A temperature-controlled storage device
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHEJIANG LERA NEW ENERGY POWER TECH CO LTD
- Filing Date
- 2025-03-01
- Publication Date
- 2026-08-07
AI Technical Summary
[0003]为了满足在户外冷藏食品或饮料的需求,常见的做法是携带简易的保温箱,例如铝箔保温箱,但这种保温箱性能有限,仅支持短时间保温,并且无法主动改变箱内温度,无法满足在户外长时间冷藏食品或饮料的需求
[0007]本实用新型通过对控温模块在存储模块上的安装位置的优化,提高容积比,同时巧妙地利用软包体覆盖存储模块,为用户营造一种轻盈的感受;设置可拆卸的携带扩展组件便于人力携带出行,一方面通过挂载其他拓展组件,可以极大地丰富背包的功能性;而携带件还能将便携控温存储设备安装在其他如户外车、单车等载体上。
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Figure CN224607934U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of outdoor food storage, and in particular to a temperature-controlled storage device. Background Technology
[0002] Refrigerators offer multiple functions such as refrigeration, food preservation, and cooling, but they typically occupy a lot of space, consume a lot of electricity, and are inconvenient for outdoor use. With the rise of various outdoor recreational activities such as walking and cycling, higher demands are being placed on the storage and refrigeration of food and beverages.
[0003] To meet the need for refrigerating food or beverages outdoors, a common practice is to carry a simple insulated box, such as an aluminum foil insulated box. However, such insulated boxes have limited performance, only supporting short-term insulation and cannot actively change the internal temperature, thus failing to meet the need for long-term refrigeration of food or beverages outdoors.
[0004] A novel temperature-controlled storage device is proposed, which allows users to refrigerate food or beverages outdoors for extended periods. Utility Model Content
[0005] The problem this invention aims to solve is to provide a new type of temperature-controlled storage device with a high volume ratio and the ability to adjust the internal temperature according to actual needs.
[0006] To solve the above-mentioned technical problems, this utility model provides a temperature-controlled storage device, comprising: at least one storage module and at least one temperature control module, wherein the storage module includes at least one storage body and a storage cover; The temperature control module cools the storage unit. When powered, the temperature control module cools to regulate the internal temperature of the storage unit. A carrying component is connected to the storage module.
[0007] This invention improves the volume ratio by optimizing the installation position of the temperature control module on the storage module, and cleverly uses a soft cover to cover the storage module, creating a lightweight feel for the user. The detachable carrying extension component facilitates manual carrying, and on the one hand, it can greatly enrich the functionality of the backpack by attaching other extension components; on the other hand, the carrying component can also install the portable temperature control storage device on other carriers such as outdoor vehicles and bicycles. Attached Figure Description
[0008] To more clearly illustrate the technical solution of this application, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0009] Figure 1 This is a schematic diagram of the principle of a temperature-controlled storage device; Figure 2 This is a schematic diagram of another embodiment of a temperature-controlled storage device; Figure 3 This is a schematic diagram of an explosion of a temperature-controlled storage device. Figure 4 A three-dimensional schematic diagram of a temperature-controlled storage device; Figure 5 A 3D schematic diagram of adding a power supply board to a temperature-controlled storage device; Figure 6 This is a schematic diagram of an explosion of a temperature-controlled storage device. Figure 7 This is a cross-sectional view of a temperature-controlled storage device; Figure 8 This is a cross-sectional view of a temperature-controlled storage device; Figure 9 This is a cross-sectional view of a temperature-controlled storage device; Figure 10 A schematic diagram of adding an extension sleeve to a temperature-controlled storage device; Figure 11 A three-dimensional schematic diagram of a temperature-controlled storage device; Figure 12 This is a top view of a temperature-controlled storage device. Figure 13 This is a schematic diagram illustrating the integration of temperature-controlled storage equipment with an electric vehicle. Figure 14 A three-dimensional schematic diagram of a temperature-controlled storage device; Figure 15 This is a schematic diagram of the hot air circulation in a temperature-controlled storage device. Detailed Implementation
[0010] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.
[0011] In this document, references to "embodiment" or "implementation" mean that a particular feature, structure, or characteristic described in connection with an embodiment or implementation may be included in at least one embodiment of this application. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.
[0012] In this specification, for convenience, terms such as "middle," "upper," "lower," "front," "rear," "vertical," "horizontal," "top," "bottom," "inner," and "outer" are used to indicate orientation or positional relationships in conjunction with the accompanying drawings. This is solely for the purpose of facilitating the description and simplification, and does not imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation of this disclosure. The positional relationships of the constituent elements may be appropriately varied depending on the orientation of the described constituent elements. Therefore, the description is not limited to the terms used in the specification, and may be adapted as appropriate. Replace locally.
[0013] like Figure 1 As shown, this utility model provides a temperature-controlled storage device, including a storage module 100, a temperature control module 250 detachably connected to the storage module 100, a battery mounting part 409, and a soft outer casing 200.
[0014] like Figure 1 and Figure 2 As shown, the storage module 100 includes a storage body 102 and a storage cover 104 that can be opened and closed while being sealed to cover the storage body 102 and the soft outer cover 200; the soft outer cover 200 covers the storage body 102.
[0015] The soft casing 200 has at least one soft casing 204 and a soft casing cover 202 for sealing and covering the soft casing 204. The soft casing 204 and the soft casing cover 202 are simultaneously sealed and wrapped around the outer periphery of the storage module 100. The soft casing 200 is sealed and wrapped around the outer periphery of the storage module 100.
[0016] In some embodiments, the soft outer casing 200 covers the storage body 102, wherein: The soft casing 200 has at least one soft casing 204 and a soft casing cover 202 for sealing and covering the soft casing 204, wherein the soft casing 204 and the soft casing cover 202 are simultaneously sealed and wrapped around the outer periphery of the storage module 100; or The soft enclosure 200 covers the storage body 102 and has at least one soft body 204 that is sealed around the periphery of the storage module 100. That is, in some embodiments, the soft enclosure may only cover the storage body 102.
[0017] like Figure 3 As shown, an overflow prevention space 112 is provided between the storage body 102 and the soft outer casing 200, and the temperature control module 250 is set in the overflow prevention space 112; like Figure 1 and Figure 2As shown, the temperature control module 250 protrudes at least partially from the storage body 102. One side of the temperature control module 250 is covered by a soft outer casing 200. When powered, the temperature control module 250 cools down to regulate the temperature inside the storage body 102.
[0018] Furthermore, such as Figure 1 The temperature control module 250 protrudes at least partially from the radial circumferential surface of the storage module 100. Further, one side of the temperature control module 250 protrudes from the radial circumferential surface of the storage module 100.
[0019] Furthermore, such as Figure 2 The temperature control module 250 protrudes at least partially from the radial circumferential surface of the storage module 100. Further, the temperature control module 250 protrudes from the radial circumferential surface of the storage module 100 on opposite sides of the storage module 100.
[0020] Optionally, the temperature control module 250 protrudes at least partially from the radial circumferential surface of the storage module 100. Further, the temperature control module 250 protrudes from one corner of the radial circumferential surface of the storage module 100.
[0021] Optionally, the temperature control module 250 protrudes at least partially from the radial circumferential surface of the storage module 100. Further, the temperature control module 250 protrudes from the radial circumferential surface of the storage module 100 on adjacent sides. Example
[0022] like Figure 3 As shown, the temperature-controlled storage device has at least one power supply component. In this embodiment, the power supply component includes at least one mobile power source 405 and a battery mounting portion 409 matched with the mobile power source 405. The mobile power source 405 is detachably connected to the battery mounting portion 409, which is disposed on the outer surface of the storage module 100. The battery mounting portion 409 has an opening. When the mobile power source 405 is connected to the battery mounting portion 409, the mobile power source 405 is electrically connected to the battery mounting portion 409 to power the temperature-controlled module 250.
[0023] Specifically, the power bank 405 can be inserted into the battery mounting portion 409 in a direction close to the storage module 100; the opening of the battery mounting portion 409 can also face any other direction that allows the power bank 405 to be inserted; the power bank 405 and the battery mounting portion 409 can also be located on the front of the storage module 100, with the power bank 405 inserted into the battery mounting portion 409 in a vertically downward or horizontal direction; the power bank 405 and the battery mounting portion 409 can also be located on the top surface of the storage module 100, with the power bank 405 inserted into the battery mounting portion 409 in a direction parallel to the top surface.
[0024] In this embodiment, the mobile power supply 405 is a lithium-ion battery pack, but it is not limited to this. The mobile power supply 405 can also be a polymer lithium-ion battery, an alkaline battery, a fuel cell, a hand-cranked generator, or other power supply that meets the power needs.
[0025] In this embodiment, the power bank 405 can be repeatedly charged and discharged, but it is not limited to this. In other embodiments, the power bank 405 can be configured to support only single use.
[0026] Specifically, the soft outer casing 200 has one or more radial circumferential surfaces, a top surface, and a bottom surface. The battery mounting portion 409 can be disposed on at least one radial circumferential surface of the soft outer casing 200, on the bottom surface of the soft outer casing 200, in the spill-proof space 112 defined by the soft outer casing 200 and the storage body 102 and near the opening between the storage cover 104 and the storage body 102, or on the top surface of the soft casing cover 202; or the battery mounting portion 409 is disposed inside the soft casing cover 202, and the battery mounting portion 409 has a battery compartment and a plug-in opening, the plug-in opening connecting the battery compartment and the external space for accommodating the battery pack.
[0027] like Figure 4 As shown, in this embodiment, there is only one power bank 405 and one battery mounting part 409, which are located on one side of the storage module 100. The advantage of this arrangement is that it is convenient to connect the power bank 405 to the battery mounting part 409. The power bank 405 is vertically inserted into the battery mounting part 409, and it is located on the side, so that the overall appearance is similar to the side pocket of a backpack.
[0028] In a preferred embodiment, the storage cover 104 and the soft cover 202 are assembled as a single unit. In other variations, the storage cover 104 and the soft cover 202 are detachably disposed. like Figure 5 As shown, specifically, another implementation of the power supply component in this embodiment is as follows: it includes a power supply bracket 213 and a power supply board 210 mounted on the power supply bracket 213. The power supply board 210 can be a photovoltaic power generation board. The power supply board 210 provides power to the temperature-controlled storage device by absorbing solar energy, and at the same time, the power supply board 210 can provide sunlight shading for the user.
[0029] like Figure 6 As shown, in this embodiment, the power bank 405 can be fixed to the battery mounting part 409 by assembly and gravity. A fastener 411 is provided on the battery mounting part 409. The fastener 411 can strengthen the connection between the power bank 405 and the battery mounting part 409 and prevent the power bank 405 from accidentally coming out of the battery mounting part 409.
[0030] In other embodiments, the fastener 411 may also be a strap, Velcro, etc., and the fastener 411 may also be configured as two parts that match each other on the power bank 405 and the battery mounting part 409.
[0031] like Figure 6 As shown, the temperature-controlled storage device is equipped with an electrical control unit 404. The electrical control unit 404 includes at least one power supply interface 407. The power supply interface 407 is electrically connected to the temperature control module 250. The power supply interface 407 can be used to directly supply power to the temperature-controlled storage device from other power sources.
[0032] Unlike traditional refrigerator bags where the temperature control module and power supply module are both located inside the storage module 100, resulting in a reduction in the actual usable space, the temperature-controlled storage device of this application exposes both the temperature control module 250 and the battery mounting part 409, either simultaneously or separately, at least partially, to the external environment of the storage module 100, greatly increasing the volume of the storage module 100. Furthermore, to conceal the protruding parts of the storage module 100, this application adds a soft outer casing 200 to conceal these protruding parts, not only improving the appearance but also further enhancing the insulation effect.
[0033] The outer surface of the soft housing 204 is provided with ear flaps 220. Specifically, there can be one or more ear flaps 220, and the battery mounting portion 409 is covered and opened and closed by the ear flaps 220. In this application, there are two ear flaps 220, which are respectively located on both sides of the storage module 100. This significantly changes the appearance of the temperature-controlled storage device, creating a lighter feel visually, unlike the metallic appearance of previous temperature-controlled devices, while actually providing a higher volume ratio.
[0034] like Figure 7 As shown, to enable the temperature-controlled storage device of this application to heat food, the temperature-controlled storage device also includes at least one heating element 116, which is electrically connected to the electronic control unit 404. The advantage of this arrangement is that it can heat the food in the storage module 100 in cold weather, adapting to different outdoor conditions. Specifically, the heating element 116 can be a heating wire.
[0035] Preferably, the heating element 116 is disposed on the storage body 102. It is worth noting that the heating element 116 is wound around the storage body 102 to better heat the storage module 100. That is, the heating element 116 is disposed between the two insulation layers of the storage body 102.
[0036] The heating element 116 and the cooling component 450 can operate in a time-sharing manner to cool or heat the storage module 100 separately when needed.
[0037] like Figure 7As shown, to achieve the purpose of food preservation, refrigeration, and freezing in the temperature-controlled storage device of this application, the temperature control module 250 includes a refrigeration component 450 and a cooling element 118. The storage module 100 is provided with heat dissipation holes corresponding to the position of the refrigeration component 450. The refrigeration component 450 is connected to the cooling element 118, which lowers the internal temperature of the storage module 100.
[0038] Optionally, the temperature-controlled storage device also includes a cooling base 402, with an electronic control unit 404 disposed within the cooling base 402. The cooling base 402 is detachably connected to the storage module 100, thereby significantly reducing the weight of the temperature-controlled storage device, retaining only basic insulation functions, while the rest can be charged and is not portable. Simultaneously, a cooling component 450 is disposed within the cooling base 402.
[0039] The cooling component 450 circuit is connected to the control circuit, and the battery mounting part 409 circuit is connected to the control circuit. The control circuit is located on the outside of the cooling component 450.
[0040] The control circuit includes at least two modes, namely a first cooling mode and a second cooling mode. The first cooling mode and the second cooling mode can be switched and selected by a button trigger.
[0041] Specifically, the cooling component 450 is close to the radial surface of the storage body 102; or the cooling component 450 is close to the bottom surface of the storage body 102; or the cooling component 450 is close to at least two adjacent surfaces of the storage body 102; or the cooling component 450 is fitted into a corner of the storage body 102 and is close to at least two adjacent surfaces of the storage body 102.
[0042] The refrigeration assembly 450 includes a compressor, a condenser connected to the compressor, and an evaporator connected to the condenser, wherein the condenser is partially exposed to the outside of the flexible casing 200.
[0043] like Figure 8 and Figure 9 As shown, the storage unit 102 is also divided into zones with different temperatures. The storage unit 102 includes a first zone and at least a second zone, which are at least partially separated to manage the temperature of the first and second zones in a zoned manner.
[0044] The storage unit 102 has an air outlet 135, and a partition 127 is fixedly connected inside the storage unit 102. The partition 127 divides the storage space into a first zone and a second zone. The air outlet 135 can output cold air, which makes the temperature of the left storage space drop faster and controls the temperature of the left storage space to be lower than that of the right storage space. At the same time, since the partition 127 divides the storage space into different heights, different items can be placed in the left and right storage spaces to meet different actual needs of users.
[0045] Specifically, in this embodiment, the storage body 102 and the partition 127 can also rotate relative to each other. The partition 127 is rotatably mounted on the partition shifting member 129. A partition conversion positioning member 131 is provided inside the storage body 102. The partition conversion positioning member 131 can make the partition 127 stay in different positions. When the partition 127 stays in different positions, the storage space can be selectively divided vertically or horizontally. When the partition 127 stays horizontally, the storage space is divided into upper and lower parts. At the same time, the space of the lower storage space is relatively small. With the help of the air outlet 135, the temperature here can drop quickly and have a lower temperature.
[0046] In order to enable the temperature-controlled storage device of this application to have a heat preservation effect, the storage cover 104 can have different height dimensions, so that by replacing different storage covers 104, the temperature-controlled storage device can have different storage space sizes.
[0047] like Figure 10 As shown, an extension sleeve 216 is provided between the storage body 102 and the storage cover 104. The extension sleeve 216 has two through openings, which connect the storage body 102 and the storage cover 104 respectively. By adding the extension sleeve 216, the temperature-controlled storage device can have different storage space sizes. At this time, at least two sealing limit members 108 are provided. One sealing limit member 108 connects the enclosure structure and the storage body 102, and the other sealing limit member 108 connects the enclosure structure and the storage cover 104.
[0048] The storage body 102 and the storage cover 104 define a sealed connection position, and the soft outer casing 200 and the storage cover 104 define a receiving connection position. The sealed connection position and the receiving connection position are set to be offset in the height direction.
[0049] Wherein: the expansion sleeve 216 is a drawer with a bottom surface; or the expansion sleeve 216 is a cylinder with vertical conduction. One end of the expansion sleeve 216 can be sealed to the storage cover 104, and the other end of the expansion sleeve 216 is sealed to the storage body 102. The connection methods include: rotational connection and pressing with a sealing strip; concave and convex limiting and sealing with a sealing strip.
[0050] like Figure 3As shown, to further enhance the insulation effect of the storage module, the storage body 102 includes a first storage body 110 and a second storage body 120 stacked on the first storage body. The first storage body 110 and the second storage body 120 are spaced apart, and insulation material can be placed between them. The insulation material is a foam material, but it is not limited to this. In other embodiments, the insulation material can be a polyurethane foam, polystyrene board, phenolic foam, glass wool, rock wool, or other materials with insulation properties; or a vacuum can be maintained between them.
[0051] like Figure 11 and Figure 12 As shown, the soft outer casing 200 is equipped with a detachable carrying component 300, which includes a human body carrying member 310. The human body carrying member 310 includes a main body 312 and a shock-absorbing member 314. The main body 312 has an outer surface and an inner surface. The storage module 100 is connected to the outer surface of the main body 312, and the shock-absorbing member 314 is disposed on the inner surface of the main body 312. The human body carrying member 310 is equipped with a portable expansion component 316.
[0052] like Figure 3 As shown, in this embodiment, the accompanying expansion component 316 is disposed on the main body 312. By adding hooks, it can be expanded to assemble outdoor supplies such as blankets, tents, and walking sticks, greatly expanding the functionality of the temperature-controlled storage device.
[0053] like Figure 13 As shown, the carrying component 300 includes at least one carrying extension component 318, which is disposed on the outer surface of the soft outer cover 200 for snapping, hooking or binding.
[0054] like Figure 14 As shown, to improve the airtightness of the storage module 100, a sealing limiting member 108 can be provided. The sealing limiting member 108 connects the soft outer casing 200 and the storage cover 104. In this embodiment, there are two sealing limiting members 108, which can be metal buckles. The sealing limiting members 108 can enable the storage module 100 to achieve better sealing performance. At the same time, this sealing method allows for easy opening of the temperature-controlled storage device, facilitating the retrieval of food.
[0055] Meanwhile, the sealing and limiting component 108 can also be a layer of edging, and the storage module 100 can be opened and closed by setting a zipper on the edging.
[0056] Additionally, a sealing effect can be achieved by setting protrusions and recesses on the soft outer casing 200 and the storage cover 104.
[0057] In this embodiment, the temperature-controlled storage device of this application has multiple functions, including but not limited to cooling, heating, heat preservation, and air cooling. The temperature-controlled storage device of this application primarily utilizes energy storage technology for power supply. Energy storage-powered temperature-controlled storage devices offer many advantages, including but not limited to the ability to operate in locations without power, such as outdoor activities, picnics, and camping. In the event of a power outage or other emergency, the energy storage-powered temperature-controlled storage device can continue operating, ensuring the freshness of food and beverages. Furthermore, the energy storage-powered temperature-controlled storage device can store electrical energy when power demand is low and release it when power demand is high, thereby achieving efficient energy utilization and other advantages. Example
[0058] This utility model provides a temperature-controlled storage device with a battery pack, such as... Figure 6 As shown, unlike Embodiment 1, the battery pack is detachably placed in the battery mounting section 409 of the temperature-controlled storage device, and the battery pack is a mobile power supply 405. The battery pack can be at least partially exposed to the external environment of the soft outer casing 200, and the battery pack is placed in the battery mounting section 409 and supplies power to the temperature control module 250.
[0059] The battery mounting portion 409 is held in place by the soft outer casing 200, which covers it. The soft outer casing 200 can be opened and closed to accommodate the battery mounting portion 409. In other words, the soft outer casing 200 can be opened and closed to accommodate the power bank 405. In a first state, the power bank 405 is covered by the soft outer casing 200. In a second state, the soft outer casing 200 can be opened, and the power bank 405 can be displayed. Optionally, the battery pack is detachably placed in the battery mounting section 409 of the temperature-controlled storage device, and the battery pack is a power bank 405. Example
[0060] This invention provides a portable temperature-controlled storage device, which differs from Embodiment 1 in that it also includes a carrying component, which can be a rope. The carrying component is detachably attached to the temperature-controlled storage device of this application, allowing the device to be kept off the ground.
[0061] The soft outer casing 200 is equipped with a carrying connector, which is connected to the carrying component. Wherein: The carrying connection has at least two through-holes through which the carrying element can pass to form one or more closed loops, for supporting the temperature-controlled storage device, which is located away from the ground, through which the supported object can pass. The carrying connection is one or more locking members, and at least one carrying member that can form one or more closed loops is locked in the locking members to support the temperature-controlled storage device through one or more closed loops, away from the ground; Alternatively, the carrying connection has at least one through-hole through which the carrying element can pass to form a hook for supporting the temperature-controlled storage device so as to be supported by the carrying element, away from the ground. Alternatively, the carrying connector may have a hook for supporting the temperature-controlled storage device so that the supported object can pass through the carrying connector to support it away from the ground; Alternatively, the carrying connector may have a latch for securing the supported object to the carrying connector to support the temperature-controlled storage device, thus keeping it away from the ground. Example
[0062] This utility model provides an assemblable temperature-controlled storage device, such as... Figure 13 As shown, the difference from Embodiment 1 is that it also includes an electric vehicle. The temperature-controlled storage device of this application is pre-installed in the electric vehicle. The electric vehicle includes a detachable external power supply, which can supply power to both the electric vehicle and the temperature-controlled storage device of this application.
[0063] The electric vehicle and the temperature-controlled storage device of this application are both powered by an external power source, wherein: At least one of the electric vehicle and the temperature-controlled storage device of this application is powered by a power cord connection; or the electric vehicle and at least one of the temperature-controlled storage devices of this application are directly powered by electrical connectors; or the electric vehicle and at least one of the temperature-controlled storage devices of this application are directly powered by wireless charging.
[0064] External power supplies can be battery packs with multiple batteries, battery pack groups with multiple battery packs, or energy storage power supplies with inverter circuits.
[0065] Hooks and clips for matching the temperature-controlled storage device of this application can be reserved on the electric vehicle, so that the temperature-controlled storage device of this application can be detachably fixed on the electric vehicle by carrying the expansion component 318. Example
[0066] This utility model provides a method for heat energy recovery in a temperature-controlled storage device, comprising: (S001) The temperature inside the storage body 102 is regulated by means of a storage body 102 and a temperature control module 250 that can be used for cooling; (S002) The heat output from the temperature control module is kept in the recovery chamber by a soft outer casing 200 so that the object being placed is heated.
[0067] The step (S001) further includes the following: (S003) The temperature control module 250 is powered by an external power supply connected to a battery mounting section 409 of the temperature control storage device; or (S004) The temperature control module 250 is powered by an external power supply, which is connected to a power connection of the temperature control storage device by a power cord.
[0068] like Figure 15 As shown, the soft outer casing 200 is equipped with a hot air circulation port 137 for discharging hot air, and the hot air circulation port 137 is located inside the ear bag 220, which can hold items. When the temperature-controlled storage device is activated, hot air is output to the ear bag 220 to heat the items inside. Utilizing hot air recovery for insulation or fan-based hot air insulation can reduce the energy consumption of the temperature-controlled storage device, save energy in the refrigerator, and reduce the load, thus having environmental benefits. Example
[0069] This embodiment provides a temperature-controlled storage device, which differs from Embodiment 1 in that the temperature control module 250 is held in close contact with the bottom of the storage body 102 and at least partially protrudes from the storage body 102, and the temperature control module 250 is at least partially covered by the soft outer casing 200.
[0070] Meanwhile, the battery mounting portion 409 can be at least partially exposed to the external environment of the soft outer casing 200. The battery mounting portion 409 can be configured to protrude from the radially extending wall of the soft outer casing 200, or it can be configured to protrude from the storage cover 104.
[0071] The temperature control module 250 is powered, and one or more battery mounting portions 409 are at least partially exposed to the external environment of the flexible casing 200. The battery mounting portions 409 and the temperature control module 250 are electrically connected, and a battery pack is placed on the battery mounting portions 409 and electrically connected to the temperature control module 250 to power the temperature control module 250; alternatively, a power connection portion can be used instead of the battery mounting portion 409. The power connection portion is electrically connected to the temperature control module 250, and the power connection portion can be connected to a power source by wiring.
[0072] The power connection section can also be one or more electrical connection interfaces, which can be connected to an external power source by a circuit. The types of electrical connection interfaces include TYPE C, AC female plug, triangular connector, and USB interface. Example
[0073] This embodiment provides a temperature-controlled storage device, which differs from Embodiment 1 in that the battery mounting portion 409 at least partially protrudes from the side wall of the storage body 102, and the temperature control module 250 is at least partially covered by the soft outer casing 200. The battery mounting portion 409 and the temperature control module 250 are electrically connected so that the battery pack is electrically connected to the temperature control module 250 in the battery mounting portion 409 to supply power to the temperature control module 250.
[0074] The battery mounting portion 409 can be at least partially exposed to the external environment of the soft casing 200, and the battery mounting portion 409 protrudes from the main extension wall of the soft casing 200. Example
[0075] The temperature-controlled storage device provided in this embodiment can also be powered by the vehicle's power supply, allowing car owners to enjoy refreshing cold drinks and warm food anytime, anywhere, greatly improving the quality of car life. Example
[0076] The temperature-controlled storage device provided in this embodiment can meet the requirement of "uninterrupted power supply when away from the vehicle" through vehicle power supply technology. It will stop operating after reaching the set temperature, so the power consumption for continuous operation for 24 hours is often less than one kilowatt-hour. Example
[0077] The temperature-controlled storage device provided in this embodiment can also be integrated with the front or rear of the E-BIKE in some innovative ways.
[0078] When the temperature-controlled storage device is integrated with the front of the E-BIKE, it can be designed as a special front basket mounted on the front of the bike. This allows the storage device to be powered by the E-BIKE's battery in certain situations. Furthermore, the refrigerator's location makes it convenient for riders to easily access cold drinks or food.
[0079] When integrated with the rear of the E-BIKE, the temperature-controlled storage device can be designed as a rear-seat storage compartment. This design provides greater storage space, suitable for long trips or picnics. Similarly, the temperature-controlled storage device can be powered by the E-BIKE's battery.
[0080] Furthermore, both the front and rear of the vehicle can be connected to the E-BIKE's power system via cables, enabling energy exchange. For example, when the E-BIKE's battery is fully charged, excess energy can be used to charge the temperature-controlled storage device. Conversely, when the E-BIKE's battery is low, the temperature-controlled storage device's battery can provide additional power to the E-BIKE. Example
[0081] The temperature-controlled storage device provided in this embodiment can also be combined with a conventional bicycle and installed on the bicycle body, such as the front or rear of the bicycle. Example
[0082] A temperature-controlled storage device, comprising: At least one storage mechanism includes at least one storage module 100, at least one soft shell 200 covering the storage module 100, and an openable storage cover 104. An overflow space 112 is defined between the storage module 100 and the soft shell 200. The storage cover 104 is openably sealed to the storage shell and defines a storage opening. The storage opening connects the overflow space 112 and the storage space. A temperature control module 250 is disposed in the overflow space 112. At least one temperature control module 250 is attached to the bottom of the storage module 100. The temperature control module 250 cools when powered to regulate the temperature of the storage space within the storage module 100. One or more battery mounting portions 409 are provided, which may be at least partially exposed to the external environment of the storage facility, and the battery mounting portions 409 are electrically connected to the temperature control module 250 so that the battery pack 405 is electrically connected to the temperature control module 250 at the location of the battery mounting portions 409 to supply power to the temperature control module 250.
[0083] It is worth mentioning that in embodiments 1 to 12, the soft shell 200 (101) and the soft outer casing (200) refer to the same element, which is a soft material capable of shielding and accommodating the storage module 100 (100). Due to its malleable shape, it can modify the shape of the temperature-controlled storage device, so that the temperature-controlled storage device is not necessarily a square shell. The soft outer casing simultaneously seals and wraps the storage module 100 and the temperature control module 250 to modify the protruding parts of the storage module 100, which not only beautifies the appearance but also further provides heat preservation.
[0084] In one embodiment, the soft shell 200 has one or more radial circumferential surfaces, a top surface, and a bottom surface, and the battery mounting portion 409 is disposed on at least one radial circumferential surface of the soft shell 200.
[0085] In one embodiment, the soft shell 200 has one or more radial circumferential surfaces, a top surface, and a bottom surface, and the battery mounting portion 409 is disposed on the bottom surface of the soft shell 200.
[0086] In one embodiment, the soft shell 200 has one or more radial circumferential surfaces, a top surface, and a bottom surface, and the battery mounting portion 409 is disposed on the top surface of the soft shell 200.
[0087] In one embodiment, the battery mounting portion 409 is disposed in the spill-proof space 112 defined by the soft housing 200 and the storage module 100, and the battery mounting portion 409 is close to the storage opening. In another embodiment, the battery mounting portion 409 is disposed on the top surface of the soft cover 202.
[0088] In one embodiment, the storage cover 104 and the soft cover 202 are integrally formed, and the battery mounting part 409 is disposed between the storage cover 104 and the soft cover 202. The battery mounting part 409 has a battery compartment and a plug-in opening, which connects the battery compartment and the external space to accommodate the battery pack 405.
[0089] In one embodiment, the soft shell 200 includes one or more earpieces 220, and each battery mounting portion 409 is opened and closed covered by at least one earpiece 220.
[0090] In one embodiment, the temperature control module 250 includes a cooling component 450 and a control circuit 404 electrically connected to the cooling component 450. The battery mounting portion 409 is electrically connected to the control circuit 404. The control circuit 404 is electrically connected to the cooling component 450 and the battery mounting portion 409. The control circuit 404 is disposed on the outside of the cooling component 450, wherein the cooling component 450 is close to the radial surface of the storage module 100.
[0091] It is worth mentioning that the control circuit 404 is the electronic control unit 404, which is the same component in different embodiments.
[0092] In one embodiment, the temperature control module 250 includes a cooling component 450 and a control circuit 404 electrically connected to the cooling component 450. The battery mounting portion 409 is electrically connected to the control circuit 404. The control circuit 404 is electrically connected to the cooling component 450 and the battery mounting portion 409. The control circuit 404 is disposed on the outside of the cooling component 450, wherein the cooling component 450 is close to the bottom surface of the storage module 100.
[0093] In one embodiment, the temperature control module 250 includes a cooling component 450 and a control circuit 404 electrically connected to the cooling component 450. The battery mounting portion 409 is electrically connected to the control circuit 404, which is also electrically connected to the cooling component 450 and the battery mounting portion 409. The control circuit 404 is disposed on the outside of the cooling component 450, wherein the cooling component 450 is close to at least two adjacent surfaces of the storage module 100.
[0094] In one embodiment, the temperature control module 250 includes a cooling component 450 and a control circuit 404 electrically connected to the cooling component 450. The battery mounting portion 409 is electrically connected to the control circuit 404, which is also electrically connected to the cooling component 450 and the battery mounting portion 409. The control circuit 404 is located on the outside of the cooling component 450, wherein the cooling component 450 is fitted into a corner of the storage module 100 and is close to at least two adjacent surfaces of the storage module 100.
[0095] In one embodiment, the temperature control module 250 includes at least one refrigeration assembly 450, which includes a compressor, a condenser connected to the compressor, and an evaporator connected to the condenser, wherein the condenser is partially exposed outside the soft housing 200.
[0096] In one embodiment, the storage module 100 and the soft cover 202 define a sealed connection position, and the soft shell 200 and the soft cover 202 define a receiving connection position. The sealed connection position and the receiving connection position are set to be offset in the height direction.
[0097] In one embodiment, the storage mechanism further includes an extension sleeve 216, which includes an extension insulation layer and a connecting soft layer. The extension insulation layer includes a first extension connection end and a second extension connection end. The first extension connection end is sealed to the soft cover 202, and the second extension connection end is sealed to the storage module 100. The extension insulation layer is a drawer with a bottom surface.
[0098] In one embodiment, the storage mechanism further includes an extension sleeve 216, which includes an extension insulation layer and a connecting flexible layer. The extension insulation layer includes a first extension connection end and a second extension connection end. The first extension connection end is sealed to the flexible cover 202, and the second extension connection end is sealed to the storage module 100. The extension insulation layer is a cylinder that is open at both ends.
[0099] In one embodiment, the storage mechanism further includes an extended sleeve 216, which includes an extended insulation layer and a connecting flexible layer. The extended insulation layer includes a first extended connection end and a second extended connection end opposite to the first extended connection end. The first extended connection end is sealed to the soft cover 202, and the second extended connection end is sealed to the storage module 100. The soft cover 202 includes a storage cover 104 and a soft cover 202, which are integrally formed. The connecting flexible layer is connected to the soft shell 200 and the soft cover 202, respectively. The first extended connection end and the storage cover 104 are detachably connected, and the second extended connection end and the storage module 100 are detachably connected. The sealed connection position of the second extended connection end and the storage module 100 is blocked from the external environment of the storage mechanism by the overflow prevention space 112, wherein the sealed connection position of the first extended connection end and the storage cover 104 is blocked from the external environment of the storage mechanism by the overflow prevention space 112.
[0100] In one embodiment, the storage mechanism further includes an extension sleeve 216, which includes an extension insulation layer and a connecting flexible layer. The extension insulation layer includes a first extension connection end and a second extension connection end opposite to the first extension connection end. The first extension connection end is sealed to the soft cover 202, and the second extension connection end is sealed to the storage module 100. The soft cover 202 includes a storage cover 104 and a soft cover 202, which are integrally formed. The connecting flexible layer is respectively... The first extended connection end is detachably connected to the storage cover 104 and the second extended connection end is detachably connected to the storage module 100. The tight connection position between the second extended connection end and the storage module 100 is blocked from the external environment of the storage mechanism by the overflow prevention space 112. An extended overflow prevention space 112 is defined between the extended insulation layer and the connecting soft layer. The tight connection position between the first extended connection end and the storage cover 104 is blocked from the external environment of the storage mechanism by the extended overflow prevention space 112.
[0101] In one embodiment, the storage mechanism further includes an extended enclosure 216, which includes an extended insulation layer. One end of the extended insulation layer is sealed to the soft cover 202, and the other end of the extended insulation layer is sealed to the storage module 100. The connection method includes: Rotary connection and pressing with sealing strip; concave and convex limiters and sealing with sealing strip.
[0102] In one embodiment, the electronic control unit 404 further includes at least two modes, namely a first cooling mode and a second cooling mode, which can be switched and selected by a button trigger.
[0103] In one embodiment, the temperature control module 250 is detachably connected to the storage mechanism.
[0104] In one embodiment, the battery mounting section 409 includes at least one battery compartment and at least one power supply interface disposed in the battery compartment, the power supply interface being electrically connected to the temperature control module 250.
[0105] In one embodiment, the carrying component 300 includes at least one human body carrying member connected to the storage mechanism. The human body carrying member includes a body and at least one shock absorber. The body has an outer surface and an inner surface. The outer surface of the body is connected to the storage mechanism, and the shock absorber is disposed on the inner surface of the body.
[0106] In one embodiment, the carrying component 300 includes at least one carrying extension component 318 disposed on the outer surface of the storage mechanism for snapping, hooking or binding.
[0107] In one embodiment, the storage module 100 includes a first region and at least a second region, the first region and the second region being at least partially separated, the first region receiving a lower cooling temperature from the cooling component 450 relative to the second region, so as to manage the temperature of the first region and the second region in a partitioned manner.
[0108] In one embodiment, the storage module 100 includes a first storage module 100 and a second storage module 100 stacked on top of the first storage module 100, the first storage module 100 and the second storage module 100 being spaced apart and fitted with an insulating material; or The storage module 100 includes a first storage module 100 and a second storage module 100 stacked on top of the first storage module 100, with a vacuum maintained between the first storage module 100 and the second storage module 100.
[0109] In one embodiment, a temperature-controlled storage device with a battery pack 405 includes a temperature-controlled storage device and one or more battery packs 405. The battery packs 405 are detachably placed in the battery mounting portion 409 of the temperature-controlled storage device. The battery packs 405 can be at least partially exposed to the external environment of the storage device. The battery packs 405 are electrically connected to the temperature control module 250 in the battery mounting portion 409 to supply power to the temperature control module 250.
[0110] In one embodiment, the portable temperature-controlled storage device includes a temperature-controlled storage device and at least one human carrier 310 that can form one or more closed loops. The human carrier 310 is detachably mounted to the temperature-controlled storage device so that a supported object can pass through one or more closed loops of the human carrier 310 to support the temperature-controlled storage device away from the ground.
[0111] In one embodiment, the temperature-controlled storage device includes a storage mechanism and a carrying connection portion disposed in the storage mechanism, the carrying connection portion being connected to a human body carrying piece 310, wherein: The carrying connection has at least two through-holes through which the human body carrier 310 can pass to form one or more closed loops, for supporting the temperature-controlled storage device, which is located away from the ground, through which the supported object can pass. The carrying connection is one or more locking members, and at least one human carrying member 310, which can form one or more closed loops, is locked in the locking members to support the temperature-controlled storage device through one or more closed loops, away from the ground; or The carrying connector has at least one through-hole through which the carrying element passes to form a hook for supporting the temperature-controlled storage device, allowing the supported object to pass through the carrying element, away from the ground; or The carrying connector has a hook for supporting the temperature-controlled storage device so that the supported object can pass through the carrying connector to support it away from the ground; or The carrying connector has a latch for securing the supported object to the carrying connector to support the temperature-controlled storage device away from the ground.
[0112] In another embodiment, a portable temperature-controlled storage device includes a temperature-controlled storage device and an electric vehicle. The temperature-controlled storage device is pre-installed in the electric vehicle, which includes a detachable power supply 405 that can supply power to both the electric vehicle and the temperature-controlled storage device.
[0113] It's worth mentioning that the 405 power bank is an external power source.
[0114] In one embodiment, the temperature-controlled storage device includes an electric drive vehicle and the temperature-controlled storage device being simultaneously powered by a mobile power supply 405, wherein: At least one of the electric vehicle and the temperature-controlled storage device is powered by a power cord connection; or At least one of the electric drive vehicle and the temperature-controlled storage device is directly connected to the power supply via an electrical connector; or At least one of the electric vehicle and the temperature-controlled storage device is powered by direct contact via wireless charging.
[0115] In one embodiment, the temperature-controlled storage device includes a mobile power supply 405 of the type of a battery pack 405 having multiple batteries, a group of battery packs 405 having multiple battery packs 405, or an energy storage power supply having an inverter circuit.
[0116] In one embodiment, a method for heat recovery from a temperature-controlled storage device includes: (S001) The temperature within the storage module 100 is regulated by means of a storage module 100 and a temperature control module 250 that can be used for cooling; and (S002) The heat output from the temperature control module is kept in the recovery chamber of a soft shell 200 so as to heat the object being placed.
[0117] In one embodiment, a method for heat recovery from a temperature-controlled storage device further includes, prior to step (S001): (S003) The temperature control module 250 is powered by a mobile power supply 405 connected to a battery mounting section 409 of the temperature control storage device; or (S004) The temperature control module 250 is powered by a mobile power supply 405, which is connected to a power connection part of the temperature control storage device by a power cord.
[0118] It is worth mentioning that the recycling chamber of the soft shell 200 is formed inside the ear cover 220.
[0119] It is worth mentioning that in embodiments 1 to 12, the soft shell 200 (101) and the soft outer casing (200) refer to the same element. It is also worth noting the soft material that can shield and accommodate the storage module 100 (100). Due to its malleable shape, it can modify the appearance of the temperature-controlled storage device, so that the temperature-controlled storage device is not necessarily a square shell. The soft outer casing simultaneously seals and wraps the storage module 100 and the temperature-controlled module 250 to modify the protruding parts of the storage module 100, which not only beautifies the appearance but also further provides insulation.
[0120] In another embodiment, a temperature-controlled storage device includes: At least one storage mechanism includes at least one storage module 100, at least one soft shell 200 covering the storage module 100, and an openable storage cover 104. An overflow space 112 is defined between the storage module 100 and the soft shell 200. The storage cover 104 is openably sealed to the storage shell and defines a storage opening. The storage opening connects the overflow space 112 and the storage space. A temperature control module 250 is disposed in the overflow space 112. At least one temperature control module 250 is attached to the bottom of the storage module 100 and at least partially protrudes from the storage module 100. The temperature control module 250 is at least partially covered by a soft shell 200. The temperature control module 250 is cooled when powered to regulate the temperature of the storage space of the storage module 100.
[0121] In one embodiment, the temperature control module 250 is powered, wherein the temperature-controlled storage device includes one or more battery mounting portions 409, which are at least partially exposed to the external environment of the storage device, and the battery mounting portions 409 and the temperature control module 250 are electrically connected such that a battery pack 405 is electrically connected to the temperature control module 250 at the battery mounting portions 409 to power the temperature control module 250; and / or The temperature-controlled storage device includes a power connection part, which is electrically connected to the temperature control module 250. The power connection part can be connected to a power source by wiring.
[0122] In one embodiment, the temperature control module 250 is powered, wherein the temperature control storage device includes a power connection part, the power connection part includes one or more power supply interfaces 407, the one or more power supply interfaces 407 can be circuitically connected to an external power source, and the types of power supply interfaces 407 include TYPE C, AC female plug, triangular interface, and USB interface.
[0123] The power supply interface 407 is an electrical connection interface, and it is the same component in different embodiments.
[0124] The battery mounting portion 409 may be at least partially exposed to the external environment of the storage mechanism, and the battery mounting portion 409 protrudes from the radially extending wall of the soft shell 200.
[0125] The battery mounting portion 409 can be at least partially exposed to the external environment of the storage mechanism, and the battery mounting portion 409 protrudes from the storage cover 104.
[0126] In another embodiment, a temperature-controlled storage device includes: At least one storage mechanism includes at least one storage module 100, at least one soft shell 200 covering the storage module 100, and an openable storage cover 104. An overflow space 112 is defined between the storage module 100 and the soft shell 200. The storage cover 104 is openably sealed to the storage shell and defines a storage opening. The storage opening connects the overflow space 112 and the storage space. A temperature control module 250 is disposed in the overflow space 112. At least one temperature control module 250 is attached to the bottom of the storage module 100. The temperature control module 250 cools when powered to regulate the temperature of the storage space within the storage module 100. One or more battery mounting portions 409 are at least partially exposed to the external environment of the storage mechanism. The battery mounting portions 409 at least partially protrude from the sidewall of the storage module 100, and the temperature control module 250 is at least partially covered by the soft shell 200. The battery mounting portions 409 and the temperature control module 250 are electrically connected so that the battery pack 405 is electrically connected to the temperature control module 250 in the battery mounting portions 409 to supply power to the temperature control module 250.
[0127] The battery mounting portion 409 may be at least partially exposed to the external environment of the storage mechanism, and the battery mounting portion 409 protrudes from the main extension wall of the soft shell 200.
[0128] A temperature-controlled storage device includes at least one storage module 100 and at least one temperature control module 250. The storage module 100 includes at least one storage body 102 and a storage cover 104. The temperature control module 250 cools the storage body 102. The temperature control module 250 cools after being powered on, and is used to regulate the internal temperature of the storage body 102. A carrying component 300 is connected to the storage module 100.
[0129] In another embodiment, the temperature control module 250 includes at least one cooling component 450 and a control circuit that is electrically connected to the cooling component 450. The battery mounting portion 409 is electrically connected to the control circuit, which is located outside the cooling component 450. The cooling component 450 is located on the storage body 102.
[0130] In another embodiment, the refrigeration assembly 450 includes a compressor, a condenser connected to the compressor, and an evaporator connected to the condenser, the condenser protruding from the exterior of the storage body 102.
[0131] In another embodiment, the temperature-controlled storage device includes one or more battery packs detachably disposed in the battery mounting portion 409 of the temperature-controlled storage device. The battery packs protrude from the outside of the storage module 100 and are electrically connected to the temperature control module 250 to supply power to the temperature control module 250.
[0132] In another embodiment, the control circuit includes at least two modes, namely a first cooling mode and a second cooling mode, which can be switched and selected by a button trigger.
[0133] In another embodiment, the temperature control module 250 is detachably connected to the storage module 100.
[0134] In another embodiment, the carrying component 300 further includes at least one carrying extension component 318 disposed on the outer surface of the storage module 100 for snapping, hooking or binding.
[0135] In another embodiment, the carrying component 300 further includes a human body carrying member 310, which includes a main body 312 and at least one shock absorber 314. The outer surface of the main body 312 is connected to the storage module 100, and the shock absorber 314 is disposed on the inner surface of the main body 312.
[0136] In another embodiment, the storage unit 102 includes a first zone and a second zone spaced apart from the first zone. The first zone receives a lower cooling temperature from the cooling component 450 than the second zone, so as to manage the temperature of the first zone and the second zone in a zoned manner.
[0137] In another embodiment, the type of external power source is a battery pack with multiple batteries, a battery pack group with multiple battery packs, or an energy storage power source with an inverter circuit.
[0138] In a broader sense, the temperature-controlled storage device provided by this utility model can be applied in multiple fields, including but not limited to outdoor activities such as camping, picnics, and barbecues. The temperature-controlled storage device can provide refrigeration and insulation functions, keeping food and beverages at a suitable temperature. During long-distance travel, it can provide travelers with cold drinks and fresh food. In sporting events, it can provide athletes with cold drinks to help them recover. It can also be used to transport medical products, such as vaccines and blood samples, which require preservation at specific temperatures. Furthermore, it can be provided to delivery personnel for transporting refrigerated food or beverages. In experiments requiring specific temperatures, it can provide a stable temperature environment, among other applications.
[0139] This utility model has been described through preferred embodiments. Those skilled in the art will understand that various changes or equivalent substitutions can be made to these features and embodiments without departing from the spirit and scope of this utility model. This utility model is not limited to the specific embodiments disclosed herein; other embodiments falling within the scope of the claims of this application are all within the protection scope of this utility model.
Claims
1. A temperature-controlled storage device, characterized in that, include: At least one storage module (100) and at least one temperature control module (250), wherein the storage module (100) includes at least one storage body (102) and a storage cover (104). The temperature control module (250) cools the storage unit (102). The temperature control module (250) cools after being powered on, and is used to regulate the internal temperature of the storage unit (102). Two earpieces (220) are provided, one on each side of the storage module (100), and the battery mounting part (409) is covered by the earpieces (220) and opens and closes; and One or more battery packs are detachably placed in the battery mounting section (409) of the temperature-controlled storage device. The battery packs protrude from the outside of the storage module (100) and are electrically connected to the temperature control module (250) to supply power to the temperature control module (250). A carrying component (300) is connected to the storage module (100).
2. The temperature-controlled storage device according to claim 1, characterized in that, The temperature control module (250) includes at least one cooling component (450) and a control circuit that is electrically connected to the cooling component (450). The battery mounting part (409) is electrically connected to the control circuit. The control circuit is located on the outside of the cooling component (450). The cooling component (450) is located on the storage body (102).
3. The temperature-controlled storage device according to claim 2, characterized in that, The refrigeration assembly (450) includes a compressor, a condenser connected to the compressor, and an evaporator connected to the condenser, the condenser protruding from the outside of the storage body (102).
4. The temperature-controlled storage device according to claim 1, characterized in that, The control circuit includes at least two modes, namely a first cooling mode and a second cooling mode. The first cooling mode and the second cooling mode can be switched and selected by a button trigger.
5. The temperature-controlled storage device according to claim 1, characterized in that, The temperature control module (250) is detachably connected to the storage module (100).
6. The temperature-controlled storage device according to claim 1, characterized in that, The carrying component (300) also includes at least one carrying extension component (318), which is disposed on the outer surface of the storage module (100) for snapping, hooking or binding.
7. The temperature-controlled storage device according to claim 1, characterized in that, The carrying component (300) also includes a human body carrier (310), which includes a body (312) and at least one shock absorber (314). The outer surface of the body (312) is connected to the storage module (100), and the shock absorber (314) is disposed on the inner surface of the body (312).
8. The temperature-controlled storage device according to claim 1, characterized in that, The storage unit (102) includes a first zone and a second zone spaced apart from the first zone. The first zone receives a lower cooling temperature from the cooling component (450) than the second zone, so as to manage the temperature of the first zone and the second zone in a zoned manner.
9. The temperature-controlled storage device according to claim 1, characterized in that, External power supplies can be battery packs with multiple batteries, battery pack groups with multiple battery packs, or energy storage power supplies with inverter circuits.
10. The temperature-controlled storage device according to claim 1, characterized in that, It also includes a software outsourcing (200), which covers the storage body (102), wherein: The soft enclosure (200) has at least one soft body (204) and a soft cover (202) for sealing and covering the soft body (204), wherein the soft body (204) and the soft cover (202) are simultaneously sealed and wrapped around the outer periphery of the storage module (100); or The soft package (200) has at least one soft package (204) which is sealed around the periphery of the storage module (100).