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    • 2. 发明授权
    • Real-time analytic pseudocolor encoder system
    • 实时分析伪彩色编码器系统
    • US5182639A
    • 1993-01-26
    • US785509
    • 1991-10-30
    • Suganda JutamuliaAkihiro FujitaShinji ToyodaAtsushi KojimaEiichi Ito
    • Suganda JutamuliaAkihiro FujitaShinji ToyodaAtsushi KojimaEiichi Ito
    • H04N9/43
    • H04N9/43
    • Continuous analytic transform functions implemented optically in U.S. Pat. No. 4,623,245 are instead implemented electronically and in real-time. An improved scheme is disclosed where the range of amplitudes of the monochromatic signal input is divided into n sections and constant, linear or sinusoidal transform functions are utilized in each section for transforming the monochromatic video input to three pseudocolor video signals. Even complex transform functions can be implemented by simple transform functions in each of the sections to reduce the overall complexity of the implementing circuit. The television camera, a pseudocolor encoder and a liquid crystal television monitor are placed within the same housing to form a portable hand-held unit. The weight and size of the unit can be reduced as a result of the simple electronic implementation of the encoder.
    • 在美国专利中光学实现的连续分析变换功能。 4,623,245号是以电子方式实时实现的。 公开了一种改进的方案,其中单色信号输入的幅度范围被分成n个部分,并且在每个部分中使用恒定的线性或正弦变换函数,用于将单色视频输入​​变换为三个伪彩色视频信号。 即使复杂的变换函数也可以通过每个部分中的简单变换函数来实现,以减少实现电路的整体复杂度。 将电视摄像机,伪彩色编码器和液晶电视监视器放置在同一外壳内以形成便携式手持式单元。 由于编码器的简单的电子实现,可以减小单元的重量和尺寸。
    • 3. 发明申请
    • OPTICAL INFORMATION RECORDING AND/OR REPRODUCING APPARATUS, OPTICAL INFORMATION RECORDING AND/OR REPRODUCING METHOD, OPTICAL INFORMATION RECORDING MEDIUM, AND SOLID IMMERSION LENS
    • 光学信息记录和/或复制设备,光学信息记录和/或复制方法,光学信息记录介质和固体透镜
    • US20110069599A1
    • 2011-03-24
    • US12993599
    • 2009-05-18
    • Kenji NarumiMasahiro BirukawaRie KojimaEiichi Ito
    • Kenji NarumiMasahiro BirukawaRie KojimaEiichi Ito
    • G11B7/135G11B7/00G11B7/26
    • G11B7/1387G11B7/094G11B7/0956G11B7/24038G11B7/2578
    • An optical information recording and/or reproducing apparatus comprises: a focusing unit (11) which collects generated near-field light on an optical disc (1); a first detector (17) which receives light reflected by the optical disc (1) and outputs an electric signal according to the quantity of the received light; and a distance control circuit (22) which controls the distance between the focusing unit (11) and a light entrance surface of the optical disc (1), using the electric signal that is output from the first detector (17), and the optical disc (1) has at least N (N is an integer of 2 or greater) number of information layers, and a distance d0 from the light entrance surface to a first information layer which is most distant from the light entrance surface and a distance dn from the light entrance surface to an Nth information layer which is closest to the light entrance surface satisfy the relationship of dn≧d0×(1/25). As a result, servo control can be accurately performed regardless which information layer, out of a plurality of information layers of an optical disc, information is recorded to or reproduced from.
    • 光信息记录和/或再现装置包括:聚焦单元(11),其收集在光盘(1)上产生的近场光; 第一检测器(17),其接收由所述光盘(1)反射的光并根据所接收的光量输出电信号; 以及使用从第一检测器(17)输出的电信号来控制聚焦单元(11)和光盘(1)的光入射面之间的距离的距离控制电路(22),并且光学 盘(1)具有至少N(N是2以上的整数)的信息层数,以及从光入射面到距离光入射面最远的第一信息层的距离d0,距离dn 从光入射面到最靠近光入射面的第N信息层满足dn≥d0×(1/25)的关系。 结果,无论光盘的多个信息层中的哪个信息层的信息被记录或从其再现,都可以精确地执行伺服控制。
    • 6. 发明申请
    • Pressure detecting mat and antidecubitus system provided with the same
    • 压力检测垫和抗逆系统提供相同的
    • US20060065060A1
    • 2006-03-30
    • US11235177
    • 2005-09-27
    • Eiichi ItoMitsuhiro MatsumotoKoji Tsuda
    • Eiichi ItoMitsuhiro MatsumotoKoji Tsuda
    • G01D7/00
    • G01L1/205A61B5/103A61B5/447A61B5/6892A61B2562/0247A61B2562/046G01D7/00
    • A pressure-detecting mat includes a plurality of communication modules that are configured to communicate with each other using the two dimension diffusive signal-transmission technology, a module layer that includes the plurality of communication modules scattered therein, a plurality of conductive layers that electrically interconnect the plurality of communication modules, at least two insulating layers that sandwich the module layer and the plurality of conductive layers, and a plurality of pressure sensors that are arranged in one of all the layers except the farthest layer in a pressure applying direction. Each of the pressure sensors being capable of detecting a pressure and communicating with each of the communication modules to send an output signal according to the detected pressure to each of the communication modules. The total stiffness of the layers that are farther in the pressure applying direction than the layer in which the pressure sensors are arranged is higher than the total stiffness of the layers that are closer in the pressure applying direction than the layer in which the pressure sensors are arranged.
    • 压力检测垫包括多个通信模块,其被配置为使用二维漫射信号传输技术彼此通信;模块层,其包括散布在其中的多个通信模块;多个导电层,其电连接 所述多个通信模块,夹着所述模块层和所述多个导电层的至少两个绝缘层,以及布置在压力施加方向上的最远层以外的所有层中的一个层中的多个压力传感器。 每个压力传感器能够检测压力并与每个通信模块通信,以根据检测到的压力向每个通信模块发送输出信号。 压力施加方向上比压力传感器布置的层更远的层的总刚度高于压力施加方向上比压力传感器的层更接近的层的总刚度 安排。