CN212752344U - Be applied to electronic equipment's protective housing subassembly - Google Patents

Be applied to electronic equipment's protective housing subassembly Download PDF

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Publication number
CN212752344U
CN212752344U CN202021557552.XU CN202021557552U CN212752344U CN 212752344 U CN212752344 U CN 212752344U CN 202021557552 U CN202021557552 U CN 202021557552U CN 212752344 U CN212752344 U CN 212752344U
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China
Prior art keywords
external
protective case
external battery
electronic equipment
electronic device
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CN202021557552.XU
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Chinese (zh)
Inventor
李仲鹏
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Guangdong Oppo Mobile Telecommunications Corp Ltd
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Guangdong Oppo Mobile Telecommunications Corp Ltd
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Priority to CN202021557552.XU priority Critical patent/CN212752344U/en
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Abstract

The utility model mainly relates to a be applied to electronic equipment's protective housing subassembly, including protective housing, zoom and external battery, one side of protective housing is equipped with the holding chamber, and the holding chamber is used for holding electronic equipment, and zoom and external battery set up the opposite side at the protective housing, and the zoom sets to can aim at with electronic equipment's camera when electronic equipment imbeds the holding chamber to make electronic equipment's camera can gather ambient light through zoom, external battery and zoom electric connection. According to the electronic equipment, the zoom lens and the protective shell are combined, so that when the protective shell is sleeved on the electronic equipment, the zoom lens is hung externally as the electronic equipment, the camera can obtain a larger focal length, and the photographing effect of the electronic equipment is further improved. This application still sets up an external battery on the protective housing, and external battery can provide the electric energy for zoom to avoid zoom to obtain the electric energy from electronic equipment, and then guarantee electronic equipment's duration.

Description

Be applied to electronic equipment's protective housing subassembly
Technical Field
The application relates to the technical field of terminal accessories, in particular to a protective shell assembly applied to electronic equipment.
Background
With the increasing popularity of electronic devices, electronic devices have become indispensable social and entertainment tools in people's daily life, and users have higher and higher requirements for electronic devices. Taking an electronic device such as a mobile phone as an example, most users will set a protective case on the mobile phone to prevent the mobile phone from breaking. However, the protective case according to the related art has a single function, and most of the protective cases only have a function of protecting the mobile phone and a certain appearance effect.
SUMMERY OF THE UTILITY MODEL
The embodiment of the application provides a protection casing assembly applied to electronic equipment, wherein, this protection casing assembly includes the protective housing, zoom and external battery, one side of protective housing is equipped with the holding chamber, the holding chamber is used for holding electronic equipment, zoom and external battery set up the opposite side at the protective housing, zoom set to can aim at with electronic equipment's camera when electronic equipment imbeds the holding chamber, so that electronic equipment's camera can gather ambient light through zoom, external battery and zoom electric connection.
The beneficial effect of this application is: the application develops a new method to compound the zoom lens and the protective shell, so that when the protective shell is sleeved on the electronic equipment, the zoom lens is hung externally as the electronic equipment, the camera can obtain a larger focal length, and the photographing effect of the electronic equipment is further improved. Moreover, this application still sets up an external battery on the protective housing, and external battery can provide the electric energy for the zoom to avoid the zoom to obtain the electric energy from electronic equipment, and then guarantee electronic equipment's duration.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the description of the embodiments are briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present application, and it is obvious for those skilled in the art to obtain other drawings based on these drawings without creative efforts.
FIG. 1 is a schematic structural diagram of an embodiment of an electronic device according to the present application;
FIG. 2 is a schematic diagram of a front view of an embodiment of a protective case assembly for an electronic device provided herein;
FIG. 3 is a rear view of the protective housing assembly of FIG. 2;
FIG. 4 is a schematic view of the protective housing assembly of FIG. 2 in a bottom view;
FIG. 5 is a schematic rear view of another embodiment of a protective case assembly applied to an electronic device provided in the present application;
fig. 6 is a schematic structural diagram of a trace of the protective housing assembly of fig. 5.
Detailed Description
The present application will be described in further detail with reference to the following drawings and examples. It is to be noted that the following examples are only illustrative of the present application, and do not limit the scope of the present application. Likewise, the following examples are only some examples and not all examples of the present application, and all other examples obtained by a person of ordinary skill in the art without any inventive work are within the scope of the present application.
Reference in the specification to "an embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the specification. It is explicitly and implicitly understood by one skilled in the art that the embodiments described herein can be combined with other embodiments.
Referring to fig. 1, fig. 1 is a schematic structural diagram of an embodiment of an electronic device according to the present application. It should be noted that: the X, Y, Z directions of the electronic device are illustrated in fig. 1, mainly to illustrate XY, XZ, YZ planes for convenience of description. Accordingly, all directional indicators in this application (such as up, down, left, right, front, and rear … …) are used primarily to explain the relative positional relationship, movement, etc. of the components in a particular position (as shown in FIG. 1); if the particular gesture changes, the directional indication changes accordingly.
In the present application, the electronic device 10 may be a portable device such as a mobile phone, a tablet computer, a notebook computer, and a wearable device. In this embodiment, the electronic device 10 is taken as a mobile phone for exemplary explanation.
As shown in fig. 1, the electronic device 100 may include a display module 101, a middle frame 102, and a rear cover 103. The display module 101 and the rear cover plate 103 are respectively located on two opposite sides of the middle frame 102, and can be fixedly connected with the middle frame 102 through one or a combination of assembling modes such as glue joint, clamping joint and welding, so that a basic structure that the display module 101 and the rear cover plate 103 clamp the middle frame 12 together is formed after the three are assembled. Further, a cavity with a certain volume may be formed between the display module 101 and the rear cover plate 103, and the cavity may be used to dispose the camera 104 and other structural components (not shown in fig. 1), such as a battery, a motherboard, a fingerprint module, and an antenna module, so that the electronic device 100 can implement corresponding functions. For example: the above-mentioned structural members are fixed on the middle frame 102 to keep relatively fixed, so as to assemble a complete electronic device 100. The display module 101, the camera 104 and other structures can be respectively electrically connected to the battery, the main board and the like through a Flexible Printed Circuit (FPC), so that they can be supplied with electric energy from the battery, and can execute corresponding instructions under the control of the main board.
Further, the bottom of the electronic device 100 (i.e. the end away from the camera 104) is generally provided with a USB socket 105, an earphone socket 106, an electroacoustic transducer 107 (specifically, a speaker and/or a microphone), and other structural members. These structures not only need with electric connection such as battery, mainboard, still need communicate with external environment to realize corresponding function.
It should be noted that: since the display module 101 and the rear cover plate 103 are located on two opposite sides of the middle frame 102, most of the display module 101 is not visible under the viewing angle shown in fig. 1. Further, the specific position of the camera 104 on the electronic device 100 may depend on the actual product structure, and a light hole (not labeled in fig. 1) may also be provided at a position of the rear cover plate 103 corresponding to the camera 104, so that the camera 104 collects ambient light. Here, the present application exemplifies that the camera 104 is located at the corner of the electronic apparatus 100.
Referring to fig. 2 and 4 together, fig. 2 is a front view structural schematic diagram of an embodiment of a protective shell assembly applied to an electronic device, provided by the present application, fig. 3 is a rear view structural schematic diagram of the protective shell assembly in fig. 2, and fig. 4 is a bottom view structural schematic diagram of the protective shell assembly in fig. 2. It should be noted that: the direction indicated by an arrow X in fig. 2 may be regarded as the long axis direction of the shield shell assembly, the direction indicated by an arrow Y in fig. 2 may be regarded as the short axis direction of the shield shell assembly, and the direction indicated by an arrow Z in fig. 2 may be regarded as the thickness direction of the shield shell assembly. Wherein the size of the protective shell in the major axis direction is larger than the size of the protective shell in the minor axis direction. Further, the protective case assembly shown in fig. 2 can be sleeved on the electronic device shown in fig. 1.
As shown in fig. 2 to 4, the protective case assembly 10 may include a protective case 11, a zoom lens 12, and an external battery 13. The protective shell 11 may be used to protect the electronic device 100, so as to prevent the electronic device 100 from being damaged or broken during daily use. Of course, the protective shell 11 may also have a certain appearance structure, shape, pattern, etc. so as to enrich and expand the appearance effect of the electronic device 100, and further show the personalization of the user. The zoom lens 12 may be mainly used in cooperation with the camera 104 of the electronic device 100, so as to enrich and widen the photographing effect of the electronic device 100. The external battery 13 may be mainly used for supplying power to the zoom lens 12 so as to facilitate the zoom lens 12 to change focal lengths. At this time, the external battery 13 may be electrically connected to the zoom lens 12. Of course, the external battery 13 may also be used as a backup power source for the electronic device 100 to charge the electronic device 100 when the power of the electronic device 100 is insufficient, so as to improve the cruising ability of the electronic device 100.
As shown in fig. 2, one side of the protective casing 11 is provided with an accommodating cavity 111, and the accommodating cavity 111 is used for accommodating the electronic device 100. At this time, the size, shape, and other structural parameters of the accommodating cavity 111 can be designed reasonably according to the external structure of the electronic device 100. For example: the electronic apparatus 100 has a screen size of 6.58, a body size of about 158.2mm in the X direction, a size of about 72.6mm in the Y direction, and a size of about 9.0mm in the Z direction; accordingly, the dimensions of the accommodating cavity 111 in the three directions of X, Y, Z may correspond to the dimensions of the electronic device 100, respectively. Further, the protective case 11 may be made of leather, wood, plastic, etc. to provide various options for users. In this embodiment, the protective shell 11 is taken as a plastic part for exemplary illustration.
Illustratively, as shown in fig. 2, the protective case 11 may include a bottom portion 112 and a circumferential portion 113. One end of the circumferential portion 113 is integrally connected to the bottom portion 112 to form an accommodating chamber 111. Further, the other end of the circumferential portion 113 away from the bottom portion 112 is open, so that the protective case assembly 10 is sleeved on the electronic device 100. In addition, when the protective cover assembly 10 is disposed on the electronic device 100, the display module 11 can be exposed, so that a user can perform a corresponding touch operation on the electronic device 100.
As shown in fig. 4, the circumferential portion 113 may be provided with a first through hole 114, a second through hole 115 and a third through hole 116, through which the receiving cavity 111 can be communicated with the external environment. The arrangement is such that when the protective case assembly 10 is fitted on the electronic device 100, the USB socket 105 can communicate with the external environment through the first through hole 114, so as to facilitate the user to plug and unplug the USB plug; the earphone socket 106 can communicate with the external environment through the second through hole 115, so that a user can insert and pull the earphone conveniently; the electroacoustic transducer device 107 (for example, a speaker) can communicate with the external environment through the third through hole 116, so as to facilitate the electronic apparatus 100 to emit the external sound. Furthermore, the positions of the circumferential portion 113 corresponding to the first through hole 114 and the second through hole 115 may be respectively provided with a dust plug (not labeled in fig. 4), and the dust plug may plug the first through hole 114 and the second through hole 115 when the user does not use the USB socket 105 or the earphone socket 106, thereby playing a role of dust prevention.
Further, since the external shape of the electronic device 100 is substantially cubic, the peripheral portion 113 is substantially rectangular, that is, the peripheral portion 113 may have four sides and four corners. At this time, as shown in fig. 2, the circumferential portion 113 may further have a plurality of notches 117 to facilitate the sheathing and disassembling between the protection casing assembly 10 and the electronic device 100. The notches 117 may be distributed on four edges of the peripheral portion 113, instead of four corners, so that the protective shell assembly 10 can be conveniently mounted on the electronic device 100 and dismounted from the electronic device 100. In addition, when the protective cover assembly 10 is disposed on the electronic device 100, the power key, the volume key and other structural components of the electronic device 100 may be exposed through the notch 117, so as to facilitate the user to perform a touch operation. Of course, the position of the peripheral portion 113 corresponding to the power key, the volume key and other structural members of the electronic device 100 may be further provided with a protrusion, which may also meet the pressing requirement of the power key, the volume key and other structural members of the electronic device 100.
As shown in fig. 3, a zoom lens 12, an external battery 13, and other structural components may be disposed on the other side of the bottom portion 112 away from the peripheral portion 113. In other words, the zoom lens 12, the external battery 13, and other structural components are disposed on the other side of the protective casing 11 relative to the accommodating cavity 111. Further, the zoom lens 12 is disposed to be capable of aligning with the camera 104 of the electronic apparatus 100 when the electronic apparatus 100 is embedded in the accommodating cavity 111, so that the camera 104 of the electronic apparatus 100 can collect the ambient light through the zoom lens 12. In other words, the relative position of the zoom lens 12 on the protective case 11 can be adaptively adjusted according to the relative position of the camera 104 on the electronic apparatus 100. For example: when the camera 104 is located at a corner position of the electronic apparatus 100, the zoom lens 12 is also located at a corner position of the protective case 11. The zoom lens 12 may be specifically aligned with the main camera of the electronic device 100.
It should be noted that: the alignment described herein may mean that when the protective cover assembly 10 is sleeved on the electronic device 100, the optical axis of the zoom lens 12 coincides with the optical axis of the camera 104. Further, the lenses can be generally divided into a standard focal length lens (the focal length is generally 40-60mm), a wide-angle focal length lens (the focal length is generally 13-38mm), a telephoto focal length lens (the focal length is generally 85-300mm), and the like according to the focal lengths. Wherein the larger the focal length, the larger the size of the lens accordingly. Based on this, the zoom lens 12 described herein can adjust the focal length thereof in a telescopic manner, so as to have an optical zoom effect with multiple focal lengths. In order to satisfy the design concept of light and thin, the size of the electronic device 100 in the thickness direction is not likely to be too large, and is generally less than 10 mm. In contrast, the design scheme adopted by the related art is a periscopic camera, so that the camera can obtain a larger focal length. However, the periscopic camera is often disposed in a medium-and high-end model of the electronic apparatus 100 because of its high cost. Unlike the related art: the application develops a new method to combine the zoom lens 12 and the protection shell 11, so that when the protection shell 11 is sleeved on the electronic device 100, the zoom lens 12 is hung externally to the electronic device 100, so that the camera 104 can obtain a larger focal length, and the photographing effect of the electronic device 100 is improved. Moreover, this application still sets up an external battery 13 on protective housing 11, and external battery 13 can provide the electric energy for zoom lens 12 to avoid zoom lens 12 to obtain the electric energy from electronic equipment 100, and then guarantee electronic equipment 100's duration.
Further, the zoom lens 12 is detachably connected to the protective housing 11, for example, the zoom lens 12 and the protective housing 11 are clamped or magnetically attracted, and when the zoom lens 12 is in a detached state, the camera 104 of the electronic device 100 can be exposed through the protective housing 11. In other words, when the zoom lens 12 is in the assembled state, the camera 104 can image through the zoom lens 12; while the zoom lens 12 is in the detached state, the camera 104 itself can also form an image. With such a configuration, the protective case 11 can be always sleeved on the electronic device 100 to protect the electronic device 100, and the camera 104 can also be always used normally without being affected; the zoom lens 12 may be stored separately when not in use, so as to protect the zoom lens 12. Illustratively, as shown in fig. 3, an elastic probe 121, such as pogo-PIN, is disposed on the zoom lens 12, so that the zoom lens 12 is electrically connected to the external battery 13 via the elastic probe 121. Of course, the zoom lens 12 and the external battery 13 are also provided with corresponding wiring (not shown in fig. 3). Further, as mentioned above, since the cost of the zoom lens 12 is generally high, in addition to being separately stored, a protection cover 122 may be further provided to prevent the zoom lens 12 from being scratched.
Illustratively, the zoom lens 12 is configured to be communicatively coupled to the electronic device 100 via a USB socket 105 or a headphone socket 106 of the electronic device 100. For example: the zoom lens 12 is provided with a plug end, which can be plugged into the USB socket 105 or the earphone socket 106 when a user takes a picture, or can be pulled out when the user does not take a picture. So set up to when the protective case assembly 10 is sleeved on the electronic device 100, the electronic device 100 can control the zoom lens 12 to zoom, and then meet the photographing requirement of the user.
Referring to fig. 5 and fig. 6 together, fig. 5 is a schematic rear view structural diagram of another embodiment of a protective shell assembly applied to an electronic device provided in the present application, and fig. 6 is a schematic structural diagram of a wire of the protective shell assembly in fig. 5.
The main differences from the above described embodiment are: in this embodiment, as shown in fig. 5, the protective shell assembly 10 may further include an external small plate 14, and the external small plate 14 may be embedded in the protective shell 11. The external small board 14 may be electrically connected to the external battery 13 and configured to be communicatively connected to the electronic device 100. The external platelet 14 may establish a wireless communication connection with the electronic device 100 through bluetooth, NFC, or other manners. So set up to when the protective case assembly 10 is sleeved on the electronic device 100, the electronic device 100 can control the zoom lens 12 to zoom, and then meet the photographing requirement of the user.
Illustratively, as shown in fig. 5, the external small plate 14 may be disposed at an end of the external battery 13 close to the zoom lens 12, so as to shorten the routing distance between the three.
As shown in fig. 5, the protective shell assembly 10 has a major axis direction (direction indicated by arrow X in fig. 5) and a minor axis direction (direction indicated by arrow Y in fig. 5), and the dimension of the protective shell 11 in the major axis direction is larger than the dimension of the protective shell 11 in the minor axis direction. Further, the protective case assembly 10 may further include an external flash lamp 15, and the external flash lamp 15 may be embedded in the protective case 11. The external flash lamp 15 and the zoom lens 12 may be located on the same side of the external battery 13 in the long axis direction, and may be located as close as possible to the zoom lens 12, so that the routing distance between the external flash lamp 15 and the external small plate 14 may be shortened, and the external flash lamp 15 may be used for light supplement. Further, the external flash lamp 15 is electrically connected to the external battery 13 to obtain the power supply of the external battery 13. Wherein, the external flash lamp 15 may be a hernia flash lamp. At this time, the external flash 15 cooperates with the zoom lens 12, so as to enrich and expand the photographing effect and application scene of the electronic device 100. Further, the external flash lamp 15 is detachably connected to the protective case 11, so that the external flash lamp 15 can be separately stored when not used, and the external flash lamp 15 can be protected. Illustratively, an elastic probe such as pogo-PIN is disposed on the external flash lamp 15, so that the external flash lamp 15 is electrically connected with the external battery 13 through the elastic probe.
In some embodiments, the protective case assembly 10 may further include a first external speaker 16, and the first external speaker 16 may be embedded in the protective case 11. The first external speaker 16 and the zoom lens 12 may be located on the same side of the external battery 13 in the long axis direction, so that the routing distance between the first external speaker 16 and the external small plate 14 may be shortened. Further, the first external speaker 16 is electrically connected to the external battery 13 to obtain the power supply of the external battery 13. At this time, as described in conjunction with fig. 1 to 4, the first external speaker 16 and the electroacoustic transducer device 107 (taking a speaker as an example) may be located at two ends of the electronic device 100, and the two may cooperate to form a stereo sound, thereby improving the external sound effect of the electronic device 100.
In other embodiments, the protective case assembly 10 may further include a second external speaker 17, and the second external speaker 17 may be embedded in the protective case 11. The second external speaker 17 and the first external speaker 16 may be located on opposite sides of the external battery 13 in the long axis direction. Further, the second external speaker 17 is electrically connected to the external battery 13 to obtain the power supply of the external battery 13. With such an arrangement, the second external speaker 17 and the first external speaker 16 cooperate with each other to form a stereo sound, which can also improve the external sound effect of the electronic device 100.
Further, based on the above description, the external battery 13 may also be used as a backup power source for the electronic device 100 to charge the electronic device 100 when the power of the electronic device 100 is insufficient, so as to improve the cruising ability of the electronic device 100. In this regard, the external battery 13 is configured to be electrically connected to the electronic apparatus 100 via the USB socket 105 of the electronic apparatus 100. As shown in fig. 5, the protective shell assembly 10 may further include a charging switch 18, and the charging switch 18 is used to control the connection and disconnection between the external battery 13 and the electronic device 100. The charging switch 18 and the zoom lens 12 may be respectively located on two opposite sides of the external battery 13 in the long axis direction, so that the user can conveniently perform touch operation, and each electrical device arranged on the protective shell 11 can be balanced. At this time, an indicator light (not shown in fig. 5) may be further disposed on the protective shell 11, and the indicator light may identify the on state of the external battery 13, and may also identify the remaining capacity of the external battery 13.
It should be noted that: the protection shell 11 (specifically, the peripheral portion 113) may further have a socket, such as a USB interface, a Type-C interface, a Lightning interface, etc., through which the external battery 13 may be electrically connected to an external power source, so as to charge when the power is insufficient. Of course, the external battery 13 may also be connected to other electronic devices through the socket to charge the other electronic devices.
Based on the above detailed description, with reference to fig. 6, the zoom lens 12, the external battery 13, the external flash 15, the first external speaker 16, the second external speaker 17, and other structural components may be electrically connected to the external small board 14 through the flexible circuit board. The external small plate 14 may establish a wireless communication connection with the electronic device 100 through bluetooth, NFC, and the like, so as to receive a control instruction sent by the electronic device 100 to structural components such as the zoom lens 12, the external flash lamp 15, the first external speaker 16, the second external speaker 17, and the like, and further facilitate the electronic device 100 to control the structural components. At this time, the external small board 14 may also adjust the power output of the external battery 13 according to the control instruction.
The above description is only a part of the embodiments of the present application, and not intended to limit the scope of the present application, and all equivalent devices or equivalent processes that can be directly or indirectly applied to other related technologies, which are made by using the contents of the present specification and the accompanying drawings, are also included in the scope of the present application.

Claims (10)

1. The utility model provides a be applied to electronic equipment's protective housing subassembly, its characterized in that, the protective housing subassembly includes protective housing, zoom and external battery, one side of protective housing is equipped with the holding chamber, the holding chamber is used for holding electronic equipment, zoom with external battery sets up the opposite side of protective housing, zoom set to can electronic equipment embedding during the holding chamber with electronic equipment's camera is aimed at, so that electronic equipment's camera can warp zoom gathers ambient light, external battery with zoom electric connection.
2. A protective case assembly according to claim 1, wherein the zoom lens is arranged to be communicatively connectable with the electronic device via a USB socket of the electronic device.
3. The protective case assembly of claim 1, further comprising an external platelet electrically connected to the external battery, the external platelet being embedded in the protective case and configured to communicatively couple to the electronic device.
4. The protective case assembly according to claim 3, wherein the protective case assembly has a long axis direction and a short axis direction, the size of the protective case in the long axis direction is larger than the size of the protective case in the short axis direction, the protective case assembly further comprises an external flash lamp, the external flash lamp is embedded in the protective case and located on the same side of the external battery in the long axis direction as the zoom lens, and the external flash lamp is electrically connected with the external battery.
5. The protective case assembly according to claim 4, further comprising a first external speaker embedded in the protective case and located on the same side of the external battery as the zoom lens in the long axis direction, wherein the first external speaker is electrically connected to the external battery.
6. The protective case assembly according to claim 5, further comprising a second external speaker embedded in the protective case and located on opposite sides of the external battery in the long axis direction from the first external speaker, wherein the second external speaker is electrically connected to the external battery.
7. The protective case assembly according to claim 3, wherein the external battery is configured to be electrically connected to the electronic device via a USB socket of the electronic device, and the protective case assembly further comprises a charging switch for controlling on/off between the external battery and the electronic device.
8. The protective case assembly according to any one of claims 1 to 3, wherein the zoom lens is detachably connected to the protective case, and when the zoom lens is in a detached state, the camera of the electronic device can be exposed through the protective case.
9. The protective case assembly according to claim 8, wherein the zoom lens is provided with a resilient probe, such that the zoom lens is electrically connected to the external battery via the resilient probe.
10. The protective shell assembly of claim 1, wherein the protective shell includes a bottom portion and a peripheral portion, one end of the peripheral portion is integrally connected to the bottom portion to enclose the receiving cavity, the other end of the peripheral portion is open, the peripheral portion further has a plurality of notches, and the zoom lens and the external battery are disposed on the other side of the bottom portion away from the peripheral portion.
CN202021557552.XU 2020-07-30 2020-07-30 Be applied to electronic equipment's protective housing subassembly Active CN212752344U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021557552.XU CN212752344U (en) 2020-07-30 2020-07-30 Be applied to electronic equipment's protective housing subassembly

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021557552.XU CN212752344U (en) 2020-07-30 2020-07-30 Be applied to electronic equipment's protective housing subassembly

Publications (1)

Publication Number Publication Date
CN212752344U true CN212752344U (en) 2021-03-19

Family

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Application Number Title Priority Date Filing Date
CN202021557552.XU Active CN212752344U (en) 2020-07-30 2020-07-30 Be applied to electronic equipment's protective housing subassembly

Country Status (1)

Country Link
CN (1) CN212752344U (en)

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