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    • 3. 发明授权
    • SIMD microprocessor and method for controlling variable sized image data processing
    • SIMD微处理器和控制可变大小图像数据处理的方法
    • US08356163B2
    • 2013-01-15
    • US12144829
    • 2008-06-24
    • Toshiki Yamanaka
    • Toshiki Yamanaka
    • G06F7/38
    • G06F9/3885G06F9/30014G06F9/30032G06F9/30036G06T1/20
    • A disclosed SIMD microprocessor includes plural processor elements each having n arithmetic circuits and n registers configured to temporarily store data pieces to be input to the arithmetic circuits, n being a natural number equal to or greater than 2, and; a control circuit configured to determine an arrangement order of the processor elements and an arrangement order of the arithmetic circuits in the processor elements and determine whether to use the n arithmetic circuits as a single arithmetic circuit or as n arithmetic circuits. Each processor element further includes n shifter pairs each including a PE shifter and a bit shifter; and n shift data selection circuits configured to select arbitrary data pieces from the data pieces in the shifter pairs, perform bit extension on the data pieces, and transfer the data pieces to the arithmetic circuits.
    • 所公开的SIMD微处理器包括多个处理器元件,每个处理器元件具有n个算术电路,n个寄存器被配置为临时存储要输入到算术电路的数据,n是等于或大于2的自然数; 控制电路,被配置为确定处理器元件的排列顺序和处理器元件中的算术电路的排列顺序,并且确定是使用n个运算电路作为单个运算电路还是使用n个运算电路。 每个处理器元件还包括每个包括PE移位器和位移器的n个移位器对; 以及n移位数据选择电路,被配置为从移位器对中的数据片中选择任意数据片,对数据片进行比特扩展,并将数据片传送到运算电路。
    • 4. 发明申请
    • HINGE UNIT AND PORTABLE TERMINAL
    • 铰链单元和便携式终端
    • US20120208603A1
    • 2012-08-16
    • US13503550
    • 2010-10-18
    • Takahiro SakaiToshiki Yamanaka
    • Takahiro SakaiToshiki Yamanaka
    • H04W88/02
    • H04M1/0212H04M1/0214H04M1/0225H04M1/0235H04M1/0247
    • There are provided a hinge unit and portable terminal, even when a display housing is inverted to respond to demands for thin and light weight structure and high design quality, its display housing is always in a proper position. The display housing 1 has a display device 2 at its display housing front 1a. The display device 2 is made up of, for example, a liquid crystal display device and performs predetermined displaying. The shaft fitting section 3 is fitted in an end terminal region of one side of the display housing. A shaft 4 is inserted into the shaft fitting section 3 to support the display housing 1 in a manner to be freely inverted and fitted to the shaft fitting section 3 so that an axial center of the inverting axis forms a predetermined angle with a display surface of the display device 2.
    • 提供了铰链单元和便携式终端,即使显示器壳体被反转以响应对于重量轻的结构和高设计质量的要求,其显示器壳体总是在适当的位置。 显示器壳体1在显示器壳体前部1a处具有显示装置2。 显示装置2例如由液晶显示装置构成,进行规定的显示。 轴嵌合部3嵌合在显示壳体的一侧的端部终端区域。 轴4插入到轴嵌合部分3中,以显示壳体1的方式自由倒转并安装到轴装配件3上,使得转轴的轴向中心与 显示装置2。
    • 6. 发明授权
    • Current saving semiconductor memory and method
    • 省电半导体存储器及方法
    • US06580653B2
    • 2003-06-17
    • US10079436
    • 2002-02-19
    • Toshiki Yamanaka
    • Toshiki Yamanaka
    • G11C702
    • G11C7/227G11C7/06G11C7/22
    • A semiconductor memory includes a dummy memory circuit configured to simulate dummy data reading from an applicable dummy memory cell when data reading is performed. The dummy memory circuit may include a plurality of dummy memory cells each selected together with a corresponding memory cell for reading. The dummy memory cell may include pre-fixed complementary data. A dummy bit line pair may be connected to each of the plurality the dummy memory cells. A dummy pre-charge circuit may be provided so as to pre-charge the dummy bit line pair when data reading is performed. A dummy sense amplifier may be provided so as to amplify a potential difference of the dummy bit line pair. The dummy sense amplifier may output a control signal for controlling the semiconductor memory when the potential difference is at a prescribed level.
    • 半导体存储器包括:虚拟存储器电路,被配置为当执行数据读取时模拟从可应用的虚拟存储器单元读取虚拟数据。 虚拟存储器电路可以包括多个虚拟存储单元,每个虚拟存储单元与相应的用于读取的存储单元一起选择。 虚拟存储器单元可以包括预固定的补充数据。 虚拟位线对可以连接到多个虚拟存储器单元中的每一个。 可以提供虚拟预充电电路,以便在执行数据读取时对虚拟位线对进行预充电。 可以提供虚拟读出放大器,以放大虚拟位线对的电位差。 当电位差处于规定水平时,虚拟读出放大器可以输出用于控制半导体存储器的控制信号。
    • 7. 发明授权
    • Vibration-generating-motor mounting structure and its mounting method
    • 振动发电电机安装结构及其安装方法
    • US5657205A
    • 1997-08-12
    • US511587
    • 1995-08-04
    • Toshiyuki TamaruToshiki Yamanaka
    • Toshiyuki TamaruToshiki Yamanaka
    • H05K7/12G08B6/00H02K5/00H04Q7/14H05K3/30H05K1/18
    • G08B6/00H05K3/301
    • A mounting structure of the vibration-generating-motor comprises a vibration-generating-motor and a holder for holding the vibration-generating-motor. A holding section of the holder contacts faced inner surfaces of a case and is held by the inner surfaces. Vibrations of the vibration-generating-motor are directly conveyed to the case through the holding section. For assembling, the holder holding the motor passes through a circuit board and is fixed by a hole formed on the circuit board. Then, the both ends of the holder are brought into contact with faced inner surfaces of the case so that the holder is held by the inner surfaces. The above structure enables vibrations of a vibration-generating-motor to be efficiently conveyed to the surface of the case and reduces undesirable sounds due to resonance of a circuit board.
    • 振动产生电动机的安装结构包括振动产生电动机和用于保持振动产生电动机的保持器。 保持器的保持部分接触壳体的内表面并由内表面保持。 振动发生电动机的振动通过保持部直接输送到壳体。 为了组装,保持电动机的保持器通过电路板,并通过形成在电路板上的孔固定。 然后,保持器的两端与壳体的相对的内表面接触,从而保持器由内表面保持。 上述结构能够使振动发生电动机的振动被有效地传送到壳体的表面,并且由于电路板的谐振而减少不期望的声音。
    • 10. 发明申请
    • MOUNTING STRUCTURE OF FLEXIBLE PRINTED CIRCUIT BOARD AND SLIDING-TYPE ELECTRONIC DEVICE
    • 柔性印刷电路板和滑动型电子设备的安装结构
    • US20140301046A1
    • 2014-10-09
    • US14312224
    • 2014-06-23
    • Takahiro SAKAIToshiki YAMANAKAHiroshi YAMADA
    • Takahiro SAKAIToshiki YAMANAKAHiroshi YAMADA
    • H05K7/14
    • H05K5/0217H04M1/0237H04M1/0274H04M1/0277H05K1/028H05K5/0004H05K7/1417H05K7/1461H05K2201/055
    • A mounting structure of a flexible printed circuit board and a sliding-type electronic device is provided by which a too large increase in thickness of devices can be avoided and a pair of housings can be slid relatively in a bending and slanting direction. In the mounting structure, an upper housing 12 and a lower housing 22 coupled in a freely slidable manner are electrically connected to each other by a flexible printed circuit board folded back to be routed between slide facing surfaces 12b and 22a of both the housings and the height of a side wall surface 12c and 22c of the upper housing and lower housing changes in a bending manner along the direction of freely sliding and, in the slide facing surfaces of the upper housing and lower housing, concave space portions 15 and 25 to accommodate the change in curvature and in position of a folding-back portion 31a caused by sliding motion between the upper housing and lower housing are disposed.
    • 提供了柔性印刷电路板和滑动型电子装置的安装结构,通过该安装结构可以避免装置的厚度增加太大,并且可以在弯曲和倾斜方向上相对滑动一对外壳。 在安装结构中,以可自由滑动的方式联接的上壳体12和下壳体22通过折回的柔性印刷电路板彼此电连接以在两个壳体的滑动面对表面12b和22a之间布置,并且 上壳体和下壳体的侧壁表面12c和22c的高度沿着自由滑动的方向以弯曲方式变化,并且在上壳体和下壳体的面向滑动的表面中,凹入空间部分15和25以容纳 设置由上壳体和下壳体之间的滑动运动引起的折回部分31a的曲率和位置的变化。