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    • 2. 发明授权
    • Dental magnetic attachment
    • 牙科磁性附件
    • US06299450B1
    • 2001-10-09
    • US09427702
    • 1999-10-27
    • Yoshinobu HonkuraKazuo AraiKazunari KimuraLei Tian
    • Yoshinobu HonkuraKazuo AraiKazunari KimuraLei Tian
    • A61C13235
    • A61C13/235
    • A dental magnetic attachment which has a superior magnetic attractive force with a small nonmagnetic welded part and a flat welded surface to be polished. The dental magnetic attachment including a magnet, a yoke with a pit to hold the magnet, a sealing disk placed on the opening of the pit to cover the magnet and a nonmagnetic welded part between the yoke and the disk. The yoke and the disk are made from soft magnetic material. The nonmagnetic welded part, which joins the yoke and the disk, is formed by welding the yoke, the sealing disk, the sealing ring made from nonmagnetic austenitic stainless steel and a Ni coat between the sealing disk and the sealing ring together. Here, it is preferably that there remains a part of the nonmagnetic sealing ring. The welded surface of the dental magnetic attachment is polished to be flat.
    • 一种具有优异的磁吸引力的小型非磁性焊接部件和待抛光的平坦焊接表面的牙科磁性附件。 包括磁体,具有用于保持磁体的凹坑的磁轭的牙科磁性附件,设置在凹坑的开口上以覆盖磁体的密封盘以及磁轭和磁盘之间的非磁性焊接部分。 磁轭和磁盘由软磁材料制成。 通过将磁轭,密封盘,由非磁性奥氏体不锈钢制成的密封圈和密封盘与密封环之间的Ni涂层焊接在一起,形成连接磁轭和磁盘的非磁性焊接部。 这里,优选地,存在非磁性密封环的一部分。 牙科磁性附件的焊接表面被抛光为平坦的。
    • 6. 发明申请
    • EFFICIENT CPU MAILBOX READ ACCESS TO GPU MEMORY
    • 高效的CPU邮箱读取访问GPU内存
    • US20140082120A1
    • 2014-03-20
    • US13620232
    • 2012-09-14
    • Dennis K. MAKaran GuptaLei TianFranck R. DiardPraveen JainWei-Je HuangAtul Kalambur
    • Dennis K. MAKaran GuptaLei TianFranck R. DiardPraveen JainWei-Je HuangAtul Kalambur
    • G06F15/167
    • G06F15/167G06F15/16G06F15/163G06F15/17G06F15/173
    • Techniques are disclosed for peer-to-peer data transfers where a source device receives a request to read data words from a target device. The source device creates a first and second read command for reading a first portion and a second portion of a plurality of data words from the target device, respectively. The source device transmits the first read command to the target device, and, before a first read operation associated with the first read command is complete, transmits the second read command to the target device. The first and second portions of the plurality of data words are stored in a first and second portion a buffer memory, respectively. Advantageously, an arbitrary number of multiple read operations may be in progress at a given time without using multiple peer-to-peer memory buffers. Performance for large data block transfers is improved without consuming peer-to-peer memory buffers needed by other peer GPUs.
    • 公开了用于对等数据传输的技术,其中源设备从目标设备接收到读取数据字的请求。 源设备分别创建用于从目标设备读取多个数据字的第一部分和第二部分的第一和第二读取命令。 源设备向目标设备发送第一读取命令,并且在与第一读取命令相关联的第一读取操作完成之前,将第二读取命令发送到目标设备。 多个数据字的第一和第二部分分别存储在缓冲存储器的第一和第二部分中。 有利地,任意数量的多个读取操作可以在给定时间进行,而不使用多个对等存储器缓冲器。 改进了大数据块传输的性能,而不消耗其他对等GPU所需的对等内存缓冲区。
    • 8. 发明授权
    • Variable orifice nozzle
    • 可变孔喷嘴
    • US07938337B2
    • 2011-05-10
    • US11973639
    • 2007-10-09
    • Lei Tian
    • Lei Tian
    • B05B1/30B05B1/34
    • A01G25/09A01C23/007B05B1/3006B05B1/323B05B1/341G05D7/0113Y10S239/12
    • A spray nozzle assembly includes a pressure dependent variable spray orifice and an internal chamber which is at least partially bound by a flexibly deformable sidewall. At its distal end, the sidewall terminates at a distal face defining the spray orifice extending therethrough. A metering member extends distally from the internal chamber and through at least a portion of the spray orifice. As the pressure of a liquid supplied to the internal chamber by a liquid supply pathway varies, the flexibly deformable sidewall expands or contracts in response thereto. As the sidewall expands and contracts, the distal face moves relative to the metering member to change the effective size of the spray orifice.
    • 喷嘴组件包括由压力决定的可变喷射孔和至少部分地由柔性可变形的侧壁限定的内部室。 在其远端处,侧壁终止于限定延伸穿过其中的喷孔的远侧面。 计量构件从内部腔室向远侧延伸并且穿过喷射口的至少一部分。 当通过液体供应路径供应到内部室的液体的压力变化时,柔性可变形的侧壁响应于此而膨胀或收缩。 当侧壁膨胀和收缩时,远侧面相对于计量构件移动以改变喷孔的有效尺寸。