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    • 51. 发明申请
    • PESTICIDAL COMPOSITION
    • 农药组合物
    • US20100184713A1
    • 2010-07-22
    • US12668625
    • 2008-07-11
    • Tsutomu ArakiNaoki Sato
    • Tsutomu ArakiNaoki Sato
    • A01N43/22
    • A01N43/40A01N43/22A01N2300/00
    • The present invention provides a pesticidal composition comprising a compound represented by the formula (I): wherein A, B, R, R1, R2, R3, R4, R5, R6 and R7 are as defined in the description, and 2,6-dichloro-4-(3,3-dichloroallyloxy)phenyl 3-[5-(trifluoromethyl)-2-pyridyloxy]propyl ether as active ingredients, and also provides a pest control method which comprises the step of applying an effective amount of the compound represented by the above formula (I) and an effective amount of 2,6-dichloro-4-(3,3-dichloroallyloxy)phenyl 3-[5-(trifluoromethyl)-2-pyridyloxy]propyl ether to pests or a place where pests inhabit.
    • 本发明提供一种农药组合物,其包含由式(I)表示的化合物:其中A,B,R,R 1,R 2,R 3,R 4,R 5,R 6和R 7如说明书中所定义, 二氯-4-(3,3-二氯烯丙氧基)苯基3- [5-(三氟甲基)-2-吡啶氧基]丙基醚作为活性成分,并且还提供了一种害虫防治方法,其包括施加有效量的化合物 由上式(I)表示,有效量的2,6-二氯-4-(3,3-二氯烯丙氧基)苯基3- [5-(三氟甲基)-2-吡啶氧基]丙基醚用于害虫或其中 有害生物居住
    • 54. 发明申请
    • High-Resolution High-Speed Terahertz Spectrometer
    • 高分辨率高速太赫兹光谱仪
    • US20080165355A1
    • 2008-07-10
    • US11885335
    • 2005-08-30
    • Takeshi YasuiTsutomu ArakiEisuke Saneyoshi
    • Takeshi YasuiTsutomu ArakiEisuke Saneyoshi
    • G01J3/433
    • G01N21/3586
    • A high-resolution high-speed terahertz spectrometry for measuring a terahertz frequency spectrum at high speed with a laser mode-locking frequency which is the theoretical limitation frequency resolution of the terahertz time-domain spectroscopy. The mode-locking frequencies of two femtosecond laser light sources are controlled so that they are stabilized at high degree and the difference between the mode-locking frequencies is constant. The output of the laser light sources are used as a pumping light for generating terahertz pulses and a probe pulse light for terahertz detection. Since the time delay timings of the terahertz pulses and the probe pulse light the pulse periods of which are slightly different from each other shift from each other and the difference increases. Therefore, the temporally expanded terahertz pulses are measured by high-speed sampling without using any mechanical stage for time delay scanning. Part of the laser beams are extracted and time origin signals are generated by trigger signal generating means and used as trigger signals. Consequently the influence of the timing jitter can be eliminated. The terahertz electric field time waveform measured by high-speed sampling with the measurement time window of the pulse period is subjected to time-scale conversion and Fourier transform. Therefore, a terahertz frequency spectrum can be measured with high resolution of the theoretical limitation frequency resolution (=mode-locking frequency) and at high speed.
    • 高分辨率高速太赫兹光谱法,用于以激光锁模频率高速测量太赫兹频谱,这是太赫兹时域光谱的理论极限频率分辨率。 控制两个飞秒激光的模式锁定频率,使其稳定在高度,并且模式锁定频率之间的差异是恒定的。 激光源的输出用作产生太赫兹脉冲的泵浦光和用于太赫兹检测的探针脉冲光。 由于太赫兹脉冲和探针脉冲的时间延迟定时彼此稍微不同的脉冲周期彼此偏移并且差异增大。 因此,通过高速采样来测量时间上扩展的太赫兹脉冲,而不用任何用于时间延迟扫描的机械级。 部分激光束被提取,时间原点信号由触发信号发生装置产生并用作触发信号。 因此,可以消除定时抖动的影响。 用脉冲周期测量时间窗高速采样测得的太赫兹电场时间波形进行时标转换和傅里叶变换。 因此,可以以理论限制频率分辨率(=锁模频率)的高分辨率和高速度测量太赫兹频谱。
    • 58. 发明授权
    • Compact selfballasted fluorescent lamp and luminaire
    • 紧凑型自备荧光灯和灯具
    • US06794801B2
    • 2004-09-21
    • US10284348
    • 2002-10-31
    • Takeo YasudaMasahiro TodaShinichiro MatsumotoTsutomu ArakiToshiyuki HiraokaYoshiyuki Matsunaga
    • Takeo YasudaMasahiro TodaShinichiro MatsumotoTsutomu ArakiToshiyuki HiraokaYoshiyuki Matsunaga
    • H01J102
    • H01J61/52H01J61/327H01J61/56
    • A compact selfballasted fluorescent lamp includes a fluorescent arc tube forming a crooked discharge path, a housing comprised of a first end portion open to be fit thereon with a bulb-base, a middle portion and a second end portion open to be mounted thereto with the fluorescent arc tube, a lighting circuit module accommodated in the housing, the unit being provided with a circuit board and two or more circuit components mounted on the circuit board for constituting a lighting circuit for lighting the fluorescent arc tube, and a thermal conductor having a thermal conductivity of 0.1 W/(m·K) or more, which is filled in the housing, extending upwards from a components mounting side of the circuit board of the lighting circuit module and contacting with the inner wall of the housing lying on the side of the first end portion of the housing, thereby covering at least one of the circuit components of the lighting circuit.
    • 一种紧凑的自放射荧光灯包括形成弯曲放电路径的荧光发光管,壳体,其具有开口以与其配合的第一端部,其具有灯泡基部,中间部分和第二端部开口以安装在其上, 荧光灯管,容纳在壳体中的照明电路模块,该单元设置有电路板和安装在电路板上的两个或更多个电路部件,用于构成用于点亮荧光发光管的点亮电路,以及具有 填充在壳体中的热导率为0.1W /(mK)以上,从照明电路模块的电路板的部件安装侧向上延伸,并与位于照明电路模块侧的壳体的内壁相接触 壳体的第一端部,从而覆盖照明电路的至少一个电路部件。