TWM492065U - Wearable temperature regulating device - Google Patents

Wearable temperature regulating device Download PDF

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Publication number
TWM492065U
TWM492065U TW103204223U TW103204223U TWM492065U TW M492065 U TWM492065 U TW M492065U TW 103204223 U TW103204223 U TW 103204223U TW 103204223 U TW103204223 U TW 103204223U TW M492065 U TWM492065 U TW M492065U
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TW
Taiwan
Prior art keywords
temperature
wearable
fluid
conduit
sleeve
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Application number
TW103204223U
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Chinese (zh)
Inventor
Zhuo-Wu Zhong
zhuo-jun Zhong
qian-wei Li
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Zhuo-Wu Zhong
zhuo-jun Zhong
qian-wei Li
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Application filed by Zhuo-Wu Zhong, zhuo-jun Zhong, qian-wei Li filed Critical Zhuo-Wu Zhong
Priority to TW103204223U priority Critical patent/TWM492065U/en
Publication of TWM492065U publication Critical patent/TWM492065U/en

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Description

穿戴式溫度調節裝置Wearable thermostat

本創作係關於一種穿戴式溫度調節裝置。This creation is about a wearable temperature adjustment device.

習知用於衣物之穿戴式溫度調節裝置係利用電熱線設置於衣物內,以產生熱能,使穿戴者能覺得溫暖。然而,此種穿戴式溫度調節裝置僅能運用於冬天之加溫,不能使用於夏天之降溫。A wearable temperature regulating device for clothing is provided in a garment by a heating wire to generate heat energy so that the wearer can feel warm. However, such wearable thermostats can only be used for warming in winter and cannot be used for summer cooling.

本創作提供穿戴式溫度調節裝置。在一實施例中,本創作穿戴式溫度調節裝置包括:至少一致冷晶片、一流道座、至少一管路及一幫浦。該至少一致冷晶片具有一第一表面及一第二表面,該第二表面相對於該第一表面。該流道座具有至少一流道,該至少一流道內流通一流體,該第一表面接觸該至少一流道之該流體,以調節該流體之溫度。該至少一管路連接該流道座之該至少一流道,該至少一管路內流通該流體。該幫浦連接該至少一管路及該至少一流道,使該流體於該至少一管路及該至少一流道內流動。This creation provides a wearable thermostat. In one embodiment, the inventive wearable temperature regulating device comprises: at least a uniform cold wafer, a first-class pedestal, at least one conduit, and a pump. The at least uniform cold wafer has a first surface and a second surface, the second surface being opposite the first surface. The flow channel mount has at least a flow path through which a fluid flows, the first surface contacting the fluid of the at least one of the flow paths to regulate the temperature of the fluid. The at least one conduit connects the at least one of the flow path seats, and the at least one conduit circulates the fluid. The pump connects the at least one conduit and the at least one of the first runners to cause the fluid to flow in the at least one conduit and the at least one of the first runners.

本創作穿戴式溫度調節裝置可應用於衣物,利用致冷晶片之溫度變化,使管路內之該液體亦產生溫度變化,以調節管路之溫度,且管路設置於衣物,使穿戴衣物者感覺舒適。The creation wearable temperature adjusting device can be applied to clothes, and the temperature change of the cooling chip is used to change the temperature of the liquid in the pipeline to adjust the temperature of the pipeline, and the pipeline is disposed on the clothes to make the wearer Feel comfortable.

10‧‧‧穿戴式溫度調節裝置10‧‧‧Wearing temperature control device

11‧‧‧致冷晶片11‧‧‧Cold wafer

12‧‧‧流道座12‧‧‧Runner seat

13‧‧‧管路13‧‧‧ pipeline

14‧‧‧幫浦14‧‧‧

15‧‧‧溫度散逸器15‧‧‧temperature dissipator

16‧‧‧風扇16‧‧‧Fan

17‧‧‧輔助溫度調節器17‧‧‧Auxiliary temperature regulator

20‧‧‧衣物20‧‧‧ clothing

111‧‧‧第一表面111‧‧‧ first surface

112‧‧‧第二表面112‧‧‧ second surface

121‧‧‧流道121‧‧‧ flow path

122‧‧‧流道入口122‧‧‧ runner entrance

123‧‧‧流道出口123‧‧‧Flower exit

124‧‧‧顯露表面124‧‧‧ reveal surface

125‧‧‧O形環125‧‧‧O-ring

141‧‧‧幫浦入口141‧‧‧Gangpu entrance

142‧‧‧幫浦出口142‧‧‧Gongpu Export

131‧‧‧第一管路131‧‧‧First line

132‧‧‧第二管路132‧‧‧Second pipeline

151‧‧‧溫度散逸片151‧‧‧ Temperature Dissipation

171‧‧‧套管171‧‧‧ casing

172‧‧‧空氣循環器172‧‧‧Air Circulator

173‧‧‧氣孔173‧‧‧ stomata

圖1顯示本創作穿戴式溫度調節裝置之一實施例之立體分解示意圖;圖2顯示本創作穿戴式溫度調節裝置之一實施例之立體示意圖; 圖3顯示本創作穿戴式溫度調節裝置應用於衣服之一實施例之示意圖;及圖4顯示本創作穿戴式溫度調節裝置應用於衣服之另一實施例之示意圖。1 is a perspective exploded view showing an embodiment of the present wearable temperature adjusting device; FIG. 2 is a perspective view showing an embodiment of the present wearable temperature adjusting device; 3 is a schematic view showing an embodiment of the present wearable temperature adjusting device applied to clothes; and FIG. 4 is a view showing another embodiment of the present wearable temperature adjusting device applied to clothes.

圖1顯示本創作穿戴式溫度調節裝置之一實施例之立體分解示意圖。圖2顯示本創作穿戴式溫度調節裝置之一實施例之立體分解圖。圖3顯示本創作穿戴式溫度調節裝置應用於衣服之一實施例之示意圖。配合參考圖1至圖3,在一實施例中,本創作穿戴式溫度調節裝置10可應用於衣物,例如:衣服、背心、外套、褲子、座墊、棉被、床墊或床單等。本創作穿戴式溫度調節裝置10包括:至少一致冷晶片11、一流道座12、至少一管路13及一幫浦14。1 is a perspective exploded view showing an embodiment of the present wearable temperature adjusting device. 2 shows an exploded perspective view of one embodiment of the present wearable temperature adjustment device. Fig. 3 is a view showing an embodiment of the present invention in which the wearable temperature adjusting device is applied to clothes. 1 to 3, in an embodiment, the present wearable temperature adjustment device 10 can be applied to clothes such as clothes, vests, outerwear, pants, seat cushions, quilts, mattresses or bed sheets, and the like. The present wearable temperature regulating device 10 includes at least a uniform cold wafer 11, a first-class pedestal 12, at least one conduit 13 and a pump 14.

該致冷晶片11具有一第一表面111及一第二表面112,該第二表面112相對於該第一表面111。在一實施例中,該致冷晶片11可依據所加之訊號,使該致冷晶片11之該第一表面111及該第二表面112產生溫度變化,若該第一表面111為溫度上升之溫度變化,則相對地該第二表面112為溫度下降之溫度變化。在一實施例中,可將複數個致冷晶片11組成一致冷模組,且可為散熱片薄型,以降低尺寸及所佔空間。該致冷模組可具有一LED顯示器,以顯示相關的資訊,例如表面之溫度等。The chilled wafer 11 has a first surface 111 and a second surface 112 opposite to the first surface 111. In one embodiment, the refrigerating wafer 11 can cause a temperature change on the first surface 111 and the second surface 112 of the refrigerating wafer 11 according to the applied signal, if the first surface 111 is a temperature rising temperature. The change is relative to the second surface 112 being a temperature change of temperature drop. In one embodiment, the plurality of cooling fins 11 can be formed into a uniform cold module, and the heat sink can be thin to reduce the size and space occupied. The refrigeration module can have an LED display to display relevant information, such as the temperature of the surface.

該流道座12具有至少一流道121,該流道121佈設於該流道座12內,且該流道121內流通一流體(圖未示出),該致冷晶片11之該第一表面111接觸該流道121之該流體,以調節該流體之溫度。該流道座12另包括一流道入口122及一流道出口123,該流道入口122及該流道出口123連接該流道121,該流道座12另包括一顯露表面124,以顯露該流道121,該致冷晶片11之該第一表面111設置於該顯露表面124,使 得該致冷晶片11之該第一表面111可直接地接觸該流體,俾利快速地調節該流體之溫度。The runner 12 has at least a first runner 121, the runner 121 is disposed in the runner 12, and a fluid (not shown) flows through the runner 121. The first surface of the refrigerant wafer 11 111 contacts the fluid of the flow path 121 to adjust the temperature of the fluid. The runner 12 further includes a first-class inlet 122 and a first-class outlet 123. The runner inlet 122 and the runner outlet 123 are connected to the runner 121. The runner 12 further includes a revealing surface 124 to reveal the flow. The first surface 111 of the refrigerating wafer 11 is disposed on the exposed surface 124, so that The first surface 111 of the cooled wafer 11 can directly contact the fluid to quickly adjust the temperature of the fluid.

該流體可為水或其他易於改變溫度之液體、氣體等。為避免該流體溢出該流道121外,該流道座12另包括一O形環125,設置於該顯露表面124,且於該至少一流道121之周圍。The fluid can be water or other liquids, gases, etc. that are susceptible to temperature changes. In order to prevent the fluid from overflowing the flow path 121, the flow path base 12 further includes an O-ring 125 disposed on the exposed surface 124 and around the at least the main channel 121.

該至少一管路13連接該流道座12之該至少一流道121,該至少一管路13內流通該流體。該幫浦14連接該至少一管路13及該至少一流道121,使該流體於該至少一管路13及該至少一流道121內流動。在一實施例中,該幫浦14包括一幫浦入口141及一幫浦出口142,該至少一管路13包括一第一管路131及一第二管路132。該第一管路131連接該幫浦入口141及該流道出口123,以連接該流道121;該第二管路132連接該幫浦出口142及該流道入口122,以連接該流道121。圖1及圖2之該第一管路131係僅示意表示,實際應用上,該第一管路131可設置於一衣物20(參考圖3),其長度可視應用加長。該第一管路131及該第二管路132之材質可為塑膠、金屬、石墨烯或高導熱柔性石墨材等高導熱之材質,以增加導熱效率。The at least one conduit 13 is connected to the at least one runner 121 of the runner seat 12, and the at least one conduit 13 circulates the fluid. The pump 14 connects the at least one conduit 13 and the at least one runner 121 to cause the fluid to flow in the at least one conduit 13 and the at least one runner 121. In one embodiment, the pump 14 includes a pump inlet 141 and a pump outlet 142. The at least one conduit 13 includes a first conduit 131 and a second conduit 132. The first pipeline 131 is connected to the pump inlet 141 and the runner outlet 123 to connect the runner 121; the second conduit 132 is connected to the pump outlet 142 and the runner inlet 122 to connect the runner 121. The first pipe 131 of FIG. 1 and FIG. 2 is only schematically shown. In practical application, the first pipe 131 can be disposed on a garment 20 (refer to FIG. 3), and the length thereof can be lengthened according to the application. The material of the first pipeline 131 and the second pipeline 132 may be high thermal conductivity materials such as plastic, metal, graphene or high thermal conductivity flexible graphite material to increase thermal conductivity.

該流體由該流道入口122進入該流道121,利用該致冷晶片11之該第一表面111之溫度變化(例如溫度上升),直接地接觸該流道121內之該流體,使該流體之溫度亦變化(例如溫度上升),經加溫之該流體由該流道出口123進入該第一管路131,該第一管路131設置於該衣服20,經加溫之該流體流經該衣服20之該第一管路131,可使穿戴者感覺溫暖。若改變該致冷晶片11之外加訊號,使該第一表面111之溫度變化為溫度下降,則該流體之溫度下降,使穿戴該衣服者感覺涼爽。該流體經第一管路131及人體或外界之熱交換後,由該幫浦入口141輸入至該幫浦14,並由該幫浦出口142經該第二管路132至該流道入口122及該流道121,以再進行溫度調節。The fluid enters the flow channel 121 from the flow channel inlet 122, and the fluid in the flow channel 121 is directly contacted by the temperature change (for example, temperature rise) of the first surface 111 of the refrigerant wafer 11 to make the fluid The temperature also changes (for example, the temperature rises), and the heated fluid enters the first conduit 131 from the runner outlet 123. The first conduit 131 is disposed in the garment 20, and the fluid flows through the warming. The first line 131 of the garment 20 allows the wearer to feel warm. If the signal of the cold film 11 is changed and the temperature of the first surface 111 is changed to a temperature drop, the temperature of the fluid is lowered, so that the wearer feels cool. After the fluid is exchanged by the first conduit 131 and the human body or the outside world, the pump inlet 141 is input to the pump 14 and the pump outlet 142 passes through the second conduit 132 to the runner inlet 122. And the flow path 121 to perform temperature adjustment.

因此,本創作穿戴式溫度調節裝置10可應用於衣物,利用致冷晶片11之溫度變化,使管路內之該液體亦產生溫度變化,以調節管路之溫度,使穿戴者感覺舒適。本創作穿戴式溫度調節裝置10之致冷晶片11、流道座12、至少一管路13及該幫浦14可製作微型化,以利於隨身攜帶或設置於衣物。Therefore, the present wearable temperature adjusting device 10 can be applied to laundry, and the temperature of the liquid in the pipeline is also changed by the temperature change of the cooling wafer 11 to adjust the temperature of the pipeline to make the wearer feel comfortable. The cryogenic wafer 11, the flow channel holder 12, the at least one conduit 13 and the pump 14 of the present wearable thermostat 10 can be miniaturized to facilitate carrying or being placed on the garment.

本創作穿戴式溫度調節裝置10另包括一溫度散逸器15,設置於該至少一致冷晶片11之該第二表面112。溫度散逸器15包括複數個溫度散逸片151,以利於溫度散逸。本創作之該溫度散逸器不限於上述之型式,溫度散逸器之材質可為鋁、石墨烯或高導熱柔性石墨材等輕薄之材質。本創作穿戴式溫度調節裝置10另包括一風扇16,設置於該溫度散逸器15之一側,以提高溫度散逸之效率。The present wearable thermostat 10 further includes a temperature dissipator 15 disposed on the second surface 112 of the at least uniform cold wafer 11. The temperature dissipator 15 includes a plurality of temperature dissipation sheets 151 to facilitate temperature dissipation. The temperature dissipator of the present invention is not limited to the above-mentioned type, and the material of the temperature dissipator can be a light and thin material such as aluminum, graphene or high thermal conductive flexible graphite material. The present wearable thermostat 10 further includes a fan 16 disposed on one side of the temperature dissipator 15 to increase the efficiency of temperature dissipation.

本創作穿戴式溫度調節裝置10另包括一溫度控制器(圖未示出),連接該至少一致冷晶片11,以控制該至少一致冷晶片11之該第一表面111之溫度,例如升溫或降溫。本創作穿戴式溫度調節裝置10另包括一無線模組(圖未示出),連接該溫度控制器,以接收無線訊號控制該溫度控制器。例如,可利用智慧型手機透過應用程式及該無線模組,控制該至少一致冷晶片11之溫度;亦可利用智慧型手機依據環境溫度,自動調節控制該至少一致冷晶片11之溫度。The present wearable temperature adjustment device 10 further includes a temperature controller (not shown) that connects the at least one identical cold wafer 11 to control the temperature of the first surface 111 of the at least uniform cold wafer 11, such as heating or cooling. . The wearable temperature control device 10 further includes a wireless module (not shown) connected to the temperature controller to receive the wireless signal to control the temperature controller. For example, the temperature of the at least consistent cold wafer 11 can be controlled by the smart phone through the application and the wireless module; and the temperature of the at least consistent cold wafer 11 can be automatically adjusted according to the ambient temperature by using the smart phone.

本創作穿戴式溫度調節裝置10另包括一電源模組(圖未示出),連接至該至少一致冷晶片11、該幫浦14及該風扇16,以提供所需電源。在一實施例中,該電源模組可為電池模組,以利隨身攜帶。在一實施例中,該電源模組可為插電型式模組,以插用家用電源。本創作穿戴式溫度調節裝置10另包括一充電模組(圖未示出),連接該電源模組,以對該電源模組充電。該充電模組可利用汽機車之充電座進行充電。The present wearable thermostat 10 further includes a power module (not shown) coupled to the at least one identical cold wafer 11, the pump 14 and the fan 16 to provide the required power. In an embodiment, the power module can be a battery module for carrying. In an embodiment, the power module can be a plug-in type module for plugging in a household power source. The wearable temperature adjustment device 10 further includes a charging module (not shown) connected to the power module to charge the power module. The charging module can be charged by the charging seat of the steam locomotive.

圖4顯示本創作穿戴式溫度調節裝置應用於衣服之另一實施例之示意圖。本創作穿戴式溫度調節裝置10另包括一輔助溫度調節器17, 具有至少一套管171及一空氣循環器172,該空氣循環器172提供空氣至該套管171,該套管171包覆部分該第一管路131,在一實施例中,該套管171設置於穿戴者之胸部、肩部、背部等相對位置。該套管171內之空氣流經該第一管路131周圍,以調節該套管171內之空氣溫度,該套管171具有複數個氣孔173,經溫度調節之空氣由該等氣孔173排出,可使穿戴者之胸部、肩部、背部等相對位置進一步覺得舒適。4 is a schematic view showing another embodiment of the present wearable temperature adjustment device applied to clothes. The present wearable thermostat 10 further includes an auxiliary temperature regulator 17, Having at least one sleeve 171 and an air circulator 172, the air circulator 172 provides air to the sleeve 171, the sleeve 171 encasing a portion of the first conduit 131, which in one embodiment, the sleeve 171 It is placed at the relative position of the wearer's chest, shoulders, back, etc. The air in the sleeve 171 flows around the first conduit 131 to adjust the temperature of the air in the sleeve 171. The sleeve 171 has a plurality of air holes 173 through which the temperature-regulated air is discharged. The relative position of the wearer's chest, shoulders, back, etc. can be further comfortable.

惟上述實施例僅為說明本創作之原理及其功效,而非用以限制本創作。因此,習於此技術之人士對上述實施例進行修改及變化仍不脫本創作之精神。本創作之權利範圍應如後述之申請專利範圍所列。However, the above embodiments are merely illustrative of the principles of the present invention and its effects, and are not intended to limit the present invention. Therefore, those skilled in the art can make modifications and changes to the above embodiments without departing from the spirit of the present invention. The scope of the rights of this creation shall be as set forth in the scope of the patent application described later.

10‧‧‧穿戴式溫度調節裝置10‧‧‧Wearing temperature control device

11‧‧‧致冷晶片11‧‧‧Cold wafer

12‧‧‧流道座12‧‧‧Runner seat

13‧‧‧管路13‧‧‧ pipeline

14‧‧‧幫浦14‧‧‧

15‧‧‧溫度散逸器15‧‧‧temperature dissipator

16‧‧‧風扇16‧‧‧Fan

111‧‧‧第一表面111‧‧‧ first surface

112‧‧‧第二表面112‧‧‧ second surface

121‧‧‧流道121‧‧‧ flow path

122‧‧‧流道入口122‧‧‧ runner entrance

123‧‧‧流道出口123‧‧‧Flower exit

124‧‧‧顯露表面124‧‧‧ reveal surface

125‧‧‧O形環125‧‧‧O-ring

141‧‧‧幫浦入口141‧‧‧Gangpu entrance

142‧‧‧幫浦出口142‧‧‧Gongpu Export

131‧‧‧第一管路131‧‧‧First line

132‧‧‧第二管路132‧‧‧Second pipeline

151‧‧‧溫度散逸片151‧‧‧ Temperature Dissipation

Claims (10)

一種穿戴式溫度調節裝置,包括:至少一致冷晶片,具有一第一表面及一第二表面,該第二表面相對於該第一表面;一流道座,具有至少一流道,該至少一流道內流通一流體,該第一表面接觸該至少一流道之該流體,以調節該流體之溫度;至少一管路,連接該流道座之該至少一流道,該至少一管路內流通該流體;及一幫浦,連接該至少一管路及該至少一流道,使該流體於該至少一管路及該至少一流道內流動。 A wearable temperature regulating device comprising: at least a uniform cold wafer having a first surface and a second surface, the second surface being opposite to the first surface; the first-class land having at least a first-class track, the at least one-way channel Circulating a fluid, the first surface contacting the fluid of the at least one channel to adjust a temperature of the fluid; at least one conduit connecting the at least one channel of the runner seat, the fluid flowing in the at least one conduit; And a pump connecting the at least one pipeline and the at least one of the first runners to flow the fluid in the at least one conduit and the at least one of the first runners. 如請求項1之穿戴式溫度調節裝置,另包括一溫度散逸器,設置於該至少一致冷晶片之該第二表面。 The wearable temperature regulating device of claim 1, further comprising a temperature dissipator disposed on the second surface of the at least uniform cold wafer. 如請求項2之穿戴式溫度調節裝置,另包括一風扇,設置於該溫度散逸器之一側。 The wearable thermostat of claim 2, further comprising a fan disposed on one side of the temperature dissipator. 如請求項1之穿戴式溫度調節裝置,其中該流道座另包括一流道入口及一流道出口,該流道入口及該流道出口連接該至少一流道,該流道座另包括一顯露表面,以顯露該至少一流道,該至少一致冷晶片之該第一表面設置於該顯露表面。 The wearable temperature regulating device of claim 1, wherein the flow path seat further comprises a first-class road inlet and a first-class road outlet, the flow path inlet and the flow path outlet connecting the at least one main channel, the flow path seat further comprising a exposed surface In order to reveal the at least one of the first tracks, the first surface of the at least uniform cold wafer is disposed on the exposed surface. 如請求項4之穿戴式溫度調節裝置,另包括一O形環,設置於該顯露表面,且於該至少一流道之周圍。 The wearable temperature adjustment device of claim 4, further comprising an O-ring disposed on the exposed surface and surrounding the at least first pass. 如請求項1之穿戴式溫度調節裝置, 另包括一溫度控制器,連接該至少一致冷晶片,以控制該至少一致冷晶片之該第一表面之溫度。 The wearable thermostat of claim 1, A temperature controller is further coupled to the at least one identical cold wafer to control the temperature of the first surface of the at least uniform cold wafer. 如請求項6之穿戴式溫度調節裝置,另包括一無線模組,連接該溫度控制器,以接收無線訊號控制該溫度控制器。 The wearable temperature adjustment device of claim 6, further comprising a wireless module connected to the temperature controller for receiving the wireless signal to control the temperature controller. 如請求項1之穿戴式溫度調節裝置,另包括一電源模組,連接至該至少一致冷晶片及該幫浦,以提供所需電源。 The wearable thermostat of claim 1, further comprising a power module coupled to the at least one identical cold wafer and the pump to provide a desired power source. 如請求項8之穿戴式溫度調節裝置,另包括一充電模組,連接該電源模組。 The wearable temperature adjustment device of claim 8, further comprising a charging module connected to the power module. 如請求項1之穿戴式溫度調節裝置,另包括一輔助溫度調節器,具有至少一套管及一空氣循環器,該空氣循環器提供空氣至該至少一套管,該至少一套管包覆部分該至少一管路,該至少一套管內之空氣流經該至少一管路周圍,以調節該至少一套管內之空氣溫度,該至少一套管具有複數個氣孔,經溫度調節之空氣由該等氣孔排出。 The wearable temperature regulating device of claim 1, further comprising an auxiliary temperature regulator having at least one sleeve and an air circulator, the air circulator providing air to the at least one sleeve, the at least one sleeve covering Part of the at least one pipeline, the air in the at least one sleeve flows around the at least one conduit to adjust the temperature of the air in the at least one sleeve, the at least one sleeve has a plurality of pores, and the temperature is adjusted Air is discharged from the pores.
TW103204223U 2014-03-12 2014-03-12 Wearable temperature regulating device TWM492065U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI562770B (en) * 2015-09-04 2016-12-21 Hong-Ye Chou Body cooling device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI562770B (en) * 2015-09-04 2016-12-21 Hong-Ye Chou Body cooling device

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