Lighting effect control system based on operating state of electronic device

WO2025091467A8PCT designated stage expired Publication Date: 2025-06-05ADATA TECHNOLOGY CO LTD
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Patent Information

Application Number
PCT/CN2023/129623
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Filing Date
2023-11-03
Publication Date
2025-06-05

AI Technical Summary

Technical Problem

The prior art is difficult to effectively reflect the operating status of the electronic device through lighting effects, resulting in users being unable to intuitively feel the operating efficiency of the equipment.

Method used

A lighting control system is designed to obtain the operating status data of the electronic device (such as reading speed and writing speed) through the main controller, and to adjust the luminous state of the light emitting device in real time based on these data to show dynamic visual effects.

Benefits of technology

It realizes dynamically adjusting the lighting effect according to the operating status of the electronic device, improving users' perception of the operating efficiency of the equipment, especially providing a cool and practical visual experience on e-sports special computers.

✦ Generated by Eureka AI based on patent content.

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Abstract

A lighting effect control system (SYS) based on the operating state of an electronic device. The lighting effect control system (SYS) comprises a main controller (10) and a light-emitting controller (20). The main controller (10) acquires operating state data of an electronic device (100), and determines light-emitting states of light-emitting devices (200a, 200b, 200c, 200d) on the basis of the operating state data of the electronic device (100) so as to output a main control signal. The light-emitting controller (20) controls the light-emitting states of the light-emitting devices (200a, 200b, 200c, 200d) on the basis of the main control signal received from the main controller (10).
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Description

Lighting effect control system based on the operating status of electronic devices Technical Field

[0001] The present invention relates to a lighting effect control system, and in particular to a lighting effect control system based on the operating state of an electronic device. Background Art

[0002] In recent years, all computer components and peripherals related to the esports industry have been characterized by dazzling lighting effects to attract market attention and win the hearts of gamers. This includes personal computers (PCs), laptops, monitors, mice, keyboards, headsets, solid-state drives (SSDs), and countless other products. In particular, most popular games today require large amounts of storage space to play smoothly. The main advantages of using an SSD for gaming are faster loading times, a smoother gaming experience (higher FPS), and enhanced graphics. For gamers seeking a more immersive experience and the thrill of extreme speed, an SSD is an indispensable companion.

[0003] Summary of the Invention

[0004] The present invention addresses the shortcomings of the prior art and provides a lighting effect control system based on the operating status of an electronic device. The lighting effect control system includes a main controller and a lighting controller. The main controller is configured to obtain operating status data of the electronic device. The main controller is configured to determine the lighting state of a lighting device based on the operating status data of the electronic device and output a main control signal. The lighting controller is connected to the main controller and the lighting device. The lighting controller is configured to control the lighting state of the lighting device based on the main control signal received from the main controller.

[0005] As described above, the present invention provides a lighting effect control system based on the operating status of an electronic device. This lighting effect control system can, based on the operating status data of the electronic device (including the data writing speed and data reading speed of the electronic device), regulate the luminous state of a lighting device (including its multiple light-emitting components) in real time, thereby presenting dynamic visual effects to the user of the electronic device and bystanders, thereby enhancing the user's perception of the electronic device's operating efficiency. This system is particularly useful for providing stunning visual effects on gaming computers while also providing practical benefits.

[0006] To further understand the features and technical contents of the present invention, please refer to the following detailed description and drawings of the present invention. However, the drawings provided are only for reference and illustration and are not intended to limit the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0007] FIG. 1 is a block diagram of a lighting effect control system based on the operating status of an electronic device according to a first embodiment of the present invention.

[0008] FIG. 2 is a block diagram of a lighting effect control system based on the operating status of an electronic device according to a second embodiment of the present invention.

[0009] FIG. 3 is a block diagram of a lighting effect control system based on the operating status of an electronic device according to a third embodiment of the present invention.

[0010] FIG. 4 is a block flow diagram of a lighting effect control system based on the operating status of an electronic device according to a fourth embodiment of the present invention.

[0011] 5 is a schematic diagram illustrating different parameters set by a lighting effect control system based on the operating state of an electronic device according to different read speeds and write speeds of the electronic device according to a fifth embodiment of the present invention. DETAILED DESCRIPTION

[0012] The following is an explanation of the embodiments of the present invention through specific embodiments. Those skilled in the art can understand the advantages and effects of the present invention from the contents disclosed in this specification. The present invention can be implemented or applied through other different specific embodiments, and the details in this specification can also be modified and changed based on different viewpoints and applications without departing from the concept of the present invention. In addition, the drawings of the present invention are only simple schematic illustrations and are not depicted according to actual dimensions. It is stated in advance. The following embodiments will further explain the relevant technical content of the present invention in detail, but the disclosed contents are not intended to limit the scope of protection of the present invention. In addition, the term "or" used herein may include any one or more combinations of the associated listed items depending on the actual situation.

[0013] Please refer to FIG. 1 , which is a block diagram of a lighting effect control system based on the operating status of an electronic device according to a first embodiment of the present invention.

[0014] The lighting effect control system SYS of the present invention is applied to control the lighting state of a lighting device (installed on or around the electronic device 100 ) based on the operating state data of the electronic device 100 .

[0015] Herein, the electronic device 100 to which the lighting effect control system SYS of the present invention is applied may include one or more storage devices, such as NAND flash memory or other types of memory, which is merely an example and the present invention is not limited thereto.

[0016] The lighting effect control system SYS of the present invention includes a main controller 10 and a light controller 20. The light controller 20 is connected to the main controller 10 and the light controller 20. The light controller 20 is connected to the light device 200a.

[0017] The main controller 10 may transmit an operation data request signal to the connected electronic device 100 to request the electronic device 100 to provide the operation status data of the electronic device 100 to the main controller 10. In practice, the main controller 10 may obtain the operation status data of the electronic device 100 from not only the electronic device 100 itself but also other devices (e.g., one or more sensors).

[0018] The main controller 10 determines the lighting state of the lighting device 200a based on the operating status data of the electronic device 100 and outputs a main control signal. The lighting controller 20 controls the lighting state of the lighting device 200a based on the main control signal received from the main controller 10. In particular, the main controller 10 instructs the lighting controller 20 to adjust the current lighting state of the lighting device 200a to correspond to the current operating status data based on the current operating status data of the electronic device 100 in real time.

[0019] The lighting device controlled by the lighting effect control system SYS of the present invention may include one or more light-emitting components, such as, but not limited to, one or more light-emitting diodes (LEDs), and the light-emitting device may be in the form of multiple light strips. It should be understood that the type and number of light-emitting components controlled by the lighting effect control system SYS of the present invention are merely illustrative and are not intended to be limiting.

[0020] The main controller 10 of the lighting effect control system SYS of the present invention can detect or obtain the operating status data of the electronic device 100 at a specified operating detection time point or a specified operating detection time interval, and thereby instruct the light-emitting controller 20 in real time to dynamically adjust the light-emitting status (including the order, frequency, color, brightness, pattern, etc. of the emitted light) of the multiple light-emitting components included in the light-emitting device 200a within a light-emitting time interval to correspond to the operating status data of the electronic device 100 at a specified operating detection time point or a specified operating detection time interval.

[0021] Please refer to Figure 2, which is a block diagram of a lighting effect control system based on the operating status of an electronic device according to a second embodiment of the present invention. The similarities between the second embodiment and the first embodiment of the present invention are not repeated here.

[0022] In a second embodiment of the present invention, the lighting effect control system SYS of the present invention is used to control the lighting state of multiple lighting circuits (e.g., the first lighting circuit 210, the second lighting circuit 220, or both shown in FIG. 2 ) included in a lighting device 200b based on operating status data of an electronic device 100. Herein, each of the multiple lighting circuits included in the lighting device 200b may include one or more lighting components, such as, but not limited to, one or more light-emitting diodes (LEDs).

[0023] The main controller 10 can determine the light-emitting states of the multiple light-emitting circuits included in the light-emitting device 200b based on the multiple operating status information included in the operating status data of the electronic device 100, and instruct the light-emitting controller 20 to control the light-emitting of the multiple light-emitting circuits so that the light-emitting states of the multiple light-emitting circuits correspond to the multiple operating status information of the electronic device 100.

[0024] Alternatively, the main controller 10 may comprehensively consider a combination of multiple operating status information of the electronic device 100 to determine the lighting status of multiple lighting circuits included in the lighting device 200b, and instruct the lighting controller 20 to control the lighting of the multiple lighting circuits accordingly.

[0025] For example, in the second embodiment of the present invention, the multiple operating status information of the electronic device 100 obtained by the main controller 10 may include the reading speed, writing speed or both of the electronic device 100, which are respectively used for the first light-emitting circuit 210, the second light-emitting circuit 220 or both as shown in Figure 2.

[0026] The main controller 10 can determine the lighting state of one or more light-emitting components in the first lighting circuit 210 based on the reading speed of the electronic device 100, and accordingly output a (first) main control signal to the lighting controller 20. The lighting controller 20 can output a first lighting control signal to the first lighting circuit 210 of the lighting device 200b based on the (first) main control signal received from the main controller 10. In this way, the lighting state of the first lighting circuit 210 of the lighting device 200b depends on the reading speed of the electronic device 100. If the reading speed of the electronic device 100 is variable, the lighting state of the first lighting circuit 210 changes as the reading speed of the electronic device 100 changes.

[0027] Furthermore, the main controller 10 can determine the lighting state of one or more light-emitting elements in the second lighting circuit 210 based on the writing speed of the electronic device 100, and accordingly output a (second) main control signal to the lighting controller 20. The lighting controller 20 can output a second lighting control signal to the second lighting circuit 220 of the lighting device 200b based on the (second) main control signal received from the main controller 10. In this way, the lighting state of the second lighting circuit 220 depends on the writing speed of the electronic device 100. If the writing speed of the electronic device 100 is variable, the lighting state of the second lighting circuit 220 of the lighting device 200b changes as the writing speed of the electronic device 100 changes.

[0028] That is to say, the light-emitting controller 20 of the second embodiment of the present invention can, based on multiple operating status information (such as reading speed and writing speed) of the electronic device 100 at a specified operating detection time point or a specified operating detection time interval, simultaneously instruct the light-emitting controller 20 to dynamically adjust the light-emitting states of multiple light-emitting circuits (such as the first light-emitting circuit 210 and the second light-emitting circuit 220) of the light-emitting device 200a to correspond to the multiple operating status information (such as reading speed and writing speed) of the electronic device 100 at a specified operating detection time point or a specified operating detection time interval.

[0029] 3 is a block diagram of a lighting effect control system based on the operating status of an electronic device according to a third embodiment of the present invention. The third embodiment of the present invention is similar to the first and second embodiments and is not described in detail here.

[0030] In a third embodiment of the present invention, the lighting effect control system SYS of the present invention is applied to control the lighting state of a first light-emitting circuit 210c and a second light-emitting circuit 220c included in a light-emitting device 200c based on the operating status data of an electronic device 100, wherein the first light-emitting circuit 210c includes a plurality of light-emitting components LED11 to LED1n, and the second light-emitting circuit 220c includes a plurality of light-emitting components LED21 to LED2n.

[0031] The main controller 10 may detect the reading speed of the electronic device 100 continuously or at predetermined intervals, for example but not limited to, detecting the reading speed of the electronic device 100 every second.

[0032] The main controller 10 may determine the combination of the lighting states of the plurality of light-emitting elements LED11 to LED1n in the first lighting circuit 210c of the lighting device 200c according to the currently detected reading speed of the electronic device 100 to output a first main control signal.

[0033] The light controller 20 outputs multiple first light control signals in real time to the multiple light-emitting components LED11 to LED1n of the first light-emitting circuit 210c based on the first main control signal received from the main controller 10, so as to control the operation of the multiple light-emitting components LED11 to LED1n respectively, so that the combination of the light-emitting states of the multiple light-emitting components LED11 to LED1n of the first light-emitting circuit 210c corresponds to the reading speed of the electronic device 100.

[0034] The main controller 10 may detect the writing speed of the electronic device 100 continuously or at predetermined intervals, for example but not limited to detecting the writing speed of the electronic device 100 every second.

[0035] The main controller 10 may determine the combination of the lighting states of the plurality of light-emitting elements LED21 to LED2n of the second lighting circuit 220c of the lighting device 200c according to the currently detected writing speed of the electronic device 100 to output a second main control signal.

[0036] The light-emitting controller 20 outputs multiple second light-emitting control signals to the multiple light-emitting components LED21 to LED2n in the second light-emitting circuit 220c of the light-emitting device 200c according to the second main control signal received from the main controller 10, so as to respectively control the operation of the multiple light-emitting components LED21 to LED2n, so that the combination of the light-emitting states of the multiple light-emitting components LED21 to LED2n in the second light-emitting circuit 220c corresponds to the writing speed of the electronic device 100.

[0037] Please refer to FIG. 4 , which is a block diagram of a lighting effect control system based on the operating status of an electronic device according to a fourth embodiment of the present invention.

[0038] The lighting effect control system SYS of the present invention can be used to control the lighting states of n light-emitting components included in a lighting device 200d based on the operating status data of the electronic device 100. The n light-emitting components can be categorized into n lighting circuits, and the categorization method can depend on which operating status information of the electronic device 100 the lighting effect control system SYS of the present invention controls the lighting state of the lighting device 200d.

[0039] For example, in the fourth embodiment of the present invention, the plurality of light-emitting components LED11 to LED15 are classified into the first light-emitting circuit 210 d , and the plurality of light-emitting components LED21 to LED25 are classified into the second light-emitting circuit 220 d .

[0040] The light emitting element LED11 of the first light emitting circuit 210d is connected to the light emitting controller 20. The plurality of light emitting elements LED11 to LED15 of the first light emitting circuit 210d are arranged in sequence and connected in series in the order of arrangement.

[0041] Specifically, the anode of light-emitting component LED11 is connected to the output terminal of main controller 10, the cathode of light-emitting component LED11 is connected to the anode of light-emitting component LED12, the cathode of light-emitting component LED12 is connected to the anode of light-emitting component LED13, the cathode of light-emitting component LED13 is connected to the anode of light-emitting component LED14, and the cathode of light-emitting component LED14 is connected to the anode of light-emitting component LED15. If desired, the cathode of light-emitting component LED15 can be connected to a reference voltage (e.g., ground) or to an input terminal of main controller 10.

[0042] The light emitting element LED21 of the second light emitting circuit 220d is also connected to the light emitting controller 20. The plurality of light emitting elements LED21 to LED25 of the second light emitting circuit 220d are arranged in sequence and connected in series in the order of arrangement.

[0043] Specifically, the anode of light-emitting component LED21 is connected to the output terminal of main controller 10, the cathode of light-emitting component LED21 is connected to the anode of light-emitting component LED22, the cathode of light-emitting component LED22 is connected to the anode of light-emitting component LED23, the cathode of light-emitting component LED23 is connected to the anode of light-emitting component LED24, and the cathode of light-emitting component LED24 is connected to the anode of light-emitting component LED25. If desired, the cathode of light-emitting component LED25 can be connected to a reference voltage (e.g., ground) or to an input terminal of main controller 10.

[0044] The main controller 10 may determine the speed at which the plurality of light-emitting elements LED11 to LED15 of the first light-emitting circuit 210 d sequentially emit light according to the reading speed of the electronic device 100 to output the first main control signal.

[0045] The light-emitting controller 20 can output a first light-emitting control signal to the light-emitting component LED11 of the first light-emitting circuit 210d based on the first main control signal received from the main controller 10, and then transmit the first light-emitting control signal to the multiple light-emitting components LED12 to LED15 of the first light-emitting circuit 210d in sequence according to the serial connection order of the multiple light-emitting components LED11 to LED15 of the first light-emitting circuit 210d, so as to control the speed at which the multiple light-emitting components LED11 to LED15 emit light in sequence, for example, it can be used to control the running speed of the first marquee displayed on the display device (i.e., the above-mentioned electronic device) or to control the speed at which multiple first pixel blocks of the display device emit light in sequence.

[0046] For example, the light controller 20 can determine the frequencies of multiple pulses of the first frequency signal based on the master control information of the reading speed of the corresponding electronic device 100 indicated by the (first) master control signal received from the main controller 10, and send the first frequency signal as the first light control signal to the light-emitting component LED11 of the first light-emitting circuit 210d, and then transmit it to the first light-emitting circuit 210d in sequence according to the serial connection order of the multiple light-emitting components LED11 to LED15 of the first light-emitting circuit 210d, so as to control the light-emitting speed of the multiple light-emitting components LED11 to LED15 included in the first light-emitting circuit 210d to correspond to the reading speed of the electronic device 100.

[0047] When the electronic device 100 reads data faster, the multiple light-emitting components LED11 to LED15 of the first light-emitting circuit 210d sequentially emit light faster, and the first ticker displayed on the display device ticks faster. Conversely, when the electronic device 100 reads data slower, the multiple light-emitting components LED11 to LED15 of the first light-emitting circuit 210d sequentially emit light slower, and the first ticker displayed on the display device ticks faster.

[0048] The main controller 10 may determine the speed at which the plurality of light-emitting elements LED21 to LED25 of the second light-emitting circuit 220 d sequentially emit light according to the reading speed of the electronic device 100 to output the first main control signal.

[0049] The light-emitting controller 20 can output a second light-emitting control signal to the light-emitting component LED21 of the second light-emitting circuit 220d according to the second main control signal received from the main controller 10, and then transmit the second light-emitting control signal to the multiple light-emitting components LED22 to LED25 of the second light-emitting circuit 220d in sequence according to the serial connection order of the multiple light-emitting components LED21 to LED25 of the second light-emitting circuit 220d, so as to control the speed at which the multiple light-emitting components LED21 to LED25 emit light in sequence, for example, it can be used to control the running speed of the second marquee displayed on the display device (i.e., the above-mentioned electronic device 100) or to control the speed at which multiple second pixel blocks of the display device emit light in sequence.

[0050] For example, the light controller 20 can determine the frequencies of multiple pulses of the second frequency signal based on the master control information of the write speed of the corresponding electronic device 100 indicated by the (second) master control signal received from the main controller 10, and use the second frequency signal as the second light control signal to the light-emitting component LED21 of the second light-emitting circuit 220d, and then transmit it to the second light-emitting circuit 220d in sequence according to the serial connection order of the multiple light-emitting components LED21 to LED25 of the second light-emitting circuit 220d, so as to control the light-emitting speed of the multiple light-emitting components LED21 to LED25 included in the second light-emitting circuit 220d to correspond to the write speed of the electronic device 100.

[0051] When the writing speed of the electronic device 100 is faster, the multiple light-emitting components LED21 to LED25 of the second light-emitting circuit 220d sequentially emit light faster, and the second ticker displayed on the display device runs faster. Conversely, when the writing speed of the electronic device 100 is slower, the multiple light-emitting components LED21 to LED25 of the second light-emitting circuit 220d sequentially emit light slower, and the second ticker displayed on the display device runs faster.

[0052] Please refer to FIG. 5 , which is a schematic diagram illustrating different parameters set by a lighting effect control system based on the operating state of an electronic device according to different read speeds and write speeds of the electronic device according to a fifth embodiment of the present invention.

[0053] The lighting effect control system of the present invention, such as the lighting effect control system SYS of the present invention shown in any one of FIG. 1 to FIG. 4 , can perform the following operations.

[0054] The main controller 10 can set a plurality of read speed critical ranges corresponding to a plurality of read speed levels, and can set a plurality of read master control commands corresponding to the plurality of read speed critical ranges.

[0055] For example, as shown in FIG5 , the main controller 10 may set the first to sixth speed levels, namely, fast, slightly fast, medium, slightly slow, slow, and static, to have a first read speed critical range (e.g., >3000 MB / s), a second read speed critical range (e.g., 2000 MB / s to 3000 MB / s, or upper and lower limits equal to 2000 MB / s), a third read speed critical range (e.g., 1000 MB / s to 2000 MB / s but not including 2000 MB / s, or upper and lower limits equal to 1000 MB / s), a fourth read speed critical range (e.g., 500 MB / s to 1000 MB / s and 100 MB / s to 500 MB / s but not including 1000 MB / s, or upper and lower limits equal to 500 MB / s), a fifth read speed critical range (e.g., <100 MB / s), and a sixth read speed critical range (e.g., equal to 0 MB / s). The above are merely examples and the present invention is not limited thereto.

[0056] The main controller 10 can determine whether the electronic device 100's reading speed falls within a plurality of critical reading speed ranges, and thereby determine which of a plurality of reading speed levels the electronic device 100's reading speed belongs to. The main controller 10 can then output a first main control signal to the light controller 20 based on a read main control command corresponding to the critical reading speed range within which the electronic device 100's reading speed falls.

[0057] The light-emitting controller 20 outputs (multiple) first light-emitting control signals to the light-emitting device (multiple light-emitting components of the first light-emitting circuit, such as the multiple light-emitting components LED11 to LED1n of the first light-emitting circuit 210c shown in Figure 3 or the multiple light-emitting components LED11 to LED15 of the first light-emitting circuit 210d shown in Figure 4) based on the first main control signal received from the main controller 10.

[0058] The light controller 20 can set multiple reading light control parameter values ​​(such as but not limited to hexadecimal codes) corresponding to multiple reading speed critical ranges. The light controller 20 can obtain the reading speed of the electronic device 100 based on the first main control signal received from the main controller 10.

[0059] The light-emitting controller 20 can further determine which of multiple reading speed critical ranges the reading speed of the electronic device 100 falls into, and output a first light-emitting control signal to the light-emitting device (the multiple light-emitting components of the first light-emitting circuit, such as the multiple light-emitting components LED11 to LED1n of the first light-emitting circuit 210c shown in Figure 3 or the multiple light-emitting components LED11 to LED15 of the first light-emitting circuit 210d shown in Figure 4) based on the reading light control parameter value corresponding to the reading speed critical range that the reading speed of the electronic device 100 falls into.

[0060] The faster the writing speed of the electronic device 100 is, the faster the multiple light-emitting components of the first light-emitting circuit of the light-emitting device can sequentially emit light. Conversely, the slower the writing speed of the electronic device 100 is, the slower the multiple light-emitting components of the first light-emitting circuit of the light-emitting device can sequentially emit light.

[0061] In practice, the faster the writing speed of the electronic device 100, the higher the brightness or other parameter values ​​of the multiple light-emitting components of the first light-emitting circuit of the light-emitting device. Conversely, the slower the writing speed of the electronic device 100, the lower the brightness or other parameter values ​​of the multiple light-emitting components of the first light-emitting circuit of the light-emitting device.

[0062] Additionally or alternatively, the main controller 10 may set a plurality of write speed critical ranges corresponding to a plurality of write speed levels, and may set a plurality of write master control commands corresponding to the plurality of write speed critical ranges.

[0063] For example, the main controller 10 may set the first to sixth speed levels of fast, slightly fast, medium, slightly slow, slow, and static as shown in FIG5 , including a first write speed critical range (e.g., >3000 MB / s), a second write speed critical range (e.g., 2000 MB / s to 3000 MB / s, or upper and lower limits equal to 2000 MB / s), a third write speed critical range (e.g., 1000 MB / s to 2000 MB / s but not including 2000 MB / s, or upper and lower limits equal to 1000 MB / s), a fourth write speed critical range (e.g., 500 MB / s to 1000 MB / s and 100 MB / s to 500 MB / s but not including 1000 MB / s, or upper and lower limits equal to 500 MB / s), a fifth write speed critical range (e.g., <100 MB / s), and a sixth write speed critical range (e.g., equal to 0 MB / s). The above are merely examples and the present invention is not limited thereto.

[0064] In the fifth embodiment of the present invention, the plurality of read speed critical ranges and the plurality of write speed critical ranges are set to be the same, but they may be different in practice.

[0065] The main controller 10 can determine whether the write speed of the electronic device 100 falls within a plurality of write speed critical ranges, and thereby determine which of the plurality of read speed levels the write speed of the electronic device 100 belongs to. The main controller 10 can then output a second main control signal to the light controller 20 based on a write main control command corresponding to the write speed critical range within which the write speed falls.

[0066] The light-emitting controller 20 outputs a second light-emitting control signal to the light-emitting device (multiple light-emitting components of the second light-emitting circuit, such as the multiple light-emitting components LED21 to LED2n of the second light-emitting circuit 220c shown in Figure 3 or the multiple light-emitting components LED21 to LED25 of the second light-emitting circuit 220d shown in Figure 4) based on the second main control signal received from the main controller 10.

[0067] The light controller 20 can set multiple writing light control parameter values ​​(such as but not limited to hexadecimal codes) corresponding to multiple writing speed critical ranges. The light controller 20 can obtain the writing speed of the electronic device 100 based on the second main control signal received from the main controller 10.

[0068] The light-emitting controller 20 can further determine which of multiple writing speed critical ranges the writing speed of the electronic device 100 falls into, and output a second light-emitting control signal to the light-emitting device (the multiple light-emitting components of the second light-emitting circuit, such as the multiple light-emitting components LED21 to LED2n of the second light-emitting circuit 220c shown in Figure 3 or the multiple light-emitting components LED21 to LED25 of the second light-emitting circuit 220d shown in Figure 4) based on the write light control parameter value corresponding to the writing speed critical range into which the writing speed of the electronic device 100 falls.

[0069] The faster the writing speed of the electronic device 100 is, the faster the multiple light-emitting components of the second light-emitting circuit of the light-emitting device can sequentially emit light. Conversely, the slower the writing speed of the electronic device 100 is, the slower the multiple light-emitting components of the second light-emitting circuit of the light-emitting device can sequentially emit light.

[0070] 5 , the multiple read lighting control parameter values ​​and the multiple write lighting control parameter values ​​set in this embodiment are the same, but the present invention is not limited thereto. In practice, the multiple read lighting control parameter values ​​and the multiple write lighting control parameter values ​​described herein may also be different.

[0071] It should be understood that in this article, the type and type of storage device contained in the light-emitting device controlled by the lighting effect control system of the present invention, the number, type and type of light-emitting components, the color and light intensity of the light emitted by the light-emitting components, etc. may depend on actual needs, and the present invention is not limited thereto.

[0072] In summary, the present invention provides a lighting effect control system based on the operating status of an electronic device. This lighting effect control system, based on the operating status data of the electronic device (including the data writing and reading speeds of the electronic device), can regulate the luminous state of a light-emitting device (including its multiple light-emitting components) in real time, thereby presenting dynamic visual effects to the user of the electronic device and bystanders, thereby enhancing the user's perception of the electronic device's operating efficiency. This system is particularly useful for providing stunning visual effects on gaming computers while also providing practical benefits.

[0073] The contents disclosed above are only preferred feasible embodiments of the present invention and are not intended to limit the claims of the present invention. Therefore, any equivalent technical changes made using the contents of the present invention's description and drawings are included in the claims of the present invention.

Claims

1. A lighting effect control system based on the operating state of an electronic device, characterized in that: The lighting effect control system based on the operating state of the electronic device includes: A main controller configured to obtain operation status data of the electronic device, determine the light-emitting state of the light-emitting device according to the operation status data of the electronic device, and output a main control signal; as well as The light-emitting controller is connected to the main controller and the light-emitting device, and is configured to control the light-emitting state of the light-emitting device according to the main control signal received from the main controller.

2. The lighting effect control system based on the operating status of an electronic device according to claim 1, characterized in that: The electronic device includes a storage device.

3. The lighting effect control system based on the operating status of an electronic device according to claim 1, characterized in that: The light-emitting device includes one or more light-emitting components.

4. The lighting effect control system based on the operating status of an electronic device according to claim 1, characterized in that: The light-emitting device includes a plurality of light-emitting circuits. The main controller outputs the main control signal according to a plurality of operation status information included in the operation status data of the electronic device, so as to instruct the light-emitting controller to control the light-emitting of the plurality of light-emitting circuits.

5. The lighting effect control system based on the operating status of an electronic device according to claim 1, characterized in that: The operating status data of the electronic device obtained by the main controller includes the reading speed of the electronic device. The main controller determines the light-emitting state of the light-emitting device according to the reading speed of the electronic device to output the main control signal.

6. The lighting effect control system based on the operating status of an electronic device according to claim 1, characterized in that: The operating status data of the electronic device obtained by the main controller includes the writing speed of the electronic device. The main controller determines the luminous state of the luminous device according to the reading speed of the electronic device to output the main control signal.

7. The lighting effect control system based on the operating status of an electronic device according to claim 1, characterized in that: The main controller outputs a first main control signal and a second main control signal respectively according to the reading speed and the writing speed of the electronic device included in the operation status data of the electronic device. The main control signal includes the first main control signal and the second main control signal.

8. The lighting effect control system based on the operating state of an electronic device according to claim 7, characterized in that: The light-emitting device includes a plurality of light-emitting circuits, the plurality of light-emitting circuits include a first light-emitting circuit and a second light-emitting circuit, the light-emitting controller outputs a first light-emitting control signal to the first light-emitting circuit according to the first main control signal, and outputs a second light-emitting control signal to the second light-emitting circuit according to the second main control signal.

9. The lighting effect control system based on the operating state of an electronic device according to claim 8, characterized in that: The first lighting circuit includes a plurality of lighting components. The main controller determines the lighting states of the plurality of lighting components included in the first lighting circuit according to the reading speed of the electronic device, and outputs the first main control signal to the lighting controller accordingly.

10. The lighting effect control system based on the operating state of an electronic device according to claim 9, characterized in that: The light controller outputs a frequency signal according to the first main control signal received from the main controller and transmits it to the plurality of light-emitting components of the first light-emitting circuit in sequence, so as to control the plurality of light-emitting components of the first light-emitting circuit to emit light in sequence.

11. The lighting effect control system based on the operating state of an electronic device according to claim 8, characterized in that: The second light-emitting circuit includes a plurality of light-emitting components. The main controller determines the light-emitting states of the plurality of light-emitting components included in the second light-emitting circuit according to the writing speed of the electronic device, and outputs the second main control signal to the light-emitting controller accordingly.

12. The lighting effect control system based on the operating state of an electronic device according to claim 11, characterized in that: The light controller outputs a frequency signal according to the second main control signal received from the main controller and transmits it to the plurality of light-emitting components of the second light-emitting circuit in sequence, so as to control the plurality of light-emitting components of the second light-emitting circuit to emit light in sequence.

13. The lighting effect control system based on the operating state of an electronic device according to claim 8, characterized in that: The main controller sets multiple read speed critical ranges and corresponding multiple read main control commands, determines which of the multiple read speed critical ranges the read speed of the electronic device falls into, and outputs the first main control signal to the first light-emitting circuit according to the corresponding read main control command.

14. The lighting effect control system based on the operating state of an electronic device according to claim 8, characterized in that: The main controller sets multiple write speed critical ranges for multiple write speed levels and their corresponding multiple write master control commands, and determines which of the multiple write speed critical ranges the write speed of the electronic device falls into, so as to output the second master control signal to the second light-emitting circuit according to the corresponding write master control command.

15. The lighting effect control system based on the operating state of an electronic device according to claim 8, characterized in that: The light-emitting controller sets multiple reading speed critical ranges and corresponding multiple reading light control parameter values, and determines which of the multiple reading speed critical ranges the reading speed of the electronic device falls into based on the first main control signal, so as to output a first light-emitting control signal to the first light-emitting circuit based on the corresponding reading light control parameter value.

16. The lighting effect control system based on the operating state of an electronic device according to claim 8, characterized in that: The light-emitting controller sets multiple write speed critical ranges and their corresponding multiple write light control parameter values, and determines which of the multiple write speed critical ranges the write speed of the electronic device falls into based on the second main control signal, so as to output the second light-emitting control signal to the second light-emitting circuit based on the corresponding write light control parameter value.