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    • 12. 发明授权
    • Radiation grid, a radiographic apparatus equipped therewith, and a method of manufacturing the radiation grid
    • 辐射网格,配备其的射线照相设备,以及制造辐射网格的方法
    • US08744049B2
    • 2014-06-03
    • US12986260
    • 2011-01-07
    • Shoji Kuwabara
    • Shoji Kuwabara
    • G21K1/02G21K1/00H01J3/28
    • B32B37/1284B32B38/1875G21K1/025
    • A radiation grid comprises an absorber including absorbing foil strips extending in a direction of extension for absorbing radiation, the absorbing foil strips being arranged in a direction of arrangement perpendicular to the direction of extension; a first covering member for covering one planar surface of the absorber; a second covering member for covering a surface at the opposite side of the one surface of the absorber; first joint members each provided in an area of adjacence between the first covering member and one of the absorbing foil strips forming the absorber, for integrating the two parts; second joint members each provided in an area of adjacence between the second covering member and one of the absorbing foil strips forming the absorber, for integrating the two parts; and connecting members provided to connect ends in the direction of extension of the absorbing foil strips. The connecting members are disposed clear of a middle portion in the direction of extension of each absorbing foil strip.
    • 辐射格栅包括吸收体,该吸收体包括吸收箔片条,其沿延伸方向延伸以吸收辐射,所述吸收箔条沿垂直于延伸方向的排列方向排列; 用于覆盖吸收体的一个平坦表面的第一覆盖部件; 用于覆盖吸收体的一个表面的相反侧的表面的第二覆盖部件; 第一接合构件分别设置在第一覆盖构件和形成吸收体的吸收箔条中的一个之间的相邻区域中,用于整合两个部分; 第二接头构件分别设置在第二覆盖构件和形成吸收体的吸收箔条中的一个之间的相邻区域中,用于使两个部分一体化; 以及连接构件,其设置成在吸收箔条的延伸方向上连接端部。 连接构件在每个吸收箔片条的延伸方向上设置成远离中间部分。
    • 14. 发明授权
    • Device for scanning a beam of charged particles
    • 用于扫描带电粒子束的装置
    • US4396841A
    • 1983-08-02
    • US276375
    • 1981-06-16
    • Gennady I. RazinDmitry S. Valtman
    • Gennady I. RazinDmitry S. Valtman
    • H01J3/28H01J33/00H01J3/26
    • H01J3/28H01J33/00
    • A device for scanning a beam of charged particles comprises longitudinal and cross-sectional scanning electromagnets (1,4) to deflect the beam, respectively, lengthwise and crosswise over the exit window (2), longitudinal and cross-sectional scanning current generators (5, 6) to energize the respective electromagnets (1, 4), and a variable delayer (7) connected between the longitudinal scanning current generator (5) and the synchronizing input of the cross-sectional scanning current generator (6) so that pulses arrive at the input of the variable delayer (7) at the moments when current in the windings of the electromagnet (1) reaches its peak. The variable delayer (7) provides N delay times different from each other by a value of .DELTA. t and set in succession as the pulses arrive at its input, the values N and .DELTA. t being determined from the following relationships:.DELTA.t.ltoreq.d/2f.sub.1 L; N.gtoreq.1/f.sub.2 .DELTA.twhered--diameter of the charged particle beam,f.sub.1 --frequency of the longitudinal scanning,f.sub.2 --frequency of the cross-sectional scanning,L--value of maximum deflection of the beam along the length of the exit window.
    • PCT No.PCT / SU79 / 00098 Sec。 371日期1981年6月16日第 102(e)日期1981年6月16日PCT提交1979年10月18日PCT公布。 出版物WO81 / 0122800 用于扫描带电粒子束的装置包括纵向和横截面的扫描电磁体(1,4),以分别沿出射窗(2)纵向和横向偏转光束,纵向和横向 用于对各个电磁体(1,4)进行通电的分段扫描电流发生器(5,6)和连接在纵向扫描电流发生器(5)和横截面扫描电流发生器的同步输入端之间的可变延迟器(7) (6),使得脉冲在电磁体(1)的绕组中的电流达到其峰值的时刻到达可变延迟器(7)的输入端。 可变延迟器(7)通过DELTA t的值提供不同的N个延迟时间,并且随着脉冲到达其输入端而连续设置,根据以下关系确定值N和DELTA t:DELTA t < d / 2f1L; N> / = 1 / f2 DELTA t其中带电粒子束的d直径,纵向扫描的f1频率,横截面扫描的f2频率,沿着长度的波长的最大偏转的L值 出口窗口。
    • 19. 发明授权
    • Beam scanning method and apparatus for ion implantation
    • 光束扫描方法和离子注入装置
    • US4421988A
    • 1983-12-20
    • US349742
    • 1982-02-18
    • David A. RobertsonNorman L. Turner
    • David A. RobertsonNorman L. Turner
    • H01J37/302H01J37/317H01L21/265G21K5/00H01J3/28
    • H01J37/3171H01J37/302
    • Method of and apparatus for scanning a charged particle beam over a semiconductor wafer in a prescribed pattern. A triangular waveform, including alternating positive and negative ramp portions of constant slope and controllable time durations, is applied to a horizontal deflection system and produces horizontal scanning of the beam. The time durations of the ramp portions determine the length of the horizontal scan lines and are controlled according to a predetermined sequence so as to provide the prescribed pattern. The triangular waveform is provided by an integrator which receives a square wave from a frequency source of controllable frequency. The predetermined sequence is stored in a read only memory which controls the frequency of the frequency source. At the completion of each ramp portion, a voltage applied to a vertical deflection system is incremented so as to step the beam vertically up or down.
    • 用于以规定图案在半导体晶片上扫描带电粒子束的方法和装置。 包括具有恒定斜率和可控持续时间的交替的正和负斜坡部分的三角波形被施加到水平偏转系统,并产生横梁的水平扫描。 斜坡部分的持续时间确定水平扫描线的长度,并根据预定的顺序进行控制,以便提供规定的图案。 三角波形由积分器提供,该积分器从可控频率的频率源接收方波。 预定序列存储在控制频率源的频率的只读存储器中。 在每个斜坡部分完成时,施加到垂直偏转系统的电压递增,以使波束垂直上升或下降。
    • 20. 发明专利
    • 用於光學感測器之信號轉換系統
    • 用于光学传感器之信号转换系统
    • TW201947627A
    • 2019-12-16
    • TW108115381
    • 2019-05-03
    • 美商梅瑞堤儀器公司VERITY INSTRUMENTS, INC.
    • 布洛克 賴瑞 阿洛斯BULLOCK, LARRY ARLOS
    • H01J3/10H01J3/28H04N5/30
    • 本發明提供一種光學儀器、一種將一光學輸入轉換為一數位信號輸出之方法,及一種光譜儀。在一個實施例中,該光學儀器包括:(1)一光學感測器,其經組態以接收一光學輸入且將該光學輸入轉換為電信號;及(2)一轉換系統,其具有:轉換電路,其具有經組態以接收該等電信號且將該等電信號修改為類比輸出之多個並行信號通道;一類比開關,其經組態以根據該光學儀器之一操作模式而選擇該等並行信號通道中之一者;及一類比轉數位轉換器,其經組態以自該所選並行信號通道接收該類比輸出且將該類比輸出轉換為一數位信號輸出。
    • 本发明提供一种光学仪器、一种将一光学输入转换为一数码信号输出之方法,及一种光谱仪。在一个实施例中,该光学仪器包括:(1)一光学传感器,其经组态以接收一光学输入且将该光学输入转换为电信号;及(2)一转换系统,其具有:转换电路,其具有经组态以接收该等电信号且将该等电信号修改为模拟输出之多个并行信号信道;一模拟开关,其经组态以根据该光学仪器之一操作模式而选择该等并行信号信道中之一者;及一模拟转数码转换器,其经组态以自该所选并行信号信道接收该模拟输出且将该模拟输出转换为一数码信号输出。