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    • 1. 发明授权
    • Safety device for a pre-filled syringe and injection device
    • 预充注射器和注射装置的安全装置
    • US09352099B2
    • 2016-05-31
    • US13808084
    • 2011-06-21
    • Gareth RobertsChris WardMatthew Ekman
    • Gareth RobertsChris WardMatthew Ekman
    • A61M5/32A61M5/28
    • A61M5/3204A61M5/28A61M5/326A61M5/3272A61M2005/3267
    • According to the invention, a safety device for a pre-filled syringe comprises a hollow support body for mounting the pre-filled syringe therein, a hollow needle shield that is slidable relative to the support body and guiding means for guiding the movement of the needle shield relative to the support body. The guiding means comprise a flexible arm with a guide pin, a guide track and a separating wall. The guide pin extends from the flexible arm in a radial direction, and protrudes into the guide track. The separating wall extends into the guide track in a direction parallel to a central axis of the safety device. When the needle shield is slid relative to the support body the guide pin moves along the guide track to deflect the flexible arm in a lateral direction perpendicular to the central axis and the movement of the guide pin along the guide track is guided by the interplay of the flexible arm and the separating wall.
    • 根据本发明,用于预填充注射器的安全装置包括用于将预填充的注射器安装在其中的中空支撑体,相对于支撑体可滑动的中空针护罩和用于引导针的运动的引导装置 屏蔽相对于支撑体。 引导装置包括具有引导销,导轨和分隔壁的柔性臂。 引导销从柔性臂沿径向方向延伸并突出到导轨中。 分隔壁沿平行于安全装置的中心轴线的方向延伸到导轨中。 当针罩相对于支撑体滑动时,引导销沿导轨移动,以使柔性臂沿垂直于中心轴线的横向方向偏转,并且引导销沿着导轨的移动由相互作用引导 柔性臂和分隔壁。
    • 2. 发明授权
    • System and method for synchronizing a 3D video projector
    • 用于同步3D视频投影仪的系统和方法
    • US08556429B2
    • 2013-10-15
    • US13305566
    • 2011-11-28
    • Michael HusakChris WardRobert MuellerJoesph Lawrence
    • Michael HusakChris WardRobert MuellerJoesph Lawrence
    • G03B21/00H04N13/04
    • H04N13/332G03B33/00G03B35/16G03B35/24H04N9/3114H04N9/312H04N13/324H04N13/337H04N13/339H04N13/341H04N13/344H04N13/363H04N13/365H04N13/398
    • A system and method for improving stereoscopic images produced by a projecting device containing a single chip DMD, seen through an eye-switching device, such as a pair of liquid crystal (LC) shutter glasses. The system and method are used with a video projector used with a multiple-color, color switching device The color switching device produces Blue, Red and Green lights and at least one non-critical segment. A color sequencing firmware resident in the video projector is used to align a non-critical segment in front of the projector's main light source during the eye-switching device's unstable transition phase. If the non-critical segment is transmissive, the firmware controls the DMD so light is discontinued. If the non-critical segment is non-transmissive, light is physically blocked. If the non-critical segment is electronically defined, the firmware directly controls the DMD to discontinue the transmission of light for the duration of device's unstable transition phase.
    • 一种用于改进由包含单芯片DMD的投影装置产生的立体图像的系统和方法,通过诸如一对液晶(LC)快门眼镜的眼睛切换装置观察。 该系统和方法用于与多色彩色切换装置一起使用的视频投影仪。彩色切换装置产生蓝色,红色和绿色光以及至少一个非关键部分。 驻留在视频投影机中的彩色排序固件用于在眼睛切换装置的不稳定过渡阶段期间将投影机主光源前面的非关键区段对准。 如果非关键段是透射性的,则固件控制DMD,因此中断光。 如果非关键部分是非透光的,则光线被物理阻挡。 如果非关键段被电子定义,固件将直接控制DMD在设备不稳定转换阶段的持续时间内中断光的传输。
    • 4. 发明申请
    • SYSTEM AND METHOD FOR SYNCHRONIZING A 3D VIDEO PROJECTOR
    • 用于同步3D视频投影仪的系统和方法
    • US20120300047A1
    • 2012-11-29
    • US13305566
    • 2011-11-28
    • Michal HusakJoseph D. LawrenceRobert MuellerChris Ward
    • Michal HusakJoseph D. LawrenceRobert MuellerChris Ward
    • H04N13/04
    • H04N13/332G03B33/00G03B35/16G03B35/24H04N9/3114H04N9/312H04N13/324H04N13/337H04N13/339H04N13/341H04N13/344H04N13/363H04N13/365H04N13/398
    • A system and method for improving stereoscopic images produced by a projecting device containing a single chip DMD, seen through an eye-switching device, such as a pair of liquid crystal (LC) shutter glasses. The system and method are used with a video projector used with a multiple-color, color switching device The color switching device produces Blue, Red and Green lights and at least one non-critical segment. A color sequencing firmware resident in the video projector is used to align a non-critical segment in front of the projector's main light source during the eye-switching device's unstable transition phase. If the non-critical segment is transmissive, the firmware controls the DMD so light is discontinued. If the non-critical segment is non-transmissive, light is physically blocked. If the non-critical segment is electronically defined, the firmware directly controls the DMD to discontinue the transmission of light for the duration of device's unstable transition phase.
    • 一种用于改进由包含单芯片DMD的投影装置产生的立体图像的系统和方法,通过诸如一对液晶(LC)快门眼镜的眼睛切换装置观察。 该系统和方法用于与多色彩色切换装置一起使用的视频投影仪。彩色切换装置产生蓝色,红色和绿色光以及至少一个非关键部分。 驻留在视频投影机中的彩色排序固件用于在眼睛切换装置的不稳定过渡阶段期间将投影机主光源前面的非关键区段对准。 如果非关键段是透射性的,则固件控制DMD,因此中断光。 如果非关键部分是非透光的,则光线被物理阻挡。 如果非关键段被电子定义,固件将直接控制DMD在设备不稳定转换阶段的持续时间内中断光的传输。
    • 5. 发明授权
    • System and method for synchronizing a 3D video projector
    • 用于同步3D视频投影仪的系统和方法
    • US08066377B1
    • 2011-11-29
    • US11511588
    • 2006-08-28
    • Michal HusakJoseph D. LawrenceRobert MuellerChris Ward
    • Michal HusakJoseph D. LawrenceRobert MuellerChris Ward
    • G03B21/00H04N13/04
    • H04N13/332G03B33/00G03B35/16G03B35/24H04N9/3114H04N9/312H04N13/324H04N13/337H04N13/339H04N13/341H04N13/344H04N13/363H04N13/365H04N13/398
    • A system and method for improving stereoscopic images produced by a projecting device containing a single chip DMD, seen through an eye-switching device, such as a pair of liquid crystal (LC) shutter glasses. The system and method are used with a video projector designed to be used with a multiple-color, color switching device, such as a color wheel. The color wheel includes at least three critical color segments. The color wheel may also physically include or be electronically re-defined to include at least one non-critical segment. A color sequencing firmware resident in the video projector is used to align a non-critical segment in front of the projector's main light source during the eye-switching device's unstable transition phase. If the non-critical segment is transmissive, the firmware controls the DMD so that light is discontinued. If the non-critical segment is non-transmissive, the light is physically blocked. If the non-critical segment is electronically defined, the firmware directly controls the DMD to discontinue the transmission of light for at least the duration of the eye-switching device's unstable transition phase.
    • 一种用于改进由包含单芯片DMD的投影装置产生的立体图像的系统和方法,通过诸如一对液晶(LC)快门眼镜的眼睛切换装置观察。 该系统和方法与设计用于多色彩色切换装置如色轮的视频投影仪一起使用。 色轮包括至少三个关键色块。 色轮还可以物理地包括或被电子地重新定义为包括至少一个非关键段。 驻留在视频投影机中的彩色排序固件用于在眼睛切换装置的不稳定过渡阶段期间将投影机主光源前面的非关键区段对准。 如果非关键段是透射性的,则固件控制DMD以使光停止。 如果非关键段是非透射性的,则物理上被遮挡。 如果非关键段被电子定义,则固件直接控制DMD至少在眼睛切换设备的不稳定转变阶段的持续时间内停止发射光。
    • 6. 发明申请
    • Apparatus and method for OFDM data communications
    • OFDM数据通信的装置和方法
    • US20060052139A1
    • 2006-03-09
    • US11239347
    • 2005-09-30
    • Koon TeoDavid SteerChris Ward
    • Koon TeoDavid SteerChris Ward
    • H04B1/38H04M1/00
    • H04W16/28H04L27/2602H04L27/2614H04L27/2626
    • A radio system employing Orthogonal Frequency Division Multiplexed (OFDM) includes a Base Transceiver Station (BTS) along with a number of mobile terminals located within a coverage area of the BTS. In this system, a target mobile terminal is provided with a focused transmission beam to receive high data rate traffic information while the remainder of the mobile terminals are provided with pilot and signalling information. To achieve both objectives, a BTS is implemented with a transmission apparatus that generates a directional transmission beam for the data traffic information. In one design, this directional beam transmits the pilot and signalling information along with the data traffic information by rotating the beam within the coverage area. In another design, the BTS has a transmission apparatus that generates more than one transmission beam. In one case, the BTS transmits a directional transmission beam for the data traffic information required by the target mobile terminal and a second broad transmission beam for the pilot and signalling information required by the all of the mobile terminals. In another case, the BTS transmits two directional transmissions beams, one beam for data traffic information and one rotating beam for pilot and signalling information.
    • 使用正交频分复用(OFDM)的无线电系统包括基站收发台(BTS)以及位于BTS的覆盖区域内的多个移动终端。 在该系统中,目标移动终端设置有聚焦的发射波束以接收高数据速率业务信息,而剩余的移动终端被提供有导频和信令信息。 为了实现这两个目标,通过生成用于数据业务信息的定向发送波束的发送装置来实现BTS。 在一种设计中,该定向波束通过在覆盖区域内旋转波束来传输导频信号和信令信息以及数据业务信息。 在另一种设计中,BTS具有产生多于一个发射波束的发射装置。 在一种情况下,BTS发送用于目标移动终端所需的数据业务信息的定向发射波束和用于导频的第二广泛发射波束和所有移动终端所需的信令信息。 在另一种情况下,BTS发送两个定向传输波束,一个用于数据业务信息的波束和一个用于导频和信令信息的旋转波束。
    • 8. 发明申请
    • Wireless Communications System and Method
    • 无线通信系统与方法
    • US20120149420A1
    • 2012-06-14
    • US13347879
    • 2012-01-11
    • James M. NadenChris WardAndrew W. Jeffries
    • James M. NadenChris WardAndrew W. Jeffries
    • H04W84/18
    • H04W16/06H04B1/7097H04B2201/70702H04W16/32
    • A mobile communications system having improved spectral efficiency, and methods and apparatus to achieve this improved spectral efficiency. In the mobile communications system communication with a plurality of mobile terminals is provided by a base station. Within the system terminals are adapted to communicate with one or more adjacent similar terminals to establish groups of terminals, called micro-cells. Each terminal within a micro-cell receives signals from the base station and then performs a first processing step on these signals. These processed signals are shared with all the other terminals within the micro-cell. Each terminal then performs a second processing step on the information it has received from all the other terminals within the micro-cell which enables it to derive a signal intended for reception by that terminal. The technique is applicable to both the uplink and the down link and also to peer to peer communication.
    • 具有改进的频谱效率的移动通信系统以及实现这种改进的频谱效率的方法和装置。 在移动通信系统中,由基站提供与多个移动终端的通信。 在系统内,终端适于与一个或多个相邻的类似终端通信,以建立称为微小区的终端组。 微小区内的每个终端从基站接收信号,然后对这些信号执行第一处理步骤。 这些处理的信号与微小区内的所有其他终端共享。 然后,每个终端对其从微小区内的所有其他终端接收到的信息执行第二处理步骤,使其能够导出旨在由该终端接收的信号。 该技术适用于上行链路和下行链路,也适用于对等通信。