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    • 22. 发明授权
    • Oncell single-layer touch sensor
    • 一次性单层触摸传感器
    • US09310944B2
    • 2016-04-12
    • US13951300
    • 2013-07-25
    • Matthew TrendGareth Jones
    • Matthew TrendGareth Jones
    • G06F3/045G06F3/044G06F3/041
    • G06F3/044G06F3/0416G06F2203/04103G06F2203/04108
    • In one embodiment, a touch sensor includes multiple first electrodes along a first direction. Each of the first electrodes includes multiple first conductive regions. The touch sensor also includes multiple second electrodes along a second direction that is substantially perpendicular to the first direction. Each of the second electrodes includes one second conductive region. The one second conductive region of each of the second electrodes are interdigitated with one of the first conductive regions of each of the first electrodes. The first and second conductive regions are disposed on a layer on or within a display stack including one or more layers.
    • 在一个实施例中,触摸传感器包括沿着第一方向的多个第一电极。 每个第一电极包括多个第一导电区域。 触摸传感器还包括沿着基本上垂直于第一方向的第二方向的多个第二电极。 每个第二电极包括一个第二导电区域。 每个第二电极的一个第二导电区域与每个第一电极的第一导电区域中的一个相互交错。 第一和第二导电区域设置在包括一个或多个层的显示器堆叠之上或之内的层上。
    • 24. 发明申请
    • SYSTEMS AND METHODS FOR COMPUTER ASSISTED ALIGNMENT OF CONFORMERS
    • 计算机辅助对齐的系统和方法
    • US20110301858A1
    • 2011-12-08
    • US13133915
    • 2009-12-08
    • Gareth Jones
    • Gareth Jones
    • G06F19/00
    • G16C20/40
    • A computer-assisted method for determining the optimal conformers of biologically active molecules binding any particular receptor. Starting from a set of molecules of known activity at the receptor a conformer library may be generated using any method known to the art including commercially available software. Pair-wise comparison of conformers create alignments and similarity scoring of the alignments. The set of pair-wise alignments is used by the present invention to determine optimal bioactive conformations and to align these conformations in 3-D space for determining the binding mode of the active compounds The invention includes a computer program implementation of such a method.
    • 用于确定结合任何特定受体的生物活性分子的最佳构象异构体的计算机辅助方法。 从受体上已知活性的一组分子开始,可以使用本领域已知的任何方法(包括市售软件)产生构象库。 构象异构体的成对比较可以产生比对和比对的相似性评分。 本发明使用一组成对比对来确定最佳的生物活性构象并将其在3-D空间中对准以确定活性化合物的结合模式。本发明包括这种方法的计算机程序实现。
    • 28. 发明授权
    • D.C. electric motor
    • 直流电动机
    • US4873463A
    • 1989-10-10
    • US52045
    • 1987-04-16
    • Gareth Jones
    • Gareth Jones
    • H02K23/62H02K23/66H02K29/10
    • H02K23/62H02K29/10
    • In a d.c. motor, the stator may form the armature and has its windings inserted in slots in its cylindrical surface and the rotor may comprise a permanent magnet or be provided with d.c. windings. Switching means operate in synchronism with rotation of the rotor to connect a d.c. source to the armature windings so that a rotating field is produced in arrears of the rotor field to exert a repelling force on the rotor poles. Because the rotor and stator fields are in opposition, rather than in mutual assistance, less energy is needed to energize the windings to produce a given torque. Also the current in each winding is very low when commutation occurs, and sparking avoided.
    • PCT No.PCT / GB86 / 00501 Sec。 371日期1987年04月16日 102(e)日期1987年4月16日PCT提交1986年8月22日PCT公布。 第WO87 / 01247号公报 日期:1987年2月26日。 电机,定子可以形成电枢并且其绕组插入其圆柱形表面中的槽中,并且转子可以包括永磁体或设置有直流电。 绕组。 开关装置与转子的旋转同步运行,以连接直流电。 源极到电枢绕组,使得在转子磁场的拖欠中产生旋转磁场,以在转子极上施加排斥力。 因为转子和定子磁场是相反的,而不是在相互协助的情况下,需要更少的能量来激励绕组以产生给定的转矩。 此外,当换相发生时,每个绕组中的电流也非常低,避免了火花。