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    • 4. 发明授权
    • Disk drive memory
    • 磁盘驱动器内存
    • US5077736A
    • 1991-12-31
    • US480019
    • 1990-02-13
    • Robert H. Dunphy, Jr.Robert WalshJohn H. BowersGeorge A. Rudeseal
    • Robert H. Dunphy, Jr.Robert WalshJohn H. BowersGeorge A. Rudeseal
    • G06F3/06G06F11/10G06F11/16G06F11/20G11B5/012G11B20/18
    • G06F11/2094G06F11/1008G06F11/1076G11B20/1833G11B5/012G06F11/1662Y10S360/903
    • The disk drive memory of the present invention uses a large plurality of small form factor disk drives to implement an inexpensive, high performance, high reliability disk drive memory that emulates the format and capability of large form factor disk drives. The plurality of disk drives are switchably interconnectable to form redundancy groups of N+M parallel connnected disk drives to store data thereon. The N+M disk drives are used to store the N segments of each data word plus M redundancy segments. In addition, a pool of R backup disk drives is maintained to automatically substitute a replacement disk drive for a disk drive in a redundancy group that fails during operation. The number N of data segments in each data redundancy group can be varied throughout the disk drive memory to thereby match the characteristics of the input data or operational parameters within the disk drive memory. Furthermore, a group of U unassigned disk drives can be maintained as a stock of disk drives that can be powered up as needed and assigned to either a redundancy group or to the pool of backup disk drives.
    • 本发明的磁盘驱动器存储器使用大量的小尺寸磁盘驱动器来实现模拟大尺寸磁盘驱动器的格式和能力的廉价的,高性能的,高可靠性的磁盘驱动器存储器。 多个磁盘驱动器可切换地互连以形成N + M个并联连接磁盘驱动器的冗余组,以在其上存储数据。 N + M磁盘驱动器用于存储每个数据字的N个段加上M个冗余段。 此外,维护一个R备份磁盘驱动器池,以自动将替换磁盘驱动器替换为在运行期间失败的冗余组中的磁盘驱动器。 每个数据冗余组中数据段的数量N可以在整个磁盘驱动器存储器中变化,从而使输入数据的特性或磁盘驱动器存储器内的操作参数相匹配。 此外,一组U未分配的磁盘驱动器可以维护为可以根据需要加电的磁盘驱动器的库存,并分配给冗余组或备份磁盘驱动器池。
    • 5. 发明授权
    • RFID tags which are virtually activated and/or deactivated and apparatus
and methods of using same in an electronic security system
    • 虚拟激活和/或停用的RFID标签以及在电子安全系统中使用该RFID标签的装置和方法
    • US6025780A
    • 2000-02-15
    • US900266
    • 1997-07-25
    • John H. BowersThomas J. Clare
    • John H. BowersThomas J. Clare
    • G06K19/00G06K7/10G06K17/00G06K19/07G07G1/12G08B13/24G08B13/14
    • G07G3/003G06K19/0701G06K19/0715G06K19/0723G06K19/07345G06Q10/087G07G1/009G07G1/12G07G3/00G08B13/2414G08B13/2417G08B13/2457G08B13/246
    • An electronic security system uses a set of predefined RFID tags. Each tag is associated with, and attached to, an article or packaging for an article. Each tag includes unique tag information which is logged into a computerized database that contains a record for each of the tags in the set. A detection zone is monitored with an interrogator which detects RFID tags. When an RFID tag is detected, the database records are compared to the tag information and an appropriate database response is output. A deactivation event may be performed on the tag when legitimate access is obtained to the tagged article. The deactivation event may be electronic, physical or virtual. One type of RFID tag used in the system may physically deactivated by altering the state of a circuit element associated with the tag so that the tag cannot return a response signal. Another type of RFID tag used in the system has electronically alterable tag information. The interrogator includes circuitry for detecting the electronic alteration and causing an appropriate response therefrom without requiring any communication with a database of tags.
    • 电子安全系统使用一组预定义的RFID标签。 每个标签都与文章或文章的包装相关联并附加在其上。 每个标签都包含唯一的标签信息,该标签信息被记录到包含该集合中每个标签的记录的计算机化数据库中。 检测区域由检测RFID标签的询问器进行监控。 当检测到RFID标签时,将数据库记录与标签信息进行比较,并输出适当的数据库响应。 当对标签的物品获得合法访问时,可以在标签上执行停用事件。 停用事件可以是电子的,物理的或虚拟的。 系统中使用的一种类型的RFID标签可以通过改变与标签相关联的电路元件的状态来物理地去激活,使得标签不能返回响应信号。 系统中使用的另一种类型的RFID标签具有电子可更改的标签信息。 询问器包括用于检测电子改变并且引起适当响应的电路,而不需要与标签数据库的任何通信。
    • 9. 发明授权
    • Direct electric resistance liquid heater
    • 直接电阻液体加热器
    • US07817906B2
    • 2010-10-19
    • US11352184
    • 2006-02-10
    • Jeremiah M. CallahanJames E. BarzykJohn H. Bowers
    • Jeremiah M. CallahanJames E. BarzykJohn H. Bowers
    • H05B3/60
    • F24H1/106H05B3/60H05B2203/021
    • The Direct Electric Resistance Liquid Heater comprises a liquid heating chamber containing a plurality of electrodes. The electrodes are spaced apart to create a plurality of channels through which the liquid to be heated passes. The electrodes are each connected to a power supply by one or more switches. A controller controls the switches based upon data received from a temperature sensor, sensing the temperature of the liquid, and/or an electric current sensor, sensing the current utilized by the liquid heater. Selection of the number and spacing of the electrodes, and the number of switches, provides the controller with various current levels options to apply to the liquid to be heated. The current levels available due to the number and spacing of the electrodes and the number of switches, span the range from minimum current to maximum current such that the controller can incrementally increase or decrease the current applied to the liquid to be heated without disrupting other users of the same power source.
    • 直接电阻液体加热器包括含有多个电极的液体加热室。 电极间隔开以形成多个通道,待加热液体通过该通道。 电极各自通过一个或多个开关连接到电源。 控制器基于从温度传感器接收的数据,感测液体的温度和/或电流传感器来控制开关,感测液体加热器使用的电流。 选择电极的数量和间距以及开关数量为控制器提供了各种电流水平选项,以应用于待加热的液体。 由于电极的数量和间隔以及开关数量而可用的电流水平跨越从最小电流到最大电流的范围,使得控制器可以递增地增加或减少施加到待加热液体的电流,而不会中断其他用户 的电源。