首先,为了便于理解本申请的技术方案,下面对相关技术进行简要说明:
对于拍摄装置而言,拍摄装置内的电池等内部部件的堆叠方式对整个相机的体积影响较大,发明人经过创造性地劳动发现,在相关技术中,传统的拍摄装置内的电池等内部部件的堆叠方式导致拍摄装置的横向长度较大,或者,拍摄装置的厚度较厚,导致整个拍摄装置的体积较大。并且,拍摄装置内的电池等部件的堆叠方式也影响整个拍摄装置的散热效果。
为了解决至少一个上述特定的技术问题,本申请实施例创造性地将拍摄装置中的电池设计成至少两个电芯,并且至少两个电芯间隔布置,保证电池的容量的同时,使得布置电芯的自由度变高。间隔布置的空间内可以用于设置镜头组件等模块,更好地布置更有利的堆叠结构,又从而使得整个拍摄装置的内部结构布置合理和紧凑,有利于拍摄装置的小型化设计,提高了其便携性。并且,由于电池被划分为多个间隔布置的电芯,与外部接触面积变大,从而其散热效果也更好,有利于整个拍摄装置的散热。
图1为本申请一实施例提供的拍摄装置的部分结构示意图;图2为图1中的电池组件与前盖组件的分离结构示意图;图3为图2中的电池组件的结构示意图;图4为本申请实施例中的前盖组件与中框组件的结构示意图;请参照附图1~附图4,本申请实施例提供的拍摄装置包括运动相机,或者其他普通相机。具体的,拍摄装置包括:主机壳体10、镜头组件20 和电池组件30。
镜头组件20的至少一部分设于主机壳体10内部;如图4所示,主机壳体10可以包括前盖组件10a和中框组件10b,前盖组件10a与中框组件10b可以对接形成容纳腔,拍摄装置的电子模块及机械模块容纳于该容纳腔。中框组件10b可以包括显示屏F,显示屏F可以正对于镜头组件20设置。镜头组件20用于采集拍摄图片、录像等,其重量和体积一般占据整个拍摄装置的较大位置,因此,对于镜头组件20的合理布置显得尤为重要。
镜头组件20的至少部分位于主机壳体10内。在一些实施例中,镜头组件20的一部分可以伸出主机壳体10外,另一部分可以伸入主机壳体10内。或者,在另一些实施例中,镜头组件20整个处于主机壳体10内,而主机壳体10上可以具有供光线投射至镜头组件20处的窗口。
电池组件30设于主机壳体10内部,示例性的,电池组件30用于为整个拍摄装置的其他电子模块提供电能。在一些实施例中,电池组件30可以与外接电源连接,通过外接电源充电,并能够放电,以为整个拍摄装置的其他电子模块提供电能。
电池组件30包括至少两个电芯31,至少两个电芯31相对间隔布置以形成收容空间C,镜头组件20的至少一部分容纳于收容空间C内。所有电芯31加起来的总容量为整个拍摄装置的电池组件30总容量,在保证整体堆叠尽量小的目标下,容量与整块电池相当,以满足续航使用要求。具体的,可以根据拍摄装置的电池所需总容量来确定单个电芯31的体积,以及电芯31的数量。在一个示例性实施例中,如图1和图2所示,电池组件30包括两个电芯31,两个电芯31的体积和形状可以相同,并且可以在主机壳体10的预设方向上对称设置,例如,在主机壳体10的宽度方向上对称设置,以尽量保证拍摄装置的重量平稳性,尽量使得拍摄装置的重量集中的中心位置。
本实施例中,将镜头组件20的至少一部分设置在收容空间C内,使得重量较重的镜头组件20布置在间隔布置的电芯31之间,充分利用相邻电芯31之间的空间,空间布局合理,结构紧凑。
更进一步的,镜头组件20可以固定于主机壳体10上,且位于至少两个电芯31的间隔排布方向的中间位置。至少两个电芯31可以关于镜头组件20对称布置,有利于保证镜头组件20位于拍摄装置整机的中间位置,使得整个拍摄装置的外观对称美感较好。
本申请实施例提供的拍摄装置,将电池组件设计为包括至少两个电芯,而至少两个电芯间隔布置形成供镜头组件容纳的收容空间,使主要发热模块分散分布,避免了热量过于集中,而将镜头组件布局于至少两个电芯之间,布局合理,减小了整机尺寸,有利于整个拍摄装置的小型化设计,提高了其便携性。
图5为本申请实施例提供的前盖组件安装有电子模块的状态示意图。请参照附图1和附图5(图5中未示出电池组件30)所示,在一些实施例中,拍摄装置还可以包括:多个电子模块40。至少一个电子模块40设于镜头组件20的周围,且容纳于收容空间C内。由于镜头组件20布置于收容空间C内,而收容空间C由至少两个电芯31间隔布置形成,在收容空间C内,除镜头组件20之外的其他位置还具有一定的可容纳性,因此,将至少一个电子模块40设于收容空间C内,且位于镜头组件20的周围,使得整个拍摄装置的结构布局更为合理。而具体的,镜头组件20的周围是指镜头组件20的上下左右前后的任意位置周围,且与镜头组件20距离较近的位置,尽可能地使得重量集中在拍摄装置的中部位置,有利于拍摄装置的平稳性。
示例性的,电子模块40可以至少包括第一电路板41、核心板42、射频板43和传感器板44。其中,第一电路板41用于提供拍摄装置的电子元器件电气连接的载体。在一些实施例中,第一电路板41可以是电池保护 板,与至少两个电芯31形成整体。核心板42可以用于集成运算器、控制器和存储器等。而射频板43用于发射与接收射频调制信号。传感器板44上集成有多种传感器,用于感测拍摄装置的相关动作,画质以及画幅尺寸大小均可直接由传感器来决定。至少一个电子模块40可以设置在至少两个电芯31的下方,与至少两个电芯31布置呈U形的收容空间C,至少另一个电子模块40容纳于U形的收容空间C内。示例性的,如图1和图2所示,第一电路板41可以设于至少两个电芯31的下方。具体的,第一电路板41可以设置在至少两个电芯31和镜头组件20的下方,与至少两个电芯31共同布置成U形的收容空间C。射频板43和传感器板44中的至少一个可以容纳于U形的收容空间C内。
电芯31可以固定于第一电路板41,在一些实施例中,电芯31可以焊接于第一电路板41,以与第一电路板41保持供电连接;在一些实施例中,电芯31还可以与第一电路板41粘接。
示例性的,电芯31可以通过极耳焊接于第一电路板41上,并可以采用U形钢片(PC片等其他硬性支撑结构)保持形状,然后整体可以包裹胶纸或者打胶的方式连接固定。使得电芯31可靠固定在第一电路板41上,并保持U形结构,外观上形成为一个U形整体,便于整体在主机壳体10上的拆装,有利于提高拆装效率。而至少另一个电子模块40容纳于U形的收容空间C,至少另一个电子模块40可以设于镜头组件20的周围,也可以设于U形的收容空间C中,但是与镜头组件20的相距较远。具体的,至少一个电子模块40到镜头组件20的距离可以大于该电子模块40到第一电路板41的距离,或者,至少一个电子模块40到镜头组件20的距离可以小于该电子模块40到第一电路板41的距离。
另外,电芯31朝向主机壳体10的一侧表面可以与主机壳体10固定连接。具体而言,电芯31可以与主机壳体10的前盖组件10a固定连接,以使得电芯31在安装于主机壳体10内的状态下,安装稳定,不易晃动或 者脱离,有利于保证供电可靠性。
而对于电芯31与主机壳体10的具体固定方式,在一些实施例中,电芯31可以与主机壳体10粘接固定,采用粘接的方式固定电芯31,可以使得电芯31的表面均匀地被固定,且固定后较为牢靠。更具体的,电芯31与主机壳体10之间可以具有主缓冲件32,该主缓冲件32可以为泡棉、橡胶等,且该主缓冲件32可以通过背胶粘接于主机壳体10(具体可以为前盖组件10a)上,通过主缓冲件32挤压固定,使得电芯31固定更为可靠,防止使用过程及跌落时电芯31晃动。并且,泡棉、橡胶等可以具有隔热的作用,能够使得电芯31受整机温升影响较小。更进一步的,主缓冲件32的面积可以小于电芯31上用于固定至主机壳体10的一侧表面的面积,使得电芯31在可靠固定在主机壳体10上的同时,电芯31与主机壳体10之间也能够形成散热间隙。
当然,在其他一些实施例中,电芯31还可以采用卡接的方式固定于主机壳体10,例如,通过卡扣将电芯31与主机壳体10相对限位,对于电芯31固定于主机壳体10的方式本实施例不做特别限定。
请参照附图1和附图5,射频板43、第一电路板41(附图5中未示出第一电路板41)和传感器板44可以分别布置在镜头组件20的上方、下方和后方。需要说明的是,镜头组件20的上方、下方和后方可以以附图1和附图5中所示方位为基准。将射频板43设于镜头组件20的上方,使得镜头组件20尽量不会遮挡射频板43的信号,有利于保证射频板43的信号收发的可靠性和灵敏性。传感器板44可以位于收容空间C,传感器板44设于镜头组件20的后方,更方便地探测到镜头组件20的各光学部件的相对位置,从而更可靠地检测到镜头组件20的拍摄参数。镜头组件20的中心轴线穿过传感器板44,也就是说,传感器板44与镜头组件20沿前后方向叠置,有利于保证各部件堆叠后体积较小。
更具体的,镜头组件20包括从主机壳体10穿出的前端,以及朝向收 容空间C的后端,传感器板44与镜头组件20的后端正相对设置。由此,可以最大程度上缩减安装后的整体体积,并且,有利于整机的重心处于中部位置,更有利于整机的平稳性。
需要说明的是,本实施例中,射频板43、第一电路板41和传感器板44等发热模块分散布置,也有利于减少热量集中效应。
在其他一些实施例中,第一电路板41可以是电池保护板或其他电路板,第一电路板41可以设于电芯31的上方,与电芯31形成倒U形。在一些实施例中,第一电路板41上可以堆叠核心板42或者射频板43。第一电路板41、核心板42、射频板43的相对位置并不受限定,第一电路板41、核心板42、射频板43等电路板的位置可以可选择地放置于镜头组件20的上方、下方或者侧面。只要是将第一电路板41、核心板42、射频板43放置于上述的收容空间C即可。
为使得上述的电子模块40安装更为可靠,在一些实施例中,主机壳体10可以包括:至少一个支撑件50。支撑件50用于安装电子模块40。具体的,支撑件50可以由金属或例如硬质塑料等材料制成,以保证其支撑强度。支撑件50可以与主机壳体10一体成型,以提高成型效率,或者,支撑件50可以与主机壳体10可拆卸地连接,以便于拆装。
在一些实施例中,支撑件50可以包括至少两个,至少两个支撑件50沿电芯31的高度方向(图1中所示上下方向)相对间隔布置,至少一个电子模块40可以固定于支撑件50。具体的,至少一个支撑件50可以位于电芯31的下方,且直接或间接支撑电芯31,以进一步提高电芯31的安装稳定性。示例性的,支撑件50可以呈板状,在材料强度足够的情况下,板状的支撑件50的厚度越小,越有利于拍摄装置的小型化。
更具体的,第一电路板41可以位于至少一个支撑件50与电芯31之间,该支撑件50可以支撑第一电路板41,而由于电芯31固定于第一电路板41上,因此,支撑件50对电芯31也起到一定支撑固定的作用。
另外,为了提高拍摄装置的散热效果,电子模块40与支撑件50之间还可以设有导热层,导热层用于将电子模块40的热量传导至支撑件50。为便于散热,支撑件50可以优选为导热效果好的材料制成,例如金属材料制成,由此,以便于热量从支撑件50散发至空气中。
进一步的,拍摄装置还包括金属屏蔽层,金属屏蔽层设于电子模块40与支撑件50之间。金属屏蔽层可以用于屏蔽干扰信号,防止干扰信号对电子模块40的影响,保证各电子模块40的功能运行正常。
具体的,导热层可以为导热硅胶制成,且导热硅胶可以与电子模块40、金属屏蔽层70、支撑件50粘接。导热层可以包括第一导热层(图中未示出)和第二导热层(图中未示出);电子模块40、第一导热层、金属屏蔽层70、第二导热层、支撑件50沿预设方向依次层叠布置。如此,电子模块40工作所产生的热量,可以先经过第一导热层,然后再经过金属屏蔽层70,金属屏蔽层70为金属材质,可以快速导热,金属屏蔽层70的热量经过第二导热层再传导至支撑件50,由于支撑件50与主机壳体10连接,因此,热量最终可以通过主机壳体10快速散发出去,避免电子模块40因过热而影响使用性能。通过上述合理的布置,可以加速电子模块40的散热,提高了电子模块40的使用寿命。
具体而言,如图1所示,支撑件50可以包括:第一支撑件51,第一支撑件51可以设于收容空间C内,且第一支撑件51的支撑面A基本垂直于电芯31的侧面。第一支撑件51包括支撑面A,所谓第一支撑件51的支撑面A是指第一支撑件51上用于承载电子模块40的表面。当第一支撑件51为板状时,第一支撑件51上与支撑面A相对的表面也与电芯31的侧面基本垂直。另外,需要说明的是,基本垂直是指两者的角度大致在90°±5°。
第一支撑件51的支撑面A与电芯31的侧面基本垂直,使得第一支撑件51在保证对电子模块40较好的支撑作用的同时,尽量占用较少的收容 空间C,使得收容空间C的余量较大,进而使得整个拍摄装置散热效果更好。
请进一步参照附图1,第一支撑件51与电芯31之间可以通过中部缓冲件81抵顶接触。具体的,中部缓冲件81可以包括以下至少一种:泡棉、橡胶。中部缓冲件81可以粘接于至少两个电芯31的相对侧面,中部缓冲件81可以采用背胶粘接于电芯31上,第一支撑件51可以与主机壳体10固定连接,例如一体成型。第一支撑件51与中部缓冲件81抵顶接触,有利于电芯31与第一支撑件51之间的固定可靠。当拍摄装置发生跌落时,由于中部缓冲件81的挤压,可以防止电芯31相对于第一支撑件51产生错位。同时,泡棉、橡胶等材质制成的中部缓冲件81的隔热效果较好,能够避免从电子模块40传导至第一支撑件51的热量传递至电芯31,而反向导致电芯31温升的问题。
更进一步的,支撑件50可以包括:第二支撑件52。第二支撑件52位于两个电芯31的高度方向的底部,且第二支撑件52与电芯31的底部之间形成有间隙(图中未示出),第一电路板41可以容纳于间隙中。第二支撑件52可以与第一支撑件51基本平行设置,且第二支撑件52可以构成电芯31及第一电路板41的整体支撑结构,使得电芯31与第一电路板41所构成的整体被可靠维持在主机壳体10上的预设位置。
在一些实施例中,第一电路板41可以包括朝向电芯31的上表面,以及朝向第二支撑件52的下表面;第一电路板41的上表面设有第一缓冲件91,第一缓冲件91与两个电芯31相对的侧壁固定连接。第一缓冲件91包括以下至少一种:泡棉、橡胶。在一些实施例中,第一电路板41的下表面设有第二缓冲件92,第二缓冲件92可以挤压于第一电路板41的下表面和第二支撑件52之间。及/或,第二缓冲件92包括以下至少一种:泡棉、橡胶。
在第一电路板41的上表面设置第一缓冲件91,第一缓冲件91可以通 过背胶固定于第一电路板41和电芯31上,体积小,质量轻,满足固定牢靠的要求。并且,泡棉、橡胶等材质的第一缓冲件91的隔热效果较好,也能够减少第一电路板41所产生的热量传导至电芯31。类似的,在第二支撑件52与第一电路板41之间设置第二缓冲件92,同样在提高第一电路板41的固定可靠性的同时避免或改善第一电路板41工作所产生的热量传导至第二支撑件52而传导至电芯31。另外,通过第一缓冲件91和/或第二缓冲件92的设置,可以有利于降低在拍摄装置发生跌落时,第一电路板41与电芯31和/或第二支撑件52的硬碰撞的概率,使得第一电路板41和电芯31不易发生跌落损坏的情况。
在一个具体实施例中,核心板42可以设于第一支撑件51和第二支撑件52中的其中一个,射频板43设于第一支撑件51和第二支撑件52的另一个。也就是说,核心板42与射频板43分开布置,且间距稍大,尽量避免两者相互干扰。
具体的,在安装状态下,核心板42与射频板43相互背离;在一些实施例中,射频板43位于第一支撑件51,核心板42位于第二支撑件52。由此,保证了射频板43处于镜头组件20上方,且沿其收发方向基本无遮挡,不易受到其他信号干扰。而核心板42上所容纳的元器件较多,导致其体积通常较大,将核心板42设于第二支撑件52下方,可以有利于提供充分的空间布置体积较大的核心板42。
核心板42和第一电路板41可以分别位于第二支撑件52的两侧。具体的,第一电路板41位于第二支撑件52上朝向电芯31的一侧,而核心板42位于第二支撑件52上背离电芯31的一侧。以便于将电芯31固定在第一电路板41上形成U形整体,并且,核心板42具有足够的安装空间,布局十分合理。
在具体实施例中,上述的电池组件30、电子模块40、支撑件50可以均设于前盖组件10a;中框组件10b与前盖组件10a之间形成有容纳腔, 电子模块40可以位于容纳腔,收容空间C形成于容纳腔。
如图7和图8所示,镜头组件20可以固定于前盖组件10a,中框组件10b可以包括固定支架11b,传感器板44设于镜头组件20与中框组件10b的固定支架11b之间。具体的,固定支架11b可以为金属材质,传感器板44可以通过固定支架11b进行散热。更具体的,传感器板44与固定支架11b之间可以具有第三导热层R。
进一步的,还包括:辅助散热层S;沿镜头组件20指向中框组件10b的方向,传感器板44、第三导热层R、辅助散热层S以及固定支架11b依次层叠布置。具体的,第三导热层R可以为导热硅胶,辅助散热层S可以为金属散热件,在安装后,第三导热层R与辅助散热层S贴合抵顶接触,而辅助散热层S与固定支架11b连接。由此,传感器板44工作所产生的热量,依次经过第三导热层R、辅助散热层S、固定支架11b传递出去。
图9a为本申请实施例提供的包括有天线模块的拍摄装置的部分结构爆炸图;图9b为本申请实施例提供的包括有天线模块的拍摄装置的部分结构示意图;更进一步的,如图9a和图9b所示,上述的电子模块40还可以包括:天线模块45;拍摄装置还包括天线支架1000,天线模块45连接于天线支架1000,天线支架1000与主机壳体10可拆卸地连接。具体的,天线模块45可以通过柔性电路板粘接于天线支架1000。天线模块45通过柔性电路板粘接于天线支架1000的方式,结构紧凑,能够满足整机小巧,轻便的要求。而通过天线支架1000将天线模块45可拆卸地安装于主机壳体10,能够便于天线模块45的模块化和可拆性。
进一步的,射频板43和天线支架1000通过紧固件共同连接至主机壳体10。具体的,射频板43和天线支架1000可以通过螺钉等紧固件共同安装至主机壳体10,有利于减少紧固件的使用数量,降低整机成本和重量,更进一步提高轻量化需求。并且,射频板43与天线支架1000共用紧固件,可以提高射频板43和天线支架1000的拆装效率。
天线模块45可以包括连接弹片,天线模块45通过连接弹片与射频板43连接。由于射频板43与天线支架1000通过共用紧固件连接,当调节紧固件的松紧程度时,可以调节天线模块45与射频板43的电连接紧密程度,天线模块45与射频板43通过连接弹片实现电连接。天线模块45具体可以通过连接弹片抵接至射频板43上,当将两者分离时,即可自动断开连接,而当两者通过紧固件连接时,两者自动构成电连接。
天线模块45可以设于第一支撑件51上背离第二支撑件52的一侧。也就是说,天线模块45也设于第一支撑件51的上方,上方无其他部件遮挡,有利于天线模块45的信号收发,保证天线模块45的使用性能。
如图10a所示,本申请实施例所提供的拍摄装置还可以包括第一柔性电路板2000,第一柔性电路板2000可以与核心板42连接(如图2所示,通过核心板连接器2001连接至核心板42),第一柔性电路板2000可以连接于主机壳体10。在第一柔性电路板2000上贴设有色温传感器2002。镜头组件20配合色温传感器2002,可以实现更逼真更强大的拍摄。如图10b~图10c所示,色温传感器2002可以搭配均光片22、镜头玻璃21一起使用。提高整个拍摄装置的拍摄效果。
如图11所示,拍摄装置还可以包括:外接连接器3000,外接连接器3000用于与外部配件连接,以使外部配件与拍摄装置建立电连接及/或通信连接。例如,在一些实施例中,外部配件可以为外接电源,当外接电源通过外接连接器3000与拍摄装置连接时,可以为拍摄装置内的电池组件30供电。在另一些实施例中,当外部配件为USB时,拍摄装置可以通过该外接连接器3000与USB建立连接,而将拍摄装置的数据存储至USB,或者在拍摄装置中读取USB内所存储的数据等。在另一些实施例中,外部配件可以是拓展屏幕部件,不仅可以给拍摄装置的电池充电,还可以使得拍摄装置通过外部连接器3000将拍摄数据传输到拓展屏幕部件以实时展示拍摄画面。为了实现外接连接器3000与外部配件的连接,在本申请 实施例还提供一些具体连接方式,在一些实施例中,外接连接器3000可以固定于中框组件10b。如图11a和图11b所示,外接连接器3000可以包括:固定部3001和活动部3002。
固定部3001用于与中框组件10b固定,具体的,固定部3001可以通过粘接的方式固定于中框组件10b。中框组件10b的侧面可以具有供外接连接器3000固定的安装孔11b,固定部3001可以与安装孔11b的孔壁粘接固定。活动部3002包括多个连接触点,连接触点用于与外部配件接触导通。
活动部3002可以用于与第一柔性电路板2000的漏铜区电连接。由于第一柔性电路板2000与核心板42电连接,因此,当外部配件对接至外部连接器3000时,对活动部3002产生抵顶,与活动部3002的连接触点产生交互,进而实现外接连接器3000与核心板42的电连接,而核心板42上所存储的数据可以通过外接连接器3000传输至外部配件。
更进一步的,如图11a所示,主机壳体10还可以具有与外部配件连接的连接部11,外部配件能够通过连接部11与主机壳体10可拆卸地连接。具体的,连接部11可以包括磁吸件。外部配件可以具有与该磁吸件配合的另一磁吸件,当然,在其他一些实施例中,连接部11还可以为卡扣等结构,具体本申请实施例不做限定。通过设置连接部11,使得外接配件与拍摄装置连接状态下能够更为稳定,降低外接配件被误碰而脱离与外接连接器3000的电连接。
当连接部11为磁吸件时,有利于外接配件与拍摄装置快速对接至预设对接位置,且便于实现两者的快速拆离。值得注意的是,图11a中,连接部11位于外接连接器3000的旁边,在一些实施例中,连接部11还可以围绕外接连接器3000设置,本申请不做特别限定。
在一些实施例中,如图11a所示,固定部3001可以包括导通柱(图中未示出),活动部3002可以包括第一金属弹性件(如图11a中的3002), 第一金属弹性件(例如为金属弹片)固定于第一柔性电路板2000的漏铜区,且导通柱与第一金属弹性件抵接。触点位置可以采用导通柱压缩金属弹性件的方式实现,导通柱可以为铜柱,纯铜柱的阻抗小,并且配合弹片使用成本低,弹片可吸收公差,保证电连接的可靠性和稳定性。
在一些可选的实施例中,如图11b所示,固定部3001可以包括导通柱30011,活动部3002可以滑设于导通柱30011内,且活动部3002与第一柔性电路板2000的漏铜区抵接。当外部配件与外接连接器3000对接时,外部配件抵顶活动部3002,使得活动部3002接触到第一柔性电路板2000的漏铜区,而实现导通。该种活动部3002以弹针的形式实现与第一柔性电路板2000的导通,零部件少,可以一次组装到位。活动部3002与固定部3001之间可以具有弹簧等弹性件,以使得活动部3002能够在未受到外接设备的作用力下,而恢复至脱离第一柔性电路板2000的漏铜区,而断开与核心板42的接触电连接。弹簧等弹性件设于活动部3002和固定部3001之间,可以吸收配合公差,使得活动部3002能够较好与第一柔性电路板2000电连接。
在一些实施例中,中框组件10b与前盖组件10a之间可以滑动配合,中框组件10b与前盖组件10a之间能够沿预设滑动方向相对滑动至装配状态。也就是说,前盖组件10a和中框组件10b之间可以采用推拉滑动组装的方式进行组装,以提高组装效率。由于活动部3002与第一柔性电路板2000(位于前盖组件10a)是采用接触导通的方式,活动部3002具有弹性伸缩空间,因此当前盖组件10a与中框组件10b推拉组装时,活动部3002可实现移动压缩的效果,不影响前盖组件10a与中框组件10b的组装。
如图12所示,进一步的,拍摄装置还可以包括:振动马达4000;振动马达4000可以设于中框组件10b。该振动马达4000可以为线性振动马达,示例性的,振动马达4000可以通过背胶粘接于中框组件10b,具体的,振动马达4000可以设于中框组件10b的内侧。在用户使用该拍摄装置的 过程中,振动马达4000可以根据不同场合发生不同频率的振动,从而实现交互反馈,提高用户体验。
更进一步的,拍摄装置还可以包括第三缓冲件(图中未示出),第三缓冲件挤压于振动马达4000与前盖组件10a之间。具体的,第三缓冲件4001可以为泡棉、橡胶。第三缓冲件可以粘接于中框组件10b,通过设置第三缓冲件,可以有效地将振动马达4000与前盖组件10a压紧。
振动马达4000可以通过第二金属弹性件(图中未示出)与第一柔性电路板2000连接。振动马达4000与第一柔性电路板2000连接,进而实现振动马达4000与核心板42的间接连接,使得振动马达4000的振动信号传递至核心板42,且核心板42也可以发送用于控制振动马达4000工作的控制信号给振动马达4000,使得振动马达2000可控。由于振动马达4000与第一柔性电路板2000的电连接方式也是通过弹片实现接触导通,因此可以满足前盖组件10a与中框组件10b的推拉组装。
值得注意的是,本申请实施例所提供的拍摄装置对于防水的要求较高,为了使得拍摄装置即使掉入水中,或无意中被液体浸湿,也不会影响或腐蚀拍摄装置内部的元器件,本申请还对拍摄装置的防水结构进行了设计,具体如下:
如图13所示,前盖组件10a与中框组件10b之间可以设有第一防水密封,第一防水密封件可以为密封胶,具体可以以涂抹的方式设于前盖组件10a,在其他一些实施例中,密封胶可以被可拆卸地密封圈替代。更具体的,在前盖组件10a上朝向中框组件10b的一侧可以具有用于设置第一防水密封件的第一防水槽P1,第一防水密封件充填于第一防水槽P1中,进而与中框组件10b密封对接,保证前盖组件10a与中框组件10b之间的密封性。
在一些实施例中,如图11b所示,外接连接器3000与中框组件10b之间设有第二防水密封件。第二防水密封件可以设于中框组件10b上的安 装孔11b的孔壁处(如图11b的P2处),同样的,第二防水密封件也可以为密封胶,或者密封圈。通过第二防水密封件有效防止水分从外接连接器3000与中框组件10b的连接处进入机体内部。
在一些实施例中,主机壳体10可以具有按键模块(图中未示出),按键模块与主机壳体10之间设有第三防水密封件(图中未示出)。在一些应用场景中,按键模块可以是用于操作而选择性地展示显示屏F上所显示的图片或影像,例如,按键模块可以实现对显示屏F上所展现的图片的确定、取消、删除、左翻、右翻、上滑、下滑的操作。按键模块可以设于前盖组件10a,也可以设于中框组件10b,本申请实施例不做限定。按键模块与主机壳体10之间也可以采用第三防水密封件实现密封,具体的,第三防水密封件可以与按键模块采用软硬胶双色注塑成型,通过第三防水密封件的设置,可以防止水分从按键模块与主机壳体10之间的间隙进入主机壳体10内。
在一些实施例中,如图10所示,镜头组件20可以包括镜头玻璃21,镜头玻璃21与主机壳体10通过第四防水密封件(如图10中P4所示为设置第四防水密封件处)密封。由此,能够防止水分从镜头玻璃21与主机壳体10的安装间隙处进入镜头组件20内,而避免因进水损坏整个镜头组件20,严重影响拍摄效果。
镜头组件20可以包括多个镜头装配件(图中未示出),多个镜头装配件之间通过第五防水密封件(图中未示出)密封。镜头装配件可以包括多个光学镜片,各个光学镜片与其对应的装配件之间可以采用硅胶圈(第五防水密封件)密封,防止镜头组件20之间进水。
在一些实施例中,主机壳体上的显示屏F可以与主机壳体10之间通过第六防水密封件(图中未示出)密封。具体的,显示屏F可以以胶粘的方式固定于主机壳体10上,具体固定于中框组件10b上,胶水形成第六防水密封件,防止水分从显示屏F与中框组件10b的间隙处进入机体内。
电子模块包括镜头组件20,镜头组件20连接有色温传感器,色温传感器包括多个色温传感器装配件,多个色温传感器装配件之间通过第七防水密封件(图中未示出)密封。示例性的,具体可以是色温传感器装配件之间粘贴防水双面胶。通过设置第七防水密封件,防止水分进入色温传感器处,而影响拍摄效果。
在一些实施例中,主机壳体10上设有至少一个透气孔,透气孔的开口处粘接有防水透气膜。由于主机壳体10内部具有较多的电子模块,这些电子模块在工作过程中会产生热量,最终可能使得主机壳体10内压力增大,为了防止出现胀包的现象,可以在主机壳体10上开设至少一个透气孔,以平衡主机壳体10内外压差。同时为了防止水分经过透气孔进入主机壳体10内,在透气孔处可以覆盖防水透气膜。
在一些实施例中,主机壳体10上还可以设有麦克风孔,麦克风孔的开口处粘接有防水透声膜。麦克风孔用于播放拍摄装置所拍摄的视频的声音。在麦克风孔处设置防水透声膜,有利于在防止水分进入麦克风孔处的同时,不影响拍摄装置的正常播放声音的功能。
需要说明的是,上述各防水密封件的具体形式仅为举例,而并不以此为限,本领域技术人员可以根据实际需要而具体设计和选择防水密封件,本申请实施例不做限定。
本申请实施例未详细描述的部分,可参考上述所示方法实施例的相关说明。该技术方案的执行过程和技术效果参见上述方法实施例中的描述,在此不再赘述。
在本申请所提供的几个实施例中,所显示或讨论的相互之间的耦合或直接耦合或通信连接可以是通过一些接口,装置或单元的间接耦合或通信连接,可以是电性,机械或其它的形式。
最后应说明的是:以上各实施例仅用以说明本申请的技术方案,而非对其限制;尽管参照前述各实施例对本申请进行了详细的说明,本领 域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分或者全部技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本申请各实施例技术方案的范围。

Claims (60)

  1. 一种拍摄装置,其特征在于,包括:
    主机壳体;
    镜头组件,所述镜头组件的至少一部分设于所述主机壳体内部;
    电池组件,设于所述主机壳体内部,所述电池组件包括至少两个电芯,至少两个所述电芯相对间隔布置以形成收容空间,所述镜头组件的至少一部分容纳于所述收容空间内。
  2. 根据权利要求1所述的拍摄装置,其特征在于,所述拍摄装置还包括:
    多个电子模块,至少一个电子模块设于所述镜头组件的周围,且容纳于所述收容空间内。
  3. 根据权利要求2所述的拍摄装置,其特征在于,至少一个电子模块设置在至少两个所述电芯的下方,与至少两个所述电芯布置呈U形的收容空间,至少另一个电子模块容纳于所述U形的收容空间内。
  4. 根据权利要求3所述的拍摄装置,其特征在于,所述电子模块至少包括第一电路板、核心板、射频板和传感器板;其中,所述第一电路板设置在至少两个所述电芯和所述镜头组件的下方,与至少两个所述电芯共同布置成U形的收容空间,所述射频板和所述传感器板中的至少一个容纳于所述U形的收容空间内。
  5. 根据权利要求4所述的拍摄装置,其特征在于,所述射频板、第一电路板和传感器板分别布置在所述镜头组件的上方、下方和后方。
  6. 根据权利要求1所述的拍摄装置,其特征在于,所述电芯朝向主机壳体的一侧表面与所述主机壳体固定连接。
  7. 根据权利要求6所述的拍摄装置,其特征在于,所述电芯与所述主机壳体粘接固定;
    及/或,所述电芯与所述主机壳体之间挤压有主缓冲件,其中所述主缓 冲件包括以下至少一种:泡棉、橡胶。
  8. 根据权利要求4所述的拍摄装置,其特征在于,所述电芯固定于所述第一电路板。
  9. 根据权利要求8所述的拍摄装置,其特征在于,
    所述电芯焊接于所述第一电路板;
    及/或,所述电芯与所述第一电路板粘接。
  10. 根据权利要求4所述的拍摄装置,其特征在于,所述主机壳体包括:
    至少一个支撑件,所述支撑件用于安装所述电子模块。
  11. 根据权利要求10所述的拍摄装置,其特征在于,
    所述支撑件包括至少两个,至少两个所述支撑件沿所述电芯的高度方向相对间隔布置,至少一个所述电子模块固定于所述支撑件。
  12. 根据权利要求11所述的拍摄装置,其特征在于,所述电子模块与所述支撑件之间设有导热层,所述导热层用于将所述电子模块的热量传导至所述支撑件。
  13. 根据权利要求12所述的拍摄装置,其特征在于,还包括金属屏蔽层,所述金属屏蔽层设于所述电子模块与所述支撑件之间。
  14. 根据权利要求13所述的拍摄装置,其特征在于,所述导热层包括第一导热层和第二导热层;
    所述电子模块、第一导热层、所述金属屏蔽层、所述第二导热层、所述支撑件沿预设方向依次层叠布置。
  15. 根据权利要求14所述的拍摄装置,其特征在于,所述支撑件包括:第一支撑件,所述第一支撑件设于所述收容空间内,且所述第一支撑件的支撑面基本垂直于所述电芯的侧面。
  16. 根据权利要求15所述的拍摄装置,其特征在于,所述第一支撑件与所述电芯之间通过中部缓冲件抵顶接触。
  17. 根据权利要求16所述的拍摄装置,其特征在于,所述中部缓冲件包括以下至少一种:泡棉、橡胶。
  18. 根据权利要求15所述的拍摄装置,其特征在于,所述支撑件包括:
    第二支撑件,所述第二支撑件位于两个所述电芯的高度方向的底部,且所述第二支撑件与所述电芯的底部之间形成有间隙,所述第一电路板容纳于所述间隙中。
  19. 根据权利要求18所述的拍摄装置,其特征在于,所述第一电路板包括朝向所述电芯的上表面,以及朝向所述第二支撑件的下表面;
    所述第一电路板的上表面设有第一缓冲件,所述第一缓冲件与两个所述电芯相对的侧壁固定连接。
    及/或,所述第一电路板的下表面设有第二缓冲件,所述第二缓冲件挤压于所述第一电路板的下表面和所述第二支撑件之间。
  20. 根据权利要求19所述的拍摄装置,其特征在于,所述第一缓冲件包括以下至少一种:泡棉、橡胶;
    及/或,所述第二缓冲件包括以下至少一种:泡棉、橡胶。
  21. 根据权利要求1所述的拍摄装置,其特征在于,所述镜头组件固定于所述主机壳体上,且位于至少两个所述电芯的间隔排布方向的中间位置。
  22. 根据权利要求18所述的拍摄装置,其特征在于,所述电子模块包括核心板和射频板,所述核心板设于所述第一支撑件和所述第二支撑件中的其中一个,所述射频板设于所述第一支撑件和所述第二支撑件的另一个。
  23. 根据权利要求22所述的拍摄装置,其特征在于,在安装状态下,所述核心板与所述射频板相互背离;
    及/或,所述射频板位于所述第一支撑件,所述核心板位于所述第二支 撑件。
  24. 根据权利要求23所述的拍摄装置,其特征在于,所述核心板和所述第一电路板分别位于所述第二支撑件的两侧。
  25. 根据权利要求18所述的拍摄装置,其特征在于,所述电子模块包括传感器板,所述传感器板位于所述收容空间,且所述镜头组件的中心轴线穿过所述传感器板。
  26. 根据权利要求25所述的拍摄装置,其特征在于,所述镜头组件包括从所述主机壳体穿出的前端,以及朝向所述收容空间的后端,所述传感器板与所述镜头组件的后端正相对设置。
  27. 根据权利要求10所述的拍摄装置,其特征在于,所述主机壳体包括:
    前盖组件,所述电池组件、所述电子模块、所述支撑件均设于所述前盖组件;
    中框组件,所述中框组件与所述前盖组件之间形成有容纳腔,所述电子模块位于所述容纳腔,所述收容空间形成于所述容纳腔。
  28. 根据权利要求27所述的拍摄装置,其特征在于,所述镜头组件固定于所述前盖组件,所述中框组件包括固定支架,所述传感器板设于所述镜头组件与所述中框组件的固定支架之间。
  29. 根据权利要求29所述的拍摄装置,其特征在于,所述传感器板与所述固定支架之间具有第三导热层。
  30. 根据权利要求29所述的拍摄装置,其特征在于,还包括:辅助散热层;
    沿所述镜头组件指向所述中框的方向,所述传感器板、所述第三导热层、所述辅助散热层以及所述固定支架依次层叠布置。
  31. 根据权利要求22所述的拍摄装置,其特征在于,所述电子模块还包括:天线模块;
    所述拍摄装置还包括天线支架,所述天线模块连接于所述天线支架,所述天线支架与所述主机壳体可拆卸地连接。
  32. 根据权利要求31所述的拍摄装置,其特征在于,
    所述天线模块通过柔性电路板粘接于所述天线支架。
  33. 根据权利要求31所述的拍摄装置,其特征在于,所述射频板和所述天线支架通过紧固件共同连接至所述主机壳体。
  34. 根据权利要求31所述的拍摄装置,其特征在于,所述天线模块包括以下至少一种:GPS天线、WIFI天线、蓝牙天线。
  35. 根据权利要求31所述的拍摄装置,其特征在于,所述天线模块包括连接弹片,所述天线模块通过所述连接弹片与所述射频板连接。
  36. 根据权利要求31所述的拍摄装置,其特征在于,所述天线模块设于所述第一支撑件上背离所述第二支撑件的一侧。
  37. 根据权利要求22所述的拍摄装置,其特征在于,还包括第一柔性电路板,所述第一柔性电路板与所述核心板连接,所述第一柔性电路板连接于所述主机壳体。
  38. 根据权利要求37所述的拍摄装置,其特征在于,所述第一柔性电路板上贴设有色温传感器。
  39. 根据权利要求27所述的拍摄装置,其特征在于,所述拍摄装置还包括:
    外接连接器,所述外接连接器用于与外部配件连接,以使所述外部配件与所述拍摄装置建立电连接及/或通信连接。
  40. 根据权利要求39所述的拍摄装置,其特征在于,所述外接连接器固定于所述中框组件。
  41. 根据权利要求39所述的拍摄装置,其特征在于,所述外接连接器包括:
    固定部,所述固定部用于与所述中框组件固定;
    活动部,所述活动部包括多个连接触点,所述连接触点用于与外部配件接触导通。
  42. 根据权利要求41所述的拍摄装置,其特征在于,所述拍摄装置还包括第一柔性电路板,且所述第一柔性电路板与所述核心板连接,所述活动部用于与所述第一柔性电路板的漏铜区电连接。
  43. 根据权利要求42所述的拍摄装置,其特征在于,所述固定部包括导通柱,所述活动部包括第一金属弹性件,所述第一金属弹性件固定于所述第一柔性电路板的漏铜区,且所述导通柱与所述第一金属弹性件抵接。
  44. 根据权利要求42所述的拍摄装置,其特征在于,所述固定部包括导通柱,所述活动部滑设于所述导通柱内,且所述活动部与所述第一柔性电路板的漏铜区抵接。
  45. 根据权利要求27所述的拍摄装置,其特征在于,所述拍摄装置还包括:振动马达;所述振动马达设于所述中框组件。
  46. 根据权利要求45所述的拍摄装置,其特征在于,还包括第三缓冲件,所述第三缓冲件挤压于所述振动马达与所述前盖组件之间。
  47. 根据权利要求45所述的拍摄装置,其特征在于,所述拍摄装置还包括第一柔性电路板,且所述第一柔性电路板与所述核心板连接,所述振动马达通过第二金属弹性件与所述第一柔性电路板连接。
  48. 根据权利要求27所述的拍摄装置,其特征在于,所述中框组件与所述前盖组件之间滑动配合,所述中框组件与所述前盖组件能够沿预设滑动方向相对滑动至装配状态。
  49. 根据权利要求27所述的拍摄装置,其特征在于,所述前盖组件与所述中框组件之间设有第一防水密封件。
  50. 根据权利要求39所述的拍摄装置,其特征在于,所述外接连接器与所述中框组件之间设有第二防水密封件。
  51. 根据权利要求1所述的拍摄装置,其特征在于,所述主机壳体具有按键模块,所述按键模块与所述主机壳体之间设有第三防水密封件。
  52. 根据权利要求1所述的拍摄装置,其特征在于,所述电子模块包括镜头组件,所述镜头组件包括镜头玻璃,所述镜头玻璃与所述主机壳体通过第四防水密封件密封。
  53. 根据权利要求1所述的拍摄装置,其特征在于,所述电子模块包括镜头组件,所述镜头组件包括多个镜头装配件,多个所述镜头装配件之间通过第五防水密封件密封。
  54. 根据权利要求1所述的拍摄装置,其特征在于,所述主机壳体上设有显示屏,所述显示屏与所述主机壳体之间通过第六防水密封件密封。
  55. 根据权利要求1所述的拍摄装置,其特征在于,所述电子模块包括镜头组件,所述镜头组件连接有色温传感器,所述色温传感器包括多个色温传感器装配件,多个所述色温传感器装配件之间通过第七防水密封件密封。
  56. 根据权利要求1所述的拍摄装置,其特征在于,所述主机壳体上设有至少一个透气孔,所述透气孔的开口处粘接有防水透气膜。
  57. 根据权利要求1所述的拍摄装置,其特征在于,所述主机壳体上设有麦克风孔,所述麦克风孔的开口处粘接有防水透声膜。
  58. 根据权利要求1所述的拍摄装置,其特征在于,所述主机壳体具有与外部配件连接的连接部,所述外部配件能够通过所述连接部与所述主机壳体可拆卸地连接。
  59. 根据权利要求58所述的拍摄装置,其特征在于,所述连接部包括磁吸件。
  60. 根据权利要求1~59任一项所述的拍摄装置,其特征在于,所述拍摄装置包括运动相机。
PCT/CN2021/126847 2021-10-27 2021-10-27 拍摄装置 WO2023070410A1 (zh)

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US20170264810A1 (en) * 2016-03-14 2017-09-14 Lg Electronics Inc. Image capturing apparatus
CN107808939A (zh) * 2017-09-26 2018-03-16 努比亚技术有限公司 一种终端电池结构和移动终端
CN208706785U (zh) * 2018-10-31 2019-04-05 Oppo广东移动通信有限公司 电子设备
CN110233920A (zh) * 2019-07-15 2019-09-13 Oppo广东移动通信有限公司 一种移动终端

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20170264810A1 (en) * 2016-03-14 2017-09-14 Lg Electronics Inc. Image capturing apparatus
CN107808939A (zh) * 2017-09-26 2018-03-16 努比亚技术有限公司 一种终端电池结构和移动终端
CN208706785U (zh) * 2018-10-31 2019-04-05 Oppo广东移动通信有限公司 电子设备
CN110233920A (zh) * 2019-07-15 2019-09-13 Oppo广东移动通信有限公司 一种移动终端

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