Wearable device

By introducing body temperature regulation and air delivery components into wearable devices, combined with an inner cover partition structure, the problems of insufficient cooling and damage to electrical components in hot and humid environments by portable fans are solved, achieving effective body temperature regulation and protection of electrical components.

CN223854476UActive Publication Date: 2026-01-30LG ELECTRONICS INC
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Patent Information

Application Number
CN202390000526.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2022-08-26
Filing Date
2023-08-24
Publication Date
2026-01-30
Estimated Expiration
2033-08-24

AI Technical Summary

Technical Problem

Existing portable fans are ineffective at cooling in hot and humid environments and are easily damaged by moisture or dirt entering the electrical components.

Method used

A wearable device has been designed, comprising a main body, a body temperature regulation unit, an air supply unit, and an electrical unit. It absorbs or releases heat through the Peltier effect and cools or heats through the air supply unit. The inner body separates the space for airflow and electrical components, preventing moisture or dirt from entering.

Benefits of technology

It enables effective temperature regulation in hot and humid environments, prevents moisture or dirt from entering electrical components, and protects batteries and electrical components.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a wearable device for adjusting body temperature. The wearable device provided by the embodiment of the utility model comprises a main cover body; a body temperature adjusting part which is partially arranged outside the main cover body and absorbs heat; an air blowing unit for flowing air and cooling the body temperature adjusting unit; the electric part is used for supplying power to the body temperature adjusting part and the air supply part and controlling the body temperature adjusting part and the air supply part; and an inner cover body coupled to the inside of the main cover body and divided into a space in which the electrical unit is disposed and a space in which the air blowing unit is disposed.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a wearable device, more particularly, a wearable device for adjusting body temperature. BACKGROUND

[0002] As summer heat and humid hot weather is becoming more and more common, portable fans that can be easily carried are becoming necessities. Due to the development of secondary battery technology and the enhancement of the trend of personalized device use, the demand for portable fans is growing explosively. Most of the existing portable fans are hand-held and used by holding with one hand, but recently, neck strap type fans that are hung on the neck and used are emerging and attracting attention.

[0003] However, the portable fan lowers the body temperature by forced convection, and thus has a disadvantage that coolness cannot be felt in a very hot and humid outdoor environment. SUMMARY

[0004] PROBLEMS TO BE SOLVED BY THE UTILITY MODEL

[0005] The utility model to be solved is to provide a wearable device capable of directly absorbing heat of a human body or directly releasing heat to a human body.

[0006] Another subject of the utility model is to provide a wearable device that prevents moisture or dirt from flowing into an electrical component.

[0007] The subject of the utility model is not limited to the above-mentioned subject, and other subjects not mentioned can be clearly understood by those skilled in the art through the following description.

[0008] TECHNICAL SOLUTION TO THE PROBLEM

[0009] To achieve the above-mentioned subject, the wearable device of the utility model embodiment includes a main cover body, a body temperature adjusting part configured to absorb heat outside the main cover body, an air supply part that makes air flow and cools the body temperature adjusting part, an electrical part that supplies power to and controls the body temperature adjusting part and the air supply part, and an inner cover body combined inside the main cover body and divided into a space where the electrical part is disposed and a space where the air supply part is disposed.

[0010] To achieve the above-mentioned subject, the wearable device of the utility model embodiment includes a main cover body, a body temperature adjusting part configured to absorb heat outside the main cover body, an air supply part that makes air flow and cools the body temperature adjusting part, an electrical part that supplies power to and controls the body temperature adjusting part and the air supply part, and an inner cover body combined inside the main cover body and divided into a space where the electrical part is disposed and a space where the air supply part is disposed.

[0011] Details of other embodiments are contained in the detailed description and drawings.

[0012] Effect of the Invention

[0013] According to the wearable device of the present application, one or more of the following effects is provided.

[0014] First, it has the advantage of preventing moisture or dirt from flowing into the electrical components by separating the space in which air flows and the space in which the electrical components are disposed.

[0015] Second, it also has the advantage of preventing moisture or dirt from penetrating by surrounding the electrical components with a partition wall.

[0016] Third, it also has the advantage of completely blocking moisture from the battery that is easily affected by moisture by the rib and the partition wall.

[0017] The effects of the present application are not limited to the above-mentioned effects, and other effects not mentioned can be clearly understood by those skilled in the art through the recitation of the claims. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 is a perspective view of a wearable device according to an embodiment of the present application.

[0019] Figure 2 is a front view of a wearable device according to an embodiment of the present application.

[0020] Figure 3 is a cross-sectional view of a wearable device according to an embodiment of the present application.

[0021] Figure 4 is a use example view of a wearable device according to an embodiment of the present application.

[0022] Figure 5 is an exploded perspective view of a part of a main body of a wearable device according to an embodiment of the present application.

[0023] Figure 6 is a cross-sectional view of a main body of a wearable device according to an embodiment of the present application.

[0024] Figure 7 is a perspective view of an inner cover of a wearable device according to an embodiment of the present application.

[0025] Figure 8 is a perspective view of an outer cover of a wearable device according to an embodiment of the present application.

[0026] Figure 9 is a cross-sectional view of a main body of a wearable device according to an embodiment of the present application.

[0027] Figure 10 is a sectional view in the short axis direction of the main body of the wearable device of one embodiment of the present application. DETAILED DESCRIPTION

[0028] Reference Signs Figure 1 The advantages and features of the present application and the method for achieving them will become apparent from the following embodiments described in detail. However, the present application is not limited to the embodiments disclosed below, and can be implemented in various forms different from each other, and the description of the embodiments is provided only for the purpose of fully disclosing the present application and for the purpose of completely disclosing the scope of the present application to those skilled in the art, and the present application is defined only by the scope of the claims. Throughout the specification, the same reference numerals denote the same constituent elements.

[0029] Although the terms first, second, and so on are used to designate various constituent elements, the constituent elements are not limited by the terms. The terms are used only to distinguish one constituent element from another, and unless otherwise specified, a first constituent element can also be a second constituent element.

[0030] Throughout the specification, unless otherwise specified, each constituent element can be singular or plural.

[0031] Hereinafter, in the case where a constituent element is "provided on (or under) the upper (or lower) portion of another constituent element", it can mean not only that the constituent element is provided in contact with the top surface (or bottom surface) of the other constituent element, but also that another constituent element can be interposed between the other constituent element and the constituent element provided on (or under) the other constituent element.

[0032] In addition, in the case where it is described that a certain constituent element is "connected", "coupled", or "contacted" to another constituent element, it should be understood that the constituent elements can be directly connected or contacted to each other, but can also be "interposed" by another constituent element between the constituent elements, or the constituent elements can be "connected", "coupled", or "contacted" by using another constituent element.

[0033] Unless the context clearly indicates otherwise, as used herein, the singular forms "a", "an" and "the" comprise plural referents. In this application, the terms "comprise", "comprises" and "comprising" should not be interpreted as including only those things listed in the description, but should be interpreted as including those things listed in the description and not excluding other things. In this application, the terms "comprise", "comprises" and "comprising" should not be interpreted as including only those things listed in the description, but should be interpreted as including those things listed in the description and not excluding other things.

[0034] Throughout the specification, when referring to "A and / or B", unless otherwise specified, it means A, or B, or A and B, and when referring to "C to D", unless otherwise specified, it means C or more and D or less.

[0035] Hereinafter, the present utility model will be described with reference to the accompanying drawings for explaining the wearable device according to an embodiment of the present utility model.

[0036] Figure 1 is a perspective view of the wearable device according to an embodiment of the present utility model, Figure 2 is a front view of the wearable device according to an embodiment of the present utility model, Figure 3 is a sectional view of the wearable device according to an embodiment of the present utility model.

[0037] The wearable device according to an embodiment of the present utility model includes a main body 100 which contacts a human body and absorbs or releases heat, and a band 200 which is wearable on the human body.

[0038] The main body 100 functions to absorb or release heat by using the Peltier effect of electricity. The main body 100 contacts a part of the human body to cool or heat the human body.

[0039] The band 200 is detachably combined with the main body 100. The band 200 is formed in a U shape to be wearable on a part of the human body, particularly, the neck. The band 200 is formed with a pair of leg portions which extend longer in opposite directions to the portion where the main body 100 is disposed, at both ends of the portion where the main body 100 is installed.

[0040] The main body 100 includes a cover portion 110 which is formed in an oval bowl shape and has a space formed therein, a body temperature adjusting portion 120 which is disposed a part of the outside of the cover portion 110 and absorbs or releases heat, an electrical portion 140 which supplies power to the body temperature adjusting portion 120 and a blowing portion 130 and controls the body temperature adjusting portion 120 and the blowing portion 130, and the blowing portion 130 which cools or heats the body temperature adjusting portion 120 by flowing air.

[0041] The cover portion 110 forms an appearance. Holes are formed in the top surface of the cover portion 110 to pass air flowing into the blowing portion 130 and air discharged from the blowing portion 130. A hole for air inflow is formed in one side top surface in the long axis direction of the oval cover portion 110, and a hole for air discharge is formed in the other side top surface.

[0042] The lower portion of the cover portion 110 is inserted into the band 200 and combined with the band 200. The electrical portion 140, the blowing portion 130, and the body temperature adjusting portion 120 are accommodated in the inside of the cover portion 110.

[0043] The body temperature adjusting part 120 absorbs and releases heat by Peltier effect. The body temperature adjusting part 120 cools or heats the human body by contact with the human body. The body temperature adjusting part 120 is powered and controlled by the electric part 140. The body temperature adjusting part 120 is cooled or heated by the air supply part 130. The body temperature adjusting part 120 is disposed at the lower portion of the cover part 110. The body temperature adjusting part 120 is disposed to expose a part thereof to the outside from the bottom surface of the cover part 110. A part of the body temperature adjusting part 120 is disposed outside the cover part 110.

[0044] The air supply part 130 is disposed at the upper side of the body temperature adjusting part 120. The air supply part 130 absorbs heat of the body temperature adjusting part 120 or releases heat to the body temperature adjusting part 120 by contact with the body temperature adjusting part 120. The air supply part 130 makes air flow in and out of the cover part 110. The air supply part 130 is powered and controlled by the electric part 140. The air supply part 130 is disposed inside the cover part 110. The air supply part 130 makes air flow in through a hole formed in the cover part 110, and discharges heated or cooled air through a hole formed in the cover part 110.

[0045] The electric part 140 is composed of a connector, a battery, a button, an indicator, a temperature sensor, a circuit board, and elements, etc., is charged by power supplied from the outside, receives an instruction of a user, displays an operation state or a charging state, measures a temperature of the body temperature adjusting part 120 and a temperature of flowing air, and controls the body temperature adjusting part 120 and the air supply part 130. The electric part 140 is disposed inside the cover part 110.

[0046] Figure 4 is a use example view of the wearable device of one embodiment of the present application.

[0047] In the case where the wearable device of one embodiment of the present application is worn around the neck, the two leg portions of the band 200 are disposed at both sides of the user's neck, the main body 100 is disposed at the back of the neck, and the body temperature adjusting part 120 is in contact with the back of the neck. If the user inputs an operation start instruction to the electric part 140, the body temperature adjusting part 120 and the air supply part 130 are operated. When the body temperature adjusting part 120 absorbs heat of the user's neck, the user's neck in contact with the body temperature adjusting part 120 becomes cool, so that the user can feel cool. When the body temperature adjusting part 120 releases heat to the user's neck, the user's neck in contact with the body temperature adjusting part 120 becomes warm, so that the user can feel warm.

[0048] The air supply part 130 disperses heat generated in the body temperature adjusting part 120 and discharges to the outside, or releases heat of air to the body temperature adjusting part 120, by making outside air flow into the inside of the cover part 110.

[0049] According to an embodiment, a user can wrap the band 200 around an arm or a leg and use it, or can contact only the main body 100 after separating the band 200 with a specific part of a human body and use it.

[0050] Figure 5 is an exploded perspective view of a main body of a wearable device according to an embodiment of the present application, Figure 6 is a sectional view of a main body of a wearable device according to an embodiment of the present application.

[0051] The cover body 110 according to an embodiment of the present application includes a main cover body 111 forming a lower appearance, an inner cover body 112 fixing the electric part 140 and the air supply part 130, an outer cover body 113 covering an upper portion of the main cover body 111, and a cover 114 disposed on a top surface of the outer cover body 113 and forming an upper appearance.

[0052] The main cover body 111 is formed in an oval bowl shape with an opening in an upper portion thereof. The main cover body 111 is combined with the band 200. The main cover body 111 is inserted into the band 200 so as not to be exposed to the outside. The inner cover body 112 is combined with an inside of the main cover body 111, and the outer cover body 113 is combined with an upper side of the main cover body 111.

[0053] A portion of a bottom surface of the main cover body 111 is opened, and a thermoelectric element 121 of a body temperature adjustment part 120 to be described later is inserted therethrough. A plate 123 of the body temperature adjustment part 120 to be described later is combined with an outside of the bottom surface of the main cover body 111. An input button 144 and an indicator lamp 145 of the electric part 140 to be described later are disposed on a side periphery in a long axis direction of the main cover body 111 so as to protrude to the outside. An air supply fan 131 and a radiator 132 of the air supply part 130 to be described later are disposed on an upper side of the bottom surface of the main cover body 111.

[0054] The inner cover body 112 is combined with an inside of the main cover body 111. A battery 141 and a main substrate 142 of the electric part 140 to be described later are combined with an upper side of the inner cover body 112, and an auxiliary substrate 143 of the electric part 140 to be described later, the air supply fan 131, and the radiator 132 of the air supply part 130 are combined with a lower side of the inner cover body 112.

[0055] The inner cover body 112 separates the electric part 140 and the air supply part 130. The inner cover body 112 divides a space in which the electric part 140 is disposed and a space in which the air supply part 130 is disposed. The inner cover body 112 divides a space in which air flows through the air supply part 130 and a space in which the electric part 140 is disposed. The inner cover body 112 forms a flow path of air flowing under the action of the air supply part 130. The inner cover body 112 prevents air flowing through the air supply part 130 from flowing to the electric part 140. The inner cover body 112 prevents moisture or foreign matter flowing to the air supply part 130 from flowing to the electric part 140.

[0056] The inner cover 112 is formed with a partition wall protruding upward, thereby dividing a space in which air is flowed by the air supply part 130 and a space in which the electrical part 140 is disposed in the horizontal direction. The inner cover 112 is formed with a double-layer partition wall protruding upward, an outer partition wall surrounding a periphery of the main substrate 142 described later, and an inner partition wall surrounding a periphery of the battery 141 described later. The partition wall of the inner cover 112 is combined with the outer cover 113. The partition wall of the inner cover 112 is fusion-bonded or adhesively bonded to the outer cover 113 by a light-curing adhesive.

[0057] The outer cover 113 is formed in an elliptical curved surface. The outer cover 113 is combined with the upper end of the main cover 111 and forms a top surface of the main cover 111. The outer cover 113 is formed with holes through which air flowed into the air supply part 130 and air discharged from the air supply part 130 pass. The outer cover 113 is formed with a hole through which air is flowed in on one side in the long axis direction, and a hole through which air is discharged on the other side. The outer cover 113 is combined with the main cover 111 and the inner cover 112. The outer cover 113 is fusion-bonded or adhesively bonded to the main cover 111 and the inner cover 112 by a light-curing adhesive.

[0058] The outer cover 113 is combined with the periphery of the main cover 111 and the partition wall of the inner cover 112 on the bottom surface. The outer cover 113 is formed of a light-transmissive material so as to be fusion-bonded or adhesively bonded to the main cover 111 and the inner cover 112 by a light-curing adhesive.

[0059] The cover 114 is detachably combined with the outer cover 113 so as to cover the outer cover 113. The cover 114 is formed in an elliptical curved surface and is formed in substantially the same shape and size as the outer cover 113. The cover 114 completely covers the outer cover 113 and forms an upper portion of an outer appearance. The bottom surface of the cover 114 is in contact with the top surface of the outer cover 113. The edge of the cover 114 covers the edge of the outer cover 113, but is not in contact with the edge of the main cover 111.

[0060] The cover 114 is formed with holes matching the holes formed in the outer cover 113 and through which air flowed into the air supply part 130 and air discharged from the air supply part 130 pass. The cover 114 is formed with a hole through which air is flowed in on one side in the long axis direction, and a hole through which air is discharged on the other side.

[0061] The cover 114 is formed of a light-blocking material so as to protect the electrical part 140, the air supply part 130, and the like covered by the outer cover 113 formed of a light-transmissive material.

[0062] The cover 114 can be manufactured in various textures or colors, so as to be replaced and used according to the preference of a user.

[0063] The body temperature adjusting part 120 of one embodiment of the present application includes: a thermoelectric element 121 that functions as a heat sink and a heat source by Peltier effect; and a plate 123 that is in contact with a human body and cools or heats the human body.

[0064] The thermoelectric element 121 converts electric energy into heat energy. The thermoelectric element 121 is provided at the lower portion of the main housing 111 and functions as a heat sink and a heat source. The thermoelectric element 121 is formed in a rectangular parallelepiped shape, and the top surface thereof is in close contact with a heat sink 132 of a blowoff part 130 described later, and the bottom surface thereof is in close contact with the plate 123.

[0065] The bottom surface of the thermoelectric element 121 in contact with the plate 123 absorbs heat, and the top surface thereof in contact with the heat sink 132 releases heat, or the bottom surface of the thermoelectric element 121 in contact with the plate 123 releases heat, and the top surface thereof in contact with the heat sink 132 absorbs heat. The thermoelectric element 121 passes through an opening portion formed in the bottom surface of the main housing 111, and the lower end thereof protrudes from the bottom surface of the main housing 111.

[0066] The plate 123 is formed in an elliptical shape. The plate 123 is composed of a flat surface portion and a curved surface portion, and at least a part of the flat surface portion is provided in close contact with the bottom surface of the thermoelectric element 121. The plate 123 is in contact with a human body and absorbs or releases heat from or to the human body. The plate 123 is provided at the center of the bottom surface of the main housing 111. The plate 123 is attached to the outer side of the bottom surface of the main housing 111.

[0067] The blowoff part 130 of one embodiment of the present application includes: a blowoff fan 131 that causes air to flow; and the heat sink 132 that absorbs or releases heat from or to the thermoelectric element 121.

[0068] The blowoff fan 131 is a centrifugal fan that causes air to flow in the axial direction and discharge the air in the radial direction. The blowoff fan 131 uses the hole of the cover 114 and the hole of the outer housing 113 to cause air to flow and flow to the heat sink 132, and uses the hole of the outer housing 113 and the hole of the cover 114 to discharge air heated or cooled in the heat sink 132. The blowoff fan 131 is provided at the side of the heat sink 132. The blowoff fan 131 is attached to the lower side of the inner housing 112. The blowoff fan 131 is provided side by side with the heat sink 132 and is provided obliquely with respect to the heat sink 132.

[0069] The heat sink 132 is provided in the direction in which the blowoff fan 131 discharges air. The heat sink 132 transfers heat between air flowing through the blowoff fan 131 and the thermoelectric element 121. The heat sink 132 absorbs heat of the thermoelectric element 121 and emits it into air, or releases heat in air to the thermoelectric element 121. The heat sink 132 is provided between the battery 141 and the thermoelectric element 121. The heat sink 132 is provided in close contact with the top surface of the thermoelectric element 121. The heat sink 132 is attached to the lower side of the inner housing 112.

[0070] The electrical part 140 of one embodiment of the present application includes a battery 141 that stores and supplies power, a main substrate 142 on which a controller and other components are mounted, an auxiliary substrate 143 on which components that process an instruction signal and a state information signal are mounted, an input button 144 that receives an instruction from a user, and an indicator light 145 that displays an operation state.

[0071] The battery 141 is a secondary battery that stores power supplied from the outside. The battery 141 supplies power to the thermoelectric element 121 and the blower fan 131. The battery 141 is attached to the upper side of the inner cover 112. The battery 141 is disposed on the upper side of the blower part 130.

[0072] The controller, a capacitor, and other components are mounted on the main substrate 142, so that the battery 141, the thermoelectric element 121, and the blower fan 131 are controlled. The main substrate 142 is disposed on the periphery of the battery 141 and on the upper side of the blower part 130. The main substrate 142 is attached to the upper side of the inner cover 112.

[0073] The auxiliary substrate 143 processes an instruction signal input with the input button 144 and transmits the instruction signal to the main substrate 143, and processes a state information signal transmitted from the main substrate 143 and applies the state information signal to the indicator light 145. The auxiliary substrate 143 is electrically connected to the main substrate 142, the input button 144, and the indicator light 145. The auxiliary substrate 143 is disposed in the inside of the main cover 111. The auxiliary substrate 143 is attached to the lower side of the inner cover 112 and is disposed on the opposite side of the blower fan 131. The auxiliary substrate 143 is spaced apart from the thermoelectric element 121 and is disposed side by side.

[0074] The input button 144 receives an instruction to operate the blower fan 131 and the thermoelectric element 121. The input button 144 is protrusively disposed on one side in the long axis direction of the periphery of the main cover 111. The input button 144 can be provided in pairs and disposed apart from each other.

[0075] The indicator light 145 displays the charging state of the battery 141 and the operation state of the thermoelectric element 121 and the blower fan 131 using light. The indicator light 145 is protrusively disposed on one side in the long axis direction of the periphery of the main cover 111. The indicator light 145 is disposed adjacent to the portion of the periphery of the main cover 111 in which the input button 144 is disposed. The indicator light 145 can be provided in pairs and disposed between the pair of input buttons 144.

[0076] The electrical part 140 can further include a power terminal (not illustrated) to which a cable is connected and that receives power from the outside. The power terminal is a USB (Universal Serial Bus) and can transmit and receive data with an external device through the cable.

[0077] Figure 7is a perspective view of an inner cover body of a wearable device according to an embodiment of the present utility model, Figure 8 is a perspective view of an outer cover body of a wearable device according to an embodiment of the present utility model, Figure 9 is a sectional view of a main body of a wearable device according to an embodiment of the present utility model in a long axis direction, Figure 10 is a sectional view of a main body of a wearable device according to an embodiment of the present utility model in a short axis direction.

[0078] Referring to Figure 7 , the inner cover body 112 includes: a rectangular plate-shaped inner cover body main body 1121; an inflow guide 1126 configured on one side of the inner cover body main body 1121 and guiding air flowing in from the outside through the air supply part 130; an outflow guide 1127 configured on the other side of the inner cover body main body 1121 and guiding the inflowing air to the outside; a main substrate partition wall 1123 formed protruding upward between the inner cover body main body 1121 and the inflow guide 1126 and between the inner cover body main body 1121 and the outflow guide 1127; and a battery partition wall 1122 formed protruding upward in the inner cover body main body 1121.

[0079] The inner cover body main body 1121 is formed in a rectangular plate shape. The inflow guide 1126 is formed on one side in the length direction of the inner cover body main body 1121 and the outflow guide 1127 is formed on the other side in the length direction. The inner cover body main body 1121 is formed with double-layered partition walls (the main substrate partition wall 1123 and the battery partition wall 1122) protruding upward. The battery 141 and the main substrate 142 are configured on the upper side of the inner cover body main body 1121, and the heat sink 132 is configured on the lower side of the inner cover body main body 1121.

[0080] The inflow guide 1126 is formed in a semicircular plate shape. The inflow guide 1126 is formed in a fault with the inner cover body main body 1121 and is configured to be lower than the inner cover body main body 1121. The air supply fan 131 is configured on the lower side of the inflow guide 1126.

[0081] The outflow guide 1127 is formed in a semicircular plate shape. The outflow guide 1127 is formed in a fault with the inner cover body main body 1121 and is configured to be lower than the inner cover body main body 1121. The auxiliary substrate 143, the input button 144, and the indicator light 145 are configured on the lower side of the outflow guide 1127.

[0082] The air supply part 130 is configured on the lower side of the inflow guide 1126 and the inner cover body main body 1121, and the electrical part 140 is configured on the upper side of the inner cover body main body 1121 and the lower side of the outflow guide 1127. Thus, the space in which the air supply part 130 and the electrical part 140 are configured is separated.

[0083] The air supply fan 131 is disposed on the lower side of the inflow guide 1126, and the heat sink 132 is disposed on the lower side of the inner cover body main part 1121. The main substrate 142 and the battery 141 are disposed on the upper side of the inner cover body main part 1121, and the auxiliary substrate 143, the input button 144, and the indicator lamp 145 are disposed on the lower side of the outflow guide 1127.

[0084] The main substrate partition wall 1123 and the battery partition wall 1122 are disposed in multiple layers. The battery partition wall 1122 is disposed on the inner side of the main substrate partition wall 1123. The main substrate partition wall 1123 and the battery partition wall 1122 surround the periphery of a part of the electric part 140. The main substrate partition wall 1123 is formed to protrude upward to surround the periphery of the main substrate 142, and the battery partition wall 1122 is formed to protrude upward to surround the periphery of the battery 141.

[0085] The main substrate partition wall 1123 and the battery partition wall 1122 divide, in the horizontal direction, a space in which air flows through the air supply part 130 and a space in which the electric part 140 is disposed. The upper ends of the main substrate partition wall 1123 and the battery partition wall 1122 are combined with the cover 113. The upper ends of the main substrate partition wall 1123 and the battery partition wall 1122 are fused to the cover 113 or bonded using a photocurable adhesive.

[0086] Referring to Figure 8 , the cover 113 includes a cover body 1131 formed as an elliptical curved surface, a main cover combination rib 1134 protruding downward at the periphery of the cover body 1131 and combined with the main cover 111, a plurality of cover inflow holes 1136 for inflow of air flowing through the air supply part 130, a plurality of cover outflow holes 1137 for outflow of air flowing through the air supply part 130, a partition wall combination rib 1132 protruding downward at the middle of the cover body 1131 and combined with the battery partition wall 1122, and a battery fixing rib 1133 protruding toward the lower side of the cover body 1131 and disposed on the inner side of the partition wall combination rib 1132 and in contact with the upper side of the battery 141.

[0087] The main cover combination rib 1134 is combined on the inner side of the upper end of the main cover 111. The main cover combination rib 1134 is formed at a part of the periphery of the cover body 1131.

[0088] The partition wall combination rib 1132 is combined on the outer side of the upper end of the battery partition wall 1122. The partition wall combination rib 1132, together with the battery partition wall 1122, prevents moisture or dirt from penetrating into the battery 141.

[0089] The battery fixing rib 1133 is disposed on the inner side of the battery partition wall 1122. The battery fixing rib 1133 presses and fixes the battery 141 from the upper side to the lower side.

[0090] The plurality of cover inflow holes 1136 are formed on one side in the long axis direction of the outer cover body 1131, and the plurality of cover outflow holes 1137 are formed on the other side in the long axis direction of the outer cover body 1131.

[0091] The plurality of cover inflow holes 1136 are disposed on the upper side of the inflow guide 1126 and are not disposed on the upper side of the inner cover body 1121. The outer cover body 1131 can form a circle having the same diameter as the cover inflow hole 1136 and being closed on the upper side of the inner cover body 1121. The plurality of cover inflow holes 1136 are not disposed in the portion of the outer cover body 1131 that is combined with the upper end of the main substrate partition wall 1123.

[0092] The plurality of cover outflow holes 1137 are disposed on the upper side of the outflow guide 1127 and are not disposed on the upper side of the inner cover body 1121. The outer cover body 1131 can form a circle having the same diameter as the cover outflow hole 1137 and being closed on the upper side of the inner cover body 1121. The plurality of cover outflow holes 1137 are not disposed in the portion of the outer cover body 1131 that is combined with the upper end of the main substrate partition wall 1123.

[0093] The above, although the preferred embodiments of the present application are illustrated and described, the present application is not limited to the above specific embodiments, within the scope of the principles of the present application required by the claims, the person skilled in the art of the present application can make various modifications, and these modifications should not be understood separately from the technical thought or prospect of the present application.

Claims

1. A wearable device, wherein, Comprise: a main cover body; a body temperature adjusting part, a part of which is disposed outside the main cover body and absorbs heat; an air supply part, which makes air flow and cools the body temperature adjusting part; an electrical part, which supplies power to and controls the body temperature adjusting part and the air supply part; and an inner cover body, which is combined inside the main cover body and is divided into a space in which the electrical part is disposed and a space in which the air supply part is disposed.

2. The wearable device of claim 1, wherein the inner cover body comprises: an inner cover body main part; and an inflow guide, which is disposed at one side of the inner cover body main part and guides air flowing in from the outside through the air supply part, the air supply part is disposed at a lower side of the inflow guide and the inner cover body main part, a part of the electrical part is disposed at an upper side of the inner cover body main part.

3. The wearable device of claim 2, wherein the inflow guide is formed as a fault with the inner cover body main part and is disposed lower than the inner cover body main part.

4. The wearable device of claim 2, wherein the air supply part comprises: an air supply fan, which makes air flow; and a heat sink, which transfers heat between air flowing through the air supply fan and the body temperature adjusting part; the air supply fan is disposed at a lower side of the inflow guide, the heat sink is disposed at a lower side of the inner cover body main part.

5. The wearable device of claim 2, wherein the inner cover body further comprises an outflow guide, which is disposed at the other side of the inner cover body main part and guides the inflowing air to the outside, a remaining part of the electrical part is disposed at a lower side of the outflow guide.

6. The wearable device of claim 5, wherein the outflow guide is formed as a fault with the inner cover body main part and is disposed lower than the inner cover body main part.

7. The wearable device of claim 5, wherein the inner cover body further comprises a main substrate partition wall, which is formed to protrude upward between the inner cover body main part and the inflow guide and between the inner cover body main part and the outflow guide.

8. The wearable device of claim 7, wherein the inner cover body further comprises a battery partition wall, which is formed to protrude upward from the inner cover body main part, the battery partition wall is disposed at an inner side of the main substrate partition wall.

9. The wearable device of claim 1, wherein a double-layer partition wall, which protrudes upward, is formed in the inner cover body.

10. The wearable device of claim 9, further comprising: an outer cover body, which covers an upper part of the main cover body, a peripheral edge of the outer cover body is combined with the main cover body, an upper end of the double-layer partition wall is combined with the outer cover body.

11. The wearable device of claim 9, wherein a peripheral edge of a part of the electrical part is surrounded by the double-layer partition wall.

12. The wearable device of claim 1, wherein the electrical part comprises a main substrate, in which a plurality of elements including a controller are mounted and which controls the body temperature adjusting part and the air supply part, the inner cover body comprises a main substrate partition wall, which is formed to protrude upward to surround a peripheral edge of the main substrate. ​ 13. The wearable device according to claim 12, wherein an outer cover covering an upper portion of the main cover, a peripheral edge of the outer cover is combined with the main cover, an upper end of the main substrate partition wall is combined with the outer cover.

14. The wearable device according to claim 13, wherein the outer cover includes: a plurality of cover inflow holes through which air flows in under the action of the air blowing portion; and a plurality of cover outflow holes through which air flows out under the action of the air blowing portion; none of the plurality of cover inflow holes is formed in a portion of the outer cover combined with the upper end of the main substrate partition wall, none of the plurality of cover outflow holes is formed in a portion of the outer cover combined with the upper end of the main substrate partition wall.

15. The wearable device according to claim 13, wherein the outer cover includes: a plurality of cover inflow holes through which air flows in under the action of the air blowing portion; and a plurality of cover outflow holes through which air flows out under the action of the air blowing portion; the inner cover includes: an inner cover main body; an inflow guide configured to one side of the inner cover main body and guide air flowing in from the outside through the air blowing portion; and an outflow guide configured to the other side of the inner cover main body and guide the flowing-in air to the outside; the plurality of cover inflow holes are configured to an upper side of the inflow guide, the plurality of cover outflow holes are configured to an upper side of the outflow guide.

16. The wearable device according to claim 1, wherein the electric portion includes a battery that supplies power to the body temperature adjusting portion and the air blowing portion, the inner cover includes a battery partition wall protruding upward to surround a peripheral edge of the battery.

17. The wearable device according to claim 16, wherein an outer cover covering an upper portion of the main cover, a peripheral edge of the outer cover is combined with the main cover, an upper end of the battery partition wall is combined with the outer cover.

18. The wearable device according to claim 17, wherein the outer cover includes a partition wall combination rib protruding downward and combined with the battery partition wall.

19. A wearable device, wherein, includes: a main cover; a body temperature adjusting portion, a portion of which is configured to the outside of the main cover and absorbs heat; an air blowing portion that makes air flow and cools the body temperature adjusting portion; an electric portion that supplies power to and controls the body temperature adjusting portion and the air blowing portion; and an inner cover combined inside the main cover and divided into a space in which air flows through the air blowing portion and a space in which the electric portion is configured.

20. The wearable device according to claim 19, wherein a partition wall dividing the space in which air flows through the air blowing portion and the space in which the electric portion is configured in a horizontal direction is formed in the inner cover.