Electronic equipment
By setting light blocking parts between the lampshade and the shielding parts, the light leakage problem caused by transparent parts covering the camera and the flash is solved, and a high-quality shooting effect is achieved.
Patent Information
- Application Number
- CN202421652639.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-11
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-07-11
AI Technical Summary
In the prior art, the overall structure formed by the transparent member covering the camera and the flash lamp causes the light emitted by the flash to illuminate the camera through the transparent member, affecting the shooting quality.
A first light blocking member is arranged between the lampshade and the shielding member to fill the assembly gap to block light leakage and reflect to the camera. Foam and black adhesives made of closed-cell material absorb excess light to ensure that the light does not enter the non-light-out area.
It effectively reduces the interference of light on the camera shooting, improves the shooting quality, and prevents imaging problems such as ghosting.
Smart Images

Figure CN223157110U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of electronic devices, and particularly to an electronic device. Background Art
[0002] Currently, flashlights and cameras are both provided in mobile terminals. When the camera takes pictures, the flashlight provides illumination fill light for the camera, thereby improving the shooting effect.
[0003] To make the camera and flashlight exposed outside the mobile terminal housing look aesthetic, a transparent member is used to cover both the camera and the flashlight at the same time, so that the camera and the flashlight are connected through the transparent member to form an integral body.
[0004] However, due to the light transmissivity of the transparent member, the light emitted by the flashlight and the like will irradiate into the camera, causing light leakage of the flashlight and affecting the shooting quality. Utility Model Content
[0005] This application provides an electronic device, aiming to reduce the risk that the light emitted by the auxiliary light source interferes with the shooting of the camera, so as to ensure the shooting quality of the camera.
[0006] This application provides an electronic device, and the electronic device includes:
[0007] A housing;
[0008] A camera and an auxiliary light source, which are installed in the housing;
[0009] A shielding member, which is connected to the housing and is located on the side of the camera and the auxiliary light source facing away from the inside of the housing;
[0010] A lamp cover, along the thickness direction of the electronic device, the lamp cover is located between the auxiliary light source and the shielding member;
[0011] A first light shielding member, the first light shielding member is at least provided between the auxiliary light source and the camera along the length direction or the width direction of the electronic device, and one end of the first light shielding member is connected to the shielding member, and the other end is connected to the lamp cover.
[0012] In this application, by providing a first light shielding member between the lamp cover and the shielding member, the assembly gap between the lamp cover and the shielding member is filled, so as to block the light from leaking out through the assembly gap into the shielding member, and block the light and reflect it to the camera through the shielding member, reducing the risk of interference with the shooting of the camera, thereby ensuring the shooting quality of the camera.
[0013] In a possible design, the shielding member has a first light-emitting area and a first non-light-emitting area, and the lamp cover has a second light-emitting area and a second non-light-emitting area;
[0014] Along the thickness direction of the electronic device, one end of the first light-blocking member is connected to the first non-light-emitting area, and the other end is connected to the second non-light-emitting area.
[0015] In this application, the first light-blocking member is located in the second non-light-emitting area of the lamp cover. The second non-light-emitting area corresponds to the first non-light-emitting area, that is, the projections of the two along the thickness direction of the electronic device at least partially overlap, so that the first light-blocking member is located between the first non-light-emitting area and the second non-light-emitting area. One end of the first light-blocking member is connected to the first non-light-emitting area of the light-blocking member, and the other end of the first light-blocking member is connected to the second non-light-emitting area of the lamp cover. Moreover, the first light-blocking member is outside the range of the projection of the first light-emitting area along the thickness direction of the electronic device.
[0016] In this application, by arranging a first light-blocking member between the second non-light-emitting area of the lamp cover and the first non-light-emitting area of the light-blocking member, the assembly gap between the second non-light-emitting area of the lamp cover and the light-blocking member is filled to block the light from leaking out through the assembly gap and entering the first non-light-emitting area, reducing the risk of the light being reflected by the first non-light-emitting area to the camera and interfering with the camera shooting, thereby ensuring the shooting quality of the camera.
[0017] In a possible design, an incident light area and a non-incident light area are provided on the side of the lamp cover facing the auxiliary light source;
[0018] The second light-emitting area and the incident light area are transparent areas, and the second non-light-emitting area, the non-incident light area, and the side wall of the lamp cover are non-transparent areas.
[0019] In this application, the second non-light-emitting area, the non-incident light area, and the side wall of the lamp cover may specifically be black. By designing the surfaces of the non-incident light area, the second non-light-emitting area, and the side wall of the lamp cover to be black, even if light irradiates on the non-incident light area, the second non-light-emitting area, and the side wall of the lamp cover, the non-incident light area, the second non-light-emitting area, and the side wall of the lamp cover will absorb the light, further preventing the light from entering the first non-light-emitting area and being reflected by the first non-light-emitting area to the camera to form interfering light.
[0020] In a possible design, the first light-blocking member is in a ring structure, and the first light-blocking member is arranged to surround the second light-emitting area.
[0021] In this application, the first light-blocking member is arranged between the entire circle of the second non-light-emitting area of the lamp cover and the light-blocking member, further blocking the light emitted by the auxiliary light source from irradiating on the camera, and being able to keep the lamp cover stable, reducing the risk of the lamp cover tilting when being squeezed.
[0022] In a possible design, the lamp cover has an edge portion in the circumferential direction, and a receiving groove is provided on one side of the edge portion facing the shielding member, and the receiving groove is used for installing the first light shielding member.
[0023] In this application, by providing a receiving groove in the edge portion of the lamp cover, a part of the structure of the first light shielding member is arranged in the receiving groove to locate the placement position of the first light shielding member.
[0024] In a possible design, the first light shielding member is made of a closed-cell material.
[0025] In this application, a foam made of a closed-cell material can be specifically selected. Since the air in the closed cells of the closed-cell foam is not easily leaked, the risk of light rays passing through the first light shielding member and hitting the non-light-emitting area of the shielding member is further reduced.
[0026] In a possible design, the electronic device further includes a first adhesive member and a second adhesive member;
[0027] The first adhesive member connects the first light shielding member and the shielding member, and the second adhesive member connects the first light shielding member and the lamp cover.
[0028] In this application, by bonding the first light shielding member between the shielding member and the edge portion of the light cover, the risk of the first light shielding member moving is reduced, thereby reducing the risk of light rays passing through the assembly gap between the edge portion of the light cover and the shielding member and hitting the non-light-emitting area.
[0029] In a possible design, both the first adhesive member and the second adhesive member are made of a black material.
[0030] In this application, since black has the property of absorbing light and does not reflect any frequency of light, stray light or excess light can be absorbed by the first adhesive member and the second adhesive member, further improving the light shielding effect. Exemplarily, both the first adhesive member and the second adhesive member are black back adhesives.
[0031] In a possible design, the electronic device further includes a decorative member and a third adhesive member;
[0032] The decorative member is provided with a limiting portion;
[0033] Along the thickness direction of the electronic device, the edge portion of the lamp cover and the limiting portion are connected by the third adhesive member, and the third adhesive member is annular.
[0034] In this application, the third adhesive member is arranged in a whole circle at the edge portion of the lamp cover to seal the position where the edge portion of the lamp cover and the limiting portion cooperate in a whole circle, preventing light from leaking from the gap between the edge portion of the lamp cover and the limiting portion to the non-light-emitting area of the shielding member and being reflected by the non-light-emitting area to form interfering light for the camera.
[0035] In a possible design, the third bonding member is made of a black material.
[0036] In this application, since black has the property of absorbing light and does not reflect any frequency of light, stray light or excess light can be absorbed by the third bonding member, further improving the light-blocking effect. Exemplarily, the third bonding member is a black adhesive tape.
[0037] In a possible design, the electronic device further includes a second light-blocking member and a light source circuit board, and the light source circuit board is connected to a side of the auxiliary light source facing away from the lamp shade;
[0038] Along the thickness direction of the electronic device, the second light-blocking member is disposed between the limiting portion and the light source circuit board;
[0039] The second light-blocking member is made of a closed-cell material.
[0040] In this application, by disposing the second light-blocking member between the limiting portion and the light source circuit board, the connection position between the limiting portion and the light source circuit board is sealed, and the light emitted by the auxiliary light source is blocked from irradiating the camera through the interior of the electronic device. At the same time, the second light-blocking member seals the connection position between the limiting portion and the light source circuit board, and can also play a role in dust prevention for the auxiliary light source.
[0041] Specifically, the second light-blocking member can be made of a closed-cell foam. Since the air inside the closed-cell bubbles in the closed-cell foam is not easily leaked, the risk of light irradiating the camera through the second light-blocking member is further reduced.
[0042] In a possible design, the electronic device further includes a fourth bonding member and a fifth bonding member;
[0043] The fourth bonding member connects the second light-blocking member to the limiting portion, and the fifth bonding member connects the second light-blocking member to the light source circuit board;
[0044] Both the fourth bonding member and the fifth bonding member are made of a black material.
[0045] In this application, by bonding the second light-blocking member between the limiting portion and the light source circuit board, the risk of the second light-blocking member moving is reduced, thereby reducing the risk of light irradiating the camera through the interior of the electronic device.
[0046] At the same time, since black has the property of absorbing light and does not reflect any frequency of light, stray light or excess light can be absorbed by the fourth bonding member and the fifth bonding member, further improving the light-blocking effect. Exemplarily, both the fourth bonding member and the fifth bonding member are black adhesive tapes.
[0047] In a possible design, the electronic device further includes a sixth bonding member;
[0048] Along the thickness direction of the electronic device, the shielding member and the decorative member are connected by the sixth adhesive member, and the sixth adhesive member is annular and surrounds the lamp shade;
[0049] The sixth adhesive member is made of a black material.
[0050] In this application, since black has the property of absorbing light and does not reflect light of any frequency, stray light or excess light can be absorbed by the sixth adhesive member, further improving the light shielding effect. Exemplarily, the sixth adhesive member can be a black adhesive tape.
[0051] In a possible design, the auxiliary light source is a flash lamp, or the auxiliary light source is a fill light and a condenser film. BRIEF DESCRIPTION OF THE DRAWINGS
[0052] Figure 1 is a schematic diagram of the electronic device in one embodiment;
[0053] Figure 2 is a cross-sectional schematic diagram of a partial structure of the electronic device in one embodiment;
[0054] Figure 3 is Figure 2 a schematic diagram of the distribution of the camera, the auxiliary light source, the shielding member and the lamp shade in
[0055] Figure 4 is a cross-sectional schematic diagram of a partial structure of the electronic device provided by this application in another embodiment;
[0056] Figure 5 is a top view schematic diagram of a partial structure of the electronic device provided by this application;
[0057] Figure 6 is a top view schematic diagram of a partial structure of the electronic device provided by this application in another embodiment;
[0058] Figure 7 is a cross-sectional schematic diagram of a partial structure of the electronic device provided by this application in another embodiment;
[0059] Figure 8 is a cross-sectional schematic diagram of a partial structure of the electronic device provided by this application in another embodiment;
[0060] Figure 9 is Figure 8 an enlarged schematic diagram of part A in
[0061] Figure 10 is a cross-sectional schematic diagram of the lamp shade provided by this application;
[0062] Figure 11 is Figure 9 a schematic diagram of the structure in another embodiment in
[0063] Figure 12 A cross-sectional schematic view of a partial structure of the electronic device provided by this application in another embodiment;
[0064] Figure 13 A distribution schematic view of the third bonding member provided by this application on the lamp cover;
[0065] Figure 14 A top view schematic view of the lamp cover provided by this application in one embodiment;
[0066] Figure 15 A bottom view schematic view of the lamp cover provided by this application in one embodiment;
[0067] Figure 16 A cross-sectional schematic view of a partial structure of the electronic device provided by this application in another embodiment;
[0068] Figure 17 Figure 16 An enlarged schematic view of part B in the figure.
[0069] Reference numerals:
[0070] 1 - Electronic device, 11 - Housing, 12 - Camera, 13 - Auxiliary light source, 14 - Shielding member, 141 - First light-emitting area, 142 - Third light-emitting area, 143 - First non-light-emitting area, 15 - Lamp cover, 15a - Assembly gap, 15b - Edge portion, 151 - Second light-emitting area, 152 - Second non-light-emitting area, 153 - Accommodating groove, 153a - Opening, 154 - Light-incident area, 155 - Non-light-incident area, 16 - Decorative member, 161 - Mounting hole, 162 - Limiting portion, 163 - Sixth bonding member, 17 - First light-blocking member, 171 - First bonding member, 172 - Second bonding member, 18 - Third bonding member, 19 - Second light-blocking member, 191 - Fourth bonding member, 192 - Fifth bonding member, 20 - Light source circuit board;
[0071] Z - Thickness direction, Y - Length direction. Detailed implementation manners
[0072] This embodiment provides an electronic device, which includes but is not limited to devices such as mobile phones and tablet computers. For the convenience of description, this embodiment takes the electronic device as a mobile phone as an example for illustration. The following will describe in detail the relevant partial structures inside the electronic device with reference to the accompanying drawings.
[0073] As Figure 1The following is a schematic diagram of the electronic device 1 in an embodiment. The electronic device includes a housing 11, a camera 12, an auxiliary light source 13, and a shielding member 14. The camera 12 and the auxiliary light source 13 are installed in the accommodation space of the housing 11. The housing 11 is provided with an opening, and part of the structures of the camera 12 and the auxiliary light source 13 can be exposed through the opening. The shielding member 14 is connected to the housing 11 and cooperates with the opening, so that the shielding member 14 covers both the camera 12 and the auxiliary light source 13 at the same time. From the appearance of the electronic device 1, the camera 12 and the auxiliary light source 13 form an integral body through the covering of the shielding member 14. Among them, the shielding member 14 can be a glass backplane or a glass lens, so that the shielding member 14 has a light-transmitting property, so that when the shielding member 14 covers the camera 12 and the auxiliary light source 13, the light emitted by the auxiliary light source 13 can be emitted outward through the shielding member 14 to illuminate the scene in the case of insufficient light; and, the light of the external scene can enter the camera 12 through the shielding member 14, so that the camera 12 can take pictures through the shielding member 14.
[0074] As Figure 2 The following is a cross-sectional schematic diagram of part of the structure of the electronic device 1 in a specific embodiment. The cross-sectional view of the electronic device within the range shielded by the shielding member 14 is shown in the figure. The electronic device 1 includes a camera 12, an auxiliary light source 13, a shielding member 14, a lamp shade 15, and a decorative member 16. The shielding member 14 is disposed outside the lamp shade 15, the auxiliary light source 13, and the camera 12 to cover the lamp shade 15, the auxiliary light source 13, and the camera 12, playing a role in protection and dust prevention. The camera 12 and the auxiliary light source 13 are arranged along the length direction Y or the width direction of the electronic device 1, and the lamp shade 15 is disposed between the shielding member 14 and the auxiliary light source 13. Along the thickness direction Z of the electronic device 1, the shielding member 14 is bonded to the decorative member 16 to fix the relative positions of the shielding member 14 and the decorative member 16. The decorative member 16 is provided with a mounting hole 161, and the lamp shade 15 is mounted in the mounting hole 161. Part of the structure of the decorative member 16 extends to the side of the lamp shade 15 away from the shielding member 14, so that the lamp shade 15 is bonded to part of the structure of the decorative member 16 to fix the relative positions of the lamp shade 15 and the decorative member 16. Thus, by connecting the lamp shade 15 and the shielding member 14 respectively through the decorative member 16, the relative positions of the lamp shade 15 and the shielding member 14 are fixed.
[0075] Specifically, as Figure 3 The following is shown as Figure 2Schematic diagram of the distribution of the camera 12, the auxiliary light source 13, the shielding member 14, and the lamp cover 15. The shielding member 14 has a first light-emitting area 141 (the first light-emitting area is represented by a single dotted line in the figure). Along the thickness direction Z of the electronic device 1, the auxiliary light source 13 is correspondingly arranged with the first light-emitting area 141. Among them, the corresponding arrangement of the auxiliary light source 13 and the first light-emitting area 141 means that: the auxiliary light source 13 is located inside the first light-emitting area 141 along the thickness direction Z of the electronic device 1, and the projection of the first light-emitting area 141 along the thickness direction Z of the electronic device 1 covers the projection of the auxiliary light source 13. The lamp cover 15 has a second light-emitting area 151 (the second light-emitting area is represented by a short dotted line in the figure). The second light-emitting area 151 is located between the first light-emitting area 141 and the auxiliary light source 13, corresponds to the first light-emitting area 141 of the first shielding member 14, and the second light-emitting area 151 also corresponds to the auxiliary light source 13.
[0076] It should be noted that, please continue to refer to Figure 3 , the second light-emitting area 151 refers to the area where the light emitted by the auxiliary light source 13 of the lamp cover 15 passes through the lamp cover 15 and irradiates the shielding member 14. The first light-emitting area 141 refers to the area where the light emitted from the second light-emitting area 151 of the lamp cover 15 passes through the shielding member 14 and irradiates the external environment. The first light-emitting area 141 and the second light-emitting area 151 are transparent areas.
[0077] Specifically, along the direction of the light emitted by the auxiliary light source 13, the auxiliary light source 13, the second light-emitting area 151 of the lamp cover 15, and the first light-emitting area 141 of the shielding member 14 are arranged in sequence. The light emitted by the auxiliary light source 13 can be emitted outward through the second light-emitting area 151 of the lamp cover 15. The lamp cover 15 can diffuse the light emitted by the auxiliary light source 13 to make it softer and more uniform, improving the natural beauty of the works taken by the electronic device 1. Most of the light diffused by the lamp cover 15 will be emitted to the first light-emitting area 141 of the shielding member 14 so that the light irradiates the scene that needs to be filled with light.
[0078] Please continue to refer to Figure 3 , in some embodiments, the shielding member 14 further has a third light-emitting area 142 corresponding to the camera 12 (the second light-emitting area is represented by a double dotted line in the figure). Among them, the corresponding arrangement of the camera 12 and the third light-emitting area 142 means that: the camera 12 is located inside the third light-emitting area 142 along the thickness direction Z of the electronic device 1, and the projection of the third light-emitting area 142 along the thickness direction Z of the electronic device 1 covers the projection of the camera 12.
[0079] It should be noted that the third light-emitting area 142 refers to the area where the light of the external environment can pass through the shielding member 14 and enter the camera 12. The third light-emitting area 142 is a transparent area.
[0080] Please continue to refer toFigure 3 The light shielding member 14 further has a first non-light-emitting area 143 (the first non-light-emitting area is represented by the long dashed line in the figure). The first non-light-emitting area 143 refers to the area outside the first light-emitting area 141 and the third light-emitting area 142, and no light is emitted from the first non-light-emitting area 143 to the external environment. In some embodiments, the inner side of the light shielding member 14 corresponding to the first non-light-emitting area 143 can be sprayed with a color to cover the internal structure of the electronic device 1.
[0081] Please refer to Figure 2 and Figure 3 , along the thickness direction Z of the electronic device 1, the auxiliary light source 13 and the camera 12 are placed together on the inner side of the light shielding member 14. When the light in the shooting scene is insufficient, the user can use the auxiliary light source 13. However, due to the assembly gap 15a between the lamp cover 15 and the light shielding member 14, the light emitted by the auxiliary light source 13 leaks through the assembly gap 15a to the first non-light-emitting area 143 of the light shielding member 14, and is reflected by the first non-light-emitting area 143 of the light shielding member 14 ( Figure 3 The arrow in the figure shows the light path), and is directed towards the camera 12 to form interfering light, resulting in the problem of "ghosting" in the image captured by the camera 12 with the flash on, which affects the image quality.
[0082] To solve this technical problem, the embodiment of the present application provides an electronic device. A first light shielding member is arranged between the first light-emitting area and the camera, and the light emitted by the auxiliary light source is blocked by the first light shielding member from irradiating the camera, thereby solving the quality problems such as "ghosting" in the image when the auxiliary light source is turned on for shooting.
[0083] Please refer to Figure 4 , Figure 4The figure shows a cross-sectional schematic diagram of a partial structure of the electronic device 1 in another specific embodiment, including an auxiliary light source 13, a lamp shade 15, a light shielding member 14, and a camera 12. Along the direction in which the auxiliary light source 13 emits light (the thickness direction of the electronic device), the auxiliary light source 13, the lamp shade 15, and the first light-emitting area 141 of the light shielding member 14 are arranged in sequence. The camera 12 and the auxiliary light source 13 are arranged along the length direction Y or the width direction of the electronic device 1. The electronic device 1 further includes a first light-blocking member 17, and the first light-blocking member 17 is arranged between the light shielding member 14 and the lamp shade 15 along the thickness direction Z of the electronic device 1. Specifically, the first light-blocking member 17 is located in the second non-light-emitting area 152 of the lamp shade 15, and the second non-light-emitting area 152 corresponds to the first non-light-emitting area 143, that is, at least part of their projections along the thickness direction Z of the electronic device 1 coincide, so that the first light-blocking member 17 is located between the first non-light-emitting area 143 and the second non-light-emitting area 152. One end of the first light-blocking member 17 is connected to the first non-light-emitting area 143 of the light shielding member 14, and the other end of the first light-blocking member 17 is connected to the second non-light-emitting area 152 of the lamp shade 15. Moreover, the first light-blocking member 17 is located outside the range of the projection of the first light-emitting area 141 along the thickness direction Z of the electronic device 1.
[0084] In a specific embodiment, the lamp shade 15 has an edge portion 15b, and the second non-light-emitting area 152 is located on the side of the edge portion 15b facing the light shielding member 14.
[0085] Therefore, in this embodiment, by arranging the first light-blocking member 17 between the second non-light-emitting area 152 of the lamp shade 15 and the first non-light-emitting area 143 of the light shielding member 14, the assembly gap between the second non-light-emitting area 152 of the lamp shade 15 and the light shielding member 14 is filled, so as to block the light from leaking out through the assembly gap and entering the first non-light-emitting area 143, and reduce the risk that the light is reflected by the first non-light-emitting area 143 to the third light-emitting area 142 and interfere with the shooting of the camera 12, thereby ensuring the shooting quality of the camera 12.
[0086] Figure 5 The figure shows a top view schematic diagram of a partial structure of the electronic device in a specific embodiment. Figure 5 The lamp shade is not shown in the figure. The electronic device includes a light shielding member 14, a camera 12, an auxiliary light source 13, and a first light-blocking member 17 (the first light-blocking member that cannot be seen in the top view is represented by a dotted line in the figure). When the camera 12 and the auxiliary light source 13 are distributed along the length direction of the electronic device 1, the first light-blocking member 17 separates the camera 12 and the auxiliary light source 13 along the length direction; when the camera 12 and the auxiliary light source 13 are distributed along the width direction of the electronic device 1, the first light-blocking member 17 separates the camera 12 and the auxiliary light source 13 along the width direction. Taking the example that the auxiliary light source 13 and the camera 12 are distributed along the length direction Y of the electronic device, please refer to Figure 4, in some embodiments, the first light shield 17 may be disposed only between the edge portion 15b of the lamp housing 15 close to the camera 12 and the shielding member 14, so as to separate the camera 12 and the auxiliary light source 13 through the first light shield 17, and block the light emitted by the auxiliary light source 13 from irradiating the camera 12. Meanwhile, the cost is saved.
[0087] In some embodiments, as Figure 5 shown, the first light shield 17 is disposed around the side of the auxiliary light source 13 facing the camera 12. In other embodiments, the first light shield 17 may also be disposed around the side of the camera 12 facing the auxiliary light source 13. The first light shield 17 only needs to be able to block the light emitted by the auxiliary light source 13 and the light reflected by the shielding member 14 from irradiating the camera 12.
[0088] Or, in some embodiments, Figure 6 shows a top view schematic diagram of a partial structure of the electronic device in yet another specific embodiment. In this embodiment, the first light shield 17 may be an annular structure and surround the transparent region of the lamp housing. Figure 7 The figure shows a cross-sectional schematic diagram of a partial structure of the electronic device in yet another specific embodiment, including an auxiliary light source 13, a lamp housing 15, a shielding member 14, a camera 12, and a first light shield 17. Along the direction in which the auxiliary light source 13 emits light, the auxiliary light source 13, the second light-emitting region 151 of the lamp housing 15, and the first light-emitting region 141 of the shielding member 14 are arranged in sequence. The camera 12 and the auxiliary light source 13 are arranged along the length direction Y or the width direction of the electronic device 1. The first light shield 17 is disposed between the second non-light-emitting region 152 of the lamp housing 15 and the shielding member 14. Among them, the first light shield 17 is disposed between the entire circumferential second non-light-emitting region 152 of the lamp housing 15 and the shielding member 14, further blocking the light emitted by the auxiliary light source 13 from irradiating the camera 12, and being able to keep the lamp housing 15 stable and reduce the risk of the lamp housing 15 tilting when being squeezed.
[0089] In other embodiments, the annular first light shield 17 may also surround the camera 12, so as to be able to block the light emitted by the auxiliary light source 13 from irradiating the camera 12. Generally, since the projected area of the auxiliary light source 13 in the thickness direction Z of the electronic device 1 is smaller than the projected area of the camera 12 in the thickness direction of the electronic device 1, when the annular first light shield 17 surrounds the auxiliary light source 13, the material usage of the first light shield 17 can be saved.
[0090] In the above embodiments, as Figure 7 shown, the first light shield 17 may be made of foam, so that the first light shield 17 is compressed between the lamp housing 15 and the shielding member 14 to prevent the occurrence of a light leakage assembly gap 15a between the lamp housing 15 and the shielding member 14.
[0091] The first light-shielding member 17 can specifically be a closed-cell foam. A closed-cell foam means that all the enclosed air bubbles in the foam are complete bubbles, and the bubbles are surrounded by cell walls, preventing air and moisture from entering the interior of the foam. Therefore, the risk of light passing through the first light-shielding member 17 and hitting the first non-light-emitting area 143 of the shielding member 14 is further reduced. Additionally, the closed-cell foam has good shock absorption and buffering performance, thereby being able to reduce the vibration between the shielding member 14 and the lamp cover 15.
[0092] Alternatively, in some embodiments, the first light-shielding member 17 can also be made of soft materials such as rubber or silicone, so that it can be compressed between the edge portion 15b of the lamp cover 15 and the shielding member. Of course, to further reduce the risk of light leakage, rubber and silicone are also selected as closed-cell materials.
[0093] As Figure 8 shown is a schematic diagram of a partial structure of an electronic device in another embodiment. The electronic device includes a shielding member 14, a lamp cover 15, and a first light-shielding member 17. The first light-shielding member 17 is disposed between the shielding member 14 and the lamp cover 15 and is located in the second non-light-emitting area 152 of the lamp cover 15.
[0094] As Figure 9 shown is Figure 8 a magnified schematic diagram of part A in [reference], where a receiving groove 153 is provided in the second non-light-emitting area 152 of the lamp cover 15, and a partial structure of the first light-shielding member 17 is disposed in the receiving groove 153 to locate the placement position of the first light-shielding member 17.
[0095] As Figure 10 shown is a cross-sectional schematic diagram of the lamp cover 15 in a specific embodiment. A receiving groove 153 is provided in the second non-light-emitting area 152 of the lamp cover 15. The opening of the receiving groove 153 faces the shielding member 14 to locate the position of the first light-shielding member 17. In a specific embodiment, an opening 153a is provided at the outer edge of the receiving groove 153, making the overall structure of the receiving groove 153 present a notch structure, so as to facilitate the formation of the receiving groove 153 directly from the outer edge of the lamp cover 15.
[0096] In some embodiments, the first light-shielding member 17 can be bonded to the shielding member 14 and the lamp cover 15. Specifically, as Figure 11 shown is Figure 9Schematic diagram in another specific embodiment. Along the thickness direction Z of the electronic device 1, the first adhesive member 171 is disposed on one side of the first light-shielding member 17, and the second adhesive member 172 is disposed on the other side of the first light-shielding member 17. The first adhesive member 171 connects the first light-shielding member 17 and the shielding member 14, and the second adhesive member 172 connects the first light-shielding member 17 and the lamp cover 15. In this embodiment, the first light-shielding member 17 is adhesively bonded between the first non-light-emitting area 143 of the shielding member 14 and the second non-light-emitting area 152 of the lamp cover 15 by the first adhesive member 171 and the second adhesive member 172, reducing the risk of movement of the first light-shielding member 17, and thus reducing the risk of light rays passing through the assembly gap between the lamp cover 15 and the shielding member 14 and hitting the first non-light-emitting area 143.
[0097] Wherein, both the first adhesive member 171 and the second adhesive member 172 can adopt back glue, double-sided tape, etc., as long as they can achieve the adhesive effect, and this embodiment does not make specific limitations.
[0098] Specifically, both the first adhesive member 171 and the second adhesive member 172 need to adopt black materials. Since black has the property of absorbing light and does not reflect any frequency of light, stray light or redundant light can be absorbed by the first adhesive member 171 and the second adhesive member 172, further improving the light-shielding effect. Exemplarily, both the first adhesive member 171 and the second adhesive member 172 are black back glue.
[0099] In some embodiments, the first light-shielding member 17, the first adhesive member 171, and the second adhesive member 172 can be provided in an integral form. That is, the first adhesive member 171 and the second adhesive member 172 are first formed on the first light-shielding member 17, and release papers are disposed on the side of the first adhesive member 171 facing away from the first light-shielding member 17 and the side of the second adhesive member 172 facing away from the first light-shielding member 17. When assembling the first light-shielding member 17, the release papers on both sides are torn off, and the first adhesive member 171 and the second adhesive member 172 are respectively adhesively bonded to the shielding member 14 and the lamp cover 15.
[0100] Please continue to refer to Figure 12 , such as Figure 12 shown is a cross-sectional schematic diagram of a partial structure of the electronic device 1 in yet another specific embodiment. The electronic device 1 includes a shielding member 14, a lamp cover 15, a first light-shielding member 17, and a decorative member 16. Along the thickness direction Z of the electronic device 1, the shielding member 14 is connected to the decorative member 16. The decorative member 16 is provided with a mounting hole 161, and the mounting hole 161 is located inside the shielding member 14 along the thickness direction Z of the electronic device 1. The lamp cover 15 is installed in the mounting hole 161, and the second light-emitting area 151 of the lamp cover 15 is correspondingly arranged with the first light-emitting area 141 of the shielding member 14. The first light-shielding member 17 is disposed between the edge portion 15b of the lamp cover 15 and the shielding member 14.
[0101] Among them, by setting the mounting holes 161, the mounting of the lamp cover 15 is positioned, reducing the risk of the lamp cover 15 moving along the length direction Y or the width direction of the electronic device 1.
[0102] Please continue to refer to Figure 12 , the decorative member 16 is further provided with a limiting portion 162. Along the thickness direction Z of the electronic device 1, the edge portion 15b of the lamp cover 15 is correspondingly arranged with the limiting portion 162. That is to say, the limiting portion 162 is located on the side of the edge portion 15b of the lamp cover 15 away from the shielding member 14, and the edge portion 15b of the lamp cover 15 can be lapped on the limiting portion 162 to support the lamp cover 15. At the same time, a limiting space is formed between the limiting portion 162 and the shielding member 14 to limit the lamp cover 15 within the limiting space, reducing the risk of the lamp cover 15 moving along the thickness direction Z of the electronic device 1.
[0103] Please continue to refer to Figure 12 , the electronic device 1 may further include a third adhesive member 18, and the edge portion 15b of the lamp cover 15 and the limiting portion 162 are connected by the third adhesive member 18 to fix the lamp cover 15 and the decorative member 16.
[0104] Among them, as Figure 13 shown is a schematic diagram of the distribution of the third adhesive member 18 (the shaded area in the figure) on the lamp cover 15. Please refer to Figure 12 and Figure 13 , the third adhesive member 18 is arranged in a whole circle on the edge portion 15b of the lamp cover 15. That is, the third adhesive member 18 is annular, surrounding the periphery of the second light-emitting area 151 of the lamp cover 15, so as to seal the position where the edge portion 15b of the lamp cover 15 cooperates with the limiting portion 162 in a whole circle, preventing light from leaking from the gap between the edge portion 15b of the lamp cover 15 and the limiting portion 162 to the non-light-emitting area 143 of the shielding member 14 and being reflected by the non-light-emitting area 143 to the camera 12 to form interfering light.
[0105] Among them, the third adhesive member 18 can adopt back glue, double-sided glue, etc., as long as it can achieve the bonding effect, and this embodiment does not make specific limitations.
[0106] Furthermore, the third adhesive member 18 needs to adopt a black material. Since black has the light absorption property and does not reflect any frequency of light, stray light or redundant light can be absorbed by the third adhesive member 18, further improving the light shielding effect. Exemplarily, the third adhesive member 18 is black back glue.
[0107] As Figure 14 shown is a schematic diagram of the lamp cover 15 in a specific embodiment, showing the second light-emitting area and the second non-light-emitting area of the lamp cover. As Figure 14As shown in the figure, on the side of the lamp cover 15 facing the shielding member 14, the lamp cover 15 has a second light-emitting area 151 and a second non-light-emitting area 152. Among them, the second light-emitting area 151 is transparent, and the second non-light-emitting area 152 is non-transparent, specifically it can be black. As Figure 15 Shown is a schematic diagram of the lamp cover 15 in a specific embodiment, showing the light-incident area and the non-light-incident area of the lamp cover. As Figure 15 As shown in the figure, on the side of the lamp cover 15 facing the auxiliary light source 13, the lamp cover 15 has a light-incident area 154 and a non-light-incident area 155. Among them, the light-incident area 154 is transparent, and the non-light-incident area 155 is non-transparent, specifically it can be black.
[0108] Specifically, the light-incident area 154 refers to the area on the lamp cover 15 where the light emitted by the auxiliary light source 13 shines and can be emitted to the second light-emitting area 151 through the light-incident area 154. The light-incident area 154 of the lamp cover 15 is arranged corresponding to the auxiliary light source 13. The non-light-incident area 155 and the second non-light-emitting area 152 refer to the areas on the lamp cover 15 that do not need to let light in or out except for the light-incident area 154 and the second light-emitting area 151. The specific areas of the non-light-incident area 155 and the second non-light-emitting area 152 can be set according to the actual situation, and are not limited in this embodiment.
[0109] Therefore, in this embodiment, by designing the surfaces of the non-light-incident area 155 and the second non-light-emitting area 152 to be black, even if light shines on the non-light-incident area 155 and the second non-light-emitting area 152, the non-light-incident area 155 and the second non-light-emitting area 152 will absorb the light, further preventing the light from entering the first non-light-emitting area and being reflected by the first non-light-emitting area to the camera to form interfering light.
[0110] Combined Figure 14 and Figure 15 It can be known that the area of the second non-light-emitting area 152 of the lamp cover is larger than the area of the non-light-incident area 155, so that the area of the light-incident area 154 of the lamp cover is larger than the area of the second light-emitting area 151, so that the projection of the light-incident area 154 along the thickness direction of the electronic device can cover the projection of the second light-emitting area 151 along the thickness direction of the electronic device, ensuring that light is emitted from the entire area of the second light-emitting area 151.
[0111] Furthermore, the side wall of the lamp cover 15 can also be black.
[0112] Specifically, the lamp cover has a transparent light-incident area and a second light-emitting area, and except for the light-incident area and the second light-emitting area, other areas of the lamp cover are non-transparent. The implementation methods of this lamp cover include but are not limited to two-color injection molding, covering the non-transparent area after single-color injection molding, spraying black on the non-transparent area, etc. The specific operation process can refer to the existing conventional methods, and will not be elaborated in this embodiment.
[0113] As shown Figure 16 in the cross-sectional schematic view of a partial structure of the electronic device 1 in yet another specific embodiment. The electronic device 1 includes a camera 12, an auxiliary light source 13, a shielding member 14, a lamp shade 15, a decorative member 16, and a light source circuit board 20. Along the thickness direction Z of the electronic device 1, the shielding member 14 is connected to the decorative member 16, and the lamp shade 15 is connected to the decorative member 16. The auxiliary light source 13 is mounted on the light source circuit board 20, and the light source circuit board 20 is located on the side of the auxiliary light source 13 away from the lamp shade 15 for controlling the auxiliary light source 13. The decorative member 16 is provided with a limiting portion 162. Along the thickness Z direction of the electronic device 1, a second light shielding member 19 is disposed between the limiting portion 162 and the light source circuit board 20.
[0114] Specifically, the auxiliary light source 13 is disposed in the space surrounded by the light source circuit board 20 and the limiting portion 162. The light emitted by the auxiliary light source 13 may be directed to the camera 12 through the connection gap between the light source circuit board 20 and the limiting portion 162, which also interferes with the shooting of the camera 12 and affects the shooting quality of the camera 12. In response to this, in this embodiment, a second light shielding member 19 is disposed between the limiting portion 162 and the light source circuit board 20 to seal the connection position between the limiting portion 162 and the light source circuit board 20 and block the light emitted by the auxiliary light source 13 from reaching the camera 12 through the interior of the electronic device 1. At the same time, the second light shielding member 19 seals the connection position between the limiting portion 162 and the light source circuit board 20, and can also play a role in dust prevention for the auxiliary light source 13.
[0115] Among them, the light source circuit board 20 may be a flexible circuit board. The second light shielding member 19 may be made of foam, so that the second light shielding member 19 is compressed between the limiting portion 162 and the light source circuit board 20 to prevent a light leakage assembly gap from appearing between the limiting portion 162 and the light source circuit board 20.
[0116] The second light shielding member 19 may specifically be a closed-cell foam. A closed-cell foam means that all the closed air bubbles in the foam are complete bubbles, and the bubbles are surrounded by cell walls, so that air and moisture cannot enter the interior of the foam, thus further reducing the risk of light passing through the second light shielding member 19 to reach the camera 12.
[0117] Alternatively, in some embodiments, the second light shielding member 19 may also be made of soft materials such as rubber or silica gel so as to be compressed between the limiting portion 162 and the light source circuit board 20. Of course, to further reduce the risk of light leakage, rubber and silica gel are also selected as closed-cell materials.
[0118] Please continue to refer to Figure 16, the electronic device 1 further includes a sixth bonding member 163. Along the thickness direction Z of the electronic device 1, a partial structure of the light shielding member 14 and a partial structure of the decorative member 16 are connected by the sixth bonding member 163. The sixth bonding member 163 is annular and surrounds the lamp shade 15. Specifically, the sixth bonding member 163 is disposed corresponding to the non-light-emitting area 143 of the light shielding member 14.
[0119] Among them, the sixth bonding member 163 can be a back glue, double-sided tape, etc., as long as it can achieve the bonding effect, and the specific limitation is not made in this embodiment.
[0120] Furthermore, the sixth bonding member 163 needs to be made of a black material. Since black has the property of absorbing light and does not reflect any frequency of light, stray light or redundant light can be absorbed by the sixth bonding member 163, further improving the light shielding effect. Exemplarily, the sixth bonding member 163 can be a black back glue.
[0121] As Figure 17 shown is Figure 16 a partial enlarged view of position B in. Along the thickness direction Z of the electronic device 1, the fourth bonding member 191 is disposed on one side of the second light shielding member 19, and the fifth bonding member 192 is disposed on the other side of the second light shielding member 19. The fourth bonding member 191 connects the second light shielding member 19 and the limiting portion 162, and the fifth bonding member 192 connects the second light shielding member 19 and the light source circuit board 20. In this embodiment, by bonding the second light shielding member 19 between the limiting portion 162 and the light source circuit board 20, the risk of the second light shielding member 19 moving is reduced, thereby reducing the risk of light irradiating the camera 12 through the inside of the electronic device 1.
[0122] Specifically, both the fourth bonding member 191 and the fifth bonding member 192 need to be made of a black material. Since black has the property of absorbing light and does not reflect any frequency of light, stray light or redundant light can be absorbed by the fourth bonding member 191 and the fifth bonding member 192, further improving the light shielding effect. Exemplarily, both the fourth bonding member 191 and the fifth bonding member 192 are black back glues.
[0123] In some embodiments, the second light shielding member 19, the fourth bonding member 191, and the fifth bonding member 192 can be provided in an integral form. That is, the fourth bonding member 191 and the fifth bonding member 192 are first formed on the second light shielding member 19, and release papers are disposed on the side of the fourth bonding member 191 away from the second light shielding member 19 and the side of the fifth bonding member 192 away from the second light shielding member 19. When assembling the second light shielding member 19, tear the release papers on both sides, so that the fourth bonding member 191 and the fifth bonding member 192 are respectively bonded to the limiting portion 162 and the light source circuit board 20.
[0124] In some embodiments, the auxiliary light source 13 may be a flash lamp. Alternatively, the auxiliary light source 13 is a fill light and a condenser film, and the condenser film is arranged between the fill light and the lamp shade 15 to play a role in condensing light.
[0125] The above are only specific embodiments of the embodiments of the present application, but the protection scope of the embodiments of the present application is not limited thereto. Any changes or substitutions within the technical scope disclosed in the embodiments of the present application should be covered by the protection scope of the embodiments of the present application. Therefore, the protection scope of the embodiments of the present application shall be subject to the protection scope of the claimed rights.
Claims
1. An electronic device, characterized in that, The electronic device comprises: case; A camera and an auxiliary light source are installed in the housing; a shielding member connected to the housing and located on a side of the camera and the auxiliary light source facing away from the interior of the housing; A lampshade, located between the auxiliary light source and the shielding member along the thickness direction of the electronic device; A first light blocking member is at least arranged between the auxiliary light source and the camera along the length direction or the width direction of the electronic device, and one end of the first light blocking member is connected to the shielding member, and the other end is connected to the lampshade.
2. The electronic device according to claim 1, wherein The shielding member has a first light emitting area and a first non-light emitting area, and the lampshade has a second light emitting area and a second non-light emitting area; Along the thickness direction of the electronic device, one end of the first light blocking member is connected to the first non-light emitting area, and the other end is connected to the second non-light emitting area.
3. The electronic device according to claim 2, characterized in that, The lampshade is provided with a light-incoming area and a non-light-incoming area on one side facing the auxiliary light source; The second light-emitting area and the light-incoming area are transparent areas, and the second non-light-emitting area, the non-light-incoming area and the side wall of the lampshade are non-transparent areas.
4. The electronic device according to claim 2, wherein The first light blocking member is an annular structure, and the first light blocking member is disposed around the second light exiting area.
5. The electronic device according to claim 1, wherein The lampshade has an edge portion along the circumferential direction, and the edge portion is provided with a receiving groove on a side facing the shielding member, and the receiving groove is used to install the first light blocking member.
6. The electronic device according to claim 1, wherein The first light blocking member is made of closed-cell material.
7. The electronic device according to claim 1, wherein The electronic device further comprises a first adhesive member and a second adhesive member; The first adhesive member connects the first light blocking member and the shielding member, and the second adhesive member connects the first light blocking member and the lampshade.
8. The electronic device according to claim 7, wherein The first adhesive component and the second adhesive component are both made of black material.
9. The electronic device according to any one of claims 1 to 8, characterized in that, The electronic device further comprises a decorative member and a third adhesive member, wherein the decorative member is provided with a limiting portion; Along the thickness direction of the electronic device, the edge portion of the lampshade is connected to the limiting portion through the third adhesive component, and the third adhesive component is ring-shaped.
10. The electronic device according to claim 9, wherein, The third adhesive component is made of black material.
11. The electronic device according to claim 9, characterized in that, The electronic device further comprises a second light blocking member and a light source circuit board, wherein the light source circuit board is connected to a side of the auxiliary light source away from the lampshade; Along the thickness direction of the electronic device, the second light blocking member is arranged between the limiting portion and the light source circuit board; The second light blocking member is made of closed-cell material.
12. The electronic device according to claim 11, wherein The electronic device further comprises a fourth adhesive member and a fifth adhesive member; The fourth adhesive member connects the second light blocking member and the limiting portion, and the fifth adhesive member connects the second light blocking member and the light source circuit board; The fourth adhesive component and the fifth adhesive component are both made of black material.
13. The electronic device according to claim 9, characterized in that, The electronic device further comprises a sixth adhesive member; Along the thickness direction of the electronic device, the shielding member and the decorative member are connected via the sixth adhesive member, and the sixth adhesive member is annular and surrounds the lampshade; The sixth adhesive component is made of black material.
14. The electronic device according to any one of claims 1 to 8, characterized in that, The auxiliary light source is a flash lamp, or the auxiliary light source is a fill light and a focusing film.