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    • 1. 发明公开
    • PERSONAL ASSISTANT GARMENT
    • KLEIDUNGSSTÜCKZUM VERSTAUENPERSÖNLICHERGEGENSTÄNDE
    • EP1372417A4
    • 2006-04-05
    • EP01941908
    • 2001-06-05
    • JORDAN SCOTT E
    • JORDAN SCOTT E
    • A41D1/00A41D13/00A41D27/20A41D1/04
    • A41D1/005A41D13/0012A41D27/205
    • The present invention relates to clothing and more particularly to a garment designed to hold portable electronic devices and other items such as wallets, keys, etc. The garment has at least one and preferably more than one pocket to hold an electronic device, i.e., cell phone. Each pocket includes an internal passageway (34, 36, 44, 46) that leads to an interior side of the vest (10). The garment also includes a central passageway system (38) which includes two passageways that are on opposite sides of the central opening of the garment. The passageways are segmented and allow for the installation of wires. The garment further includes a horizontal passageway (77) that passes from the left side of the interior of the vest (10) around the central portion of the back to the right side of the vest (10). The central passageway system (38), one or more wires can be removed and installed from an individual passageway segment without disturbing other wires neatly fastened in other passageway segments.
    • 本发明涉及衣服,更具体地说,涉及一种被设计用于保持便携式电子设备和诸如钱包,钥匙等的其它物品的服装。衣服具有至少一个并且优选地多于一个口袋以保持电子设备,即,电池 电话。 每个口袋包括一个通向背心内侧的内部通道。 衣服还包括中央通道系统,其包括在衣服的中心开口的相对侧上的两个通道。 通道是分段的,允许安装电线。 该服装进一步包括水平通道,该水平通道从背心内部的左侧绕背心的中心部分传递到背心的右侧。 中央通道系统,一个或多个电线可以从单个通道段移除和安装,而不会干扰整齐地固定在其他通道段中的其他电线。
    • 2. 发明公开
    • PERSONAL ASSISTANT GARMENT
    • 服装储存用个人财产
    • EP1372417A1
    • 2004-01-02
    • EP01941908.4
    • 2001-06-05
    • Jordan, Scott E.
    • JORDAN, Scott, E.
    • A41D1/04
    • A41D1/005A41D13/0012A41D27/205
    • The present invention relates to clothing and more particularly to a garment designed to hold portable electronic devices and other items such as wallets, keys, etc. The garment has at least one and preferably more than one pocket to hold an electronic device, i.e., cell phone. Each pocket includes an internal passageway (34, 36, 44, 46) that leads to an interior side of the vest (10). The garment also includes a central passageway system (38) which includes two passageways that are on opposite sides of the central opening of the garment. The passageways are segmented and allow for the installation of wires. The garment further includes a horizontal passageway (77) that passes from the left side of the interior of the vest (10) around the central portion of the back to the right side of the vest (10). The central passageway system (38), one or more wires can be removed and installed from an individual passageway segment without disturbing other wires neatly fastened in other passageway segments.
    • 5. 发明申请
    • VERFAHREN UND SCHALTUNGSANORDNUNG ZUR PRÄZISEN, DYNAMISCHEN DIGITALEN ANSTEUERUNG VON INSBESONDERE PIEZOAKTOREN FÜR MIKROPOSITIONIERSYSTEME
    • 用于显微系统的压电陶瓷的精确,动态数字控制的方法和电路装置
    • WO2005017634A2
    • 2005-02-24
    • PCT/EP2004/008695
    • 2004-08-03
    • PHYSIK INSTRUMENTE (PI) GMBH & CO. KGGEYER, BernhardBESCH, BertholdJORDAN, Scott
    • GEYER, BernhardBESCH, BertholdJORDAN, Scott
    • G05B19/35
    • G05B19/351G05B2219/41344H01L41/042H02N2/0075
    • Die Erfindung betrifft ein Verfahren sowie eine Schaltungsanordnung zur präzisen, dynamischen digitalen Ansteuerung von insbesondere Piezoaktoren für Mikropositioniersysteme mit einem Regler, wobei zur Minimierung von Positions-Folge-Abweichungen das zukünftige Systemverhalten abgeschätzt und aktuelle Korrektursignale im Sinne einer Feedforward-Korrektur gewonnen werden. Erfindungsgemäß gelangt zur Reduzierung von Latenzzeiten im Feedforward-Zweig des Abtastsystems das Signal der Führungs­größe über einen schaltbaren Bypass auf einen Digital-Analog-Wandler höchster Auflösung, wobei dieser Wandler mit der Abtastrate des Abtast­systems betrieben wird. Weiterhin führt die Feedforward-Strecke auf einen schnellen Digital-Analog-Wandler, welcher abtastsystemunabhängig angesteuert wird. Die die Steuerspannungen repräsentierenden Ausgangs­signale der Wandler werden addiert zur anzusteuernden Einrichtung, insbesondere einem Piezoaktor weitergeleitet, welcher mit einem Positionssensor die Regelstrecke bildet.
    • 本发明涉及一种方法和用于PR BEAR精密的电路装置,动态数字控制用于导航使用ř微定位与调节器尤其是压电致动器,以最小化位置顺序偏差ZUK导航用途nftige系统行为abgesch&AUML 可以获得在前馈校正意义上的tzt和电流校正信号。 发明Ä大街 传递到的延迟时间的F导航用途hrungs&害羞的采样的信号的前馈回路的减少; GRö道路导航用途&|接着编ouml ;;经由切换旁路到数字 - 模拟转换器H&OUML方案中,所述转换器在的采样率 扫描系统运行。 此外,前馈路径导致一个快速的数模转换器,该转换器由扫描系统独立控制。 代表控制电压的换能器的输出信号被添加到待控制的装置中,特别是被转发到压电致动器,该压电致动器形成具有位置传感器的受控系统

    • 9. 发明申请
    • OSMOTIC DELIVERY SYSTEM WITH SEMIPERMEABLE PLUG
    • 具有可切换插头的OSMOTIC传送系统
    • WO9904767A3
    • 1999-04-22
    • PCT/US9814812
    • 1998-07-24
    • ALZA CORPCHEN GUOHUADIONNE KEITH ELAUTENBACH SCOTT DJORDAN SCOTT DBERRY STEPHEN ARODENBERGER CRAIG IAYER RUPAL
    • CHEN GUOHUADIONNE KEITH ELAUTENBACH SCOTT DJORDAN SCOTT DBERRY STEPHEN ARODENBERGER CRAIG IAYER RUPAL
    • A61K9/00A61K9/22A61K9/24A61K9/52
    • A61K9/0004
    • Osmotic delivery system semipermeable body assemblies that control the delivery rate of a beneficial agent from an osmotic delivery system incorporating one of the semipermeable body assemblies. A semipermeable body assembly or plug includes a semipermeable body which is positionable in an opening of an osmotic delivery system. The semipermeable body has a hollow interior portion having a size selected to obtain a predetermined liquid permeation rate through the semipermeable body. Because the beneficial agent in the osmotic delivery system is delivered at substantially the same rate the osmotic agent imbibes liquid which has permeated through the plug from a surrounding environment, the liquid permeation rate through the plug controls the delivery rate of the beneficial agent from the osmotic delivery system. The liquid permeation rate through a semipermeable body may be varied to control the delivery rate of beneficial agent from an osmotic delivery system by changing the thickness of the semipermeable body or by changing an amount of surface area of the semipermeable body that is exposed to liquid when the osmotic delivery system is located in a liquid environment of use.
    • 渗透输送系统半透性体组件,其从包含半透性体组件的渗透输送系统中控制有益剂的输送速率。 半透性体组件或塞子包括半渗透体,其可定位在渗透递送系统的开口中。 半透明体具有中空的内部部分,其具有选择的尺寸以获得通过半透性体的预定液体渗透速率。 由于渗透输送系统中的有益剂以基本上相同的速率递送,所以渗透剂吸收从周围环境渗透通过塞子的液体,通过塞子的液体渗透速率控制有益剂从渗透压的输送速率 输送系统。 可以改变通过半透性体的液体渗透速率,以通过改变半透性体的厚度或通过改变暴露于液体的半透明体的表面积的量来控制有益剂从渗透递送系统的输送速率, 渗透输送系统位于使用的液体环境中。
    • 10. 发明申请
    • METHOD AND CIRCUIT ARRANGEMENT FOR THE PRECISE, DYNAMIC DIGITAL CONTROL OF ESPECIALLY PIEZOELECTRIC ACTUATORS FOR MICROPOSITIONING SYSTEMS
    • 方法与电路精密,动态数字化控制的微定位特定压电驱动器
    • WO2005017634A3
    • 2005-06-23
    • PCT/EP2004008695
    • 2004-08-03
    • PHYSIK INSTR PI GMBH & CO KGGEYER BERNHARDBESCH BERTHOLDJORDAN SCOTT
    • GEYER BERNHARDBESCH BERTHOLDJORDAN SCOTT
    • G05B19/35H01L41/04
    • G05B19/351G05B2219/41344H01L41/042H02N2/0075
    • The invention relates to a method and to a circuit arrangement for the precise, dynamic digital control of especially piezoelectric actuators for micropositioning systems, comprising a regulator, whereby, in order to minimize position order deviations, the future system behavior is estimated and current correction signals for the purpose of feedforward correction are obtained. The aim of the invention is to reduce latency times in the feedforward loop of the scanner system. For this purpose, the signal of the command variable is passed over a switched bypass to a high-resolution digital-to-analog converter, said converter being operated at the scan rate of the scanner system. The feedforward loop leads to a fast digital-to-analog converter which is controlled in a scanner system-independent manner. The output signals of the converters representing the control voltages are added to the device to be controlled, especially they are forwarded to a piezoelectric actuator which together with the position sensor forms the controlled system.
    • 本发明涉及的方法和特别是压电致动器用于与调节器,其中,以最小化位置顺序的偏差和在一个前馈修正的术语获得电流修正信号来估计未来的系统行为微定位的精确动态数字控制的电路布置。 根据本发明,传送到的延迟时间在参考变量的采样的信号的前馈回路经由切换旁路还原成一个数字 - 模拟转换器的最高分辨率,在该转换器设置在扫描系统的采样率运行。 此外,前馈回路导致被驱动abtastsystemunabhängig快速数字 - 模拟转换器。 表示所述转换器的输出信号的控制电压被添加到要被控制的设备,特别是压电致动器转发,其与位置传感器,所述受控系统形成。