Case and electronic equipment

By integrating multi-mode heat dissipation module and lighting source module in the chassis, the problems of single heat dissipation functions and single appearance visual effects of the existing chassis are solved, and the effect of dynamically adjusting the heat dissipation effect and enhancing visual diversity is achieved.

CN120010632APending Publication Date: 2025-05-16LENOVO (BEIJING) LTD
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Patent Information

Application Number
CN202510213045.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-25
Publication Date
2025-05-16

AI Technical Summary

Technical Problem

The existing chassis has a single heat dissipation function, making it difficult to dynamically adjust the heat dissipation effect according to the different working conditions of electronic devices, and the appearance and visual effects are single, which lacks diversity.

Method used

A chassis is designed to integrate a heat dissipation module and a light source module. The heat dissipation module has multiple different heat dissipation modes. The light source module switches different lighting effect modes according to the heat dissipation mode, thereby adjusting the heat dissipation effect and visual effect under different working conditions.

Benefits of technology

It realizes dynamic adjustment of the heat dissipation effect according to the working status of the electronic equipment, improves the heat dissipation performance and user experience of the chassis, and improves the performance and aesthetics of the chassis through diversified visual effects.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a case and electronic equipment. The case comprises a case body; the heat dissipation module is arranged on the box body, the heat dissipation module at least has a first heat dissipation mode and a second heat dissipation mode, and the heat dissipation capabilities of the first heat dissipation mode and the second heat dissipation mode are different; the light source module is arranged on the box body, and at least part of the light source module is arranged opposite to the heat dissipation module; under the condition that the heat dissipation module is in the first heat dissipation mode, the light source module has a first lamp effect; under the condition that the heat dissipation module is in the second heat dissipation mode, the light source module has a second lamp effect; wherein under the condition that the light source module is in the first lamp effect or the second lamp effect, the visual effects of the box body are different.
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Description

Technical Field

[0001] The present disclosure relates to the technical field of electronic equipment, and in particular to a chassis and electronic equipment. Background Art

[0002] The chassis is an important component of electronic equipment. The chassis usually has a heat dissipation function to ensure the reliable operation of electronic equipment. The chassis includes a box body, in which components such as fans, motherboards, processors, and graphics cards are installed. In related technologies, the box body is mainly used to accommodate and protect multiple components inside, and the function of the box body is relatively simple. Summary of the invention

[0003] The present disclosure provides a chassis, an electronic device, and a control method of the electronic device.

[0004] A first aspect of the present disclosure provides a chassis, comprising:

[0005] Box;

[0006] A heat dissipation module is provided in the box body, the heat dissipation module has at least a first heat dissipation mode and a second heat dissipation mode, and the heat dissipation capabilities of the first heat dissipation mode and the second heat dissipation mode are different;

[0007] A light source module is disposed in the box, and at least a portion of the light source module is disposed opposite to the heat dissipation module;

[0008] When the heat dissipation module is in the first heat dissipation mode, the light source module has a first lighting effect;

[0009] When the heat dissipation module is in the second heat dissipation mode, the light source module has a second lighting effect;

[0010] Wherein, when the light source module is in the first lighting effect or the second lighting effect, the visual effect of the box is different.

[0011] According to an embodiment of the present disclosure, the box body includes two ends arranged at an interval, and a plurality of side portions connecting the two ends;

[0012] At least one of the end portions includes the heat dissipation module and the light source module, and / or at least one of the side portions includes the heat dissipation module and the light source module.

[0013] According to an embodiment of the present disclosure, the chassis further includes a control module;

[0014] The control module is in communication with the heat dissipation module, and is used to control the heat dissipation module to switch to the first heat dissipation mode or the second heat dissipation mode corresponding to the current working state according to the current working state of the chassis;

[0015] The control module is communicatively connected to the light source module, and is used to control the light source module to have the first lighting effect when the heat dissipation module is in the first heat dissipation mode, and to control the light source module to have the second lighting effect when the heat dissipation module is in the second heat dissipation mode.

[0016] According to an embodiment of the present disclosure, the box body is provided with an opening;

[0017] The heat dissipation module comprises:

[0018] An air guide plate is provided at the opening, the air guide plate can be switched between a closed state and an open state, and in the open state, an air inlet is formed on the air guide plate;

[0019] A driving mechanism, disposed on a side of the air guide plate facing the inside of the box, and used for driving the air guide plate to switch between the closed state and the open state;

[0020] When the heat dissipation module is in the first heat dissipation mode, the air guide plate is in the closed state, the light source module has the first lighting effect, and the light emitted by the light source module can irradiate the air guide plate;

[0021] When the heat dissipation module is in the second heat dissipation mode, the air guide plate is in the open state, the light source module has the second lighting effect, and the light emitted by the light source module can irradiate the air guide plate.

[0022] According to an embodiment of the present disclosure, the heat dissipation module further includes:

[0023] A support frame connected to the box body and located at the opening;

[0024] A movable plate is movably arranged on a side of the air guide plate facing the inside of the box, and a first connecting portion is arranged on a side of the movable plate facing the air guide plate;

[0025] A support rod connected to the support frame;

[0026] The air guide plate includes a plurality of air guide blades, the air guide blades are rotatably connected to the support rods, a second connection portion is provided on a side of the air guide blades facing the inside of the box, and the second connection portion is movably connected to the first connection portion;

[0027] The driving mechanism is disposed on the support frame, and the driving end of the driving mechanism is connected to the movable plate, and is used to drive the movable plate to move toward or away from the air guide plate, so that the first connecting portion drives the air guide plate to rotate, so as to form an air inlet area at the air guide plate;

[0028] The light emitted by the light source module can irradiate the air guide plate.

[0029] According to an embodiment of the present disclosure, the light source module includes:

[0030] A circuit board is arranged on a side of the air guide plate facing the outside of the box, the circuit board is provided with a first through hole, and the first through hole is communicated with the air inlet;

[0031] The light source is disposed on the circuit board and electrically connected to the circuit board, and the light emitted by the light source can irradiate the air guide plate.

[0032] According to an embodiment of the present disclosure, the circuit board includes a plurality of circuit units located in the same plane, and the hollow areas between the plurality of circuit units form the first through opening;

[0033] The plurality of light sources correspond to the plurality of circuit units one by one, and the light source is arranged at the central area of ​​the circuit unit so that the light emitted by the light source can irradiate any of the air guide plates.

[0034] According to an embodiment of the present disclosure, the chassis further comprises a mounting plate, the mounting plate being arranged on a side of the light source module away from the heat dissipation module, and the circuit board being connected to the mounting plate;

[0035] The mounting plate comprises:

[0036] A mounting frame connected to the support frame; and

[0037] A plurality of shielding parts are arranged on the installation frame, and the shielding parts are arranged corresponding to the circuit units, the plurality of shielding parts are connected to each other, and the hollow areas between the plurality of shielding parts form a second through opening, and the second through opening, the first through opening and the air inlet are connected to each other.

[0038] According to an embodiment of the present disclosure, a clamping portion is provided on a side of the mounting frame facing the opening, and the clamping portion is clamped with the support frame.

[0039] A second aspect of the present disclosure provides an electronic device, including:

[0040] Electronic devices; and

[0041] A chassis, wherein the electronic device is arranged in a housing space of the chassis;

[0042] Wherein, the chassis comprises:

[0043] Box;

[0044] A heat dissipation module is provided in the box body, the heat dissipation module has at least a first heat dissipation mode and a second heat dissipation mode, and the heat dissipation capabilities of the first heat dissipation mode and the second heat dissipation mode are different;

[0045] A light source module is disposed in the box, and at least a portion of the light source module is disposed opposite to the heat dissipation module;

[0046] When the heat dissipation module is in the first heat dissipation mode, the light source module has a first lighting effect;

[0047] When the heat dissipation module is in the second heat dissipation mode, the light source module has a second lighting effect;

[0048] Wherein, when the light source module is in the first lighting effect or the second lighting effect, the visual effect of the box is different.

[0049] A third aspect of the present disclosure provides a control method for an electronic device, the control method comprising:

[0050] Obtain a target cooling mode of a cooling module of the chassis;

[0051] When the target heat dissipation mode is the first heat dissipation mode, controlling the light source module of the chassis to be in a first lighting effect;

[0052] When the target heat dissipation mode is the second heat dissipation mode, controlling the light source module of the chassis to be in a second lighting effect;

[0053] The first heat dissipation mode and the second heat dissipation mode have different heat dissipation capabilities, and when the light source module is in the first lighting effect or the second lighting effect, the visual effects of the chassis body are different. BRIEF DESCRIPTION OF THE DRAWINGS

[0054] For a more complete understanding of the present disclosure and its advantages, reference will now be made to the following description taken in conjunction with the accompanying drawings, in which:

[0055] Figure 1 The schematic diagram of the structure of the chassis according to the embodiment of the present disclosure is shown;

[0056] Figure 2 Schematically shows an exploded schematic diagram of a chassis according to an embodiment of the present disclosure (the chassis is not shown);

[0057] Figure 3 The schematic diagram of assembling the heat dissipation module, the light source module and the mounting plate according to the embodiment of the present disclosure is schematically shown;

[0058] Figure 4 One of the schematic diagrams of assembling the air guide plate and the support rod according to an embodiment of the present disclosure is schematically shown;

[0059] Figure 5 The second schematic diagram of assembling the air guide plate and the support rod according to the embodiment of the present disclosure is schematically shown;

[0060] Figure 6 The structure diagram of the movable plate according to the embodiment of the present disclosure is schematically shown;

[0061] Figure 7 A schematic diagram of a partial structure of a movable plate according to an embodiment of the present disclosure is shown;

[0062] Figure 8 One of the structural schematic diagrams of the air guide plate according to the embodiment of the present disclosure is schematically shown;

[0063] Fig. 9 The second schematic diagram of the structure of the air guide piece according to the embodiment of the present disclosure is schematically shown;

[0064] Fig.10 A schematic diagram of the connection between the air guide plate and the movable plate according to an embodiment of the present disclosure is schematically shown;

[0065] Fig.11 Schematically shows one of the patterns formed on the air guide plate according to an embodiment of the present disclosure (only the pattern at one air guide unit is shown);

[0066] Fig.12 Schematically shows one of the patterns formed on the air guide plate according to an embodiment of the present disclosure (only the pattern at one air guide unit is shown);

[0067] Fig.13 The structure diagram of the light source module according to the embodiment of the present disclosure is schematically shown;

[0068] Fig.14 One of the structural schematic diagrams of the mounting plate according to the embodiment of the present disclosure is schematically shown;

[0069] Fig.15 The second structural schematic diagram of the mounting plate according to the embodiment of the present disclosure is schematically shown.

[0070] Reference numerals:

[0071] 10. Box body; 11. First end portion; 12. First side portion; 13. Third side portion; 20. Heat dissipation module; 21. Air guide plate; 211. Air guide piece; 2111. Rotating connection portion; 21111. Slot; 2112. Second connection portion; 21121. Guide groove; 212. Air guide unit; 22. Driving mechanism; 23. Support frame; 24. Movable plate; 241. First connection portion; 2411. Connection block; 2412. Guide column; 25. Support rod; 30. Light source module; 31. Circuit board; 311. Circuit unit; 300. First through-hole; 32. Light source; 40. Mounting plate; 41. Mounting frame; 411. Clamping portion; 42. Shielding portion; 400. Second through-hole. DETAILED DESCRIPTION

[0072] Hereinafter, embodiments of the present disclosure will be described with reference to the accompanying drawings. However, it should be understood that these descriptions are exemplary only and are not intended to limit the scope of the present disclosure. In addition, in the following description, descriptions of well-known structures and technologies are omitted to avoid unnecessary confusion of the concepts of the present disclosure.

[0073] The terms used herein are only for describing specific embodiments and are not intended to limit the present disclosure. The terms "comprise", "include", etc. used herein indicate the existence of the features, steps, operations and / or components, but do not exclude the existence or addition of one or more other features, steps, operations or components.

[0074] All terms (including technical and scientific terms) used herein have the meanings commonly understood by those skilled in the art unless otherwise defined. It should be noted that the terms used herein should be interpreted as having a meaning consistent with the context of this specification and should not be interpreted in an idealized or overly rigid manner.

[0075] In the embodiments of the present disclosure, Figures 1 to 3 As shown, the chassis includes a case 10, a heat dissipation module 20 and a light source module 30. The heat dissipation module 20 is arranged in the case 10, and the heat dissipation module 20 has at least a first heat dissipation mode and a second heat dissipation mode, and the heat dissipation capacities of the first heat dissipation mode and the second heat dissipation mode are different. The light source module 30 is arranged in the case 10, and at least a part of the light source module 30 is arranged opposite to the heat dissipation module 20. When the heat dissipation module 20 is in the first heat dissipation mode, the light source module 30 has a first lighting effect; when the heat dissipation module 20 is in the second heat dissipation mode, the light source module 30 has a second lighting effect. Among them, when the light source module 30 is in the first lighting effect or the second lighting effect, the visual effect of the case 10 is different.

[0076] The structure of the housing 10 is not specifically limited. The housing 10 may be a hollow square body. For example, the housing 10 is a hollow cuboid. The housing 10 has a length direction, a width direction, and a height direction. The housing 10 includes two ends and four side portions connecting the two ends. The heat dissipation module 20 and the light source module 30 may be located at the ends, that is, one end of the housing 10 includes the heat dissipation module 20 and the light source module 30, or a part of an end portion is composed of the heat dissipation module 20 and the light source module 30. The heat dissipation module 20 and the light source module 30 may also be located at the side, that is, one side of the housing 10 includes the heat dissipation module 20 and the light source module 30, or a part of a side portion is composed of the heat dissipation module 20 and the light source module 30. It is understandable that an opening is provided at the end or side of the housing 10, and the heat dissipation module 20 and the light source module 30 are installed at the opening. The heat dissipation module 20 and the light source module 30 can be arranged at the opening of the box body 10 in sequence along the length direction of the box body 10, the heat dissipation module 20 and the light source module 30 can be arranged at the opening of the box body 10 in sequence along the width direction of the box body 10, and the heat dissipation module 20 and the light source module 30 can also be arranged at the opening of the box body 10 in sequence along the height direction of the box body 10.

[0077] In some embodiments, the heat dissipation module 20 adjusts the air inlet area so that the heat dissipation module 20 has a first heat dissipation mode and a second heat dissipation mode. For example, the heat dissipation module 20 includes a fixed plate and a movable plate, and the movable plate can move equivalent to the fixed plate, so that a gap is formed between the movable plate and the fixed plate. The larger the gap, the larger the air inlet area; the smaller the gap, the smaller the air inlet area. The air inlet area is adjusted by adjusting the movement amount of the movable plate. For example, the heat dissipation module 20 includes a plurality of movable plates, and the movable plates are rotatably connected to the opening of the box 10. The plurality of movable plates are located in the same plane, and the adjacent two movable plates are close to each other, so as to block the opening of the box 10; the movable plates are rotated toward the inner side of the box 10, and an air inlet can be formed between the adjacent two movable plates. The air inlet area is adjusted by adjusting the rotation angle of the movable plates. The larger the air inlet area, the stronger the heat dissipation capacity. The heat dissipation capacity in the first heat dissipation mode can be zero, that is, the air inlet area is zero. By adjusting the air inlet area, the heat dissipation capacity in the second heat dissipation mode is greater than the heat dissipation capacity in the first heat dissipation mode.

[0078] In some embodiments, the heat dissipation module 20 further includes a fan, which is installed in the housing 10. The heat dissipation module 20 can have a first heat dissipation mode and a second heat dissipation mode by adjusting the fan speed. The greater the fan speed, the stronger the heat dissipation capacity. The heat dissipation capacity in the first heat dissipation mode can be zero, that is, the fan speed is zero. By adjusting the fan speed, the heat dissipation capacity in the second heat dissipation mode is greater than the heat dissipation capacity in the first heat dissipation mode.

[0079] In some embodiments, the heat dissipation module 20 has a first heat dissipation mode and a second heat dissipation mode by adjusting the air intake area and the fan speed at the same time.

[0080] It is understandable that by adjusting the air inlet area and / or the fan speed, the heat dissipation module 20 also has a third heat dissipation mode, a fourth heat dissipation mode, etc., the heat dissipation capacity of the third heat dissipation mode is greater than the heat dissipation capacity of the second heat dissipation mode, and the heat dissipation capacity of the fourth heat dissipation mode is greater than the heat dissipation capacity of the third heat dissipation mode. The number of heat dissipation modes is set according to actual needs.

[0081] The chassis is applied to electronic devices, including computers, etc. The electronic devices usually have multiple states, such as shutdown state, sleep state, first working state, second working state, etc. The first working state is a low-load working state, and the second working state is a high-load working state. The heat dissipation module 20 can switch between multiple heat dissipation modes according to the state of the electronic device. For example, when the electronic device is in the shutdown state or sleep state, the heat dissipation module 20 is in the first heat dissipation mode; when the electronic device is in the low-load working state, the heat dissipation module 20 is in the second heat dissipation mode; when the electronic device is in the high-load working state, the heat dissipation module 20 is in the third heat dissipation mode.

[0082] The light source module 30 is located on one side of the heat dissipation module 20, and at least a portion of the light source module 30 is arranged opposite to the heat dissipation module 20. For example, the light source module 30 includes a light source 32, and the light emitting surface of the light source 32 is opposite to the heat dissipation module 20. The light source 32 includes an LED lamp. The light source module 30 can switch between multiple lighting effect modes, and the number of lighting effect modes is set according to actual needs. The light source module 30 can have multiple lighting effect modes by adjusting the number of light sources 32, the color of the light, the brightness of the light, the position of the light source 32, etc.

[0083] In some embodiments, the position of the light source 32 is fixed, and the light source 32 can emit light of multiple colors such as red light, blue light, green light, and yellow light. The light source 32 can also emit light of gradient colors. For example, the light source 32 can intermittently emit blue light, and the light source 32 is in a flashing state, that is, the light source 32 switches cyclically between the off state and the blue light state, so that the light source module 30 has a first lighting effect. The light source 32 changes from the off state to the blue light state, and the brightness of the blue light gradually changes from weak to strong; the light source 32 changes from the blue light state to the off state, and the brightness of the blue light gradually changes from strong to weak. The light source 32 can continuously emit blue light, so that the light source module 30 has a second lighting effect; the light source 32 can continuously emit red light, so that the light source module 30 has a third lighting effect.

[0084] When the light source module 30 is in the first lighting effect, the light emitted by the light source module 30 can irradiate the heat dissipation module 20 and its vicinity, so that an intermittent blue pattern can be presented on the box 10; when the light source module 30 is in the second lighting effect, the light emitted by the light source module 30 can irradiate the heat dissipation module 20 and its vicinity, so that a blue pattern can be presented on the box 10; when the light source module 30 is in the third lighting effect, the light emitted by the light source module 30 can irradiate the heat dissipation module 20 and its vicinity, so that a red pattern can be presented on the box 10. Thus, the box 10 can present two or more visual effects.

[0085] Optionally, the geometric size of the red pattern is larger than the geometric size of the blue pattern.

[0086] In some embodiments, the number of light sources 32 is multiple, and the multiple light sources 32 are spaced apart on one side of the heat dissipation module 20. The multiple light sources 32 can be arranged in an array. For example, the multiple light sources 32 are arranged in three rows and three columns, and the multiple light sources 32 include a first light source unit, a second light source unit, and a third light source unit. For example, when the light source module 30 is in the first lighting effect mode, the first light source 32 unit intermittently emits blue light, and the blue light can irradiate the heat dissipation module 20 and its vicinity; when the light source module 30 is in the second lighting effect mode, the blue light emitted by the second light source unit can irradiate the heat dissipation module 20 and its vicinity; when the light source module 30 is in the third lighting effect mode, the red light emitted by the third light source unit can irradiate the heat dissipation module 20 and its vicinity. As a result, the box 10 can present two or more visual effects.

[0087] In some embodiments, the light source 32 may be movably disposed on one side of the heat dissipation module 20 , and the box 10 may present two or more visual effects by adjusting the angle between the light emitting surface of the light source 32 and the heat dissipation module 20 .

[0088] When the heat dissipation module 20 is in the first heat dissipation mode, the light source module 30 is in the first lighting effect mode, so that a first visual effect is presented on the box 10; when the heat dissipation module 20 is in the second heat dissipation mode, the light source module 30 is in the second lighting effect mode, so that a second visual effect is presented on the box 10; when the heat dissipation mode is in the third heat dissipation mode, the light source mode is in the third lighting effect mode, so that a third visual effect is presented on the box 10.

[0089] When using an electronic device, the user can perceive the working state of the electronic device based on the visual effects presented on the case 10. For example, when the electronic device is in a sleep state, an intermittent blue pattern appears on the case 10; when the electronic device is in a low-load working state, a blue pattern appears on the case 10; when the electronic device is in a high-load working state, a red pattern appears on the case 10. Compared with the monotonous appearance of a traditional chassis, the heat dissipation module 20 can present different visual effects on the case 10 in different heat dissipation modes, effectively improving the user experience.

[0090] In this embodiment, the heat dissipation module 20 and the light source module 30 constitute a part of the box body 10, at least a part of the light source module 30 is arranged opposite to the heat dissipation module 20, the heat dissipation module 20 can switch between two or more heat dissipation modes, and the light source module 30 can be in a lighting effect mode corresponding to the heat dissipation mode, so that the box body 10 can present different visual effects in different heat dissipation modes, thereby improving the performance of the chassis and helping to improve the user experience.

[0091] In the embodiments of the present disclosure, Figure 1 As shown, the housing 10 includes two ends spaced apart and a plurality of side portions connecting the two ends. At least one end includes a heat dissipation module 20 and a light source module 30, and / or at least one side includes a heat dissipation module 20 and a light source module 30.

[0092] Exemplarily, the box body 10 is a square box body, the length direction of the box body 10 is the front-to-back direction, the width direction is the left-to-right direction, and the height direction is the up-down direction. The box body 10 includes two ends, which are defined as a first end 11 and a second end, and the first end 11 and the second end are arranged oppositely along the front-to-back direction. The box body 10 also includes four side portions, which are defined as a first side portion 12, a second side portion, a third side portion 13, and a fourth side portion, the first side portion 12 and the second side portion are arranged oppositely along the left-to-right direction, and the third side portion 13 and the fourth side portion are arranged oppositely along the up-down direction. Depending on the placement orientation of the chassis, the first end portion 11, the first side portion 12, or the second side portion faces the user.

[0093] Part of the first end portion 11 is composed of the heat dissipation module 20 and the light source module 30, or the first end portion 11 is entirely composed of the heat dissipation module 20 and the light source module 30. The structure of the second end portion may be the same as that of the first end portion 11. Part of the first side portion 12 is composed of the heat dissipation module 20 and the light source module 30, or the first side portion 12 is entirely composed of the heat dissipation module 20 and the light source module 30. The structure of the second side portion may be the same as that of the first side portion 12. Part of the third side portion 13 is composed of the heat dissipation module 20 and the light source module 30, or the third side portion 13 is entirely composed of the heat dissipation module 20 and the light source module 30. The structure of the fourth side portion may be the same as that of the third side portion 13.

[0094] One or more of the first end 11, the second end, the first side 12, the second side, the third side 13, and the fourth side are in the first lighting effect mode, so that one or more surfaces of the cabinet 10 can present a first visual effect. One or more of the first end 11, the second end, the first side 12, the second side, the third side 13, and the fourth side are in the second lighting effect mode, so that one or more surfaces of the cabinet 10 can present a second visual effect, and the cabinet 10 can present a pattern different from the first visual effect. One or more of the first end 11, the second end, the first side 12, the second side, the third side 13, and the fourth side are in the third lighting effect mode, so that one or more surfaces of the cabinet 10 can present a third visual effect, and the cabinet 10 can present a pattern different from the first visual effect and the second visual effect.

[0095] In some embodiments, the light source module 30 at the first end 11 can intermittently emit blue light, so that the first end surface of the box 10 presents a first visual effect; the light source module 30 at the first end 11 can continuously emit blue light, so that the first end surface of the box 10 presents a second visual effect; the light source module 30 at the first end 11 can continuously emit red light, so that the first end surface of the box 10 presents a third visual effect.

[0096] In some embodiments, the light source module 30 at the first end 11, the first side 12 and the second side can emit blue light intermittently, so that the first end surface, the first side surface and the second side surface of the box body 10 present a first visual effect; the light source module 30 at the first end 11, the first side 12 and the second side can emit blue light continuously, so that the first end surface, the first side surface and the second side surface of the box body 10 present a second visual effect; the light source module 30 at the first end 11, the first side 12 and the second side can emit red light continuously, so that the first end surface, the first side surface and the second side surface of the box body 10 present a third visual effect.

[0097] In some embodiments, the light source module 30 of the first end 11, the first side 12, the second side and the third side 13 can intermittently emit blue light, so that the first end surface, the first side surface, the second side surface and the third side surface of the box body 10 present a first visual effect; the light source module 30 of the first end 11, the first side 12, the second side and the third side 13 can continuously emit blue light, so that the first end surface, the first side surface, the second side surface and the third side surface of the box body 10 present a second visual effect; the light source module 30 of the first end 11, the first side 12, the second side and the third side 13 can continuously emit red light, so that the first end surface, the first side surface, the second side surface and the third side surface of the box body 10 present a third visual effect.

[0098] In this embodiment, the heat dissipation module 20 and the light source module 30 are arranged on at least one end and / or at least one side of the box body, so that one or more surfaces of the box body 10 can present a variety of visual effects, which can improve the heat dissipation capacity of the chassis while further enhancing the user experience.

[0099] In the embodiment of the present disclosure, the control module is connected in communication with the heat dissipation module 20, and is used to control the heat dissipation module 20 to switch to the first heat dissipation mode or the second heat dissipation mode corresponding to the current working state according to the current working state of the chassis. The control module is connected in communication with the light source module 30, and is used to control the light source module 30 to have a first lighting effect when the heat dissipation module 20 is in the first heat dissipation mode, and to control the light source module 30 to have a second lighting effect when the heat dissipation module 20 is in the second heat dissipation mode.

[0100] The control module is installed in the housing 10, and the heat dissipation module 20 and the light source module 30 are both connected to the control module in communication. According to the working state of each electronic device in the chassis, the chassis has a sleep state, a low-load working state, and a high-load working state. The current working state of the chassis is a sleep state, a low-load working state, or a high-load working state.

[0101] When the chassis is in sleep mode, the control module sends a first heat dissipation signal to the heat dissipation module 20, and the heat dissipation module 20 switches to the first heat dissipation mode by adjusting the air inlet area and the fan speed. In the first heat dissipation mode, the air inlet area is zero, the fan speed is zero, the energy consumption is low, and impurities such as dust can be prevented from entering the box 10. At the same time, the control module sends a first light signal to the light source module 30, and the light source module 30 switches to the first light effect mode by adjusting parameters such as the color, brightness, and position of the light source 32, so that one or more surfaces of the box 10 present a first visual effect.

[0102] When the chassis is in a low-load working state, the control module sends a second heat dissipation signal to the heat dissipation module 20, and the heat dissipation module 20 switches to the second heat dissipation mode by adjusting the air inlet area and the fan speed. In the second heat dissipation mode, the air inlet area is greater than zero, and the fan runs at a low speed. At the same time, the control module sends a second light signal to the light source module 30, and the light source module 30 switches to the second light effect mode by adjusting the color, brightness, position of the light source 32 and other parameters of the light, so that one or more surfaces of the box 10 present a second visual effect. In the low-load working state, it can meet the heat dissipation requirements and at the same time have low energy consumption.

[0103] When the chassis is in a high-load working state, the control module sends a third heat dissipation signal to the heat dissipation module 20, and the heat dissipation module 20 switches to the third heat dissipation mode by adjusting the air inlet area and the fan speed. The air inlet area in the third heat dissipation mode is larger than the air inlet area in the second heat dissipation mode, and the fan runs at a high speed. At the same time, the control module sends a third light signal to the light source module 30, and the light source module 30 switches to the third light effect mode by adjusting the color, brightness, position of the light source 32 and other parameters of the light, so that one or more surfaces of the box 10 present a third visual effect. In a high-load working state, the heat dissipation requirements are met by increasing the air inlet area and the fan speed.

[0104] In this embodiment, the heat dissipation module 20 and the light source module 30 are both communicatively connected to the control module. The control module controls the heat dissipation module 20 to switch to the heat dissipation mode corresponding to the current working state, and controls the light source module 30 to switch to the lighting effect mode corresponding to the heat dissipation mode according to the current working state of the chassis, thereby ensuring the synchronization of switching between the heat dissipation mode and the lighting effect mode. In addition, the heat dissipation mode and the lighting effect mode correspond to the current working state of the chassis, and can take into account the comprehensive usage requirements of blocking dust and impurities, heat dissipation requirements, and low energy consumption requirements.

[0105] In the embodiments of the present disclosure, Figure 2 As shown, the heat dissipation module 20 includes an air guide plate 21 and a driving mechanism 22. The air guide plate 21 is arranged at the opening, and the air guide plate 21 can switch between a closed state and an open state. In the open state, an air inlet is formed on the air guide plate 21. The driving mechanism 22 is arranged on the side of the air guide plate 21 facing the inside of the box 10, and is used to drive the air guide plate 21 to switch between a closed state and an open state. When the heat dissipation module 20 is in the first heat dissipation mode, the air guide plate 21 is in a closed state, the light source module 30 has a first lighting effect, and the light emitted by the light source module 30 can irradiate the air guide plate 21. When the heat dissipation module 20 is in the second heat dissipation mode, the air guide plate 21 is in an open state, the light source module 30 has a second lighting effect, and the light emitted by the light source module 30 can irradiate the air guide plate 21.

[0106] Exemplarily, along the length direction of the box body 10, the first end of the box body 10 is provided with an opening, and the heat dissipation module 20 and the light source module 30 are sequentially installed at the opening of the box body 10. The heat dissipation module 20 includes an air guide plate 21 and a driving mechanism 22, the air guide plate 21 can be switched between a closed state and an open state, and the driving mechanism 22 is used to drive the air guide plate 21 to switch between the closed state and the open state.

[0107] In some embodiments, the air guide plate 21 includes a relatively fixed first part and a movable second part, the first part and the second part are in contact with each other, and the second part can move relative to the first part. The first part is provided with a plurality of through holes, the second part is located at the first position, the second part can cover the plurality of through holes, and the air guide plate 21 is in a closed state. The second part moves to the second position, the second part can cover some of the through holes, the second part moves to the third position, and the plurality of through holes are exposed. In the second position and the third position, the air guide plate 21 is in an open state, and an air inlet is formed on the air guide plate 21. The driving mechanism 22 includes a motor, the driving end of the motor is connected to the second part, and the motor can drive the second part to move to the first position, the second position or the third position.

[0108] In some embodiments, the air deflector 21 is rotatably mounted at the opening of the box 10. The air deflector 21 is located at a first position, and a first angle is formed between the air deflector 21 and the plane where the opening is located. The first angle is 0 degrees, and the air deflector 21 can block the opening. The air deflector 21 rotates to a second position, and a second angle is formed between the air deflector 21 and the plane where the opening is located. An air inlet is formed between the air deflector 21 and the box 10; the air deflector 21 rotates to a third position, and a third angle is formed between the air deflector 21 and the plane where the opening is located. The third angle is greater than the second angle. When the air deflector 21 rotates to the second angle and the third angle, the air deflector 21 is in an open state. The driving mechanism 22 includes a mechanism capable of telescopic movement, such as a cylinder, an oil cylinder, and an electric push rod. The driving end of the driving mechanism 22 is connected to the air deflector 21. Through the telescopic action of the driving mechanism 22, the air deflector 21 is driven to rotate to the first position, the second position, or the third position.

[0109] Exemplarily, the chassis switches to a sleep state, the control module controls the heat dissipation module 20 to be in a first heat dissipation mode, the drive mechanism 22 receives a first heat dissipation signal, and drives the air guide plate 21 to switch to a closed state; at the same time, the control module controls the light source module 30 to be in a first lighting effect mode, and the light source module 30 intermittently emits blue light, which is irradiated onto the air guide plate 21, so that an intermittent blue pattern appears on the air guide plate 21 of the box 10.

[0110] Exemplarily, the chassis switches to a low-load working state, the control module controls the heat dissipation module 20 to be in a second heat dissipation mode, the driving mechanism 22 receives a second heat dissipation signal, and drives the air guide plate 21 to move or rotate to a second position; at the same time, the control module controls the light source module 30 to be in a second lighting effect mode, and the blue light emitted by the light source module 30 is irradiated onto the air guide plate 21, so that a blue pattern appears on the air guide plate 21 of the box 10.

[0111] Exemplarily, the chassis switches to a high-load working state, the control module controls the heat dissipation module 20 to be in a third heat dissipation mode, the driving mechanism 22 receives a third heat dissipation signal, and drives the air guide plate 21 to move or rotate to a third position; at the same time, the control module controls the light source module 30 to be in a third lighting effect mode, and the red light emitted by the light source module 30 is irradiated onto the air guide plate 21, so that a red pattern appears on the air guide plate 21 of the box 10.

[0112] The air guide plate 21 can switch between a closed state and an open state. In the closed state, the air guide plate 21 can block the opening to prevent dust and other impurities from entering the box 10; in the open state, an air inlet is formed on the air guide plate 21, and the external air flows through the air inlet and the opening in sequence into the box 10, and is further discharged from the air outlet on the box 10 to meet the heat dissipation requirements. When the air guide plate 21 is in the closed state and the open state, the light emitted by the light source module 30 can be irradiated onto the air guide plate 21. As the position of the air guide plate 21 changes, the geometric size of the pattern on the air guide plate 21 can increase or decrease, and the geometric shape can be transformed between two-dimensional space and three-dimensional space, presenting a dynamic change effect, further enhancing the diversity of the visual effects on the box 10.

[0113] In this embodiment, the air guide plate 21 is arranged at the opening of the box body 10, and the driving mechanism 22 drives the air guide plate 21 to switch between a closed state and an open state. The heat dissipation module 20 is in a first heat dissipation mode, a second heat dissipation mode or a third heat dissipation mode. The light emitted by the light source module 30 can be irradiated onto the air guide plate 21 at different positions. The geometric dimensions of the pattern on the air guide plate 21 can change, and the geometric shape can be transformed between two-dimensional space and three-dimensional space, presenting a dynamic change effect, further enhancing the diversity of visual effects on the box body 10.

[0114] In the embodiments of the present disclosure, Figures 2 to 7As shown, the heat dissipation module 20 also includes a support frame 23, a movable plate 24 and a support rod 25. The support frame 23 is connected to the box body 10 and is located at the opening. The movable plate 24 is movably arranged on the side of the air guide plate 21 facing the inside of the box body 10, and the side of the movable plate 24 facing the air guide plate 21 is provided with a first connection portion 241. The support rod 25 is connected to the support frame 23; the air guide plate 21 includes a plurality of air guide blades 211, the air guide blades 211 are rotatably connected to the support rod 25, and the side of the air guide blades 211 facing the inside of the box body 10 is provided with a second connection portion 2112, and the second connection portion 2112 is movably connected to the first connection portion 241. The driving mechanism 22 is arranged on the support frame 23, and the driving end of the driving mechanism 22 is connected to the movable plate 24, and is used to drive the movable plate 24 to move in a direction close to or away from the air guide plate 21, so that the first connection portion 241 drives the air guide blades 211 to rotate, so as to form an air inlet area at the air guide plate 21. The light emitted by the light source module 30 can irradiate the air guide plate 211 .

[0115] In some embodiments, the support frame 23 is a square frame structure, and the support frame 23 can be connected to the opening of the box body 10 by screwing, plugging, etc.

[0116] like Figure 4 and Figure 5 As shown, the support rod 25 can be a structural member formed by splicing a plurality of horizontal rods and a plurality of vertical rods, and the support rod 25 is used to support the air guide plate 21. The number of horizontal rods and vertical rods is not specifically limited. A connecting plate can extend from the support rod 25, and the connecting plate is connected to the support frame 23 by screwing, so as to realize the connection between the support rod 25 and the support frame 23.

[0117] like Figure 4 , Figure 5 , Figure 8 and Fig. 9 As shown, the air guide plate 21 includes a plurality of air guide blades 211, and the number of the air guide blades 211 is not specifically limited. For example, the number of the air guide blades 211 is four, and the air guide blades 211 are approximately triangular in shape. When four air guide blades 211 are combined, a square-shaped air guide plate 21 can be formed. A rotating connection portion 2111 is formed at one end surface of the air guide blade 211, and a slot 21111 that can be plugged and connected to the support rod 25 is configured on the rotating connection portion 2111. The support rod 25 passes through the slot 21111 on the air guide blade 211, so that the air guide blade 211 and the support rod 25 are rotatably connected.

[0118] The movable plate 24 is spaced apart from the air guide plate 21, and the movable plate 24 is closer to the inner side of the box body 10 than the air guide plate 21. The movable plate 24 can move toward or away from the air guide plate 21. Figure 6 and Figure 7As shown, a first connection portion 241 is provided on a side of the movable plate 24 facing the air guide plate 21 , and a second connection portion 2112 is provided on a side of the air guide plate 211 facing the movable plate 24 . The first connection portion 241 is movably connected to the second connection portion 2112 .

[0119] In some embodiments, Figure 7 As shown, the first connecting portion 241 includes a connecting block 2411 and a guide column 2412. The connecting block 2411 is approximately perpendicular to the movable plate 24, and the guide column 2412 is approximately perpendicular to the connecting block 2411. Fig. 9 and Fig.10 As shown, a guide groove 21121 is provided on the second connection part 2112, and a guide column 2412 is inserted into the guide groove 21121. The driving mechanism 22 includes a linear motor, and the driving end of the linear motor is connected to the movable plate 24. The air guide plate 211 is in the first position, and the angle between the air guide plate 211 and the plane where the opening is located is a first angle, and the first angle is 0 degrees. The linear motor drives the movable plate 24 to move in a direction away from the air guide plate 21, and the second connection part 2112 moves with the first connection part 241. During the movement of the movable plate 24, the guide column 2412 slides along the groove wall of the guide groove 21121, so that the air guide plate 211 rotates around the support rod 25. With the movement of the movable plate 24, the air guide plate 211 can rotate to the second position or the third position. At the second position and the third position, the angle of the air guide plate 211 is not specifically limited. For example, when the air guide plate 211 rotates to the second position, the angle between the air guide plate 211 and the plane where the opening is located is a second angle, which may be 25 degrees, that is, the opening angle of the air guide plate 211 is 25 degrees; when the air guide plate 211 rotates to the third position, the angle between the air guide plate 211 and the plane where the opening is located is a third angle, which may be 55 degrees, that is, the opening angle of the air guide plate 211 is 55 degrees.

[0120] The linear motor drives the movable plate 24 to move toward the direction close to the air guide plate 21 , and the air guide plate 211 can rotate from the third position to the second position or the first position.

[0121] In some embodiments, the number of air guide blades 211 is four, and the four air guide blades 211 are respectively defined as a first air guide blade, a second air guide blade, a third air guide blade, and a fourth air guide blade, the first air guide blade and the second air guide blade are arranged vertically, and the third air guide blade and the fourth air guide blade are arranged horizontally. The four air guide blades 211 can rotate synchronously.

[0122] like Fig.11 As shown, the air guide plates 211 rotate to the second position, and the gaps between the four air guide plates 211 form an air inlet area. The light emitted by the light source module 30 can illuminate the edges of the four air guide plates 211, forming an approximately V-shaped pattern on each air guide plate 211, and the patterns on the four air guide plates 211 are connected end to end.

[0123] like Fig.12 As shown, the air guide piece 211 rotates to the third position, the gaps between the four air guide pieces 211 form an air intake area, and the light emitted by the light source module 30 can irradiate the edge of the four air guide pieces 211, forming an approximately V-shaped pattern on each air guide piece 211, and the patterns on the four air guide pieces 211 are connected end to end. The V-shaped pattern formed at the third position is larger than the V-shaped pattern formed at the second position.

[0124] It is understandable that when the air guide plate 211 is in the first position, the light emitted by the light source module 30 can also illuminate the edges of the four air guide plates 211, forming an approximately V-shaped pattern on each air guide plate 211, and the patterns on the four air guide plates 211 are connected end to end.

[0125] like Figure 4 , Fig.11 and Fig.12 As shown, in some embodiments, the air guide plate 21 includes a plurality of air guide pieces 211, and the plurality of air guide pieces 211 can be arranged in multiple rows and columns. For example, four air guide pieces 211 form an air guide unit 212, and the plurality of air guide units 212 are arranged in multiple rows and columns, for example, the plurality of air guide units 212 are arranged in three rows and three columns. The light emitted by the light source module 30 can irradiate the edge portions of the four air guide pieces 211 in each air guide unit 212, thereby presenting nine patterns distributed at intervals on the air guide plate 21. The number of air guide units 212 is not specifically limited.

[0126] Furthermore, when the air guide blades 211 are in the first position, there is a gap between two adjacent air guide blades 211, thereby forming two approximately X-shaped long strip gaps in each air guide unit 212. The two strip gaps ensure that the air guide blades 211 do not interfere with each other during rotation.

[0127] The air guide piece 211 is rotatably connected to the support rod 25. When the air guide piece 211 is rotated to the first position, the plurality of air guide pieces 211 can cover the opening of the box body 10, thereby preventing dust from entering the box body 10. By rotating the plurality of air guide pieces 211 to adjust the air intake area, the air intake volume can be adjusted quickly, thereby quickly switching between different heat dissipation modes. In addition, the air guide piece 211 occupies a small space and does not affect the installation of other components in the box body 10.

[0128] In some embodiments, the material of the air guide piece 111 is not specifically limited, and the material of the air guide piece 111 includes metal material, plastic material, glass material, etc. The light transmittance of the air guide piece 111 is not specifically limited. With different light transmittances, the geometric size and softness of the pattern formed on the air guide piece 111 when light is irradiated onto the air guide piece 111 will also be different. According to the use requirements, the air guide piece 111 with a suitable light transmittance is used.

[0129] In this embodiment, the air guide plate 21 includes a plurality of air guide vanes 211, which are rotatably connected to the support rod 25. The driving mechanism 22 can drive the movable plate 24 to move toward or away from the air guide plate 21, thereby driving the air guide vanes 211 to rotate, thereby forming an air inlet area on the air guide plate 21. By rotating the air guide vanes 211, switching between different heat dissipation modes can be quickly achieved. In addition, the light emitted by the light source module 30 is irradiated onto the air guide vanes 211. The air guide vanes 211 are at different angles, and a gradient pattern can be presented on the air guide plate 21, so that the box 10 presents a richer visual effect.

[0130] In the embodiments of the present disclosure, Fig.13 As shown, the light source module 30 includes a circuit board 31 and a light source 32. The circuit board 31 is disposed on the side of the air guide plate 21 facing the outside of the box body 10, and the circuit board 31 is provided with a first through hole 300, and the first through hole 300 is connected to the air inlet. The light source 32 is disposed on the circuit board 31 and is electrically connected to the circuit board 31. The light emitted by the light source 32 can irradiate the air guide plate 211.

[0131] The circuit board 31 and the movable plate 24 are located on opposite sides of the air guide plate 21, and the light source 32 is mounted on the circuit board 31. The circuit board 31 can be connected to the support frame 23 by screwing, or the circuit board 31 can be connected to the support frame 23 by an adapter. The number of light sources 32 is not specifically limited.

[0132] Exemplarily, the air guide plate 21 includes a plurality of air guide units 212, which are arranged in three rows and three columns. Nine light sources 32 are mounted on the circuit board 31, and the nine light sources 32 correspond to the nine air guide units 212 one by one. The light sources 32 are opposite to the central areas of the air guide units 212. The light sources 32 can emit blue light or red light, and the blue light or red light emitted by the light sources 32 can be irradiated onto the air guide plate 211.

[0133] The circuit board 31 is provided with a first through hole 300, which can be connected to the air inlet on the air guide plate 21. That is, the first through hole 300 is arranged opposite to the air guide piece 211, and when the air guide piece 211 is opened at a certain angle, an air inlet is formed between the plurality of air guide pieces 211, and the external air can flow through the first through hole 300 and the air inlet in sequence into the interior of the box body 10.

[0134] The control module controls the heat dissipation module 20 to switch to a heat dissipation mode corresponding to the current working state according to the current working state of the chassis, and controls the light source module 30 to switch to a lighting effect mode corresponding to the heat dissipation mode.

[0135] The heat dissipation and lighting effects of the chassis are described in detail below with reference to specific embodiments.

[0136] The electronic device is in a powered-off state, the air guide plate 211 is in a closed state, and the light source 32 is turned off.

[0137] After the electronic device is turned on, the chassis is in a sleep state, a low-load working state, or a high-load working state.

[0138] The chassis switches from the shutdown state to the low-load working state, and the driving mechanism 22 drives the air guide plate 211 to rotate from 0 degrees to 25 degrees, and the time for the air guide plate 211 to rotate from 0 degrees to 25 degrees is 3 seconds; at the same time, the light source 32 switches from the off state to the blue light emitting state, and from the off state to the blue light state, the brightness of the blue light gradually increases, and the time for the transition from the off state to the blue light is 3 seconds. After that, the light source 32 continues to emit blue light until the working state of the chassis changes.

[0139] The chassis switches from a low-load working state to a shutdown state, and the driving mechanism 22 drives the air guide plate 211 to rotate from 25 degrees to 0 degrees. The time for the air guide plate 211 to rotate from 25 degrees to 0 degrees is 3 seconds. At the same time, the blue light emitted by the light source 32 gradually goes out, and the time for the blue light to turn off is 3 seconds. After that, the light source 32 remains in the off state until the working state of the chassis changes.

[0140] The chassis switches from the sleep state to the low-load working state, and the driving mechanism 22 drives the air guide plate 211 to rotate from 0 degrees to 25 degrees. The time for the air guide plate 211 to rotate from 0 degrees to 25 degrees is 3 seconds. At the same time, the light source 32 switches from the flashing state to emitting blue light. The time for the flashing state to change to blue light is 3 seconds. After that, the light source 32 continues to emit blue light until the working state of the chassis changes. The flashing state means that the light source 32 intermittently emits blue light, that is, the light source 32 changes from the off state to the blue light state, and then changes from the blue light state to the off state in a cycle.

[0141] The chassis switches from a low-load working state to a sleep state, and the driving mechanism 22 drives the air guide plate 211 to rotate from 25 degrees to 0 degrees. The time for the air guide plate 211 to rotate from 25 degrees to 0 degrees is 3 seconds. At the same time, the blue light emitted by the light source 32 gradually goes out, and the time for the blue light to turn off is 3 seconds. After that, the light source 32 is in a flashing state until the working state of the chassis changes.

[0142] The chassis switches from a low-load working state to a high-load working state, and the driving mechanism 22 drives the air guide plate 211 to rotate from 25 degrees to 55 degrees, and the time for the air guide plate 211 to rotate from 25 degrees to 55 degrees is 3 seconds; at the same time, the light emitted by the light source 32 gradually changes from blue light to red light, and the time for the blue light to change to red light is 3 seconds, after which the light source 32 continues to emit red light until the working state of the chassis changes.

[0143] The chassis switches from a high-load working state to a low-load working state, and the driving mechanism 22 drives the air guide plate 211 to rotate from 55 degrees to 25 degrees, and the time for the air guide plate 211 to rotate from 55 degrees to 25 degrees is 3 seconds; at the same time, the light emitted by the light source 32 gradually changes from red light to blue light, and the time for the change from red light to blue light is 3 seconds, after which the light source 32 continues to emit blue light until the working state of the chassis changes.

[0144] The chassis switches from a high-load working state to a shutdown state, and the driving mechanism 22 drives the air guide plate 211 to rotate from 55 degrees to 0 degrees, and the time for the air guide plate 211 to rotate from 55 degrees to 0 degrees is 6 seconds; at the same time, the light emitted by the light source 32 gradually changes from red light to blue light, and the time for changing from red light to blue light is 3 seconds, and then gradually turns off from blue light, and the time for changing from blue light to off is 3 seconds. After that, the light source 32 remains in the off state until the working state of the chassis changes.

[0145] The chassis switches from a high-load working state to a sleep state, and the driving mechanism 22 drives the air guide plate 211 to rotate from 55 degrees to 0 degrees, and the time for the air guide plate 211 to rotate from 55 degrees to 0 degrees is 6 seconds; at the same time, the light emitted by the light source 32 gradually changes from red light to blue light, and the time for changing from red light to blue light is 3 seconds, and then gradually turns off from blue light, and the time for changing from blue light to off is 3 seconds. After that, the light source 32 is in a flashing state until the working state of the chassis changes.

[0146] In this embodiment, the circuit board 31 is located on one side of the air guide plate 21, the light source 32 is installed on the circuit board 31, and the air guide plate 211 is rotated to any angle. The red light or blue light emitted by the light source 32 can be irradiated onto the air guide plate 211, so that when the chassis switches between multiple states, the light source module 30 can switch between multiple lighting effect modes, so that the box body 10 can present richer visual effects.

[0147] In the embodiments of the present disclosure, Fig.13 As shown, the circuit board 31 includes a plurality of circuit units 311 located on the same plane, and the hollow areas between the plurality of circuit units 311 form a first through hole 300. The plurality of light sources 32 correspond to the plurality of circuit units 311 one by one, and the light source 32 is disposed at the central area of ​​the circuit unit 311 so that the light emitted by the light source 32 can irradiate any air guide plate 211.

[0148] Exemplarily, the air guide plate 21 includes a plurality of air guide units 212, and the circuit board 31 has a plurality of circuit units 311, and the plurality of circuit units 311 correspond one to one with the plurality of air guide units 212. The light source 32 is located at the center area of ​​the circuit unit 311, and the air guide piece 211 is rotated to any angle, and the light emitted by the light source 32 can be irradiated onto the four air guide pieces 211 of the same air guide unit 212.

[0149] For example, the plurality of air guide units 212 are arranged in three rows and three columns, the plurality of circuit units 311 are arranged in three rows and three columns, and two adjacent circuit units 311 are connected. Each circuit unit 311 is configured with a hollow area, and the plurality of hollow areas form a first through opening 300 .

[0150] The multiple light sources 32 are arranged in three rows and three columns. The multiple light sources 32 can be turned off, emit blue light, red light, etc. at the same time, so that the box 10 can present a richer visual effect.

[0151] In some embodiments, each air guide unit 212 includes four air guide pieces 211. When the air guide pieces 211 are at 0 degrees, two intersecting long strip gaps are formed at the four air guide pieces 211. The circuit unit 311 is in an X-shape, that is, each circuit unit 311 includes two intersecting long strip circuit substrates. The two circuit substrates in each circuit unit 311 correspond to the two strip gaps in each air guide unit 212.

[0152] When the air guide plate 21 is in the closed state, the circuit substrate will not block the air guide piece 211; when the air guide plate 21 is in the open state, the circuit substrate will not block the air guide piece 211, ensuring that the pattern on the air guide plate 21 will not be blocked when the air guide plate 21 is in the closed state or the open state.

[0153] The multiple circuit units 311 are interconnected to form a whole, and the multiple circuit units 311 are located in the same plane. The hollow areas between the multiple circuit units 311 form a first through hole 300, and the first through hole 300 and the air inlet are interconnected to ensure that when the air guide plate 21 is in the open state, the external air can flow through the first through hole 300 and the air inlet in sequence into the box body 10.

[0154] In this embodiment, multiple circuit units 311 are arranged in a one-to-one correspondence with multiple air guide units 212, ensuring that the light emitted by the light source 32 on each circuit unit 311 can illuminate any air guide plate 211 of the air guide unit 212; in addition, the circuit substrate in the circuit unit 311 and the strip gap in the air guide unit 212 are arranged relative to each other, ensuring that the pattern on the air guide plate 21 will not be blocked.

[0155] In the embodiments of the present disclosure, Figure 1 , Figure 2 , Figure 3 , Fig.14 and Fig.15As shown, the chassis also includes a mounting plate 40, which is arranged on the side of the light source module 30 away from the heat dissipation module 20, and the circuit board 31 is connected to the mounting plate 40. The mounting plate 40 includes a mounting frame 41 and a plurality of shielding parts 42. The mounting frame 41 is connected to the support frame 23. The plurality of shielding parts 42 are arranged on the mounting frame 42, and the shielding parts 42 are arranged corresponding to the circuit unit 311, and the plurality of shielding parts 42 are connected to each other, and the hollow areas between the plurality of shielding parts 42 form a second through opening 400, and the second through opening 400, the first through opening 300 and the air inlet are connected to each other.

[0156] The circuit board 31 can be connected to the mounting plate 40 by screwing, and the mounting plate 40 can be connected to the support frame 23 by screwing, clamping, etc. The mounting plate 40 includes a mounting frame 41, and the mounting frame 41 can be a hollow square frame structure, that is, an opening is configured on the mounting frame 41, and a plurality of shielding portions 42 can be arranged in multiple rows and columns at the opening. The plurality of shielding portions 42 are arranged one by one with the plurality of circuit units 311. A clamping portion 411 is provided on one side of the mounting frame 41 facing the opening of the box body 10, and the clamping portion 411 is clamped with the support frame 23, which is conducive to the convenience of installation and disassembly.

[0157] In some embodiments, the circuit unit 311 is in an X-shape, that is, each circuit unit 311 includes two crossed circuit substrates, and the shielding portion 42 is in an X-shape, that is, each shielding portion 42 includes two crossed long strip shielding plates. The shielding plate in the shielding portion 42 corresponds to the circuit substrate in the circuit unit 311. After the circuit board 31 is assembled with the mounting frame 42, the shielding plate is located on the outside of the circuit substrate, and the shielding plate can shield the circuit substrate to prevent people from accidentally touching the circuit substrate, which plays an effective protective role; at the same time, the shielding portion 42 also plays a certain aesthetic role.

[0158] In addition, the two shielding plates in each shielding portion 42 correspond to the two strip-shaped gaps in each air guide unit 212. When the air guide plate 21 is in the closed state, the shielding plates will not shield the air guide blades 211; when the air guide plate 21 is in the open state, the shielding plates will not shield the air guide blades 211, ensuring that the pattern on the air guide plate 21 will not be blocked when the air guide plate 21 is in the closed state or the open state.

[0159] The plurality of shielding parts 42 are connected to form a whole, and the plurality of shielding parts 42 are located in the same plane. The hollow areas between the plurality of shielding parts 42 form a second through hole 400, and the second through hole 400, the first through hole 300 and the air inlet are interconnected, ensuring that when the air guide plate 21 is in the open state, the external air can flow through the second through hole 400, the first through hole 300 and the air inlet in sequence into the box body 10.

[0160] In this embodiment, multiple shielding parts 42 are arranged in one-to-one correspondence with multiple circuit units 311, and the shielding parts 42 can shield the circuit units 311 to play an effective protective role; in addition, the shielding plates in the shielding parts 42 are arranged relative to the strip gaps in the air guide units 212 to ensure that the patterns on the air guide plates 21 will not be blocked.

[0161] The present disclosure also provides an electronic device, which includes an electronic device and a chassis, wherein the electronic device is arranged in the accommodating space of the chassis. The chassis includes a case 10, a heat dissipation module 20 and a light source module 30. The heat dissipation module 20 is arranged in the case 10, and the heat dissipation module 20 has at least a first heat dissipation mode and a second heat dissipation mode, and the heat dissipation capacities of the first heat dissipation mode and the second heat dissipation mode are different. The light source module 30 is arranged in the case 10, and at least a part of the light source module 30 is arranged opposite to the heat dissipation module 20. When the heat dissipation module 20 is in the first heat dissipation mode, the light source module 30 has a first lighting effect; when the heat dissipation module 20 is in the second heat dissipation mode, the light source module 30 has a second lighting effect. Among them, when the light source module 30 is in the first lighting effect or the second lighting effect, the visual effect of the case 10 is different. The structure of the chassis is as described above and will not be repeated here.

[0162] In some embodiments, the heat dissipation module 20 includes a driving mechanism 22, a movable plate 24 and an air guide plate 21. The driving mechanism 22 drives the movable plate 24 to move toward or away from the air guide plate 21, so that the air guide plate 211 can rotate to the first position, the second position or the third position, and the air inlet area is adjusted to achieve rapid switching between multiple heat dissipation modes. The heat dissipation mode includes the first heat dissipation mode, the second heat dissipation mode and the third heat dissipation mode. When the electronic device is in the off state or the sleep state, the heat dissipation module 20 switches to the first heat dissipation mode, the air inlet area is zero, and the multiple air guide plates 211 can cover the opening at the box 10 to prevent dust and other impurities from entering the box 10. When the electronic device is in a low-load working state, the heat dissipation mode is switched to the second heat dissipation mode, and the air guide plate 211 rotates to the second position; when the electronic device is in a high-load working state, the heat dissipation module 20 switches to the third heat dissipation mode, and the air guide plate 211 rotates to the third position.

[0163] In some embodiments, the light source module 30 includes a plurality of light sources 32, and the control module controls the plurality of light sources 32 to be off, or to emit blue light, or to emit red light, or to be in a flashing state, so that the light source module 30 has a plurality of lighting effect modes. When the electronic device is in a shutdown state, the light source module 30 is in an off state; when the electronic device is in a sleep state, the light source module 30 is in a flashing state; when the electronic device is in a low-load working state, the light source module 30 is in a state of continuously emitting blue light; when the electronic device is in a high-load working state, the light source module 30 is in a state of continuously emitting red light.

[0164] Furthermore, during the process of switching between multiple states of the electronic device, the switching of the lighting effect mode and the switching of the heat dissipation mode are kept synchronized by controlling the time taken for the air guide plate 211 to rotate from the current position to the next position, and the time taken for the light source 32 to change from being off to emitting blue light, and the time taken for the light source 32 to change from being blue light to emitting red light.

[0165] In this embodiment, the heat dissipation module 20 and the light source module 30 constitute a part of the box body 10. The heat dissipation module 20 can switch between two or more heat dissipation modes, and the light source module 30 can be in a lighting effect mode corresponding to the heat dissipation mode, so that when the electronic device is in different working conditions, the heat dissipation module 20 can switch to the corresponding heat dissipation mode to meet the heat dissipation requirements. At the same time, the box body 10 can present different visual effects in different heat dissipation modes, thereby improving the performance of the chassis and helping to improve the user experience.

[0166] The present disclosure also provides a control method for an electronic device, the control method comprising:

[0167] Obtaining a target heat dissipation mode of the heat dissipation module 20 of the chassis;

[0168] When the target heat dissipation mode is the first heat dissipation mode, the light source module 30 of the control chassis is in the first lighting effect;

[0169] When the target heat dissipation mode is the second heat dissipation mode, the light source module 30 of the control chassis is in the second lighting effect;

[0170] The first heat dissipation mode and the second heat dissipation mode have different heat dissipation capabilities. When the light source module 30 is in the first lighting effect or the second lighting effect, the visual effects of the case body 10 of the chassis are different.

[0171] The electronic device includes a chassis, which includes a housing 10, a heat dissipation module 20 and a light source module 30. The heat dissipation module 20 and the light source module 30 are both connected to the control module for communication. The control module controls the heat dissipation mode of the heat dissipation module 20 and the lighting effect mode of the light source module 30.

[0172] In some embodiments, the chassis has a sleep state, a low-load working state, a high-load working state, etc. According to the working state of the chassis, the target heat dissipation mode of the heat dissipation module 20 is obtained, and the target heat dissipation mode is the first heat dissipation mode, the second heat dissipation mode, or the third heat dissipation mode. For example, when the chassis is in a sleep state, the target heat dissipation mode obtained is the first heat dissipation mode; when the chassis is in a low-load working state, the target heat dissipation mode obtained is the second heat dissipation mode; when the chassis is in a high-load working state, the target heat dissipation mode obtained is the third heat dissipation mode.

[0173] In some embodiments, the target heat dissipation mode of the heat dissipation module 20 is obtained according to the temperature in the chassis. For example, when the temperature in the chassis is the first temperature, the target heat dissipation mode obtained is the first heat dissipation mode; when the temperature in the chassis is the second temperature, the target heat dissipation mode obtained is the second heat dissipation mode; when the temperature in the chassis is the third temperature, the target heat dissipation mode obtained is the third heat dissipation mode. The third temperature is greater than the second temperature, and the second temperature is greater than the first temperature.

[0174] Exemplarily, the chassis is in a sleep state, and the target cooling mode of the cooling module 20 is obtained as the first cooling mode. The control module sends a first cooling signal to the cooling module 20, and the cooling module 20 switches to the first cooling mode by adjusting the opening angle of the air guide plate 21. In the first cooling mode, the opening angle is 0 degrees, the air intake area is zero, the energy consumption is low, and impurities such as dust can be prevented from entering the box 10. At the same time, the control module sends a first light signal to the light source module 30, and the light source module 30 switches to the first lighting effect mode by adjusting parameters such as the color of the light and the opening time. The light source module 30 can intermittently emit blue light, so that one or more surfaces of the box 10 present an intermittent blue pattern.

[0175] Exemplarily, the chassis is in a low-load working state, and the target cooling mode of the cooling module 20 is obtained as the second cooling mode. The control module sends a second cooling signal to the cooling module 20, and the cooling module 20 switches to the second cooling mode by adjusting the opening angle of the air guide plate 21. In the second cooling mode, the opening angle is 25 degrees, and the air inlet area is greater than zero. At the same time, the control module sends a second lighting signal to the light source module 30, and the light source module 30 switches to the second lighting effect mode by adjusting the color, brightness and other parameters of the light. The light source module 30 can continuously emit blue light, so that one or more surfaces of the box 10 present a blue pattern.

[0176] Exemplarily, the chassis is in a high-load working state, and the target cooling mode of the cooling module 20 is obtained as the third cooling mode. The control module sends a third cooling signal to the cooling module 20, and the cooling module 20 switches to the third cooling mode by adjusting the opening angle of the air guide plate 21. In the third cooling mode, the opening angle is 55 degrees, and the air inlet area in the third cooling mode is larger than the air inlet area in the second cooling mode. At the same time, the control module sends a third light signal to the light source module 30, and the light source module 30 switches to the third lighting effect mode by adjusting the color, brightness and other parameters of the light. The light source module 30 can continuously emit red light, so that one or more surfaces of the box 10 present a red pattern. The geometric shape of the red pattern is larger than the geometric shape of the blue pattern.

[0177] In this embodiment, the heat dissipation module 20 and the light source module 30 are both communicatively connected to the control module. The control module controls the heat dissipation module 20 to switch to the heat dissipation mode corresponding to the current working state, and controls the light source module 30 to switch to the lighting effect mode corresponding to the heat dissipation mode according to the current working state of the chassis, thereby ensuring the synchronization of switching between the heat dissipation mode and the lighting effect mode. In addition, the heat dissipation mode and the lighting effect mode correspond to the current working state of the chassis, and can take into account the comprehensive usage requirements of blocking dust and impurities, heat dissipation requirements, and low energy consumption requirements.

[0178] It will be appreciated by those skilled in the art that the features described in the various embodiments and / or claims of the present disclosure may be combined and / or combined in a variety of ways, even if such combinations and / or combinations are not explicitly described in the present disclosure. In particular, the features described in the various embodiments and / or claims of the present disclosure may be combined and / or combined in a variety of ways without departing from the spirit and teachings of the present disclosure. All of these combinations and / or combinations fall within the scope of the present disclosure.

[0179] Although the present disclosure has been shown and described with reference to specific exemplary embodiments of the present disclosure, it should be understood by those skilled in the art that various changes in form and details may be made to the present disclosure without departing from the spirit and scope of the present disclosure as defined by the appended claims and their equivalents. Therefore, the scope of the present disclosure should not be limited to the above-mentioned embodiments, but should be determined not only by the appended claims, but also by the equivalents of the appended claims.

Claims

1. A chassis, comprising: Box; A heat dissipation module is provided in the box body, the heat dissipation module has at least a first heat dissipation mode and a second heat dissipation mode, and the heat dissipation capabilities of the first heat dissipation mode and the second heat dissipation mode are different; A light source module is disposed in the box, and at least a portion of the light source module is disposed opposite to the heat dissipation module; When the heat dissipation module is in the first heat dissipation mode, the light source module has a first lighting effect; When the heat dissipation module is in the second heat dissipation mode, the light source module has a second lighting effect; Wherein, when the light source module is in the first lighting effect or the second lighting effect, the visual effect of the box is different.

2. The chassis according to claim 1, The box body includes two ends arranged at intervals, and a plurality of side parts connecting the two ends; At least one of the end portions includes the heat dissipation module and the light source module, and / or at least one of the side portions includes the heat dissipation module and the light source module.

3. The chassis according to claim 1, further comprising a control module; The control module is in communication with the heat dissipation module, and is used to control the heat dissipation module to switch to the first heat dissipation mode or the second heat dissipation mode corresponding to the current working state according to the current working state of the chassis; The control module is communicatively connected to the light source module, and is used to control the light source module to have the first lighting effect when the heat dissipation module is in the first heat dissipation mode, and to control the light source module to have the second lighting effect when the heat dissipation module is in the second heat dissipation mode.

4. The chassis according to any one of claims 1 to 3, The box body is provided with an opening; The heat dissipation module comprises: An air guide plate is provided at the opening, the air guide plate can be switched between a closed state and an open state, and in the open state, an air inlet is formed on the air guide plate; A driving mechanism, disposed on a side of the air guide plate facing the inside of the box, and used for driving the air guide plate to switch between the closed state and the open state; When the heat dissipation module is in the first heat dissipation mode, the air guide plate is in the closed state, the light source module has the first lighting effect, and the light emitted by the light source module can irradiate the air guide plate; When the heat dissipation module is in the second heat dissipation mode, the air guide plate is in the open state, the light source module has the second lighting effect, and the light emitted by the light source module can irradiate the air guide plate.

5. The chassis according to claim 4, The heat dissipation module also includes: A support frame connected to the box body and located at the opening; A movable plate is movably arranged on a side of the air guide plate facing the inside of the box, and a first connecting portion is arranged on a side of the movable plate facing the air guide plate; A support rod connected to the support frame; The air guide plate includes a plurality of air guide blades, the air guide blades are rotatably connected to the support rods, a second connecting portion is provided on a side of the air guide blades facing the inside of the box, and the second connecting portion is movably connected to the first connecting portion; The driving mechanism is disposed on the support frame, and the driving end of the driving mechanism is connected to the movable plate, and is used to drive the movable plate to move toward or away from the air guide plate, so that the first connecting portion drives the air guide plate to rotate, so as to form an air inlet area at the air guide plate; The light emitted by the light source module can irradiate the air guide plate.

6. The chassis according to claim 5, The light source module comprises: A circuit board is arranged on a side of the air guide plate facing the outside of the box, the circuit board is provided with a first through hole, and the first through hole is communicated with the air inlet; The light source is disposed on the circuit board and electrically connected to the circuit board, and the light emitted by the light source can irradiate the air guide plate.

7. The chassis according to claim 6, The circuit board includes a plurality of circuit units located in the same plane, and the hollow areas between the plurality of circuit units form the first through opening; The plurality of light sources correspond to the plurality of circuit units one by one, and the light source is arranged at the central area of ​​the circuit unit so that the light emitted by the light source can irradiate any of the air guide plates.

8. The chassis according to claim 7, further comprising a mounting plate, wherein the mounting plate is disposed on a side of the light source module away from the heat dissipation module, and the circuit board is connected to the mounting plate; The mounting plate comprises: A mounting frame connected to the support frame; as well as A plurality of shielding parts are arranged on the installation frame, and the shielding parts are arranged corresponding to the circuit units, the plurality of shielding parts are connected to each other, and the hollow areas between the plurality of shielding parts form a second through opening, and the second through opening, the first through opening and the air inlet are connected to each other.

9. The chassis according to claim 8, A clamping portion is provided on one side of the installation frame facing the opening, and the clamping portion is clamped with the support frame.

10. An electronic device comprising: Electronic devices; as well as A chassis, wherein the electronic device is arranged in a housing space of the chassis; Wherein, the chassis comprises: Box; A heat dissipation module is provided in the box body, the heat dissipation module has at least a first heat dissipation mode and a second heat dissipation mode, and the heat dissipation capabilities of the first heat dissipation mode and the second heat dissipation mode are different; A light source module is disposed in the box, and at least a portion of the light source module is disposed opposite to the heat dissipation module; When the heat dissipation module is in the first heat dissipation mode, the light source module has a first lighting effect; When the heat dissipation module is in the second heat dissipation mode, the light source module has a second lighting effect; Wherein, when the light source module is in the first lighting effect or the second lighting effect, the visual effect of the box is different.