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    • 11. 发明授权
    • Networked RF tag for tracking baggage
    • US07489244B2
    • 2009-02-10
    • US11462844
    • 2006-08-07
    • Jason AugustPaul WaterhouseJohn K. StevensChristopher W. VergeMichael J. VandenbergKenneth Truong
    • Jason AugustPaul WaterhouseJohn K. StevensChristopher W. VergeMichael J. VandenbergKenneth Truong
    • G08B13/14
    • A01K11/004A01K11/008A01K15/021G06Q20/203G07C9/00111
    • The invention disclosed provides a method, system, and associated tag for detection and tracking of inanimate and animate objects. The novel method broadly comprises the steps of: a) attaching a low radio frequency detection tag to each of the objects, each tag comprising a tag antenna operable at a low radio frequency not exceeding 1 megahertz (preferably not exceeding 300 kilohertz), a transceiver operatively connected to the tag's antenna, the transceiver being operable to transmit and receive data signals at the low radio frequency, a data storage device operable to store data comprising identification data for identifying said detection tag, a programmed data processor operable to process data received from the transceiver and the data storage device and to send data to cause the transceiver to emit an identification signal based upon the identification data stored in said data storage device, and an energy source for activating the tag's transceiver and data processor; b) storing, in the data storage device of each tag, shipping data selected from object description data, address-of-origin data, destination address data, object vulnerability data, and object status data; c) commingling the objects in a repository selected from a warehouse and a truck, the repository being provided with at least one large loop field antenna operable at said low radio frequency; the field antenna being disposed at a distance from each object that permits effective communication therewith at the low radio frequency, d) reading the identification data and shipping data from the transceiver of each tag by interrogating all tags commingled in said repository with data signals, such as specific IP addresses or other identification codes, via said field antenna; and e) transmitting the identification data and shipping data from each tag to a central data processor to provide a tally of the objects in said repository.
    • 17. 发明申请
    • Networked RF tag for tracking freight
    • US20060128023A1
    • 2006-06-15
    • US11276216
    • 2006-02-17
    • Paul WaterhouseChristopher VergeMichael VandenbergKenneth TruongJohn StevensJason August
    • Paul WaterhouseChristopher VergeMichael VandenbergKenneth TruongJohn StevensJason August
    • G01N33/00
    • A01K11/008A01K11/004A01K15/021G06K17/00G06K19/077G06K2017/0045G06Q10/08G06Q10/087G06Q20/203G06Q50/02G06Q50/30Y10T436/13
    • The invention disclosed provides a method, system, and associated tag for detection and tracking of inanimate and animate objects. The novel method broadly comprises the steps of: a) attaching a low radio frequency detection tag to each of the objects, each tag comprising a tag antenna operable at a low radio frequency not exceeding 1 megahertz (preferably not exceeding 300 kilohertz), a transceiver operatively connected to the tag's antenna, the transceiver being operable to transmit and receive data signals at the low radio frequency, a data storage device operable to store data comprising identification data for identifying said detection tag, a programmed data processor operable to process data received from the transceiver and the data storage device and to send data to cause the transceiver to emit an identification signal based upon the identification data stored in said data storage device, and an energy source for activating the tag's transceiver and data processor; b) storing, in the data storage device of each tag, shipping data selected from object description data, address-of- origin data, destination address data, object vulnerability data, and object status data; c) commingling the objects in a repository selected from a warehouse and a truck, the repository being provided with at least one large loop field antenna operable at said low radio frequency; the field antenna being disposed at a distance from each object that permits effective communication therewith at the low radio frequency, d) reading the identification data and shipping data from the transceiver of each tag by interrogating all tags commingled in said repository with data signals, such as specific IP addresses or other identification codes, via said field antenna; and e) transmitting the identification data and shipping data from each tag to a central data processor to provide a tally of the objects in said repository.
    • 19. 发明申请
    • Networked RF tag for tracking baggage
    • US20070152825A1
    • 2007-07-05
    • US11462844
    • 2006-08-07
    • Jason AugustPaul WaterhouseJohn StevensChristopher VergeMichael VandenbergKenneth Truong
    • Jason AugustPaul WaterhouseJohn StevensChristopher VergeMichael VandenbergKenneth Truong
    • G08B13/14G08B1/08
    • A01K11/004A01K11/008A01K15/021G06Q20/203G07C9/00111
    • The invention disclosed provides a method, system, and associated tag for detection and tracking of inanimate and animate objects. The novel method broadly comprises the steps of: a) attaching a low radio frequency detection tag to each of the objects, each tag comprising a tag antenna operable at a low radio frequency not exceeding 1 megahertz (preferably not exceeding 300 kilohertz), a transceiver operatively connected to the tag's antenna, the transceiver being operable to transmit and receive data signals at the low radio frequency, a data storage device operable to store data comprising identification data for identifying said detection tag, a programmed data processor operable to process data received from the transceiver and the data storage device and to send data to cause the transceiver to emit an identification signal based upon the identification data stored in said data storage device, and an energy source for activating the tag's transceiver and data processor; b) storing, in the data storage device of each tag, shipping data selected from object description data, address-of-origin data, destination address data, object vulnerability data, and object status data; c) commingling the objects in a repository selected from a warehouse and a truck, the repository being provided with at least one large loop field antenna operable at said low radio frequency; the field antenna being disposed at a distance from each object that permits effective communication therewith at the low radio frequency, d) reading the identification data and shipping data from the transceiver of each tag by interrogating all tags commingled in said repository with data signals, such as specific IP addresses or other identification codes, via said field antenna; and e) transmitting the identification data and shipping data from each tag to a central data processor to provide a tally of the objects in said repository.
    • 20. 发明申请
    • Low Cost Secure ID Card and System
    • 低成本安全身份证和系统
    • US20070283160A1
    • 2007-12-06
    • US11566135
    • 2006-12-01
    • John StevenPaul WaterhouseChristopher VergeKenneth TruongJason August
    • John StevenPaul WaterhouseChristopher VergeKenneth TruongJason August
    • G06F7/08
    • G06Q10/08G07B2017/00209G07C9/00039G07C9/00103G07C9/00174G07C9/00182G07C9/00571G07C9/00896G07C2009/00222G07C2009/0023G07C2009/00642G07C2009/00769
    • The invention provides a method for controlling the operating state of a lock characterized by a locked state and an unlocked state. The method comprises: entering secret information on an electronic input device (e.g. keypad) located on a radio frequency identity card, then electronically comparing the secret information against an authorized code to determine whether the secret information is authorized, then transmitting by radio frequency an unlocking signal to a radio frequency reader located at the lock for opening the lock in the event that the secret information is authorized. In a related use of such RF identity cards, the invention also provides a system and method of tracking movements of individuals within a secure area. The method comprises the steps of: using a loop antenna operable to transmit and receive RF signals from at least one radio frequency (RF) identity card carried by an individual; transmitting RF signals at a frequency not exceeding 1 megahertz from a reader through the loop antenna to the aforesaid RF card to request a secret code; entering this secret code on an electronic input device (e.g. keypad) device located on the RF card, transmitting this secret code to the reader through a transceiver disposed on the RF card; and using a data processor/CPU located at the reader to determine whether the secret code corresponds to the aforesaid authorization.
    • 本发明提供一种用于控制锁定的操作状态的方法,其特征在于锁定状态和解锁状态。 该方法包括:在位于射频识别卡上的电子输入设备(例如小键盘)上输入秘密信息,然后将秘密信息与授权码进行电子比较,以确定秘密信息是否被授权,然后通过射频发送解锁 信号到位于锁的射频读取器,以在秘密信息被授权的情况下打开锁。 在这种RF身份证的相关使用中,本发明还提供了一种跟踪个人在安全区域内的运动的系统和方法。 该方法包括以下步骤:使用可操作以从由个人携带的至少一个射频(RF)身份证发送和接收RF信号的环形天线; 将来自读取器的频率不超过1兆赫的RF信号通过环形天线发射到上述RF卡以请求密码; 在位于RF卡上的电子输入设备(例如键盘)设备上输入该密码,通过设置在RF卡上的收发器将该密码发送给读取器; 并使用位于读取器的数据处理器/ CPU来确定密码是否对应于上述授权。