Cooling clothes with semiconductor refrigeration equipment capable of quickly determining communication address

By setting the physical link component in the storage space to bind the communication address of the refrigeration component, the control failure caused by the position change after the cooling clothes is replaced is solved, ensuring that the upper computer can quickly identify the refrigeration component and improving the user experience.

CN223169206UActive Publication Date: 2025-08-01GUANGDONG FUXIN ELECTRONICS TECH CO LTD
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Patent Information

Application Number
CN202422075689.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-26
Publication Date
2025-08-01
Estimated Expiration
2034-08-26

AI Technical Summary

Technical Problem

After the existing cooling clothes are replaced, the change in the position of the semiconductor refrigeration equipment causes the upper computer to be unable to accurately locate its communication address, resulting in the failure of the control.

Method used

By setting up physical link components in the storage space, such as connecting lines and NFC tags, and binding the communication address of the refrigeration component, we ensure that the upper computer can quickly identify the refrigeration component after changing position.

Benefits of technology

It is possible to accurately locate the communication address of the refrigeration component after changing, avoid control errors caused by location changes, and improve user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cooling garment with a semiconductor refrigeration device capable of quickly determining a communication address, which is characterized by comprising a garment body structure, a power supply assembly, a communication module and at least one refrigeration assembly mounted on the garment body structure, the refrigeration assembly is electrically connected with a mobile power supply, and the mobile power supply is used for supplying power to the refrigeration assembly. The refrigeration assembly is in communication connection with the communication module and can be in wired or wireless communication connection with the outside through the communication module, the refrigeration assembly is fixedly or detachably installed on the clothes body structure through a storage space reserved in the clothes body structure, and the refrigeration assembly has a communication address; the storage spaces are determined by physical link components which are bound with the storage spaces one by one. According to the technical scheme of the utility model, the communication address of the semiconductor device at the corresponding position can be quickly determined based on the position, and the trouble caused by the change of the position of the same semiconductor device before and after the replacement and washing of the traditional cooling clothes can be avoided.
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Description

Technical Field

[0001] The utility model relates to the technical field of cooling clothing, in particular to a cooling clothing with a semiconductor refrigeration device capable of quickly determining a communication address. Background Technique

[0002] The cooling clothing generates cold through a refrigeration source to achieve an auxiliary cooling effect. Compared with ordinary clothing, it has a better cooling effect and is thus favored by consumers. As one of the categories of clothing, the cooling clothing also needs to be replaced and washed, that is, it needs to be laundered.

[0003] The semiconductor refrigeration device used to generate cold on the cooling clothing needs to communicate with a host computer so that the semiconductor device can be controlled through the host computer. For example, controlling the opening and closing of the semiconductor device and adjusting the working power size, etc. For this purpose, a communication address needs to be determined for each semiconductor refrigeration device. If a permanent address is assigned to each semiconductor refrigeration device, although the trouble of assigning a communication address every time the semiconductor device is restarted can be saved. However, this method will bring an obvious defect: since the cooling clothing needs to be laundered, for a certain semiconductor refrigeration device a, its position on the cooling clothing before and after laundering is different, and the host computer does not know whether the position of the semiconductor refrigeration device a has changed before and after laundering. In such a case of using a permanent communication address, the semiconductor device at the target position cannot be controlled. For example, the semiconductor refrigeration device a is located at the upper part of the cooling clothing before laundering and at the lower part of the cooling clothing after laundering. After laundering, if the consumer hopes to control the semiconductor device at the upper part of the cooling clothing, the host computer still communicates with the semiconductor device a for control, but the semiconductor device a is at the lower part of the cooling clothing at this time, so that the semiconductor device that the consumer hopes to control at the target position does not match the actually controlled semiconductor device. Therefore, a cooling clothing that can quickly determine the communication address of the semiconductor device corresponding to the position based on the position is needed, and it is not affected by the change in the position of the same semiconductor device before and after laundering of the cooling clothing. Summary of the Utility Model

[0004] Aiming at the deficiencies of the prior art, the purpose of the utility model is to provide a cooling clothing with a semiconductor refrigeration device capable of quickly determining a communication address, which can solve the problems described in the background technique.

[0005] The technical solution for achieving the purpose of the utility model is: a cooling clothing with a semiconductor refrigeration device capable of quickly determining a communication address, including a clothing body structure, a power supply component, a communication module, and at least two refrigeration components installed on the clothing body structure. The refrigeration components are electrically connected to a mobile power supply, and the mobile power supply is used to supply power to the refrigeration components. The refrigeration components are communicatively connected to the communication module and can be communicatively connected to the outside through the communication module, either wired or wirelessly.

[0006] The refrigeration assembly is fixed or detachably mounted on the garment structure through a storage space reserved on the garment structure.

[0007] The refrigeration assembly has a communication address, and the communication address is determined by a physical link component that is uniquely bound to the storage space one by one. The physical link component is mounted on the garment structure, and at least a part of it is located within the storage space so that the physical link component establishes a one-to-one binding relationship with the storage space.

[0008] Further, the physical link component includes a connection line, and one end of the connection line is provided with a connection head. The connection head of the connection line can pass through the storage space and be adapted to an interface reserved on the refrigeration assembly. The connection head is pluggably connected to the interface on the refrigeration assembly, and the other end of the connection line is communicatively connected to the communication module.

[0009] Further, the physical link component includes a radio frequency chip and an NFC tag. The radio frequency chip is built into the refrigeration assembly, and the NFC tag is fixed within the storage space. The refrigeration assembly is directly communicatively connected to the communication module.

[0010] Further, the storage space is fixed to the garment structure and the refrigeration assembly is detachably mounted within the storage space, or the storage space is detachably mounted on the garment structure and the refrigeration assembly is fixed within the storage space, or the storage space is detachably mounted on the garment structure and the refrigeration assembly is detachably mounted within the storage space.

[0011] Further, the communication module is built into the first power source, and the refrigeration assembly can communicate with the outside through the communication module.

[0012] Further, each refrigeration assembly has a built-in communication module, and the refrigeration assembly can communicate with the outside through the built-in communication module.

[0013] Further, the refrigeration assemblies are distributed and mounted at different positions on the garment structure.

[0014] Further, it further includes at least one fan. The fan is electrically connected to the power supply component, and the fan is located on the garment structure.

[0015] Further, the power supply component includes two independent power sources. One power source is built into the fan and is used to supply power to the fan. The other power source is a separate component independent of the garment structure and is denoted as the first power source. The refrigeration assembly is electrically connected to the first power source through a line, and the line is fixed or detachably mounted on the garment structure.

[0016] Further, when there is only one such fan, the fan is located on the left or right side of the lower part of the clothing body structure, so that when the clothing body structure is worn on a human body, the fan is exactly located at the left waist or right waist of the human body; when there are two or more fans, one fan is located on the left side of the lower part of the clothing body structure, and the other fan is located on the right side of the lower part of the clothing body structure, so that when the clothing body structure is worn on a human body, the two fans are exactly located at the left waist and right waist of the human body respectively.

[0017] At least one refrigeration component is located at the middle position of the upper part of the clothing body of the clothing body structure, so that when the clothing body structure is worn on a human body, the refrigeration component is just located at the back of the neck.

[0018] Further, it further includes a host computer, and the refrigeration component is communicatively connected to the host computer. The host computer is used to control the working state of the refrigeration component, and the working state includes opening and closing and / or working power.

[0019] Further, the host computer is a mobile terminal, and the mobile terminal is built with an APP. The refrigeration component is communicatively connected to the APP, and the working state of the refrigeration component is controlled in a visual manner through the APP.

[0020] Further, the refrigeration component is a semiconductor refrigeration device.

[0021] The beneficial effects of the present utility model: By assigning a communication address to each refrigeration component in each storage space, and maintaining a binding relationship among the communication address, the connection line, and the storage space, even if the refrigeration component changes before and after the clothing body structure is washed and changed, the host computer can still control the refrigeration component at the target position through the communication address, which can realize quickly determining the communication address of the semiconductor device at the corresponding position based on the position, and avoid the trouble caused by the change in the position of the same semiconductor device before and after the cooling clothing is washed and changed in the traditional way. Description of the Drawings

[0022] Figure 1 It is a schematic structural diagram of Embodiment 1 of the present utility model;

[0023] Figure 2 It is a schematic structural diagram of Embodiment 2 of the present utility model;

[0024] In the figure, 1 - clothing body structure, 2 - storage space, 3 - semiconductor refrigeration device, 4 - connection head, 5 - connection line, 6 - bus interface, 7 - bus line, 8 - mobile power supply, 9 - host computer, 10 - fan, 11 - NFC tag, 12 - radio frequency chip. Detailed Embodiments

[0025] The following further describes the present utility model in combination with the drawings and specific implementation schemes:

[0026] Embodiment 1

[0027] As shown Figure 1 in the figure, a cooling garment for a semiconductor refrigeration device 3 with a communicable address that can be quickly determined includes a garment body structure 1, a mobile power source 8, and at least one fan 10 and at least one refrigeration component installed on the garment body structure 1. Each refrigeration component is distributedly installed on the garment body structure 1. The fan 10 and the refrigeration component are both electrically connected to the mobile power source 8, and the mobile power source 8 is used to supply power to the fan 10 and the refrigeration component. The fan 10, as an air intake component, can also be replaced by other devices with the function of sucking (i.e., driving) external air into the garment body structure 1.

[0028] Of course, the fan 10 and the refrigeration component can use different power sources. For example, the mobile power source 8 only supplies power to the refrigeration component. The fan 10 is powered by its built-in battery or other power sources.

[0029] It can be understood that the refrigeration component can be a semiconductor refrigeration device 3. The semiconductor refrigeration device 3 is a prior art, so its refrigeration working principle and structure will not be elaborated here. Of course, the refrigeration component can also be other devices with refrigeration functions.

[0030] The refrigeration component is installed on the garment body structure 1 through the storage space 2 and can be fixedly or detachably installed on the garment body structure 1. In order to realize the detachable installation of the refrigeration component on the garment body structure 11, any one of the following three schemes can be adopted:

[0031] The storage space 2 is fixed on the garment body structure 1 and the refrigeration component is detachably installed in the storage space 2, or the storage space 2 is detachably installed on the garment body structure 1 and the refrigeration component is fixed in the storage space 2, or the storage space 2 is detachably installed on the garment body structure 1 and the refrigeration component is detachably installed in the storage space 2.

[0032] The exemplary of this embodiment Figure 1 includes two fans 10 and three refrigeration components.

[0033] The refrigeration component is electrically connected to the mobile power source 8 through the connection line 5. One end of the connection line 5 is provided with a connection head 4, and the connection head 4 is adapted to the reserved interface on the refrigeration component. The connection head 4 is pluggably connected to the interface on the refrigeration component. The other end of the connection line 5 is connected to the mobile power source 8.

[0034] Each storage space 2 corresponds to a connection line 5. The connection line 5 is fixedly or detachably connected to the garment body structure 1. For example, the connection line 5 is sewn on the surface or inside of the garment body structure 1. The connection head 4 of the connection line 5 can pass through the storage space 2 and be pluggably connected to the refrigeration component located in the storage space 2.

[0035] It can be understood that the other end of the connection line 5 can be directly connected to the mobile power supply 8 or indirectly connected to the mobile power supply 8. For example, the other end of the connection line 5 is electrically connected to the mobile power supply 8 through the bus interface 6. Both the connection line 5 and the bus interface 6 can be fixedly or detachably installed on the garment body structure 1, and the bus interface 6 can be a hub. Each refrigeration component is connected to the mobile power supply 8 through an independent corresponding connection line 5. When indirectly electrically connected to the mobile power supply 8 through the bus interface 6, all the connection lines 5 are connected to the bus interface 6. The mobile power supply 8 is electrically connected to the bus interface 6 through the bus line 7, and the mobile power supply 8 and the bus line 7 can be independent components physically separated from the garment body structure 1.

[0036] When it is necessary to clean the garment body structure 1, it is only necessary to unplug the bus line 7 from the bus interface 6. When reconnection is required, only plug the bus line 7 into the bus interface 6 to achieve fast electrical connection.

[0037] Exemplarily, the mobile power supply 8 is internally provided with a communication module, and the communication module can be a Bluetooth module or other wired or wireless communication modules. For example, it is a WIFI communication module. The mobile power supply 8 is communicatively connected to the host computer 9 through the internally provided communication module to upload the communication addresses of each refrigeration component to the host computer 9. The host computer 9 can be a mobile terminal such as a mobile phone. Taking a mobile phone as an example, the refrigeration components at each specific position can be controlled or set through the APP on the mobile phone. For example, if the user hopes to turn on the first refrigeration component and turn off the second refrigeration component, the user only needs to operate on the position of the indication button control representing the first refrigeration component and the second refrigeration component on the APP to operate the refrigeration components at the corresponding positions, so as to visually control the working state of the refrigeration components through the APP.

[0038] Exemplarily, at least one of all the refrigeration components is located at the upper middle position of the garment body structure 1 so that when the garment body structure 1 is worn on a person, this refrigeration component is just located at the back of the neck.

[0039] The fans 10 are arranged at intervals. The fans 10 are used to suck external air into one side of the garment body structure 1, that is, the air inlet of the fan 10 is arranged on the outside of the garment body structure 1, and the air outlet of the fan 10 is arranged on the inside of the garment body structure 1, so that when the garment body structure 1 is worn on a person, the air outlet of the fan 10 is located at the proximal end away from the human body, and the air inlet is located at the distal end close to the human body.

[0040] Exemplarily, a fan 10 is provided at each of the left and right ends of the lower part of the garment body structure 1, so that when the garment body structure 1 is worn on the human body, the two fans 10 are just located at the belt pulse points of the human body, that is, at the left waist and right waist positions of the human body's waist. When viewed from the front or the back, the edges of the fans 10 are difficult to observe, so as to improve the appearance.

[0041] When the consumer wears this cooling garment on the body, the garment body structure 1 is worn on the human body. Although the garment body structure 1 is not completely sealed with the neck, shoulders and other positions of the human body, it still forms a relatively sealed space with the human body. And when structures such as restraint belts are provided at the neck and shoulders and other positions, the garment body structure 1 can fit well on the human body, thus forming a completely or nearly airtight space. The air inhaled by the fans 10 will flow in this sealed space, producing a cooling effect.

[0042] Synchronously, a part of the air inhaled by the fans 10 will enter the refrigeration component. The air entering the refrigeration component is cooled by the refrigeration component to generate cooler air at a lower temperature and is sent out. Most of the sent-out cooler air will circulate in the storage space 2 and reduce the temperature in the storage space 2 until the temperature balance inside and outside the storage space 2 is reached. A small part will flow out of the storage space 2 and enter the sealed space.

[0043] By arranging the refrigeration components in a distributed manner in this way, a cooling effect can be formed in the sealed space faster and with more uniform temperature, and the user experience is better. And by presetting the storage space 2 at a specific position, the refrigeration components can be placed at the positions where the human body sweats faster, achieving a faster refrigeration effect and a better experience for the user.

[0044] The utility model configures a corresponding connection line 5 for each storage space 2. Each connection line 5 is communicatively connected to the refrigeration component in the corresponding storage space 2, so that a communication address can be assigned to the refrigeration component in each storage space 2 based on the connection line 5. Since the communication address, the connection line 5 and the storage space 2 maintain a binding relationship, even if the refrigeration components change before and after the garment body structure 1 is washed and changed, the host computer 9 can still control the refrigeration component at the target position through the communication address, that is, it can control the refrigeration component on any storage space 2, and can realize quickly determining the communication address of the semiconductor device at the corresponding position based on the position, and avoid the trouble caused by the change of the position of the same semiconductor device before and after the cooling garment is washed and changed in the traditional way.

[0045] The connection line 5, as a physical link component in a physical form, can be bound to the storage space 2 one by one, and determine the communication address of the refrigeration component based on the one-to-one bound position relationship.

[0046] Embodiment 2

[0047] In Embodiment 1, the connection line 5 in a wired manner is used to bind to the storage space 2, so that a communication address can be assigned to each refrigeration component in the corresponding storage space 2. In this embodiment, even without using the connection line 5 in a wired manner, it is still possible to assign a communication address to the refrigeration component in the corresponding storage space 2, and the communication address is also bound to the storage space 2 and the refrigeration component.

[0048] As Figure 2 shown, a cooling garment of a semiconductor refrigeration device 3 with a communication address that can be quickly determined includes a garment body structure 1, a mobile power source 8, and at least one fan 10 and at least one refrigeration component installed on the garment body structure 1. Each refrigeration component is distributedly installed on the garment body structure 1. The fan 10 and the refrigeration component are both electrically connected to the mobile power source 8, and the mobile power source 8 is used to supply power to the fan 10 and the refrigeration component. The fan 10, as an air intake component, can also be other devices with the function of sucking (i.e., driving) external air into the garment body structure 1.

[0049] Of course, the fan 10 and the refrigeration component can use different power sources. For example, the mobile power source 8 only supplies power to the refrigeration component. The fan 10 is powered by its built-in battery or other power sources.

[0050] It can be understood that the refrigeration component can be a semiconductor refrigeration device 3. The semiconductor refrigeration device 3 is a prior art, so its refrigeration working principle and structure will not be described in detail here. Of course, the refrigeration component can also be other devices with refrigeration functions.

[0051] The refrigeration component is installed on the garment body structure 1 through the storage space 2 and can be fixedly or detachably installed on the garment body structure 1. In order to realize the detachable installation of the refrigeration component on the garment body structure 11, any one of the following three schemes can be adopted:

[0052] The storage space 2 is fixed to the garment body structure 1 and the refrigeration component is detachably installed in the storage space 2, or the storage space 2 is detachably installed on the garment body structure 1 and the refrigeration component is fixed in the storage space 2, or the storage space 2 is detachably installed on the garment body structure 1 and the refrigeration component is detachably installed in the storage space 2.

[0053] This embodiment of Figure 2 exemplarily includes two fans 10 and three refrigeration components.

[0054] The refrigeration component is electrically connected to the mobile power source 8 through the connection line 5. One end of the connection line 5 is provided with a connection head 4, and the connection head 4 is adapted to the reserved interface on the refrigeration component. The connection head 4 is pluggably connected to the interface on the refrigeration component. The other end of the connection line 5 is connected to the mobile power source 8.

[0055] Each storage space 2 corresponds to a connection line 5, and the connection line 5 is fixedly or detachably connected to the clothing body structure 1. For example, the connection line 5 is sewn on the surface or inside of the clothing body structure 1. The connector 4 of the connection line 5 can pass through the storage space 2 and be plugged into and unplugged from the refrigeration component located in the storage space 2.

[0056] It can be understood that the other end of the connection line 5 can be directly connected to the mobile power supply 8 or indirectly connected to the mobile power supply 8. For example, the other end of the connection line 5 is electrically connected to the mobile power supply 8 through the bus interface 6. Both the connection line 5 and the bus interface 6 can be fixedly or detachably installed on the clothing body structure 1, and the bus interface 6 can be a hub. Each refrigeration component is connected to the mobile power supply 8 through an independent corresponding connection line 5. When indirectly electrically connected to the mobile power supply 8 through the bus interface 6, all the connection lines 5 are connected to the bus interface 6. The mobile power supply 8 is electrically connected to the bus interface 6 through the bus line 7. The mobile power supply 8 and the bus line 7 can be independent components physically separated from the clothing body structure 1.

[0057] When it is necessary to clean the clothing body structure 1, only need to unplug the bus line 7 from the bus interface 6. When it is necessary to reconnect, only need to plug the bus line 7 into the bus interface 6 to achieve quick electrical connection.

[0058] Exemplarily, each refrigeration component is internally provided with a wireless communication module, and the wireless communication module can be a Bluetooth module or a WIFI communication module, or other wireless communication modules. The refrigeration component is communicatively connected to the host computer 9 through the built-in communication module to upload the communication addresses of the respective refrigeration components to the host computer 9. The host computer 9 can be a mobile terminal such as a mobile phone. Taking a mobile phone as an example, in this way, the refrigeration components at each specific position can be controlled or set on the APP on the mobile phone. For example, if the user hopes to turn on the first refrigeration component and turn off the second refrigeration component, the user only needs to operate on the indicating button control positions of the first refrigeration component and the second refrigeration component on the APP to operate the refrigeration components at the corresponding positions, so as to visually control the working state of the refrigeration components through the APP.

[0059] The cooling garment further includes an NFC tag 11 and a radio frequency chip 12. The radio frequency chip 12 is built into the refrigeration component, and one radio frequency chip 12 is built into each refrigeration component. The NFC tag 11 is fixedly installed in the storage space 2, and each storage space 2 contains an NFC tag 11. The NFC tag 11 can be sewn on the garment body structure 1. The NFC tag 11 stores the position of the storage space 2 where the standard NFC tag 11 is located on the garment body structure 1. The radio frequency chip 12 can read out the position information indicating the position of the storage space 2 stored in the NFC tag 11 and report it to the host computer 9. The host computer 9 then determines the communication address of the refrigeration component in the storage space 2 according to the position information, and also realizes the binding of the communication address with the storage space 2 and the refrigeration component.

[0060] Among them, the radio frequency chip 12 is an RFID readable and writable chip.

[0061] Take Figure 2 as an example. The garment body structure 1 includes a total of three storage spaces 2. In the order from left to right and from top to bottom, these three storage spaces 2 are sequentially recorded as the first storage space 2, the second storage space 2, and the third storage space 2. Each of the first storage space 2, the second storage space 2, and the third storage space 2 is provided with an NFC tag 11, and the NFC tag 11 stores the corresponding position. When any refrigeration component is placed in any storage space 2, the position information can be obtained by reading the NFC tag 11, and then the communication address can be determined. Finally, it can be ensured that the host computer 9 can control the refrigeration component at the target position (storage space 2) based on the communication address.

[0062] Exemplarily, at least one of all the refrigeration components is located at the upper middle position of the garment body structure 1, so that when the garment body structure 1 is worn on the human body, the refrigeration component is just located at the back of the neck.

[0063] The fans 10 are arranged at intervals. The fans 10 are used to suck external air into one side of the garment body structure 1, that is, the air inlet of the fan 10 is arranged on the outside of the garment body structure 1, and the air outlet of the fan 10 is arranged on the inside of the garment body structure 1, so that when the garment body structure 1 is worn on the human body, the air outlet of the fan 10 is located at the proximal end away from the human body, and the air inlet is located at the distal end close to the human body.

[0064] Exemplarily, one fan 10 is arranged at each of the left and right ends of the lower part of the garment body structure 1, so that when the garment body structure 1 is worn on the human body, the two fans 10 are just located at the belt pulse points of the human body, that is, at the left waist and right waist positions of the human body. When viewed from the front or back, it is difficult to observe the fans 10 at the edges, so as to improve the appearance.

[0065] When a consumer wears this cooling garment on the body, the garment body structure 1 is worn on the human body. Although the garment body structure 1 is not completely sealed with the neck, shoulders and other positions of the human body, it still forms a relatively sealed space with the human body. And when structures such as restraint belts are provided at the neck and shoulders and other positions, the garment body structure 1 can fit well on the human body, thus forming a completely or nearly airtight space. The air inhaled by the fan 10 will flow in this sealed space, producing a cooling effect.

[0066] Synchronously, a part of the air inhaled by the fan 10 will enter the refrigeration component. The air entering the refrigeration component is cooled by the refrigeration component to generate cooler air at a lower temperature and is sent out. Most of the sent-out cooler air will circulate in the storage space 2 and reduce the temperature in the storage space 2 until the temperature inside and outside the storage space 2 reaches equilibrium. A small part will flow out of the storage space 2 and enter the sealed space.

[0067] By arranging the refrigeration components in a distributed manner like this, a cooling effect can be formed in the sealed space faster and with a more uniform temperature, and the user experience is better. And by pre-setting the storage space 2 at a specific position, the refrigeration components can be placed at the positions where the human body sweats faster, achieving a faster refrigeration effect and a better user experience.

[0068] Similar to Embodiment 1, the component composed of the radio frequency chip 12 and the NFC tag 11 serves as a physical link component in a physical form, which can be bound to the storage space 2 one by one, and determines the communication address of the refrigeration component based on the one-by-one bound position relationship.

[0069] The embodiments disclosed in this specification are only an illustration of the unilateral features of the present invention. The protection scope of the present invention is not limited to this embodiment, and any other functionally equivalent embodiments fall within the protection scope of the present invention. For those skilled in the art, various corresponding changes and deformations can be made according to the technical solutions and concepts described above, and all these changes and deformations should fall within the protection scope of the claims of the present invention.

Claims

1. A cooling garment for a semiconductor refrigeration device with a communicable address that can be quickly determined, characterized in that, It includes a body structure, a power supply component, a communication module, and at least two refrigeration components installed on the body structure. The refrigeration components are electrically connected to a mobile power supply, and the mobile power supply is used to supply power to the refrigeration components. The refrigeration components are communicatively connected to the communication module and can be communicatively connected to the outside through the communication module, either wired or wirelessly. The refrigeration components are fixedly or detachably installed on the body structure through a storage space reserved on the body structure. The refrigeration components have communication addresses, and the communication addresses are determined by physical link components that are uniquely bound to the storage spaces one by one. The physical link components are installed on the body structure, and at least a part of them is located in the storage space so that the physical link components establish a one-to-one binding relationship with the storage spaces.

2. The cooling garment of the semiconductor refrigeration device with a communicable address that can be quickly determined according to claim 1, wherein The physical link components include connection lines. One end of the connection line is provided with a connection head, and the connection head of the connection line can pass through the storage space and be adapted to an interface reserved on the refrigeration component. The connection head is pluggable and connectable to the interface on the refrigeration component, and the other end of the connection line is communicatively connected to the communication module.

3. The cooling garment of the semiconductor refrigeration device with a communication address that can be quickly determined according to claim 1, characterized in that, The physical link components include a radio frequency chip and an NFC tag. The radio frequency chip is built into the refrigeration component, and the NFC tag is fixed in the storage space. The refrigeration component is directly communicatively connected to the communication module.

4. The cooling clothing of the semiconductor refrigeration device with a communicable address that can be quickly determined according to any one of claims 1-3, characterized in that, The storage space is fixed on the body structure and the refrigeration components are detachably installed in the storage space, or the storage space is detachably installed on the body structure and the refrigeration components are fixed in the storage space, or the storage space is detachably installed on the body structure and the refrigeration components are detachably installed in the storage space.

5. The cooling garment of the semiconductor refrigeration device with a communicable address that can be quickly determined according to any one of claims 1-3, characterized in that The communication module is built into the first power supply, and the refrigeration components can communicate with the outside through the communication module.

6. The cooling garment of the semiconductor refrigeration device with a communicable address that can be quickly determined according to any one of claims 1-3, characterized in that, Each of the refrigeration components has a built-in communication module, and the refrigeration components can communicate with the outside through the built-in communication modules.

7. The cooling garment of the semiconductor refrigeration device with a communicable address that can be quickly determined according to any one of claims 1-3, characterized in that, The refrigeration components are distributed and installed at different positions on the body structure.

8. The cooling garment of the semiconductor refrigeration device with a communicable address that can be quickly determined according to any one of claims 1-3, characterized in that, It further includes at least one fan. The fan is electrically connected to the power supply component and is located on the body structure.

9. The cooling garment of the semiconductor refrigeration device with a communicable address that can be quickly determined according to claim 8, characterized in that, The power supply component includes two independent power supplies. One power supply is built into the fan and is used to supply power to the fan. The other power supply is a separate component independent of the body structure and is denoted as the first power supply. The refrigeration components are electrically connected to the first power supply through a line, and the line is fixedly or detachably installed on the body structure.

10. The cooling garment of the semiconductor refrigeration device with a communicable address that can be quickly determined according to claim 9, characterized in that, When there is only one fan, the fan is located on the left or right side of the lower part of the body structure so that when the body structure is worn on the human body, the fan is exactly located at the left or right waist of the human body; when there are more than two fans, one fan is located on the left side of the lower part of the body structure and the other fan is located on the right side of the lower part of the body structure so that when the body structure is worn on the human body, the two fans are exactly located at the left and right waists of the human body respectively. At least one refrigeration component is located at the middle position of the upper part of the body structure so that when the body structure is worn on a person, the refrigeration component is just located at the back of the neck.

11. The cooling garment of the semiconductor refrigeration device with a communicable address that can be quickly determined according to any one of claims 1-3, characterized in that, It further includes a host computer. The refrigeration components are communicatively connected to the host computer, and the host computer is used to control the working states of the refrigeration components. The working states include on / off and / or working power.

12. The cooling clothing of the semiconductor refrigeration device with a communicable address that can be quickly determined according to claim 11, wherein The host computer is a mobile terminal. An APP is built into the mobile terminal. The refrigeration component is communicatively connected to the APP, and the working state of the refrigeration component is controlled in a visual manner through the APP.

13. The cooling garment of the semiconductor refrigeration device with a communicable address that can be quickly determined according to any one of claims 1-3, characterized in that, The refrigeration component is a semiconductor refrigeration device.