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    • 2. 发明授权
    • Phenolic resin, production method and use thereof
    • 酚醛树脂,其制备方法和用途
    • US07994271B2
    • 2011-08-09
    • US12090173
    • 2006-10-16
    • Kiyotaka MurataYoshihisa Sone
    • Kiyotaka MurataYoshihisa Sone
    • C08G14/04C08G59/62
    • C08G14/04C08G59/621C08L61/34C08L63/00C08L2666/22
    • Disclosed is a phenolic resin having flame retardance, fast curing property and low melt viscosity, which is useful for a curing agent for epoxy resin-based semiconductor sealing materials. Also disclosed are a method for producing such a phenolic resin and use of such a phenolic resin. Specifically disclosed is a phenolic resin obtained by reacting a phenol, a bismethylbiphenyl compound and an aromatic aldehyde at such a ratio that the molar ratio of the total of the bismethylbiphenyl compound and the aromatic aldehyde relative to the phenol is 0.10-0.60, and the aromatic aldehyde/the bismethylbiphenyl compound (molar ratio) is from 5/95 to 50/50. Also specifically disclosed is an epoxy resin composition composed of such a phenolic resin and an epoxy resin.
    • 公开了具有阻燃性,快固化性和低熔融粘度的酚醛树脂,其可用于环氧树脂基半导体密封材料的固化剂。 还公开了制备这种酚醛树脂的方法和这种酚醛树脂的用途。 具体公开了通过使苯酚,双甲基联苯化合物和芳族醛反应得到的比例使得二甲基联苯化合物和芳族醛相对于苯酚的摩尔比为0.10-0.60而得到的酚醛树脂,芳香族 醛/双甲基联苯化合物(摩尔比)为5/95〜50/50。 还具体公开了由这种酚醛树脂和环氧树脂组成的环氧树脂组合物。
    • 3. 发明申请
    • PHENOLIC RESIN, PRODUCTION METHOD AND USE THEREOF
    • 酚醛树脂,生产方法及其用途
    • US20090137725A1
    • 2009-05-28
    • US12090173
    • 2006-10-16
    • Kiyotaka MurataYoshihisa Sone
    • Kiyotaka MurataYoshihisa Sone
    • C08L61/06C08G8/04
    • C08G14/04C08G59/621C08L61/34C08L63/00C08L2666/22
    • Disclosed is a phenolic resin having flame retardance, fast curing property and low melt viscosity, which is useful for a curing agent for epoxy resin-based semiconductor sealing materials. Also disclosed are a method for producing such a phenolic resin and use of such a phenolic resin. Specifically disclosed is a phenolic resin obtained by reacting a phenol, a bismethylbiphenyl compound and an aromatic aldehyde at such a ratio that the molar ratio of the total of the bismethylbiphenyl compound and the aromatic aldehyde relative to the phenol is 0.10-0.60, and the aromatic aldehyde/the bismethylbiphenyl compound (molar ratio) is from 5/95 to 50/50. Also specifically disclosed is an epoxy resin composition composed of such a phenolic resin and an epoxy resin.
    • 公开了具有阻燃性,快固化性和低熔融粘度的酚醛树脂,其可用于环氧树脂基半导体密封材料的固化剂。 还公开了制备这种酚醛树脂的方法和这种酚醛树脂的用途。 具体公开了通过使苯酚,双甲基联苯化合物和芳族醛反应得到的比例使得二甲基联苯化合物和芳族醛相对于苯酚的摩尔比为0.10-0.60而得到的酚醛树脂,芳香族 醛/双甲基联苯化合物(摩尔比)为5/95〜50/50。 还具体公开了由这种酚醛树脂和环氧树脂组成的环氧树脂组合物。
    • 4. 发明授权
    • Charging/discharging apparatus and method, power supplying apparatus and method, program storing medium, and program
    • 充电/放电装置和方法,供电装置和方法,程序存储介质和程序
    • US07096130B2
    • 2006-08-22
    • US10916667
    • 2004-08-11
    • Kei TashiroHideyuki SatoYukio TsuchiyaKiyotaka Murata
    • Kei TashiroHideyuki SatoYukio TsuchiyaKiyotaka Murata
    • G06F3/01
    • H04N5/23241H02J7/0013H02J7/0045H02J7/0077H02J2007/0098
    • In case of the present invention, a microcomputer (271) controls a charging mode changeover switch (275) and connects the switch to a terminal (275d) to change the terminal (275d) to an initial charging mode power source (278). In this case, the microcomputer (271) requests the information on the charging capacity stored in a microcomputer (252) as charging information, the charging voltage measured by a voltage detector (258) and a standard charging capacity and obtains the information through a communication circuits (254) and (272). The microcomputer (271) obtains an actual charging capacity in accordance with a received measured charging voltage, compares the actual charging capacity with a stored charging capacity, and updates the actual charging capacity to zero when the comparison result is equal to or larger than a threshold value and the charging voltage is equal to or less than another threshold value. According to the present invention, a charging capacity is correctly corrected.
    • 在本发明的情况下,微型计算机(271)控制充电模式切换开关(275),并将开关连接到终端(275d),将终端(275d)改变为初始充电模式电源(278) 。 在这种情况下,微型计算机271将存储在微计算机252中的充电能力的信息作为充电信息,由电压检测器(258)测量的充电电压和标准充电容量请求,并通过通信 电路(254)和(272)。 微型计算机(271)根据接收到的测量充电电压获得实际充电容量,将实际充电容量与存储的充电容量进行比较,并且当比较结果等于或大于阈值时将实际充电容量更新为零 值和充电电压等于或小于另一阈值。 根据本发明,正确地校正了充电容量。