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    • 1. 发明授权
    • Method and apparatus for generating CRC/parity error in network environment
    • 在网络环境中生成CRC /奇偶校验错误的方法和装置
    • US07000170B2
    • 2006-02-14
    • US10357957
    • 2003-02-04
    • Mark SlutzWilliam SchmitzErik Paulsen
    • Mark SlutzWilliam SchmitzErik Paulsen
    • G11B20/20H03M13/00
    • G06F11/221H04L12/66
    • A method and apparatus for generating a CRC (cyclic redundancy check)/parity error in network environment. A SCSI (small computer systems interface) bus expander such as an Ultra320 bus expander or the like is added between a sending device and a receiving device. The sending device-receiving device pair may execute a training session to determine the skew compensation. During the training session, the SCSI bus expander may figure out timing differences due to skew and adjusts the timing of each data signal to compensate for skew. For each data signal, a compensated time may be obtained. The compensated time may then be modified through a JTAG (Joint Test Action Group) port of the SCSI bus expander. The compensated times may be adjusted such that a CRC/parity error is generated on every I/O (input/output) or just some I/Os to the receiving device. By intentionally generating a CRC/parity error, the response of the devices in the SCSI environment to a CRC/parity error may be evaluated during an input/output (I/O) test.
    • 一种用于在网络环境中生成CRC(循环冗余校验)/奇偶校验错误的方法和装置。 在发送设备和接收设备之间添加诸如Ultra320总线扩展器等的SCSI(小型计算机系统接口)总线扩展器。 发送设备接收设备对可以执行训练会话以确定偏斜补偿。 在训练期间,SCSI总线扩展器可能会计算由于偏移引起的时序差异,并调整每个数据信号的时序以补偿偏移。 对于每个数据信号,可以获得补偿时间。 然后可以通过SCSI总线扩展器的JTAG(联合测试动作组)端口修改补偿时间。 可以调整补偿时间,使得在接收设备的每个I / O(输入/输出)或仅一些I / O上产生CRC /奇偶校验错误。 通过有意产生CRC /奇偶校验错误,可以在输入/输出(I / O)测试期间评估SCSI环境中的器件对CRC /奇偶校验错误的响应。
    • 8. 发明申请
    • Radiographic sensor positioning system
    • 放射摄影传感器定位系统
    • US20080095321A1
    • 2008-04-24
    • US11904968
    • 2007-09-27
    • Mitchell CalderwoodWilliam Schmitz
    • Mitchell CalderwoodWilliam Schmitz
    • A61B6/14
    • A61B6/145A61B6/4283A61B6/4423A61B6/4435G03B42/042
    • The present invention is a radiographic sensor positioning system. In particular, the present invention is directed to a system for positioning a digital dental radiographic sensor in a patient's mouth and for positioning a radiographic device, e.g. a gamma ray source, to interact with the sensor. A preferred embodiment of the dental radiography positioning system comprises an aimer ring that slides onto an extension bar in one of several positions. The extension bar is preferably curved with a flared end and a tined end. The extension bar inserts into a bite block at one of three slots. The bite block has a bite surface above the three slots and a preferably tapered sensor holder slot with two stabilizer posts. A sensor holder is inserted into the sensor holder slot. For posterior images, the stabilizer posts can stabilize the sensor.
    • 本发明是射线照相传感器定位系统。 特别地,本发明涉及一种用于将数字牙科放射线照相传感器定位在患者口中并用于定位放射线照相装置的系统, 伽马射线源,与传感器相互作用。 牙科X射线照相定位系统的优选实施例包括在几个位置中的一个位置上滑动到延伸杆上的瞄准器环。 延伸杆优选地弯曲,具有喇叭形端部和倾斜端部。 延长杆在三个插槽之一插入咬合块。 咬合块在三个槽之上具有咬合表面,并且具有两个稳定器柱的优选锥形传感器保持器槽。 传感器支架插入传感器支架槽。 对于后置图像,稳定器柱可以稳定传感器。