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    • 1. 发明申请
    • METHOD OF CALIBRATING AN X-RAY DETECTOR
    • 校准X射线探测器的方法
    • US20110233394A1
    • 2011-09-29
    • US13002545
    • 2010-11-30
    • Francis GlasserMichel Garcin
    • Francis GlasserMichel Garcin
    • G01D18/00
    • G01T7/005G01T1/247
    • The general field of the invention includes methods of calibrating X-ray detection systems, the systems including at least one X-ray generator and a detection array having a matrix of detecting semiconductor pixels and processing and calibration electronics. The calibration method includes, for all or some of the pixels: operating the X-ray generator at its nominal high voltage, the generator being placed opposite the detector; counting, using the processing and calibration electronics, the pulses emitted by each pixel through the effect of the radiation produced by the generator; establishing, for each pixel, an amplitude distribution for the counted pulses; applying, to each amplitude distribution, a statistical indicator so as to identify a particular amplitude, this particular amplitude then corresponding to the energy corresponding to said statistical indicator; and adjusting, using the processing and calibration electronics, calibration parameters for each pixel, taking account of the energy-amplitude relationship thus established.
    • 本发明的一般领域包括校准X射线检测系统的方法,所述系统包括至少一个X射线发生器和具有检测半导体像素的矩阵的检测阵列以及处理和校准电子器件。 校准方法包括对于所有或某些像素:将X射线发生器以其标称高电压操作,发生器放置在与检测器相对的位置; 使用处理和校准电子元件计数由每个像素通过发生器产生的辐射的影响发射的脉冲; 为每个像素建立计数脉冲的幅度分布; 向每个幅度分布施加统计指示符,以便识别特定幅度,该特定幅度然后对应于对应于所述统计指标的能量; 并且考虑到如此建立的能量 - 幅度关系,对每个像素调整使用处理和校准电子学的校准参数。
    • 2. 发明授权
    • Method of calibrating an X-ray detector
    • 校准X射线探测器的方法
    • US08491190B2
    • 2013-07-23
    • US13002545
    • 2010-11-30
    • Francis GlasserMichel Garcin
    • Francis GlasserMichel Garcin
    • G01T7/00
    • G01T7/005G01T1/247
    • The general field of the invention includes methods of calibrating X-ray detection systems, the systems including at least one X-ray generator and a detection array having a matrix of detecting semiconductor pixels and processing and calibration electronics. The calibration method includes, for all or some of the pixels: operating the X-ray generator at its nominal high voltage, the generator being placed opposite the detector; counting, using the processing and calibration electronics, the pulses emitted by each pixel through the effect of the radiation produced by the generator; establishing, for each pixel, an amplitude distribution for the counted pulses; applying, to each amplitude distribution, a statistical indicator so as to identify a particular amplitude, this particular amplitude then corresponding to the energy corresponding to said statistical indicator; and adjusting, using the processing and calibration electronics, calibration parameters for each pixel, taking account of the energy-amplitude relationship thus established.
    • 本发明的一般领域包括校准X射线检测系统的方法,所述系统包括至少一个X射线发生器和具有检测半导体像素的矩阵的检测阵列以及处理和校准电子器件。 校准方法包括对于所有或某些像素:将X射线发生器以其标称高电压操作,发生器放置在与检测器相对的位置; 使用处理和校准电子元件计数由每个像素通过发生器产生的辐射的影响发射的脉冲; 为每个像素建立计数脉冲的幅度分布; 对每个幅度分布应用统计指示符,以便识别特定幅度,该特定幅度然后对应于对应于所述统计指标的能量; 并且考虑到如此建立的能量 - 幅度关系,对每个像素调整使用处理和校准电子学的校准参数。
    • 3. 发明授权
    • Insulation-stripping electrical contact device
    • 绝缘剥离电接点装置
    • US5848911A
    • 1998-12-15
    • US649970
    • 1996-05-15
    • Michel Garcin
    • Michel Garcin
    • H01R4/24
    • H01R4/2429
    • The invention concerns an insulation-stripping electrical contact device (1). Contact (1) according to the invention comprises two asymmetrical blades (10, 11), one being wider than the other. These two blades (10, 11) are positioned in two grooves (200, 201) produced in the walls of slots (21) for introduction of cable (3). The wider blade (10) is positioned in a groove (201) forming an angle with the introduction direction (.DELTA.') of cable (3) and the narrower blade (11) is positioned in a groove (200) forming an angle of 90.degree. with this same direction (.DELTA.'). For cables (3) of small section, only the wider blade (10) is bent and pressed; for cables (3) of greater section, the narrower blade (11) is pushed into its housing (200). In both cases, a wedging effect and a displacement of the cut points are produced.
    • 本发明涉及绝缘剥离电接触装置(1)。 根据本发明的触点(1)包括两个不对称的叶片(10,11),一个比另一个更宽。 这两个叶片(10,11)位于在槽(21)的壁中产生的用于引入电缆(3)的两个凹槽(200,201)中。 较宽的刀片(10)定位在与电缆(3)的引入方向(DELTA')形成一定角度的凹槽(201)中,并且较窄的刀片(11)位于形成90°角的凹槽(200)中 DEG具有相同的方向(DELTA')。 对于小截面的电缆(3),只有较宽的刀片(10)被弯曲并按压; 对于较大部分的电缆(3),较窄的刀片(11)被推入其壳体(200)中。 在这两种情况下,产生楔形效应和切割点的位移。
    • 5. 发明授权
    • Low cross-talk network connector
    • 低串扰网络连接器
    • US5913702A
    • 1999-06-22
    • US776397
    • 1997-04-08
    • Michel Garcin
    • Michel Garcin
    • H01R24/00H04M1/02H05K1/02H01R23/02
    • H01R13/6469H01R13/6658H04M1/0293H01R24/64H01R4/2416H05K1/0216Y10S439/941
    • Low cross-talk network connector comprising a base plate (11) of an insulating material including several inlets (A, . . . , H) and outlets (1, . . . , 8) electrically interconnected by means of electrical conductors arranged at intervals therealong. The base plate is removably mounted in a housing (20) including means for electrically connecting the base plate outlets with the external outlet conductor wires, the inlets (A, . . . , H) of the base plate being connected to the means for electrically connecting the internal inlet conductor wires. The base plate (11) comprises two substantially perpendicular planes, the inlets (A, . . . , H) being located in a first plane and the outlets (1, . . . , 8) being located in a second plane, each inlet being connected to the corresponding outlet by a lead (10) with a first portion extending in the first plane and a second portion extending in the second plane.
    • PCT No.PCT / FR95 / 01042 Sec。 371日期1997年4月8日 102(e)日期1997年4月8日PCT提交1995年8月2日PCT公布。 出版物WO96 / 05635 日期1996年2月22日低互连网络连接器包括一个绝缘材料的基板(11),绝缘材料包括几个入口(A,...,H)和出口(1 ...,8),这些插座通过 电导体间隔排列。 基板可移除地安装在壳体(20)中,包括用于将基板出口电连接到外部出口导线的装置,底板的入口(A,...,H)连接到电气装置 连接内部入口导线。 基板(11)包括两个基本上垂直的平面,入口(A 1,...,H)位于第一平面中,并且出口(1 ...,8)位于第二平面中,每个入口 通过具有在第一平面中延伸的第一部分的引线(10)连接到相应的出口,以及在第二平面中延伸的第二部分。