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    • 3. 发明授权
    • Control device for operating a window wiper in a motor vehicle
    • 用于操作机动车辆中的刮水器的控制装置
    • US6121741A
    • 2000-09-19
    • US98002
    • 1998-06-16
    • Josef BergerAlf BlessingRainer MaeckelRoland Mauser
    • Josef BergerAlf BlessingRainer MaeckelRoland Mauser
    • B60S1/08G05B5/00
    • B60S1/0818
    • A control device operates a window wiper in a motor vehicle, and includes a switching device for the selection of several wiping functions, a sensor device for determining a wetting degree of a window, and an electronic analyzing system. The window wiper is capable of being operated, depending on the wiping function selected by the user, in a continuous wiping operation and/or in a single wiping operation. The electronic analyzing system, during a first wiping function, analyzes the determined wetting degree of the window and, depending on the determined wetting degree of the window, in a continuous wiping operation, sets a wiping frequency and/or, in a single wiping operation, activates a wiping cycle for the window wiper. The electronic analyzing system sets the wiping frequency of the window wiper in the continuous wiping operation during a second wiping function within a second wiping frequency band, and during a third wiping function, within a third wiping frequency band, and during the first wiping function, within a first wiping frequency band, depending on the analysis of the wetting degree of the window, an actual wiping frequency being set which is as optimal as possible. If, during the switching between the wiping functions, a change of the wiping frequency band is required, the actual wiping frequency, during a change from the second wiping frequency band to the third wiping frequency band is increased by a defined number "n" wiping cycles per minute or, during a change from the third wiping frequency band to the second wiping frequency band is reduced by a defined number "m" wiping cycles per minute.
    • 控制装置操作机动车辆中的刮水器,并且包括用于选择若干擦拭功能的开关装置,用于确定窗口的润湿度的传感器装置和电子分析系统。 根据用户选择的擦拭功能,在连续擦拭操作和/或单次擦拭操作中,可以操作窗户刮水器。 电子分析系统在第一擦拭功能期间分析所确定的窗口的润湿度,并且根据所确定的窗口的润湿度,在连续擦拭操作中,设置擦拭频率和/或在单次擦拭操作 ,激活窗刮器的擦拭周期。 电子分析系统在第二擦拭频带内的第二擦拭功能期间,在第三擦拭功能期间,在第三擦拭频带内,以及在第一擦拭功能期间,在连续擦拭操作期间设置窗刮水器的擦拭频率, 在第一擦拭频带内,根据窗口的润湿度的分析,设定尽可能最佳的实际擦拭频率。 如果在擦拭功能之间的切换期间需要改变擦拭频带,则在从第二擦拭频带到第三擦拭频带的改变期间的实际擦拭频率增加了定义的数量“n”擦除 在从第三擦拭频带到第二擦拭频带的变化期间,每分钟的周期数减少规定数量的“m”次擦拭周期。
    • 6. 发明授权
    • End and side pumped laser
    • 端和侧泵浦激光
    • US4794615A
    • 1988-12-27
    • US62140
    • 1987-06-12
    • Josef BergerDonald R. Scifres
    • Josef BergerDonald R. Scifres
    • H01S3/0915H01S3/0933H01S3/0941H01S3/09
    • H01S3/0933H01S3/0915H01S3/0941H01S3/094057H01S3/09415H01S3/1022
    • A laser having a combination of end and side pumping so as to produce high power pulsed output with little or no delay between side pump pulses and laser output pulses, with suppressed spiking due to gain switching, and with high modulation rates. An active medium, such as a solid state laser rod, in a resonant optical cavity is pumped by a first optical pump source directing radiant energy into an end of the active medium so as to encourage or establish lasing operation in a desired transverse cavity mode, such as the TEM.sub.00 mode. A second optical pump source directs additional radiant energy into a side of the active medium so as to amplify the intensity of the laser output in the desired mode. Typically, both pump sources are diode laser arrays, the first operating continuous wave or quasi-continuous wave, the second operating in high peak power pulses or being modulated at up to high data rates, that are determined by the cavity and active medium lifetimes and the ratio of the pumping power level to the threshold pumping level.
    • 激光器具有端部和侧面泵浦的组合,以便在侧泵浦脉冲和激光输出脉冲之间产生高功率脉冲输出,具有很少或没有延迟,并且由于增益切换而被抑制的尖峰以及高调制速率。 在谐振光腔中的诸如固态激光棒的活性介质被第一光泵浦源泵浦,该辐射源将辐射能引导到有源介质的一端,以便在期望的横腔模式中促进或建立激光工作, 如TEM00模式。 第二光泵浦源将额外的辐射能量引导到有源介质的一侧,以便以期望的模式放大激光输出的强度。 典型地,两个泵浦源都是二极管激光器阵列,第一个工作的连续波或准连续波,第二个工作在高峰值功率脉冲或以高达数据速率进行调制,由空腔和活动介质寿命决定, 泵浦功率水平与阈值泵送水平的比值。
    • 8. 发明申请
    • Systems and Methods for Accelerating Access to Web Resources by Linking Browsers
    • 通过链接浏览器加速访问Web资源的系统和方法
    • US20080301562A1
    • 2008-12-04
    • US12109244
    • 2008-04-24
    • Josef BergerSergey Armishev
    • Josef BergerSergey Armishev
    • G06F3/00
    • G06F16/958
    • Retrieval of information and resources over the Internet is accelerated by automatically linking and synchronizing multiple device browsers in multiple tabs of device windows. The parallel tasks of access and execution, enables a client computerized device to search for information in parallel by activating multiple web sites' search engines, activating translation of web pages content by multiple translation engines at the same time and activating and deactivating a multiplicity of web resources in parallel. The method includes assigning multiple device browsers to multiple tabs in multiple device windows, thus enabling the efficient presentation of multiple web resources and enabling the user to speed the selection and switching between the accessed web resources displayed as tabs on device windows. Browsers linking topologies include; linking one to one, one to many, and many to many with unidirectional or two directional linking.
    • 通过在设备窗口的多个选项卡中自动链接和同步多个设备浏览器来加速通过Internet检索信息和资源。 访问和执行的并行任务使得客户端计算机化设备可以通过激活多个网站的搜索引擎来并行搜索信息,同时激活多个翻译引擎对网页内容的翻译,并激活和停用多个网页 资源并行。 该方法包括将多个设备浏览器分配到多个设备窗口中的多个选项卡,从而实现多个Web资源的有效呈现,并使用户能够加速在设备窗口上显示为选项卡的访问Web资源之间的选择和切换。 链接拓扑的浏览器包括 连接一对一,一对多,多对多与单向或双向链接。
    • 9. 发明授权
    • Enclosure for microwave radio transceiver with integral refractive antenna
    • 具有集成折射天线的微波无线电收发器的外壳
    • US06462717B1
    • 2002-10-08
    • US09927300
    • 2001-08-10
    • Glenn E. WheelockJosef BergerRussell K. Layton, Jr.
    • Glenn E. WheelockJosef BergerRussell K. Layton, Jr.
    • H01Q142
    • H01Q25/008H01Q1/42H01Q3/24
    • An all-weather housing for outdoor microwave radio nodes arranged in a network, each node capable of directing or receiving a beam of microwave energy in a selected direction, the housing including a shroud enclosing a transceiver, antenna, switches, and utilities. Each shroud has a radome projecting from the shroud in line of sight relation to other radomes in the network. A microwave radio transceiver is disposed within the shroud, operating on a scheduled transmission and reception basis in accordance with a schedule provided in a control channel amidst data. A ball-shaped microwave refractive lens is located adjacent to the radome, inside of the shroud, with a curved array of feed ports and switches, with the feed ports communicating microwave energy between the transceiver and the radome through the lens in multiple selected directions.
    • 布置在网络中的户外微波无线电节点的全天候住房,每个节点能够沿所选方向引导或接收微波能量束,所述壳体包括封闭收发器,天线,开关和实用程序的护罩。 每个护罩具有从护罩突出的雷达罩,其与网络中的其它天线罩视线相关。 微波无线电收发器设置在护罩内,根据在数据中的控制信道中提供的调度在调度的发送和接收的基础上操作。 球形微波折射透镜位于护罩内部的雷达罩附近,具有弯曲阵列的进料口和开关,进料口在多个选定方向通过透镜在收发器和天线罩之间连通微波能量。