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    • 41. 发明授权
    • Microprocessor coupled to coprocessor by coprocessor bus separate from
system bus to external memory for increased efficiency
    • 微处理器通过协处理器总线耦合到协处理器,从系统总线分离到外部存储器,以提高效率
    • US5499363A
    • 1996-03-12
    • US400390
    • 1995-03-03
    • Hiroaki Kaneko
    • Hiroaki Kaneko
    • G06F9/38G06F15/16G06F15/78G06F13/00
    • G06F9/3877G06F9/3885
    • A microprocessor, which can be coupled externally with a coprocessor in order to extend an instruction set, includes a first set of terminals to be coupled to the coprocessor for data transfer between the microprocessor and the coprocessor, and a second set of terminals to be coupled to an external memory other than the coprocessor for data transfer between the microprocessor and the external memory. The microprocessor also includes a first bus control unit connected to the first set of terminals for controlling the first set of terminals, independently of the second set of terminals, thereby to control the data transfer between the microprocessor and the coprocessor, and a second bus control unit connected to the second set of terminals for controlling the second set of terminals, independently of the first set of terminals, thereby to control the data transfer between the microprocessor and the external memory.
    • 可以与协处理器外部耦合以便扩展指令集的微处理器包括要耦合到协处理器以在微处理器和协处理器之间进行数据传输的第一组终端,以及要耦合的第二组终端 到除了协处理器之外的外部存储器,用于微处理器和外部存储器之间的数据传输。 微处理器还包括连接到第一组终端的第一总线控制单元,用于独立于第二组终端来控制第一组终端,从而控制微处理器和协处理器之间的数据传输,以及第二总线控制 连接到第二组终端的单元,用于独立于第一组终端来控制第二组终端,从而控制微处理器与外部存储器之间的数据传输。
    • 43. 发明授权
    • Engine exhaust apparatus
    • 发动机排气装置
    • US5431013A
    • 1995-07-11
    • US170751
    • 1993-12-21
    • Yasuhito YamakiHiroaki KanekoKatsumi NakazatoYoshimitsu Tateno
    • Yasuhito YamakiHiroaki KanekoKatsumi NakazatoYoshimitsu Tateno
    • F01N1/24F01N3/033F01N3/30F01N3/34F01N3/20
    • F01N3/306F01N3/0335F01N3/34F01N1/24F01N2270/02Y02T10/20
    • An engine exhaust apparatus comprises a sound suppressing section for lowering the exhaust noise level as an exhaust gas discharged from the exhaust port passes through it. The exhaust apparatus is provided with an ejector section for introducing secondary air into the exhaust gas delivered from the sound suppressing section and mixing the gases, and a post-treatment section for purifying the gas mixture delivered from the ejector section. The exhaust gas discharged from an exhaust manifold gets into the ejector section through the sound suppressing section, and is then purified in the post-treatment section. Therefore, the ejector effect cannot be reduced by the sound suppressing section which is subject to high flow resistance. Thus, the exhaust noise level can be lowered with the ejector effect of the introduction of the secondary air improved considerably, and low cost and simple construction can be enjoyed.
    • 发动机排气装置包括声音抑制部分,用于当从排气口排出的废气通过时,降低排气噪声水平。 排气装置设置有用于将二次空气引入到从声音抑制部输送的排气中并混合气体的喷射部,以及用于净化从喷射部输送的气体混合物的后处理部。 从排气歧管排出的废气通过声音抑制部进入喷射器部,然后在后处理部中进行净化。 因此,由于流动阻力高的声音抑制部不能降低喷射效果。 因此,能够显着提高二次空气的喷出效果,能够降低排气噪声水平,能够实现低成本,简单的结构。
    • 44. 发明授权
    • Energy supply system
    • 能源供应系统
    • US08577512B2
    • 2013-11-05
    • US13060591
    • 2010-03-04
    • Hiroaki KanekoHideo OharaMasataka OzekiYoshikazu TanakaKunihiro Ukai
    • Hiroaki KanekoHideo OharaMasataka OzekiYoshikazu TanakaKunihiro Ukai
    • G05D3/12G05D5/00G05D9/00G05D11/00G05D17/00
    • H01M8/04373F24D19/1048F24D2200/19F24H2240/10H01M8/04619H01M8/04694H01M2250/405Y02B90/16
    • An energy supply system comprises an energy supply device (1a) for supplying at least one of electric power and heat, and a controller (6) configured to set first maximum operation time which is an upper limit value of operation time of the energy supply device in a first specified period shorter than a guaranteed operation period of the energy supply device such that operation time of the energy supply device does not reach operation time life before the guaranteed operation period lapses, and calculate and set second maximum operation time which is an upper limit value of the operation time of the energy supply device in a second specified period shorter than the first specified period based on the set first maximum operation time such that the operation time of the energy supply device within the first specified period does not exceed the first maximum operation time.
    • 能量供给系统包括用于供给电力和热量中的至少一个的能量供给装置(1a),以及控制器(6),其被配置为设定作为能量供给装置的运转时间的上限值的第一最大运转时间 在比所述能量供给装置的保证运转期间短的第一指定期间内,所述能量供给装置的动作时间未达到所述保证运行期间经过之前的运转时间,并且计算并设定作为上限的第二最大运转时间 基于所设定的第一最大操作时间,能量供给装置在比第一规定期间短的第二规定期间内的动作时间的极限值,使得能量供给装置在第一规定期间内的动作时间不超过第一规定时间 最大运行时间。
    • 46. 发明申请
    • ENERGY SUPPLY SYSTEM
    • 能源供应系统
    • US20110151346A1
    • 2011-06-23
    • US13060591
    • 2010-03-04
    • Hiroaki KanekoHideo OharaMasataka OzekiYoshikazu TanakaKunihiro Ukai
    • Hiroaki KanekoHideo OharaMasataka OzekiYoshikazu TanakaKunihiro Ukai
    • H01M8/04
    • H01M8/04373F24D19/1048F24D2200/19F24H2240/10H01M8/04619H01M8/04694H01M2250/405Y02B90/16
    • An energy supply system comprises an energy supply device (1a) for supplying at least one of electric power and heat, and a controller (6) configured to set first maximum operation time which is an upper limit value of operation time of the energy supply device in a first specified period shorter than a guaranteed operation period of the energy supply device such that operation time of the energy supply device does not reach operation time life before the guaranteed operation period lapses, and calculate and set second maximum operation time which is an upper limit value of the operation time of the energy supply device in a second specified period shorter than the first specified period based on the set first maximum operation time such that the operation time of the energy supply device within the first specified period does not exceed the first maximum operation time.
    • 能量供给系统包括用于供给电力和热量中的至少一个的能量供给装置(1a),以及控制器(6),其被配置为设定作为能量供给装置的运转时间的上限值的第一最大运转时间 在比所述能量供给装置的保证运转期间短的第一指定期间内,所述能量供给装置的动作时间未达到所述保证运行期间经过之前的运转时间,并且计算并设定作为上限的第二最大运转时间 基于所设定的第一最大操作时间,能量供给装置在比第一规定期间短的第二规定期间内的动作时间的极限值,使得能量供给装置在第一规定期间内的动作时间不超过第一规定时间 最大运行时间。
    • 49. 发明授权
    • Stabilized aromatic polycarbonate
    • 稳定的芳族聚碳酸酯
    • US06303734B1
    • 2001-10-16
    • US09424151
    • 1999-11-19
    • Wataru FunakoshiHiroaki KanekoKatsushi Sasaki
    • Wataru FunakoshiHiroaki KanekoKatsushi Sasaki
    • C08G6400
    • C08G64/06C08G64/14C08G64/307
    • The relative intensity of fluorescent light of a melt-polycondensed aromatic polycarbonate produced by the transesterification process (melt polymerization process) of an aromatic dihydroxy compound and a carbonic acid diester in the presence of a catalyst comprising a basic nitrogen compound and/or a basic phosphorus compound in combination with an alkali metal compound is suppressed to 4.0×10−3 or below at a wavelength of 465 nm based on a standard substance in a fluorescent light spectrum obtained by the excitation wavelength of 320 nm. An aromatic polycarbonate having good color stability, especially good stability to the deterioration of the chip color during storage of the chip in air at room temperature can be produced by the present invention.
    • 在包含碱性氮化合物和/或碱性磷的催化剂存在下,通过芳族二羟基化合物和碳酸二酯的酯交换方法(熔融聚合方法)制备的熔融缩聚芳族聚碳酸酯的荧光的相对强度 与碱金属化合物组合的化合物在波长为465nm的基础上,通过激发波长320nm得到的荧光光谱中的标准物质抑制在4.0×10 -3以下。 通过本发明,可以制造具有良好的颜色稳定性的芳香族聚碳酸酯,特别是在芯片在室温下在空气中储存期间芯片颜色劣化的良好的稳定性。
    • 50. 发明授权
    • Process for producing polycarbonate resin
    • 生产聚碳酸酯树脂的方法
    • US06252036B1
    • 2001-06-26
    • US09402835
    • 1999-10-13
    • Kazuki HatonoHiroaki KanekoToru SawakiKatsushi Sasaki
    • Kazuki HatonoHiroaki KanekoToru SawakiKatsushi Sasaki
    • C08G6378
    • C08G64/14C08G64/307
    • The purpose of this invention is to produce a stabilized terminal-blocked polycarbonate resin with a limited number of the terminal hydroxy groups having excellent thermal stability, color stability and hydrolysis resistance by an industrially advantageous method using a terminal blocking agent. In the production of a polycarbonate by the melt-polycondensation of an aromatic dihydroxy compound with an aromatic carbonic acid diester in the presence of a polycondensation catalyst, a terminal blocking agent expressed by the following formula (1) [in the formula, R1 is chlorine atom, methoxycarbonyl group or ethoxycarbonyl group; R2 is an alkyl group having a carbon number of 1 to 30, an alkoxy group having a carbon number of 1 to 30, an aryl group having a carbon number of 6 to 30 or an aryloxy group having a carbon number of 6-30] is added after the melt-polycondensation to the system in an amount of 0.3 to 4 mol-equivalent based on the hydroxy terminal group amount of the polycarbonate at 200 to 350° C. under a pressure of 1,013 hPa (760 mmHg) or below for 0.1 second or longer and, thereafter, a stabilizer is added and kneaded into the system at 200 to 350° C. under a pressure of 1.333×105 hPa (105 mmHg) or below for 0.1 second or longer.
    • 本发明的目的是通过使用端基封端剂的工业上有利的方法制备具有有限数目的末端羟基的稳定的封端聚碳酸酯树脂,其具有优异的热稳定性,颜色稳定性和耐水解性。 在通过芳族二羟基化合物与芳香族碳酸二酯在缩聚催化剂存在下的熔融缩聚反应制造聚碳酸酯时,由下式(1)表示的封端剂[式中,R1为氯原子 原子,甲氧基羰基或乙氧基羰基; R 2为碳数为1〜30的烷基,碳数为1〜30的烷氧基,碳数为6〜30的芳基或碳原子数为6〜30的芳氧基] 在对于体系进行熔融缩聚之后,相对于聚碳酸酯的羟基端基量为200〜350℃,在1013hPa(760mmHg)以下的压力下,以0.3〜4mol当量的量进行熔融缩聚, 0.1秒以上,然后在1.333×105hPa(105mmHg)以下0.1秒以上的压力下,在200〜350℃下加入稳定剂并捏合到体系中。