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    • 1. 发明申请
    • Wireless control of security system with key-operated key FOB
    • 使用钥匙钥匙FOB对安全系统进行无线控制
    • US20080136585A1
    • 2008-06-12
    • US11637341
    • 2006-12-12
    • Kenneth G. EskildsenRobert E. LeeDavid S. Zakrewski
    • Kenneth G. EskildsenRobert E. LeeDavid S. Zakrewski
    • E05B47/00G05B19/00
    • G07C9/00944G07C9/00182Y10T70/625
    • A key fob with a housing into which a deadbolt key is mounted such that the shank protrudes therefrom, enabling a user to turn the housing and cause the key to lock or unlock the door. Within the keyfob are a pair of switches or other sensing means configured to close on either the turning of the housing in a first (clockwise) direction or a second (counterclockwise) direction. Based on the direction the housing is turned, either a first coded signal or a second coded signal is transmitted to a control panel. The control panel will then either arm or disarm the security system based on how it has been programmed during installation. This enables the user to easily arm the system when the door is being locked and disarm the system when the door is being unlocked without requiring a separate action on the part of the user.
    • 具有壳体的钥匙扣,其中安装有锁死螺栓键,使得柄从其突出,使得使用者能够转动壳体并使钥匙锁定或解锁门。 在钥匙扣内是一对开关或其他感测装置,其构造成在第一(顺时针)方向或第二(逆时针)方向上的壳体的转动上闭合。 基于壳体转动的方向,将第一编码信号或第二编码信号发送到控制面板。 然后,控制面板将根据安装过程中的编程方式来布防或撤防安全系统。 这使得用户能够在门被锁定时容易地将系统挂起并且当门被解锁时解除系统的撤防,而不需要用户的一部分单独的动作。
    • 2. 发明授权
    • MEMS based space safety infrared sensor apparatus and method
    • 基于MEMS的空间安全红外传感器装置及方法
    • US07145455B2
    • 2006-12-05
    • US10920783
    • 2004-08-18
    • Kenneth G. EskildsenRobert E. Lee
    • Kenneth G. EskildsenRobert E. Lee
    • G08B13/00
    • G08B13/193G01J5/08G01J5/0809G02B26/0841G08B29/046
    • A space safety apparatus monitoring a volume of space encompassing a field of view (FOV) for detecting an intrusion including a gas or vapor, and includes a micro-electro-mechanical system (MEMS) having mirror elements in a mirror array for reflecting infra-red (IR) energy beam collected from the FOV and an IR energy detector for detecting the IR energy reflected by the MEMS array and converting the IR energy to an output signal. A processor adjusts an angle of an element of the MEMS mirror array by varying a control signal, or by switching from one to another focusing element. The method includes detection in a volume of space by positioning a MEMS mirror array to reflect IR signal with respect to active elements of an IR detector; and collecting IR energy from an ith portion of the FOV.
    • 一种监视包含用于检测包括气体或蒸汽的入侵的视场(FOV)的空间体积的空间安全装置,并且包括具有反射镜阵列中的反射镜阵列的微电子机械系统(MEMS) 从FOV收集的红色(IR)能量束和用于检测由MEMS阵列反射的IR能量并将IR能量转换为输出信号的IR能量检测器。 处理器通过改变控制信号或通过从一个转换到另一个聚焦元件来调整MEMS反射镜阵列的元件的角度。 该方法包括通过定位MEMS反射镜阵列来相对于IR检测器的有源元件反射IR信号来检测空间体积; 以及从FOV的第i个部分收集IR能量。
    • 5. 发明授权
    • MEMS based space safety infrared sensor apparatus and method for detecting a gas or vapor
    • 基于MEMS的空间安全红外传感器装置和用于检测气体或蒸气的方法
    • US07218222B2
    • 2007-05-15
    • US10920784
    • 2004-08-18
    • Kenneth G. EskildsenRobert E. Lee
    • Kenneth G. EskildsenRobert E. Lee
    • G08B13/00
    • G08B13/193
    • A space safety apparatus monitoring a volume of space encompassing a field of view (FOV) for detecting an intrusion including a gas or vapor, and includes a micro-electro-mechanical system (MEMS) having mirror elements in a mirror array for reflecting infra-red (IR) energy beam collected from the FOV and an IR energy detector for detecting the IR energy reflected by the MEMS array and converting the IR energy to an output signal. A processor adjusts an angle of an element of the MEMS mirror array by varying a control signal, or by switching from one to another focusing element. The method includes detection in a volume of space by positioning a MEMS mirror array to reflect IR signal with respect to active elements of an IR detector; and collecting IR energy from an ith portion of the FOV.
    • 一种监视包含用于检测包括气体或蒸汽的入侵的视场(FOV)的空间体积的空间安全装置,并且包括具有反射镜阵列中的反射镜阵列的微电子机械系统(MEMS) 从FOV收集的红色(IR)能量束和用于检测由MEMS阵列反射的IR能量并将IR能量转换为输出信号的IR能量检测器。 处理器通过改变控制信号或通过从一个转换到另一个聚焦元件来调整MEMS反射镜阵列的元件的角度。 该方法包括通过定位MEMS反射镜阵列来相对于IR检测器的有源元件反射IR信号来检测空间体积; 以及从FOV的第i个部分收集IR能量。
    • 7. 发明授权
    • MEM's reed switch array
    • MEM的簧片开关阵列
    • US07321282B2
    • 2008-01-22
    • US11059821
    • 2005-02-17
    • Robert E. LeeKenneth G. EskildsenKevin G. Piel
    • Robert E. LeeKenneth G. EskildsenKevin G. Piel
    • H01H9/00
    • H01H36/0046H01H2036/0093
    • A MEM's reed switch array is provided having a first switch having a sensitivity causing the first switch to open or close due to a magnetic flux, and a second switch of lesser sensitivity than the first switch causing the second switch to open or close due to a magnetic flux. The first switch can be parallel to the second switch, or the first switch can be proximate to the second switch so that a center line of the first switch is coaxial to a center line of the second switch. Further, a security device for residential and/or commercial use is provided, having a magnet housing having a magnet, a switch housing having a MEM's reed switch array with a first switch and a second switch, and a gap between the magnet housing and the switch housing.
    • 提供了一种MEM的舌簧开关阵列,其具有具有导致第一开关由于磁通而打开或关闭的灵敏度的第一开关,以及具有比第一开关更小的灵敏度的第二开关,从而导致第二开关由于 磁通量。 第一开关可以平行于第二开关,或者第一开关可以靠近第二开关,使得第一开关的中心线与第二开关的中心线同轴。 此外,提供了一种用于住宅和/或商业用途的安全装置,具有具有磁体的磁体壳体,具有带有第一开关和第二开关的MEM簧片开关阵列的开关壳体,以及磁体壳体和 开关外壳
    • 10. 发明授权
    • Magnetic contact tamper switch for security accessories
    • 用于安全附件的磁接触篡改开关
    • US07151461B2
    • 2006-12-19
    • US10977691
    • 2004-10-29
    • George N. WilsonRobert E. LeeKevin G. Piel
    • George N. WilsonRobert E. LeeKevin G. Piel
    • G08B21/00
    • G08B29/046H01H9/085H01H36/00H01H2036/0086
    • A tamper detection switch is primarily for use in an enclosure of a security system component. The enclosure has a base and a cover that may be repositioned relative to the base. One of the cover and the base holds a conductive magnetic element free to translate within a predetermined range generally perpendicular to the respective cover or base. The other of the cover and the base holds at least two ferrous metal contacts of an open tamper circuit in proximity of a conductive magnetic element. In the closed position the conductive magnetic element bridges the ferrous contacts and closes the tamper circuit. Attempts to tamper with the enclosure separate the ferrous contacts from the conductive magnetic element, opening the tamper circuit and signaling a possible attack.
    • 篡改检测开关主要用于安全系统组件的外壳。 外壳具有可相对于底座重新定位的底座和盖。 盖子和基座中的一个保持导电磁性元件在大致垂直于相应盖或基部的预定范围内自由平移。 覆盖物和基座中的另一个在导电磁性元件附近保持有打开的篡改电路的至少两个黑色金属触点。 在闭合位置,导电磁性元件桥接铁触点并闭合篡改电路。 尝试篡改外壳将铁触点与导电磁性元件分开,打开篡改电路并发出可能的攻击。