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    • 94. 发明申请
    • Speaker device
    • 扬声器装置
    • US20050105756A1
    • 2005-05-19
    • US10990889
    • 2004-11-17
    • Shinji KobayashiHaruto Kusunoki
    • Shinji KobayashiHaruto Kusunoki
    • H04R9/02H04R1/02H04R1/06H04R9/04H04B1/00H04R1/00H04R25/00
    • H04R1/06H04R2499/13
    • To realizes a speaker device with a simple construction capable of keeping stable statement, regardless of vehicle types. A speaker device for applying electromagnetic force to a voice coil based on a supplied audio signal and generating a sound wave based on the audio signal by vibrating a vibratory plate fixed to the voice coil is provided with: a frame with one end supporting the vibratory plate and the other supporting an electromagnetic force generation means for applying the electromagnetic force to the voice coil; a first connector provided at the one end of the frame and having an input terminal for the audio signal; a first wire drawn from the first connector and connected so as to be conducted to the voice coil via the vibratory plate; a second connector provided at the other end of the frame and having an input terminal for the audio signal; and a second wire drawn from the second connector and connected so as to be conducted to the voice coil.
    • 实现具有能够保持稳定语句的简单结构的扬声器设备,而不管车辆类型。 一种用于基于所提供的音频信号向音圈施加电磁力并且通过振动固定到音圈的振动板产生基于音频信号的声波的扬声器装置设置有:一端支撑振动板的框架 另一个支持用于将电磁力施加到音圈的电磁力产生装置; 设置在所述帧的一端并具有用于所述音频信号的输入端的第一连接器; 从第一连接器拉出并连接成经由振动板传导到音圈的第一线; 设置在所述帧的另一端并具有用于所述音频信号的输入端的第二连接器; 以及从第二连接器拉出并被连接以便被传导到音圈的第二线。
    • 99. 发明授权
    • Photomask and manufacturing method thereof, and exposure method using the photomask
    • 光掩模及其制造方法以及使用光掩模的曝光方法
    • US06306547B1
    • 2001-10-23
    • US09457531
    • 1999-12-09
    • Shinji Kobayashi
    • Shinji Kobayashi
    • G03F900
    • G03F1/50G03F1/78
    • A transflecting portion of a photomask is given with a phase difference such that suppresses interference of exposure light exiting from the transflecting portion with light exiting from a transmitting portion. By exposing a resist to light through the photomask, a resist hole and a resist step are formed in the resist within a predetermined region (half area) in a secure manner. Consequently, by taking transmittivity and a phase difference of the transflecting portion with respect to the transmitting portion into consideration, it has become possible to provide a photomask by which a resist step is formed accurately in the resist.
    • 给出光掩模的透视部分具有相位差,从而抑制从透射部分出射的曝光光线与从透射部分出射的光的干涉。 通过将抗蚀剂曝光通过光掩模,在安全的方式在预定区域(半个区域)内的抗蚀剂中形成抗蚀剂孔和抗蚀剂步骤。 因此,通过考虑透射部分的透射率和相位差,可以提供在光刻胶中精确地形成光刻胶步骤的光掩模。
    • 100. 发明授权
    • Electrostatic capacitive sensor and method for manufacturing the same
    • 静电电容传感器及其制造方法
    • US06265238B1
    • 2001-07-24
    • US09500010
    • 2000-02-08
    • Kaneo YajiShinji Kobayashi
    • Kaneo YajiShinji Kobayashi
    • H01L2100
    • G01P15/125G01P15/0802G01P2015/0828
    • A miniature electrostatic capacitive sensor in which electrical insulation is reliably established between a CV conversion circuit and a sensing unit. Also disclosed is a manufacturing method for the above type of capacitive sensor. The capacitive sensor is constructed of a sensing unit having a movable electrode and a stationary electrode, and a CV-conversion-circuit-forming portion having a CV conversion circuit. The movable electrode is constructed of a first support portion, a leaf spring connected to the first support portion, and a mass portion movably supported by the leaf spring. The stationary electrode is formed of a second support portion and a projecting portion connected to the second support portion. The CV-conversion-circuit forming portion and the first and second support portion are made thin. Accordingly, a shallow clearance is formed between the CV-conversion-circuit forming portion and each of the first support portion and the stationary electrode. An insulating substance can thus be positively deposited in the clearance, thereby forming an electrically insulating portion between the CV conversion circuit and the sensing unit.
    • 一种微型静电电容传感器,其中在CV转换电路和感测单元之间可靠地建立电绝缘。 还公开了上述类型的电容式传感器的制造方法。 电容传感器由具有可动电极和固定电极的感测单元和具有CV转换电路的CV转换电路形成部构成。 可移动电极由第一支撑部分,连接到第一支撑部分的板簧和由板簧可移动地支撑的质量部分构成。 固定电极由第二支撑部分和连接到第二支撑部分的突出部分形成。 CV变换电路形成部分和第一和第二支撑部分变薄。 因此,在CV转换电路形成部分和第一支撑部分和固定电极之间形成浅间隙。 因此,绝缘物质可以积极地沉积在间隙中,从而在CV转换电路和感测单元之间形成电绝缘部分。