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    • 54. 发明授权
    • Universal subscriber communicator module
    • 通用用户通信模块
    • US07289533B2
    • 2007-10-30
    • US10455855
    • 2003-06-06
    • Mark Jackson JonesWilliam Richard Garmer
    • Mark Jackson JonesWilliam Richard Garmer
    • H04J3/16
    • H04Q11/04H04Q2213/13034H04Q2213/13103H04Q2213/13333
    • A subscriber communicator module and an external data storage device perform the functions of receiving RF communication signals, converting the received RF signals to received digital output samples and converting digital input samples to RF communication signals for transmission; transforming the digital output samples to digital output data and transforming digital input data to the digital input samples; and processing the digital data in accordance with ORBCOMM data protocols. The module includes at least an RF section for performing the receiving and conversion functions. The external data storage device contains software for implementing performance of the transformation functions and/or the data processing function by one or more sections of the subscriber communicator that are not included in the module. Preferably, the module also includes a transformation section and a control processing section, in which the only communication activities provided in accordance with ORBCOMM data protocols are reports and/or user commands.
    • 用户通信器模块和外部数据存储设备执行接收RF通信信号的功能,将接收到的RF信号转换为接收的数字输出样本,并将数字输入采样转换为RF通信信号进行传输; 将数字输出样本转换为数字输出数据,并将数字输入数据转换为数字输入样本; 并根据ORBCOMM数据协议处理数字数据。 该模块至少包括用于执行接收和转换功能的RF部分。 外部数据存储设备包含用于通过未包括在模块中的用户通信器的一个或多个部分来实现转换功能和/或数据处理功能的性能的软件。 优选地,该模块还包括转换部分和控制处理部分,其中根据ORBCOMM数据协议提供的唯一通信活动是报告和/或用户命令。
    • 56. 发明申请
    • Towable collapsible patient supporting carrier
    • 牵引式可折叠病人支架
    • US20070216118A1
    • 2007-09-20
    • US11378848
    • 2006-03-16
    • Mark JacksonMarc Segal
    • Mark JacksonMarc Segal
    • B62B1/00
    • B62B1/208A61G1/0212A61G1/0231A61G1/0281A61G1/0293B62B5/0023B62B5/0079B62B9/14B62B15/007B62B19/04B62B2202/42B62K27/003B62K27/02B63B7/082B63B35/613B63B2007/003
    • A collapsible patient supporting carrier configured as either a backboard or a stretcher for being pulled or towed behind a person, animal or vehicle, such as a bicycle, motorcycle, snow mobile or jet ski. The carrier comprises a plurality of support sections interconnected by connecting mechanisms that are configured to selectively place the carrier in a collapsed condition having a support surface for carrying medical supplies or an extended condition for transporting an injured person. Each support section is made up of a frame and one or more support members, such as a rigid plate or a somewhat flexible material, attached to the frame. The forward end of the carrier has a tow connector member to connect to a tow member for towing. Transport members, such as wheels, skis or a floatation member, are operatively connected near the second end of the carrier to facilitate movement over a surface.
    • 一种可折叠的患者支撑架,其被配置为背板或担架,用于被牵引或拖曳在人,动物或车辆(例如自行车,摩托车,雪地移动或喷气式滑雪器)后面。 载体包括通过连接机构互连的多个支撑部分,连接机构构造成选择性地将承载器放置在具有用于承载医疗用品的支撑表面或用于运送受伤人员的延长状态的折叠状态。 每个支撑部分由框架和一个或多个支撑构件组成,例如刚性板或稍微柔软的材料,附接到框架。 载体的前端具有牵引连接器构件以连接到用于拖曳的拖曳构件。 诸如轮子,滑雪板或漂浮构件之类的运输构件可操作地连接在承载件的第二端附近,以便于在表面上移动。
    • 58. 发明申请
    • Control method using dynamic latitude allocation and setpoint modification, system using the control method, and computer readable recording media containing the control method
    • 使用动态纬度分配和设定点修改的控制方法,系统使用控制方法,以及包含控制方法的计算机可读记录介质
    • US20070027559A1
    • 2007-02-01
    • US11191979
    • 2005-07-29
    • Martin BantonNancy GoodmanDale MashtareMark Jackson
    • Martin BantonNancy GoodmanDale MashtareMark Jackson
    • G05B11/01
    • G03G15/50B41J29/393
    • In a system including a plurality of elements, or plurality of subsystems of elements, each performing a process using process control to maintain operation within a latitude of a setpoint and having an output characteristic that contributes to an overall output quality specification of the system, a control method includes setting a desired overall output quality specification, and determining optimum setpoints and latitudes of the plurality of elements, within a range of possible setpoints and latitudes for each element, to achieve the desired overall output quality specification. The control method further includes dynamically re-setting the setpoints and/or re-allocating the latitudes of at least two of the plurality of elements (or subsystems of elements) to compensate for degradation of the attribute caused by variation in the output characteristic of one element within the desired overall output quality specification. The system may be an image forming apparatus, such as a xerographic system, or a modular document processing system. The control method may be stored on a computer readable media.
    • 在包括多个元件或多个元件子系统的系统中,每个元件执行使用过程控制的过程,以将工作维持在设定点的纬度内并且具有有助于系统的整体输出质量规格的输出特性, 控制方法包括在每个元件的可能的设定点和纬度的范围内设定期望的总输出质量规格,以及确定多个元件的最佳设定点和纬度,以实现期望的总输出质量规格。 所述控制方法还包括动态地重新设定所述设定点和/或重新分配所述多个元件(或元件的子系统)中的至少两个的纬度以补偿由一个的输出特性的变化引起的属性的劣化 元素在所需的总体输出质量规范内。 该系统可以是图像形成装置,例如静电复印系统或模块化文档处理系统。 控制方法可以存储在计算机可读介质上。