Heat dissipation equipment with dynamic interaction function for solid state disk

By using a dynamic interactive cooling device with intelligent control of the AK128E main control chip and LN2293 chip, combined with microphone to collect sound signals, efficient heat dissipation and rich lighting interaction are achieved, solving the problem of low heat dissipation efficiency of solid-state drives and improving user experience and hard drive stability.

CN223638121UActive Publication Date: 2025-12-05GUANGDONG ZHIANXIN TECH CO LTD
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Patent Information

Application Number
CN202520264125.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-19
Publication Date
2025-12-05
Estimated Expiration
2035-02-19

AI Technical Summary

Technical Problem

Existing solid-state drive (SSD) cooling products have low heat dissipation efficiency, cannot effectively control temperature, affect drive performance and lifespan, and pose data security risks.

Method used

A heat dissipation device with dynamic interactive function was designed, including a main control circuit, a fan control circuit, a heat sink control circuit, a MIC module and a RGB lighting control circuit. Intelligent heat dissipation and lighting interaction are achieved through the AK128E main control chip and the LN2293 chip. Combined with the microphone to collect external sound signals, the heat dissipation and lighting effects are dynamically adjusted.

Benefits of technology

It improves heat dissipation efficiency, enhances user experience and product stability, increases product fun and security through dynamic interactive functions, extends hard drive life, and reduces power consumption.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the technical field of embedded equipment, in particular to radiating equipment with a dynamic interaction function for a solid state disk, which comprises a main control circuit, a fan control circuit, a radiating fin control circuit and an MIC (Microphone) module, the fan control circuit, the radiating fin control circuit and the MIC module are respectively connected with the main control circuit, and the fan control circuit is connected with the radiating fin control circuit. The fan control circuit is connected with a fan, the cooling fin control circuit is connected with cooling fins, and the MIC module is connected with a microphone. The master control circuit is further connected with a fantasy color lamp control circuit, and the fantasy color lamp control circuit is connected with fantasy color lamps. The master control circuit is connected with a nixie tube control circuit, and the nixie tube control circuit is connected with a nixie tube. Compared with the prior art, the heat dissipation equipment with the dynamic interaction function for the solid state disk has the advantages that the heat dissipation efficiency is improved, the temperature can be effectively controlled, the problem of low heat dissipation efficiency of products on the market can be solved, the interaction modes are enriched, the products have fashionability and interestingness, the functionality of the products is increased, and the heat dissipation efficiency of the products is improved. And the use experience of the user is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to embedded device technical field, especially a kind of heat dissipation equipment with dynamic interaction function for solid state disk. BACKGROUND

[0002] With the continuous development of solid state disk technology, its read-write speed and data transmission capacity have been significantly improved, but at the same time, it also brings higher heat generation. Solid state disk will generate certain heat when working, especially when a large amount of data is read or written or high-performance applications are running, its temperature may rise significantly. Excessive temperature not only affects the performance of solid state disk, but also may cause data loss or hardware damage. With the increase of temperature, the read-write speed of solid state disk may also decrease, and the read delay increases, thereby affecting the overall system performance. The service life of solid state disk is closely related to its working environment temperature. Excessive temperature will accelerate the aging of internal components of solid state disk, shorten its service life.

[0003] Heat dissipation products can reduce the working temperature of solid state disk through heat dissipation, thereby maintaining its optimal performance state. Heat dissipation products can slow down the aging process by reducing temperature, thereby prolonging the service life of solid state disk. Running solid state disk at high temperature may also cause data loss or damage, which is a huge risk for applications that store important data. Heat dissipation products help protect the integrity and security of data by keeping solid state disk running within a suitable temperature range. As the main storage medium of the system, the stability of solid state disk directly affects the operation of the entire system. Heat dissipation products can reduce system crashes or instability caused by overheating by reducing the temperature of solid state disk, thereby improving the overall stability of the system.

[0004] In summary, effectively controlling the temperature of solid state disk can optimize performance, prolong service life, protect data security and improve system stability, which is very necessary.

[0005] The common heat dissipation products for solid state disk in the prior art are mainly fan cooling and passive cooling, with low heat dissipation efficiency and mostly only meeting the cooling demand, which is monotonous and not conducive to user experience. UTILITY MODEL CONTENTS

[0006] In order to overcome the above problems, the utility model provides a heat dissipation equipment with dynamic interaction function for solid state disk, which can effectively solve the above problems.

[0007] The utility model discloses a technical scheme that solves the above technical problem provides: provide a kind of heat dissipation equipment with dynamic interactive function for solid state disk, including main control circuit, fan control circuit, heat sink control circuit and MIC module, the fan control circuit, heat sink control circuit and MIC module are connected with main control circuit respectively, the fan control circuit is connected with fan, the heat sink control circuit is connected with fin, the MIC module is connected with microphone head;The main control circuit is also connected with fantasy color lamp control circuit, and the fantasy color lamp control circuit is connected with fantasy color lamp;The main control circuit is connected with nixie tube control circuit, and the nixie tube control circuit is connected with nixie tube.

[0008] Preferably, the heat dissipation equipment with dynamic interactive function for solid state disk further comprises a DC-DC boost circuit and a hard disk interface, the DC-DC boost circuit is connected with the hard disk interface, and the main control circuit is connected with the hard disk interface.

[0009] Preferably, the fan, the fin and the fantasy color lamp are connected with the DC-DC boost circuit respectively.

[0010] Preferably, the main control circuit is connected with a burning interface, a thermistor NTC is connected between the main control circuit and the hard disk interface, and the thermistor NTC is arranged on the fin.

[0011] Preferably, the main control circuit adopts an AK128E main control chip.

[0012] Preferably, the DC-DC boost circuit comprises an LN2293 chip.

[0013] Preferably, the AK128E is connected with the fantasy color lamp through a signal line, is used for connecting the power control line of the fantasy color lamp, the power control line of the fantasy color lamp is connected with a MOS circuit, and the power switch control of the fantasy color lamp is realized by controlling the conduction and the closing of the MOS.

[0014] Preferably, a triode is added in the internal circuit of the MIC module, is used for amplifying the analog value of the sound signal collected by the microphone head through a triode.

[0015] Compared with the prior art, the heat dissipation equipment with dynamic interactive function for solid state disk has the following beneficial effects:

[0016] 1. The heat generated by the heat source is transferred to the refrigeration fin through heat conduction, and the heat is transferred from the high temperature part of the heat source to the low temperature part of the fin, and the heat is dissipated to the surrounding environment (such as the inside or outside of the case) through the fan, so that the temperature of the solid state disk is kept in the normal range, and the heat dissipation efficiency of the utility model is greatly improved, and the temperature can be effectively controlled, so that the problem of low heat dissipation efficiency of the product on the market can be solved.

[0017] 2. A microphone is added to collect external sound signals, and the sound signals are processed by the main control circuit, and the main control circuit controls the corresponding light effect of the color-changing lamp, which makes the light not only static or preset display, but also real-time response to the sound change in the surrounding environment. This not only enriches the interaction mode, but also makes the product fashionable and interesting, increases the functionality of the product, which is helpful to improve the user experience and increase the user's stickiness to a certain extent.

[0018] 3. AK128E main control chip is used, which can dynamically identify fast charging protocol and intelligently output different voltages. When the connected charger does not support fast charging protocol, the main control controls to output lower voltage; when the connected charger supports fast charging protocol, the main control controls to output higher voltage, which can avoid the abnormality such as reset and dead machine caused by insufficient power output of the product, and improve the safety performance and stability of the product.

[0019] 4. A power supply control circuit for the color-changing lamp module is added, which is composed of MOS tube, that is, when the color-changing lamp does not need to work, the main control will send a signal to the power supply control circuit to cut off the power supply of the color-changing lamp, and the color-changing lamp stops working at this time, so that low power consumption can be realized.

[0020] 5. A digital screen is added to display the temperature of the solid state disk in real time, which increases the practicability of the product.

DRAWINGS

[0021] Figure 1 It is the overall block diagram of the heat dissipation equipment with dynamic interaction function for solid state disk of the utility model;

[0022] Figure 2 It is the main control circuit principle diagram of the heat dissipation equipment with dynamic interaction function for solid state disk of the utility model;

[0023] Figure 3 It is the MIC module circuit principle diagram of the heat dissipation equipment with dynamic interaction function for solid state disk of the utility model;

[0024] Figure 4The digital tube control circuit principle diagram of the heat dissipation equipment with dynamic interactive function for the solid state disk is provided in the utility model.

[0025] Figure 5 The fantasy lamp control circuit principle diagram of the heat dissipation equipment with dynamic interactive function for the solid state disk is provided in the utility model.

[0026] Figure 6 The fan control circuit principle diagram of the heat dissipation equipment with dynamic interactive function for the solid state disk is provided in the utility model.

[0027] Figure 7 The heat dissipation fin control circuit principle diagram of the heat dissipation equipment with dynamic interactive function for the solid state disk is provided in the utility model.

[0028] Figure 8 The DC-DC voltage boosting circuit principle diagram of the heat dissipation equipment with dynamic interactive function for the solid state disk is provided in the utility model.

CONCRETE IMPLEMENTATION

[0029] In order to make the purpose, technical scheme and advantages of the utility model more clearly, the following will be further described in detail in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the utility model, and are not used to limit the utility model.

[0030] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the utility model are only for the relative position on the specified view, not the absolute position.

[0031] In addition, the description of "first", "second" and the like in the utility model is only for the purpose of description, and cannot be understood as indicating or implying the relative importance of the indicated technical features or implicitly indicating the number of the indicated technical features. Therefore, the features with "first", "second" can be explicitly or implicitly included at least one feature. In the description of the utility model, the meaning of "multiple" is at least two, such as two, three, etc., unless otherwise specifically limited.

[0032] Please refer to Figures 1 to 8 The heat dissipation equipment with dynamic interactive function for the solid state disk of the utility model, including main control circuit, fan control circuit, heat dissipation fin control circuit and MIC module, the fan control circuit, heat dissipation fin control circuit and MIC module are connected with main control circuit respectively, the fan control circuit is connected with fan, the heat dissipation fin control circuit is connected with heat dissipation fin, the MIC module is connected with microphone.

[0033] The main control circuit is also connected with fantasy lamp control circuit, and the fantasy lamp control circuit is connected with fantasy lamp.

[0034] The main control circuit is connected with a nixie tube control circuit, and the nixie tube control circuit is connected with a nixie tube.

[0035] The heat dissipation equipment with dynamic interaction function for the solid state disk further comprises a DC-DC voltage boosting circuit and a hard disk interface, the DC-DC voltage boosting circuit is connected with the hard disk interface, and the main control circuit is connected with the hard disk interface.

[0036] The fan, the heat dissipation fin and the fantasy color lamp are connected with the DC-DC voltage boosting circuit respectively.

[0037] The main control circuit is connected with a burning interface, a thermistor NTC is connected between the main control circuit and the hard disk interface, and the thermistor NTC is arranged on the heat dissipation fin.

[0038] The main control circuit adopts an AK128E main control chip, the AK128E is used as a core main control module of a heat dissipation product and is responsible for main judgment and control of the logic of the product.

[0039] After receiving the signal from the AK128E main control chip, the fan can drive the on-off control of the fan.

[0040] After receiving the signal from the AK128E main control chip, the fantasy color lamp can drive different lamp effects and on-off control.

[0041] After receiving the signal from the AK128E main control chip, the heat dissipation fin can drive the on-off control of the heat dissipation fin.

[0042] After receiving the signal from the AK128E main control chip, the nixie tube can drive the display of corresponding temperature.

[0043] The MIC module is used to collect external sound, the sound signal is converted through simulation, then a triode in the internal circuit of the MIC module is used to amplify the external sound signal after the external sound signal is input, and when the sound signal is transmitted to the main control circuit, the main control circuit processes and analyzes the sound signal, and then sends an instruction to drive the fantasy color lamp to display corresponding lamp effects, so that the heat dissipation product can change different lamp effects according to the external sound.

[0044] The DC-DC voltage boosting circuit comprises an LN2293 chip, the LN2293 chip is a powerful and high-efficiency voltage boosting type DC / DC voltage regulator IC, and the main function is to convert a lower DC input voltage into a higher DC output voltage, the LN2293 is designed to be high-efficiency conversion, which means that it can reduce energy loss as much as possible when converting voltage. In the utility model, the LN2293 is used for converting 3.3V output from a hard disk interface into 5V stable output voltage, and power supply for the color-changing lamp, the fan and the cooling fin is completed.

[0045] The burning interface can perform a firmware upgrade operation through I2C communication.

[0046] Specifically, please refer to Figure 2 The AK128E master control chip adopts QFN24 packaging. The VDD33 part of the master control chip needs 3.3V power supply (pin 6), and the power supply voltage is provided by an external power supply.

[0047] The AK128E is connected with the color-changing lamp through one signal line, which is used for connecting the power control line of the color-changing lamp, and each color-changing lamp bead can be controlled individually in the utility model; the master control circuit can correctly send commands and data to the color-changing lamp through the signal line, and control whether the color-changing lamp obtains voltage to display different lamp effects, so as to achieve personalized lamp effect display.

[0048] a. LED_EN: the power control line of the color-changing lamp is connected with a MOS circuit, and the power on-off control of the color-changing lamp is realized by controlling the conduction and off of the MOS, so as to control the color-changing lamp to be in the off state when it does not need to work, and realize low power consumption.

[0049] The AK128E is connected with the nixie tube through five signal lines, and through the cooperation of the five signal lines, it is ensured that the master control circuit can correctly send commands and data to the nixie tube, and control the nixie tube to display the current temperature of the cooling fin.

[0050] The AK128E is connected with the fan through one signal line (pin 11), which is used for controlling the start and stop of the fan.

[0051] The AK128E is connected with the cooling fin through one signal line (pin 9), which is used for controlling the start and stop of the cooling fin.

[0052] The utility model discloses a voice interaction function, can see in principle drawing, and MIC_AD (pin 21) of MIC module is connected with MIC_VCC (pin 20) of main control circuit, when the microphone of MIC module collects external sound signal, sound signal passes through analog conversion, and then the main control circuit is gathered to the signal through MIC_AD after amplification, and MIC_VCC is used to control the work of triode, when MIC_VCC receives high level, the triode with the amplification effect is turned on, and the signal amplified through triode is more easily gathered by MIC_AD.

[0053] AK128E and the burning module can carry out firmware upgrade operation through DAT, CLK pin.

[0054] AK128E and the NTC connected on the radiating fin are connected through NTC pin, and AK128E can obtain the temperature of the current radiating fin through reading the resistance value of the NTC thermistor of the radiating fin, and display the temperature value on the nixie tube.

[0055] Please refer to Figure 3 , MIC module receives external sound signal through the microphone, and the sound signal is transmitted to the main control circuit through MIC_AD pin after analog conversion, capacitor filter and triode amplifier amplification, and the main control circuit sends relevant instructions to the fantasy color lamp module after analysis and processing, and the fantasy color lamp displays corresponding lamp effect. The voltage collected by the main control circuit is not the same when the external sound size is not the same, and the lamp effect displayed by the fantasy color lamp is not the same. A MOS tube is also added in the circuit, and its function is to realize low power consumption, that is, the main control circuit controls MIC_VCC to output a high or low level to control the triode amplifier circuit when the microphone is not triggered.

[0056] Please refer to Figure 4 , the nixie tube part is connected with the main control circuit through LED1, LED2, LED3, LED4, LED5 and receives instructions from the main control circuit, and is used for displaying the temperature of the current radiating fin.

[0057] Please refer to Figure 5The color-changing lamp control circuit receives signals from the master control circuit, and the master control circuit issues specific instructions to drive the color-changing lamp to display specific light effects. The color-changing lamp is connected with the AK128E through a signal line, which is used to connect the power control line of the color-changing lamp. When the master control circuit sends a high level through the power control line of the color-changing lamp, the color-changing lamp is lit. The color-changing lamp control line is connected with a MOS circuit, and the power on and off of the MOS is controlled to realize the power on and off control of the color-changing lamp, so that the color-changing lamp is in the off state when it does not need to work, and low power consumption is realized. In the utility model, each color-changing lamp bead can be controlled independently; the master control circuit can correctly send commands and data to the color-changing lamp through the signal line, and control the color-changing lamp to display different light effects, so as to achieve personalized light effect display. When the brightness of the color-changing lamp beads is different, the light effect composed is also different, and each LED chip can work independently.

[0058] Please refer to Figure 6 The fan part receives instructions from the master control circuit, and is used to realize the heat dissipation function of the equipment. When the FAN_IO receives a high level, the fan starts to work.

[0059] Please refer to Figure 7 The cooling fin adopts a COOLER module, which is connected with the master control circuit and receives instructions from the master control circuit. When the COOLER receives a high level, the cooling fin starts to work.

[0060] Please refer to Figure 8 The DC-DC boost circuit includes an LN2293 chip. The LN2293 chip is a powerful and efficient boost type DC / DC voltage regulator IC, mainly used for converting a lower DC input voltage into a higher DC output voltage. The LN2293 is designed for high-efficiency conversion, which means that it can minimize energy loss when converting voltage. In the utility model, the LN2293 is used to convert the 3.3V output from the hard disk interface into a 5V stable output voltage, thereby completing the power supply for the color-changing lamp, the fan and the cooling fin.

[0061] The heat dissipation equipment with dynamic interaction function for the solid state disk uses an AK128E master control chip. The chip can dynamically identify the fast charging protocol and intelligently output different voltages. When the connected charger does not support the fast charging protocol, the master control outputs a lower voltage. When the connected charger supports the fast charging protocol, the master control outputs a higher voltage. In this way, the abnormality such as reset and dead machine caused by insufficient power output of the product can be avoided, and the safety performance and stability of the product are improved.

[0062] The utility model discloses a refrigeration fin and the heat dissipation fan, and the heat generated by the heat source is transferred to the refrigeration fin through the heat conduction mode.

[0063] The utility model discloses a microphone is used to collect the sound signal of outside, and the sound signal is handled after main control circuit, and main control circuit controls the display of corresponding light effect of the color changing lamp, and this design makes the light not only static or preset demonstration, but also can respond to the sound change in surrounding environment in real time, which not only enriches the interactive mode, but also makes the product have fashion and interesting, increases the functionality of the product, which is beneficial to improve the user experience, and can increase the stickiness of the user to a certain extent.

[0064] For the problem of low power consumption, the utility model adds a power supply control circuit for the color changing lamp module, and the circuit is composed of MOS tubes, that is, when the color changing lamp does not need to work, the main control circuit will send a signal to the power supply control circuit to close the power supply of the color changing lamp, and at this time, the color changing lamp stops working, so that low power consumption is realized.

[0065] The utility model adds a digital screen for displaying the temperature of the solid state disk in real time, which increases the practicability of the product.

[0066] The heat dissipation equipment with dynamic interactive function for the solid state disk has the following functions:

[0067] A, heat dissipation: the utility model discloses a fan and refrigeration fin are added to the heat generated in the working process of the equipment is transferred in time to avoid affecting its normal work. Its main function is to dissipate the heat of the heat source to the surrounding environment (such as inside or outside the case) through air flow and heat conduction, so as to ensure that the temperature of the solid state disk is kept in the normal range, the temperature can be effectively controlled, and the heat dissipation efficiency of the utility model is greatly improved.

[0068] B, input: the interactive mode between the user and the heat dissipation product is the microphone, and the user transmits data to the main control through the microphone that triggers and collects the sound of the outside world. After receiving the signal, it analyzes the data and sends corresponding instructions. For example, when the user triggers, the switch control of the color changing lamp is controlled, the microphone collects the change of the outside sound, and the main control controls the color changing lamp to display different light effects according to the analog signal of the change of the sound signal of the outside environment, so as to produce the rhythm effect. The utility model also adds a temperature sensor to detect the temperature of the PCB in real time, so as to prevent overheating and short circuit and other safety hazards.

[0069] The utility model utilizes a microphone to collect external sound. When the analog value of the sound signal is transmitted to the main control, the main control processes and analyzes the signal and then issues a command to drive the fantasy color lamp to display the corresponding light effect. Thus, the heat dissipation product can change different light effects according to external sound. This design makes the fantasy color lamp light no longer static or preset display, but can respond to sound changes in the surrounding environment in real time. Since sound has infinite variation possibilities, the fantasy color lamp light effect based on sound control can also exhibit diversified visual effects, from simple brightness adjustment to complex color gradient, flashing mode, and even light show synchronized with music rhythm, which can be dynamically adjusted according to the frequency, loudness, and other characteristics of sound, providing users with an unprecedented visual feast. Users can easily adjust the mapping relationship between sound and light through programming and configuration to achieve personalized light effects. At the same time, this design also has good scalability and can be combined with other sensors or control systems to create more complex and interesting interactive experiences. In summary, the design of using a microphone to collect external sound and controlling the fantasy color lamp light effect change by the main control not only improves the interactivity and interest of the product, but also brings users diversified visual effects and innovative application scenarios, while meeting the needs of energy saving, environmental protection, and flexible configuration.

[0070] C, output: the utility model mainly drives the fantasy color lamp to display different light effects as an output mode. Users can change the switching mode of the fantasy color lamp, and the main control controls the light effect change of the fantasy color lamp according to the analog signal of external sound collected by the microphone. Another output mode is to use the airflow generated by the motor-driven heat dissipation fan to carry away the heat on the surface of the heat dissipation product, thereby achieving the effect of cooling. The fan is responsible for generating airflow to accelerate heat dissipation. The heat dissipation fins in the utility model also have a heat dissipation effect, which can accelerate the heat dissipation efficiency of the product.

[0071] The utility model adopts a series of fantasy color lamps to emit light of multiple colors. The color effect of the fantasy color lamp beads is realized by controlling the light-emitting materials and current inside the LED chips. By controlling the current size when the LED chips work, the brightness adjustment of the LED fantasy color lamp beads can be realized. By controlling the brightness and color of each LED chip, the color change and dynamic effect of the lamp beads can be realized. Through the combination of different color LED lights and brightness adjustment, almost all colors can be displayed, making the LED display screen have rich color expression. In the utility model, each fantasy color lamp bead can be controlled independently, which means that the brightness and color of each LED chip can be adjusted as needed. This high adjustability enables the LED display screen to display complex images and effects, enhancing the visual effect and creativity. In practice, other ways can be used to achieve different UIs of the machine.

[0072] D, display: the utility increases a nixie tube to display temperature, the host will get the temperature of the current cooling fin by reading the NTC thermistor resistance value of the cooling fin, and display the temperature value on the nixie tube, at the same time, the MCU will go to determine whether the temperature exceeds the set threshold according to the program, if it exceeds, adjust the speed of the fan and the cooling fin starts to work, the host will detect the temperature and update the changed temperature to the nixie tube, if it does not exceed the threshold, the MCU controls the fan and the cooling fin to remain the same.

[0073] E, boost: the LN2293 chip used in the utility is a powerful, efficient boost DC / DC voltage regulator IC, which mainly converts lower DC input voltage into higher DC output voltage, and LN2293 is designed for high efficiency conversion, which means it can minimize energy loss when converting voltage. The utility uses LN2293 to convert 3.3V output from the hard disk interface into 5V stable output voltage, which completes power supply for the color-changing lamp, fan, cooling fin and digital screen.

[0074] F, signal amplification: a triode is added in the internal circuit of the MIC module, which is used to amplify the analog value of the sound signal collected by the microphone through a triode, so that the host can more easily collect the voltage value through the ADC pin. In principle, other components with signal amplification function can also be used to achieve this effect.

[0075] The utility increases a power supply control circuit for the color-changing lamp module, which is composed of MOS tubes, that is, when the color-changing lamp does not need to work, the host will give a signal to the power supply control circuit to close the power supply of the color-changing lamp, at which time the color-changing lamp stops working, so that low power consumption can be achieved.

[0076] Compared with the prior art, the heat dissipation equipment with dynamic interaction function for the solid state disk has the following beneficial effects:

[0077] 1. The cooling fin and the cooling fan are added, and the heat generated by the heat source is transmitted to the cooling fin by heat conduction. In this process, the heat is transferred from the high temperature part of the heat source to the low temperature part of the cooling fin, and the heat is also dissipated to the surrounding environment (such as the inside or outside of the case) by the fan, ensuring that the temperature of the solid state disk remains within a normal range, greatly improving the heat dissipation efficiency of the utility cooling product, and effectively controlling the temperature, so as to solve the problem of low heat dissipation efficiency of products on the market.

[0078] 2. Added a microphone to collect external sound signals, which are processed by the main control circuit, and the main control circuit controls the corresponding light effect of the color-changing lamp, which makes the light no longer static or preset display, but can respond to changes in the surrounding environment in real time. This not only enriches the interaction mode, but also makes the product fashionable and interesting, increasing the functionality of the product, which helps improve user experience and increase user stickiness to some extent.

[0079] 3. Use AK128E main control chip, which can dynamically identify fast charging protocol and intelligently output different voltages. When the connected charger does not support fast charging protocol, the main control controls to output lower voltage; when the connected charger supports fast charging protocol, the main control controls to output higher voltage, which can avoid product power output deficiency, reset and other abnormalities, and improve product safety performance and stability.

[0080] 4. Added a power supply control circuit for the color-changing lamp module, which is composed of MOS tubes, that is, when the color-changing lamp does not need to work, the main control will send a signal to the power supply control circuit to turn off the power supply to the color-changing lamp, and the color-changing lamp stops working, which can achieve low power consumption.

[0081] 5. Added a digital screen to display the temperature of the solid state disk in real time, increasing the practicality of the product.

[0082] The above description is only a preferred embodiment of the present application, and does not limit the patent range of the present application. Any modification, equivalent replacement and improvement within the concept of the present application shall be included in the patent protection range of the present application.

Claims

1. A heat dissipation device with dynamic interaction function for a solid state drive, characterized in that, Including main control circuit, fan control circuit, fin control circuit and MIC module, fan control circuit, fin control circuit and MIC module are connected with main control circuit respectively, fan control circuit is connected with fan, fin control circuit is connected with fin, MIC module is connected with microphone; The main control circuit is also connected with the fantasy color lamp control circuit, and the fantasy color lamp control circuit is connected with the fantasy color lamp; The main control circuit is connected with the digital tube control circuit, and the digital tube control circuit is connected with the digital tube.

2. The heat dissipation apparatus having a dynamic interaction function for a solid state drive according to claim 1, wherein, The heat dissipation equipment with dynamic interaction function for solid state drive further comprises a DC-DC boost circuit and a hard disk interface, the DC-DC boost circuit is connected with the hard disk interface, and the main control circuit is connected with the hard disk interface. 3.The heat dissipation device with dynamic interaction function for a solid state drive according to claim 2, wherein, The fan, the fin and the fantasy color lamp are connected with the DC-DC boost circuit respectively.

4. The heat dissipation apparatus having a dynamic interaction function for a solid state drive according to claim 2, wherein, The main control circuit is connected with a burning interface, a thermistor NTC is connected between the main control circuit and the hard disk interface, and the thermistor NTC is arranged on the fin. 5.The heat dissipation device with dynamic interaction function for a solid state drive according to claim 1, wherein, The main control circuit adopts AK128E main control chip. 6.The heat dissipation device with dynamic interaction function for a solid state drive according to claim 2, wherein, The DC-DC boost circuit comprises an LN2293 chip. 7.The heat dissipation device with dynamic interaction function for a solid state drive according to claim 5, wherein, The AK128E is connected with the fantasy color lamp through a signal line, which is used for connecting the power control line of the fantasy color lamp, the power control line of the fantasy color lamp is connected with a MOS circuit, and the power on-off control of the fantasy color lamp is realized by controlling the conduction and closing of the MOS. 8.The heat dissipation device with dynamic interaction function for a solid state drive according to claim 1, wherein, A triode is added in the internal circuit of the MIC module, which is used for amplifying the analog value of the sound signal collected by the microphone through a triode.