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    • 1. 发明申请
    • MULTI-CONTACT SENSOR CONNECTOR WITH RELEASE MECHANISM
    • 具有释放机构的多接点传感器连接器
    • WO2006130577A2
    • 2006-12-07
    • PCT/US2006020844
    • 2006-05-31
    • BAYER HEALTHCARE LLCPURCELL D GLENNELSESSER JAMES C
    • PURCELL D GLENNELSESSER JAMES C
    • H01R12/61
    • G01N27/3271
    • A multi-contact sensor connector for use with an instrument adapted to handle a sensor pack containing sensors. The sensors have a plurality of electrical contacts. The connector comprises a test sensor support frame, a printed circuit board connector surface, a plurality of contacts, and a contact holder. The support frame forms an opening therethrough to allow a test sensor to pass through. The support frame has an inclined surface region adapted to guide a test sensor into the opening and a generally horizontal surface region adapted to support the test sensor in the opening. The contacts interact with the electrical contacts. The contacts are positioned to secure the test sensor between the contacts and the horizontal surface region. The contacts are compressed by the support frame and are fixed relative to the printed circuit board connector surface. The contact holder is adapted to retain the contacts and to electrically isolate the respective contacts from one another.
    • 一种多接点传感器连接器,用于与适用于处理包含传感器的传感器组件的仪器一起使用。 传感器具有多个电触头。 连接器包括测试传感器支撑框架,印刷电路板连接器表面,多个触点和触点支架。 支撑框架形成通过其的开口以允许测试传感器通过。 支撑框架具有适于将测试传感器引导到开口中的倾斜表面区域和适于将测试传感器支撑在开口中的大致水平的表面区域。 触点与电触点相互作用。 定位触头以将测试传感器固定在触点和水平表面区域之间。 触点被支撑框架压缩并相对于印刷电路板连接器表面固定。 接触保持器适于保持触点并将相应的触点彼此电隔离。
    • 2. 发明专利
    • Automatic calibration label and apparatus having the same
    • 自动校准标签和具有相同功能的设备
    • JP2004261573A
    • 2004-09-24
    • JP2003317207
    • 2003-09-09
    • Bayer Healthcare Llcバイエル・ヘルスケア・エルエルシーBayer Healthcare,LLC
    • PURCELL D GLENN
    • A61B5/145A61B5/1495G01N33/487
    • G01N33/48771Y10T436/10
    • PROBLEM TO BE SOLVED: To automate calibration of a sensor device in the sensor device or more particularly, novel and improved method and apparatus for calibrating the sensor device. SOLUTION: An automatic calibration label is for use with one or more sensing devices. The label includes first coded calibration information and second coded calibration information. The second coded calibration information can deal with a device different from the first coded calibration information. The second coded calibration information can be used for providing further calibration information to be used with a first device. The label can be mounted detachably at a sensor package including a plurality of sensors. A first conductive ink pattern is disposed on the label to define the first coded calibration information. The first conductive ink pattern is disposed in the simultaneously existing manner with a part of the second conductive ink pattern for defining the second coded calibration information, or is disposed separately from the part. COPYRIGHT: (C)2004,JPO&NCIPI
    • 要解决的问题:为了自动化传感器装置中的传感器装置的校准,或者更具体地,用于校准传感器装置的新颖和改进的方法和装置。

      解决方案:自动校准标签用于一个或多个传感设备。 标签包括第一编码校准信息和第二编码校准信息。 第二编码校准信息可以处理与第一编码校准信息不同的装置。 第二编码校准信息可用于提供要与第一设备一起使用的另外的校准信息。 标签可以可拆卸地安装在包括多个传感器的传感器封装上。 第一导电油墨图案设置在标签上以限定第一编码校准信息。 第一导电油墨图案以与第二导电油墨图案的一部分同时存在的方式设置,用于限定第二编码校准信息,或者与该零件分开设置。 版权所有(C)2004,JPO&NCIPI

    • 3. 发明专利
    • Auto-calibration Label and Apparatus Comprising Same
    • AU2003236388B2
    • 2008-12-04
    • AU2003236388
    • 2003-08-20
    • BAYER HEALTHCARE LLC
    • PURCELL D GLENN
    • A61B5/145A61B5/1495G01N33/487
    • An auto-calibration label comprises first encoded calibration information, corresponding to a first sensor, which is utilized by a first instrument to auto-calibrate; and first additional encoded calibration information corresponding to a second sensor, distinct from the first information and is utilized by a second instrument different from the first instrument to auto-calibrate. An auto-calibration label (50) comprises first encoded calibration information, corresponding to a first sensor, which is utilized by a first instrument to auto-calibrate; and first additional encoded calibration information corresponding to a second sensor, where the additional information is distinct from the first information and is adapted to be utilized by a second instrument different from the first instrument to auto-calibrate. The first instrument is calibrated for the first sensor. The second instrument is calibrated for the second sensor. Independent claims are also included for: (1) a sensor package adapted for use with a first instrument and a second instrument, comprising sensor(s) operable with the first instrument and the second instrument; and an auto-calibration label comprising first instrument encoded calibration information corresponding to the sensor and adapted to be utilized by the first instrument to auto-calibrate such that the first instrument is calibrated for use with the sensor, and second instrument encoded calibration information corresponding to the sensor and adapted to be utilized by the second instrument to auto-calibrate such that the second instrument is calibrated for use with the sensor, where the second instrument encoded calibration information is distinct from the first instrument encode calibration information; (2) a method of manufacturing an auto-calibration label, comprising printing a first conductive ink pattern layer comprising encoded calibration information; printing an insulating layer to isolate the first conductive ink pattern; an printing a second conductive ink pattern comprising encoded calibration information, including printing the second conductive ink pattern such that it is isolated from the first conductive ink pattern; and (3) a method of manufacturing a sensor package, comprising supporting sensor(s) by a substrate; applying to the substrate calibration information corresponding to the sensor(s) and a first instrument adapted to utilize the sensor(s); and applying to the substrate calibration information corresponding to the sensor(s) and a second instrument adapted to utilize the sensor(s).
    • 5. 发明专利
    • Auto-calibration Label and Apparatus Comprising Same
    • AU2003236388A1
    • 2004-03-25
    • AU2003236388
    • 2003-08-20
    • BAYER HEALTHCARE LLC
    • PURCELL D GLENN
    • A61B5/145A61B5/1495G01N33/487G01N27/416
    • An auto-calibration label comprises first encoded calibration information, corresponding to a first sensor, which is utilized by a first instrument to auto-calibrate; and first additional encoded calibration information corresponding to a second sensor, distinct from the first information and is utilized by a second instrument different from the first instrument to auto-calibrate. An auto-calibration label (50) comprises first encoded calibration information, corresponding to a first sensor, which is utilized by a first instrument to auto-calibrate; and first additional encoded calibration information corresponding to a second sensor, where the additional information is distinct from the first information and is adapted to be utilized by a second instrument different from the first instrument to auto-calibrate. The first instrument is calibrated for the first sensor. The second instrument is calibrated for the second sensor. Independent claims are also included for: (1) a sensor package adapted for use with a first instrument and a second instrument, comprising sensor(s) operable with the first instrument and the second instrument; and an auto-calibration label comprising first instrument encoded calibration information corresponding to the sensor and adapted to be utilized by the first instrument to auto-calibrate such that the first instrument is calibrated for use with the sensor, and second instrument encoded calibration information corresponding to the sensor and adapted to be utilized by the second instrument to auto-calibrate such that the second instrument is calibrated for use with the sensor, where the second instrument encoded calibration information is distinct from the first instrument encode calibration information; (2) a method of manufacturing an auto-calibration label, comprising printing a first conductive ink pattern layer comprising encoded calibration information; printing an insulating layer to isolate the first conductive ink pattern; an printing a second conductive ink pattern comprising encoded calibration information, including printing the second conductive ink pattern such that it is isolated from the first conductive ink pattern; and (3) a method of manufacturing a sensor package, comprising supporting sensor(s) by a substrate; applying to the substrate calibration information corresponding to the sensor(s) and a first instrument adapted to utilize the sensor(s); and applying to the substrate calibration information corresponding to the sensor(s) and a second instrument adapted to utilize the sensor(s).
    • 8. 发明专利
    • Auto-calibration Label and Apparatus Comprising Same
    • AU2003236388B9
    • 2009-05-21
    • AU2003236388
    • 2003-08-20
    • BAYER HEALTHCARE LLC
    • PURCELL D GLENN
    • A61B5/145A61B5/1495G01N33/487
    • An auto-calibration label comprises first encoded calibration information, corresponding to a first sensor, which is utilized by a first instrument to auto-calibrate; and first additional encoded calibration information corresponding to a second sensor, distinct from the first information and is utilized by a second instrument different from the first instrument to auto-calibrate. An auto-calibration label (50) comprises first encoded calibration information, corresponding to a first sensor, which is utilized by a first instrument to auto-calibrate; and first additional encoded calibration information corresponding to a second sensor, where the additional information is distinct from the first information and is adapted to be utilized by a second instrument different from the first instrument to auto-calibrate. The first instrument is calibrated for the first sensor. The second instrument is calibrated for the second sensor. Independent claims are also included for: (1) a sensor package adapted for use with a first instrument and a second instrument, comprising sensor(s) operable with the first instrument and the second instrument; and an auto-calibration label comprising first instrument encoded calibration information corresponding to the sensor and adapted to be utilized by the first instrument to auto-calibrate such that the first instrument is calibrated for use with the sensor, and second instrument encoded calibration information corresponding to the sensor and adapted to be utilized by the second instrument to auto-calibrate such that the second instrument is calibrated for use with the sensor, where the second instrument encoded calibration information is distinct from the first instrument encode calibration information; (2) a method of manufacturing an auto-calibration label, comprising printing a first conductive ink pattern layer comprising encoded calibration information; printing an insulating layer to isolate the first conductive ink pattern; an printing a second conductive ink pattern comprising encoded calibration information, including printing the second conductive ink pattern such that it is isolated from the first conductive ink pattern; and (3) a method of manufacturing a sensor package, comprising supporting sensor(s) by a substrate; applying to the substrate calibration information corresponding to the sensor(s) and a first instrument adapted to utilize the sensor(s); and applying to the substrate calibration information corresponding to the sensor(s) and a second instrument adapted to utilize the sensor(s).
    • 10. 发明专利
    • BRPI0611080A2
    • 2010-08-03
    • BRPI0611080
    • 2006-05-31
    • BAYER HEALTHCARE LLC
    • PURCELL D GLENNELSESSER JAMES C
    • G01N27/327H01R12/61
    • A multi-contact sensor connector for use with an instrument adapted to handle a sensor pack containing sensors. The sensors have a plurality of electrical contacts. The connector comprises a test sensor support frame, a printed circuit board connector surface, a plurality of contacts, and a contact holder. The support frame forms an opening therethrough to allow a test sensor to pass through. The support frame has an inclined surface region adapted to guide a test sensor into the opening and a generally horizontal surface region adapted to support the test sensor in the opening. The contacts interact with the electrical contacts. The contacts are positioned to secure the test sensor between the contacts and the horizontal surface region. The contacts are compressed by the support frame and are fixed relative to the printed circuit board connector surface. The contact holder is adapted to retain the contacts and to electrically isolate the respective contacts from one another.