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    • 1. 发明授权
    • Capacitor power supply with switches to decrease variations in output voltage
    • 带开关的电容器电源,以减少输出电压的变化
    • US06317343B1
    • 2001-11-13
    • US09516570
    • 2000-03-01
    • Michio OkamuraMasaaki YamagishiAkinori Mogami
    • Michio OkamuraMasaaki YamagishiAkinori Mogami
    • H02M318
    • H02M3/07
    • There is disclosed a power supply system comprising capacitors that are connected switchably via a small number of switches to decrease variations of an output voltage. The switches comprise a series connection switch and first and second sets of switches. A control means controls the first set of switches, the second set of switches, and the series connection switch to switch connection of the capacitors of the first and second sets among a first state in which the first set of capacitors is connected in series with the second set of capacitors, a second state in which the first set of capacitors is connected in parallel with the second set of capacitors, and a third state in which one or more capacitors of the first set are connected in parallel with one or more capacitors of the second set.
    • 公开了一种电源系统,其包括经由少量开关可切换地连接的电容器,以减小输出电压的变化。 开关包括串联连接开关和第一组和第二组开关。 控制装置控制第一组开关,第二组开关和串联连接开关,以在第一组电容器与第一组电容器串联连接的第一状态之间切换第一组和第二组的电容器的连接 第二组电容器,其中第一组电容器与第二组电容器并联连接的第二状态,以及第三状态,其中第一组的一个或多个电容器与一个或多个电容器并联连接, 第二集。
    • 4. 发明授权
    • Connection-switched capacitor storage system
    • 连接开关电容器存储系统
    • US06885170B2
    • 2005-04-26
    • US10263474
    • 2002-10-02
    • Michio OkamuraMasaaki Yamagishi
    • Michio OkamuraMasaaki Yamagishi
    • H02J1/00H02J7/00
    • H02J7/0024H02J7/0016
    • A connection-switched capacitor storage system comprises plural capacitors, parallel monitors connected with the capacitors, respectively, switches for switching the connections of the capacitors from a series combination to a parallel combination or vice versa, and a control portion. The parallel monitors bypass the charging current for the capacitors when the terminal voltages of the capacitors exceed a given voltage, thus limiting increases of the terminal voltages of initializing the terminal voltages of the capacitors to their original level. The control portion controls initialization and switching of the connections of the capacitors. The control portion causes the parallel monitors to initialize the capacitors near the voltage at which the connections of the capacitors are switched by the switches.
    • 连接开关电容器存储系统包括多个电容器,分别与电容器连接的并联监视器,用于将电容器的连接从串联组合切换到并联组合或反之亦然的开关,以及控制部分。 当电容器的端子电压超过给定电压时,并联监视器旁路电容器的充电电流,从而限制将电容器的端子电压初始化到其原始电平的端子电压的增加。 控制部分控制电容器的连接的初始化和切换。 控制部分使得并联监视器在电容器的连接被开关切换的电压附近初始化电容器。
    • 5. 发明授权
    • Power supply using batteries undergoing great voltage variations
    • 使用电池电压变化很大的电源
    • US5734205A
    • 1998-03-31
    • US626282
    • 1996-04-04
    • Michio OkamuraMasaaki Yamagishi
    • Michio OkamuraMasaaki Yamagishi
    • H02J7/00
    • H02J7/0024Y02T10/7055Y10T307/653
    • A power supply using electric double layer capacitors whose output voltages undergo great variations. The power supply further includes first, second, and third switches for switching the capacitors from a parallel connection to a series connection, and a regulating circuit powered by the capacitors. As the output voltages from the capacitors drop, the regulating circuit switches the capacitors from the parallel connection to the series connection. For example, the switches are composed of semiconductor devices. The second and third switches are operated complementarily in relation to the first switch. Electric double layer capacitors producing low terminal voltages can be used. The step-up or step-down ratio can be made smaller. High voltage hazard can be avoided and the efficiency of the power supply can be improved.
    • 使用双电层电容器的电源,其输出电压变化很大。 电源还包括用于将电容器从并联连接切换到串联连接的第一,第二和第三开关,以及由电容器供电的调节电路。 当电容器的输出电压降低时,调节电路将电容器从并联连接切换到串联连接。 例如,开关由半导体器件组成。 第二和第三开关相对于第一开关互补操作。 可以使用产生低端电压的双电层电容器。 升压或降压比可以减小。 可以避免高电压危害,提高电源效率。
    • 6. 发明授权
    • Microscope objective
    • 显微镜目标
    • US4563060A
    • 1986-01-07
    • US627294
    • 1984-07-02
    • Masaaki Yamagishi
    • Masaaki Yamagishi
    • G02B21/02G02B9/62
    • G02B21/02
    • A microscope objective comprising a first, second, third, fourth, fifth and sixth lens components wherein the first lens component is a positive meniscus lens concave toward the object side, the second lens component comprises a positive lens and has positive refractive power as a whole, the third lens component comprises a positive lens and has positive refractive power as a whole, the fourth lens component is a cemented negative meniscus lens convex toward the object side, the fifth lens component is a cemented negative meniscus lens convex toward the image side, and the sixth lens component is a cemented positive meniscus lens, the microscope objective being arranged that the working distance is very long, the image surface is flat, and aberrations are favorably corrected up to the marginal portion of field.
    • 一种显微镜物镜,包括第一透镜,第二透镜,第三透镜​​,第四透镜,第五透镜和第六透镜部件,其中第一透镜部件是朝向物体侧凹入的正弯月形透镜,第二透镜部件包括正透镜并且整体具有正折射力 第三透镜部件包括正透镜并且整体具有正折射力,第四透镜部件是朝向物体侧凸起的胶合负弯月形透镜,第五透镜部件是朝向像侧凸起的胶合负弯月形透镜, 并且第六透镜部件是胶合正弯月透镜,显微镜物镜被布置为工作距离非常长,图像表面平坦,并且像差被有利地校正到边缘部分。
    • 8. 发明授权
    • Capacitor module, bank of such modules, and storehouse housing such banks
    • 电容器模块,这种模块的库,以及仓库这样的银行
    • US06215278B1
    • 2001-04-10
    • US09497716
    • 2000-02-04
    • Michio OkamuraMasaaki YamagishiAkinori Mogami
    • Michio OkamuraMasaaki YamagishiAkinori Mogami
    • H02J700
    • H01G4/385
    • There is disclosed a capacitor module capable of having an improved packing density and, hence, an improved energy storage density. A capacitor bank using such capacitor modules is also disclosed. Furthermore, an electrical energy storehouse using such capacitor banks is disclosed. Supercapacitor cells connected in series are housed in a box-like capacitor module. A heat dissipator is mounted on an end surface of the module. Parallel monitors connected in parallel with the capacitor cells, respectively, are mounted to the heat dissipator. Such capacitor modules are stacked to form a capacitor bank. The heat-dissipating surface of each module is located on the outside of the bank and exposed. The modules are held in the bank so that they can be taken out of the bank individually. Capacitor banks making a pair are located back-to-back such that their heat-dissipating surface face outward. Pairs of capacitor banks arranged in this way are arranged vertically and horizontally via passages and via space permitting the modules to be taken out.
    • 公开了一种电容器模块,其能够具有改进的堆积密度,因此具有改善的储能密度。 还公开了使用这种电容器模块的电容器组。 此外,公开了一种使用这种电容器组的电能存储器。 串联连接的超级电容器电池容纳在箱状电容器模块中。 散热器安装在模块的端面上。 分别与电容器单元并联连接的并联监视器安装在散热器上。 这样的电容器模块被堆叠以形成电容器组。 每个模块的散热面位于堤岸的外侧并露出。 模块被存放在银行中,以便将它们单独取出。 制造一对的电容器库背靠背放置,使得其散热表面向外。 以这种方式布置的电容器组对以通过通道和通过空间的方式垂直和水平布置,允许模块被取出。