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    • 21. 发明申请
    • Collision avoidance for uplink VoIP transmission
    • 上行VoIP传输的冲突避免
    • US20090103440A1
    • 2009-04-23
    • US11977228
    • 2007-10-23
    • Haifeng WangBin ChenBin WangJing XuTing Zhou
    • Haifeng WangBin ChenBin WangJing XuTing Zhou
    • G06F11/30
    • H04W72/1257H04L1/1812H04L1/1887H04L1/1893H04W72/04
    • Disclosed is a method the includes determining if a collision will occur between a transmission from a first user equipment that uses a persistently assigned uplink resource (such as for VoIP packet transmissions) and a retransmission from a second user equipment that uses a synchronous non-adaptive automatic repeat request procedure (e.g., synchronous, non-adaptive HARQ). If it is determined that a collision will occur, the method dynamically allocates the first user equipment to another uplink resource to avoid the collision, while if it is determined that the collision will not occur, the first user equipment is not dynamically allocated another uplink resource so that the first user equipment sends its transmission using the persistently assigned uplink resource. The embodiments of this invention pertain to both the base station (e.g., an evolved Node-B) and the user equipment.
    • 公开了一种方法,其包括确定在使用持续分配的上行链路资源(例如用于VoIP分组传输)的第一用户设备的传输与来自使用同步非自适应的第二用户设备的重传之间是否发生冲突 自动重发请求过程(例如,同步,非自适应HARQ)。 如果确定发生冲突,则该方法动态地将第一用户设备分配给另一上行资源以避免冲突,而如果确定不发生冲突,则第一用户设备不是动态地分配另一个上行资源 使得第一用户设备使用持续分配的上行链路资源发送其传输。 本发明的实施例涉及基站(例如,演进节点B)和用户设备。
    • 23. 发明授权
    • Polyester polycondensation with catalyst and a catalyst enhancer
    • 与催化剂和催化剂增强剂的聚酯缩聚
    • US06372879B1
    • 2002-04-16
    • US09895990
    • 2001-06-29
    • Conor M. DowlingBin ChenSri R. Seshadri
    • Conor M. DowlingBin ChenSri R. Seshadri
    • C08G6302
    • C08G63/85B01J21/063B01J31/04B01J31/2239B01J31/26B01J2531/0205B01J2531/10B01J2531/20B01J2531/46B01J2531/52C08G63/82C08G63/83C08G63/84C08G63/87
    • The present invention is based upon the discovery that nontitanyl oxalates can enhance the catalytic functionality of titanyl oxalate catalysts. This invention provides a novel catalytic composition containing a titanyl oxalate catalyst and a metallic oxalate catalyst enhancer and optionally containing a metallic cocatalyst such as an antimony based catalyst. A synergistic relationship has been discovered between titanyl oxalate catalyst and the catalyst enhancer. A synergistic relationship has also been discovered between the titanyl oxalate catalyst, catalyst enhancer and a metallic cocatalyst such as antimony oxide or antimony triacetate. Also provided is an improved process of producing polyester by the polycondensation of polyester forming reactants in the presence of a catalytically effective amount of a polycondensation catalyst, wherein the improvement comprises utilizing, as the polycondensation catalyst, the novel catalyst composition containing a titanyl oxalate such as lithium titanyl oxalate and a catalyst enhancer such as a nontitanyl metallic oxalate like lithium oxalate and optionally containing a metallic catalyst such as antimony oxide or antimony triacetate. The improved process produces an improved polyester having lower acetaldehyde numbers and good color. The titanyl oxalate/catalyst enhancer composition can be used as a polycondensation catalyst in combination with other catalysts to achieve synergistic catalytic activity. Preferred is a combination of lithium or potassium titanyl oxalate, Li2 or K2TiO(C2O4)2, lithium or potassium oxalate, Li2 or K2(C2O4)2 with antimony oxide or antimony triacetate or antimony trisglycoxide.
    • 本发明基于以下发现,即草酸钛酸酯可以增强草酸氧钛催化剂的催化功能。 本发明提供一种含有草酸氧钛催化剂和金属草酸盐催化剂增强剂并任选地含有金属助催化剂如锑基催化剂的新型催化组合物。 在草酸氧钛催化剂和催化剂增强剂之间已经发现协同关系。 在草酸氧钛催化剂,催化剂增强剂和金属助催化剂如氧化锑或三乙酸锑之间也发现了协同关系。 还提供了通过在催化有效量的缩聚催化剂存在下,通过聚酯形成反应物的缩聚来生产聚酯的改进方法,其中改进包括利用含有草酸氧钛的新型催化剂组合物作为缩聚催化剂, 草酸氧钛酸锂和催化剂增强剂如非钛酸金属草酸盐如草酸锂,并任选地含有金属催化剂如氧化锑或三乙酸锑。 改进的方法产生具有较低乙醛数和良好颜色的改进的聚酯。 草酸氧钛/催化剂增强剂组合物可以与其它催化剂组合用作缩聚催化剂以实现协同催化活性。 优选的是草酸锂或钾钛酸盐,Li 2或K 2 TiO(C 2 O 4)2,草酸锂或钾,Li 2或K 2(C 2 O 4)2与氧化锑或三乙酸锑或三羟基氧化锑的组合。
    • 26. 外观设计
    • Cup holder tray
    • USD1043256S1
    • 2024-09-24
    • US29856453
    • 2022-10-13
    • Bin Chen
    • Bin Chen
    • FIG. 1 is a top, right, and front perspective view of a cup holder tray, showing my new design;
      FIG. 2 is a top, right, and front perspective view thereof, shown with the cup holder detached;
      FIG. 3 is a top plan view thereof, shown with the cup holder detached;
      FIG. 4 is a top, right, and front perspective view thereof, shown with the tray detached;
      FIG. 5 is a bottom right perspective view thereof, shown with the tray detached;
      FIG. 6 is a top, right, and front perspective view thereof, shown in a folded status;
      FIG. 7 is a bottom perspective view thereof, shown in a folded status;
      FIG. 8 is a bottom plan view thereof, shown in a folded status; and,
      FIG. 9 is a right side elevational view thereof, shown in a folded status.
      The broken lines in the figures illustrate the portions of the cup holder tray that form no part of the claimed design.
    • 27. 发明授权
    • Button switching shower and its switching method
    • 按钮切换淋浴及其切换方式
    • US09427749B2
    • 2016-08-30
    • US13577869
    • 2010-12-31
    • Huasong ZhouJianmin ChenRenzhong LiBin Chen
    • Huasong ZhouJianmin ChenRenzhong LiBin Chen
    • B05B1/18B05B1/16
    • B05B1/18B05B1/1636B05B1/1654B05B1/169Y10T137/86863
    • A switching method of a button switching shower includes: step 1, pressing a button slidingly connected to the shower, and then the button slides; step 2, the button acts on the linking seat of the pawl for rotating the pawl; step 3, the pawl rotates the ratchet wheel through the control end of the pawl, and the shape of the elastic claw of the pawl is changed for restoring energy; step 4, the rotation of the ratchet wheel rotates the water diversion disc, and then the water diversion disc is in place, and then the water diversion disc switches the outlet functions, the stopping claw of the pawl is against the ratch of the ratchet wheel for stopping the ratchet wheel inversion; step 5, the pressing is loosened for resetting the button, and the elastic energy of the elastic claw is released for resetting the pawl.
    • 按钮切换淋浴器的切换方法包括:步骤1,按压滑动地连接到淋浴器上的按钮,然后按钮滑动; 步骤2,按钮作用在用于旋转棘爪的棘爪的连接座上; 步骤3,棘爪通过棘爪的控制端旋转棘轮,并且改变棘爪的弹性爪的形状以恢复能量; 步骤4,棘轮的旋转使分水盘旋转,然后分水盘就位,然后分水盘切换出口功能,棘爪的止动爪抵靠棘轮的棘轮 用于停止棘轮反转; 步骤5,松开按钮来复位按钮,释放弹性爪的弹性能量以重置棘爪。
    • 28. 发明授权
    • Point touch switching mechanism
    • 点触式开关机构
    • US09149816B2
    • 2015-10-06
    • US14004578
    • 2012-03-05
    • Huasong ZhouZhongcheng JinJianmin ChenBin Chen
    • Huasong ZhouZhongcheng JinJianmin ChenBin Chen
    • B05B1/18B05B1/16B05B15/06
    • B05B1/185B05B1/1663B05B1/18B05B15/62B05B15/654
    • A point touch switching mechanism has a ball head component, a water separation unit, a switching unit, and a swinging block. The water separation unit can swing with respect to the ball head. The switching unit comprises a slide base connected to the water separation unit and a water separation disk fixedly connected to the slide base, so that the water separation disk can rotate forward when sliding with respect to the water separation unit, and water separation switching can be implemented when the water separation disk rotates with respect to the water separation unit. The swinging block can be connected to the water separation unit in a sliding manner, and the sliding of the swinging block and of the slide base form a connection, so that the water separation unit can drive the swinging block and drive the slide base to slide with respect to the water separation unit.
    • 点触式切换机构具有球头部件,水分离单元,切换单元和摆动块。 水分离单元可以相对于球头摆动。 开关单元包括连接到水分离单元的滑动基座和固定地连接到滑动基座的水分离盘,使得当相对于水分离单元滑动时,水分离盘可以向前旋转,并且水分离切换可以 当水分离盘相对于水分离单元旋转时实施。 摆动块可以以滑动方式连接到水分离单元,并且摆动块和滑动基座的滑动形成连接,使得水分离单元可以驱动摆动块并驱动滑动基座滑动 相对于水分离单元。
    • 29. 发明授权
    • Single point touch shower
    • 单点触摸式淋浴
    • US09033261B2
    • 2015-05-19
    • US13521102
    • 2011-01-10
    • Huasong ZhouHexian CaiJianmin ChenBin Chen
    • Huasong ZhouHexian CaiJianmin ChenBin Chen
    • A62C31/00B05B1/16B05B12/00B05B1/18
    • B05B1/1636B05B1/169B05B1/18B05B12/002
    • A single point touch shower has a fixed unit, an outlet terminal and a switching mechanism. The fixed unit has an inlet passage connecting the water resource; the outlet terminal is asway connected to the fixed unit and provided with a plurality of outlet functions; the switching mechanism comprises a first ratchet wheel, a stopping claw and a transmission mechanism; the first ratchet wheel is rotationally connected to the outlet terminal; the stopping claw connects the first ratchet wheel and the fixed unit to limit the reversal of the first ratchet wheel; the transmission mechanism connects the first ratchet wheel and the fixed unit to transmit the mutual swing between the outlet terminal and the fixed unit to the relative rotation between the first ratchet wheel and the outlet terminal, and the outlet functions switching is controlled through the relative rotation between the first ratchet wheel and the outlet terminal.
    • 单点式淋浴器具有固定单元,出口端子和切换机构。 固定单元具有连接水源的入口通道; 出口端子连接到固定单元并具有多个出口功能; 切换机构包括第一棘轮,止动爪和传动机构; 第一棘轮旋转地连接到出口端; 止动爪连接第一棘轮和固定单元以限制第一棘轮的反转; 传动机构连接第一棘轮和固定单元,以将出口端与固定单元之间的相互摆动传递到第一棘轮与出口端之间的相对旋转,并且出口功能切换通过相对转动 在第一棘轮和出口端之间。