Peripheral device of electronic equipment
By integrating a heat dissipation unit and a rotating unit into an electronic device peripheral, the problems of redundant connections and space occupation during long-term shooting of electronic devices are solved, achieving integrated heat dissipation and lighting, and improving user portability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- DONGGUAN LEIZUN ELECTRONIC TECH CO LTD
- Filing Date
- 2025-04-30
- Publication Date
- 2026-05-01
AI Technical Summary
When electronic devices are used for long-term shooting, they need to be connected to multiple auxiliary devices at the same time, resulting in redundant connections, large space occupation, and inconvenience in moving them.
An electronic device peripheral device is designed, including a heat dissipation body and a rotating body. The heat dissipation body is connected to the electronic device for heat dissipation, and the rotating body is equipped with a supplementary light. The rotating body can rotate between a first position and a second position, integrating heat dissipation and lighting functions, and reducing the number of external devices.
It integrates heat dissipation and lighting for electronic devices, reducing the number of external devices required and allowing users to move around easily during long shooting sessions.
Smart Images

Figure CN224191972U_ABST
Abstract
Description
peripheral devices for electronic devices Technical Field
[0001] This utility model relates to the field of auxiliary devices for electronic devices, and in particular to a peripheral device for electronic devices. Background Technology
[0002] The portability of smartphones, tablets, and other electronic devices has led to their increasing use in filming. When using smartphones for live streaming or filming, users often need to add auxiliary equipment such as lighting and recording devices to ensure image quality. Furthermore, with the rapid advancement of electronic devices, their power consumption and heat generation are increasing. Excessive heat can lead to performance degradation and even spontaneous combustion, necessitating the addition of cooling systems. In actual filming, electronic devices often require multiple external devices for assistance, which takes up space and is inconvenient to move, significantly reducing their usability. Summary of the Invention
[0003] The technical problem to be solved by this utility model is that in related technologies, electronic devices need to be connected to multiple auxiliary devices at the same time when shooting for a long time, which is redundant, occupies a lot of space, and is not convenient to move.
[0004] To solve the above-mentioned technical problems, this utility model provides an electronic device peripheral device, which is detachably installed on the electronic device, and the electronic device peripheral device includes:
[0005] A heat dissipation body is used to connect to the electronic device. The heat dissipation body has a first side and a second side facing each other. The second side is attached to the electronic device and conducts the heat of the electronic device to the heat dissipation body.
[0006] A rotating body, equipped with a supplementary light, is located near the first surface and rotatably connected to the heat dissipation body, allowing the rotating body to rotate between a first position and a second position.
[0007] As the rotating body rotates from the first position to the second position, at least a portion of the rotating body moves away from the heat dissipation body.
[0008] According to one embodiment of the present invention, when the rotating body is in the second position, the light source orientation of the supplementary light is the same as the orientation of the second surface;
[0009] When the rotating body is in the first position, the rotating body is close to the first surface, and the light source of the supplementary light is oriented in the same direction as the first surface.
[0010] According to one embodiment of the present invention, the heat dissipation body includes a housing and a heat dissipation component; the housing has an installation space inside, the heat dissipation component is disposed in the installation space, the housing has a first air vent communicating with the installation space, the first air vent is located on the first surface, and the rotating body has a third air vent communicating with the first air vent.
[0011] According to one embodiment of the present invention, the supplementary light is ring-shaped and arranged around the third air vent.
[0012] According to one embodiment of the present invention, the heat dissipation assembly includes a fan, the rotation axis of the fan is perpendicular to the first surface, and a second air vent is provided on the peripheral wall of the housing. When the fan rotates, the first air vent is located upstream of the second air vent in the gas flow path.
[0013] According to one embodiment of the present invention, the heat dissipation body is provided with a charging port, and in the circumferential direction of the heat dissipation body, the distance angle between the position where the rotating body and the heat dissipation body are rotatably connected and the charging port is A, where A≥90°.
[0014] According to one embodiment of the present invention, one of the heat dissipation body and the rotating body is provided with a pivot seat, and the other of the heat dissipation body and the rotating body is provided with a pivot portion. The pivot portion is embedded in the pivot seat, and the central axis of the pivot portion is parallel to the first surface.
[0015] According to one embodiment of the present invention, both the rotating shaft and the rotating shaft seat are provided with wiring space, the wiring space is connected to the interior of the heat dissipation body, and the wire of the supplementary light is provided in the wiring space.
[0016] According to one embodiment of the present invention, the rotating body is provided with a mounting groove, and the supplementary light is disposed in the mounting groove. When the rotating body is in the first position, the opening of the mounting groove is away from the heat dissipation body.
[0017] According to one embodiment of the present invention, the heat dissipation body is provided with a mounting hole, the rotating body is provided with a plug-in post, the plug-in post is rotatably inserted into the mounting hole, and the central axis of the plug-in post is parallel to the central axis of the heat dissipation body.
[0018] According to one embodiment of the present invention, the heat dissipation body includes a magnetic suction component, which is disposed within the installation space and close to the second surface.
[0019] According to one embodiment of the present invention, the peripheral wall of the heat dissipation body extends toward the side where the first surface is located and forms a protrusion protruding from the first surface. The protrusion and the first surface form a groove, and the rotating body is housed in the groove.
[0020] This utility model discloses an electronic device peripheral device. A heat dissipation body is connected to a mobile phone to dissipate heat. A rotating body is connected to the heat dissipation body, and a fill light is mounted on the rotating body. The rotating body rotates between a first position and a second position to adjust the position of the fill light, providing multi-angle illumination for the user. This electronic device peripheral device integrates heat dissipation and illumination functions, simultaneously cooling the mobile phone and providing illumination to the user, reducing the number of external devices required and allowing for convenient movement during extended shooting sessions. Attached Figure Description
[0021] Figure 1 is one of the perspective views of the electronic device peripheral device provided in the embodiment of this utility model.
[0022] Figure 2 is a second perspective view of the electronic device peripheral device provided in the embodiment of this utility model.
[0023] Figure 3 is a third perspective view of the electronic device peripheral device provided in the embodiment of this utility model.
[0024] Figure 4 is one of the cross-sectional views of the electronic device peripheral device provided in the embodiment of this utility model.
[0025] Figure 5 is a second cross-sectional view of the electronic device peripheral device provided in the embodiment of this utility model.
[0026] Figure 6 is an exploded view of the electronic device peripheral device provided in an embodiment of this utility model.
[0027] Figure 7 is a third cross-sectional view of the electronic device peripheral device provided in the embodiment of this utility model.
[0028] Figure 8 is a fourth perspective view of the electronic device peripheral device provided in the embodiment of this utility model.
[0029] Figure 9 is the fifth perspective view of the electronic device peripheral device provided in the embodiment of this utility model.
[0030] Figure 10 is a perspective view of the electronic device peripheral device provided in the embodiment of this utility model.
[0031] Figure label:
[0032] 100. Heat dissipation unit;
[0033] 110. Housing; 1101. Peripheral wall; 1102. Charging port; 1103. Protrusion; 111. Installation space; 112. First surface; 1121. First air vent; 1122. First rib; 113. Second surface; 114. Second air vent; 115. Rotary shaft seat; 116. First switch; 117. Magnetic attachment; 118. Mounting hole; 119. Second switch;
[0034] 120. Rotating main body; 121. Fill light; 122. Third air vent; 123. Rotating shaft; 124. Cable routing space; 125. Mounting slot; 126. Second rib; 127. Lampshade; 128. Light-emitting element; 129. Connecting post;
[0035] 130. Heat dissipation component; 131. Fan; 132. Heat dissipation fins; 140. Telescopic component. Detailed Implementation
[0036] The specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate this utility model, but are not intended to limit the scope of this utility model.
[0037] In the description of the embodiments of this utility model, the terms "center," "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing the embodiments of this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the embodiments of this utility model. In addition, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0038] In the description of the embodiments of this utility model, unless otherwise expressly specified and limited, the terms "connected" and "linked" should be interpreted broadly. Those skilled in the art can understand the specific meaning of the above terms in the embodiments of this utility model according to the specific circumstances.
[0039] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., refer to specific features, structures, materials, or characteristics described in connection with that embodiment or example, which are included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.
[0040] As shown in Figures 1 and 2, an embodiment of this utility model provides an electronic device peripheral device that is detachably mounted on the back of an electronic device, such as a mobile phone or tablet. The electronic device peripheral device includes a heat dissipation body 100 and a rotating body 120.
[0041] Specifically, the heat dissipation body 100 is used to connect to an electronic device. The heat dissipation body 100 has a first surface 112 and a second surface 113 facing each other, and a peripheral wall 1101 connected to both the first surface 112 and the second surface 113. The second surface 113 is attached to the back of the electronic device to conduct heat from the electronic device to the heat dissipation body 100, thereby dissipating heat from the electronic device. In some embodiments, the heat dissipation body 100 includes a housing 110 and a heat dissipation assembly 130. The first surface 112 and the second surface 113 are located on the housing 110. The housing 110 has an internal mounting space 111, and the housing 110 has a first vent 1121 and a second vent 114 communicating with the mounting space 111 and the external space of the housing 110. The heat dissipation assembly 130 is disposed on the housing 110 for dissipating heat from the electronic device. Specifically, the heat dissipation assembly 130 can be disposed within the mounting space. The heat dissipation assembly 130 can be a water-cooled heat dissipation structure, a semiconductor cooling structure, or an air cooling structure, etc. When the heat dissipation component 130 is an air heat dissipation structure, the heat dissipation component 130 can drive air to flow inside and outside the installation space 111 through the first air vent 1121 and the second air vent 114 to dissipate heat from the electronic equipment.
[0042] In some embodiments, the heat dissipation body 100 can be fixed to the electronic device by clamps, and the second surface 113 is in contact with the back panel of the electronic device; alternatively, the heat dissipation body 100 is provided with a magnetic suction member 117, which is located in the mounting space 111 and close to the second surface 113, and the heat dissipation body 100 and the electronic device are attracted and fixed by the magnetic suction member 117. As shown in Figures 1 and 2, the first air vent 1121 is located on the first surface 112, and the second air vent 114 is located on the peripheral wall 1101. In some embodiments, there are at least two second air vents 114, which are spaced apart along the circumferential direction of the housing 110 to make the airflow smoother.
[0043] The rotating body 120 is positioned close to the first surface 112 and is rotatably connected to the heat dissipation body 100. The rotating body 120 is rotatable between a first position and a second position. A supplementary light 121 is mounted on the rotating body 120 to provide illumination for the user, reducing the number of external auxiliary devices required for the electronic device. Specifically, a mounting groove 125 is provided on one side of the rotating body 120. The supplementary light 121 includes a lampshade 127 and a light-emitting element 128. The light-emitting element 128 is disposed within the mounting groove 125, and the lampshade 127 covers the mounting groove 125. A first switch 116 is provided on the heat dissipation body 100, electrically connected to the light-emitting element 128, for controlling the supplementary light 121 to turn on or off. During the rotation of the rotating body 120 from the first position to the second position, at least a portion of the rotating body 120 moves away from the heat dissipation body 100 to adjust the relative position of the supplementary light 121 and the heat dissipation body 100, thereby adjusting the relative position of the supplementary light 121 and the electronic device to meet the user's lighting needs. It should be noted that the relationship between the state of the fill light 121 and the position of the rotating body 120 is not limited here. That is, when the rotating body 120 is in the first position, the fill light 121 can be in the on or off state; when the rotating body 120 is in the second position, the fill light 121 can be in the on or off state, and the user can adjust it as needed.
[0044] According to an embodiment of this utility model, the electronic device peripheral device is connected to the electronic device via a heat dissipation body 100 to dissipate heat from the electronic device. A rotating body 120 is connected to the heat dissipation body 100, and a fill light 121 is provided on the rotating body 120. The rotating body 120 rotates between a first position and a second position to adjust the position of the fill light 121, providing multi-angle illumination for the user. This electronic device peripheral device integrates heat dissipation and illumination functions, simultaneously dissipating heat from the electronic device and providing illumination for the user, reducing the number of external devices the user needs to connect. It also allows for convenient movement by the user during extended shooting sessions.
[0045] In some embodiments, when the rotating body 120 is in the second position, the light source of the fill light 121 faces the side where the electronic device is located, and the fill light 121 is in the on state and can provide illumination to the front of the electronic device. When the rotating body 120 is in the first position, the rotating body 120 is opposite to the first surface 112, and the rotating body 120 can be stored on the housing 110 to save space and facilitate user use and carrying. When the rotating body 120 is in the first position, the light source of the fill light 121 can face the first surface 112 or be away from the first surface 112.
[0046] For example, as shown in Figure 6, according to some embodiments of this utility model, the heat dissipation body 100 is provided with a mounting hole 118, and the rotating body 120 is provided with a plug-in post 129. The plug-in post 129 is rotatably inserted into the mounting hole 118, and the central axis of the plug-in post 129 is parallel to the central axis of the heat dissipation body 100. The mounting hole 118 is provided on the first surface 112 of the housing 110. The rotating body 120 is provided with a plug-in post 129 on the side facing the first surface 112. The plug-in post 129 is rotatably inserted into the mounting hole 118. The central axis of the plug-in post 129 is perpendicular to the central axis of the housing 110 and perpendicular to the first surface 112. The rotating body 120 can swing relative to the housing 110. As shown in Figures 9 and 10, arrow a in the figures indicates the direction of swing of the rotating body 120 relative to the heat dissipation body 100. In Figure 9, the rotating body 120 is located in the second position. During use, the user can swing the rotating body 120 between the second position and the first position to adjust the angle of the light source, making it more flexible to use.
[0047] As shown in Figure 8, according to some embodiments of this utility model, when the rotating body 120 is in the second position, the light source orientation of the fill light 121 is the same as the orientation of the second surface 113; as shown in Figures 1 and 5, when the rotating body 120 is in the first position, the rotating body 120 is close to the first surface 112, and the light source orientation of the fill light 121 is the same as the orientation of the first surface 112. That is, when the rotating body 120 is in the second position, the light source faces the front of the electronic device; when the rotating body 120 is in the first position, the light source faces the back of the electronic device. Thus, whether the rotating body 120 is in the first or second position, the fill light 121 can provide illumination. The fill light 121 can provide supplementary lighting for the user's shooting process, can be used as a general illumination, or can also serve as...
[0048] It should be noted that when the rotating body 120 is in the first position, the rotating body 120 can be in contact with the first surface 112; or there can be a certain gap between the rotating body 120 and the first surface 112.
[0049] In some embodiments, the heat dissipation assembly 130 includes a fan 131 and heat dissipation fins 132. The fan 131 is disposed within the mounting space 111, and the rotation axis of the fan 131 is perpendicular to the first surface 112 and the second surface 113. The second air outlet 114 is located on the peripheral wall 1101 of the housing 110. During the operation of the heat dissipation assembly 130, within the housing 110, in the gas flow path, the first air outlet 1121 is located upstream of the second air outlet 114. When the fan 131 rotates, gas enters the mounting space 111 from the first air outlet 1121 and flows out from the second air outlet 114. This prevents hot air with increased temperature after heat exchange from flowing out of the first air outlet 1121 and impacting the rotating body 120, causing the temperature of the rotating body 120 to rise, thereby protecting the rotating body 120 and the supplementary light 121.
[0050] Heat dissipation fins 132 are disposed within the mounting space 111 and connected to the side of the mounting space 111 near the second surface 113. As shown in Figure 5, a fan 131 is disposed at the first air vent 1121, and the shaft of the fan 131 passes through the first air vent 1121. The heat dissipation fins 132 are located between the fan 131 and the peripheral wall 1101 of the housing 110, with multiple heat dissipation fins 132 arranged at intervals around the fan 131. A second switch 119 is provided on the housing 110, which is electrically connected to the fan 131 to control the fan 131 to turn on or off. The second surface 113 of the housing 110 is in contact with the electronic device for heat conduction. The rotation of the fan 131 drives air to flow between the mounting space 111 and the outside of the housing 110 through the first air vent 1121 and the second air vent 114. The air contacts the heat dissipation fins 132 within the mounting space 111 for heat exchange, thereby reducing the temperature of the electronic device. The heat dissipation fins 132 are connected to the side of the installation space 111 adjacent to the second surface 113, which facilitates the heat conduction of the electronic device to the heat dissipation fins 132 and improves the heat dissipation speed of the electronic device.
[0051] Referring to Figures 1 and 4, according to some embodiments of this utility model, the rotating body 120 is provided with a mounting groove 125, and a supplementary light 121 is disposed in the mounting groove 125. The light generated by the supplementary light 121 is emitted through the opening of the mounting groove 125. When the rotating body 120 is in the first position, the opening of the mounting groove 125 is away from the housing 110. For ease of description, the side of the rotating body 120 opposite to the first surface 112 when it is in the first position is taken as the inner side, and the side away from the housing 110 is taken as the outer side. The opening of the mounting groove 125 is located on the outer side. When the rotating body 120 is in the second position, a 180° angle is formed between the first surface 112 and the inner side of the rotating body 120. The outer side faces the side where the electronic device is located, and the orthographic projection of the supplementary light 121 on the plane where the electronic device is located does not fall on the electronic device. Therefore, when the rotating body 120 is in the second position, the electronic device and the housing 110 do not block the supplementary light 121, and the light from the supplementary light 121 can shine on the user. When the rotating body 120 is rotated to the first position for storage, the light generated by the supplementary light 121 is emitted from the side of the rotating body 120 away from the housing 110. The supplementary light 121 can continue to provide illumination for the user. At this time, the light is directed away from the electronic device. It can provide stable illumination for the user when using the rear camera function of the electronic device, or provide illumination for the user in dark environments. The rotating body 120 is provided with a third air vent 122, which is connected to the first air vent 1121 to allow airflow.
[0052] As shown in Figure 3, according to some embodiments of this utility model, the third air vent 122 is located in the middle of the rotating body 120, and the supplementary light 121 is ring-shaped and arranged around the third air vent 122, thereby maximizing the illumination range of the supplementary light 121 and allowing light to illuminate the object from multiple directions, thus improving the lighting effect. In some embodiments, the first air vent 1121 is provided with a plurality of spaced first ribs 1122, and the first ribs 1122 are connected to the inner wall of the first air vent 1121; the third air vent 122 is provided with a plurality of spaced second ribs 126 to divide the third air vent 122 into multiple parts, and the second ribs 126 are connected to the inner wall of the third air vent 122. In this way, on the one hand, the structural strength of the housing 110 and the rotating body 120 can be improved, and on the other hand, it can play a shielding role, reducing the probability of debris entering the installation space 111 through the third air vent 122 and the first air vent 1121, so as to protect the fan 131 and the heat dissipation fins 132. The arrangement and shape of the second rib 126 within the third air vent 122 are consistent with the arrangement and shape of the first rib 1122 within the first air vent 1121. That is, the orthographic projection of the second rib 126 onto the first surface 112 both fall on the first rib 1122, thereby reducing the resistance of the third air vent 122 and the second rib 126 to the flowing air. Furthermore, this allows the shapes of the first air vent 1121 and the third air vent 122 to be similar or identical, resulting in minimal changes to the appearance of the electronic device's peripherals after the main body 120 is rotated away from and exposed above the first surface 112, thus providing a better visual experience for the user.
[0053] According to some embodiments of this utility model, the area of the first air vent 1121 is less than or equal to the area of the third air vent 122. Therefore, when the rotating body 120 is in the first position, it can prevent the rotating body 120 from blocking the first air vent 1121, thus avoiding a reduction in airflow and consequently affecting the heat dissipation effect.
[0054] As shown in Figure 2, according to some embodiments of the present invention, one of the heat dissipation body 100 and the rotating body 120 is provided with a pivot seat 115, and the other of the housing 110 and the rotating body 120 is provided with a pivot portion 123. The pivot portion 123 is embedded in the pivot seat 115, and the central axis of the pivot portion 123 is parallel to the first surface 112. Specifically, the pivot seat 115 is provided on the upper housing 110. Both the housing 110 and the rotating body 120 are cylindrical. The pivot seat 115 is located at the connection between the peripheral wall 1101 of the housing 110 and the first surface 112. The pivot portion 123 is located on the side wall of the rotating body 120, and the central axis of the pivot portion 123 is perpendicular to the radial direction of the housing 110. The rotating body 120 is rotatable relative to the housing 110. In some embodiments, when the rotating body 120 is in the second position, the central axis of the rotating body 120 is parallel to the central axis of the housing 110. In some embodiments, a damping element is provided between the pivot seat 115 and the pivot portion 123 to increase the damping between them, allowing the rotating body 120 to rotate to any position between the first and second positions and remain fixed, thus facilitating automatic adjustment and fixing of the position of the rotating body 120 by the user as needed. For example, the damping element can be a rubber component, which wraps around the outer wall of the pivot portion and is sandwiched between the pivot seat 115 and the pivot portion 123.
[0055] As shown in Figure 8, in some embodiments, the heat dissipation body 100 and the rotating body 120 can be connected by a telescopic member 140. One end of the telescopic member 140 is connected to the heat dissipation body 100 and has a reserved section within the installation space 111 of the heat dissipation body 100; the other end of the telescopic member 140 is connected to the rotating body 120, and the rotating body 120 is rotatable relative to the heat dissipation body 100. The telescopic member 140 is flexible and deformable so that the reserved section of the telescopic member 140 extends out of the heat dissipation body. During the rotation of the rotating body 120 from the first position to the second position, the reserved section of the telescopic member 140 substantially extends out of the heat dissipation body 100.
[0056] It should be noted that the reserved section of the telescopic component 140 can also be placed in the internal space of the rotating body 120;
[0057] It should be noted that the heat dissipation body 100 and the rotating body 120 can be electrically connected through the telescopic member 140 to enable the electrical components on the rotating body 120 to operate.
[0058] As shown in Figure 7, according to some embodiments of the present invention, the peripheral wall 1101 of the housing 110 extends toward the side where the first surface 112 is located, forming a protrusion 1103 protruding from the first surface 112. The peripheral wall 1101 and the protrusion 1103 form a recess, in which the rotating body 120 can be housed. Specifically, when the rotating body 120 is in the first position, the side of the rotating body 120 facing the first surface 112 can be embedded in the recess. On the one hand, the overall thickness of the peripheral device of the electronic device can be designed to be smaller. On the other hand, when the rotating body 120 is rotated to the first position, the recess limits the rotating body 120, preventing the rotating body 120 from being deflected relative to the housing 110 by an external force parallel to the first surface 112 during storage or use, thereby protecting the connection between the rotating body 120 and the housing 110. In some embodiments, the rotating body 120 and the sink can be overfitted. When the rotating body 120 is in the first position, the peripheral wall 1101 of the rotating body 120 fits against the protrusion 1103 to fix the rotating body 120. When the user rotates the rotating body 120 into the sink, there is a certain amount of resistance, which makes it easier for the user to judge whether the rotating body 120 has been rotated into place.
[0059] According to some embodiments of this utility model, the heat dissipation body 100 is further provided with a charging port 1102. The charging port 1102 contains a charging socket for connecting to the battery of an electronic device peripheral. The charging port 1102 is used to connect to an external power source to charge the battery of the electronic device peripheral. As shown in Figure 2, in the circumferential direction of the heat dissipation body 100, the angle between the position where the rotating body 120 and the housing 110 are rotatably connected and the charging port 1102 is A, where A ≥ 90°. This avoids interference between the charging cable and the rotating body 120 during use, thus preventing disruption to the user experience. Specifically, the charging port 1102 is located on the peripheral wall 1101 of the housing 110. The angle A between the charging port 1102 and the rotating shaft seat 115 in the circumferential direction of the housing 110 is greater than or equal to 90°. This avoids interference between the rotating body 120 and the charging cable during the rotation of the electronic device peripheral, improving the user experience.
[0060] As shown in Figure 7, according to some embodiments of this utility model, when the rotating body 120 is in the first position, there can be a certain gap between the rotating body 120 and the first surface 112, and the light source of the supplementary light 121 faces the first surface 112. In the example of Figure 7, the lampshade 127 is opaque, while the bottom of the mounting groove 125 is translucent, so the light emitted by the supplementary light 121 faces the first surface 112. When the supplementary light 121 is working, it can illuminate the gap, creating an ambient lighting effect;
[0061] It should be noted that when the rotating body 120 is in the first position, the brightness and color of the light can be different from those in the second position.
[0062] As shown in Figures 4 and 5, according to some embodiments of this application, both the pivot portion 123 and the pivot seat 115 are provided with wiring spaces 124. The wiring spaces 124 are connected to the interior of the heat dissipation body 100. Specifically, the wiring spaces 124 are connected to the mounting groove 125 and the mounting space 111. The wires of the supplementary light 121 are located in the wiring spaces 124 to store and protect the wires. Specifically, the pivot seat 115 is provided with a through hole that communicates with the mounting space. The wires connected to the first switch 116 pass through this through hole into the wiring spaces 124. The pivot portion 123 is provided with a through hole that communicates with the mounting groove 125. The wires in the wiring spaces 124 pass through this through hole into the mounting groove 125 to connect with the PCB (Printed Circuit Board) on the supplementary light 121.
[0063] In summary, this utility model embodiment provides an electronic device peripheral device, which has at least the following advantages: the electronic device peripheral device can simultaneously provide users with heat dissipation and lighting functions, reducing the number of external devices connected to the electronic device, and allowing users to move easily during long-term shooting. Furthermore, the rotating body 120 is rotatable between a first position and a second position. In the first position, the rotating body 120 is stacked with the housing 110, reducing the size of the electronic device peripheral device and making it easy to carry.
[0064] Finally, it should be noted that the above embodiments are only used to illustrate this utility model and are not intended to limit it. It should be pointed out that those skilled in the art can make several improvements and substitutions without departing from the technical principles of this utility model, and these improvements and substitutions should also be considered within the protection scope of this utility model.
Claims
1. A peripheral device for electronic devices, characterized in that, The peripheral device of the electronic device is detachably installed on the electronic device. The peripheral device includes: a heat dissipation body (100) for connecting to the electronic device, the heat dissipation body (100) having a first surface (112) and a second surface (113) opposite to each other, the second surface (113) being in contact with the electronic device and conducting the heat of the electronic device to the heat dissipation body (100); a rotating body (120) having a supplementary light (121) on it, the rotating body (120) being close to the first surface and rotatably connected to the heat dissipation body (100) so that the rotating body (120) can rotate between a first position and a second position, and during the rotation of the rotating body (120) from the first position to the second position, at least a portion of the rotating body (120) moves away from the heat dissipation body (100).
2. The electronic device peripheral device according to claim 1, characterized in that, When the rotating body (120) is in the second position, the light source orientation of the fill light (121) is the same as the orientation of the second surface (113); when the rotating body (120) is in the first position, the rotating body (120) is close to the first surface (112), and the light source orientation of the fill light (121) is the same as the orientation of the first surface (112).
3. The electronic device peripheral device according to claim 1, characterized in that, The heat dissipation body (100) includes a housing (110) and a heat dissipation component (130); the housing (110) has an installation space (111) inside, the heat dissipation component (130) is disposed in the installation space (111), the housing (110) has a first air vent (1121) communicating with the installation space, the first air vent (1121) is located on the first surface (112), and the rotating body (120) has a third air vent (122) communicating with the first air vent (1121).
4. The electronic device peripheral device according to claim 3, characterized in that, The supplementary light (121) is in a ring shape and is arranged around the third air vent (122).
5. The electronic device peripheral device according to claim 3, characterized in that, The heat dissipation assembly (130) includes a fan (131), the rotation axis of the fan (131) is perpendicular to the first surface (112), and a second air vent (114) is provided on the peripheral wall (1101) of the housing (110). When the fan (131) rotates, the first air vent (1121) is located upstream of the second air vent (114) in the gas flow path.
6. The electronic device peripheral device according to claim 1 or 2, characterized in that, The heat dissipation body (100) is provided with a charging port (1102). In the circumferential direction of the heat dissipation body (100), the distance angle between the position where the rotating body (120) and the heat dissipation body (100) are rotatably connected and the charging port (1102) is A, where A ≥ 90°.
7. The electronic device peripheral device according to claim 1, characterized in that, One of the heat dissipation body (100) and the rotating body (120) is provided with a pivot seat (115), and the other of the heat dissipation body (100) and the rotating body (120) is provided with a pivot part (123). The pivot part (123) is embedded in the pivot seat (115), and the central axis of the pivot part (123) is parallel to the first surface (112).
8. The electronic device peripheral device according to claim 7, characterized in that, Both the rotating shaft (123) and the rotating shaft seat (115) are provided with wiring spaces (124), the wiring spaces (124) are connected to the interior of the heat dissipation body (100), and the wires of the supplementary light (121) are located in the wiring spaces (124).
9. The electronic device peripheral device according to claim 1, characterized in that, The rotating body (120) is provided with a mounting groove (125), and the supplementary light (121) is located in the mounting groove (125). When the rotating body (120) is in the first position, the opening of the mounting groove (125) is away from the heat dissipation body (100).
10. The electronic device peripheral device according to claim 1, characterized in that, The heat dissipation body (100) is provided with a mounting hole (118), and the rotating body (120) is provided with a plug-in post (129). The plug-in post (129) is rotatably inserted into the mounting hole (118), and the central axis of the plug-in post (129) is parallel to the central axis of the heat dissipation body (100).
11. The electronic device peripheral device according to claim 3, characterized in that, The heat dissipation body (100) includes a magnetic suction component (117), which is disposed in the installation space (111) and close to the second surface (113).
12. The electronic device peripheral device according to claim 1, characterized in that, The peripheral wall (1101) of the heat dissipation body (100) extends toward the side where the first surface (112) is located, and forms a protrusion (1103) protruding from the first surface (112). The protrusion (1103) and the first surface (112) form a groove, and the rotating body (120) is housed in the groove.