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    • 3. 发明申请
    • ANTENNA SYSTEM FOR PORTABLE RADIOTELEPHONE STATION
    • 便携式无线电台站天线系统
    • WO1998018175A1
    • 1998-04-30
    • PCT/FR1997001834
    • 1997-10-14
    • THOMSON-CSFELKAEL, MauriceNGO BUI HUNG, Frédéric
    • THOMSON-CSF
    • H01Q01/24
    • H04B1/3833H01Q1/243H01Q1/245H01Q21/28
    • The antenna system comprises a first (8) and a second (7) radiating elements printed on a dielectric plate (5) of fine thickness, a first radiating element (8) for transmitting from the station to the satellite, and the second radiating element (7) for receiving signals coming from the satellite. The invention is characterised in that the dielectric plate (5) carrying the radiating elements has length and width similar to that of the radiotelephone station and is articulated about a hinge (6) enabling the dielectric plate (5) to be pressed against the back of the radiotelephone (1) when it is not being used for satellite transmission or to be unfolded by rotating about the hinge when the radiotelephone station (1) is being used for satellite transmission, and the second radiating element (7) is inserted on the dielectric plate (5) between the hinge and the first radiating element such that when the dielectric plate is in the unfolded position, the energy radiated by the first radiating element presents no risk of brain damage to the user of the portable radiotelephone station. The invention is applicable to GSM radiotelephone and satellite-earth link.
    • 天线系统包括印刷在厚度很小的电介质板(5)上的第一辐射元件(7)和第二辐射元件(7),用于从所述电台传输到所述卫星的第一辐射元件(8)和所述第二辐射元件 (7)用于接收来自卫星的信号。 本发明的特征在于,承载辐射元件的电介质板(5)具有与无线电话台的长度和宽度相似的长度和宽度,并且围绕铰链(6)铰接,使得电介质板(5)可压靠在 当无线电话机(1)不用于卫星传输时,或者当无线电话台(1)用于卫星传输时通过围绕铰链旋转而展开,并且第二辐射元件(7)插入电介质 在所述铰链和所述第一辐射元件之间的板(5),使得当所述电介质板处于展开位置时,由所述第一辐射元件辐射的能量不会对所述便携式无线电话台的用户造成脑损伤的风险。 本发明适用于GSM无线电话和卫星接地链路。
    • 5. 发明申请
    • VHV TRANSFO-RECTIFIER FOR SURFACE MOUNTING
    • 用于表面安装的VHV TRANSFO-RECTIFIER
    • WO1998008237A1
    • 1998-02-26
    • PCT/FR1997001500
    • 1997-08-19
    • THOMSON-CSFARNOULD, Guy
    • THOMSON-CSF
    • H01F38/16
    • H01F27/22H01F27/40H01F38/16
    • The invention concerns a miniaturised VHV transfo-rectifier (a few kilovolts) for surface mounting on a screen printed ceramic substrate. The primary coil (7) and the secondary coils (N1 to N8) are respectively wound on separate legs (9, 10) of the magnetic circuit, sufficiently distanced from each other for obtaining a substantial escape self-induction coil. The secondary coil is formed by stacked flat coils (G1 to G8) each comprising a respective coil (N1 to N8) and the associated diode bridge (P1 to P8), with their respective connections. The primary coil is glued on a ceramic interface plate (16) which, like said flat coils (G1 to G8), is electro-plated on its wafer to form a transfer plane blended with the receptor substrate surface.
    • 本发明涉及用于表面安装在丝网印刷陶瓷基板上的小型化VHV转换整流器(几千伏)。 初级线圈(7)和次级线圈(N1至N8)分别缠绕在磁路的分开的腿部(9,10)上,彼此充分距离,以获得大量的逃逸自感线圈。 次级线圈由各自包括相应的线圈(N1至N8)和相关联的二极管桥(P1至P8)的堆叠扁平线圈(G1至G8)及其相应的连接形成。 初级线圈胶合在陶瓷接口板(16)上,其像所述扁平线圈(G1至G8)一样在其晶片上电镀以形成与接收器衬底表面共混的转移平面。
    • 6. 发明申请
    • METHOD AND DEVICE FOR AIR-GROUND RECOGNITION FOR OPTOELECTRONIC EQUIPMENT
    • 用于光电设备的空中识别的方法和装置
    • WO1998008193A1
    • 1998-02-26
    • PCT/FR1997001501
    • 1997-08-19
    • THOMSON-CSFPEPIN, Christian
    • THOMSON-CSF
    • G06T05/00
    • G01C11/025G06T5/006
    • The invention aims at producing a panoramic scanning for high performance optoelectronic equipment. To achieve this, a high rate sensing matrix (3) and a particular video signal electronic processing (Sv) are used for reconstituting a scanning image from elemental images with a high degree of overlap and offset because of the scanning residue. In an embodiment, the implementing device flashes an incident light beam (F) towards the optical axis (LV) through an optical system (AF, GF), the video signals are transmitted to a digital circuit (50) for supplying luminance values of successive elemental images (ln+1, ln) to two image memories d'image (51, 52). A correlating processor (53) delivers an offsetting signal of the current elemental image (ln+1, ln) to an image reconstituting processor (54) to which are also transmitted the luminance values of the current elemental images. The reconstituting processor (54) comprises an image band memory (40) in which the elemental images are reset. The invention is applicable to air/ground recognition by day and/or by night.
    • 本发明旨在为高性能光电设备生产全景扫描。 为了实现这一点,由于扫描残留,使用高速率感测矩阵(3)和特定视频信号电子处理(Sv)来重构具有高度重叠和偏移的元素图像的扫描图像。 在一个实施例中,实施装置通过光学系统(AF,GF)向光轴(LV)闪烁入射光束(F),视频信号被传送到数字电路(50),以提供连续的亮度值 图像(51,52)的两个图像存储器的元素图像(ln + 1,ln)。 相关处理器(53)将当前基本图像(ln + 1,ln)的偏移信号传递给图像重构处理器(54),其也被发送到当前基本图像的亮度值。 复原处理器(54)包括其中元素图像被复位的图像带存储器(40)。 本发明适用于白天和/或夜间的空气/地面识别。
    • 10. 发明申请
    • PROCESS FOR AUTOMATICALLY CONTROLLING A SERVO-VALVE WITH CONTROLLABLE DELIVERY AND PRESSURE
    • 自动控制带有可控输送和压力的伺服阀的过程
    • WO1997009663A1
    • 1997-03-13
    • PCT/FR1996001374
    • 1996-09-06
    • THOMSON-CSFMENARD, ChristianLORINET, PatrickCHABBERT, Philippe
    • THOMSON-CSF
    • G05D16/20
    • G05D16/202Y10T137/0379Y10T137/7761
    • The invention concerns a process for automatically controlling a hydraulic servo-valve with a hydraulic slide valve (1) which is displaced by a rotary actuator (12). The process involves a first loop (2, 5, 11, 12, 4) for automatically controlling the delivery as a function of the measurement of the angular position of the rotary actuator, and a second automatic control loop (1, 3, 6, 21, 22, 23, 11, 12, 4, 2) with variable control as a function of the pressure measurement. The invention is characterized in that the first automatic control loop is a proportional action loop whose increase (Kpa) is constant for values of the absolute pressure difference value ( epsilon p) which are less than at least a threshold value, then varies in an increasing manner for values of the absolute pressure difference value ( epsilon p) which are greater than this first threshold.
    • 本发明涉及一种用液压滑阀(1)自动控制液压伺服阀的方法,液压滑阀由旋转致动器(12)移位。 该过程包括用于根据旋转致动器的角位置的测量来自动控制输送的第一回路(2,5,11,12,4),以及第二自动控制回路(1,3,6, 21,22,23,11,12,4,2),其具有作为压力测量的函数的可变控制。 本发明的特征在于,第一自动控制回路是比例动作回路,其增加值(Kpa)对于小于至少阈值的绝对压力差值(εp)的值是恒定的,然后随着增加 方式为大于该第一阈值的绝对压力差值(epsilon p)的值。