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    • 81. 发明申请
    • RF ID TAG
    • WO2005008559A3
    • 2005-04-14
    • PCT/US2004021282
    • 2004-06-30
    • YARBROUGH CRAIG D
    • YARBROUGH CRAIG D
    • G05B19/00G05B23/00G06F7/00G06F7/04G06K20060101G06K19/077G08B29/00G08C19/00H04B1/00H04B3/00H04Q1/00
    • G06K19/07739G06K19/07749
    • An identification tag holder (100) includes an identification tag shell (101) containing a transmitter (122). An identification card (110) is placed into the identification tag shell (101). An identification tag interface (126) reads identification data from the identification card (110) which is transmitted by the transmitter (122). A remote identification tag identification system (151) includes one or more remote identification tag components each having an identification tag reader and a transmitter. An identification tag (110) is inserted into the identification tag component, such that identification data may be read from the identification tag (110) by the identification tag reader (107). A location receiver (156) receives identification data transmitted by the transmitter (122). A location processor (158) processes said received identification data.
    • 识别标签保持器(100)包括包含发射器(122)的识别标签外壳(101)。 识别卡(110)被放置在识别标签外壳(101)中。 识别标签接口(126)从识别卡(110)读取由发送器(122)发送的识别数据。 远程识别标签识别系统(151)包括一个或多个远程识别标签组件,每一个具有识别标签读取器和发射器。 识别标签(110)被插入识别标签部件中,从而可以通过识别标签读取器(107)从识别标签(110)读取识别数据。 位置接收器(156)接收由发射机(122)发送的识别数据。 位置处理器(158)处理所接收的识别数据。
    • 83. 发明申请
    • TEST SOURCE FOR FLAME DETECTORS
    • 火焰探测器的测试源
    • WO2004019298A2
    • 2004-03-04
    • PCT/GB0303323
    • 2003-07-31
    • MICROPACK ENGINEERING LTDDAVIDSON IAN
    • DAVIDSON IAN
    • G08B17/12G08B29/14G08B29/00
    • G08B29/145G08B17/12
    • An infrared discharge tube is disclosed, the tube having a body (1) formed from a material, typically sapphire, generally transparent to infrared radiation of between 4 µm and 5 µm, and electrodes (2, 3) formed from a non-reactive or catalytic metal, such as nickel, cupro-nickel or oxidised copper. The body (1) forms a gas tight enclosure, and is evacuated of air and refilled with a mixture of carbon monoxide, carbon dioxide and nitrogen gas. The proportions and pressures of gases in the body (1) are adjusted depending upon the intended use of the source, but are generally in the order of 100mBar for a low energy source capable of stimulating a detector (for example in the case of optical integrity testing), and may be several tens of Bar for a high energy source suitable for use over several tens of metres. The tube is then sealed, and when a high voltage is applied between electrodes (2, 3) an arc is generated across a spark gap (4) between electrodes (2, 3). The metal of the electrodes (2, 3) is chosen so as to resist changes in relative proportions of the constituent gases of the mixture of gases in the tube.
    • 公开了一种红外放电管,该管具有由通常为蓝宝石的材料形成的主体(1),其通常对于4μm和5μm之间的红外辐射是透明的,以及由非反应性或非反应性形成的电极(2,3) 催化金属,如镍,铜镍或氧化铜。 主体(1)形成气密封壳体,并抽空空气并用一氧化碳,二氧化碳和氮气的混合物重新填充。 体内(1)中气体的比例和压力根据源的预期用途进行调节,但对于能够刺激检测器的低能量源(例如在光学完整性的情况下)通常为100mBar的量级 测试),并且对于适用于数十米的高能量源可以是几十巴。 然后将管密封,并且当在电极(2,3)之间施加高电压时,跨越电极(2,3)之间的火花隙(4)产生电弧。 选择电极(2,3)的金属,以便抵抗管中气体混合物的构成气体的相对比例的变化。
    • 86. 发明申请
    • ENVIRONMENTAL MONITORING SYSTEM
    • 环境监测系统
    • WO03001331A3
    • 2003-02-27
    • PCT/US0219758
    • 2002-06-21
    • PENTAGON TECHNOLOGIES GROUP IN
    • LUTZ DONALD GDUGGAN DANIEL
    • G01R31/26G06F20060101G06F11/00G06F19/00G08B23/00G08B29/00G08C19/00
    • G08C19/00
    • An environmental monitoring system is disclosed including a plurality of sensors (14), a plurality of sensor modules (12) each electrically connected to one of the plurality of sensors (14) for generating a ID signal that uniquely identifies the one sensor electrically connected thereto, a plurality of first electrical connectors (48) each electrically connected to one of the sensor modules (12) and a central monitoring unit (10) that includes a plurality of second electrical connectors (50) for connection with the first electrical connectors (48), a CPU (20) for receiving the ID signals via the first (48) and second electrical connectors(50) for identifying each of the sensors (14) in response to the received ID signals and for configuring operating parameters for each of the identified sensors(14), and a storage medium (26) for storing sensor data corresponding to the sensor signals. Other elements of the monitoring system can include a power supply (28), at least one input/output module (32) and calibration ports (41).
    • 公开了一种环境监视系统,其包括多个传感器(14),多个传感器模块(12),每个传感器模块(12)均电连接到多个传感器(14)中的一个,用于生成ID信号,该ID信号唯一地识别与其电连接的一个传感器 ,多个第一电连接器(48),每个电连接到传感器模块(12)中的一个传感器模块;以及中央监控单元(10),包括多个第二电连接器(50),用于与第一电连接器 ),用于通过第一(48)和第二电连接器(50)接收ID信号的CPU(20),用于响应接收的ID信号识别每个传感器(14),并用于配置每个传感器 识别的传感器(14)以及用于存储对应于传感器信号的传感器数据的存储介质(26)。 监控系统的其他元件可以包括电源(28),至少一个输入/输出模块(32)和校准端口(41)。
    • 87. 发明申请
    • ALARM APPARATUS
    • 报警器
    • WO02037443A1
    • 2002-05-10
    • PCT/SE2001/002368
    • 2001-10-29
    • G08B19/00G08B25/08G08B29/12G08B29/00
    • G08B25/001G08B19/005
    • The invention refers to a control unit, communicatively connected to at least one sensor by means of a communication interface, for use in a security system. The control unit is connectable to an external unit by means of a communication network. Further the control unit is arranged to continuously send status messages based on status information from the sensor to the external unit and arranged to continuously poll the external unit to check if the external unit comprises information to be retrieved. Further, the invention refers to a combined smoke- and IR-detector, which may emit both fire alarm and burglary alarm. The sensors are mounted on a printed circuit card and arranged on different sides of the printed circuit card. The sensors are arranged to permit a 360 DEG free inlet of smoke/gas and at the same time to provide a free view for the IR-sensor.
    • 本发明涉及一种控制单元,其通过通信接口与至少一个传感器通信地连接,用于安全系统。 控制单元可通过通信网络连接到外部单元。 此外,控制单元被布置成基于来自传感器的状态信息连续发送状态消息到外部单元,并且被布置为连续轮询外部单元以检查外部单元是否包括要检索的信息。 此外,本发明涉及一种组合的烟雾和红外探测器,其可以发射火灾报警和盗窃报警。 传感器安装在印刷电路卡上并布置在印刷电路卡的不同侧面上。 传感器布置成允许360°自由的烟雾/气体入口,同时为IR传感器提供自由视图。
    • 88. 发明申请
    • REMOTE KEYLESS ENTRY SYSTEM WITH ADVANCED ACTIVATION FEATURES
    • 具有高级激活功能的远程无钥匙进入系统
    • WO01023228A1
    • 2001-04-05
    • PCT/US2000/025636
    • 2000-09-19
    • B60R25/00G05B19/00G06F7/00G07C9/00G08B29/00H04B1/00H04Q1/00E05B49/00
    • B60R25/24G07C9/00309G07C2009/00325G07C2009/00373G07C2009/0038G07C2009/00769G07C2209/08G07C2209/63
    • Keyless entry systems generate a signal to actuate a security system on a vehicle (22) when keyless entry system is outside of a range of the vehicle. The signal is transmitted to the vehicle once the keyless entry system is within range. In a first embodiment, the signal continues to be sent periodically over a period of time such that the operator can move within range of the vehicle. In a second embodiment, the request signal is stored at the keyless entry system until the keyless entry system receives a signal from the vehicle, which then indicates the keyless entry system is within range of the vehicle. At that time, the signal is sent to the vehicle. This invention facilitates the use of keyless entry systems for a person carrying a number of packages, such that the operator need not actuate the keyless entry system when approaching the vehicle. Further, the system would allow the operator to keep the keyless entry system concealed when approaching the vehicle so as not to provide an indication of which vehicle the operator is approaching.
    • 当无钥匙进入系统在车辆的范围之外时,无钥匙进入系统产生信号以致动车辆(22)上的安全系统。 无钥匙进入系统在范围内时,信号被传送到车辆。 在第一实施例中,信号在一段时间内继续周期性地发送,使得操作者可以在车辆的范围内移动。 在第二实施例中,请求信号被存储在无钥匙进入系统中,直到无钥匙进入系统接收到来自车辆的信号,然后指示无钥匙进入系统在车辆的范围内。 那时,信号被发送到车辆。 本发明有助于携带多个包装的人员使用无钥匙进入系统,使得操作者在接近车辆时不需要致动无钥匙进入系统。 此外,系统将允许操作者在接近车辆时保持无钥匙进入系统被隐藏,以便不提供操作者正在接近的车辆的指示。
    • 89. 发明申请
    • ALARM REPORTING SYSTEM USING THE INTERNET AND INSTANT MESSAGING
    • 报警系统使用互联网和即时通讯
    • WO01011586A1
    • 2001-02-15
    • PCT/US2000/007775
    • 2000-03-23
    • G08B25/08H04L12/28H04L29/06H04L29/08G08B29/00
    • H04L12/2856G08B25/001G08B25/08H04L29/06H04L67/16H04L67/26H04L69/329
    • The present invention makes use of the Internet (18) and its instant messaging capability for the continual alarm monitoring of protected premises. A central web site (20) receives instant messages from premise computers (12) at computer controlled, programmable, variable time frames based on protection levels. The protected premise computer (12) sends encrypted messages both in an alarm state and in a normal state. This continual message traffic, reinforced by variable message timing established by the central web site (20) and known only to the central web site (20) and the premise computer (12), provides maximum protection against compromise of the system since the absence of a normal message or the non-appearance of an expected message will constitute an alarm. The central web site (20) dispenses alarm notification to local responders (police, fire dept., local monitors) (24) in accordance with a priority system where the most serious alarm is reported first as well as notifying the premise owners (41) via paging or other communication means. The central web site (20) communicates to the premise computer (12) to change message rates and encryption information as well as to arm the system.
    • 本发明利用因特网(18)及其即时消息传送能力来对受保护的场所进行持续的警报监视。 中央网站(20)基于保护级别以计算机控制的,可编程的,可变的时间帧从内部计算机(12)接收即时消息。 受保护的前提计算机(12)在报警状态和正常状态下发送加密消息。 由中央网站(20)建立并且仅被中央网站(20)和前提计算机(12)所建立的可变消息时序所强化的这种持续的消息流量提供了最大的保护,以免对系统的损害,因为不存在 正常消息或不预期消息的不出现将构成报警。 中央网站(20)根据首先报告最严重的警报并通知前提业主(41)的优先系统向当地应急人员(警察,消防部门,当地监视员)(24)发出警报通知, 通过寻呼或其他通信手段。 中央网站(20)与前提计算机(12)进行通信,以改变消息速率和加密信息以及系统的布置。
    • 90. 发明申请
    • REMOTE OPERATIONAL STATUS NOTIFICATION SYSTEM FOR ELECTRONIC ANIMAL CONTROL APPARATUS
    • 用于电子动物控制装置的远程操作状态通知系统
    • WO01004860A1
    • 2001-01-18
    • PCT/US2000/018932
    • 2000-07-07
    • A01K15/02G08B29/00A01K15/04G08B23/00
    • A01K15/023
    • A system and method for monitoring the operation of an animal control system, detecting a failure of the animal control system, and generating a remote alarm in the event that a failure of the animal control system is detected. A failure monitor includes a sensing circuit (18) connected with an antenna, transmitter, and/or power supply of the animal control system, and configured to sense normal operation of the animal control system. The monitor (20) is responsive to the sensor to detect cessation of normal operation of the animal control system and to operate a remote alarm system through a telephone reporting circuit (22) to report that a failure of the animal control system has occurred.
    • 一种用于监测动物控制系统的操作,检测动物控制系统的故障以及在检测到动物控制系统的故障的情况下产生远程报警的系统和方法。 故障监视器包括与动物控制系统的天线,发射器和/或电源连接的感测电路(18),并被配置为感测动物控制系统的正常操作。 监视器(20)响应于传感器来检测动物控制系统的正常操作的停止并且通过电话报告电路(22)操作远程报警系统来报告动物控制系统的故障已经发生。