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    • 1. 发明授权
    • Electromagnetic energy detection
    • US06239702B1
    • 2001-05-29
    • US09038251
    • 1998-03-10
    • Simon BessendorfRichard V. KemperWilliam A. SciarrettaEdward T. Lewis
    • Simon BessendorfRichard V. KemperWilliam A. SciarrettaEdward T. Lewis
    • G08B1318
    • H01L31/1125
    • The invention provides apparatus and methods for detecting electromagnetic energy using an array of detectors arranged in at least one row and multiple columns. A single crystal body has multiple doped regions disposed therein. Each one of the detectors produces charge in a corresponding one of the doped regions in the body in response to electromagnetic energy impinging upon that detector. A first charge transfer device includes an output port and multiple serially coupled charge storage cells including multiple first charge transfer regions disposed in the body parallel to the row, or rows, of detectors. Multiple second charge transfer devices include multiple second charge transfer regions disposed in the body transverse to the row, or rows, of detectors and the charge storage cells. Each one of the second charge transfer regions is adapted to transfer charge produced in a corresponding one of the doped regions to a corresponding one of the charge storage cells. Each one of the doped regions corresponding to one of the detectors has a doping profile adapted to produce an electric field in a direction from the doped region toward a corresponding one of the multiple second charge transfer regions. Such an arrangement allows dual polarization detection with little or no modification of the system configuration.
    • 2. 发明授权
    • Electromagnetic energy detection
    • US06323768B2
    • 2001-11-27
    • US09756808
    • 2001-01-09
    • Simon BessendorfRichard V. KemperWilliam A. SciarrettaEdward T. Lewis
    • Simon BessendorfRichard V. KemperWilliam A. SciarrettaEdward T. Lewis
    • G08B1318
    • H01L31/1125
    • The invention provides apparatus and methods for detecting electromagnetic energy using an array of detectors arranged in at least one row and multiple columns. A single crystal body has multiple doped regions disposed therein. Each one of the detectors produces charge in a corresponding one of the doped regions in the body in response to electromagnetic energy impinging upon that detector. A first charge transfer device includes an output port and multiple serially coupled charge storage cells including multiple first charge transfer regions disposed in the body parallel to the row, or rows, of detectors. Multiple second charge transfer devices include multiple second charge transfer regions disposed in the body transverse to the row, or rows, of detectors and the charge storage cells. Each one of the second charge transfer regions is adapted to transfer charge produced in a corresponding one of the doped regions to a corresponding one of the charge storage cells. Each one of the doped regions corresponding to one of the detectors has a doping profile adapted to produce an electric field in a direction from the doped region toward a corresponding one of the multiple second charge transfer regions. Such an arrangement allows dual polarization detection with little or no modification of the system configuration.
    • 3. 发明授权
    • RF connector having a compliant contact
    • RF连接器具有顺应性接触
    • US06039580A
    • 2000-03-21
    • US116839
    • 1998-07-16
    • William A. SciarrettaPaul SetzcoJames D. Arangio
    • William A. SciarrettaPaul SetzcoJames D. Arangio
    • H01P5/08H01R9/09
    • H01P5/085
    • An RF connector includes an electrical insulator having an aperture and a conductive contact disposed within the aperture and having at least one compliant, compressible end. The insulator is disposed in an aperture of a conductive support plate. When an RF element is secured to the support plate in use, the compliant end of the conductive contact is compressed against a conductive pad of the RF element. In one embodiment, the RF connector includes a compressible, conductive annular ring disposed concentrically around the compliant end of the conductive contact and adapted for being compressed against a ground pad of the RF element in use in order to effect a coaxial RF interconnection. The conductive contact may take various forms, such as a watch band pin, a Fuzz Button.RTM. or a bellows arrangement. The RF connector may include RF circuitry for interconnection to the RF element and/or may interconnect the RF element to a second RF element.
    • RF连接器包括具有开口的电绝缘体和设置在孔内的导电触点,并具有至少一个顺从的可压缩端。 绝缘体设置在导电支撑板的孔中。 当在使用中将RF元件固定到支撑板时,导电接触件的柔性端被压靠在RF元件的导电垫上。 在一个实施例中,RF连接器包括可压缩的导电环形环,其围绕导电接触件的柔性端部同心地设置,并且适于在使用中被压靠在RF元件的接地焊盘上,以便实现同轴RF互连。 导电接触可以采取各种形式,例如表带针,Fuzz按钮TM或波纹管布置。 RF连接器可以包括用于与RF元件互连的RF电路和/或可以将RF元件互连到第二RF元件。