Temperature control storage device

By using a soft outer cover to cover the temperature-controlled storage device and making the temperature control module and power supply components protrude, the problems of existing insulated boxes being unable to refrigerate for long periods of time and being inconvenient to carry are solved, achieving a combination of miniaturization, improved insulation effect and carrying comfort.

CN223709996UActive Publication Date: 2025-12-23ZHEJIANG LERA NEW ENERGY POWER TECH CO LTD
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Patent Information

Application Number
CN202422748219.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2024-03-01
Filing Date
2024-11-11
Publication Date
2025-12-23
Estimated Expiration
2034-11-11

AI Technical Summary

Technical Problem

Existing outdoor insulated boxes cannot keep food or beverages refrigerated for extended periods and are inconvenient to carry, limiting their application.

Method used

A temperature-controlled storage device is designed, including a storage module and a temperature control module. The device is covered with a soft outer casing. The temperature control module and power supply components protrude from the periphery of the storage module. The soft outer casing enhances the heat preservation effect, modifies the appearance, and increases the storage space.

Benefits of technology

It achieves increased storage space while maintaining a compact size, improves insulation, enhances carrying comfort and aesthetics, and is suitable for long-term outdoor refrigeration.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a temperature control storage device which comprises a storage module, a soft outer package and a temperature control module, the soft outer package wraps the periphery of the storage module, and the temperature control module is suitable for refrigeration to adjust the temperature in the storage module after being powered; the soft outer cover covers the periphery of the storage module. By arranging the soft outer package, the temperature control storage equipment has the following beneficial effects that firstly, the heat preservation effect of the equipment can be improved; secondly, the whole appearance of the equipment can be modified by the soft outer cover, the weight of the equipment cannot be increased excessively, and a visual and actual light feeling is brought to a user; thirdly, the comfort of carrying the equipment can be improved due to the soft appearance; and fourthly, the temperature control module is protected by the soft outer package.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of outdoor food storage, and in particular to a temperature-controlled storage device. BACKGROUND

[0002] Refrigerators can provide cold storage, food preservation, and heat relief, but usually require a large amount of space and consume a large amount of power, making them inconvenient to use outdoors. With the rise of various outdoor recreational activities such as walking and cycling, there is a higher demand for the storage and refrigeration of food or beverages.

[0003] To meet the demand for refrigerating food or beverages outdoors, it is common to carry a simple thermal insulation box, such as an aluminum foil thermal insulation box, but such thermal insulation boxes have limited performance, only support short-term thermal insulation, and cannot actively change the temperature inside the box, making it difficult to meet the demand for long-term refrigeration of food or beverages outdoors. In addition, existing thermal insulation boxes are not convenient to carry, especially in walking or cycling scenarios, making it difficult for users to carry the thermal insulation box for a long time, resulting in limited use of existing thermal insulation boxes.

[0004] A new temperature-controlled storage device is proposed to facilitate long-term refrigeration of food or beverages outdoors. SUMMARY

[0005] One object of the present application is to provide a temperature-controlled storage device that facilitates miniaturization.

[0006] Another object of the present application is to provide a temperature-controlled storage device that is convenient to carry.

[0007] To achieve at least one of the above objects, according to one aspect of the present application, a temperature-controlled storage device is provided, comprising a storage module and a temperature control module, the temperature control module being adapted to refrigerate to adjust the temperature inside the storage module when powered, characterized in that it further comprises a soft outer package, the soft outer package covering the outer periphery of the storage module, and at least part of the surface of the temperature control module being covered by the soft outer package.

[0008] The temperature-controlled storage device described above has the following beneficial effects by providing a soft outer package: first, it can improve the thermal insulation effect of the device; second, the soft outer package can modify the overall appearance of the device without significantly increasing the weight of the device, giving users a visual and actual sense of lightness; third, the soft outer surface can improve the comfort of carrying the device; fourth, the soft outer package protects the storage module and the temperature control module.

[0009] In some embodiments, the temperature-controlled storage device further comprises a power supply assembly, the power supply assembly comprising a battery mounting portion electrically connected with the temperature-controlled module, a mobile power supply being adapted to be detachably mounted in the battery mounting portion to supply power to the temperature-controlled module; the battery mounting portion is disposed outside the soft outer package, or the soft outer package partially covers the battery mounting portion, or the soft outer package covers the battery mounting portion in an openable and closable manner.

[0010] In some embodiments, at least a portion of the temperature-controlled module protrudes from the radial peripheral surface of the storage module, and / or at least a portion of the battery mounting portion protrudes from the radial peripheral surface of the storage module.

[0011] The temperature-controlled storage device, by protruding the temperature-controlled module and / or the battery mounting portion, and covering the soft outer package, has the beneficial effects that more space can be left inside for the storage module to store, thereby increasing the storage space while keeping the storage module small, and the soft outer package can modify the irregular shape to make the overall device more visually coordinated.

[0012] In some embodiments, at least a portion of the temperature-controlled module protrudes from the radial peripheral surface of the storage module, at least a portion of the battery mounting portion protrudes from the radial peripheral surface of the storage module, and the portions of the temperature-controlled module and the battery mounting portion that protrude from the radial peripheral surface of the storage body are symmetrically located on both sides of the storage body.

[0013] In some embodiments, the storage module comprises a storage body and a storage cover body that is openably and closably disposed on the storage body, the temperature-controlled module comprises a refrigeration base and a refrigeration assembly disposed in the refrigeration base, the refrigeration base is connected to the storage body, and the battery mounting portion is electrically connected with the refrigeration assembly.

[0014] In some embodiments, the bottom of the storage body is stepped or one corner of the bottom of the storage body is inwardly recessed, so that the bottom of the storage body has an inwardly recessed space, the temperature-controlled module is detachably disposed in the inwardly recessed space of the bottom of the storage body, and the temperature-controlled module does not protrude from the radial peripheral surface of the storage body; the battery mounting portion is connected to the refrigeration base, and the battery mounting portion protrudes from the radial peripheral surface of the storage body; or the battery mounting portion is connected to the radial peripheral surface of the storage body.

[0015] In some embodiments, the bottom of the storage body is stepped or one corner of the bottom of the storage body is inwardly recessed, so that the bottom of the storage body has a recessed space, the temperature control module is detachably arranged in the recessed space of the bottom of the storage body, and at least one side of the temperature control module protrudes from the radial circumferential surface of the storage body; the battery mounting portion is connected to the storage body, the battery mounting portion is located on a side away from the temperature control module, or the battery mounting portion is located on the same side as the temperature control module; or the battery mounting portion is connected to the storage cover body.

[0016] In some embodiments, the center of gravity of the temperature control module is away from the storage module, and the center of gravity G of the temperature control module is located within a range of 1 to 1.5 times a radius R of the central axis of the storage body.

[0017] In some embodiments, the soft outer package includes a soft package body, the soft package body covers the storage body, the soft package body covers at least a part of the surface of the temperature control module, and the soft package body is assembled with the storage body as a whole.

[0018] In some embodiments, the soft outer package includes a soft package cover, the soft package cover covers the storage cover body, and the soft package cover is assembled with the storage cover body as a whole.

[0019] Further, the soft outer package further includes at least one ear package, the ear package partially covers the battery mounting portion, or the ear package covers the battery mounting portion in an openable and closable manner.

[0020] In some embodiments, the storage body and the storage cover body define a sealed connection position, the soft package body and the soft package cover define a containing connection position, and the sealed connection position and the containing connection position are arranged in a staggered manner in the height direction; or the storage body and the storage cover body define a sealed connection position, the top of the soft package body extends upward beyond the sealed connection position, or the bottom of the soft package cover extends downward beyond the sealed connection position; or the storage body and the storage cover body define a sealed connection position, the soft package body and the soft package cover define a containing connection position, and the sealed connection position and the containing connection position are in the same horizontal position.

[0021] In some embodiments, a partition plate is arranged in the storage body, the partition plate divides the storage space of the storage body into a first area and a second area, an air outlet for outputting cold air is arranged in one of the first area and the second area, and the partition plate is rotatably or detachably arranged in the storage body.

[0022] In some embodiments, the refrigeration assembly comprises a compressor, a condenser pipe connected to the compressor, an evaporator pipe connected to the condenser pipe, and a heat dissipation fan arranged on one side of the condenser pipe, and at least one pair of ventilation windows are arranged on the refrigeration base for dissipating heat from the refrigeration assembly; one pair of the ventilation windows is arranged on opposite sides of the refrigeration base; or one pair of the ventilation windows is arranged on adjacent sides of the refrigeration base; and the soft outer package covers the refrigeration base in a manner avoiding the ventilation windows.

[0023] In some embodiments, the refrigeration base has a mounting surface, the battery mounting portion is arranged on the mounting surface, and the mounting surface is not coplanar with the two ventilation windows; one pair of the ventilation windows is arranged on opposite sides of the refrigeration base, and the mounting surface is perpendicular to the plane on which the two ventilation windows are arranged.

[0024] In some embodiments, the temperature control module comprises a control circuit, the control circuit is arranged in the refrigeration base, the battery mounting portion is electrically connected to the control circuit, the control circuit is electrically connected to the refrigeration assembly, an outer side surface of the refrigeration base is provided with a control panel, the control panel is electrically connected to the control circuit, and the soft outer package covers the refrigeration base in a manner avoiding the control panel.

[0025] In some embodiments, the battery mounting portion has an opening for taking out the power bank, and the opening is adapted for inserting the power bank into the battery mounting portion in a vertically downward direction.

[0026] In some embodiments, the temperature-controlled storage device further comprises a carrying assembly which is detachably connected to the soft outer package and / or the storage module, for facilitating the user to carry the temperature-controlled storage device, and the carrying assembly comprises a human body carrying member which is detachably connected to the soft outer package and / or the storage module.

[0027] In some embodiments, the temperature-controlled storage device further comprises a detachable table board which can be partially supported and unfolded by the storage module; or the temperature-controlled storage device comprises a detachable support, and a metal support is detachably mounted on the soft outer package for fixing the soft outer package on a vehicle.

[0028] In some embodiments, the power supply assembly comprises one or more mobile power sources, which are detachably arranged in the battery mounting portion; the power supply assembly further comprises a photovoltaic power generation panel and a mobile power source electrically connected to the battery mounting portion, wherein the photovoltaic power generation panel is adapted to supply power to the mobile power source; or the power supply assembly further comprises at least one power supply interface adapted to be electrically connected with an external power source, so as to supply power to the temperature control module or the mobile power source in the battery mounting portion by the external power source, and the power supply interface is of a TYPE-C, an AC female plug, a triangle-shaped interface or a USB interface.

[0029] In some embodiments, the temperature control module comprises a control circuit, and the battery mounting portion is electrically connected with the control circuit, wherein when a compressor of the temperature control module is working, the control circuit controls the current input to the compressor, and when the compressor of the temperature control module is not driven, the control circuit controls the current input to the mobile power source until the mobile power source is fully charged. BRIEF DESCRIPTION OF DRAWINGS

[0030] Figure 1 Schematic diagram of the principle of the temperature control storage device.

[0031] Figure 2 Schematic diagram of the principle of another embodiment of the temperature control storage device.

[0032] Figure 3 Exploded schematic diagram of the temperature control storage device.

[0033] Figure 4 Perspective schematic diagram of the temperature control storage device.

[0034] Figure 5 Perspective schematic diagram of the temperature control storage device with a power supply panel.

[0035] Figure 6 Exploded schematic diagram of the temperature control storage device.

[0036] Figure 7 Sectional view of the temperature control storage device.

[0037] Figure 8 Sectional view of the temperature control storage device.

[0038] Figure 9 Sectional view of the temperature control storage device.

[0039] Figure 10 Schematic diagram of the temperature control storage device with an expanded enclosure.

[0040] Figure 11 Perspective schematic diagram of the temperature control storage device.

[0041] Figure 12Top view of temperature-controlled storage device.

[0042] Figure 13 Temperature-controlled storage device in combination with an electrically driven vehicle.

[0043] Figure 14 Perspective view of temperature-controlled storage device.

[0044] Figure 15 Temperature-controlled storage device with hot air circulation.

[0045] Figure 16 Temperature-controlled storage device in another embodiment.

[0046] Figure 17 Temperature-controlled storage device Figure 16 Schematic view from another perspective.

[0047] Figure 18 Temperature-controlled storage device Figure 16 Partial cross-sectional view.

[0048] Figure 19 Temperature-controlled storage device with metal support.

[0049] Figure 20A Temperature-controlled storage device in another embodiment.

[0050] Figure 20B Temperature-controlled storage device in another embodiment.

[0051] Figure 21 Temperature-controlled module in another embodiment.

[0052] Figure 22 Temperature-controlled storage device in another embodiment.

[0053] Figure 23A Temperature-controlled storage device in another embodiment.

[0054] Figure 23B Temperature-controlled storage device in another embodiment.

[0055] Figure 24 Temperature-controlled storage device in another embodiment.

[0056] Figure 25 Temperature-controlled storage device Figure 24 Schematic view from another perspective.

[0057] Figure 26 Temperature-controlled storage device Figure 25 Schematic view after removal of soft back.

[0058] Figure 27 For Figure 26 Embodiment of the embodiment.

[0059] Figure 28 For a cross-sectional view of an embodiment of the temperature-controlled storage device.

[0060] Figure 29 For a schematic view of one side of the temperature-controlled storage device installed with a temperature control module.

[0061] Figure 30 For a top view of the temperature-controlled storage device.

[0062] In the figure:

[0063] 100, storage module; 102, storage body; 104, storage cover; 110, first storage body; 120, second storage body; 127, partition plate; 129, partition plate transposition piece; 131, partition plate conversion positioning piece; 135, air outlet end; 137, hot air circulation port; 112, anti-overflow space; 116, temperature raising piece; 216, expansion sleeve; 108, sealing limiting piece;

[0064] 200, soft outer package; 204, soft package body; 202, soft package cover; 220, ear package; 500, soft backpack; 501, metal support; 502, battery bag; 503, through hole.

[0065] 250, temperature control module; 450, refrigeration assembly; 451, compressor; 452, condenser pipe; 453, heat dissipation fan; 454, evaporator pipe; 404, control circuit; 402, refrigeration base; 4021, ventilation window; 4022, control panel; 4023, external power supply port; 4024, wiring hole; 4025, mounting surface; 118, cooling piece;

[0066] 300, carrying assembly; 310, human body carrying piece; 312, main body; 314, shock absorbing piece; 316, expansion assembly; 318, carrying expansion assembly.

[0067] 210, power supply board; 213, power supply support; 405, mobile power supply; 409, battery mounting portion; 411, fixing piece; 407, power supply interface. DETAILED DESCRIPTION

[0068] The technical solutions in the embodiments of the present application will be described clearly and completely below in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0069] Reference to "an embodiment" or "the embodiments" means that a particular feature, structure, or characteristic described in connection with the embodiment or embodiments can be included in at least one embodiment. The appearances of the phrase in various places in the specification are not necessarily all referring to the same embodiment, nor are the various embodiments mutually exclusive.

[0070] In this specification, the terms "middle", "upper", "lower", "front", "rear", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like used to indicate the positional relationship of the components with reference to the drawings are used to facilitate the description of the specification and simplify the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the disclosure. The positional relationship of the components is appropriately changed according to the direction of the described components. Therefore, it is not limited to the words described in the specification, and can be appropriately replaced according to the situation.

[0071] The temperature-controlled storage device of the present application comprises a storage module 100, a soft outer package 200, a temperature control module 250, and a power supply assembly. The soft outer package 200 covers the outer periphery of the storage module 100, and the temperature control module 250 is at least partially covered by the soft outer package 200. The temperature control module 250 is used to adjust the internal temperature of the storage module 100, and is adapted to perform refrigeration when powered by the power supply assembly.

[0072] The soft outer package 200 has the following advantages: first, it can play a heat preservation role for the storage module 100, enhancing the heat preservation or cooling effect of the temperature-controlled storage device; second, the flexible material of the soft outer package 200 can modify the appearance of the temperature-controlled storage device, making the part protruding from the storage module not conspicuous, and also making the overall modeling of the temperature-controlled storage device no longer limited to the conventional square shell; third, unlike the traditional metal or plastic outer surface, the soft outer package 200 can create a light visual effect; fourth, the flexibility of the soft outer package 200 can increase the comfort of the user when carrying the temperature-controlled storage device, especially when the user carries the temperature-controlled storage device, the soft outer package 200 can provide good cushioning and increase the comfort of the user when carrying; fifth, wrapping and modifying the temperature control module 250 with the soft outer package 200 can avoid direct exposure of the temperature control module 250 to the outside, protecting the temperature control module 250 and increasing the overall visual aesthetics.

[0073] The power supply assembly includes a battery mounting portion 409 electrically connected to the temperature control module 250, the mobile power supply 405 is adapted to be detachably mounted in the battery mounting portion 409 to supply power to the temperature control module 250, the battery mounting portion 409 is arranged outside the soft outer package 200, or the soft outer package 200 partially covers the battery mounting portion 409, or the soft outer package 200 covers the battery mounting portion 409 in an openable and closable manner to facilitate the replacement of the mobile power supply 405 in the battery mounting portion 409 at any time.

[0074] At least a part of the temperature control module 250 protrudes from the radial peripheral surface of the storage module 100, and / or at least a part of the power supply assembly protrudes from the radial peripheral surface of the storage module 100. In other words, at least a part of the temperature control module 250 can protrude from the radial peripheral surface of the storage module 100, as shown in Figure 1 、 2 At least a part of the power supply assembly can protrude from the radial peripheral surface of the storage module 100, as shown in Figures 3-12 、 Figure 26 、 27 、

[0075] In the prior art, in order to maintain the overall square structure of the temperature-controlled storage device, the temperature control module and the power supply assembly are usually embedded in the accommodation space of the storage module. This design has the advantage of obtaining a regular shape, but has the disadvantage of reducing the storage space of the storage module. In order to increase the storage space of the storage module, the length, width or height of the storage module must be increased as a whole, which inevitably increases the overall size of the device, is not conducive to miniaturization, and thus reduces the portability of the device. In the present application, at least one of the temperature control module 250 and the power supply assembly protrudes from the radial peripheral surface of the storage module. Although the shape is no longer regular, more space can be left inside the storage module 100 for storage, thereby increasing the volume of the storage space while maintaining the miniaturization of the storage module 100. Considering that the soft outer package 200 added in the present application can also modify the irregular shape, the protrusion of the temperature control module 250 and the power supply assembly will not make the overall shape appear inconsistent.

[0076] In some embodiments, as shown in Figure 3As shown, the temperature-controlled storage device also includes a carrying component 300, which is detachably connected to the storage module 100 or the soft outer case 200 for convenient carrying by the user. Further, the carrying component 300 may include a human-mounted component 310, such as a shoulder strap, allowing the user to conveniently carry the temperature-controlled storage device. Preferably, the human-mounted component 310 is connected to the back of the storage module 100, and neither the temperature-controlled module 250 nor the power supply component protrudes from the back, ensuring comfort when carrying the device. Further, the radial circumferential surface of the storage module 100 includes two sides adjacent to the back and a front opposite the back; the temperature-controlled module 250 at least partially protrudes from the sides of the storage module 100, and / or, the power supply component at least partially protrudes from the sides of the storage module 100.

[0077] Storage Module 100

[0078] like Figure 1 , 2 As shown in Figure 3, the storage module 100 includes a storage body 102 and a storage cover 104 that is openable and closable on the storage body 102. The storage body 102 defines a storage space, and the storage cover 104 is used to seal or open the storage space. The temperature control module 250 is used to regulate the temperature within the storage space defined by the storage body 102.

[0079] The opening of the storage body 102 can be located on the top surface or on the radial circumferential surface, and the storage cover 104 is closable at the opening of the storage body 102. In the various embodiments illustrated in the accompanying drawings of this application, the opening of the storage body 102 is located on the top surface. The storage cover 104 can be hinged to the opening of the storage body 102, can be detachably installed on the opening of the storage body 102, or can be movably installed at the opening of the storage body 102 in a pull-out manner. In addition, the storage cover 104 can also be a double-door type cover. This application does not limit the opening and closing form of the storage cover 104, and all forms of storage cover 104 are within the protection scope of this application.

[0080] In some embodiments, such as Figure 8 , 9As shown, the inside of the storage body 102 is divided into different temperature zones. Specifically, the storage body 102 comprises a first zone and a second zone arranged in a spaced manner, and the temperature control module 250 can cool the first zone and the second zone to different degrees, so that the first zone and the second zone maintain different temperatures. Specifically, the storage body 102 is provided with a partition plate 127, which divides the storage space of the storage body 102 into the first zone and the second zone. The inner wall of the storage body 102 is provided with an air outlet 135 suitable for outputting cold air, and the air outlet 135 is located in the first zone, so that the temperature of the first zone is lower than that of the second zone. The partition plate 127 can be fixedly arranged in the storage body 102, as shown in Figure 9 The partition plate 127 can be movably arranged in the storage body 102 to adjust the space of the first zone and the second zone at any time, as shown in Figure 8 Alternatively, the partition plate 127 can be detachably arranged in the storage body 102 to select whether to perform partition management according to the needs of the user.

[0081] Further, as shown in Figure 6 、 7 、8、9、14、20B、22、23A、23B、27、28 or 29, the bottom of the storage body 102 is not flat, and a part of the bottom surface is inwardly concave to form an inner concave space to accommodate the temperature control module 250 and / or the power supply module.

[0082] In some embodiments, the bottom of the storage body 102 is stepped, so that the internal space of the storage body 102 has two parts with different heights, as shown in Figure 7 、 8 、9. The partition plate 127 can be vertically arranged at the step of the storage body 102, so as to cut the storage space into two parts left and right, one side being a deeper storage area and the other side being a shallower storage area, as shown in Figure 9 The partition plate 127 can be horizontally arranged at the step of the storage body 102, so as to cut the storage space into two parts up and down, the lower storage space being smaller and the upper storage space being larger. In some embodiments, the partition plate 127 is rotatably arranged on the partition plate switching member 129, and the storage body 102 is provided with a partition plate switching positioning member 131, which can make the partition plate 127 stay at different positions. When the partition plate 127 stays at different positions, the storage space can be selectively cut up and down or left and right. When the partition plate 127 stays horizontally, the storage space is divided into two parts up and down, and the lower storage space is relatively small. The air outlet 135 is arranged in the lower storage space, so that the temperature of the lower storage space can be quickly lowered or has a lower temperature, thereby realizing temperature partition management.

[0083] The bottom of the storage body 102 is stepped, that is, one side of the bottom surface of the storage body 102 is inwardly recessed to form an inner recessed space, as shown in Figure 6 The temperature control module 250 is arranged in the inner recessed space of the storage body 102, the top and one side of the temperature control module 250 are arranged in abutment with the storage body 102, and the other three sides and the bottom of the temperature control module 250 are exposed relative to the storage body 102, so that the space of the bottom of the storage body 102 is fully utilized. In some embodiments, the temperature control module 250 does not protrude from the radial peripheral surface of the storage body 102, as shown in Figure 7 , 8 , 9. In other embodiments, one side or opposite two sides of the temperature control module 250 protrude from the radial peripheral surface of the storage body 102, as shown in Figure 27 , 28 . Preferably, the bottom of the temperature control module 250 is substantially in the same plane as the lowermost bottom of the storage body 102, thereby improving stability of placement.

[0084] In other embodiments, only one corner of the bottom of the storage body 102 is inwardly recessed to form an inner recessed space, and when the temperature control module 250 is arranged in the inner recessed space of the storage body 102, the top and two adjacent sides of the temperature control module 250 are arranged in abutment with the storage body 102, and the bottom and the other two adjacent sides of the temperature control module 250 are exposed relative to the storage body 102. In some embodiments, the temperature control module 250 does not protrude from the radial peripheral surface of the storage body 102. In other embodiments, one side of the temperature control module 250 protrudes from the radial peripheral surface of the storage body 102. In other embodiments, adjacent two sides of the temperature control module 250 protrude from adjacent two sides of the radial peripheral surface of the storage module 100, respectively.

[0085] In other variant embodiments, the bottom surface of the storage body 102 is a plane, and the temperature control module 250 is arranged in parallel with the storage body 102 on one side of the storage body 102, as shown in Figure 26 The bottom of the temperature control module 250 is in the same plane as the bottom of the storage body 102.

[0086] In some embodiments, the storage body 102 includes a first storage body 110 and a second storage body 120 sleeved in the first storage body 110, as shown in Figure 3 The first storage body 110 and the second storage body 120 are arranged in abutment, and a heat preservation material such as polyurethane foam, polystyrene board, phenolic foam, glass wool, rock wool, or other material having heat preservation performance can be arranged between the first storage body 110 and the second storage body 120, or a vacuum can be maintained between the first storage body 110 and the second storage body 120. Further, the storage body 102 includes an edge cover 125 connected to the upper ends of the first storage body 110 and the second storage body 102.

[0087] In some embodiments, an extension sleeve 216 is further arranged between the storage body 102 and the storage cover 104, as shown in Figure 10 The two ends of the extension sleeve 216 are connected to the storage body 102 and the storage cover 104 respectively. The storage space of the temperature-controlled storage device can be expanded by adding the extension sleeve 216. The two ends of the extension sleeve 216 can be directly penetrated to form a cylinder that is vertically conductive, so that the space defined by the extension sleeve 216 is in communication with the storage space defined by the storage body 102. In other embodiments, the extension sleeve 216 is provided with a bottom surface to form a drawer with a bottom surface, i.e., the space defined by the extension sleeve 216 is separated from the storage space defined by the storage body 102.

[0088] The one end of the extension sleeve 216 and the storage body 102, and the other end of the extension sleeve 216 and the storage cover 104 can be sealingly connected by the sealing limiting member 108. Other connection methods can also be used for sealing connection, such as: rotating connection and pressing with a sealing strip, concave-convex limiting and sealing with a sealing strip.

[0089] In some embodiments, the storage cover 104, the storage body 102 and the extension sleeve 216 are all provided with cloth coverings. The cloth coverings are connected by zippers and form a soft backpack 500.

[0090] In some embodiments, the storage cover 104 can have different heights. By replacing different storage covers 104, the temperature-controlled storage device can have different storage space sizes.

[0091]

Soft outer package 200

[0092] As shown in Figure 1 The soft outer package 200 includes a soft package body 204, which wraps the storage body 102, and covers at least one side of the temperature control module 250. The soft package body 204 and the storage body 102 can be assembled or integrally formed as a whole, or can be separately arranged. Preferably, the soft package body 204 and the storage body 102 are assembled or integrally formed as a whole, which is beneficial to improve the heat preservation effect and the compactness of the temperature-controlled storage device.

[0093] In some embodiments, as shown in Figure 2 or 3, the soft outer package 200 further includes a soft package cover 202, which wraps the storage cover 104. The soft package cover 202 and the storage cover 104 can be assembled or integrally formed as a whole, or can be separately arranged. Preferably, the soft package cover 202 and the storage cover 104 are assembled or integrally formed as a whole, which is beneficial to improve the heat preservation effect and the compactness of the temperature-controlled storage device.

[0094] In some embodiments, the soft cover 202 is separated from the soft body 204, so that the soft cover 202 can be separated from the storage cover 104 and the storage body 102 and the soft body 204. In other embodiments, the soft cover 202 is connected with the soft body 204.

[0095] The material of the soft outer package 200 can be fabric, leather, etc., which is used to modify the appearance of the temperature control storage device and improve the touch and comfort when the user carries it.

[0096] In order to improve the sealing performance of the storage module 100, the storage module 100 comprises a limiting sealing member 108 for sealingly connecting the storage cover 104 and the storage body 102, as shown in Figs. 14 or 15. In some embodiments, the limiting sealing member 108 is a metal buckle, so that the storage module 100 has better sealing performance, and it is also convenient to open the storage cover 104 and take the articles. The two ends of the limiting sealing member 108 are connected to the soft body 204 and the soft cover 202, as shown in Fig. 14; or the two ends of the limiting sealing member 108 are connected to the storage body 102 and the storage cover 104, as shown in Fig. 15; or the two ends of the limiting sealing member 108 are connected to the storage body 102 and the soft cover 202; or the two ends of the limiting sealing member 108 are connected to the soft body 204 and the storage cover 104. The number of the limiting sealing member 108 can be one, two or more. In some variant embodiments, the limiting sealing member 108 can also be a layer of edge covering, and the storage module 100 is opened and closed by setting a zipper on the edge covering, or the recessed and protruding parts are set on the soft outer package 200 and the storage cover 104 to achieve the sealing effect. Figure 3 Figure 14 Figure 3

[0097] In some embodiments, the storage body 102 and the storage cover 104 define a sealing connection position, the soft body 204 and the soft cover 202 define a containing connection position, and the sealing connection position and the containing connection position are arranged in a staggered manner in the height direction, as shown in Fig. 16. That is, the connection positions of the inner and outer layers are staggered, which is beneficial to improve the heat preservation effect. In other embodiments, the sealing connection position and the containing connection position are at the same level, and such design mainly considers the processing cost and the convenience of use. Figure 3

[0098] In other embodiments, the storage body 102 and the storage cover 104 define a sealing connection position, the top of the soft body 204 extends upward beyond the sealing connection position, or the bottom of the soft cover 202 extends downward beyond the sealing connection position (as shown in Fig. 17), so as to improve the heat preservation effect. Figure 2

[0099] Figure 1 ,​​​​​​2 As shown in FIG. 3, the soft outer package 200 further comprises at least one ear package 220, which is located on the radial circumferential surface of the temperature-controlled storage module. The ear package 200 can be used to cover the battery mounting portion 409 of the power supply assembly, as shown in FIG. Figure 3 , or other components protruding from the radial circumferential surface of the storage module 100, such as the temperature control module 250 shown in FIG. Figure 1 , 2 , or as a side pocket for storage, as shown in FIG. Figure 15 . Through the ear package 220, the components protruding from the radial circumferential surface of the storage module 100 can be modified. In some embodiments, the ear package 220 covers the battery mounting portion 409, and the ear package 220 has corresponding openings to facilitate the placement and removal of the battery. The provision of the ear package 220 significantly changes the appearance of the temperature-controlled storage device, which is different from the metal outer surface of the previous temperature control device, and creates a light and airy visual effect, while actually providing a higher volume ratio.

[0100] It is worth mentioning that the soft outer package 200 refers to a soft material that can shield and accommodate the storage module 100, has a plastic shape, and can modify the appearance of the temperature-controlled storage device, so that the temperature-controlled storage device is not necessarily a square shell.

[0101] As shown in FIG. Figure 3 , a spill-proof space 112 is provided between the storage body 102 and the soft outer package 200, and the temperature control module 250 is arranged in the spill-proof space 112.

[0102] In some embodiments, as shown in FIG. Figure 7 , in order to achieve the purpose of heating food in the temperature-controlled storage device of the present application, at least one heating element 116 is further included in the spill-proof space 112, and the heating element 116 is electrically connected to the control power supply 404. The advantage of this arrangement is that it can heat the food in the storage module 100 when the weather is cold and can cope with different outdoor conditions. The heating element 116 can be a heating wire.

[0103] It is worth mentioning that when the soft outer package 200 covers the temperature control module 250, it is not sealed to cover the temperature control module 250. For example, when the temperature control module 250 has a ventilation window 4021 for heat dissipation, as shown in FIG. Figure 20A , the soft outer package 200 covers the temperature control module 250 in a way that avoids the ventilation window, that is, to ensure that the soft outer package 200 does not block the ventilation window; or when the temperature control module 250 has a control panel 4022 for user operation, as shown in FIG. Figure 20A , the soft outer package 200 covers the temperature control module 250 in a way that avoids the control panel 4022, that is, to ensure that the soft outer package does not block the operation panel 4022.

[0104]

Temperature control module 250

[0105] AsFigure 6 As shown, the temperature control module 250 includes a refrigeration base 402 and a refrigeration assembly 450 arranged in the refrigeration base 402, the refrigeration base 402 is connected with the storage module 100 so that the refrigeration assembly 450 is close to the storage module 100 and cools it. The temperature control module 250 further includes a control circuit 404 mounted on the refrigeration base 402, and the control circuit 404 is electrically connected with the power supply assembly and the refrigeration assembly 450 respectively to control the power supply of the refrigeration assembly 450 by the power supply assembly.

[0106] The refrigeration base 402 forms the shell of the temperature control module 250, which is connected with the storage body 102. The refrigeration assembly 450 and the control circuit 404 are arranged in the refrigeration base 402, and the power supply assembly is electrically connected with the control circuit 404, and the control circuit 404 is electrically connected with the refrigeration assembly 450, so that the power supply assembly supplies power to the refrigeration assembly 450 through the control circuit 404.

[0107] In some embodiments, the refrigeration base 402 is detachably connected with the storage body 102, in other words, the temperature control module 250 is detachably connected with the storage body 102, so that the user can take the entire temperature control module 250 off the temperature control storage device according to actual needs, reduce the carrying weight, and only keep the basic heat preservation function of the storage module 100.

[0108] In some embodiments, as shown in Figure 23A The refrigeration base 402 has a mounting surface 4025 facing outward, and the battery mounting portion 409 of the power supply assembly is arranged on the mounting surface 4025, so as to facilitate the power supply 405 to supply power to the refrigeration assembly 450, and when the refrigeration base 402 is detached from the storage body 102, the battery mounting portion 409 is also detached, further reducing the weight of the remaining part. The mounting surface 4025 should avoid being located on the back of the temperature control storage device, and in order to facilitate the user to take the mobile power supply 405 when carrying the temperature control storage device, the mounting surface 4025 is located on the side surface adjacent to the back.

[0109] In other embodiments, the battery mounting portion 409 is not mounted on the refrigeration base 402, but is mounted on the storage module 100, so as to be away from the refrigeration assembly 450 with large heat generation, so as to avoid affecting the normal use of the battery. For example, the battery mounting portion 409 can be mounted on the storage body 102 or the storage cover 104.

[0110] In some embodiments, as shown in Figure 21 The refrigeration assembly 450 includes a compressor 451, a condenser pipe 452 connected with the compressor 451, an evaporator pipe 454 connected with the condenser pipe 452, and a heat dissipation fan 453 arranged on one side of the condenser pipe 452, and the condenser pipe 452 is partially exposed to the outside of the soft outer package 200. As shown in Figure 20B、 22 As shown, the evaporating pipe 454 is adapted to extend between the first storage body 110 and the second storage body 120 for reducing the temperature of the storage body 102. The evaporating pipe 454 can be tightly wound outside the second storage body 120. The compressor 451 cooperates with the condensing pipe 452 and the evaporating pipe 454 to form a complete refrigeration cycle system, which can precisely and efficiently cool the inside of the storage body 102. The heat dissipation fan 453 is arranged to dissipate heat for the condensing pipe 452, ensuring the smooth progress of the condensing process. It is worth mentioning that the cooling member 118 in some embodiments of the present application is the evaporating pipe 454.

[0111] In some embodiments, the control circuit 404 includes at least two modes, including a first refrigeration mode and a second refrigeration mode, respectively. The first refrigeration mode and the second refrigeration mode can be switched, and the first refrigeration mode and the second refrigeration mode can be selected by the button triggering mode.

[0112] Further, as shown, Figure 21 The cooling base 402 is provided with at least one pair of ventilation windows 4021, at least one ventilation window 4021 is used for air inlet, at least one ventilation window 4021 is used for air outlet, and the heat dissipation fan 453 and the condensing pipe 452 are arranged close to one of the ventilation windows 4021. The at least one pair of ventilation windows 4021 conducts external air and defines a heat dissipation channel, and the components of the refrigeration assembly 450 are arranged along the heat dissipation channel to improve the heat dissipation effect. In some embodiments, a pair of ventilation windows 4021 are arranged on opposite sides of the cooling base 402. In other embodiments, a pair of ventilation windows 4021 are arranged on adjacent sides of the cooling base 402.

[0113] In some embodiments, the cooling base 402 is provided with two ventilation windows 4021, and the mounting surface 4025 of the refrigeration assembly 450 is not coplanar with the two ventilation windows 4021, as shown, Figure 23A For example, the two ventilation windows 4021 are arranged on opposite sides of the refrigeration assembly 450, one of which is located on the front of the temperature-controlled storage device, and the other is located on the back of the temperature-controlled storage device. The mounting surface 4025 is perpendicular to the two ventilation windows 4021, that is, the mounting surface 4025 is located on the side of the temperature-controlled storage device. The ventilation window 4021 on the front is used for air outlet, and the ventilation window 4021 on the back is used for air inlet, so as to avoid blocking the ventilation window 4021 for discharging heat when the user carries the temperature-controlled storage device. Further, the heat dissipation fan 453 is arranged close to the ventilation window 4021 for air outlet.

[0114] In some embodiments, one side of the cooling base 402 is provided with a control panel 4022, as shown, Figure 23AAs shown, the control panel 4022 is electrically connected with the control circuit 404. The control panel 4022 not only provides an intuitive operation interface for the user, but also enables the user to conveniently operate the refrigeration assembly 450 in various ways, and through the control panel 4022, the user can easily adjust the refrigeration parameters, monitor the operating state, and even perform fault diagnosis and repair, greatly improving the ease of use and maintainability of the equipment.

[0115] The control panel 4022 can be arranged coplanar with the ventilation window 4021, or arranged on the side without the ventilation window 4021. In addition, the control panel 4022 can be arranged on the mounting surface 4025, or arranged on the side opposite to the mounting surface 4025. In some preferred embodiments, the control panel 4022 is coplanar with the ventilation window 4021 for air outlet, that is, the control panel 4022 faces the front.

[0116] In one embodiment of the ventilation window 4021, a first ventilation window 4021 is arranged on the side of the refrigeration base 402 facing the front or the back, and a second ventilation window 4021 is arranged on the side of the refrigeration base 402 facing the side, and the two ventilation windows 4021 are arranged as the air inlet end and the air outlet end respectively, and the condenser pipe 452 is close to the air outlet end.

[0117] In another embodiment of the ventilation window 4021, as shown in the figure, Figure 30 The ventilation window 4021 protrudes from the refrigeration base 402, which can expand the installation area of the ventilation window 4021, so that the heat dissipation fan 453 can be installed inside the ventilation window 4021, making the inside of the refrigeration base 402 more spacious, thereby facilitating air flow and improving heat dissipation effect. Of course, through the protruding ventilation window 4021, the heat dissipation fan 453 can also be added inside the protruding ventilation window 4021 to increase the air volume. Thus, the heat dissipation effect of the temperature control module 250 can also be improved.

[0118] In one embodiment of the ventilation window 4021 (not shown in the figure), three or more ventilation windows 4021 are arranged, and each ventilation window 4021 is not arranged coplanar. Among them, at least one ventilation window 4021 is arranged as the air inlet end, at least one ventilation window 4021 is arranged as the air outlet end, and the remaining ventilation windows 4021 are arranged as the air inlet end or the air outlet end according to actual needs, so that in this way, the air volume of ventilation can be increased, and the heat dissipation and ventilation effect can be improved. Of course, if the air inlet volume or the air outlet volume of a certain side is to be increased, multiple coplanar ventilation windows 4021 can also be arranged on a certain side, and this way is equivalent to increasing the area of the ventilation window 4021.

[0119] In a variant (not shown in the figures), the cooling base 402 is provided with stepped surfaces on at least one side, so that the number of side surfaces of the cooling base 402 can be increased, and more ventilation windows 4021 can be provided, thereby further improving the ventilation and heat dissipation effect.

[0120] In another variant (not shown in the figures), the ventilation windows 4021 adjacent to each other are all provided as air inlet ends, thereby forming a large air inlet window, so that the air flow into the cooling base 402 can be increased, and the heat dissipation and cooling effect can be improved. Of course, in other embodiments, the ventilation windows 4021 adjacent to each other can all be provided as air outlet ends, so that the air flow out of the cooling base 402 can be increased, the air convection can be accelerated, and the heat dissipation and cooling effect can be improved. Of course, in other possible embodiments, the ventilation windows 4021 are divided into two groups, one group of adjacent ventilation windows 4021 is provided as air inlet ends, and the other group of adjacent ventilation windows 4021 is provided as air outlet ends. In this way, the air flow into and out of the cooling base 402 can be increased, and the ventilation and heat dissipation effect can be better.

[0121] In some embodiments, the control panel 4022 protrudes from the lower space defined by the radial circumferential surface and the bottom surface of the storage body 102, the opening of the battery mounting portion 409 is parallel to the heat dissipation channel defined by the orientation of the at least two ventilation windows 4021, that is, the mounting surface 4025 and the two ventilation windows 4021 defining the extension direction of the heat dissipation channel are provided in the same direction.

[0122] In some embodiments, the control panel 4022 protrudes from the lower space defined by the radial circumferential surface and the bottom surface of the storage body 102, the opening of the battery mounting portion 409 is parallel to the heat dissipation channel defined by the orientation of the at least two ventilation windows 4021, that is, the mounting surface 4025 and the two ventilation windows 4021 defining the extension direction of the heat dissipation channel are provided in the same direction. Figure 26 、 27 In the variant shown in the figures, the center of gravity of the temperature control module 250 is away from the storage body 102. The center of gravity G of the temperature control module 250 is located within a range of 1 to 1.5 times the radius R of the central axis of the storage body 102. More preferably, the center of gravity G of the temperature control module 250 is located within a range of 1.1 to 1.3 times the radius R of the central axis of the storage body 102.

[0123] The temperature control module 250 and the battery mounting portion 409 are provided on the same side and arranged along the axial direction. Among them, a part of the temperature control module 250 protrudes from the radial circumferential surface of the storage body 102, and the battery mounting portion 409 is mounted on the radial circumferential surface of the storage body 102.

[0124]

Carrying assembly 300

[0125] In order to facilitate the carrying of the temperature control storage device, the temperature control storage device of the present application further comprises a carrying assembly 300, such as Figure 3As shown. In some embodiments, the carrying component 300 is detachably mounted on the soft outer bag 200. The carrying component 300 allows users to easily carry or transport the temperature-controlled storage device, and can be removed when not needed for independent use of the storage module 100. The carrying component 300 increases the portability of the temperature-controlled storage device of this application, making it more suitable for outdoor use.

[0126] Furthermore, such as Figure 3 As shown, the human-carrying device 310 includes a main body 312 and a shock-absorbing component 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 component 314 is disposed on the inner surface of the main body 312. Users can carry the temperature-controlled storage device on their backs using the human-carrying device 310. The inclusion of the shock-absorbing component 314 helps to improve comfort when carrying the device.

[0127] In some embodiments, such as Figure 3 As shown, the human-carrying component 310 is equipped with a camping expansion component 316, which can be a structure such as a hook. The camping expansion component 316 is set on the main body 312. By adding hooks, it can be expanded to assemble outdoor equipment such as blankets, tents, and walking sticks, greatly expanding the functionality of the temperature-controlled storage device.

[0128] In some embodiments, such as 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.

[0129] In another embodiment, such as Figures 16 to 19 As shown, the storage unit 102 is externally fitted with a soft backpack 500. In this embodiment, the soft backpack 500 is equivalent to the soft outer bag 200 in other embodiments. A metal bracket 501 is mounted on the soft backpack 500 for securing it to a vehicle, such as a bicycle or car, allowing the storage device to be carried on the vehicle. By configuring the storage unit 102 with the soft backpack 500, a portable solution is provided for the user. The soft backpack 500 perfectly conforms to the shape of the storage unit 102, providing excellent protection. The metal bracket 501 effectively secures the soft backpack 500 to various vehicles, such as bicycles and cars. Therefore, users can easily install the storage device on their vehicles according to their needs, facilitating carrying and movement. This allows for easy portability of the storage device, meeting their storage needs at any time, and ensuring ease of use and maintainability.

[0130] The soft backpack 500 has a through hole 503 corresponding to the ventilation window 4021, such as Figure 16The soft backpack 500 is provided with a plurality of side pockets, one of which is a battery pocket 502 formed on the side of the ventilation passage defined by the two ventilation windows 4021. That is, at least one battery pocket 502 is formed in the vertical direction of the ventilation passage defined by the two ventilation windows 4021, and the cooling assembly 450 can be cooled smoothly by providing a through hole 503 corresponding to the ventilation window 4021.

[0131] In this embodiment, when the soft backpack 500 is sleeved outside the storage body 102, the battery mounting portion 409 and the power bank 405 can be placed and mounted in the battery pocket 502, the wires can be kept between the storage module 100, the cooling base 402 and the storage body 102, and the wires can be decorated by the soft backpack 500, thereby protecting the power bank 405 and the wires. The battery pocket 502 is provided with a zipper opening, which facilitates opening and closing of the battery pocket 502 and facilitates replacement of the power bank 405 in the battery pocket 502.

[0132]

Power supply assembly

[0133] As shown in Figure 3 , the power supply assembly includes a battery mounting portion 409 and a power bank 405 detachably arranged in the battery mounting portion 409, and the battery mounting portion 409 has an opening through which the power bank 405 can be taken out, thereby facilitating replacement of the power bank 405 at any time. The battery mounting portion 409 is electrically connected to the control circuit 404 of the temperature control module 250, so that the temperature control module 250 works by obtaining power from the power bank 405.

[0134] The battery mounting portion 409 protrudes from the storage module 100, which is convenient for users to replace the battery or the power bank 405 and also helps to increase the storage space of the storage module 100.

[0135] The power bank 405 can be fixed on the battery mounting portion 409 by assembly or gravity, or a fixing member 411 can be arranged on the battery mounting portion 409, as shown in Figure 6 , the fixing member 411 can reinforce the connection between the power bank 405 and the battery mounting portion 409, and prevent the power bank 405 from accidentally falling out of the battery mounting portion 409. The fixing member 411 can also be a strap, a Velcro, etc. The fixing member 411 can also be arranged as two parts that match each other on the power bank 405 and the battery mounting portion 409.

[0136] In some embodiments, the opening direction of the battery mounting portion 409 is upward, so as to improve the installation stability of the power bank and facilitate users to take it out.

[0137] The mobile power supply 405 can be a lithium ion battery pack, but is not limited thereto, and can also be a polymer lithium ion battery, an alkaline battery, a fuel cell, a hand-cranked power generation device, or any other power supply that meets the power needs.

[0138] The mobile power supply 405 can be repeatedly charged and discharged, but is not limited thereto, and in other embodiments, the mobile power supply 405 can be configured to support only a single use.

[0139] In some embodiments, the soft outer package 200 has a radial peripheral surface, a top surface, and a bottom surface, and the battery mounting portion 409 can be disposed on the radial peripheral surface of the soft outer package 200, can be disposed on the bottom surface of the soft outer package 200, or can also be disposed on the top surface of the soft package cover 202. Alternatively, the battery mounting portion 409 is disposed inside the soft package cover 202, and the battery mounting portion 409 has a battery compartment and a plug-in opening that communicates the battery compartment with an external space to accommodate the mobile power supply 405.

[0140] The mobile power supply 405 can be inserted into the battery mounting portion 409 in a direction close to the storage module 100. The mobile power supply 405 and the battery mounting portion 409 can be disposed on the front or side surface of the storage module 100, and the mobile power supply 405 is inserted into the battery mounting portion 409 in a vertical downward or horizontal direction; the mobile power supply 405 and the battery mounting portion 409 can also be disposed on the top surface of the storage module 100, and the mobile power supply 405 is inserted into the battery mounting portion 409 in a direction parallel to the top surface.

[0141] In some embodiments, the battery mounting portion 409 is connected to the refrigeration base 402 of the temperature control module 250, as shown in Figure 23A 23B The battery mounting portion 409 can be integrally formed with the refrigeration base 402 or can be detachably mounted on the refrigeration base 402. The battery mounting portion 409 can protrude from the radial peripheral surface of the refrigeration base 402 or can not protrude from the radial peripheral surface of the refrigeration base 402. In this embodiment, in order to improve the heat dissipation effect of the battery mounting portion 409, the outer wall of the battery mounting portion 409 can be provided with heat dissipation holes to facilitate the heat dissipation of the mobile power supply 405, and a heat dissipation fan can also be added at the position of the heat dissipation holes to further improve the heat dissipation effect of the mobile power supply 405. Alternatively, the battery mounting portion 409 is close to the ventilation window 4021 for air intake.

[0142] ​Specifically, the battery mounting part 409 is mounted on the mounting surface 4025 of the cooling base 402. The battery mounting part 409 and the control circuit 404 are arranged on both sides of the cooling assembly 450. The battery mounting part 409 is close to the control panel 4022, and the battery mounting part 409 and the control panel 4022 are held near a corner of the cooling base 402. That is, the battery mounting part 409 and the control panel 4022 are held on two adjacent surfaces of the cooling base 402. The battery mounting part 409 and the control panel 4022 are arranged vertically. The battery mounting part 409 is mounted on the mounting surface 4025 and near the ventilation window 4021 at the air inlet. In this way, the wires on the battery mounting part 409 can directly pass through the wiring hole 4024 and connect to the control circuit 402. This mounting method can minimize the wiring distance and wire length, making the storage device more compact. By positioning the battery mounting section 409 close to the ventilation window 4021 at the air inlet, the power bank 405 can be kept as far away from the ventilation window 4021 at the air outlet as possible, reducing the impact of heat on the power bank 405. The external power port 4023 and the battery mounting section 409 are arranged on the same plane.

[0143] In other embodiments, the battery mounting portion 409 is connected to the storage module 100, thereby distancing it from the cooling component 450. This arrangement aims to effectively prevent the heat generated by the cooling component 450 during operation from adversely affecting the performance of the power bank 405. Through this structure, the power bank 405 can maintain a more stable and suitable operating environment, thus ensuring its long-term stable operation. For example, the battery mounting portion 409 can be located on the side of the storage module 100 away from the temperature control module 250, such as... Figure 18 , 20A As shown in Figure 20B, the battery mounting part 409 may be located on the side of the storage module 100 near the temperature control module 250, but above the temperature control module 250, as shown in Figure 20B. Figure 26 As shown. The temperature control module 250 is connected to the power bank 405 inside the battery mounting section 409. In this way, the power bank placed in the battery mounting section 409 is less affected by the heat from the temperature control module 250. Due to the modification of the soft outer casing 200, the wiring of the battery mounting section 409 can be exposed on the outside of the storage body 102 and will not be exposed to the user. Another way to install the battery mounting section 409 is to install the battery mounting section 409 on the top of the storage cover 104, as shown. Figure 22 As shown. In this way, the power bank 405 can be kept at a maximum distance from the cooling component 450, further reducing the adverse effects of heat on the performance of the power bank 405.

[0144] In some embodiments, the battery mounting portion 409 is at least partially exposed to the external environment of the soft outer package 200 when the power bank 405 is arranged in the battery mounting portion 409, so as to facilitate the user to take it.

[0145] In some embodiments, the power bank 405 is arranged in the battery mounting portion 409, and at least partially exposed to the external environment of the soft outer package 200, so as to facilitate the user to take it.

[0146] In Figure 4 In the embodiment shown, the number of the power bank 405 and the battery mounting portion 409 is one, and they are arranged on one side of the storage module 100, i.e. on the side, so that the overall appearance is close to the side pocket of the backpack.

[0147] In some embodiments, as Figure 28 shown, at least a part of the temperature control module 250 protrudes from the radial circumferential surface of the storage module 100, at least a part of the battery mounting portion 409 protrudes from the radial circumferential surface of the storage module 100, and the parts of the temperature control module 250 and the battery mounting portion 409 protruding from the radial circumferential surface of the storage module 100 are symmetrically located on both sides of the storage module 100. In this way, the overall appearance of the temperature control storage device is more symmetrical, and it is beneficial to balance the center of gravity of the entire device and increase the comfort when carrying.

[0148] As Figure 5 shown, another embodiment of the power supply assembly is provided, which includes a power supply bracket 213 and a power supply panel 210 arranged on the power supply bracket 213. The power supply panel 210 can be a photovoltaic panel, which can provide power for the temperature control storage device by absorbing solar energy, and at the same time, the power supply panel 210 can provide sun protection for the user. The power supply bracket 213 is connected to the storage module 100 or the soft outer package 200 or the carrying assembly 300. The power supply panel 210 is adapted to supply power to the power bank 405.

[0149] In some embodiments, as Figure 6 shown, the power supply assembly includes at least one power supply interface 407, which can be used for other power supply sources to directly output power to the temperature control storage device. The types of the power supply interface 407 include TYPE-C, AC female plug, pin-shaped interface, and USB interface.

[0150]

Variation Embodiment 1

[0151] In some modified embodiments, the temperature-controlled storage device further includes a carrying member, which may be a rope. The carrying member is detachably mounted on the temperature-controlled storage device of this application, allowing the temperature-controlled storage device to be kept off the ground. The soft outer casing 200 is provided with a carrying connection portion, which is connected to the carrying member.

[0152]

Modified Example 2

[0153] In some modified embodiments, an assemblable temperature-controlled storage device is provided, and it also includes an electric vehicle, such as... Figure 13 As shown, the temperature-controlled storage device described above in this application is located in an electric vehicle. The electric vehicle includes a detachable mobile power supply, which can supply power to both the electric vehicle and the temperature-controlled storage device of this application.

[0154] The electric vehicle and the temperature-controlled storage device of this application are simultaneously powered by the mobile power supply 405: at least one of the electric vehicle and the temperature-controlled storage device of this application is powered by a power cord connection; or at least one of the electric vehicle and the temperature-controlled storage device of this application is powered by direct contact through electrical connector docking; or at least one of the electric vehicle and the temperature-controlled storage device of this application is powered by direct contact through wireless charging.

[0155] The type of portable power bank 405 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.

[0156] 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.

[0157]

Modified Example 3

[0158] In some modified embodiments, such as 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.

[0159] In some alternative embodiments, the temperature-controlled storage device includes a detachable table that can be partially unfolded and supported by the storage module 100.

[0160] In some alternative embodiments, the temperature-controlled storage device 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.

[0161] In some alternative embodiments, the temperature-controlled storage device 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.

[0162] The temperature-controlled storage device of this application has multiple functions, including but not limited to cooling, heating, insulation, and air cooling. The device primarily utilizes energy storage technology for power supply. This energy-powered temperature-controlled storage device offers numerous advantages, including, but not limited to, its usability in areas without power, such as outdoor activities, picnics, and camping. In the event of a power outage or other emergency, it can continue operating, ensuring the freshness of food and beverages. Furthermore, it can store electrical energy when demand is low and release it when demand is high, thus achieving efficient energy utilization, among other advantages.

[0163] The temperature-controlled storage device provided in this application can be used in various fields, including but not limited to outdoor activities such as camping, picnics, and barbecues. It can provide refrigeration and insulation functions to keep food and beverages at a suitable temperature. During long journeys, 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.

[0164] The basic principles, main features, and advantages of this application have been described above. Those skilled in the art should understand that this application is not limited to the above embodiments. The embodiments and descriptions in the specification are merely the principles of this application. Various changes and modifications can be made to this application without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection claimed by this application is defined by the appended claims and their equivalents.

Claims

1. A temperature-controlled storage device comprising a storage module and a temperature- controlled module, the temperature-controlled module being adapted to produce cooling to regulate the temperature inside the storage module when powered, characterized in that, The soft outer package covers the outer periphery of the storage module, and at least part of the surface of the temperature control module is covered by the soft outer package.

2. The temperature-controlled storage apparatus of claim 1, wherein, The power supply assembly includes a battery mounting portion electrically connected to the temperature control module, and a mobile power supply is detachably mounted in the battery mounting portion to supply power to the temperature control module. The battery mounting portion is arranged outside the soft outer package, or the soft outer package partially covers the battery mounting portion, or the soft outer package covers the battery mounting portion in an openable and closable manner.

3. The temperature-controlled storage device of claim 2, wherein, At least part of the temperature control module protrudes from the radial peripheral surface of the storage module, and / or at least part of the battery mounting portion protrudes from the radial peripheral surface of the storage module.

4. The temperature-controlled storage apparatus of claim 3, wherein, At least part of the temperature control module protrudes from the radial peripheral surface of the storage module, at least part of the battery mounting portion protrudes from the radial peripheral surface of the storage module, and the parts of the temperature control module and the battery mounting portion protruding from the radial peripheral surface of the storage module are symmetrically located on two sides of the storage module.

5. The temperature-controlled storage device of any of claims 1-4, wherein, The storage module includes a storage main body and a storage cover body arranged in an openable and closable manner on the storage main body, the temperature control module includes a refrigeration base and a refrigeration assembly arranged in the refrigeration base, the refrigeration base is connected to the storage main body, and the temperature control storage device further includes a battery mounting portion electrically connected to the refrigeration assembly.

6. The temperature-controlled storage apparatus of claim 5, wherein, The bottom of the storage main body is stepped or one corner of the bottom of the storage main body is inwardly recessed, so that the bottom of the storage main body has an inwardly recessed space, the temperature control module is detachably arranged in the inwardly recessed space of the bottom of the storage main body, and the temperature control module does not protrude from the radial peripheral surface of the storage main body. The battery mounting portion is connected to the refrigeration base, and the battery mounting portion protrudes from the radial peripheral surface of the storage main body. Alternatively, the battery mounting portion is connected to the radial peripheral surface of the storage main body.

7. The temperature-controlled storage apparatus of claim 5, wherein, The bottom of the storage main body is stepped or one corner of the bottom of the storage main body is inwardly recessed, so that the bottom of the storage main body has an inwardly recessed space, the temperature control module is detachably arranged in the inwardly recessed space of the bottom of the storage main body, and at least one side of the temperature control module protrudes from the radial peripheral surface of the storage main body. The battery mounting portion is connected to the storage main body, and the battery mounting portion is located on a side away from the temperature control module or on the same side as the temperature control module. Alternatively, the battery mounting portion is connected to the storage cover body.

8. The temperature-controlled storage device of claim 7, wherein, The center of gravity of the temperature control module is away from the storage module, and the center of gravity G of the temperature control module is located within a range of 1 to 1.5 times a radius R of a central axis of the storage main body.

9. The temperature-controlled storage device of any of claims 1-4, wherein, The storage module includes a storage main body and a storage cover body arranged in an openable and closable manner on the storage main body, the soft outer package includes a soft package body, the soft package body covers the storage main body and covers at least part of the surface of the temperature control module, and the soft package body is assembled with the storage main body as a whole.

10. The temperature-controlled storage apparatus of claim 9, wherein, The soft outer package includes a soft package cover, the soft package cover covers the storage cover body, and the soft package cover is assembled with the storage cover body as a whole.

11. The temperature-controlled storage apparatus of claim 9, wherein, The temperature control storage device further comprises a battery mounting portion, and the soft outer package further comprises at least one ear package, the ear package partially covers the battery mounting portion, or the ear package covers the battery mounting portion in an openable and closable manner.

12. The temperature-controlled storage device of claim 10, wherein, The storage body and the storage cover define a sealed connection position, and the soft package body and the soft package cover define a containing connection position, the sealed connection position and the containing connection position are staggered in the height direction. Alternatively, the storage body and the storage cover define a sealed connection position, and the top of the soft package body extends beyond the sealed connection position in the upward direction, or the bottom of the soft package cover extends beyond the sealed connection position in the downward direction. Alternatively, the storage body and the storage cover define a sealed connection position, and the soft package body and the soft package cover define a containing connection position, the sealed connection position and the containing connection position are at the same horizontal position.

13. The temperature-controlled storage device of claim 5, wherein, A partition plate is arranged in the storage body, the partition plate separates the storage space of the storage body into a first area and a second area, an air outlet for outputting cold air is arranged in one of the first area and the second area, and the partition plate is rotatably or detachably arranged in the storage body.

14. The temperature-controlled storage device of claim 5, wherein, The refrigeration assembly comprises a compressor, a condenser pipe connected with the compressor, an evaporator pipe connected with the condenser pipe, and a heat dissipation fan arranged on one side of the condenser pipe, and at least one pair of ventilation windows are formed on the refrigeration base for heat dissipation of the refrigeration assembly. One pair of the ventilation windows is arranged on opposite sides of the refrigeration base. Alternatively, one pair of the ventilation windows is arranged on adjacent sides of the refrigeration base. The soft outer package covers the refrigeration base in a manner avoiding the ventilation windows.

15. The temperature-controlled storage apparatus of claim 14, wherein, The refrigeration base has a mounting surface, the battery mounting portion is arranged on the mounting surface, and the mounting surface is not coplanar with the two ventilation windows. One pair of the ventilation windows is arranged on opposite sides of the refrigeration base, and the mounting surface is perpendicular to the plane where the two ventilation windows are located.

16. The temperature-controlled storage device of claim 5, wherein, The temperature control module comprises a control circuit, the control circuit is arranged in the refrigeration base, the battery mounting portion is electrically connected with the control circuit, the control circuit is electrically connected with the refrigeration assembly, an outer side surface of the refrigeration base is provided with a control panel, the control panel is electrically connected with the control circuit, and the soft outer package covers the refrigeration base in a manner avoiding the control panel.

17. The temperature-controlled storage device of claim 5, wherein, The battery mounting portion has an opening for taking the portable power supply, and the opening is adapted for inserting the portable power supply into the battery mounting portion in a vertically downward direction.

18. The temperature-controlled storage device of any of claims 1-4, wherein, Further comprising a carrying assembly, the carrying assembly is detachably connected to the soft outer package and / or the storage module, for facilitating the user to carry the temperature control storage device, and the carrying assembly comprises a human body carrying part, and the human body carrying part is detachably connected to the soft outer package and / or the storage module.

19. The temperature-controlled storage device of any of claims 1-4, wherein, A detachable table board is included, and the table board can be partially supported and unfolded by the storage module. Alternatively, the temperature control storage device comprises a detachable bracket, the soft outer package is detachably mounted with the bracket, and the bracket is used for fixing the soft outer package on the vehicle.

20. The temperature control storage device of any one of claims 2-4, wherein, the power supply assembly comprises one or more mobile power sources, and the mobile power sources are detachably arranged in the battery mounting portion; the power supply assembly further comprises a photovoltaic power generation panel and a mobile power source connected to the battery mounting portion by an electric circuit, and the photovoltaic power generation panel is adapted to supply power to the mobile power source; Alternatively, the power supply assembly further comprises at least one power supply interface adapted to be electrically connected with an external power source, so as to supply power to the temperature control module or the mobile power source in the battery mounting portion by the external power source, and the power supply interface is of a TYPE-C, an AC female plug, a triangle-shaped interface or a USB interface.

21. The temperature-controlled storage device of claim 20, wherein, The temperature control module comprises a control circuit, and the battery mounting portion is electrically connected with the control circuit, wherein: when a compressor of the temperature control module is working, the control circuit controls the input of electric current to the compressor, and when the compressor of the temperature control module is not driven, the control circuit controls the input of electric current to the mobile power source until the mobile power source is fully charged.