会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 21. 发明授权
    • Method of driving an electrophoretic display
    • 驱动电泳显示的方法
    • US07773069B2
    • 2010-08-10
    • US11330304
    • 2006-01-11
    • Mitsutoshi MiyasakaAtsushi MiyazakiHideyuki Kawai
    • Mitsutoshi MiyasakaAtsushi MiyazakiHideyuki Kawai
    • G09G3/34
    • G09G3/344G09G2300/08G09G2310/061G09G2320/0257
    • An electrophoretic display device includes M×N numbers (M, and N are integers more than two) of pixels. The M×N numbers of pixels include M numbers of pixel groups having N numbers of pixels. Further, an image on the electrophoretic display device is displayed by making some of the M×N numbers of pixels switched at least from a bright display to a dark display, and vice versa. A period for displaying one piece of an image on the electrophoretic display is defined as period for forming an image and a period for introducing an image signal to each of the M×N numbers of pixels with sequentially selecting each of the pixels is defined as a frame period. Then, the time for forming an image includes a plurality of frame periods (a numbers of L: L is integers more than two).
    • 电泳显示装置包括像素的M×N个数字(M,N为大于2的整数)。 M×N个像素包括具有N个像素的M个像素组。 此外,通过使M×N个像素中的一些至少从亮显示切换到暗显示来显示电泳显示装置上的图像,反之亦然。 将用于在电泳显示器上显示一幅图像的周期定义为用于形成图像的周期,并且将依次选择每个像素的图像信号引入到每个M×N个像素的周期被定义为 帧周期。 然后,形成图像的时间包括多个帧周期(L:L的数目大于2的整数)。
    • 23. 发明授权
    • Sensor adjusting circuit
    • 传感器调节电路
    • US07426154B2
    • 2008-09-16
    • US11430975
    • 2006-05-10
    • Masahiro MatsumotoSatoshi ShimadaSeikou SuzukiAkihiko SaitoAtsushi MiyazakiKeiji Hanzawa
    • Masahiro MatsumotoSatoshi ShimadaSeikou SuzukiAkihiko SaitoAtsushi MiyazakiKeiji Hanzawa
    • G11C8/00G06F9/46
    • G01D3/022G01D3/02
    • A sensor adjusting circuit for adjusting a digital sensor, whose circuit scale is small and which can maintain high accuracy in a wide adjustment range is provided. A sensor adjusting circuit for adjusting an analog input signal inputted from a sensor and outputting it as another analog output signal in accordance with a physical quantity to be sensed, comprises: a first analog-to-digital converter having an analog integrator (2) for integrating the analog input signal, a comparator (3) for comparing an output of the analog integrator with a predetermined value, and a D/A converter (7) for outputting an output of the comparator as the input signal; and a second digital-to-analog converter (5) for converting the output of the comparator and outputting it as the analog output signal.
    • 提供了一种用于调整数字传感器的传感器调节电路,其电路规模小并且可以在宽的调节范围内保持高精度。 一种传感器调节电路,用于调节从传感器输入的模拟输入信号,并根据要感测的物理量将其输出为另一个模拟输出信号,包括:第一模数转换器,具有模拟积分器(2),用于 积分模拟输入信号,比较器(3),用于将模拟积分器的输出与预定值进行比较;以及D / A转换器(7),用于输出比较器的输出作为输入信号; 以及用于转换比较器的输出并将其作为模拟输出信号输出的第二数模转换器(5)。
    • 26. 发明授权
    • Electronic device, production method thereof, and plasma process apparatus
    • 电子装置及其制造方法以及等离子体处理装置
    • US07090705B2
    • 2006-08-15
    • US10684819
    • 2003-10-15
    • Atsushi MiyazakiAkitsugu HatanoOsamu Sakai
    • Atsushi MiyazakiAkitsugu HatanoOsamu Sakai
    • H01L21/00H01L21/64
    • H01J37/32009C23C16/5096H01J37/32082H01J37/32532Y10T29/41
    • A plasma process apparatus for performing a plasma process on a target substrate 4 includes a process chamber 5 in which the target substrate 4 is installed, a gas inlet 6 for introducing a gas into the process chamber 5, and a plasma discharge production section 15 provided in the process chamber 5. The plasma discharge production section 15 includes a first electrode 2a and a second electrode 2b that is closer to the target substrate 4 than the first electrode 2a is. Only surfaces of the first electrode 2a and the second electrode 2b which can be seen in the normal line direction of the target substrate 4 function as plasma discharge surfaces. Thus, a high quality film is realized even at a low target substrate temperature, and the film formation is performed with high gas dissociation efficiency.
    • 用于在目标基板4上进行等离子体处理的等离子体处理装置包括其中安装有目标基板4的处理室5,用于将气体引入处理室5的气体入口6和设置有等离子体放电产生部分15的等离子体放电产生部分15 在处理室5中。 等离子体放电产生部分15包括比第一电极2a更靠近靶基片4的第一电极2a和第二电极2b。 只能在目标基板4的法线方向上看到的第一电极2a和第二电极2b的表面作为等离子体放电面。 因此,即使在低的靶基板温度下也能实现高质量的膜,并且以高的气体解离效率进行成膜。
    • 28. 发明授权
    • Sensor mounting structure and semiconductor pressure sensor for motor vehicles
    • 汽车传感器安装结构和半导体压力传感器
    • US06845656B2
    • 2005-01-25
    • US10214757
    • 2002-08-09
    • Takafumi MatsumuraAtsushi MiyazakiShinichi YamaguchiHiroyuki Tanaka
    • Takafumi MatsumuraAtsushi MiyazakiShinichi YamaguchiHiroyuki Tanaka
    • G01L9/12G01K1/14G01L9/00G01L19/00G01M15/00
    • G01L19/003G01L19/0007
    • To provide a sensor mounting structure which enables mounting an automotive sensor directly to the wall section of a part to be detected, without using screws, and also mounting a pressure detector directly to a pressure air passage without using a pressure inlet pipe.The non-circular sensor mounting hole is provided for inserting a part of the sensor housing into the wall section of the part to be detected. In the sensor housing the first locking portion (pawl) and the second locking portion (flange) are integrally formed by molding. The housing 1 is allowed to be inserted into the mounting hole under the condition that the pawl is directed to a specific orientation, and, after insertion, is turned through a specific angle. Therefore the pawl is engaged on the inside surface of the wall section. The flange is engaged on the outside surface of the wall section. The pawl and the flange are designed to hold the wall section of the part to be detected, thereby mounting the sensor. The projection of the hook is engaged with the recess provided in the sensor housing 1, thus locking the sensor from turning.
    • 提供一种传感器安装结构,其能够将汽车传感器直接安装到待检测部件的壁部分,而不使用螺钉,并且还可以将压力检测器直接安装到压力空气通道而不使用压力入口管。 环形传感器安装孔用于将传感器外壳的一部分插入待检测部件的壁部。 在传感器壳体中,第一锁定部分(棘爪)和第二锁定部分(凸缘)通过模制一体形成。 允许壳体1在棘爪朝向特定取向的状态下插入到安装孔中,并且在插入之后被转过特定角度。 因此,棘爪接合在壁部的内表面上。 凸缘接合在壁部分的外表面上。 棘爪和法兰被设计成保持待检测部件的壁部分,从而安装传感器。 钩的突起与设置在传感器壳体1中的凹部接合,从而锁定传感器不转动。