RESISTIVE ELEMENT, NEURON ELEMENT, AND NEURAL NETWORK INFORMATION PROCESSING DEVICE
    1.
    发明申请
    RESISTIVE ELEMENT, NEURON ELEMENT, AND NEURAL NETWORK INFORMATION PROCESSING DEVICE 审中-公开
    电阻元件,神经元元件和神经网络信息处理器件

    公开(公告)号:US20100217735A1

    公开(公告)日:2010-08-26

    申请号:US12664593

    申请日:2008-05-27

    IPC分类号: G06N3/063 H01C7/10

    摘要: A neuron element is provided having an input part that receives a plurality of input signals and, in response to the respective input signals, creates weighted signals as the products of the input signals and connection weights corresponding to the input signals, an addition part that obtains the total sum of the plurality of weighted signals, and an output part that outputs an output signal as a function of the total sum, a functional molecular element having a current-voltage characteristic in which the current flowing through the element is represented as a function having an inflection point with respect to the applied voltage is used as an element that defines the output signal, and the output signal is defined as a function of the total sum based on the current-voltage characteristic of this element in the region including the inflection point. Thereby, a neuron element that includes an output part formed of a simple circuit and has an analogous output characteristic, and a neural network information processing device employing it are provided.

    摘要翻译: 提供神经元元件,其具有接收多个输入信号的输入部分,并且响应于相应的输入信号,产生作为与输入信号相对应的输入信号和连接权重的乘积的加权信号,获得 多个加权信号的总和以及输出作为总和的函数的输出信号的输出部分,具有电流 - 电压特性的功能分子元件,其中流过元件的电流被表示为函数 使用具有相对于所施加的电压的拐点作为限定输出信号的元件,并且输出信号被定义为基于包括拐点的区域中该元件的电流 - 电压特性的总和的函数 点。 因此,提供了包括由简单电路形成并具有类似输出特性的输出部分和使用它的神经网络信息处理装置的神经元元件。

    Surface plasmon resonance device
    3.
    发明授权
    Surface plasmon resonance device 失效
    表面等离子体共振装置

    公开(公告)号:US07349598B2

    公开(公告)日:2008-03-25

    申请号:US11076819

    申请日:2005-03-10

    申请人: Hajime Matsumura

    发明人: Hajime Matsumura

    IPC分类号: G02B6/00

    摘要: A surface plasmon resonance device of the present invention includes a transparent medium layer and a conductive layer, a periodic structure being present at the interface therebetween. Assuming that the wavelength of visible light incident on the conductive layer through the transparent medium layer is λ (nm), the periodicity of the periodic structure is (λ/633)×100 nm to (λ/633)×500 nm, and the amplitude of the periodic structure is (λ/633)×5 nm to (λ/633)×20 nm. For example, when λ=633 nm, the periodicity of the periodic structure is 100 nm to 500 nm, and the amplitude is 5 nm to 20 nm.

    摘要翻译: 本发明的表面等离子体共振装置包括透明介质层和导电层,周期性结构存在于它们之间的界面处。 假设通过透明介质层入射到导电层上的可见光的波长为λ(nm),周期结构的周期为(λ/ 633)×100nm至(λ/ 633)×500nm,振幅为 周期性结构是(λ/ 633)×5nm〜(λ/ 633)×20nm。 例如,当λ= 633nm时,周期性结构的周期性为100nm〜500nm,振幅为5nm〜20nm。

    Molecular rectifier device
    4.
    发明授权
    Molecular rectifier device 有权
    分子整流装置

    公开(公告)号:US07148523B2

    公开(公告)日:2006-12-12

    申请号:US11100156

    申请日:2005-04-06

    IPC分类号: H01L23/58

    摘要: A rectifier device, based on a novel operation principle completely different from that of conventional molecular electronic devices, is made by coupling two or more molecules or molecule arrays (11) at certain joints. By making use of the phenomenon that transfer of an excited state or exciton from one molecule or molecule array to another molecule or molecule array coupled thereto progresses asymmetrically due to spatial asymmetry at the joint, a rectifying function related to the transfer of the excited state of exciton is obtained. Additionally, by controlling the rectification property in addition to the rectification function, an ion sensor device or a switching device is made. A resistor device may be inserted in the rectifier device.

    摘要翻译: 基于与常规分子电子器件完全不同的新颖操作原理的整流器器件通过在某些接头处耦合两个或更多个分子或分子阵列(11)来制备。 通过利用将激发态或激子从一个分子或分子阵列转移到另一个耦合到其上的分子或分子阵列的现象,由于在接头处的空间不对称性而不对称地进行,与激发态的转移相关的整流功能 激子得到。 此外,除了整流功能之外,通过控制整流性能,还可以制造离子传感器装置或开关装置。 电阻器件可插入整流器件中。

    DESIGN METHOD OF PLASMONIC CRYSTAL
    5.
    发明申请
    DESIGN METHOD OF PLASMONIC CRYSTAL 失效
    PLASMONIC CRYSTAL的设计方法

    公开(公告)号:US20090297693A1

    公开(公告)日:2009-12-03

    申请号:US12538936

    申请日:2009-08-11

    IPC分类号: B05D5/06

    摘要: A method of designing a plasmonic crystal is provided. The method includes: determining an arrangement period of a plasmonic crystal formed on a metal surface at an interface between a dielectric and the metal in accordance with a dispersion relation of a surface plasmon polariton at the interface and a Bragg reflection condition of the surface plasmon polariton.

    摘要翻译: 提供了一种设计等离子体晶体的方法。 该方法包括:根据表面等离子体激元在界面处的分散关系和表面等离子体激元的布拉格反射条件,确定在电介质和金属之间的界面处的金属表面上形成的等离子体晶体的排列周期 。

    Gene transfer method
    6.
    发明授权
    Gene transfer method 失效
    基因转移法

    公开(公告)号:US06995010B1

    公开(公告)日:2006-02-07

    申请号:US10111708

    申请日:2000-10-23

    摘要: A method of transferring a foreign gene into cells, characterized by involving: the step of transferring into the cells with the use of an adenovirus vector, a first nucleic acid, which has a sequence provided with adeno-associated virus-origin ITRs in both sides of the target foreign gene to be transferred, and a second nucleic acid, which has an adeno-associated virus-origin rep gene and a promoter for expressing this gene and carries a stuffer sequence inserted thereinto sandwiched in two recombinase recognition sequences and located between the rep gene and the promoter; and the step of expressing the Rep protein under the action of recombinase in the cells obtained in the above step to thereby integrate the target foreign gene into the chromosomal DNA.

    摘要翻译: 将外源基因转移到细胞中的方法,其特征在于包括:使用腺病毒载体转移到细胞中的步骤,第一核酸,其具有在两侧具有腺相关病毒起源ITR的序列 的待转移的目标外源基因的第二核酸和具有腺相关病毒起源rep基因的第二核酸和用于表达该基因的启动子,并携带插入其中的填充序列夹在两个重组酶识别序列中并位于 rep基因和启动子; 以及在上述步骤中获得的细胞中在重组酶的作用下表达Rep蛋白的步骤,从而将靶外源基因整合到染色体DNA中。

    Digital broadcast receiving system for detecting short-breaks and holding information based on same
    7.
    发明授权
    Digital broadcast receiving system for detecting short-breaks and holding information based on same 有权
    数字广播接收系统,用于检测短信和保存信息

    公开(公告)号:US06710814B1

    公开(公告)日:2004-03-23

    申请号:US09555479

    申请日:2000-07-26

    IPC分类号: H04N504

    摘要: A receiver is constructed so that it detects a short-break of a digital broadcasting wave by the absence of a synchronizing code or by a transmission control signal multiplexed with the broadcasting wave and, according to the short-break detection signal, holds data and state information (program arrangement, and reference time information) obtained by an antenna and converter (1), tuner and digital decoding portion (2), an error correction code decoding portion (3), a stream multiplexed signal separating portion (4), an audio/video decoding portion (5) and the other components and performs a process for optimally changing characteristics of closed loops for establishing synchronization.

    摘要翻译: 接收机被构造为通过不存在同步码或通过与广播波复用的传输控制信号来检测数字广播波的短暂断裂,并且根据短路检测信号保存数据和状态 通过天线和转换器(1),调谐器和数字解码部分(2),纠错码解码部分(3),流多路复用信号分离部分(4)获得的信息(节目安排和参考时间信息) 音频/视频解码部分(5)和其他组件,并且执行用于最佳地改变用于建立同步的闭环的特性的处理。

    Surface plasmon resonance device
    9.
    发明申请
    Surface plasmon resonance device 失效
    表面等离子体共振装置

    公开(公告)号:US20050201717A1

    公开(公告)日:2005-09-15

    申请号:US11076819

    申请日:2005-03-10

    申请人: Hajime Matsumura

    发明人: Hajime Matsumura

    IPC分类号: G01N21/27 G02B6/00

    摘要: A surface plasmon resonance device of the present invention includes a transparent medium layer and a conductive layer, a periodic structure being present at the interface therebetween. Assuming that the wavelength of visible light incident on the conductive layer through the transparent medium layer is λ (nm), the periodicity of the periodic structure is (λ/633)×100 nm to (λ/633)×500 nm, and the amplitude of the periodic structure is (λ/633)×5 nm to (λ/633)×20 nm. For example, when λ=633 nm, the periodicity of the periodic structure is 100 nm to 500 nm, and the amplitude is 5 nm to 20 nm.

    摘要翻译: 本发明的表面等离子体共振装置包括透明介质层和导电层,周期性结构存在于它们之间的界面处。 假设通过透明介质层入射到导电层上的可见光的波长为λ(nm),周期结构的周期为(λ/ 633)×100nm至(λ/ 633)×500nm,振幅为 周期性结构是(λ/ 633)×5nm〜(λ/ 633)×20nm。 例如,当λ= 633nm时,周期性结构的周期性为100nm〜500nm,振幅为5nm〜20nm。