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    • 1. 发明申请
    • EMI FILTERS DESIGNED FOR DIRECT BODY FLUID EXPOSURE
    • 设计用于直接体液暴露的EMI滤波器
    • US20070019362A1
    • 2007-01-25
    • US11535343
    • 2006-09-26
    • Robert StevensonRichard BrendelJohn RobertsChristine Frysz
    • Robert StevensonRichard BrendelJohn RobertsChristine Frysz
    • H01G4/35
    • A61N1/3754A61N1/3752H01G4/35
    • An EMI filter capacitor assembly utilizes biocompatible and non-migratable materials to adapt electronic components for direct body fluid exposure. The assembly includes a capacitor having first and second sets of electrode plates which are constructed of non-migratable biocompatible material A conductive hermetic terminal of non-migratable and biocompatible material adjacent to the capacitor is conductively coupled to the second set of electrode plates. One or more conductive terminal pins having at least an outer surface of non-migratable and biocompatible material are conductively coupled to the first set of electrode plates, while extending through the hermetic terminal in non-conductive relation. The terminal pins may be in direct contact with the first set of electrode plates, or in contact with a termination surface of conductive connection material. The termination surface is also constructed of non-migratable and biocompatible materials. Layers of glass may be disposed over surfaces of the assembly, including the capacitor.
    • EMI滤波电容器组件使用生物相容性和不可迁移材料来适应用于直接体液暴露的电子部件。 该组件包括具有第一和第二组电极板的电容器,其由不可迁移的生物相容性材料构成。与电容器相邻的不可迁移和生物相容材料的导电密封端与第二组电极板导电耦合。 具有至少一个不可迁移和生物相容材料的外表面的一个或多个导电端子销导电耦合到第一组电极板,同时以非导电关系延伸穿过密封端子。 端子引脚可以与第一组电极板直接接触,或者与导电连接材料的终端表面接触。 端接表面也由不可迁移和生物相容的材料构成。 玻璃层可以布置在组件的表面上,包括电容器。
    • 2. 发明申请
    • EMI filter capacitors designed for direct body fluid exposure
    • EMI滤波电容设计用于直接体液曝光
    • US20050219787A1
    • 2005-10-06
    • US11136843
    • 2005-05-24
    • Robert StevensonRichard BrendelJohn RobertsChristine Frysz
    • Robert StevensonRichard BrendelJohn RobertsChristine Frysz
    • A61N1/375H01G4/228H01G4/35
    • A61N1/3754A61N1/3752H01G4/35
    • An EMI filter capacitor assembly utilizes biocompatible and non-migratable materials to adapt electronic components for direct body fluid exposure. The assembly includes a capacitor having first and second sets of electrode plates which are constructed of non-migratable biocompatible material. A conductive hermetic terminal of non-migratable and biocompatible material adjacent to the capacitor is conductively coupled to the second set of electrode plates. One or more conductive terminal pins having at least an outer surface of non-migratable and biocompatible material are conductively coupled to the first set of electrode plates, while extending through the hermetic terminal in non-conductive relation. The terminal pins may be in direct contact with the first set of electrode plates, or in contact with a termination surface of conductive connection material. The termination surface is also constructed of non-migratable and biocompatible materials. Layers of glass may be disposed over surfaces of the assembly, including the capacitor.
    • EMI滤波电容器组件使用生物相容性和不可迁移材料来适应用于直接体液暴露的电子部件。 组件包括具有由不可迁移的生物相容性材料构成的第一和第二组电极板的电容器。 与电容器相邻的不可迁移和生物相容材料的导电密封端与第二组电极板导电耦合。 具有至少一个不可迁移和生物相容材料的外表面的一个或多个导电端子销导电耦合到第一组电极板,同时以非导电关系延伸穿过密封端子。 端子引脚可以与第一组电极板直接接触,或者与导电连接材料的终端表面接触。 端接表面也由不可迁移和生物相容的材料构成。 玻璃层可以布置在组件的表面上,包括电容器。
    • 4. 发明授权
    • EMI filter capacitors designed for direct body fluid exposure
    • EMI滤波电容设计用于直接体液曝光
    • US06985347B2
    • 2006-01-10
    • US10778954
    • 2004-02-12
    • Robert A. StevensonRichard L. BrendelJohn RobertsChristine Frysz
    • Robert A. StevensonRichard L. BrendelJohn RobertsChristine Frysz
    • H01G4/35H01G4/236H01G4/228
    • A61N1/3754A61N1/3752H01G4/35
    • An EMI filter capacitor assembly utilizes biocompatible and non-migratable materials to adapt electronic components for direct body fluid exposure. The assembly includes a capacitor having first and second sets of electrode plates which are constructed of non-migratable biocompatible material. A conductive hermetic terminal of non-migratable and biocompatible material adjacent to the capacitor is conductively coupled to the second set of electrode plates. One or more conductive terminal pins having at least an outer surface of non-migratable and biocompatible material are conductively coupled to the first set of electrode plates, while extending through the hermetic terminal in non-conductive relation. The terminal pins may be in direct contact with the first set of electrode plates, or in contact with a termination surface of conductive connection material. The termination surface is also constructed of non-migratable and biocompatible materials. Layers of glass may be disposed over surfaces of the assembly, including the capacitor.
    • EMI滤波电容器组件使用生物相容性和不可迁移材料来适应用于直接体液暴露的电子部件。 组件包括具有由不可迁移的生物相容性材料构成的第一和第二组电极板的电容器。 与电容器相邻的不可迁移和生物相容材料的导电密封端与第二组电极板导电耦合。 具有至少一个不可迁移和生物相容材料的外表面的一个或多个导电端子销导电耦合到第一组电极板,同时以非导电关系延伸穿过密封端子。 端子引脚可以与第一组电极板直接接触,或者与导电连接材料的终端表面接触。 端接表面也由不可迁移和生物相容的材料构成。 玻璃层可以布置在组件的表面上,包括电容器。
    • 7. 发明申请
    • SOLID STATE ARRAY MODULES FOR GENERAL ILLUMINATION
    • 用于一般照明的固体状态阵列模块
    • US20120320587A1
    • 2012-12-20
    • US13564466
    • 2012-08-01
    • John RobertsRobert ChaloupeckyChenhua You
    • John RobertsRobert ChaloupeckyChenhua You
    • F21V7/00
    • F21S4/28F21V5/002F21V15/013F21V19/001F21V29/004F21V29/74F21Y2101/00F21Y2103/10F21Y2115/10
    • An illumination module includes a longitudinal support member including a base portion and a pair of sidewalls extending from the base portion that together define a channel that extends in a longitudinal direction. A printed circuit board (PCB) on the base portion extends in the longitudinal direction within the channel. A plurality of light emitting diodes (LEDs) are on the PCB in a linear array. A reflective sheet is within and extends across the channel, and includes a plurality of holes that correspond with locations of the LEDs on the PCB, and the LEDs are positioned in the holes. An optical film extends across the channel above the reflective sheet and defines an optical cavity between the reflective sheet and the optical film. The optical film, the reflective sheet and the sidewalls of the support member recycle light in the optical cavity.
    • 照明模块包括纵向支撑构件,所述纵向支撑构件包括基部和从基部延伸的一对侧壁,所述一对侧壁一起限定沿纵向方向延伸的通道。 基部上的印刷电路板(PCB)在通道内沿纵向方向延伸。 多个发光二极管(LED)以线性阵列在PCB上。 反射片在通道内并且延伸穿过通道,并且包括与PCB上的LED的位置对应的多个孔,并且LED定位在孔中。 光学膜延伸穿过反射片上方的通道并且在反射片和光学膜之间限定光学腔。 光学膜,反射片和支撑构件的侧壁在光腔中再循环光。
    • 8. 发明授权
    • Solid state linear array modules for general illumination
    • 用于一般照明的固态线性阵列模块
    • US08240875B2
    • 2012-08-14
    • US12146018
    • 2008-06-25
    • John RobertsRobert ChaloupeckyChenhua You
    • John RobertsRobert ChaloupeckyChenhua You
    • F21V7/00
    • F21S4/28F21V5/002F21V15/013F21V19/001F21V29/004F21V29/74F21Y2101/00F21Y2103/10F21Y2115/10
    • An illumination module includes a longitudinal support member including a base portion and a pair of sidewalls extending from the base portion that together define a channel that extends in a longitudinal direction. A printed circuit board (PCB) on the base portion extends in the longitudinal direction within the channel. A plurality of light emitting diodes (LEDs) are on the PCB in a linear array. A reflective sheet is within and extends across the channel, and includes a plurality of holes that correspond with locations of the LEDs on the PCB, and the LEDs are at least partially within the holes. An optical film extends across the channel above the reflective sheet and defines an optical cavity between the reflective sheet and the optical film. The optical film, the reflective sheet and the sidewalls of the support member are configured to recycle light in the optical cavity by reflecting some light emitted by the LEDs back into the optical cavity and transmitting some light emitted by the LEDs out of the optical cavity.
    • 照明模块包括纵向支撑构件,所述纵向支撑构件包括基部和从基部延伸的一对侧壁,所述一对侧壁一起限定沿纵向方向延伸的通道。 基部上的印刷电路板(PCB)在通道内沿纵向方向延伸。 多个发光二极管(LED)以线性阵列在PCB上。 反射片在通道内并延伸穿过通道,并且包括与PCB上的LED的位置对应的多个孔,并且LED至少部分地在孔内。 光学膜延伸穿过反射片上方的通道并且在反射片和光学膜之间限定光学腔。 光学膜,反射片和支撑构件的侧壁被配置为通过将由LED发射的一些光反射回光腔并将由LED发射的一些光透射出光腔来再循环光腔中的光。
    • 10. 发明申请
    • METHODS AND APPARATUS FOR PEER-TO-PEER TRANSFER OF SECURE DATA USING NEAR FIELD COMMUNICATIONS
    • 使用近场通信的安全数据的对等传输的方法和装置
    • US20110276802A1
    • 2011-11-10
    • US12776510
    • 2010-05-10
    • John RobertsKristina Loraine Kister Herrick
    • John RobertsKristina Loraine Kister Herrick
    • H04L9/32
    • H04L63/062H04L63/0492H04W12/02H04W12/04
    • The present invention discloses an apparatus and method of transferring data from a first device to a second device. The method includes transmitting a request to transfer the data from the first device to the second device, receiving, at the first device, a decryption key to allow transfer of the data stored in a memory of the first device, receiving, at the second device, an encryption key, and transmitting the data from the first device to the second device using peer-to-peer communications. The method also includes encrypting the data at the second device using the encryption key, storing the encrypted data in a memory of the second device, receiving, at the first device, an acknowledgement from the second device, the acknowledgement indicating that the data has been encrypted and stored in the memory of the second device, and deleting the data from the memory of the first device.
    • 本发明公开了一种将数据从第一设备传送到第二设备的设备和方法。 该方法包括发送将数据从第一设备传送到第二设备的请求,在第一设备处接收解密密钥以允许传送存储在第一设备的存储器中的数据,在第二设备 ,加密密钥,以及使用对等通信将数据从第一设备发送到第二设备。 该方法还包括使用加密密钥对第二设备处的数据进行加密,将加密的数据存储在第二设备的存储器中,在第一设备处接收来自第二设备的确认,确认指示数据已被 加密并存储在第二设备的存储器中,以及从第一设备的存储器中删除数据。