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    • 2. 发明申请
    • Medical device including processor running independent processes to cooperatively control therapy
    • 医疗设备包括处理器运行独立过程,以协同控制治疗
    • US20060009921A1
    • 2006-01-12
    • US11176857
    • 2005-07-07
    • Brian SheltonSam Bowman
    • Brian SheltonSam Bowman
    • G01N31/00
    • A61K9/0024
    • A medical system comprising an implantable medical device and an external controller. The medical device includes a therapy administration subsystem, a telemetry subsystem, and a control subsystem which includes a microprocessor operable in response to data and/or code provided via said telemetry subsystem for producing an output signal for controlling said therapy administration subsystem. The controller includes a user input means and a telemetry subsystem responsive to said user input means for communicating data and/or code to said medical device telemetry subsystem. The medical device control subsystem includes program means for causing said microprocessor to separately execute at least two software processes to respectively produce separate therapy control output components. Combinatorial logic means responds to the separate output components to produce the output signal for controlling the therapy administration subsystem.
    • 一种包括可植入医疗装置和外部控制器的医疗系统。 医疗设备包括治疗管理子系统,遥测子系统和控制子系统,该控制子系统包括可响应于经由所述遥测子系统提供的数据和/或代码来操作的微处理器,用于产生用于控制所述治疗管理子系统的输出信号。 所述控制器包括用户输入装置和响应所述用户输入装置的遥测子系统,用于将数据和/或代码传送到所述医疗装置遥测子系统。 医疗设备控制子系统包括用于使所述微处理器分别执行至少两个软件过程以分别产生单独的治疗控制输出组件的程序装置。 组合逻辑装置响应于单独的输出组件以产生用于控制治疗管理子系统的输出信号。
    • 3. 发明申请
    • Method and apparatus for upgrading implantable medical device operating software
    • 用于升级植入式医疗器械操作软件的方法和装置
    • US20060080654A1
    • 2006-04-13
    • US11241085
    • 2005-09-30
    • Brian Shelton
    • Brian Shelton
    • G06F9/44
    • G06F8/65G16H40/40
    • A method and apparatus for reallocating in the local memory of an implantable medical device for upgrading operating software stored in the Code portion of the local memory. The local memory is managed so that new software e.g., a code segment, is accepted into memory provisionally, and then validated before being used to replace existing (i.e., old) software. Each new segment is received in its entirety and its integrity validated before the old software is overwritten. Data log information is downloaded to an external programmer at the start of a software upgrade operation to temporarily free memory space without losing any information. This freed memory space is then reassigned for the purpose of temporarily storing new code segments until they can be received in their entirety and validated. A software copying component is transferred from a local memory code portion to a data portion to allow new code segments to be written into any area of said code portion.
    • 一种在可植入医疗设备的本地存储器中重新分配用于升级存储在本地存储器的代码部分中的操作软件的方法和装置。 对本地存储器进行管理,使得诸如代码段的新软件被暂时接受到存储器中,然后在用于替换现有的(即,旧的)软件之前被验证。 每个新的段被完整地接收,并且其完整性在旧的软件被覆盖之前被验证。 数据日志信息在软件升级操作开始时下载到外部程序员,以暂时释放内存空间,而不会丢失任何信息。 然后,这个释放的存储器空间被重新分配,用于临时存储新的代码段,直到它们被完整地接收并被验证为止。 软件复制组件从本地存储器代码部分传送到数据部分,以允许将新的代码段写入所述代码部分的任何区域。
    • 4. 发明授权
    • Frequency generation circuit and method of operating a tranceiver
    • 频率发生电路及操作收发器的方法
    • US06564039B1
    • 2003-05-13
    • US09515728
    • 2000-02-29
    • Richard B. MeadorRonald H. DeckDavid J. GrahamDavid H. MinasiBrian Shelton
    • Richard B. MeadorRonald H. DeckDavid J. GrahamDavid H. MinasiBrian Shelton
    • H04B140
    • H04B1/406H03L7/23H04B2001/0491
    • A frequency generation circuit includes an oscillator (403), a comparator (413) coupled to the oscillator, a first divider (407) coupled to the comparator, a PLL (400) coupled to the first divider, a second divider (422) coupled to the PLL, a first multiplexor (409) coupled to the second divider, a third divider (408) coupled to the comparator and the first multiplexor, a second multiplexor (410) coupled to the comparator and the reference clock PLL, a fourth divider (411) coupled to the second multiplexor, a fifth divider (412) coupled to the comparator, and a seventh divider (450) coupled to the comparator. A method of operating a transceiver includes using the frequency generation circuit to provide a first clock signal, a second clock signal, a first reference frequency, and a second reference frequency for a first component, a second component, a third component, and a fourth component, respectively, of the transceiver.
    • 频率发生电路包括振荡器(403),耦合到振荡器的比较器(413),耦合到比较器的第一分频器(407),耦合到第一分频器的PLL(400),耦合到第一分频器 耦合到所述PLL,耦合到所述第二分频器的第一多路复用器(409),耦合到所述比较器和所述第一多路复用器的第三分频器(408),耦合到所述比较器和所述参考时钟PLL的第二多路复用器(410) (411),耦合到所述第二多路复用器,耦合到所述比较器的第五分频器(412)和耦合到所述比较器的第七分频器(450)。 操作收发器的方法包括使用频率产生电路为第一组件,第二组件,第三组件和第四组件提供第一时钟信号,第二时钟信号,第一参考频率和第二参考频率 分别为收发器。