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    • 1. 发明申请
    • STORAGE-MODULE CONTROL DEVICE
    • 存储模块控制器件
    • US20120293127A1
    • 2012-11-22
    • US13574814
    • 2011-01-24
    • Yoji HigashiTeruki AraiHiroshi Sakamaki
    • Yoji HigashiTeruki AraiHiroshi Sakamaki
    • H02J7/00
    • H02J7/0016H01M10/425H01M10/441H01M10/46H02J7/345
    • Provided is an electricity storage module control device which is capable of controlling the voltage of each electricity storage section so that an electricity storage module is prevented from being deteriorated even when the electricity storage module is continuously charged/discharged in a relatively short cycle over a long period of time, in particular, when charging/discharging of a large amount of current is repeated. The electricity storage module control device controls the electricity storage module including a plurality of electricity storage sections connected in series. The electricity storage module control device acquires a voltage value of each of the plurality of electricity storage sections over a predetermined period, and controls voltages of the plurality of electricity storage sections based on the voltage value of each of the plurality of electricity storage sections, which has been acquired over the predetermined period.
    • 提供一种电力存储模块控制装置,其能够控制每个蓄电部分的电压,使得即使当蓄电模块在相对较短的周期内长时间连续充电/放电时,也可以防止蓄电模块劣化 特别是当重复大量电流的充电/放电时。 蓄电模块控制装置控制包括串联连接的多个蓄电部的蓄电模块。 蓄电模块控制装置在规定时间内取得多个蓄电部各电压值,根据多个蓄电部的电压值来控制多个蓄电部的电压, 已经在预定期间内被收购。
    • 5. 发明申请
    • ELECTRIC ENERGY STORAGE MODULE CONTROL DEVICE
    • 电力储存模块控制装置
    • US20110089909A1
    • 2011-04-21
    • US12896312
    • 2010-10-01
    • Yoji HIGASHIKunihiro MITSUYAHiroshi NISHIZAWA
    • Yoji HIGASHIKunihiro MITSUYAHiroshi NISHIZAWA
    • H02J7/00
    • H02J7/0016
    • Provided is an electric energy storage module control device for controlling an electric energy storage module (2) including a plurality of capacitors (20) connected in series, the electric energy storage module control device including a voltage control circuit (10) connected in parallel to each of the plurality of capacitors (20), in which the voltage control circuit (10) includes a constant voltage control part (14) for controlling and preventing a voltage across the constant voltage control part from exceeding a predetermined voltage, and a resistor (12) connected in series to the constant voltage control part (14), and the predetermined voltage is lower than an upper limit applied voltage of each of the plurality of capacitors (20).
    • 提供一种用于控制包括串联连接的多个电容器(20)的蓄电模块(2)的电能存储模块控制装置,所述蓄电模块控制装置包括并联连接的电压控制电路(10) 所述多个电容器(20)中的每一个电压控制电路(10)包括用于控制和防止恒定电压控制部分上的电压超过预定电压的恒压控制部分(14)和电阻器 12)串联连接到恒压控制部分(14),并且预定电压低于多个电容器(20)中的每一个的上限施加电压。
    • 6. 发明授权
    • Apparatus for and method of analyzing carbon isotopes
    • 碳同位素分析装置及分析方法
    • US5929442A
    • 1999-07-27
    • US827408
    • 1997-03-27
    • Yoji Higashi
    • Yoji Higashi
    • G01J3/42G01N21/39G01N21/35
    • G01N21/39
    • The light absorption spectrum of carbon isotopes .sup.12 CO.sub.2 and .sup.13 CO.sub.2 is measured highly accurately within a short period of time to determine a carbon isotopic abundance ratio highly accurately and reliably. Laser light emitted from a laser diode, which has been slightly modulated with a frequency f and swept in wavelength, passes through a specimen cell and is applied to a photodetector, which produces an electric signal converted from the detected laser light. 2f components of .sup.12 CO.sub.2 and .sup.13 CO.sub.2 of the light absorption spectrum are detected by a lock-in amplifier, and 3f components of .sup.12 CO.sub.2 and .sup.13 CO.sub.2 of the light absorption spectrum are detected by a lock-in amplifier. Spectral intensities of .sup.12 CO.sub.2 and .sup.13 CO.sub.2, which correspond to zero-cross points of the 3f components, are determined from peak values at three points of each of the 2f components, and a carbon isotopic abundance ratio of .sup.12 CO.sub.2 and .sup.13 CO.sub.2 is determined from a ratio of the spectral intensities.
    • 在短时间内高精度地测量碳同位素12CO2和13CO2的光吸收光谱,以高精度和可靠地确定碳同位素丰度比。 激光二极管发射的激光二极管已经以频率f并被扫描的波长略微调制,通过样品池,并被施加到产生从检测到的激光转换的电信号的光电检测器。 通过锁定放大器检测光吸收光谱的12CO2和13CO2的2f成分,通过锁定放大器检测光吸收光谱的12CO2和13CO2的3f成分。 根据3f成分的零交叉点的12CO2和13CO2的光谱强度由2f成分的3个点的峰值求出,12CO2和13CO2的碳同位素丰度比由 光谱强度。
    • 7. 发明申请
    • ELECTRIC DOUBLE LAYER CAPACITOR
    • 电双层电容器
    • US20090021891A1
    • 2009-01-22
    • US12138216
    • 2008-06-12
    • Yoji HIGASHIKousuke Yasuda
    • Yoji HIGASHIKousuke Yasuda
    • H01G9/016
    • H01G9/10H01G9/016H01G9/155Y02E60/13
    • An electric double layer capacitor with shorter electrodes that can secure insulation within a container is provided. The electric double layer capacitor 30 of the present invention includes: a stack 15 including a plurality of thin positive electrode plates and thin negative electrode plates; an insulating pouch 31 storing the stack 15; a positive lead plate 11A in which lead terminals of the positive electrode plates are collected; a negative lead plate 12A in which lead terminals of the negative electrode plates are collected; a container 28 storing the pouch 31 in which the stack is stored; a sealing cap 21 sealing an opening of the container; electrode terminals 23 and 24 passing through the sealing cap 21 and fixed; and an insulating film 26 attached to the container 28 of the sealing cap 21. The electrode terminals 23 and 24 and the lead plates are connected, the insulating film 26 is adhered to the pouch 31 in a fluid-tight and air-tight state, the pouch 31 is stored in the container 28, and the opening of the container is sealed with the sealing cap 21.
    • 提供具有较短电极的双层电容器,其可以确保容器内部的绝缘。 本发明的双电层电容器30包括:堆叠15,其包括多个薄的正极板和薄的负极板; 存储堆15的绝缘袋31; 收集正极板的引线端子的正极引线板11A; 负极板12A,负极板的引线端子被收集; 容纳存储有堆叠的袋31的容器28; 密封盖21,密封容器的开口; 电极端子23和24穿过密封盖21并固定; 以及安装在密封盖21的容器28上的绝缘膜26.电极端子23,24和引线板连接,绝缘膜26以流体密封且气密的状态粘附在袋31上, 袋31被储存在容器28中,容器的开口用密封盖21密封。