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    • 3. 发明授权
    • Flueric explosive initiation device for a fuel-air explosive bomb
    • 用于燃油炸弹的易燃爆炸装置
    • US3994226A
    • 1976-11-30
    • US642086
    • 1975-12-18
    • Edward L. RakowskyVincent P. MarcheseAnthony P. Corrado
    • Edward L. RakowskyVincent P. MarcheseAnthony P. Corrado
    • F42C15/29F42B25/16F42C5/00
    • F42C15/29F05D2260/99
    • A flueric initiator for a fuel-air explosive bomb possesses a sealed hous containing a pressurized gas, a plurality of igniter devices and a means for rupturing the housing and ejecting the igniter devices into the atmosphere. Each igniter device consists of a small gas container, a resonance tube, and explosive charge adjacent to the closed end of the resonance tube, and a nozzle connected to the gas container and communicating with the housing plenum through one or more vents. The housing is initially charged to a pressure considerably higher than the functioning pressure of the nozzle-resonance tube combination.When the sealed housing is ruptured and the igniter devices are ejected after bomb impact and fuel dispersal, the pressure outside the igniter devices is reduced to ambient pressure, causing the pressurized gas in the gas container to flow out through said nozzle and impinge upon the open end of the resonance tube, thereby reducing the gas pressure until it reaches the level at which resonance tube heating occurs. This rapid heating takes place only after a well-defined, predetermined, settable time delay, detonating the explosive charge and consequently the fuel-air cloud.
    • 用于燃料 - 空气爆炸炸弹的轻油起动器具有包含加压气体的密封壳体,多个点火装置和用于破裂壳体并将点火装置喷射到大气中的装置。 每个点火器装置包括一个小的气体容器,一个共振管和与该共振管的封闭端相邻的爆炸装置,一个连接到气体容器并通过一个或多个通风口与壳体通风室连通的喷嘴。 初始将壳体充电至显着高于喷嘴共振管组合的功能压力的压力。
    • 4. 发明授权
    • Electronic actuated bleed valve
    • 电动致动放气阀
    • US4298181A
    • 1981-11-03
    • US56104
    • 1979-07-09
    • Anthony P. CorradoVincent P. Marchese
    • Anthony P. CorradoVincent P. Marchese
    • F15B13/043F16K31/00F16K31/02
    • F15B13/0431F16K31/005Y10T137/86614
    • A bleed valve assembly which includes a bleed valve seat having a bleed orifice partially defined thereby and a piezoelectric crystal mounted adjacent thereto so that upon bending of the crystal, as by energization thereof, pressure contact is made with an intermediate valve element. The valve element is in turn adapted to move against the bleed valve seat to close the same. When the bleed valve assembly is closed in the manner above described, pressure is permitted to build up in the orifice to modify the position of a main valve with which the bleed valve assembly is utilized. In addition the crystal is beam mounted within a bore in which the valve seat is positioned and essentially in contact with said bore solely at spaced peripheral edge positions thereof.
    • 一种排气阀组件,其包括具有部分限定的泄放孔的放气阀座和与其相邻安装的压电晶体,使得在晶体弯曲时,通过其通电,用中间阀元件进行压力接触。 阀元件又适于抵靠放气阀座移动以使其闭合。 当排气阀组件以上述方式关闭时,允许压力在孔中积聚以改变利用排气阀组件的主阀的位置。 此外,晶体被安装在孔内,其中阀座被定位在其中,并且基本上与所述孔仅在其间隔开的周边边缘位置接触。
    • 5. 发明授权
    • Electronic valve control means
    • 电子阀门控制装置
    • US4195811A
    • 1980-04-01
    • US826891
    • 1977-08-22
    • Anthony P. CorradoVincent P. MarcheseFrank S. MoriciFrank W. Timte
    • Anthony P. CorradoVincent P. MarcheseFrank S. MoriciFrank W. Timte
    • F16K31/00F16K31/02
    • F16K31/005
    • A valve which is normally biased in a first operative position is provided with control means including a first pressure fluid orifice for directing such fluid to a control member for changing the operative position of the valve. The device further includes a housing which communicates with said first orifice and which has a bleed orifice assembly having a second or bleed orifice. The bleed orifice assembly further includes a bleeder valve seat and a piezoelectric crystal mounted adjacent thereto so that upon bending of the crystal, as by energization thereof, pressure contact is made with an intermediate valve element. The valve element is in turn adapted to move against the bleeder valve seat to close the same. When the bleed orifice assembly is closed in the manner above described, pressure is permitted to build up in the first orifice to activate the valve.
    • 通常被偏置在第一操作位置的阀设置有控制装置,该控制装置包括用于将这种流体引导到控制构件以改变阀的操作位置的第一压力流体孔口。 该装置还包括与所述第一孔连通并具有具有第二或排出孔的排气孔组件的壳体。 排气孔组件还包括泄放阀座和与其相邻安装的压电晶体,使得当晶体弯曲时,通过其通电,用中间阀元件进行压力接触。 阀元件又适于抵靠泄放阀座移动以使其闭合。 当排气孔组件以上述方式关闭时,允许压力在第一孔中积聚以启动阀。
    • 6. 发明申请
    • RFID TAG POWER CONSERVATION SYSTEM AND METHOD
    • RFID标签功率保存系统和方法
    • US20080218351A1
    • 2008-09-11
    • US12045553
    • 2008-03-10
    • Anthony P. CorradoRex T. Logan
    • Anthony P. CorradoRex T. Logan
    • G08B13/14
    • G06K19/0723G06K19/0705
    • Active multi-modal RFID tags, illuminator/tag/reader systems, circuit architecture and operational algorithms for battery power conservation that extends tag battery life from a typical 6 months to >5 years. The inventive system is particularly useful in asset and person tracking/inventory systems where power conservation is critical. The tag is configured with a micro-processor operational instruction set algorithm, modifiable on the fly via RF or IR, to synchronize a periodic tag awaken/sense envelope that overlaps the illuminator trigger pulse cycle and put the tag into deep, power conservation sleep for N periods of illuminator cycles. When the tag sees an illuminator signal with a different ID, or no illuminator signal at all, it transmits that anomaly via RF to a reader. This means the object or person with which the tag is associated has been moved out of the original illuminator field of view, permitting near real time investigation and tracking.
    • 主动多模态RFID标签,照明器/标签/读卡器系统,用于电池节能的电路架构和操作算法,将电池寿命从典型的6个月延长至5年。 本发明的系统对于节能至关重要的资产和人员跟踪/库存系统特别有用。 该标签配置有微处理器操作指令集算法,可以通过RF或IR在飞行中进行修改,以同步与照明器触发脉冲周期重叠的周期性标签唤醒/感测包络,并将标签置于深度,省电睡眠中 照明器周期的N个周期。 当标签看到具有不同ID的照明器信号或完全没有照明器信号时,它通过RF将该异常通过RF发送到读取器。 这意味着与标签相关联的对象或人已被移出原始照明器视野,允许近实时调查和跟踪。
    • 7. 发明授权
    • Fluid explosive initiator
    • 液体爆炸物引发剂
    • US3956993A
    • 1976-05-18
    • US522155
    • 1974-11-08
    • Anthony P. Corrado
    • Anthony P. Corrado
    • F42C15/29F42C5/00
    • F42C15/29
    • The setback force of a gun launch environment is used to help arm a projele fuze by shearing a pin which holds a slidable nozzle in a non-operative position. The sheared pin permits the nozzle to move into an operative position adjacent to a heat producing resonance tube. A second arming function is performed when the velocity of the launched projectile causes air to push a spring biased out-of-line detonator into alignment with the heat producing resonance tube. Ram air which is forced into the resonance tube by the high speed of the projectile creates shock waves which generate heat which ignite the detonator.
    • 枪弹发射环境的挫折力被用于通过剪切一个将可滑动喷嘴保持在非操作位置的销来帮助装备射弹引信。 剪切的销允许喷嘴移动到邻近发热共振管的操作位置。 当所发射的弹丸的速度导致空气将弹簧偏压的离线雷管推向与发热共振管对准时,执行第二布防功能。 通过弹丸高速被迫进入共振管的拉姆空气产生产生引燃雷管的热量的冲击波。
    • 8. 发明授权
    • Multi-modal active RFID tag with biometric sensors, systems and methods of ITV tracking
    • 具有生物识别传感器的多模态有源RFID标签,ITV跟踪的系统和方法
    • US07982601B2
    • 2011-07-19
    • US11938477
    • 2007-11-12
    • Anthony P. CorradoRex T. Logan
    • Anthony P. CorradoRex T. Logan
    • G08B1/08
    • G06K19/0728G06K7/10079G06K19/0723G06K19/07345G06K19/145
    • RFID tags, methods and systems for total asset management, in-transit visibility and bio-metric verification and authorization. The system comprises an active, multi-modal, bi-directional RFID tag having a primary communication mode RF transceiver and a secondary mode IR/US transceiver. The tag includes sensors, such as bio-metric, and memory containing user bio-metric data. A reader and illuminator(s), preferably IR and/or US, are communicatively coupled with the tag and adapted to provide command and control signals to the tag and receive data/information from it. The user's bio-metric data is read by the sensor, compared to the data base and verification communicated to an access or point of sale device. The tag looks for illuminators and reports to the reader the IDs of those it sees. The detection history permits tracking and locating tagged objects or persons, such as theme park guests. If no illuminator signal is seen, the tag sends a special signal.
    • 用于总资产管理的RFID标签,方法和系统,在线可见性和生物测量验证和授权。 该系统包括具有主要通信模式RF收发器和次级IR / US收发器的主动多模式双向RFID标签。 该标签包括诸如生物测量的传感器和包含用户生物量度数据的存储器。 阅读器和照明器(优选IR和/或US)通信地与标签耦合,并且适于向标签提供命令和控制信号并从其接收数据/信息。 与数据库相比,传感器读取用户的生物量度数据,并将其传递给访问或销售点设备。 标签寻找照明器并向读者报告它们看到的ID。 检测历史允许跟踪和查找标签对象或人物,如主题公园客人。 如果没有看到照明器信号,则标签发送特殊信号。
    • 9. 发明授权
    • Keep out zone incursion fast sensing mode for airbag deployment systems
    • 保持安全气囊展开系统的区域入侵快速感测模式
    • US06249729B1
    • 2001-06-19
    • US08957730
    • 1997-10-24
    • Anthony P. CorradoRalf SeipStephen W. Decker
    • Anthony P. CorradoRalf SeipStephen W. Decker
    • B60R2132
    • B60R21/01534B60R21/0134B60R21/01536B60R2021/01311B60R2021/01313
    • An automotive occupancy sensing system and method for use in conjunction with airbag deployment systems, by which occupant nature, location and motion parameters within the vehicle interior are determined by ultrasound (US) and/or infared sensors. (IS). Criteria for airbag disablement or airbag modified/partial deployment are used to determine whether appropriate disablement or modified/partial deployment control signals are transmitted to the vehicle airbag deployment system. More particularly the system establishes a Keep Out Zone (KOZ) within the vehicle interior relative to the dashboard or instrument panel and determines actual or imminent incursions by occupants into the KOZ to produce a Keep Out Zone Incursion (KOZI) signal, and determines crash-imminent signal (CIS) criteria derived from one or more sensors within the vehicle. Both the KOZI and the CIS may be used to increase the rate of US pinging as well as to determine airbag disablement/modified deployment criteria.
    • 用于与安全气囊展开系统结合使用的汽车占用感测系统和方法,通过该安全气囊展开系统,通过超声波(US)和/或信号传感器确定车辆内部的乘客性质,位置和运动参数。 (IS)。 用于安全气囊禁用或安全气囊修改/部分部署的标准用于确定适当的禁用或修改/部分部署控制信号是否被传输到车辆安全气囊展开系统。 更具体地说,系统相对于仪表板或仪表板在车辆内部建立了保持区(KOZ),并且确定乘客进入KOZ的实际或即将的入侵以产生保持区域移动(KOZI)信号,并且确定碰撞 - 来自车辆内的一个或多个传感器的迫在眉睫的信号(CIS)标准。 KOZI和CIS都可以用来提高美国的平均飞行率,以及确定安全气囊的禁用/修改的部署准则。
    • 10. 发明授权
    • RFID tag power conservation system and method
    • RFID标签功率节省系统及方法
    • US08054160B2
    • 2011-11-08
    • US12045553
    • 2008-03-10
    • Anthony P. CorradoRex T. Logan
    • Anthony P. CorradoRex T. Logan
    • H04Q5/22
    • G06K19/0723G06K19/0705
    • Active multi-modal RFID tags, illuminator/tag/reader systems, circuit architecture and opera-tional algorithms for battery power conservation that extends tag battery life from a typical 6 months to >5 years. The inventive system is particularly useful in asset and person tracking/inventory systems where power conservation is critical. The tag is configured with a micro-processor operational instruction set algorithm, modifiable on the fly via RF or IR, to synchro-nize a periodic tag awaken/sense envelope that overlaps the illuminator trigger pulse cycle and put the tag into deep, power conservation sleep for N periods of illuminator cycles. When the tag sees an illuminator signal with a different ID, or no illuminator signal at all, it transmits that anomaly via RF to a reader. This means the object or person with which the tag is associated has been moved out of the original illuminator field of view, permitting near real time investigation and tracking.
    • 主动多模式RFID标签,照明器/标签/读卡器系统,电路架构和电池功率节省的操作算法,可将标签电池寿命从典型的6个月延长至5年。 本发明的系统对于节能至关重要的资产和人员跟踪/库存系统特别有用。 该标签配置有微处理器操作指令集算法,可以通过RF或IR在飞行中修改,以同步周期性标签唤醒/感测包络,重叠照明器触发脉冲周期,并将标签置于深度,省电 睡眠N个照明器周期。 当标签看到具有不同ID的照明器信号或完全没有照明器信号时,它通过RF将该异常通过RF发送到读取器。 这意味着与标签相关联的对象或人已被移出原始照明器视野,允许近实时调查和跟踪。