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    • 1. 发明申请
    • VACUUM FORMING METHOD
    • 真空成型方法
    • US20130313762A1
    • 2013-11-28
    • US13982010
    • 2012-01-26
    • Shigeyuki Katou
    • Shigeyuki Katou
    • B29C51/06
    • G01R1/07B29C51/06G01R15/142G01R19/145H04Q9/00H04Q2209/60H04Q2209/84
    • Mainly, local wall thinning is prevented. The invention relates to a vacuum forming method for fabricating a resin-molded article. The vacuum forming method includes pressing a thermoplastic resin sheet 201 softened by heating into a vacuum forming mold 202 using a core mold 203 to stretch and deform thermoplastic resin sheet 201 at the same time, and bringing the thermoplastic resin sheet 201 into intimate contact with the vacuum forming mold 202 by vacuum suction to shape the thermoplastic resin sheet 201. In the process of closing the vacuum forming mold 202 and the core mold 203, at least part of the thermoplastic resin sheet 201 is preshaped using air pressure in such a way that the at least part of the thermoplastic resin sheet 201 is locally stretched and deformed at the same time and thus brought into intimate contact with the core mold 203. Then, the thermoplastic resin sheet 201 is final-shaped by closing the vacuum forming mold 202 and the core mold 203 and performing vacuum suction through the vacuum forming mold 202.
    • 主要是防止局部壁变薄。 本发明涉及一种用于制造树脂模塑制品的真空成型方法。 真空成型方法包括使用芯模203将通过加热软化的热塑性树脂片材201压入真空成型模具202中,同时使热塑性树脂片材201拉伸变形,使热塑性树脂片材201与 真空成型模具202通过真空抽吸来成形热塑性树脂片201.在关闭真空成型模具202和芯模203的过程中,热塑性树脂片材201的至少一部分使用空气压力预成型, 热塑性树脂片201的至少一部分同时被局部拉伸和变形,从而与芯模203紧密接触。然后,通过关闭真空成型模202和热塑性树脂片201的最终形状, 芯模203,并通过真空成型模具202进行真空抽吸。
    • 4. 发明申请
    • MICROCONTROLLER ARRANGEMENT
    • 单片机安排
    • WO2014006030A3
    • 2014-03-27
    • PCT/EP2013063908
    • 2013-07-02
    • MICROPELT GMBH
    • SCHMIDT MARTIN
    • G06F1/32
    • G06F1/3206
    • The invention relates to a microcontroller arrangement having at least one electrical device (11-13); a microcontroller (14) for controlling the operation of the electrical device (11-13); and at least one energy transducer (2, 3) which can be used to supply the microcontroller (14) with energy. The invention provides an electronic time recording module (17) which is separate from the microcontroller (14) and is designed to change the microcontroller (14) from an energy-saving state to an active state at predefinable intervals of time.
    • 本发明涉及一种包括至少一个电气装置(11-13)的微控制器装置; 微控制器(14),用于控制电气装置(11-13)的操作; 和至少一个能量转换器(2,3),通过该能量转换器(2,3),微控制器(14)可以被提供能量。 根据本发明,通过被设计为使得它带来在预定的时间间隔在活动状态作出的节能状态的微控制器(14)所述微控制器(14)单独的电子时间记录模块(17)提供的。
    • 6. 发明授权
    • Method for production of a thermoelectric apparatus
    • 热电装置的制造方法
    • US08709850B2
    • 2014-04-29
    • US13000576
    • 2009-06-23
    • Joachim NurnusFritz VolkertAxel Schubert
    • Joachim NurnusFritz VolkertAxel Schubert
    • H01L21/02
    • H01L35/34H01L27/16
    • The invention relates to a method for production of at least one thermoelectric apparatus with the steps of: preparation of a first wafer (1) which is formed from a thermoelectric material of a first conductivity type; preparation of a second wafer which is formed from a thermoelectric material of a second conductivity type; structuring of the first wafer (1) so that a group of first thermoelectric structures (7) is produced; structuring of the second wafer so that a group of second thermoelectric structures is produced; and linking of the first to the second wafer in such a manner that the first and the second thermoelectric structures are electrically connected together and thus form the thermoelectric apparatus. According to the invention, before the structuring of the first wafer (1), a first contact material (3) is deposited on the first wafer (1) and/or before the structuring of the second wafer, a second contact material is deposited onto the second wafer.
    • 本发明涉及一种生产至少一种热电装置的方法,其步骤为:制备由第一导电类型的热电材料形成的第一晶片(1); 制备由第二导电类型的热电材料形成的第二晶片; 构造第一晶片(1),从而产生一组第一热电结构(7); 构造第二晶片,从而产生一组第二热电结构; 以及第一和第二晶片的连接,使得第一和第二热电结构电连接在一起,从而形成热电装置。 根据本发明,在构造第一晶片(1)之前,第一接触材料(3)沉积在第一晶片(1)上和/或第二晶片的结构之前,将第二接触材料沉积到 第二个晶圆。
    • 7. 发明申请
    • METHOD FOR PRODUCTION OF A THERMOELECTRIC APPARATUS
    • 制造热电装置的方法
    • US20110111546A1
    • 2011-05-12
    • US13000576
    • 2009-06-23
    • Joachim NURNUSFritz VOLKERTAxel SCHUBERT
    • Joachim NURNUSFritz VOLKERTAxel SCHUBERT
    • H01L21/02
    • H01L35/34H01L27/16
    • The invention relates to a method for production of at least one thermoelectric apparatus with the steps of:preparation of a first wafer (1) which is formed from a thermoelectric material of a first conductivity type;preparation of a second wafer which is formed from a thermoelectric material of a second conductivity type;structuring of the first wafer (1) so that a group of first thermoelectric structures (7) is produced;structuring of the second wafer so that a group of second thermoelectric structures is produced;linking of the first to the second wafer in such a manner that the first and the second thermoelectric structures are electrically connected together and thus form the thermoelectric apparatus.According to the invention, before the structuring of the first wafer (1), a first contact material (3) is deposited on the first wafer (1) and/or before the structuring of the second wafer, a second contact material is deposited onto the second wafer.
    • 本发明涉及一种生产至少一种热电装置的方法,其步骤为:制备由第一导电类型的热电材料形成的第一晶片(1); 制备由第二导电类型的热电材料形成的第二晶片; 构造第一晶片(1),从而产生一组第一热电结构(7); 构造第二晶片,从而产生一组第二热电结构; 以第一和第二热电结构电连接在一起并由此形成热电装置的方式连接第一和第二晶片。 根据本发明,在构造第一晶片(1)之前,第一接触材料(3)沉积在第一晶片(1)上和/或第二晶片的结构之前,将第二接触材料沉积到 第二个晶圆。
    • 10. 发明申请
    • ÜBERWACHUNGSANORDNUNG UND VERFAHREN ZUR ÜBERWACHUNG EINER ELEKTRISCHEN LEITUNG
    • 监控系统及方法用于监控电气线路
    • WO2012101271A1
    • 2012-08-02
    • PCT/EP2012/051384
    • 2012-01-27
    • MICROPELT GMBHNURNUS, JoachimVOLKERT, FritzSCHMIDT, Martin
    • NURNUS, JoachimVOLKERT, FritzSCHMIDT, Martin
    • G01R15/14
    • G01R1/07B29C51/06G01R15/142G01R19/145H04Q9/00H04Q2209/60H04Q2209/84
    • Die Erfindung betrifft eine Überwachungsanordnung zur Überwachung einer elektrischen Leitung, mit - mindestens einem Thermogenerator und/oder einer Einrichtung zur induktiven Energiegewinnung; - Bestimmungsmitteln zum Bestimmen mindestens einer elektrischen Kenngröße eines in der elektrischen Leitung (4, 4', 4") fließenden elektrischen Stromes und/oder der Temperatur der elektrischen Leitung und/oder der Umgebung der elektrischen Leitung, wobei - zwischen den Bestimmungsmitteln und dem Thermogenerator oder der Einrichtung zur induktiven Energiegewinnung eine elektrische Verbindung besteht oder herstellbar ist, über die die Bestimmungsmittel mit von dem Thermogenerator erzeugter oder von der Einrichtung zur induktiven Energiegewinnung bereitgestellter elektrischer Energie betreibbar sind; und - Verbindungsmittel (3) zum Herstellen einer mechanischen Verbindung mit der elektrischen Leitung (4, 4', 4"). Die Erfindung betrifft auch ein Verfahren zur Überwachung einer elektrischen Leitung.
    • 本发明涉及一种监测装置用于监测的电线,包括: - 至少一个热发生器和/或用于感应能量的装置; - 确定装置,用于确定所述电气线路的至少一个电参数(4,4”,4“)中流动的电流和/或所述电线的温度和/或周围的电线路,其特征在于, - 所述判定装置和所述热能产生装置之间 或用于感应能量的装置,一个电连接或可以产生经它,与由所述热电发电机产生的确定装置,或由用于感应提供能量的电功率的装置被可操作,以及 - 连接装置(3)用于与所述电动机械连接 线(4,4”,4“)。 本发明还涉及用于监测的电线上的方法。