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    • 1. 发明授权
    • System for detecting individuals or objects passing through an entrance-exit of a defined space
    • 用于检测通过定义空间的入口的个人或物体的系统
    • US07026924B2
    • 2006-04-11
    • US10469344
    • 2001-12-19
    • Marc DegrauweThierry RozOlivier Desjeux
    • Marc DegrauweThierry RozOlivier Desjeux
    • G08B23/00
    • G07B15/02G06K7/0008G06K19/0723G07C9/00G07C9/00111
    • There is disclosed a system for detecting the passage of persons or objects through an entry-exit (4) to a delimited space (2), including (i) a detection device including transmission means (8) for transmitting different first and second electromagnetic signals (a, b) in respectively first and second communication regions (A, B) spatially separated from each other and partially overlapping, (ii) portable electronic units (40) intended to be fitted to said persons or objects and including reception means for said first and second electromagnetic signals, and (iii) means for detecting the direction of passage, through said entry-exit, of a person or an object fitted with a portable electronic unit. Each portable electronic unit includes amplitude measuring means for determining the reception amplitude of said first and second electromagnetic signals and comparator means for comparing the reception amplitude of the first and second electromagnetic signals so as to determine which of these two signals has the highest amplitude.
    • 公开了一种用于检测通过入口(4)到达限定空间(2)的人或物体通过的系统,包括(i)检测装置,包括用于发送不同的第一和第二电磁信号的传输装置(8) (a,b)分别彼此空间分离并部分重叠的第一和第二通信区域(A,B),(ii)旨在装配到所述人员或物体的便携式电子单元(40),并且包括用于所述 第一和第二电磁信号,以及(iii)用于检测通过所述出入口通过装配有便携式电子单元的人或物体的方向的装置。 每个便携式电子单元包括用于确定所述第一和第二电磁信号的接收振幅的幅度测量装置和用于比较第一和第二电磁信号的接收振幅的比较器装置,以便确定这两个信号中的哪一个具有最高幅度。
    • 2. 发明授权
    • Method for keyless unlocking of an access door to a closed space
    • 一种用于无钥匙地将进入门解锁到封闭空间的方法
    • US06882268B2
    • 2005-04-19
    • US10482647
    • 2002-06-20
    • Thierry RozMarc Degrauwe
    • Thierry RozMarc Degrauwe
    • G07C9/00B60R25/00
    • G07C9/00309G07C2009/00333G07C2009/00365
    • The invention relates to a method for keyless unlocking of an access door to a closed space, in particular a motor vehicle, which is carried out by an electronic system, comprising a control module for an electronic lock, associated with the door and a portable transponder for authorised users. The method comprises sending an interrogation signal at low frequency from the control module to the transponders and also the exchange of data at high frequency. The control module has reception device for the above which are at least continuously in a listening mode. The method is characterised in that the low frequency transmitters are inactive in a preliminary functional mode, the high frequency transmission device in the transponder periodically emits an activation signal for said the transmission device in order that the above are only activated during limited periods, which ensures the reception of an interrogation signal for a transponder entering the low frequency communication region.
    • 本发明涉及一种通过电子系统执行的通向门的封闭空间,特别是机动车辆的无钥匙钥匙解锁方法,该电子系统包括与门相关联的电子锁的控制模块和便携式应答器 授权用户。 该方法包括从控制模块向应答器发送低频的询问信号以及高频率的数据交换。 控制模块具有上述接收装置,其至少连续地处于聆听模式。 该方法的特征在于,在初步功能模式中低频发射机不活跃,应答器中的高频发射设备周期性地发射用于所述传输设备的激活信号,以便上述仅在有限的周期内被激活,这确保 接收用于进入低频通信区域的应答器的询问信号。
    • 3. 发明授权
    • Active transponder with means allowing the maximum communication distance to be varied
    • 具有允许最大通信距离变化的装置的主动发射机应答器
    • US07015794B2
    • 2006-03-21
    • US09822222
    • 2001-04-02
    • Marc DegrauweJürg RudinThierry Roz
    • Marc DegrauweJürg RudinThierry Roz
    • H04Q5/22
    • G06K19/07777G06K19/0723
    • The active transponder is intended for several applications or to operate in various modes requiring different levels of security. Security is controlled by varying the maximum communication distance to a reader. The active transponder includes a battery (2) powering the various electronic circuits amplifying component (8), a module (4) forming a demodulator for the incoming signals, and a component for validating the data comprised in the signals, and a data processing unit (10). The unit includes circuit (12) for controlling the maximum communication distance between the transponder and a reader transmitting signals at a determined power. Circuit (12) sends a security signal (S1, S2) respectively to the data validating component and/or to the signal amplifying component. This signal is used either to control the value of the reference value of the validating component, or to vary the gain of the amplifying component to vary the maximum communication distance.
    • 主动应答器适用于多种应用或以各种不同的模式进行操作,需要不同的安全级别。 通过改变与读卡器的最大通信距离来控制安全。 有源应答器包括为各种电子电路放大部件(8)供电的电池(2),形成用于输入信号的解调器的模块(4)和用于验证信号中包括的数据的部件,以及数据处理单元 (10)。 该单元包括用于控制应答器和读取器以确定的功率发送信号之间的最大通信距离的电路(12)。 电路(12)分别向数据验证部件和/或信号放大部件发送安全信号(S1,S2)。 该信号用于控制有效分量的参考值的值,或者用于改变放大分量的增益以改变最大通信距离。
    • 5. 发明授权
    • Rechargeable active transponder
    • 充电主动式应答器
    • US06462647B1
    • 2002-10-08
    • US09430164
    • 1999-10-29
    • Thierry Roz
    • Thierry Roz
    • H04Q522
    • G06K19/0702G06K19/0701G06K19/0723
    • The present invention concerns an active transponder (30) including an antenna (32) for exchanging a radioelectric signal (34), processing means (36), an accumulator (38) able to supply a first power supply signal (V1), and storage means (40) able to store the power originating from the received radioelectric signal, and to supply a second power supply signal (V2). This transponder further includes: two means (42, 46) for comparing the two power supply signals to a minimum threshold (Vmin) and, in response, providing two control signals (V3, V4); and charging means (50) controlled by the two control signals, so that the accumulator can be charged, via the charging means, from the stored power. One advantage of such a transponder is that the accumulator can be automatically recharged, as soon as the latter is no longer sufficiently charged to assure the functions of the transponder.
    • 本发明涉及一种有源应答器(30),包括用于交换放射线信号(34)的天线(32),处理装置(36),能提供第一电源信号(V1)的蓄电池(38) 能够存储来自所接收的放射线电信号的电力并提供第二电源信号(40)的装置(40)。 该转发器还包括:用于将两个电源信号与最小阈值(Vmin)进行比较的两个装置(42,46),作为响应,提供两个控制信号(V3,V4); 以及由两个控制信号控制的充电装置(50),使得蓄电池可以经由充电装置从所存储的电力中充电。 这种应答器的一个优点是,一旦蓄电池不再充分充电就可以自动重新充电蓄电池,以确保应答器的功能。
    • 7. 发明申请
    • ELECTRONIC IDENTIFICATION DEVICE OR TRANSPONDER FITTED WITH TWO ANTENNAE TUNED TO DIFFERENT FREQUENCIES
    • 用不同频率调制的两根天线的电子识别装置或传感器
    • US20090058614A1
    • 2009-03-05
    • US11847403
    • 2007-08-30
    • Thierry Roz
    • Thierry Roz
    • H04B7/00
    • H04B7/00H04B5/00H04B5/0081H04B5/0087
    • The electronic identification device or transponder (2) comprises a trigger circuit (12) linked to receiving means (14) of an interrogation signal sent at a first frequency by a reader (4 or 6), this trigger circuit serving to supply power to the transponder. It comprises an electronic response circuit (18) linked to an antenna (20) operating at a second frequency higher than said first frequency. This device or transponder additionally comprises a second electronic response circuit (26) linked to the antenna (14) to emit a second response signal at approximately the first frequency. The device or transponder (2) is therefore configured to operate with a single-frequency reader (4) or with a double-frequency reader (6). The electronic logic circuit (10) is configured in order to control the transmission of first response signals at the first frequency and second response signals at the second, higher frequency.
    • 电子识别装置或应答器(2)包括与读取器(4或6)以第一频率发送的询问信号的接收装置(14)相连的触发电路(12),该触发电路用于向 转发器 它包括一个与天线(20)相连的电子响应电路(18),工作在高于所述第一频率的第二频率。 该设备或应答器还包括链接到天线(14)的第二电子响应电路(26),以在大约第一频率发射第二响应信号。 因此,设备或应答器(2)被配置为与单频读取器(4)或双频读取器(6)一起操作。 电子逻辑电路(10)被配置为控制第一频率处的第一响应信号的传输和第二较高频率的第二响应信号。
    • 8. 发明授权
    • Self-powered detection device with a non-volatile memory
    • 具有非易失性存储器的自供电检测装置
    • US08422317B2
    • 2013-04-16
    • US12945168
    • 2010-11-12
    • David A. KampFilippo MarinelliThierry Roz
    • David A. KampFilippo MarinelliThierry Roz
    • G11C7/22G11C5/14
    • G08B13/06
    • The self-powered detection device comprises a Non-Volatile Memory (NVM) unit formed by at least a NVM cell and a sensor activated by a physical or chemical action or phenomenon, the NVM unit arranged for storing in the NVM cell, by using electrical power of the electrical stimulus pulse, a bit of information relative to detection by the sensor, during a detection mode of the self-powered detection device, of at least one physical or chemical action or phenomenon applied to it with at least a given strength or intensity and resulting in a voltage stimulus signal provided between a set control terminal and a base terminal of the NVM unit with at least a given set voltage.
    • 所述自供电检测装置包括由至少NVM单元形成的非易失性存储器(NVM)单元和由物理或化学作用或现象激活的传感器,所述NVM单元被布置成存储在NVM单元中,通过使用电 电刺激脉冲的功率,在自动检测装置的检测模式期间相对于传感器检测的一点信息,至少一个物理或化学作用或现象至少具有给定的强度,或 并且产生在至少给定的设定电压之间提供在NVM单元的设定控制端子和基极端子之间的电压刺激信号。
    • 10. 发明申请
    • SELF-POWERED DETECTION DEVICE WITH A NON-VOLATILE MEMORY
    • 具有非易失性存储器的自动检测装置
    • US20110119017A1
    • 2011-05-19
    • US12945168
    • 2010-11-12
    • David A. KampFilippo MarinelliThierry Roz
    • David A. KampFilippo MarinelliThierry Roz
    • G06F15/00
    • G08B13/06
    • The self-powered detection device comprises a Non-Volatile Memory (NVM) unit (52) formed by at least a NVM cell and a sensor which is activated by a physical or chemical action or phenomenon, the NVM unit being arranged for storing in said NVM cell, by using the electrical power of said electrical stimulus pulse, a bit of information relative to the detection by said sensor, during a detection mode of the self-powered detection device, of at least one physical or chemical action or phenomenon applied to it with at least a given strength or intensity and resulting in a voltage stimulus signal provided between a set control terminal (SET) and a base terminal (SET *) of the NVM unit with at least a given set voltage. In a first principal embodiment, the self-powered detection device comprises a read circuit (56) and a switch (58,60) arranged in the electrical path between the ground (GND) of the sensor and a terminal of the NVM cell and having its control gate (G) electrically connected to the set control terminal (SET), said switch being ON when its control gate receives in a detection mode said voltage stimulus signal and the self-powered detection device being arranged so that this switch is OFF in the read mode. In a second principal embodiment, a reset circuit is electrically connected in a reset mode to the base terminal (SET *) of the NVM unit for resetting said NVM cell and the self-powered detection device comprises a switch (58,60) arranged between the ground (GND) of the sensor and this base terminal and having its control gate (G) electrically connected to the set control terminal (SET), said switch being ON when its control gate receives in a detection mode said voltage stimulus signal and the self-powered detection device being arranged so that this switch is OFF in the reset mode.
    • 所述自供电检测装置包括由至少NVM单元形成的非易失性存储器(NVM)单元(52)和由物理或化学作用或现象激活的传感器,所述NVM单元被布置成存储在所述 NVM单元通过使用所述电刺激脉冲的电力,在自供电检测装置的检测模式期间相对于所述传感器的检测的一点信息,施加至少一个物理或化学作用或现象 它具有至少给定的强度或强度,并且导致在至少一个给定的设定电压之间提供在NVM单元的设定控制端(SET)和基端(SET *)之间的电压刺激信号。 在第一主要实施例中,自供电检测装置包括布置在传感器的接地(GND)和NVM单元的端子之间的电气路径中的读取电路(56)和开关(58,60),并具有 其控制栅极(G)电连接到设定控制端(SET),所述开关当其控制栅极在检测模式下接收所述电压刺激信号时,所述开关导通,并且所述自供电检测装置被布置成使得所述开关在 读取模式。 在第二主要实施例中,复位电路以复位模式电连接到NVM单元的基座(SET *),用于复位所述NVM单元,并且所述自供电检测装置包括布置在所述NVM单元之间的开关(58,60) 传感器的接地端(GND)和该基极端子,并且其控制栅极(G)电连接到设定控制端子(SET),当控制栅极在检测模式下接收时,所述开关导通,所述电压刺激信号和 自动供电的检测装置被布置成使得该复位模式下该开关为OFF。