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    • 4. 发明授权
    • Coordinate input apparatus with pen and finger input detection
    • 使用笔和手指输入检测的坐标输入设备
    • US5790106A
    • 1998-08-04
    • US557507
    • 1995-11-14
    • Shinji HiranoMikio MatsumotoShinichi HiguchiKinya InoueYoshihisa EndoTadashi Manome
    • Shinji HiranoMikio MatsumotoShinichi HiguchiKinya InoueYoshihisa EndoTadashi Manome
    • G06F3/033G06F3/041G09G3/02G08C21/00
    • G06F3/041G06F3/03545G06F3/044
    • A coordinate input apparatus which performs an input operation with high precision by use of either an operator's finger or an input pen. The input apparatus includes a tablet having a plurality of X electrodes and Y electrodes arranged in the form of a matrix on the respective top and bottom surfaces of a glass substrate. The input apparatus also has a first oscillation circuit connected to the X electrodes through an analog switch. It is further provided with an input pen containing a second oscillation circuit. When the pen is used to perform the input operation through use of coordinates, the following method of determining the coordinates designated by the pen is employed. A voltage oscillating from the pen is applied to each electrode through capacitance, and the resulting output voltage varies depending on the distance from each electrode to the pen. Based on the varied output voltages, a predetermined computation process is executed to determine the coordinates designated by the pen. On the other hand, when the operator's finger is used to perform the input operation, the analog switch is switched to the first oscillation circuit. Then, a voltage at a predetermined frequency is sequentially applied to each of the X electrodes from the first oscillation circuit, and the voltage applied across the X and Y electrodes is changed due to a decrease in the capacitance therebetween caused by the touching of the finger. Based on this change, coordinates designated by the finger is detected.
    • 一种坐标输入装置,其通过使用操作者的手指或输入笔执行高精度的输入操作。 输入装置包括具有在玻璃基板的相应顶表面和底表面上以矩阵形式布置的多个X电极和Y电极的片剂。 输入装置还具有通过模拟开关连接到X电极的第一振荡电路。 还设置有包含第二振荡电路的输入笔。 当使用笔用于通过使用坐标来执行输入操作时,采用以下确定由笔指定的坐标的方法。 从笔上振荡的电压通过电容施加到每个电极,并且所得到的输出电压根据从每个电极到笔的距离而变化。 基于不同的输出电压,执行预定的计算处理以确定由笔指定的坐标。 另一方面,当操作者的手指用于执行输入操作时,模拟开关切换到第一振荡电路。 然后,从第一振荡电路向X电极中的每一个依次施加预定频率的电压,并且由于手指的触摸引起的电容的减小,X和Y电极两端的电压发生变化 。 基于该变化,检测由手指指定的坐标。
    • 5. 发明申请
    • Gas Turbine Stator Vane
    • 燃气轮机定子叶片
    • US20120275911A1
    • 2012-11-01
    • US13455612
    • 2012-04-25
    • Ichiro MiyoshiShinichi HiguchiMasami Noda
    • Ichiro MiyoshiShinichi HiguchiMasami Noda
    • F01D9/04
    • F01D9/041F01D5/143F05D2240/10F05D2240/80F05D2250/184F05D2250/711F05D2250/712
    • A gas turbine stator vane is effective for suppressing a secondary flow in a region sandwiched between a suction surface side and a pressure surface side, as well as for suppressing augmentation of a horseshoe-shaped vortex occurring near a leading edge of the vane. The stator vane includes a vane profile portion having a pressure surface concaved to a chord line of the vane, and a suction surface convexed to the chord line; an outer-circumferential end wall positioned at an outer circumferential side of the vane profile portion; and an inner-circumferential end wall positioned at an inner circumferential side of the vane profile portion. An outer-circumferential end wall inner surface that is an inner-circumferential surface of the outer-circumferential end wall has an inward convexed shape and an outward convexed shape, at the suction surface side of the vane profile portion.
    • 燃气轮机定子叶片对于抑制夹在吸入面侧和压力面侧的区域中的二次流动以及用于抑制在叶片的前缘附近发生的马蹄形涡流的增大是有效的。 定子叶片包括叶片轮廓部分,其具有凹陷到叶片的弦线的压力表面和凸起到弦线的吸力表面; 位于所述叶片轮廓部的外周侧的外周端壁; 以及位于叶片轮廓部的内周侧的内周端壁。 作为外周端壁的内周面的外周端壁内表面在叶片型面部的吸附面侧具有向内凸的形状和向外的凸出的形状。