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    • 24. 发明授权
    • Spread spectrum clock interoperability control and inspection circuit
    • 扩频时钟互操作控制和检测电路
    • US07970042B2
    • 2011-06-28
    • US12013062
    • 2008-01-11
    • Keith Bryan HardinRobert Aaron Oglesbee
    • Keith Bryan HardinRobert Aaron Oglesbee
    • H04B1/00H03D3/24
    • H03K3/84B41J2/17546G06F21/725G06F2221/2129H03K5/082
    • A spread spectrum clock generator (SSCG) control and inspection circuit provides a system and method for inspecting and controlling an external SSCG, and for verifying the modulation profile waveform of an external SSCG. An electronic circuit is included that can check for the presence of an optimal SSCG modulation profile in product subsystems, and in attached modular systems, including electronic plug-in features such as internal network adapters and cartridges. In one mode of the invention, an electronic circuit ensures continued radiated emissions compliance for field replaceable units or consumable parts within a product, such as a printer, a scanner, or a combination (or all-in-one) printer/scanner. In another mode of the invention, an electronic circuit may also act as a secondary security device for consumable products, such as toner cartridges or ink jet cartridges. In yet another mode of the invention, an electronic circuit may also adjust the attached SSCG clock.
    • 扩频时钟发生器(SSCG)控制和检查电路提供了一种用于检查和控制外部SSCG的系统和方法,并用于验证外部SSCG的调制曲线波形。 包括一个电子电路,可以检查产品子系统中以及连接的模块化系统中是否存在最佳SSCG调制曲线,包括电子插件功能,如内部网络适配器和墨盒。 在本发明的一种模式中,电子电路确保产品内诸如打印机,扫描仪或组合(或一体式)打印机/扫描仪之间的现场可更换单元或消耗部件的持续辐射发射符合性。 在本发明的另一种模式中,电子电路还可用作消费产品的辅助安全装置,例如调色剂盒或喷墨盒。 在本发明的另一种模式中,电子电路还可以调节附接的SSCG时钟。
    • 25. 发明申请
    • Spread Spectrum Clock Interoperability Control and Inspection Circuit
    • 扩频时钟互操作控制和检测电路
    • US20090179678A1
    • 2009-07-16
    • US12013062
    • 2008-01-11
    • Keith Bryan HardinRobert Aaron Oglesbee
    • Keith Bryan HardinRobert Aaron Oglesbee
    • H03K5/01
    • H03K3/84B41J2/17546G06F21/725G06F2221/2129H03K5/082
    • A spread spectrum clock generator (SSCG) control and inspection circuit provides a system and method for inspecting and controlling an external SSCG, and for verifying the modulation profile waveform of an external SSCG. An electronic circuit is included that can check for the presence of an optimal SSCG modulation profile in product subsystems, and in attached modular systems, including electronic plug-in features such as internal network adapters and cartridges. In one mode of the invention, an electronic circuit ensures continued radiated emissions compliance for field replaceable units or consumable parts within a product, such as a printer, a scanner, or a combination (or all-in-one) printer/scanner. In another mode of the invention, an electronic circuit may also act as a secondary security device for consumable products, such as toner cartridges or ink jet cartridges. In yet another mode of the invention, an electronic circuit may also adjust the attached SSCG clock.
    • 扩频时钟发生器(SSCG)控制和检查电路提供了一种用于检查和控制外部SSCG的系统和方法,并用于验证外部SSCG的调制曲线波形。 包括一个电子电路,可以检查产品子系统中以及连接的模块化系统中是否存在最佳SSCG调制曲线,包括电子插件功能,如内部网络适配器和墨盒。 在本发明的一种模式中,电子电路确保产品内诸如打印机,扫描仪或组合(或一体式)打印机/扫描仪之间的现场可更换单元或消耗部件的持续辐射发射符合性。 在本发明的另一种模式中,电子电路还可用作消费产品的辅助安全装置,例如调色剂盒或喷墨盒。 在本发明的另一种模式中,电子电路还可以调节附接的SSCG时钟。
    • 30. 发明授权
    • Z-directed printed circuit board components having conductive channels for controlling transmission line impedance
    • Z导向印刷电路板部件具有用于控制传输线阻抗的导电通道
    • US08822840B2
    • 2014-09-02
    • US13433340
    • 2012-03-29
    • Keith Bryan Hardin
    • Keith Bryan Hardin
    • H05K1/11
    • H05K1/184H05K1/0219H05K1/0222H05K1/162H05K3/4046H05K2201/09645
    • A Z-directed component for mounting in a mounting hole in a printed circuit board according to one example embodiment includes a body having a top surface, a bottom surface and a side surface. The body has a cross-sectional shape that is insertable into the mounting hole in the printed circuit board. A portion of the body is composed of an insulator. A first conductive channel extends through an interior portion of the body along the length of the body from the top surface to the bottom surface. The first conductive channel forms a signal path through the body. A second conductive channel and a third conductive channel each extends through the interior portion of the body along the length of the body. The second and third conductive channels are positioned next to and on opposite sides of the first conductive channel.
    • 根据一个示例性实施例的用于安装在印刷电路板中的安装孔中的Z指向部件包括具有顶表面,底表面和侧表面的主体。 主体具有可插入印刷电路板的安装孔中的横截面形状。 身体的一部分由绝缘体组成。 第一导电通道沿着主体的长度从顶表面延伸到底表面,穿过主体的内部部分。 第一导电通道形成穿过身体的信号路径。 第二导电通道和第三导电通道各自沿着主体的长度延伸穿过主体的内部。 第二和第三导电通道位于第一导电通道的旁边和相对侧上。