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    • 1. 发明申请
    • Temperature Measuring Sensor and Method of Producing Same
    • 温度传感器及其制作方法
    • US20110134961A1
    • 2011-06-09
    • US12374640
    • 2007-06-29
    • Georg BernitzHeinrich Zitzmann
    • Georg BernitzHeinrich Zitzmann
    • G01K7/00B05D5/12H01R43/00
    • G01K7/186H01C17/065H01C17/281H01L2924/0002Y10T29/49117H01L2924/00
    • A method of producing a temperature measuring sensor including an insulating substrate having a top surface and a bottom surface, the top surface including a first area and a second area, and a first contact and a second contact being formed in the first area, the above contacts having a structured measuring film located therebetween: creating a conductive connection between the first contact on the top surface of the insulating substrate and the bottom surface of the insulating substrate, and a first conductive layer as a first terminal area of the temperature measuring sensor on the bottom surface such that the first conductive layer is electrically connected to the conductive connection, as well as a second conductive layer on the second area of the top surface as a second terminal area of the temperature measuring sensor such that the second conductive layer is in contact with the second contact.
    • 一种制造温度测量传感器的方法,所述温度测量传感器包括具有顶表面和底表面的绝缘基底,所述顶表面包括第一区域和第二区域,以及在所述第一区域中形成第一触点和第二触点,上述 具有位于其间的结构化测量膜的触点之间:在绝缘基板的顶表面上的第一触点和绝缘基板的底表面之间产生导电连接,以及作为温度测量传感器的第一端区的第一导电层 所述底表面使得所述第一导电层电连接到所述导电连接,以及作为所述温度测量传感器的第二端区的所述顶表面的第二区域上的第二导电层,使得所述第二导电层处于 与第二个联系人联系。
    • 4. 发明授权
    • Method of producing components on a metal film basis
    • 基于金属膜制造组件的方法
    • US5900135A
    • 1999-05-04
    • US750298
    • 1996-12-05
    • Heinrich Zitzmann
    • Heinrich Zitzmann
    • G01K7/18H01C3/10H01C7/02H01C17/00C25F1/00
    • H01C3/10G01K7/183H01C17/00Y10T29/4981
    • A method of producing components, which include a metal film on a carrier, comprises the following steps: applying a metal film to a first carrier; structuring the metal film; reducing an adherence between the first carrier and the metal film by electrically conductive contacting of the metal film; immersing the first carrier with the metal film in an aqueous electrolyte solution; immersing an electrode in the aqueous electrolyte solution; and applying a voltage between the metal film and the electrode; applying a second carrier to the metal film; and removing the second carrier with the metal film from the first carrier.
    • PCT No.PCT / EP96 / 01396 Sec。 371日期:1996年12月5日 102(e)日期1996年12月5日PCT 1996年3月29日PCT公布。 公开号WO96 / 31887 日期:1996年10月10日制造包含载体上的金属膜的成分的方法包括以下步骤:将金属膜施加到第一载体上; 构造金属膜; 通过金属膜的导电接触来减少第一载体和金属膜之间的粘附; 将第一载体与金属膜浸渍在电解质水溶液中; 将电极浸渍在电解质水溶液中; 以及在所述金属膜和所述电极之间施加电压; 将第二载体施加到所述金属膜上; 以及从所述第一载体用所述金​​属膜除去所述第二载体。
    • 6. 发明授权
    • High-temperature detector and method of producing the same
    • 高温检测仪及其制作方法
    • US06686828B2
    • 2004-02-03
    • US10060573
    • 2002-01-30
    • Georg BernitzHeinrich Zitzmann
    • Georg BernitzHeinrich Zitzmann
    • H01L702
    • H01C3/12G01K7/183H01C3/04Y10T29/49085
    • A high-temperature detector comprises a temperature sensor comprising a high-temperature measuring element, a first connection and a second connection which are made of a high-temperature-stable material and which are connected to the measuring element. The high-temperature sensor is arranged in an elongate housing adjacent a first end thereof, and the housing comprises a first and a second conductor track produced from a high-temperature-stable material, the conductor tracks being connected to the first and second connections and extending in the direction of a second end of the housing. Furthermore, a connection point is provided, which is used for tapping a signal produced by the high-temperature sensor and which is arranged adjacent the second end of the housing. In order to produce such a device, the sensor is first provided and subsequently arranged in an opening of a first substrate adjacent a first end of the substrate. Following this, a second and a third ceramic substrate are fused with the first ceramic substrate so that the conductor tracks arranged in the second and third ceramic substrates are connected to the connections of the sensor, the conductor tracks extending to a respective second end of the second and third ceramic substrates.
    • 高温检测器包括温度传感器,该温度传感器包括由高温稳定材料制成并连接到测量元件的高温测量元件,第一连接件和第二连接件。 高温传感器布置在与其第一端相邻的细长壳体中,并且壳体包括由高温稳定材料制成的第一和第二导体轨道,导体轨道连接到第一和第二连接, 沿壳体的第二端的方向延伸。 此外,提供了一个连接点,其用于对由高温传感器产生的信号进行攻丝并且邻近壳体的第二端设置。 为了制造这样的装置,首先提供传感器,随后将其布置在与基板的第一端相邻的第一基板的开口中。 接下来,第二和第三陶瓷衬底与第一陶瓷衬底熔合,使得布置在第二和第三陶瓷衬底中的导体轨迹连接到传感器的连接,导体轨道延伸到第二陶瓷衬底的相应第二端 第二和第三陶瓷衬底。
    • 7. 发明授权
    • Method for producing a sensor for sensing a temperature and/or a flow
    • 用于产生感测温度和/或流量的传感器的方法
    • US5853793A
    • 1998-12-29
    • US765749
    • 1997-02-28
    • Heinrich Zitzmann
    • Heinrich Zitzmann
    • G01K7/18G01F1/68G01K13/02G01P5/10H01C7/02H01C17/06B05D5/12B05D1/38B05D3/02
    • G01F1/68G01P5/10
    • A method for producing a sensor which is used for sensing a temperature and/or a flow and which comprises a carrier and a structured resistance layer arranged on said carrier, comprises the steps of providing a mixture consisting of platinum resinate paste and a rhodium resinate paste, printing the mixed resinate paste by means of a screen printing process onto an aluminium oxide substrate, drying the paste which has been applied by printing, burning in the paste at such a temperature for such a period of time that a resinate component contained in the layer will be burnt out, repeating the last-mentioned three steps on the same substrate until a desired overall layer thickness has been obtained, and tempering the substrate with the whole layer so as to obtain a high and stable temperature coefficient.
    • PCT No.PCT / EP95 / 02689 371日期1997年2月28日 102(e)日期1997年2月28日PCT提交1995年7月11日PCT公布。 公开号WO96 / 01983 日期1996年1月25日一种用于感测温度和/或流量的传感器的制造方法,包括载体和布置在所述载体上的结构化电阻层,包括以下步骤:提供由铂树脂浆 和铑树脂浆料,通过丝网印刷方法将混合树脂浆料印刷在氧化铝基材上,干燥通过印刷施加的糊料,在该温度下在糊状物中燃烧一段时间,使得 包含在该层中的树脂成分将被烧毁,在同一衬底上重复最后提到的三个步骤,直到获得所需的总层厚度,并且用整个层回火衬底以获得高且稳定的温度系数 。