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    • 1. 发明授权
    • Cooling and heating apparatus using thermoelectric module
    • 使用热电模块的制冷和加热装置
    • US06574967B1
    • 2003-06-10
    • US10173618
    • 2002-06-19
    • Rae-Eun ParkJae-Seung LeeSu-Il Lee
    • Rae-Eun ParkJae-Seung LeeSu-Il Lee
    • F25B2102
    • H01L35/30F25B21/02F25B2321/023F25B2500/06F25B2500/09H01L2924/0002H01L2924/00
    • A cooling and heating apparatus using a thermoelectric module, in which the thermoelectric module, a heat emitting member and a heat conducting block are integrated into a single unit, to improve the performance and durability of the thermoelectric module. The cooling and heating apparatus includes a thermoelectric module. The heat emitting member is attached to a first surface of the thermoelectric module. The heat conducting block is attached to a second surface of the thermoelectric module. The heat absorbing member is attached to the heat conducting block. A cover integrates the thermoelectric module and the heat conducting block into the single unit by fixedly covering side surfaces of the thermoelectric module and the heat conducting block and a part of an inner surface of the heat emitting member.
    • 使用热电模块的制冷和加热装置,其中将热电模块,发热构件和导热块集成到单个单元中,以提高热电模块的性能和耐久性。 冷却和加热装置包括热电模块。 散热构件附接到热电模块的第一表面。 导热块连接到热电模块的第二表面。 吸热构件附接到导热块。 盖子通过固定地覆盖热电模块的侧表面和导热块以及发热元件的内表面的一部分,将热电模块和导热块集成到单个单元中。
    • 2. 发明授权
    • Storage box using a thermoelement and a cooling method for a storage box
    • 储藏箱使用热电偶和储存箱的冷却方法
    • US06412286B1
    • 2002-07-02
    • US09903516
    • 2001-07-13
    • Rae-Eun ParkJun-Hyoun KwonChang-Nyeun KimYoon-Young KimJae-Seung Lee
    • Rae-Eun ParkJun-Hyoun KwonChang-Nyeun KimYoon-Young KimJae-Seung Lee
    • F25B2102
    • F25D11/02F25B21/02F25B2321/023F25B2321/0251F25D17/062F25D25/025F25D2400/14F25D2400/36H01L35/00
    • A storage box with a thermoelement is disclosed. This storage box is operable in a frozen-storage mode operation, in addition to a cool-storage mode and a hot-storage mode. During a cool-storage mode operation of the storage box, the main compartment (14) is primarily cooled by a main thermoelement (20) to be kept at a low temperature. The temperature difference between the areas around the two junctions (61, 62) of the sub-thermoelement (60) of a sub-storage unit (50) installed within the main compartment (14) is sufficiently smaller than that between the areas around the two junctions of the main thermoelement irrespective of a consideration of an addition of heat produced from heat exchanging units provided at the two junctions of each thermoelement. The sub-thermoelement (60) is thus significantly improved in its cooling capacity. The temperature of the sub-compartment (52) of the sub-storage unit (50) is thus reduced lower than 0° C., and so the sub-compartment is kept in a frozen-storage mode. The sub-storage unit (50) is removable from the main compartment (14), thus allowing a user to use it independently from the storage box in, for example, a car.
    • 公开了一种带有热电偶的储物盒。 除了冷存储模式和热存储模式之外,该存储盒可以在冷冻存储模式操作中操作。 在存储箱的冷藏模式操作期间,主隔室(14)主要由主热电偶(20)冷却以保持在低温。 安装在主隔室(14)内的副储存单元(50)的亚热电元件(60)的两个接头(61,62)周围的区域之间的温差足够小于围绕 不考虑由设置在每个热电偶的两个接头处的热交换单元产生的热量的添加而考虑主热电偶的两个接合点。 因此,亚热电体(60)的冷却能力显着提高。 因此,副存储单元(50)的子室(52)的温度降低到低于0℃,因此子室保持在冷冻储存模式。 副存储单元(50)可从主隔间(14)移除,从而允许用户独立于例如汽车中的存储箱使用。
    • 8. 发明申请
    • Method of Manufacturing Organic Light Emitting Device and Organic Light Emitting Device Manufactured by Using The Method
    • 使用该方法制造有机发光器件和有机发光器件的方法
    • US20090321764A1
    • 2009-12-31
    • US12309614
    • 2007-07-25
    • Jung-Hyoung LeeJae-Seung LeeJung-Bum Kim
    • Jung-Hyoung LeeJae-Seung LeeJung-Bum Kim
    • H01L51/54H01L51/56
    • H01L51/56H01L27/3246H01L27/3283H01L51/5088H01L51/5092
    • Disclosed is a method of manufacturing an organic light emitting device, an organic light emitting device manufactured by using the method, and an electronic device including the organic light emitting device. The method includes (a) forming an insulating layer on a lower electrode, (b) etching the insulating layer to form an opening ranging from an upper surface of the insulating layer to the lower electrode so that an overhang structure having a lowermost circumference that is larger than an uppermost circumference is formed, (c) forming a conductive layer on an upper surface of the lower electrode in the opening and a surface of the insulating layer other than the overhang structure, (d) forming an organic material layer on the conductive layer formed on the upper surface of the lower electrode in the opening, and (e) forming an upper electrode on an upper surface of the conductive layer disposed on the upper surface of the insulating layer and an upper surface of the organic material layer.
    • 公开了一种制造有机发光器件的方法,使用该方法制造的有机发光器件和包括该有机发光器件的电子器件。 该方法包括:(a)在下电极上形成绝缘层,(b)蚀刻绝缘层以形成从绝缘层的上表面到下电极的开口,使得具有最低圆周的悬垂结构 (c)在开口中的下电极的上表面和除了突出结构之外的绝缘层的表面上形成导电层,(d)在导电上形成有机材料层 并且(e)在设置在绝缘层的上表面上的导电层的上表面和有机材料层的上表面上形成上电极。
    • 10. 发明授权
    • Defrosting apparatus for refrigerators and method for controlling the
same
    • 冰箱除霜装置及其控制方法
    • US5816054A
    • 1998-10-06
    • US676246
    • 1996-08-26
    • Han-Ju YooJae-Seung LeeKuk-Jeong SeoGi-Hyeong LeeHae-Jin ParkJong-Ki Kim
    • Han-Ju YooJae-Seung LeeKuk-Jeong SeoGi-Hyeong LeeHae-Jin ParkJong-Ki Kim
    • F25B5/04F25D11/02F25D17/06F25D21/00F25D21/02F25D21/06F25D21/08F25D29/00G05D23/19F25B47/02
    • F25D11/022F25B5/04F25D17/062F25D17/065F25D21/006F25D29/00F25B2600/23F25D21/06F25D2317/061F25D2317/0653F25D2317/0682F25D2400/04F25D2400/28F25D2400/30F25D2700/02F25D2700/12F25D2700/122F25D2700/14
    • A defrosting apparatus for a refrigerator and a method for controlling the defrosting apparatus, wherein the refrigerating compartment is cooled irrespective of the internal temperature of the freezing compartment when the internal temperature of the refrigerating compartment is higher than a predetermined temperature, so that the refrigerating compartment is maintained below the predetermined temperature. The defrosting operation is carried out in accordance with the drive times of the compressor and refrigerating compartment fan when the internal temperature of the refrigerating compartment is higher than the predetermined temperature even though the compressor and refrigerating compartment fan are continuously driven. Accordingly, it is possible to improve the cooling efficiency. For the rapid refrigerating operation, the point of time when the defrosting operation for the refrigerating compartment begins is accurately determined by calculating a temperature drop gradient on the basis of a variation in the internal temperature of the refrigerating compartment. For the rapid freezing operation, the point of time when the defrosting operation for the freezing compartment begins is accurately determined by calculating a temperature drop gradient on the basis of a variation in the internal temperature of the freezing compartment. In either case, accordingly, it is possible to efficiently achieve the defrosting operation.
    • PCT No.PCT / KR95 / 00149 Sec。 371日期:1996年8月26日 102(e)日期1996年8月26日PCT 1995年11月17日PCT PCT。 出版物WO96 / 16364 日期1996年5月30日一种冰箱用除霜装置及其除霜装置的控制方法,其特征在于,当冷藏室的内部温度高于规定温度时,与冷冻室的内部温度无关地冷却室被冷却, 冷藏室保持在预定温度以下。 即使压缩机和冷藏室风扇被连续地驱动,当冷藏室的内部温度高于预定温度时,根据压缩机和冷藏室风扇的驱动时间进行除霜操作。 因此,可以提高冷却效率。 对于快速制冷操作,通过基于冷藏室的内部温度的变化计算温度下降梯度来准确地确定开始冷藏室的除霜操作的时间点。 对于快速冷冻操作,通过基于冷冻室的内部温度的变化计算温度下降梯度来准确地确定开始冷冻室的除霜操作的时间点。 因此,在这两种情况下,能够有效地进行除霜运转。