Case device with touch control light emitting function

By controlling the light-emitting module of the computer case through the touch sensing module and the proximity detection module, the problems of the inability to control by touch and the inability to focus light in the existing technology are solved, and convenient light management and automatic back lighting are realized.

CN223413669UActive Publication Date: 2025-10-03CORSAIR MEMORY INC(US)
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Patent Information

Application Number
CN202422804626.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-18
Publication Date
2025-10-03
Estimated Expiration
2034-11-18

AI Technical Summary

Technical Problem

The light-emitting module of the existing computer case cannot be controlled by touch, the light cannot be focused inside, and the back lighting of the case needs to be activated separately, which is inconvenient to use.

Method used

A touch sensing module is used to control the light-emitting module, curved panels and extension panels are used to concentrate light inside the chassis, and the light on the back of the chassis is automatically turned on through a proximity detection module.

Benefits of technology

The lighting effects and lighting modes can be controlled by touch. The light is concentrated inside the chassis, and the back of the chassis is automatically illuminated, which improves the convenience of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

A case device with a touch light-emitting function comprises a case body unit, a control unit, a touch unit and a light-emitting unit, the case body unit comprises a case body, the control unit comprises a circuit module arranged on the case body and a control module arranged on the circuit module, and the touch unit is arranged on the control module. The touch unit comprises a first touch sensing module connected with the circuit module, the control module is electrically connected with the first touch sensing module, the light-emitting unit comprises a first light-emitting module arranged on the circuit module, and the control module is electrically connected with the first light-emitting module. Therefore, the effects of controlling the light in a touch mode for the case, guiding the light into the case, automatically turning on the light on the back surface of the case and the like are achieved.
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Description

Technical Field

[0001] The utility model relates to a chassis, and in particular to a chassis device with touch-sensitive luminescence. Background Art

[0002] With advancements in the electronics industry, the functionality and design of consumer electronics devices have become increasingly crucial factors in market entry. For more mature electronic products, a more streamlined design has become a primary consideration for consumers when purchasing them, with home computers being a prime example. Given the limited functionality and speed of most products on the market, computer case design is becoming a key focus in product development. The more aesthetically pleasing and user-friendly a product is, the more likely it is to become a mainstream choice for consumers.

[0003] To enhance the aesthetics of computer cases, existing computer cases often feature a transparent side panel, allowing users to directly view computer components such as the motherboard and graphics card. Furthermore, numerous light-emitting modules are incorporated, such as light-emitting fans, light-emitting light strips, light-emitting air cooling devices, light-emitting water cooling devices, and light-emitting memory devices, to create a dazzling lighting effect for the entire computer.

[0004] Although the existing light-emitting modules installed in computer cases can produce brilliant lighting effects, they still have the following disadvantages in actual use:

[0005] 1. The lights cannot be controlled by touch:

[0006] The lighting effect switches installed on existing computer cases are push switches or dip switches. Existing computer cases do not have touch sensing technology. Users cannot switch the lighting effect mode of the light module by touching it, nor can they switch the brightness of the light module by touching and sliding it.

[0007] 2. Unable to guide light into the casing:

[0008] Generally, the LEDs on commercially available light strips are directly exposed to the outside. The light emitted by the LEDs is emitted outward at an angle of 180 degrees from the light-emitting surface. The light emitted by these light strips is not concentrated inside the computer case, and the light cannot be concentrated, resulting in a relatively weak brightness.

[0009] 3. The lighting on the back of the case needs to be activated separately:

[0010] The back of a computer case is equipped with many connection ports for connecting computer peripherals such as a monitor, network, keyboard, and mouse. However, the back of a computer case usually faces a wall or is located deep under a table, where there is usually insufficient lighting. Even if a light module is installed on the back of the computer case, a switch must be turned on at the front of the case before the back of the computer case can be illuminated.

[0011] Therefore, how to set up touch technology on the computer case to control the light-emitting module, so that the light output by the light-emitting module can be concentrated inside the computer case, and how to automatically turn on the light-emitting module on the back of the computer case when the user approaches the back of the computer case is a goal that relevant technical personnel urgently need to work hard on. Utility Model Content

[0012] The purpose of the present invention is to provide a chassis device with touch-sensitive lighting, which includes a chassis unit, a control unit, a touch unit, and a lighting unit.

[0013] The housing unit includes a housing body. The control unit includes a circuit module disposed in the housing body and a control module disposed in the circuit module. The touch unit includes a first touch sensing module connected to the circuit module, and the control module is electrically connected to the first touch sensing module. The light-emitting unit includes a first light-emitting module disposed in the circuit module, and the control module is electrically connected to the first light-emitting module.

[0014] In one embodiment, the touch unit further includes a second touch sensing module connected to the circuit module, and the control module is electrically connected to the second touch sensing module.

[0015] In one embodiment, the first touch sensing module and the second touch sensing module are respectively disposed on opposite sides of the first light emitting module.

[0016] In one embodiment, the control unit further includes at least one lighting interface connected to the circuit module, the light-emitting unit further includes at least one second light-emitting module electrically connected to the lighting interface, and the control module is electrically connected to the second light-emitting module.

[0017] In one embodiment, the second light-emitting module has a base plate, a side plate connected to the base plate, an arc-shaped plate connected to the base plate, an extension plate connected to the arc-shaped plate, a light-emitting component arranged on the base plate, a light guide arranged between the side plate, the arc-shaped plate and the extension plate, a first light-emitting surface arranged on the light guide and connected to the extension plate, and a second light-emitting surface arranged on the light guide and connected to the side plate, the arc-shaped plate is bent toward the side plate, the extension plate extends from the top of the arc-shaped plate toward the direction opposite to the base plate, and the length of the arc-shaped plate plus the extension plate is greater than the length of the side plate.

[0018] In one embodiment, the second light-emitting module further has a first light-emitting surface disposed on the light guide and connected to the extension plate, a second light-emitting surface disposed on the light guide and connected to the side plate, and a light-scattering portion disposed in the middle of the light guide.

[0019] In one embodiment, the chassis device with touch-sensitive luminescence further includes a proximity unit, and the proximity unit includes a proximity detection module electrically connected to the control module.

[0020] In one embodiment, the proximity detection module is connected to the second light emitting module, and the housing unit further includes a rear plate disposed on the housing body, and the proximity detection module is disposed on the rear plate.

[0021] In one embodiment, the control unit further includes a power interface connected to the circuit module, and the power interface is used to connect to a power module.

[0022] In one embodiment, the control unit further includes a control interface connected to the circuit module, and the control interface is used to connect to a computer module.

[0023] The beneficial effect of the present invention is that the first touch sensing module and the second touch sensing module can provide the user with control of the first light-emitting module and the second light-emitting module by touch, the curved plate and the extension plate cooperate to enable the light emitted by the second light-emitting module to be concentrated inside the chassis body, and the proximity detection module can detect the user's approach and automatically turn on the connected second light-emitting module. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 This is a three-dimensional schematic diagram of a first embodiment of a chassis device with touch-sensitive lighting according to the present invention;

[0025] Figure 2 A schematic perspective view illustrating a control unit and a touch unit in the first embodiment;

[0026] Figure 3 A front view schematic diagram illustrating the control unit and the touch unit in the first embodiment;

[0027] Figure 4 A front view schematic diagram illustrating the control unit and a light emitting unit in the first embodiment;

[0028] Figure 5 A side cross-sectional schematic diagram illustrating a second light emitting module in the first embodiment;

[0029] Figure 6 A schematic diagram illustrating the circuit configuration of each functional module in the first embodiment;

[0030] Figure 7 This is a partial three-dimensional schematic diagram of a second embodiment of the chassis device with touch-sensitive lighting according to the present invention;

[0031] Figure 8 A fragmentary three-dimensional schematic diagram illustrating the chassis unit in the second embodiment; and

[0032] Figure 9 A partial rear view schematic diagram of the chassis unit in the second embodiment is described.

[0033] In the picture:

[0034] 21: Power module; 22: Computer module; 23: First length; 24: Second length; 3: Box unit; 31: Chassis body; 32: Front panel; 33: Rear panel; 34: Wiring area; 35: Protective housing; 4: Control unit; 41: Circuit module; 42: Control module; 43: Lighting interface; 44: Power interface; 45: Control interface; 5: Touch unit; 51: First touch sensing module; 511: First touch sensing strip; 512: First A touch circuit board; 52: second touch sensing module; 521: second touch sensing strip; 522: second touch circuit board; 6: light-emitting unit; 61: first light-emitting module; 62: second light-emitting module; 621: bottom plate; 622: side plate; 623: curved plate; 624: extension plate; 625: light-emitting element; 626: light guide; 627: first light-emitting surface; 628: second light-emitting surface; 629: light-scattering portion; 7: proximity unit; 71: proximity detection module. DETAILED DESCRIPTION

[0035] The present invention will be further described below in conjunction with the accompanying drawings and specific embodiments so that those skilled in the art can better understand the present invention and implement it. However, the embodiments are not intended to limit the present invention.

[0036] See also Figure 1 、 Figure 2 、 Figure 3 ,and Figure 4 , which is a first embodiment of a chassis device with touch-sensitive lighting according to the present invention, the chassis device with touch-sensitive lighting comprises a chassis unit 3 , a control unit 4 , a touch unit 5 , and a lighting unit 6 .

[0037] The housing unit 3 includes a chassis body 31 and a front panel 32 disposed on the chassis body 31 . The chassis body 31 is a general computer case.

[0038] The control unit 4 includes a circuit module 41 disposed within the chassis body 31, a control module 42 disposed within the circuit module 41, a plurality of lighting interfaces 43 connected to the circuit module 41, a power interface 44 connected to the circuit module 41, and a control interface 45 connected to the circuit module 41. In actual implementation, the number of lighting interfaces 43 may be one, and the present invention is not limited thereto.

[0039] The touch unit 5 includes a first touch sensing module 51 connected to the circuit module 41 and a second touch sensing module 52 connected to the circuit module 41 .

[0040] The light emitting unit 6 includes a first light emitting module 61 disposed on the circuit module 41 and a plurality of second light emitting modules 62 electrically connected to the lighting interface 43. In some embodiments, the number of the second light emitting module 62 can also be one, but the present invention should not be limited thereto.

[0041] The circuit module 41 is a circuit board (PCBA) provided with electronic components, and the first light-emitting module 61 is a light-emitting panel provided with light-emitting diodes. In some embodiments, the first light-emitting module 61 can display a logo pattern. The first light-emitting module 61 is welded to the circuit module 41. The circuit module 41 is fixed to the inner side of the front plate 32. A middle display portion is provided in the middle of the front plate 32, and the first light-emitting module 61 is exposed to the outside from the middle display portion. In actual implementation, the circuit module 41 can also be set at other positions of the chassis body 31, and should not be limited to this.

[0042] In the first embodiment, the first touch sensing module 51 includes a first touch sensing bar 511 and a first touch circuit board 512, and the second touch sensing module 52 includes a second touch sensing bar 521 and a second touch circuit board 522. In actual implementation, the first touch sensing module 51 and the second touch sensing module 52 can be configured in other structures and should not be limited to this.

[0043] The first touch circuit board 512 and the second touch circuit board 522 are a printed circuit board assembly (PCBA) with electronic components. The first touch sensing bar 511 is provided on the first touch circuit board 512, and the second touch sensing bar 521 is provided on the second touch circuit board 522. The first touch circuit board 512 analyzes the charge changes of the first touch sensing bar 511 to determine whether the first touch sensing bar 511 is touched, and the second touch circuit board 522 analyzes the charge changes of the second touch sensing bar 521 to determine whether the second touch sensing bar 521 is touched.

[0044] The first touch sensing module 51 and the second touch sensing module 52 are respectively arranged on opposite sides of the first light-emitting module 61. In the first embodiment, the first touch sensing module 51 is arranged above the first light-emitting module 61, and the second touch sensing module 52 is arranged below the first light-emitting module 61. The front panel 32 is further provided with an upper display portion and a lower display portion, the upper display portion is located above the middle display portion, and the lower display portion is located below the middle display portion. The first touch sensing bar 511 is exposed to the outside from the upper display portion, and the second touch sensing bar 521 is exposed to the outside from the lower display portion. In some embodiments, the first touch sensing bar 511 and the second touch sensing bar 521 are also provided with light-emitting diodes to output lighting effects to the outside.

[0045] In some embodiments, the front panel 32 is provided with a front outer panel and a front inner panel, the circuit module 41, the first touch sensing module 51, and the second touch sensing module 52 are arranged on the front inner panel, the upper display portion, the middle display portion, and the lower display portion are arranged on the front outer panel, the first touch sensing module 51 is exposed outward from the upper display portion, the first light-emitting module 61 is exposed outward from the middle display portion, and the second touch sensing module 52 is exposed outward from the lower display portion. In actual implementation, the front panel 32 can also be designed into other structures and should not be limited to this.

[0046] In the first embodiment, the first touch sensing module 51 is used to control the light intensity of the first light emitting module 61 and the second light emitting module 62, and the second touch sensing module 52 is used to control the light emission patterns of the first light emitting module 61 and the second light emitting module 62. In some embodiments, the first touch sensing module 51 and the second touch sensing module 52 may also control other light emitting modules disposed in the chassis body 31.

[0047] The second light-emitting module 62 is a light bar that can be connected in series. There are multiple second light-emitting modules 62, and these multiple second light-emitting modules 62 are connected in series. In the first embodiment, there are two lighting interfaces 43, each of which is connected in series with two second light-emitting modules 62. The multiple second light-emitting modules 62 can extend to any location inside the chassis body 31 to illuminate computer components installed in the chassis body 31 and produce a brilliant lighting effect. In actual implementation, each lighting interface 43 can also be connected in series with more second light-emitting modules 62, and this is not limited to this.

[0048] See Figure 5The cross-sectional structure of the second light-emitting module 62 includes a base plate 621, a side plate 622 connected to the base plate 621, an arc-shaped plate 623 connected to the base plate 621, an extension plate 624 connected to the arc-shaped plate 623, a light-emitting component 625 arranged on the base plate 621, a light guide 626 arranged between the side plate 622, the arc-shaped plate 623 and the extension plate 624, a first light-emitting surface 627 arranged on the light guide 626 and connected to the extension plate 624, and a second light-emitting surface 628 arranged on the light guide 626 and connected to the side plate 622.

[0049] The arc plate 623 bends toward the side plate 622 . The extension plate 624 extends from the top of the arc plate 623 toward the opposite direction of the bottom plate 621 . The length of the arc plate 623 plus the extension plate 624 is greater than that of the side plate 622 . The length of the curved plate 623 plus the extension plate 624 is a first length 23, and the length of the side plate 622 is a second length 24. In the first embodiment, the distance from the top edge of the curved plate 623 to the bottom edge of the side plate 622 is 7.3 mm, the upper and lower widths of the bottom plate 621 are 5.7 mm, and the upper and lower widths of the base of the light-emitting component 625 are 5.0 mm. The first length 23 is 10.0 mm, the second length 24 is 7.0 mm, the left and right lengths of the extension plate 624 are 1.5 mm, the distance from the top edge of the curved plate 623 to the top edge of the extension plate 624 is 3.3 mm, the width of the first light-emitting surface 627 is 3 mm, and the width of the second light-emitting surface 628 is 3 mm. In actual implementation, the cross-section of the second light-emitting module 62 can also be designed into other structures and should not be limited to this.

[0050] In some embodiments, not only does the lower surface of the curved plate 623 curve toward the side plate 622, but the upper surface of the side plate 622 also curves toward the curved plate 623 and then away from the curved plate 623, resulting in a curved upper surface of the side plate 622. The majority of light emitted by the light-emitting element 625 is emitted from the second light-emitting surface 628, with a smaller portion emitted from the first light-emitting surface 627. In this first embodiment, the first light-emitting surface 627 and the second light-emitting surface 628 are arranged at right angles. In actual implementation, the first light-emitting surface 627 and the second light-emitting surface 628 may also have various configurations, such as arcs, obtuse angles, or acute angles, and should not be limited to this configuration.

[0051] In some embodiments, a light-scattering portion 629 is provided in the middle of the light guide 626, which can scatter the light emitted by the light-emitting component 625. The curvature of the upper edge of the light-scattering portion 629 matches the lower surface of the curved plate 623, and the curvature of the lower edge of the light-scattering portion 629 matches the upper surface of the side plate 622. The left edge of the light-scattering portion 629 is wavy.

[0052] Generally speaking, the second light-emitting module 62 is disposed in a corner inside the chassis body 31. In the first embodiment, the curved arc plate 623 can direct the light emitted by the light-emitting element 625 toward the inside of the chassis body 31, and the outwardly extending extension plate 624 can reflect the light output toward the outside of the chassis body 31. Therefore, the second light-emitting module 62 is different from the general light strips sold on the market and can concentrate the output light on the interior of the chassis body 31.

[0053] See Figure 3 ,and Figure 6 The control module 42 is a microcontroller (MCU) that can store and run programs. The control module 42 is electrically connected to the first touch sensing module 51, the first light-emitting module 61, the second touch sensing module 52, and the second light-emitting module 62. The power interface 44 is used to connect to a power module 21 to electrically connect the control module 42 to the power module 21. The control interface 45 is used to connect to a computer module 22 to electrically connect the control module 42 to the computer module 22.

[0054] The power module 21 can be a power supply or a power output port on a motherboard, providing power to the touch-sensitive, illuminated chassis device. The computer module 22 is a component of the computer. The control interface 45 is connected to the motherboard of the computer module 22 via a transmission line. The control module 42 transmits data to the computer module 22, allowing the computer module 22 to configure the control module 42. The control module 42 can also transmit the operating status of other electronic components to the computer module 22. In some embodiments, the power interface 44 is a two-pole power socket, and the control interface 45 is a ten-pole USB 2.0. In actual implementation, the specifications of the power interface 44 and the control interface 45 should be determined based on actual conditions and should not be limited to this.

[0055] The control module 42 can control the first light-emitting module 61 and the plurality of second light-emitting modules 62 to output colored lighting effects. The control module 42 analyzes the first touch-sensing module 51 and the second touch-sensing module 52 to change the light intensity and lighting pattern of the first light-emitting module 61 and the plurality of second light-emitting modules 62. In actual implementation, the first touch-sensing module 51 and the second touch-sensing module 52 can also be configured to control other computer components, and the present invention is not limited to this.

[0056] See Figure 7 ,and Figure 8, is a second embodiment of a chassis device with touch-sensitive lighting of the present invention. The second embodiment is substantially the same as the first embodiment, and the similarities are not described in detail here. The difference is that the chassis device with touch-sensitive lighting further includes a proximity unit 7, and the proximity unit 7 includes a proximity detection module 71 electrically connected to the control module 42.

[0057] The housing unit 3 further includes a rear panel 33 disposed on the housing body 31, wherein a second light emitting module 62 is disposed on the rear panel 33, and the proximity detection module 71 is disposed on the rear panel 33. Figure 9 In some embodiments, a protective shell 35 is further provided on the outside of the proximity detection module 71. The protective shell 35 covers the proximity detection module 71. The proximity detection module 71 detects outward through the protective shell 35 to detect whether a user is approaching. In actual implementation, the protective shell 35 may not be provided on the rear plate 33, and this should not be limited to this.

[0058] Typically, the rear panel 33 of the chassis body 31 is provided with a wiring area 34. This wiring area 34 is provided with numerous connection ports (e.g., HDMI jack, DisplayPort jack, USB jack, network cable jack, WIFI antenna jack, etc.) for connecting the computer module 22 to multiple computer peripheral devices. In some embodiments, the USB jacks may have the same structure, but with different specifications such as USB 2.0 and USB 3.0. In some embodiments, this wiring area 34 also includes a BIOS reset switch and a memory clear switch (Clear CMOS). If this wiring area 34 is not illuminated, it would be difficult for the user to identify the type of connection port or switch. A second light-emitting module 62 provided on the rear panel 33 illuminates this wiring area 34, making it easier for the user to set up the connection cables or trigger the switches.

[0059] The proximity detection module 71 is connected to the second light-emitting module 62. In the second embodiment, the proximity detection module 71 is a detection board connected to the second light-emitting module 62. The proximity detection module 71 can be made of a flexible printed circuit (FPC), also known as a flexible circuit board, flexible circuit board, flexible circuit board, flexible circuit board, or soft board, and is used to detect proximity or contact triggers. In actual implementation, the proximity detection module 71 can also use other detectors that can detect the proximity of objects or people, such as infrared detectors, and the present invention is not limited to this.

[0060] The proximity detection module 71 transmits a detection signal to the control module 42. When a user approaches or touches the protective shell 35 of the chassis body 31, the control module 42 can analyze the user's approach or touch and control the second light-emitting module 62 connected to the proximity detection module 71 to emit light. That is, the second light-emitting module 62 set on the rear plate 33 is controlled to emit light to provide an automatic lighting function for the wiring area 34. In the second embodiment, the second light-emitting module 62 illuminates the wiring area 34 from above. In actual implementation, the second light-emitting module 62 can also illuminate from other positions of the wiring area 34, and should not be limited to this.

[0061] In some embodiments, when a user touches the protective housing 35, the proximity detection module 71 can detect the user's touch. In some embodiments, when a user approaches the proximity detection module 71 or the protective housing 35 by approximately 20 mm or less, even without direct contact, the proximity detection module 71 can detect the user's approach. In some embodiments, three LED spotlights are provided on the second light-emitting module 62 disposed on the rear panel 33. When the proximity detection module 71 detects a touch or proximity, the LED spotlights on the second light-emitting module 62 illuminate.

[0062] From the above description, it can be seen that the touch-sensitive luminous chassis device of the present invention has the following functions:

[0063] 1. Provide touch control of lights:

[0064] The first touch-sensing strip 511 and the second touch-sensing strip 521 are exposed from the front panel 32 of the chassis body 31. The first touch-sensing module 51 is used to control the light intensity of the first light-emitting module 61 and the second light-emitting module 62, and the second touch-sensing module 52 is used to control the light-emitting mode of the first light-emitting module 61 and the second light-emitting module 62, allowing the user to control the lighting effects by touch.

[0065] Second, you can guide light into the chassis:

[0066] The lower surface of the arc plate 623 is bent toward the side plate 622, and the upper surface of the side plate 622 is in a curved arc shape. The curved arc plate 623 can direct the light emitted by the light-emitting component 625 toward the inside of the chassis body 31, and the outwardly extending extension plate 624 can reflect the light output toward the outside of the chassis body 31. Therefore, the second light-emitting module 62 of the present invention is different from the general light-emitting light strips sold on the market, and can concentrate the output light into the interior of the chassis body 31.

[0067] 3. Automatically turn on the light on the back of the case:

[0068] When a user approaches or touches the rear side of the chassis body 31, the proximity detection module 71 provided on the rear panel 33 senses the user's approach or touch, and the control module 42 controls the second light-emitting module 62 connected to the proximity detection module 71 to emit light, that is, controls the second light-emitting module 62 provided on the rear panel 33 to emit light. The present invention can automatically turn on the light on the back of the chassis to provide an automatic lighting function for the wiring area 34.

[0069] In summary, the touch unit 5 provides the chassis body 31 with the ability to detect user contact, thereby setting the light intensity and lighting effect mode of the lighting unit. The proximity unit 7 can detect the user's approach to the chassis body 31, and the proximity unit 7 is located on the rear side of the chassis body 31. When the user approaches or touches the rear side of the chassis body 31, the second light-emitting module 62 located on the rear side of the chassis body 31 can be automatically turned on. Therefore, the purpose of this utility model can indeed be achieved.

[0070] The above embodiments are only preferred embodiments for fully illustrating the present invention, and the protection scope of the present invention is not limited thereto. Any equivalent substitution or modification made by those skilled in the art based on the present invention shall fall within the protection scope of the present invention.

Claims

1. A chassis device with touch-sensitive luminescence, characterized in that: Include: A cabinet unit, comprising a chassis body; a control unit comprising a circuit module disposed in the chassis body and a control module disposed in the circuit module; a touch unit, comprising a first touch sensing module connected to the circuit module, wherein the control module is electrically connected to the first touch sensing module; and A light-emitting unit includes a first light-emitting module disposed on the circuit module, and the control module is electrically connected to the first light-emitting module.

2. The chassis device with touch-sensitive luminescence according to claim 1, wherein: The touch unit further includes a second touch sensing module connected to the circuit module, and the control module is electrically connected to the second touch sensing module.

3. The chassis device with touch-sensitive lighting as claimed in claim 2, wherein: The first touch sensing module and the second touch sensing module are respectively disposed on opposite sides of the first light emitting module.

4. The touch-sensitive luminous chassis device according to claim 1, wherein: The control unit further includes at least one lighting interface connected to the circuit module, the light-emitting unit further includes at least one second light-emitting module electrically connected to the lighting interface, and the control module is electrically connected to the second light-emitting module.

5. The chassis device with touch-sensitive luminescence according to claim 4, wherein: The second light-emitting module comprises a base plate, a side plate connected to the base plate, a curved plate connected to the base plate, an extension plate connected to the curved plate, a light-emitting component arranged on the base plate, a light guide arranged between the side plate, the curved plate and the extension plate, a first light-emitting surface arranged on the light guide and connected to the extension plate, and a second light-emitting surface arranged on the light guide and connected to the side plate, the curved plate is bent toward the side plate, the extension plate extends from the top end of the curved plate toward the direction opposite to the base plate, and the length of the curved plate plus the extension plate is greater than the length of the side plate.

6. The chassis device with touch-sensitive luminescence according to claim 5, wherein: The second light emitting module further comprises a first light emitting surface disposed on the light guide and connected to the extension plate, a second light emitting surface disposed on the light guide and connected to the side plate, and a light scattering portion disposed in the middle of the light guide.

7. The chassis device with touch-sensitive luminescence according to claim 4, wherein: The system further comprises a proximity unit, which includes a proximity detection module electrically connected to the control module.

8. The chassis device with touch-sensitive lighting as claimed in claim 7, wherein: The proximity detection module is connected to the second light emitting module. The box unit further includes a rear plate disposed on the chassis body, and the proximity detection module is disposed on the rear plate.

9. The chassis device with touch-sensitive lighting as claimed in claim 1, wherein: The control unit further includes a power interface connected to the circuit module, and the power interface is used to connect to a power module.

10. The chassis device with touch-sensitive lighting as claimed in claim 1, wherein: The control unit further includes a control interface connected to the circuit module, and the control interface is used to connect to a computer module.