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    • 12. 发明授权
    • Sanitary thin paper
    • 卫生薄纸
    • US08313613B2
    • 2012-11-20
    • US12935153
    • 2009-03-31
    • Takashi MatsumuraKiyoshi TairaKatsuaki Kokubo
    • Takashi MatsumuraKiyoshi TairaKatsuaki Kokubo
    • D21F11/00
    • A47K10/16D21H21/22D21H27/002D21H27/005Y10T428/24455
    • It is a main object to provide sanitary paper comprising: a base thin paper including 5 to 40 wt % of a treating agent wherein bending rigidity B value is 0.03 to 0.07 g cm2/cm and moisture regain is 4.5 to 6.0 wt %, which are measured at a temperature of 25° C. with a humidity of 40% R.H., and the thin paper includes a fluent liquid state at ordinary temperatures with 70 to 100 wt % of effective ingredient including 1) 80.0 to 97.0 wt % of a moisturizing agent 2) 0.5 to 10.0 wt % of a softening agent selected from anionic surfactants, cationic surfactants, nonionic surfactants, and amphoteric surfactants. 3) 0.001 to 1.0 wt % of a hydrophilic high molecular compound.
    • 主要目的在于提供卫生纸,其特征在于,包括:基材薄纸,其含有5〜40重量%的处理剂,其中弯曲刚性B值为0.03〜0.07g·cm / cm,回潮率为4.5〜6.0重量% 在25℃的温度下在40%RH的湿度下测定,薄纸在常温下包含70〜100重量%的有效成分的流动液体状态,包括1)80.0〜97.0重量%的保湿剂 2)0.5〜10.0重量%的选自阴离子表面活性剂,阳离子表面活性剂,非离子表面活性剂和两性表面活性剂的软化剂。 3)0.001〜1.0重量%的亲水性高分子化合物。
    • 17. 发明授权
    • Scattered light measuring device
    • 分散光测量装置
    • US07907285B2
    • 2011-03-15
    • US12088737
    • 2006-09-27
    • Junichi UkitaTakashi Matsumura
    • Junichi UkitaTakashi Matsumura
    • G01B9/02G01N21/00
    • G01M11/3172
    • Measurement of Brillouin scattered light is enabled without an optical receiver having a wide reception band. A scattered light measuring device includes a continuous wave light source that generates continuous wave light, an optical pulse generator that converts the continuous wave light into pulsed light, an optical frequency shifter that receives the continuous wave light, and outputs shifted light including the continuous wave light, first sideband light having an optical frequency higher than an optical frequency F0 of the continuous wave light by a predetermined optical frequency Flo, and second sideband light having an optical frequency lower than the optical frequency F0 of the continuous wave light by the predetermined optical frequency Flo, a power reducing unit that reduces the power of the continuous wave light in the shifted light output by said optical frequency shifter, and a heterodyne optical receiver that receives scattered light from an incident end of an optical fiber which the pulsed light enters, further receives the shifted light from said optical frequency shifter, and outputs an electric signal having a frequency which is a difference between the optical frequency of the scattered light and the optical frequency of the shifted light.
    • 不使用具有宽的接收频带的光接收机就能实现布里渊散射光的测量。 散射光测量装置包括产生连续波光的连续波光源,将连续波光转换为脉冲光的光脉冲发生器,接收连续波光的光学移频器,并输出包括连续波的移动光 具有比预定光频率Flo的连续波光的光频率F0高的光频率的光,第一边带光和具有比预定光学的连续波光的光频F0低的光频的第二边带光 频率Flo,功率降低单元,其降低由所述光学移频器输出的移位光中的连续波光的功率;以及外差光接收器,其接收来自脉冲光入射的光纤的入射端的散射光, 进一步接收来自所述光学移频器的偏移的光,并且 输出具有作为散射光的光频率与偏移光的光频率之间的差的频率的电信号。
    • 18. 发明申请
    • Wireless Communication Terminal and Control Method Thereof
    • 无线通信终端及其控制方法
    • US20100332867A1
    • 2010-12-30
    • US12877883
    • 2010-09-08
    • Mitsuhiro KITAJITakashi MATSUMURA
    • Mitsuhiro KITAJITakashi MATSUMURA
    • G06F1/00
    • H04W52/36H04B1/3816
    • In a PC card communication terminal that operates supplied with power from a host device, problems such as malfunctions due to a supply voltage drop at the time of high transmission output are prevented from occurring. A baseband processor (1106) selects a transmission-power upper-limit measurement mode when a PC card terminal (1103) is to be controlled for the first time. A supply voltage drop is measured by a voltage measurement circuit (1114) while a load value of a load circuit (1112) is being changed. The load value of the load circuit (1112) when the supply voltage decreases to a permissible lowest supply voltage is obtained. Using a conversion table stored in a memory (1107), the load value is converted into a transmission output and is set as a transmission-output upper limit. In a normal communication mode, a maximum transmission output is restricted based on this transmission-output upper limit.
    • 在从主机装置供电的PC卡通信终端中,防止由于高传输输出时的电源电压下降而导致的故障等问题。 当首次要控制PC卡终端(1103)时,基带处理器(1106)选择发送功率上限测量模式。 当负载电路(1112)的负载值正在改变时,由电压测量电路(1114)测量电源电压降。 获得当电源电压降低到允许的最低电源电压时负载电路(1112)的负载值。 使用存储在存储器(1107)中的转换表,将负载值转换为发送输出,并将其设置为发送 - 输出上限。 在正常通信模式中,基于该传输输出上限来限制最大传输输出。