会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明授权
    • Wireless communications system having reduced noise mode operation capability
    • 具有降低的噪声模式操作能力的无线通信系统
    • US08170627B2
    • 2012-05-01
    • US12002303
    • 2007-12-15
    • Robert J. GrabonJohn K. RohdeRobert J. TraegerPatrick R. ErbDaniel E. AltDaniel J. Klostermann
    • Robert J. GrabonJohn K. RohdeRobert J. TraegerPatrick R. ErbDaniel E. AltDaniel J. Klostermann
    • H04M1/00
    • H04B15/02H04B2215/066
    • A wireless communication system having a terminal unit operates in a reduced noise state during receipt of a wireless transmission from a control unit. The terminal unit includes terminal circuitry, a radio and noise management circuitry. The noise management circuitry partially or fully disables operation of the terminal circuitry during a receipt by the radio. Noise management circuitry may disable a terminal processor, disable interrupts, buffer interrupts and otherwise modify operation of the terminal circuitry to reduce generated radio noise that would otherwise interfere with receipt of data by the radio. The wireless communication system includes noise management circuitry located in a control unit that operates in conjunction with noise management circuitry in a first terminal unit and a second terminal unit to schedule transmissions from the control unit. These scheduled transmissions allow the terminal units to perform required processing functions outside of the reduced noise period.
    • 具有终端单元的无线通信系统在从控制单元接收无线传输期间以降低的噪声状态工作。 终端单元包括终端电路,无线电和噪声管理电路。 噪声管理电路部分地或完全地禁止终端电路在无线电接收期间的操作。 噪声管理电路可以禁用终端处理器,禁止中断,缓冲中断以及否则修改终端电路的操作,以减少否则会干扰无线电接收数据的产生的无线电噪声。 无线通信系统包括位于控制单元中的噪声管理电路,其与第一终端单元中的噪声管理电路和第二终端单元一起操作以调度来自控制单元的传输。 这些调度的传输允许终端单元在减少的噪声周期之外执行所需的处理功能。
    • 3. 发明申请
    • Wireless communications system having reduced noise mode operation capability
    • 具有降低的噪声模式操作能力的无线通信系统
    • US20080212724A1
    • 2008-09-04
    • US12002303
    • 2007-12-15
    • Robert J. GrabonJohn K. RohdeRobert J. TraegerPatrick R. ErbDaniel E. AltDaniel J. Klostermann
    • Robert J. GrabonJohn K. RohdeRobert J. TraegerPatrick R. ErbDaniel E. AltDaniel J. Klostermann
    • H04B1/10
    • H04B15/02H04B2215/066
    • A wireless communication system having a terminal unit operates in a reduced noise state during receipt of a wireless transmission from a control unit. The terminal unit includes terminal circuitry, a radio and noise management circuitry. The noise management circuitry partially or fully disables operation of the terminal circuitry during a receipt by the radio. Noise management circuitry may disable a terminal processor, disable interrupts, buffer interrupts and otherwise modify operation of the terminal circuitry to reduce generated radio noise that would otherwise interfere with receipt of data by the radio. The wireless communication system includes noise management circuitry located in a control unit that operates in conjunction with noise management circuitry in a first terminal unit and a second terminal unit to schedule transmissions from the control unit. These scheduled transmissions allow the terminal units to perform required processing functions outside of the reduced noise period.
    • 具有终端单元的无线通信系统在从控制单元接收无线传输期间以降低的噪声状态工作。 终端单元包括终端电路,无线电和噪声管理电路。 噪声管理电路部分地或完全地禁止终端电路在无线电接收期间的操作。 噪声管理电路可以禁用终端处理器,禁止中断,缓冲中断以及否则修改终端电路的操作,以减少否则会干扰无线电接收数据的产生的无线电噪声。 无线通信系统包括位于控制单元中的噪声管理电路,其与第一终端单元中的噪声管理电路和第二终端单元一起操作以调度来自控制单元的传输。 这些调度的传输允许终端单元在减少的噪声周期之外执行所需的处理功能。
    • 4. 发明申请
    • Multiple Telemetry and/or Charging Coil Configurations for an Implantable Medical Device System
    • 可植入医疗设备系统的多路遥测和/或充电线圈配置
    • US20080172109A1
    • 2008-07-17
    • US11622395
    • 2007-01-11
    • M. Mizanur RahmanDaniel J. KlostermannDaniel Aghassian
    • M. Mizanur RahmanDaniel J. KlostermannDaniel Aghassian
    • A61N1/08
    • A61N1/37229A61N1/3787
    • Embodiments of an improved implantable medical device system for orientation-independent telemetry to and from the device are disclosed. The system includes an external controller which produces an electromagnetic field to induce a current in a coil in the implantable medical device and vise versa. In a preferred embodiment, the external controller comprises three orthogonal coils, each of which is potentially activated to generate or receive the electromagnetic field. Algorithms are disclosed to allow for the choice of one or more of the coils best suited for telemetry based on the chosen coil's orientation with respect to the telemetry coil in the implantable medical device. Because all three of the orthogonal coils are potentially activated if necessary, the result is that at least one of the coils will be in a proper orientation with respect to the coil in the implantable medical device, thereby improving telemetry efficiency. The disclosed techniques may be used to improve induction-based powering or charging of the device as well.
    • 公开了用于朝向与来自该装置的朝向独立遥测的改进的可植入医疗装置系统的实施例。 该系统包括外部控制器,其产生电磁场以在可植入医疗装置中的线圈中感应电流,反之亦然。 在优选实施例中,外部控制器包括三个正交线圈,每个正交线圈被潜在地激活以产生或接收电磁场。 公开了算法以允许基于相对于可植入医疗装置中的遥测线圈的所选线圈的取向来选择最适合于遥测的一个或多个线圈。 因为如果需要,所有三个正交线圈都被潜在地激活,结果是至少一个线圈将相对于可植入医疗装置中的线圈处于正确的方向,从而提高遥测效率。 所公开的技术可以用于改进设备的基于感应的供电或充电。
    • 5. 发明授权
    • Multiple telemetry and/or charging coil configurations for an implantable medical device system
    • 用于可植入医疗器械系统的多个遥测和/或充电线圈配置
    • US08391991B2
    • 2013-03-05
    • US13423954
    • 2012-03-19
    • M. Mizanur RahmanDaniel J. KlostermannDaniel J. Aghassian
    • M. Mizanur RahmanDaniel J. KlostermannDaniel J. Aghassian
    • A61N1/00
    • A61N1/37229A61N1/3787
    • An implantable medical device system for orientation-independent telemetry to and from the device are disclosed. The system includes an external controller which produces an electromagnetic field to induce a current in a coil in the implantable medical device and vise versa. In a preferred embodiment, the external controller comprises three orthogonal coils, each of which is potentially activated to generate or receive the electromagnetic field. Algorithms are disclosed to allow for the choice of one or more of the coils best suited for telemetry based on the chosen coil's orientation with respect to the telemetry coil in the implantable medical device. Because all three of the orthogonal coils are potentially activated if necessary, the result is that at least one of the coils will be in a proper orientation with respect to the coil in the implantable medical device, thereby improving telemetry or power transfer efficiency.
    • 公开了一种用于朝向与来自该装置的朝向独立遥测的可植入医疗装置系统。 该系统包括外部控制器,其产生电磁场以在可植入医疗装置中的线圈中感应电流,反之亦然。 在优选实施例中,外部控制器包括三个正交线圈,每个正交线圈被潜在地激活以产生或接收电磁场。 公开了算法以允许基于相对于可植入医疗装置中的遥测线圈的所选线圈的取向来选择最适合于遥测的一个或多个线圈。 因为如果需要,所有三个正交线圈都被潜在地激活,结果是至少一个线圈将相对于可植入医疗装置中的线圈处于正确的方向,从而提高遥测或电力传输效率。
    • 6. 发明授权
    • Broadband multiple element antenna system
    • 宽带多元天线系统
    • US06281850B1
    • 2001-08-28
    • US08888660
    • 1997-07-07
    • Daniel J. Klostermann
    • Daniel J. Klostermann
    • H01Q2126
    • H01Q21/26H01Q1/243H01Q1/38H01Q3/30H01Q5/40
    • A broadband antenna system includes a plurality of antenna elements, a plurality of phase shifting elements, and a circuitry connection. Each of the antenna elements has a respective antenna element operating bandwidth dependent upon the construction of the element. Each phase shifting element connects a respective one of the plurality of antenna elements to a common antenna connection with a respective bandwidth shift. The circuitry connector couples the common antenna connection to radio circuitry. With the plurality of antenna elements bandwidth shifted by the plurality of phase shifting elements, the antenna elements operate in combination with an operating bandwidth a multiple of the element operating bandwidths. The circuitry connector transforms a frequency design range harmonic impedance at the common antenna connection to a minimum impedance at a second end of the circuitry connector that connects to radio circuitry. The antenna system may be part of a radio module that includes a radio module shell containing radio circuitry, with the plurality of antenna elements substantially conforming to the radio module shell. The plurality of antennas may reside upon a dielectric layer disposed upon an external portion of the radio module shell. The circuitry connector extends through the radio module shell and dielectric layer to connect the radio circuitry to the plurality of antenna elements. Insulative spacers may connect the plurality of antenna elements to the dielectric layer such that the antenna elements reside adjacent to, and at least partially away from, the dielectric layer to enhance performance.
    • 宽带天线系统包括多个天线元件,多个相移元件和电路连接。 每个天线元件具有取决于元件的构造的操作带宽的相应天线元件。 每个相移元件将多个天线元件中的相应一个天线连接到相应的带宽移位的公共天线连接。 电路连接器将公共天线连接器连接到无线电电路。 利用由多个移相元件移位的多个天线元件,天线元件与工作带宽一起操作元件工作带宽的倍数。 电路连接器将公共天线连接处的频率设计范围谐波阻抗转换成连接到无线电电路的电路连接器的第二端处的最小阻抗。 天线系统可以是无线电模块的一部分,其包括包含无线电电路的无线电模块外壳,多个天线元件基本上符合无线电模块外壳。 多个天线可以驻留在布置在无线电模块外壳的外部部分上的电介质层上。 电路连接器延伸穿过无线电模块外壳和电介质层,以将无线电电路连接到多个天线元件。 绝缘间隔件可以将多个天线元件连接到电介质层,使得天线元件邻近并且至少部分地远离电介质层,以增强性能。
    • 7. 发明申请
    • Multiple Telemetry and/or Charging Coil Configurations for an Implantable Medical Device System
    • 可植入医疗设备系统的多路遥测和/或充电线圈配置
    • US20110295340A1
    • 2011-12-01
    • US13206622
    • 2011-08-10
    • M. Mizanur RahmanDaniel J. KlostermannDaniel Aghassian
    • M. Mizanur RahmanDaniel J. KlostermannDaniel Aghassian
    • A61N1/08
    • A61N1/37229A61N1/3787
    • Embodiments of an improved implantable medical device system for orientation-independent telemetry to and from the device are disclosed. The system includes an external controller which produces an electromagnetic field to induce a current in a coil in the implantable medical device and vise versa. In a preferred embodiment, the external controller comprises three orthogonal coils, each of which is potentially activated to generate or receive the electromagnetic field. Algorithms are disclosed to allow for the choice of one or more of the coils best suited for telemetry based on the chosen coil's orientation with respect to the telemetry coil in the implantable medical device. Because all three of the orthogonal coils are potentially activated if necessary, the result is that at least one of the coils will be in a proper orientation with respect to the coil in the implantable medical device, thereby improving telemetry efficiency. The disclosed techniques may be used to improve induction-based powering or charging of the device as well.
    • 公开了用于朝向与来自该装置的朝向独立遥测的改进的可植入医疗装置系统的实施例。 该系统包括外部控制器,其产生电磁场以在可植入医疗装置中的线圈中感应电流,反之亦然。 在优选实施例中,外部控制器包括三个正交线圈,每个正交线圈被潜在地激活以产生或接收电磁场。 公开了算法以允许基于相对于可植入医疗装置中的遥测线圈的所选线圈的取向来选择最适合于遥测的一个或多个线圈。 因为如果需要,所有三个正交线圈都被潜在地激活,结果是至少一个线圈将相对于可植入医疗装置中的线圈处于正确的方向,从而提高遥测效率。 所公开的技术可以用于改进设备的基于感应的供电或充电。
    • 8. 发明申请
    • Multiple Telemetry and/or Charging Coil Configurations for an Implantable Medical Device System
    • 可植入医疗设备系统的多路遥测和/或充电线圈配置
    • US20120172947A1
    • 2012-07-05
    • US13423954
    • 2012-03-19
    • M. Mizanur RahmanDaniel J. KlostermannDaniel J. Aghassian
    • M. Mizanur RahmanDaniel J. KlostermannDaniel J. Aghassian
    • A61N1/08
    • A61N1/37229A61N1/3787
    • An implantable medical device system for orientation-independent telemetry to and from the device are disclosed. The system includes an external controller which produces an electromagnetic field to induce a current in a coil in the implantable medical device and vise versa. In a preferred embodiment, the external controller comprises three orthogonal coils, each of which is potentially activated to generate or receive the electromagnetic field. Algorithms are disclosed to allow for the choice of one or more of the coils best suited for telemetry based on the chosen coil's orientation with respect to the telemetry coil in the implantable medical device. Because all three of the orthogonal coils are potentially activated if necessary, the result is that at least one of the coils will be in a proper orientation with respect to the coil in the implantable medical device, thereby improving telemetry or power transfer efficiency.
    • 公开了一种用于朝向与来自该装置的朝向独立遥测的可植入医疗装置系统。 该系统包括外部控制器,其产生电磁场以在可植入医疗装置中的线圈中感应电流,反之亦然。 在优选实施例中,外部控制器包括三个正交线圈,每个正交线圈被潜在地激活以产生或接收电磁场。 公开了算法以允许基于相对于可植入医疗装置中的遥测线圈的所选线圈的取向来选择最适合于遥测的一个或多个线圈。 因为如果需要,所有三个正交线圈都被潜在地激活,结果是至少一个线圈将相对于可植入医疗装置中的线圈处于正确的方向,从而提高遥测或电力传输效率。