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    • 2. 发明申请
    • Encoder and Light Receiving Device For Encoder
    • 编码器编码器和光接收装置
    • US20080185505A1
    • 2008-08-07
    • US11883070
    • 2006-10-10
    • Seiichiro MizunoYoshitaka TeradaHitoshi InoueTakayuki Suzuki
    • Seiichiro MizunoYoshitaka TeradaHitoshi InoueTakayuki Suzuki
    • G01D5/34
    • G01D5/3473
    • There is provided an encoder in which the absolute angle can be detected with high accuracy even when the irradiated position of light to be detected with respect to a scale is displaced from a reference, and a photodetecting device for an encoder used for such an encoder.In the encoder 1, by passing light to be detected through a straight-line light transmitting portion 17, a bright portion 19 to which the light to be detected is irradiated is formed in an area of a scale plate 11 containing mutually separate parts of arranged lines L1 and L2 and also a dark portion 20 to which no light to be detected is irradiated is formed in the other area. Accordingly, a relative angle between light intensity peaks P1 and P2 (reference relative angle) can be uniquely calculated based on the shape of the light transmitting portion 17. Therefore, in the encoder 1, even if the irradiated position of the light to be detected with respect to the scale plate 11 is displaced from the reference, the absolute angle can be detected with high accuracy by calculating a deviation amount of a relative angle on detecting the angle from the reference relative angle as a corrected amount α°.
    • 提供了一种编码器,其中即使当相对于标尺的待检测的光的照射位置偏离基准时,也可以高精度地检测绝对角度,以及用于这种编码器的编码器的光电检测装置。 在编码器1中,通过使被检测光通过直线透光部17照射被检测光的亮部19形成在刻度板11的包含相互分离的部分的区域 在另一个区域中形成线L 1和L 2以及未被检测的光被照射的暗部20。 因此,可以基于透光部17的形状来唯一地计算光强度峰值P 1和P 2之间的相对角度(参考相对角度)。因此,在编码器1中,即使光的照射位置 相对于标尺板11被检测到的位置偏离基准,通过计算从基准相对角度检测角度的相对角度的偏差量作为校正量α°,可以高精度地检测绝对角度。
    • 3. 发明申请
    • ENCODER AND PHOTODETECTOR FOR ENCODER
    • 编码器和编码器的编码器
    • US20100006748A1
    • 2010-01-14
    • US12444959
    • 2007-09-18
    • Seiichiro MizunoYoshitaka TeradaHitoshi Inoue
    • Seiichiro MizunoYoshitaka TeradaHitoshi Inoue
    • H01J40/02
    • G01D5/3473G01D5/34784
    • An encoder includes a first rotating body and a second rotating body which have slits formed therein and rotate interlockingly with each other; a light source device which emits to-be-detected light to the slits; and a photodetecting device which includes a first scale and a second scale having a plurality of photodetectors aligned along annular alignment lines, and an output part which outputs output signals based on light intensities of the to-be-detected light made incident on the photodetectors of the first scale and the second scale through the slit. The rotation ratio of the second rotating body is different from that of the first rotating body, and to the photodetectors, attributes are assigned every predetermined phase angle.
    • 编码器包括:第一旋转体和第二旋转体,其具有形成在其中的狭缝并彼此互锁地旋转; 向所述狭缝发出被检测光的光源装置; 以及光检测装置,其包括具有沿着环形对准线排列的多个光电检测器的第一标尺和第二标尺,以及输出部,其输出基于入射到光检测器的被检测光的光强度的输出信号 第一个刻度和第二个刻度通过狭缝。 第二旋转体的旋转比与第一旋转体的旋转比不同,对于光电检测器,每个预定的相位角分配属性。
    • 4. 发明申请
    • Photodetector circuit
    • 光电检测器电路
    • US20100148036A1
    • 2010-06-17
    • US12656937
    • 2010-02-19
    • Takashi SuzukiYoshitaka Terada
    • Takashi SuzukiYoshitaka Terada
    • H01L31/101H01L31/09
    • G01J1/44G01J1/46H03F3/087
    • A photodetecting circuit includes an adder that selectively adds outputs of a plurality of circuits for photodetection. Each of the circuits for photodetection includes: a element for photodetecting; a transimpedance amplifier for photodetection, with a first input terminal connected to the photodetecting element; a transconductance amplifier, with a first input terminal connected to an output terminal of the transimpedance amplifier; and a feedback circuit, connected between the output terminal of the transimpedance amplifier for photodetection and the first input terminal of the transimpedance amplifier for photodetection and applying feedback to keep fixed an output voltage of the transimpedance amplifier for photodetection.
    • 光检测电路包括:加法器,其选择性地将多个电路的输出相加以进行光电检测。 用于光电检测的每个电路包括:用于光电检测的元件; 用于光电检测的跨阻抗放大器,其中第一输入端连接到光电检测元件; 跨导放大器,其中第一输入端连接到跨阻放大器的输出端; 以及反射电路,连接在用于光电检测的跨阻放大器的输出端和用于光电检测的跨阻放大器的第一输入端子之间,并施加反馈以保持用于光电检测的跨阻放大器的输出电压。
    • 8. 发明申请
    • Photodetector Circuit
    • 光电检测器电路
    • US20090008534A1
    • 2009-01-08
    • US11886145
    • 2006-03-13
    • Takashi SuzukiYoshitaka Terada
    • Takashi SuzukiYoshitaka Terada
    • H03F3/08
    • G01J1/44G01J1/46H03F3/087
    • A photodetecting circuit includes an adder that selectively adds outputs of a plurality of circuits for photodetection. Each of the circuits for photodetection includes: a element for photodetecting; a transimpedance amplifier for photodetection, with a first input terminal connected to the photodetecting element; a transconductance amplifier, with a first input terminal connected to an output terminal of the transimpedance amplifier; and a feedback circuit, connected between the output terminal of the transimpedance amplifier for photodetection and the first input terminal of the transimpedance amplifier for photodetection and applying feedback to keep fixed an output voltage of the transimpedance amplifier for photodetection.
    • 光检测电路包括:加法器,其选择性地将多个电路的输出相加以进行光电检测。 用于光电检测的每个电路包括:用于光电检测的元件; 用于光电检测的跨阻抗放大器,其中第一输入端连接到光电检测元件; 跨导放大器,其中第一输入端连接到跨阻放大器的输出端; 以及反射电路,连接在用于光电检测的跨阻放大器的输出端和用于光电检测的跨阻放大器的第一输入端子之间,并施加反馈以保持用于光电检测的跨阻放大器的输出电压。
    • 10. 发明授权
    • Gas turbine combustor having a dual fuel supply system
    • 具有双燃料供应系统的燃气轮机燃烧器
    • US08544276B2
    • 2013-10-01
    • US12670039
    • 2008-08-26
    • Yoshitaka TeradaTetsu KonishiKatsuyoshi Omae
    • Yoshitaka TeradaTetsu KonishiKatsuyoshi Omae
    • F02C1/00F02G3/00
    • F23R3/283F02C7/228F23R3/34F23R3/36F23R3/46
    • An object is to provide a low cost gas turbine combustor. The gas turbine combustor has a plurality of main nozzles annularly supported on a nozzle pipe base (11), and the main nozzles each have an oil fuel path for supplying oil fuel and a gas fuel path for supplying gas fuel. A plurality of the oil fuel paths are provided to penetrate the nozzle pipe base (11), and a plurality of lengths of upright piping (21) are provided to be connected to the oil fuel paths, respectively, and be erected on the nozzle pipe base (11). A plurality of lengths of connection piping (22) for interconnecting the lengths of the upright piping (21) in a polygonal shape at a minimum distance are provided outside the nozzle pipe base (11). An oil fuel supply section (14) is connected to one of the lengths of the connection piping (22) to distribute oil fuel to each of the oil fuel paths.
    • 目的在于提供一种低成本燃气轮机燃烧器。 燃气轮机燃烧器具有环形地支撑在喷嘴管座(11)上的多个主喷嘴,并且主喷嘴各具有用于供给油燃料的油燃料路径和用于供给气体燃料的气体燃料路径。 设置多个油燃料路径以穿透喷嘴管基座(11),并且分别设置多个长度的直立管道(21),以连接到油燃料路径,并竖立在喷嘴管 基地(11)。 在喷嘴管基部11的外侧设置多个连续配管(22),用于将直立管道(21)的长度以多边形形式以最小距离互连。 油燃料供给部(14)与连接配管(22)的长度方向连接,将油燃料分配到各油路。