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    • 103. 发明授权
    • Confocal scanning microscope
    • 共焦扫描显微镜
    • US09091845B2
    • 2015-07-28
    • US13613246
    • 2012-09-13
    • Fumio SuzukiNaoshi AikawaKotaro Yamaguchi
    • Fumio SuzukiNaoshi AikawaKotaro Yamaguchi
    • G02B27/14G02B21/00G02B27/00G02B26/10
    • G02B21/0036G02B21/0072G02B21/0076G02B26/105G02B27/0031
    • A confocal scanning microscope including: an objective system (second objective lens 23 and objective lens 24) illuminating a sample SA with illumination light; a scanning mechanism 31 scanning the sample SA to obtain an intensity signal; and a scanning optical system 32 provided between the scanning mechanism and the objective system. The scanning optical system composed of, in order from the scanning mechanism side, a first positive lens group G1, a second negative lens group G2, and a third positive lens group G3. The third lens group has two chromatic aberration correction portions each formed by a positive lens and a negative lens or negative lens and positive lens. Glass materials are selected such that one performs chromatization and the other performs achromatization, thereby providing a confocal scanning microscope capable of correcting lateral chromatic aberration generated in the objective system in the specific wavelength region by the scanning optical system.
    • 一种共焦扫描显微镜,包括:用照明光照射样品SA的物镜系统(第二物镜23和物镜24) 扫描机构31扫描样本SA以获得强度信号; 以及设置在扫描机构和物镜系统之间的扫描光学系统32。 扫描光学系统按照扫描机构侧的顺序由第一正透镜组G1,第二负透镜组G2和第三正透镜组G3构成。 第三透镜组具有由正透镜和负透镜或负透镜和正透镜形成的两个色像差校正部。 选择玻璃材料,使得一个进行着色,另一个进行消色化,从而提供能够通过扫描光学系统校正在特定波长区域中的物镜系统中产生的横向色差的共焦扫描显微镜。
    • 104. 发明授权
    • Printing system and business partner selection method that selects optimum business partner capable of delivering high-quality printed materials
    • 打印系统和业务伙伴选择方法,选择能够提供高品质印刷材料的最佳业务伙伴
    • US09064239B2
    • 2015-06-23
    • US13483219
    • 2012-05-30
    • Fumio Suzuki
    • Fumio Suzuki
    • G06Q30/00G06Q10/10G06Q30/06G06Q30/08
    • G06Q10/101G06Q30/0601
    • A printing system includes a first storage part storing printing partners correlated with respective locations and information for estimating respective production capabilities; a second storage part storing distribution partners correlated with respective locations and information for estimating respective delivery capabilities; a printing partner selecting part selecting a single printing partner whose location is in the same area as a delivery destination of a user-ordered print and that is capable of printing the user-ordered print in the shortest delivery time; a distribution partner selecting part selecting a single distribution partner whose location is in the same area as the single printing partner and that is capable of delivering the print in the shortest delivery time; and an order placing part configured to place, via an electrical network, an order for the printing service to the single printing partner and an order for the delivery service to the single distribution partner.
    • 打印系统包括存储与各个位置相关联的打印伙伴的第一存储部分和用于估计各个生产能力的信息; 存储与相应位置相关联的分发伙伴的第二存储部分和用于估计各个传送能力的信息; 选择与位置在与用户订购的打印的传送目的地相同的区域中的单个打印伙伴并且能够以最短的传送时间打印用户订购的打印的打印伙伴选择部分; 分配伙伴选择部分选择单个分配伙伴,其位置与单个打印伙伴在同一区域中,并且能够以最短传送时间传送打印; 以及订单放置部件,被配置为经由电网络将打印服务的订单放置到单个打印合作伙伴以及用于向单个分发伙伴发送服务的订单。
    • 105. 发明授权
    • Radio communication system, receiver, and transmitter
    • 无线电通信系统,接收机和发射机
    • US08660227B2
    • 2014-02-25
    • US12737629
    • 2009-07-30
    • Fumio SuzukiShoji HatanoNoritoshi HinoMasahito TanedaYoshimisa KimuraKoichi Moriya
    • Fumio SuzukiShoji HatanoNoritoshi HinoMasahito TanedaYoshimisa KimuraKoichi Moriya
    • H04L7/00
    • H04W56/00H04L7/10H04W52/0229Y02D70/00
    • A radio communication system has a transmitter and a receiver that transmits and receives, respectively, synchronization signals. The transmitter has a multiple-synchronization-signal generation section configured to generate the synchronization signals, a radio circuit configured to transmit the synchronization signals in a predetermined transmission cycle from a start time of the predetermined transmission cycle and with an interval shorter than the predetermined transmission cycle, and a synchronization signal sequence number generation section configured to assign a sequence number to each of the synchronization signals. The receiver has a synchronization signal detection section configured to detect any one of the synchronization signals transmitted by the transmitter, and has a clock error correction section configured to correct an error of a reference clock based on the sequence number assigned by the synchronization signal sequence number generation section to the synchronization signal detected by the synchronization signal detection section.
    • 无线电通信系统具有分别发送和接收同步信号的发射机和接收机。 发射机具有多个同步信号产生部分,被配置为产生同步信号,无线电电路被配置为从预定传输周期的开始时间以预定传输周期发射同步信号,并且间隔小于预定传输 以及同步信号序列号生成部,被配置为向每个同步信号分配序列号。 接收机具有同步信号检测部,其被配置为检测由发送器发送的同步信号中的任一个,并且具有时钟误差校正部,被配置为基于由同步信号序列号分配的序列号校正参考时钟的误差 由同步信号检测部检测到的同步信号。
    • 106. 发明授权
    • Communication system and communication method
    • 通信系统和通信方法
    • US08558657B2
    • 2013-10-15
    • US12737775
    • 2009-08-06
    • Koichi MoriyaYoshimasa KimuraFumio SuzukiShoji HatanoNoritoshi HinoMasahito Taneda
    • Koichi MoriyaYoshimasa KimuraFumio SuzukiShoji HatanoNoritoshi HinoMasahito Taneda
    • G05B23/02H04J3/06H04L27/00
    • H04W56/0045
    • A communication system has a server, base station devices, and terminal devices. The server notifies each base station device of a transmission order of a synchronization signal and of the base station device that is designated as a reference. Each one of the base station devices transmits a synchronization signal to the corresponding terminal device based on the transmission order in a case where the one base station device has been designated as the reference. In the case where the one base station device has not been designated as the reference, the one base station device transmits the synchronization signal to the corresponding terminal device at a timing calculated based on a reception timing by the corresponding terminal device of a synchronization signal received from the reference base station device, a transmission order of the reference base station device, and the transmission order of the one base station device.
    • 通信系统具有服务器,基站装置和终端装置。 服务器向每个基站装置通知同步信号的发送顺序和指定为基准的基站装置。 在一个基站装置被指定为基准的情况下,基站装置中的每一个基于发送顺序向对应的终端装置发送同步信号。 在一个基站装置未被指定为基准的情况下,一个基站装置以对应的终端装置接收到的同步信号的接收定时所计算出的定时,向对应的终端装置发送同步信号 来自参考基站装置的参考基站装置的发送顺序和一个基站装置的发送顺序。
    • 108. 发明申请
    • COMMUNICATION SYSTEM AND COMMUNICATION METHOD
    • 通信系统和通信方法
    • US20110207501A1
    • 2011-08-25
    • US12737775
    • 2009-08-06
    • Koichi MoriyaYoshimasa KimuraFumio SuzukiShoji HatanoNoritoshi HinoMasahito Taneda
    • Koichi MoriyaYoshimasa KimuraFumio SuzukiShoji HatanoNoritoshi HinoMasahito Taneda
    • H04M1/00
    • H04W56/0045
    • The present invention relates to a communication system capable of reducing processing loads imposed on a base station device and a server that sets a timing of a synchronization signal for the base station device. A management server (3) provides notification of a transmission order of the synchronization signal to each of a plurality of base station devices (1). The each of the plurality of base station devices (1) immediately transmits the synchronization signal to a terminal device (2) based on a timing of an already-operating clock in a case of receiving notification indicating the first in transmission order from the management server (3), and, in a case of receiving notification indicating another transmission order than the first from the management server (3), receives a synchronization signal transmitted at the earliest timing from another base station device (1), to thereby transmit the synchronization signal to the terminal device (2) at a timing calculated based on a reception timing of the received synchronization signal and the transmission order received by an own device.
    • 本发明涉及能够降低对基站装置施加的处理负荷的通信系统和设定基站装置的同步信号定时的服务器。 管理服务器(3)向多个基站装置(1)中的每一个提供同步信号的发送顺序的通知。 在从管理服务器接收到指示发送顺序的第一个的通知的情况下,多个基站装置(1)中的每一个基于已经工作的时钟的定时立即将同步信号发送到终端装置(2) (3),并且在从所述管理服务器(3)接收到指示与所述管理服务器(3)中的第一发送顺序相同的通知的情况下,从另一基站装置(1)接收在最早定时发送的同步信号,从而发送同步 在基于接收到的同步信号的接收定时和由本装置接收的发送顺序计算的定时向终端装置(2)发送信号。
    • 109. 发明申请
    • FLUORESCENT LAMP COMPATIBLE LED ILLUMINATING DEVICE
    • 荧光灯兼容LED照明装置
    • US20100270908A1
    • 2010-10-28
    • US12666639
    • 2007-07-09
    • Fumio Suzuki
    • Fumio Suzuki
    • H01J1/62
    • F21K9/27F21Y2103/10F21Y2115/10H01L33/22H01L33/38H01L33/46
    • A fluorescent lamp compatible LED illuminating device (1) comprises a glass fluorescent pipe (2) used for a fluorescent lamp, an LED (3) for emitting deep ultraviolet light, a light scattering member (5) that is housed or arranged in the fluorescent pipe (2) and that diffuses or scatters the light from the LED (3), and a reconversion circuit (4) that is mounted on the fluorescent pipe (2) and that reconverts an output from an electric circuit (A1) inherent to the fluorescent lamp such as a stabilizer, a glow switch starter and an inverter and supplies the reconverted output to the LED (3). A surface electrode (32) is provided on the surface of the LED (3). A plurality of through bores (321) are formed intermittently over the surface electrode (32). A dielectric antenna (36) for collecting and transmitting the deep ultraviolet light or the ultraviolet light is provided in the through bore (321). The fluorescent lamp compatible LED illuminating device (1) is not inferior to a conventional fluorescent lamp in terms of the total amount of light and illuminance, and is highly efficient.
    • 荧光灯兼容的LED照明装置(1)包括用于荧光灯的玻璃荧光管(2),用于发射深紫外光的LED(3),容纳或布置在荧光灯中的光散射部件(5) 管(2),并且扩散或散射来自LED(3)的光;以及再转换电路(4),其安装在荧光管(2)上,并将来自电路(A1)的输出重新转换为 荧光灯如稳定器,辉光开关起动器和逆变器,并将再转换的输出提供给LED(3)。 在LED(3)的表面上设置表面电极(32)。 在表面电极(32)上间歇地形成多个贯通孔(321)。 用于收集和透射深紫外光或紫外线的电介质天线(36)设置在通孔(321)中。 荧光灯兼容的LED照明装置(1)在光的总量和照度方面的传统荧光灯不逊色,效率高。