Electronic device with light-emitting structure

By setting a feature light-transmitting structure and a light guide unit on the side plate of the memory, the problem of limited light emission caused by the opaque heat sink is solved, and the combination of side light emission and pattern is realized, which enhances the visual effect of the memory.

CN224094303UActive Publication Date: 2026-04-07CORSAIR MEMORY INC(US)
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-23
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Existing memory heatsinks are opaque, which prevents them from emitting light from the side, limiting their luminous effect and making it impossible to integrate them with patterns. Furthermore, the luminous structure on the heatsink is difficult to replace.

Method used

A light-transmitting structure, such as a light-transmitting hole, is set on the side plate of the memory. Combined with a light guide unit and a light control module, the light from the light-emitting module is guided to a specific position on the side plate body using a light guide material to achieve side light emission. The lighting effects and patterns are controlled by the light control module.

Benefits of technology

It achieves a light-up effect on the side panel of the memory, which can be combined with patterns to produce dynamic lighting effects, and the light-up structure can be replaced to enhance the visual effect of the memory.

✦ Generated by Eureka AI based on patent content.

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Abstract

An electronic device with a light-emitting structure comprises a circuit unit and a side plate unit, the circuit unit comprises a circuit board and a light-emitting module arranged on the circuit board, and the side plate unit comprises a side plate body arranged on the side edge of the circuit board and a characteristic light-transmitting structure arranged on the side plate body. Light emitted by the light-emitting module penetrates through the characteristic light-transmitting structure and is output outwards. Therefore, a structure capable of emitting light on the side plate is provided, the light-emitting position can be combined with the pattern, and a circuit with various light effects can be generated.
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Description

Technical Field

[0001] This utility model relates to an electronic device, and more particularly to an electronic device having a light-emitting structure. Background Technology

[0002] With the development of electronic technology, personal computers have become an indispensable product in people's lives. With the rise of the e-sports industry, consumers not only pursue the speed of data processing, but also the coolness and beauty of computer products. Under the belief that both performance and aesthetics must be achieved, computer manufacturers are racking their brains to design the appearance of computers.

[0003] Among computer components, dynamic memory (DRAM) is an essential mainstream device for data storage. DRAM provides temporary storage for files used by the computer when executing programs or applications. With the advancement of technology, not only has the speed of data processing increased, but the overall structure has also become smaller and thinner. However, this has led to the problem of heat accumulation. Therefore, existing memory chips are equipped with heat sinks or heat spreaders to improve the efficiency of chip heat dissipation.

[0004] The heat sinks on memory devices are made of metal and are not transparent. Therefore, memory devices with lighting effects could only emit light from areas outside the heat sink, resulting in the following drawbacks in existing memory products:

[0005] 1. The sides of the heatsink cannot emit light, and the light-emitting effect is limited:

[0006] The heat sink on the side of the memory is made of metal and is not transparent. Therefore, memory with light-emitting function cannot emit light from the side and can only emit light from the top. Its light-emitting structure uses a light guide plate to guide the light to the top of the memory. The combination of heat sink and light guide can only emit light in the top edge area or around the memory. Moreover, the top light emission is limited and can only output a simple light effect like a light strip.

[0007] II. Inability to combine patterns for luminescence:

[0008] One side of the heat sink is attached to the memory chip to dissipate the heat generated by the chip, while the other side of the heat sink needs to be exposed to the air to dissipate the accumulated heat. To prevent the heat sink from oxidizing, a rust-proof layer is coated on the surface of the heat sink. In order to improve the appearance of the heat sink, manufacturers will print cool graphics on the surface of the rust-proof layer. However, since the heat sink itself is not transparent, the graphics on the surface of the heat sink cannot be combined with the light-emitting function.

[0009] III. The surface light-emitting structure cannot be replaced:

[0010] Because heat sinks must be in close contact with the memory chip, especially since adhesive thermal paste or thermal adhesive is used between the memory and the chip, it is difficult for the average person to replace the heat sink on the memory. If the heat sink has a light-emitting structure, it is also difficult to replace. Utility Model Content

[0011] In view of this, the purpose of this utility model is to provide an electronic device with a light-emitting structure that can emit light on the side panel and whose light-emitting position can be combined with a graphic to produce a lighting effect.

[0012] The present invention discloses an electronic device with a light-emitting structure, which includes a circuit unit and a side panel unit.

[0013] The circuit unit includes a circuit board and a light-emitting module disposed on the circuit board.

[0014] The side panel unit includes a side panel body disposed on the side of the circuit board, and a characteristic light-transmitting structure disposed on the side panel body. The light emitted by the light-emitting module passes through the characteristic light-transmitting structure and is output outward.

[0015] In one embodiment, the electronic device having a light-emitting structure further includes a light-guiding unit, which includes a light-guiding body disposed between the light-emitting module and the feature light-transmitting structure, with the light-emitting surface of the light-emitting module facing the feature light-transmitting structure.

[0016] In one embodiment, the light guide unit further includes a light concentrating structure disposed in the light guide body. The position of the light concentrating structure corresponds to the light-transmitting structure of the feature, which is selected from one or a combination of a convex lens, a concave lens, a Fresnel threaded lens, a groove, a perforation, and a reflective layer.

[0017] In one embodiment, the light guide body is disposed on the top and / or side of the circuit board.

[0018] In one embodiment, the electronic device having a light-emitting structure further includes a light-guiding unit, which includes a feature assembly body that is detachably combined with the feature light-transmitting structure, and the light emitted by the light-emitting module passes through the feature assembly body and is output to the outside.

[0019] In one embodiment, the circuit unit further includes a light control module disposed on the circuit board.

[0020] In one embodiment, the light-transmitting structure has a light-transmitting hole disposed in the main body of the side plate.

[0021] In one embodiment, the light-transmitting structure has a plurality of light-transmitting holes disposed on the side plate body, the plurality of light-transmitting holes having the same aperture.

[0022] In one embodiment, the light-transmitting structure has a plurality of light-transmitting holes disposed on the side plate body, the apertures of the plurality of light-transmitting holes being inconsistent.

[0023] In one embodiment, the circuit unit further includes a memory disposed on the circuit board.

[0024] Based on common knowledge in the field, the above-mentioned preferred conditions can be combined arbitrarily to obtain various embodiments of this utility model. Specifically, the features of the claims of this utility model can be combined with each other in any way.

[0025] The beneficial effect of this utility model is that the light-transmitting structure is a part of the main body of the side panel, which can produce lighting effects. Therefore, patterns can be set on the side of the main body of the side panel. By combining the light-transmitting structure with the patterns, static patterns can be matched with dynamic lighting effects to achieve a more vivid effect. Attached Figure Description

[0026] Figure 1 This is a schematic cross-sectional view of a first embodiment of the electronic device with a light-emitting structure according to the present invention;

[0027] Figure 2 This is a partial cross-sectional view of the structure using a light-concentrating structure in the first embodiment;

[0028] Figure 3 This is a partial cross-sectional view of the structure using another light-concentrating structure in the first embodiment;

[0029] Figure 4 This is a three-dimensional schematic diagram of a second embodiment of the electronic device with a light-emitting structure according to the present invention;

[0030] Figure 5 This is a three-dimensional exploded view of the second embodiment;

[0031] Figure 6 This is a side cross-sectional view of the second embodiment;

[0032] Figure 7 This is an exploded perspective view of a third embodiment of the electronic device with a light-emitting structure according to the present invention;

[0033] Figure 8 This is a side cross-sectional view of the third embodiment;

[0034] Figure 9 This is a partial side view schematic diagram of a fourth embodiment of the electronic device with a light-emitting structure according to the present invention;

[0035] Figure 10 This is a partial side view schematic diagram of a fifth embodiment of the electronic device with a light-emitting structure according to the present invention;

[0036] Figure 11 This is a side cross-sectional view of a sixth embodiment of the electronic device with a light-emitting structure according to the present invention;

[0037] Figure 12 This is a side cross-sectional schematic diagram of a seventh embodiment of the electronic device with a light-emitting structure according to the present invention;

[0038] Figure 13 This is a side cross-sectional schematic diagram of the eighth embodiment of the electronic device with a light-emitting structure according to the present invention;

[0039] Figure 14 This is a side cross-sectional schematic diagram of a ninth embodiment of the electronic device with a light-emitting structure according to the present invention; and

[0040] Figure 15 This is a side cross-sectional view of the tenth embodiment of the electronic device with a light-emitting structure according to the present invention.

[0041] Explanation of markings in the diagram:

[0042] 21: Figure; 3: Circuit unit; 31: Circuit board; 311: First surface; 312: Second surface;

[0043] 32: Light-emitting module; 321: Light-emitting surface; 33: Memory; 34: Light control module; 4: Side panel unit;

[0044] 41: Side panel main body; 42: Featured light-transmitting structure; 421: Light transmission hole; 5: Light guide unit; 51: Light guide main body;

[0045] 511: Top light guide; 512: Side light guide; 52: Light concentrating structure; 53: Feature assembly body;

[0046] 531: Combined convex body; 91: Light direction; 92: Local area. Detailed Implementation

[0047] The present invention will be further described below with reference to the accompanying drawings and specific embodiments, so that those skilled in the art can better understand and implement the present invention. However, the embodiments are not intended to limit the present invention.

[0048] Please see Figure 1 This is a first embodiment of an electronic device with a light-emitting structure according to the present invention. The electronic device with a light-emitting structure includes a circuit unit 3, a side panel unit 4, and a light guide unit 5.

[0049] The circuit unit 3 includes a circuit board 31 and a light-emitting module 32 disposed on the circuit board 31. The circuit board 31 has a first surface 311 and a second surface 312 that are opposite to each other. The light-emitting module 32 is a light-emitting diode (LED) disposed on the first surface 311. In some embodiments, the light-emitting module 32 uses an omnidirectional light-emitting diode. In some embodiments, the light-emitting module 32 uses a side-fire LED. In some embodiments, the light-emitting module 32 uses a vertical-fire LED.

[0050] The side panel unit 4 includes a side panel body 41 disposed on the side of the circuit board 31, and a characteristic light-transmitting structure 42 disposed on the side panel body 41. Each light-emitting module 32 corresponds to a characteristic light-transmitting structure 42. The light emitted by the light-emitting module 32 passes through the characteristic light-transmitting structure 42 and is output outward. The characteristic light-transmitting structure 42 has a light-transmitting hole 421 disposed on the side panel body 41. The light-transmitting hole 421 is a through hole that penetrates the side panel body 41.

[0051] The light guide unit 5 includes a light guide body 51 disposed between the light-emitting module 32 and the feature light-transmitting structure 42. In some embodiments, the circuit board 31 is provided with a socket, and the light guide body 51 is disposed on the socket so that the light guide body 51 can be disposed on the side of the circuit board 31.

[0052] The light-emitting surface 321 of the light-emitting module 32 faces the light-transmitting structure 42. The light-emitting module 32 is spaced apart from the light guide body 51, which can produce a better reflection and transmission effect inside the light guide body 51. In actual implementation, the light-emitting module 32 can also contact the light guide body 51, and this should not be a limitation. In some embodiments, the side plate body 41 is the opaque surface layer of the light guide body 51. In some embodiments, the side plate body 41 further has a reflective surface (e.g., white or silver) adjacent to the light guide body 51.

[0053] The circuit board 31 and the side panel body 41 are opaque. The light emitted by the light-emitting module 32 will not penetrate the circuit board 31 and the side panel body 41. After the light emitted by the light-emitting module 32 enters the interior of the light guide body 51, the light will be reflected in the interior of the light guide body 51 in a light direction 91, and then pass out through the light-transmitting hole 421 of the characteristic light-transmitting structure 42, so that light spots or light areas are generated on the side of the side panel body 41.

[0054] Please see Figure 1 ,and Figure 2The structure of the light guide unit 5 in the characteristic light-transmitting structure 42 is shown in the local area 92. The light guide unit 5 further includes a light concentrating structure 52 disposed in the light guide body 51. The light concentrating structure 52 is disposed at a position corresponding to the characteristic light-transmitting structure 42. The light concentrating structure 52 is selected from one or a combination of a convex lens, a concave lens, a Fresnel lens, a groove, a perforation, and a reflective layer.

[0055] In some embodiments, the light-concentrating structure 52 is a plurality of (two or more) convex lenses on the upper surface of the characteristic light-transmitting structure 42. The light-concentrating structure 52 can refract the light transmitted through the light guide body 51, so that the characteristic light-transmitting structure 42 produces a focused light effect or a light well effect.

[0056] Please see Figure 1 ,and Figure 3 In some embodiments, the light-concentrating structure 52 is a plurality of concave lenses on the lower surface of the characteristic light-transmitting structure 42. The light-concentrating structure 52 can reflect the light inside the light guide body 51 so that the characteristic light-transmitting structure 42 can output more light.

[0057] In some embodiments, the light-emitting module 32 is not provided with the light guide body 51 between the light-emitting module 32 and the characteristic light-transmitting structure 42. The light-emitting module 32 is located near the characteristic light-transmitting structure 42, and the light emitted by the light-emitting module 32 can directly reach the characteristic light-transmitting structure 42 and pass outward from the characteristic light-transmitting structure 42.

[0058] Please see Figure 4 , Figure 5 ,and Figure 6 This is a second embodiment of an electronic device with a light-emitting structure according to the present invention. The second embodiment is largely the same as the first embodiment, and the similarities will not be described in detail here. The difference is that the circuit unit 3 in the above scheme further includes a memory 33 disposed on the circuit board 31 and a light control module 34 disposed on the circuit board 31. The light control module 34 is disposed on the first surface 311 and the memory 33 is disposed on the second surface 312, but this is not a limitation.

[0059] The light control module 34 is connected to the multiple light-emitting modules 32 to control the lighting effect of the multiple light-emitting modules 32. The memory 33 is a semiconductor chip used to store data, so that the electronic device with the light-emitting structure can become a computer component such as dynamic memory 33 (DRAM), CAMM 2 specification dynamic memory 33, solid-state drive (SSD). Since the light control module 34 and the memory 33 are known computer components, they will not be described in detail here.

[0060] The side panel body 41 is a heat sink, but is not limited to this. The characteristic light-transmitting structure 42 is a small hole on the side panel body 41. The light guide body 51 is disposed on the top of the circuit board 31. The light guide body 51 has a top light guide 511 disposed on the top edge of the circuit board 31. The light emitted by the light-emitting module 32 enters the top light guide 511 and then shines outward through the characteristic light-transmitting structure 42. In addition, the light in the top light guide 511 also shines outward from the top of the electronic device with the light-emitting structure to display special lighting effects in a specific area on the top.

[0061] In some embodiments, the side panel body 41 may be made of transparent metal or partially transparent metal, and the transparent portion of the side panel body 41 is the light-transmitting structure 42, so that light can pass through.

[0062] In some embodiments, a plurality of feature light-transmitting structures 42 are provided on the side panel body 41, and a plurality of light-emitting modules 32 are provided on the circuit board 31. One feature light-transmitting structure 42 corresponds to one light-emitting module 32. The light control module 34 controls the lighting effect of the plurality of light-emitting modules 32 respectively, so that the light transmitted by the plurality of feature light-transmitting structures 42 forms graphics or animations.

[0063] Please see Figure 7 ,and Figure 8 This is a third embodiment of an electronic device with a light-emitting structure according to the present invention. The third embodiment is largely the same as the second embodiment, and the similarities will not be described in detail here. The difference is that in the third embodiment, the light guide body 51 in the above solution is disposed on the top and side of the circuit board 31, and the light guide body 51 has a side light guide 512 disposed on the side of the circuit board 31.

[0064] The light-emitting module 32 and the side light guide 512 are disposed on the first surface 311 of the circuit board 31, the top light guide 511 is disposed at one end of the circuit board 31, and the memory 33 is disposed on the second surface 312 of the circuit board 31.

[0065] The light-emitting module 32 is spaced apart from the top light guide 511 and the side light guide 512. The light emitted by the light-emitting module 32 enters the top light guide 511 and the side light guide 512 respectively. The light inside the top light guide 511 shines outward from the top of the electronic device with the light-emitting structure, and the light inside the side light guide 512 shines outward from the light-transmitting hole 421 of the characteristic light-transmitting structure 42.

[0066] The outer surface of the side panel body 41 is printed with a human figure 21, but this is not a limitation. The light-transmitting structure 42 is located at the eyes of the human figure 21, which can make the eyes of the human figure 21 emit light. The light control module 34 controls the light-emitting module 32 to emit flashing red light so that the eyes of the human figure 21 can emit flashing red light. In actual implementation, the light-transmitting structure 42 can also output other lighting effects, and should not be limited to this.

[0067] The light guide body 51 can use either a general light guide material or a total internal reflection light guide material. The general light guide material is transparent resin, whose inner surface reflection can efficiently guide light entering from one side to the other. Total internal reflection is an optical phenomenon where, when light passes through two media with different refractive indices, some of the light is refracted at the interface, while the rest is reflected. When the angle of incidence is greater than the critical angle, the light stops entering the other interface and is entirely reflected inwards.

[0068] The light guide body 51 using total internal reflection light guide material of this utility model has three options: 1. The light guide body 51 is a total internal reflection structure as a whole; 2. The light guide body 51 has an opening in its structure to allow light to pass through directly; 3. The light guide body 51 not only has an opening, but also has a light guide body 51 that can focus and / or reflect light at the opening, such as a concave lens, a convex lens, a reflector, etc., which can optimize the light distribution and enhance the visual effect structure.

[0069] Please see Figure 9 This is a fourth embodiment of an electronic device with a light-emitting structure according to the present invention. The fourth embodiment is largely the same as the first embodiment, and the similarities will not be described in detail here. The difference is that the fourth embodiment has a plurality of light-transmitting holes 421 disposed on the side plate body 41 in the feature light-transmitting structure 42 of the above scheme, and the aperture of the plurality of light-transmitting holes 421 is the same.

[0070] The structure of the plurality of light-transmitting holes 421 is a type of micro-drill holes. The plurality of light-transmitting holes 421 are arranged in a matrix. The diameter of the plurality of light-transmitting holes 421 is less than 1 mm, but is not limited thereto.

[0071] Please see Figure 10 This is the fifth embodiment of an electronic device with a light-emitting structure according to the present invention. The fifth embodiment is largely the same as the first embodiment, and the similarities will not be described in detail here. The difference is that the light-transmitting structure 42 in the above scheme has a plurality of light-transmitting holes 421 disposed on the side plate body 41, and the apertures of the plurality of light-transmitting holes 421 are not the same.

[0072] The structure of the plurality of light-transmitting holes 421 is a micro-drill holes. The diameter of the plurality of light-transmitting holes 421 is 0.4 mm, and the center distance between the holes is 0.8 mm. In actual implementation, the diameter of the plurality of light-transmitting holes 421 can also be other sizes, and the center distance between the holes can also be other distances, and should not be limited to these.

[0073] Please see Figure 11 This is a sixth embodiment of an electronic device with a light-emitting structure according to the present invention. The sixth embodiment is largely the same as the second embodiment, and the similarities will not be described in detail here. The difference is that the light guide unit 5 in the above scheme includes a feature combination body 53 that can be detachably combined with the feature light-transmitting structure 42. The light emitted by the light-emitting module 32 passes through the feature combination body 53 and is output to the outside.

[0074] The feature assembly body 53 has a combined protrusion 531 for insertion into the feature light-transmitting structure 42 to fix the feature assembly body 53 to the side plate body 41. The feature assembly body 53 protrudes outward relative to the side plate body 41, and can present a luminous three-dimensional shape. For example, the appearance of the feature assembly body 53 can present a three-dimensional shape of animals, weapons, vehicles, etc. The feature assembly body 53 can use general light guide materials or total internal reflection light guide materials to allow light to pass through outward.

[0075] In this sixth embodiment, the feature light-transmitting structure 42 is disposed on the side of the top light guide 511. The feature combination body 53 inserted into the feature light-transmitting structure 42 is connected to the light guide body 51. The light emitted by the light-emitting module 32 enters the light guide body 51 and is then guided into the feature combination body 53 so that the feature combination body 53 emits light as a whole.

[0076] Please see Figure 12 This is a seventh embodiment of an electronic device with a light-emitting structure according to the present invention. The seventh embodiment is largely the same as the sixth embodiment, and the similarities will not be described in detail here. The difference is that the light guide body 51 in the above solution further includes a side light guide 512 connected to the top light guide 511.

[0077] The light-emitting module 32 is located between the top light guide 511 and the feature light-transmitting structure 42. The side light guide 512 connects the top light guide 511 and the feature light-transmitting structure 42. The light-emitting module 32 is spaced apart from the top light guide 511 and the side light guide 512.

[0078] The light emitted by the light-emitting module 32 enters the top light guide 511, and the light inside the top light guide 511 shines out from the top of the electronic device with the light-emitting structure.

[0079] The feature assembly body 53 inserted into the feature light-transmitting structure 42 is connected to the light guide body 51. The light emitted by the light-emitting module 32 enters the side light guide 512 and then enters the feature assembly body 53, so that the feature assembly body 53 emits light as a whole.

[0080] Please see Figure 13 This is an eighth embodiment of an electronic device with a light-emitting structure according to the present invention. The eighth embodiment is largely the same as the seventh embodiment, and the similarities will not be described in detail here. The difference is that in the eighth embodiment, the top light guide 511 and the side light guide 512 in the above scheme are spaced apart.

[0081] The light-emitting module 32 is disposed between the top light guide 511 and the side light guide 512. The top light guide 511 is connected to a feature light-transmitting structure 42, and the side light guide 512 is connected to another feature light-transmitting structure 42. A combination protrusion 531 of a feature combination body 53 is inserted into each of the two feature light-transmitting structures 42. The two feature combination bodies 53 are respectively connected to the top light guide 511 and the side light guide 512.

[0082] After the light emitted by the light-emitting module 32 enters the top light guide 511, the light inside the top light guide 511 not only enters the feature assembly body 53 and shines outward, but also shines out from the top of the electronic device with the light-emitting structure. After the light emitted by the light-emitting module 32 enters the side light guide 512, the light inside the side light guide 512 enters the feature assembly body 53 and shines outward.

[0083] Please see Figure 14 This is a ninth embodiment of an electronic device with a light-emitting structure according to the present invention. The ninth embodiment is largely the same as the second embodiment, and the similarities will not be described in detail here. The difference is that in the ninth embodiment, the light-emitting module 32 and the characteristic light-transmitting structure 42 in the above scheme are disposed on opposite sides of the circuit board 31, and the light guide body 51 is disposed between the light-emitting module 32 and the characteristic light-transmitting structure 42.

[0084] The light-emitting surface 321 of the light-emitting module 32 faces the top light guide 511. After the light emitted by the light-emitting module 32 enters the light guide body 51, it is reflected in the light guide body 51 to the characteristic light-transmitting structure 42 and passes through the characteristic light-transmitting structure 42 to the outside. Since the light-emitting module 32 and the characteristic light-transmitting structure 42 are located on opposite sides of the circuit board 31, if the light guide body 51 is not provided, the light emitted by the light-emitting module 32 will have difficulty reaching the characteristic light-transmitting structure 42. Therefore, the light guide body 51 can guide the light of the light-emitting module 32 to the characteristic light-transmitting structure 42.

[0085] Please see Figure 15 This is a tenth embodiment of an electronic device with a light-emitting structure according to the present invention. The tenth embodiment is largely the same as the second embodiment, and the similarities will not be described in detail here. The difference is that in the tenth embodiment, a light-emitting module 32 is provided on the first surface 311 of the above scheme, and another light-emitting module 32 is provided on the second surface 312. The cross-sectional structure of the light guide body 51 is generally inverted U-shaped.

[0086] The light-emitting surfaces 321 of the two light-emitting modules 32 face the light guide body 51 respectively, so that the light emitted by the light-emitting module 32 can enter the light guide body 51. The light guide body 51 is connected to two characteristic light-transmitting structures 42, and the light inside the light guide body 51 passes through the two characteristic light-transmitting structures 42 and shines outward.

[0087] As can be seen from the above description, the electronic device with a light-emitting structure of this utility model does indeed have the following effects:

[0088] 1. It can emit light on the plate:

[0089] Generally, opaque plates or common heat sinks cannot display the light emitted by the light-emitting module 32. The light-transmitting structure 42 is the light-transmitting hole 421 on the side plate body 41, which enables the side of the opaque side plate body 41 to emit light spots or light areas. Therefore, this utility model has the purpose of emitting light on an opaque plate.

[0090] II. Make the graphics more vivid:

[0091] The outer surface of the side panel body 41 can also be printed with graphics. The light-transmitting structure 42 can be matched with the graphics and light-transmitting holes 421 can be set at any position on the side panel body 41. The light guide body 51 can guide the light emitted by the light-emitting module 32 to the position of the light-transmitting hole 421 so that specific positions on the graphics can emit light. With the control of the light control module 34, static patterns can be combined with dynamic lighting effects to achieve a more vivid graphic effect.

[0092] III. Presents a three-dimensional luminescent structure:

[0093] The combined protrusion 531 of the feature combination body 53 can be fixed in the feature light-transmitting structure 42, and the feature combination body 53 protrudes outward relative to the side plate body 41 to present a three-dimensional light-emitting shape, so that the side of the side plate body 41 can present a three-dimensional light-emitting structure.

[0094] In summary, the light-emitting surface 321 of the light-emitting module 32 faces the light-guiding body 51, so that light can enter the light-guiding body 51 and be guided to the characteristic light-transmitting structure 42. The characteristic light-transmitting structure 42 is an opening on the side plate body 41, which can generate light spots or light areas on the opaque side plate body 41. The light-guiding body 51 can guide light to any position on the side plate body 41, so that the position of the light-transmitting hole 421 of the characteristic light-transmitting structure 42 can match the graphic printed on the side of the side plate body 41, so that the static pattern is combined with the dynamic lighting effect and achieves a more vivid graphic effect. In addition, the characteristic combination body 53 can present a three-dimensional light-emitting structure on the side of the side plate body 41, so the purpose of this utility model can indeed be achieved.

[0095] The embodiments described above are merely preferred embodiments for fully illustrating the present utility model, and the protection scope of the present utility model is not limited thereto. Equivalent substitutions or modifications made by those skilled in the art based on the present utility model, or reasonable combinations of solutions from the various embodiments, are all within the protection scope of the present utility model.

[0096] The scope of protection of this utility model is not limited to the specific embodiments described above, but also includes any combination of the technical features in the above specific embodiments to form the implementation scheme.

Claims

1. An electronic device having a light-emitting structure, characterized in that, Include: A circuit unit includes a circuit board and a light-emitting module disposed on the circuit board; and A side panel unit includes a side panel body disposed on the side of the circuit board, and a characteristic light-transmitting structure disposed on the side panel body, wherein the light emitted by the light-emitting module passes through the characteristic light-transmitting structure and is output outward.

2. The electronic device having a light-emitting structure as described in claim 1, characterized in that, It further includes a light guide unit, which includes a light guide body disposed between the light-emitting module and the feature light-transmitting structure, with the light-emitting surface of the light-emitting module facing the feature light-transmitting structure.

3. The electronic device having a light-emitting structure as described in claim 2, characterized in that, The light guide unit further includes a light concentrating structure disposed in the light guide body. The position of the light concentrating structure corresponds to the characteristic light-transmitting structure, which is selected from one or a combination of a convex lens, a concave lens, a Fresnel threaded lens, a groove, a perforation, and a reflective layer.

4. The electronic device having a light-emitting structure as described in claim 2, characterized in that, The light guide body is disposed on the top and / or side of the circuit board.

5. The electronic device having a light-emitting structure as described in claim 1, characterized in that, It further includes a light guide unit, which includes a feature assembly body that can be detachably combined with the feature light-transmitting structure, and the light emitted by the light-emitting module passes through the feature assembly body and is output to the outside.

6. The electronic device having a light-emitting structure as described in claim 1, characterized in that, The circuit unit further includes a light control module disposed on the circuit board.

7. The electronic device having a light-emitting structure as described in claim 1, characterized in that, The light-transmitting structure has a light-transmitting hole disposed in the main body of the side plate.

8. The electronic device having a light-emitting structure as described in claim 1, characterized in that, The light-transmitting structure has a plurality of light-transmitting holes disposed on the main body of the side plate, and the plurality of light-transmitting holes have the same aperture.

9. The electronic device having a light-emitting structure as described in claim 1, characterized in that, The light-transmitting structure has a plurality of light-transmitting holes disposed on the main body of the side plate, and the apertures of the plurality of light-transmitting holes are not the same.

10. The electronic device having a light-emitting structure as claimed in claim 1, characterized in that, The circuit unit further includes a memory disposed on the circuit board.