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    • 1. 发明授权
    • Apparatus and method for inspecting a mask
    • 用于检查面罩的装置和方法
    • US4958074A
    • 1990-09-18
    • US218822
    • 1988-07-13
    • Edward WolfErnst HammelChristian Traher
    • Edward WolfErnst HammelChristian Traher
    • H05G1/00G01N23/225G03F1/20G03F1/22G03F1/86H01L21/027
    • G03F1/86G03F1/20G03F1/22
    • An apparatus and method for inspecting X-ray and corpuscular beam, e.g., electron or ion beam, lithography masks for defects. The apparatus includes a stage to support the mask in the path of a corpuscular inspection beam projected from a beam source above the stage, an emitter surface below the stage for emitting secondary radiation resulting from the impingement of the inspection beam that has passed through the mask onto the emitter surface, a detector arranged to receive the secondary radiation to generate image signals corresponding to this secondary radiation, and an image storage device to receive and store the image signals. The stage is moved in a stepwise fashion to bring individual mask fields that can be scanned by the beam in a single step into the beam path until all of the fields of a given mask have been scanned. The image signal of the actual mask is compared to a stored reference to detect defects which may also be repaired by the same apparatus according to preferred embodiments.
    • 用于检查X射线和粒子束的设备和方法,例如电子或离子束,用于缺陷的光刻掩模。 该装置包括一个台架,用于在从舞台上方的光束源投影的粒子检查光束的路径中支撑掩模,在该台下方的发射器表面,用于发射由穿过掩模的检查光束的撞击而产生的二次辐射 发射器表面上的检测器,布置成接收次级辐射以产生对应于该次级辐射的图像信号的检测器,以及用于接收和存储图像信号的图像存储装置。 舞台以逐步的方式移动,以将可以由光束扫描的单个遮罩场一步进入光束路径,直到已经扫描给定掩码的所有场。 将实际掩模的图像信号与存储的参考值进行比较,以检测根据优选实施例也可由相同装置修复的缺陷。
    • 4. 发明授权
    • Wireless sensor with kinetic energy power arrangement
    • 无线传感器具有动能电源布置
    • US08142103B2
    • 2012-03-27
    • US12389705
    • 2009-02-20
    • Edward Wolf
    • Edward Wolf
    • E01C23/07
    • E01C19/288
    • A system and method for sensing surface compaction effected by a compactor machine of the type having a vibrating compacting roller, and providing a sensor signal indicating sensed surface compaction to a control mounted on the compactor machine, includes a sensor for sensing compaction and providing a signal indicating sensed surface compaction. The sensor is mounted on the compacting roller support of the compactor machine. The system includes a vibration-to-electric energy converter, mounted with the sensor on the compacting roller support and subjected to vibration. The converter converts the vibration energy to electric energy which may be supplied to the sensor and to a transmitter. The transmitter is powered by the electric energy from said vibration-to-electric energy converter and transmits the sensor signal to a receiver on the machine. The receiver provides the sensor signal to a control for the machine.
    • 一种用于感测由具有振动压实辊的类型的压实机实现的表面压实的系统和方法,并且将表示感测到的表面压实的传感器信号提供给安装在压实机上的控制器,包括用于感测压实并提供信号的传感器 表明感测表面压实。 传感器安装在压实机的压实辊支架上。 该系统包括一个振动 - 电能转换器,将传感器安装在压实辊支架上并受到振动。 该转换器将振动能量转换成可以提供给传感器和发射器的电能。 发射机由来自所述振动 - 电能转换器的电能供电,并将传感器信号传输到机器上的接收器。 接收器将传感器信号提供给机器的控制。
    • 7. 发明申请
    • WIRELESS SENSOR WITH KINETIC ENERGY POWER ARRANGEMENT
    • 无线传感器,具有动力能量安排
    • US20100215434A1
    • 2010-08-26
    • US12389705
    • 2009-02-20
    • Edward Wolf
    • Edward Wolf
    • E01C19/38
    • E01C19/288
    • A system and method for sensing surface compaction effected by a compactor machine of the type having a vibrating compacting roller, and providing a sensor signal indicating sensed surface compaction to a control mounted on the compactor machine, includes a sensor for sensing compaction and providing a signal indicating sensed surface compaction. The sensor is mounted on the compacting roller support of the compactor machine. The system includes a vibration-to-electric energy converter, mounted with the sensor on the compacting roller support and subjected to vibration. The converter converts the vibration energy to electric energy which may be supplied to the sensor and to a transmitter. The transmitter is powered by the electric energy from said vibration-to-electric energy converter and transmits the sensor signal to a receiver on the machine. The receiver provides the sensor signal to a control for the machine.
    • 一种用于感测由具有振动压实辊的类型的压实机实现的表面压实的系统和方法,并且将表示感测到的表面压实的传感器信号提供给安装在压实机上的控制器,包括用于感测压实并提供信号的传感器 表明感测表面压实。 传感器安装在压实机的压实辊支架上。 该系统包括一个振动 - 电能转换器,将传感器安装在压实辊支架上并受到振动。 该转换器将振动能量转换成可以提供给传感器和发射器的电能。 发射机由来自所述振动 - 电能转换器的电能供电,并将传感器信号传输到机器上的接收器。 接收器将传感器信号提供给机器的控制。
    • 8. 发明申请
    • Direction and distance finder for locating distress signals
    • 定位遇险信号的方向和距离测距仪
    • US20050270234A1
    • 2005-12-08
    • US11189144
    • 2005-07-26
    • Edward WolfMark Clark
    • Edward WolfMark Clark
    • A63B29/02G01S3/40G01S11/06G01S13/00G01S19/48
    • G01S3/40A63B29/021G01S11/06
    • The present invention relates to a system and method for locating the direction and distance to a RF signal source from an avalanche beacon to find an avalanche victim. The system and method includes a RF signal locator and a graphical display residing on the signal locator. The receiver graphical display provides the searcher with an initial way point reading that includes directional and distance data associated with the beacon RF signal source from the avalanche beacon. The directional and distance data is based upon the received RF signals. A processor within the locator receiver receives and measures RF signals emitted by the RF signal source. The locator advantageously provides continuous subsequent way point readings for the user, where the subsequent way point readings include directional and distance data associated with the RF signal source. The distance data provided by the subsequent way point readings is based upon a path loss slope of the received RF signals from the avalanche beacon.
    • 本发明涉及一种用于定位从雪崩信标到RF信号源的方向和距离以找到雪崩受害者的系统和方法。 该系统和方法包括RF信号定位器和位于信号定位器上的图形显示器。 接收器图形显示为搜索者提供初始路点读数,其包括与雪崩信标的信标RF信号源相关联的定向和距离数据。 方向和距离数据基于所接收的RF信号。 定位器接收器内的处理器接收并测量由RF信号源发射的RF信号。 定位器有利地为用户提供连续的后续路点读数,其中随后的路点读数包括与RF信号源相关联的定向和距离数据。 由随后的路点读数提供的距离数据基于来自雪崩信号的接收的RF信号的路径损耗斜率。