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    • 61. 发明授权
    • Electric generator
    • 发电机
    • US08456059B2
    • 2013-06-04
    • US12985577
    • 2011-01-06
    • Masaharu Matsumoto
    • Masaharu Matsumoto
    • H02K35/02
    • F03G7/08H02K21/185H02N1/08
    • An electric generator includes an electric-power generating mechanism of an electrostatic induction type or an electromagnetic induction type, a first rectification portion, an electricity accumulation portion, an outer positive electrode, and an outer negative electrode. The electric-power generation mechanism has a first electrode and a second electrode, and the first rectification portion has input terminals electrically connected to the first electrode and the second electrode respectively, and has an output portion including positive and negative terminals. The electricity accumulation portion has an inner positive electrode electrically connected to the positive terminal, and an inner negative electrode electrically connected to the negative terminal. The outer positive electrode is electrically connected to the inner positive electrode, and the outer negative electrode is electrically connected to the inner negative electrode. The electric generator has an outer shape which can be substituted for a battery to be used in the electronic apparatus.
    • 发电机包括静电感应式或电磁感应式的发电机构,第一整流部,蓄电部,外侧正极和外部负极。 发电机构具有第一电极和第二电极,第一整流部具有分别与第一电极和第二电极电连接的输入端子,具有包括正极端子和负极端子的输出部分。 蓄电部具有与正极电连接的内侧正极和与负极端子电连接的内部负极。 外部正极与内部正极电连接,外部负极与内部负极电连接。 发电机具有能代替电子设备中使用的电池的外形。
    • 62. 发明申请
    • Sample analyzer
    • 样品分析仪
    • US20070089543A1
    • 2007-04-26
    • US11526490
    • 2006-09-25
    • Narihiro OkuToshikazu OhnishiHiroshi NayaMasaharu Matsumoto
    • Narihiro OkuToshikazu OhnishiHiroshi NayaMasaharu Matsumoto
    • G01N1/00
    • G01N35/1095
    • The present invention has been made to simplify assembly and maintenance of a sample analyzer including: a flow passageway 3 that flows fluid, such as a sample, air, or the like; one or more fluid control units 5 that control the flow of the fluid on the flow passageway 3; a measurement cell 41 that is provided on the flow passageway 3; a sample analysis part 6 that analyzes the sample inside the measurement cell 41; and a casing 7 that holds these parts mentioned above. At least one of the fluid control units 5 is formed by unitizing functions related to fluid control; integrally has a manifold 502 that forms an internal flow path 501, one or more control valves 503 that control flow of the fluid in the internal flow path 501 and connection ports 504 for connecting together the internal flow path 501 and the flow passageway 3; and is so configured as to be removable from the casing 7.
    • 本发明是为了简化样品分析装置的组装和维护,包括:流动通道3,流体如样品,空气等; 一个或多个流体控制单元5,其控制流动通道3上的流体的流动; 设置在流路3上的测定单元41; 分析测量单元41内的样本的样本分析部6; 以及保持上述这些部件的壳体7。 流体控制单元5中的至少一个通过使与流体控制相关的功能成为一体而形成; 一体地形成有形成内部流路501的歧管502,控制内部流路501内的流体流动的一个以上的控制阀503以及内部流路501和流路3连接的连接口504。 并且被构造成可从壳体7移除。
    • 64. 发明授权
    • Terminal ID automatic assigning system
    • 终端ID自动分配系统
    • US5952934A
    • 1999-09-14
    • US824901
    • 1997-03-26
    • Masaharu MatsumotoEriko Gokita
    • Masaharu MatsumotoEriko Gokita
    • H04L12/02H04L12/28H04L12/50H04L12/70H04M3/00H04M11/00H04N21/258H04Q5/22
    • H04Q11/0457H04L29/12254H04L29/12264H04L61/2038H04L61/2046
    • A center unit sends a terminal ID assignment request message for requesting an assignment of a terminal ID through a predetermined control channel in a network. When a terminal unit that has not been assigned a terminal ID receives the terminal ID assignment request message through the predetermined control channel in the network, the terminal unit sends a terminal ID assignment request acknowledgment message that is an acknowledgment of the received terminal ID assignment request message through the predetermined control channel in the network. After a center unit has received the terminal ID assignment request acknowledgment message through the predetermined control channel in the network, the center unit exchanges messages with the terminal unit that has received the terminal ID assignment request acknowledgment message. Thus, a terminal ID can be assigned to the terminal unit.
    • 中心单元通过网络中的预定控制信道发送用于请求终端ID的分配的终端ID分配请求消息。 当未分配终端ID的终端单元通过网络中的预定控制信道接收到终端ID分配请求消息时,终端单元发送作为接收到的终端ID分配请求的确认的终端ID分配请求确认消息 通过网络中的预定控制信道发送消息。 在中心单元通过网络中的预定控制信道接收到终端ID分配请求确认消息之后,中心单元与已经接收到终端ID分配请求确认消息的终端单元交换消息。 因此,可以将终端ID分配给终端单元。
    • 65. 发明授权
    • Method and apparatus for calculating filter factors
    • 计算滤波因子的方法和装置
    • US5051942A
    • 1991-09-24
    • US285606
    • 1988-12-15
    • Masaharu MatsumotoSeiichi IshikawaKatsuaki Satoh
    • Masaharu MatsumotoSeiichi IshikawaKatsuaki Satoh
    • H03H15/00H03G5/00H03H17/00H03H17/02H03H17/06H03H17/08H03H21/00H04B3/04
    • H03G5/005
    • A transfer function is determined in accordance with an amplitude characteristic and a phase characteristic. The transfer function is subjected to inverse Fourier transform. An imaginary part of a result of the inverse Fourier transform is set to zero and thereby the result of the inverse Fourier transform is converted into a converted result. The converted result is subjected to Fourier transform. The amplitude characteristic and the phase characteristic are updated in accordance with a result of the Fourier transform. Such processes are reiterated. A primary desired amplitude characteristic is corrected in accordance with the finally-obtained amplitude characteristic so that the primary desired amplitude characteristic is converted into a final desired amplitude characteristic. A final desired phase characteristic is determined in accordance with the finally-obtained phase characteristic. A second transfer function is determined in accordance with the final desired amplitude characteristic and the final desired phase characteristic. The second transfer function is subjected to inverse Fourier transform. Filter factors are calculated from a real part of a result of the inverse Fourier transform of the second transfer function. The calculated filter factors are set in a FIR digital filter.
    • 根据振幅特性和相位特性确定传递函数。 传递函数进行傅里叶逆变换。 逆傅立叶变换的结果的虚部被设置为零,从而将傅里叶逆变换的结果转换为转换结果。 转换结果进行傅里叶变换。 根据傅立叶变换的结果更新振幅特性和相位特性。 重申这些过程。 根据最终获得的幅度特性来校正主期望幅度特性,使得主期望幅度特性被转换成最终期望的幅度特性。 根据最终获得的相位特性确定最终期望的相位特性。 根据最终期望的振幅特性和最终期望的相位特性来确定第二传递函数。 第二传递函数进行傅里叶逆变换。 根据第二传递函数的逆傅立叶变换的结果的实部计算滤波因数。 计算的滤波器因子在FIR数字滤波器中设置。