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    • 21. 发明授权
    • Character-information conversion apparatus and method for converting character information
    • 字符信息转换装置和用于转换字符信息的方法
    • US07274314B2
    • 2007-09-25
    • US11175427
    • 2005-07-05
    • Kazuhiko MaedaKoichiro Watanabe
    • Kazuhiko MaedaKoichiro Watanabe
    • H03M7/00
    • G06F17/2217
    • A character-information conversion apparatus is configured to process character information including attribute information indicating a coding system and character codes conforming to the coding system and for converting the character codes into characters. The apparatus includes a key operation unit, an EEPROM, and a controlling unit. The key operation unit specifies a coding system to be applied to decode character codes conforming to a coding system other than a normally applied coding system. The EEPROM stores information indicating the coding system corresponding to the received input. The controlling unit refers to the attribute information and determines which coding system the character codes conforms to, converts the character codes into characters based on the information stored in the EEPROM when it is incapable of determining the coding system or when it is determined that the coding system differs from the normally applied coding system.
    • 字符信息转换装置被配置为处理字符信息,该字符信息包括指示编码系统的属性信息和符合编码系统的字符代码,并将字符代码转换为字符。 该装置包括键操作单元,EEPROM和控制单元。 键操作单元指定要应用于解码符合正常应用的编码系统以外的编码系统的字符代码的编码系统。 EEPROM存储指示与接收到的输入对应的编码系统的信息。 控制单元参考属性信息,并确定字符代码符合哪个编码系统,当不能确定编码系统时,或者当确定编码时,将字符代码转换为基于存储在EEPROM中的信息的字符 系统与正常应用的编码系统不同。
    • 23. 发明授权
    • Method of producing spherical silica powder
    • 球形二氧化硅粉末的制备方法
    • US06387302B1
    • 2002-05-14
    • US09935593
    • 2001-08-24
    • Yoshiharu KonyaKoichiro WatanabeSusumu Ueno
    • Yoshiharu KonyaKoichiro WatanabeSusumu Ueno
    • C01B3318
    • C03B19/1025
    • Spherical silica powder is produced by feeding silica powder having an average particle size of 0.3-40 &mgr;m to a burner flame formed with a flammable gas so as to continuously melt and spheroidize the particles within the flame. The use of a non-halogenated siloxane and/or alkoxysilane as an auxiliary flame-generating source raises the flame temperature and increases the length of the composite flame formed by combustion of the fuel gas with the siloxane or alkoxysilane. Moreover, the fine particles of silica that form as a result of siloxane or alkoxysilane combustion unite and coalesce with the particles of starting silica. These effects accelerate melting and spheroidization of the starting silica powder, resulting in thermally efficient and cost-effective spherical silica powder production.
    • 通过将平均粒径为0.3〜40μm的二氧化硅粉末供给形成有可燃性气体的燃烧器火焰,从而在火焰内连续地熔融和球化颗粒,从而制造球形二氧化硅粉末。 使用非卤化硅氧烷和/或烷氧基硅烷作为辅助发火源提高了火焰温度并且增加了燃料气体与硅氧烷或烷氧基硅烷燃烧形成的复合火焰的长度。 此外,由硅氧烷或烷氧基硅烷燃烧形成的二氧化硅微粒与起始二氧化硅的颗粒结合并结合。 这些影响加速起始二氧化硅粉末的熔融和球化,导致热效率和成本有效的球形二氧化硅粉末的生产。
    • 28. 发明授权
    • Transmission control apparatus and transmission control method
    • 变速箱控制装置及变速箱控制方法
    • US08982705B2
    • 2015-03-17
    • US13064789
    • 2011-04-15
    • Koichiro Watanabe
    • Koichiro Watanabe
    • H04L12/26H04L29/08H04B7/155
    • H04L45/70H04B7/155H04L45/24H04L67/1095
    • A transmission control apparatus includes: a communication unit communicating with each of communication apparatuses, which are included in a communication system in which communication is executed via one relay apparatus, via the relay apparatus; a determination unit determining, as a transmission apparatus transmitting content data indicating a content to be transmitted, the apparatus with higher transmission quality between the apparatus and the relay apparatus in the communication system based on quality information of each communication apparatus, which is received by the communication unit and includes information regarding the transmission quality between the relay apparatus and the communication apparatus; and a transmission control unit allowing the transmission apparatus determined by the determination unit to concurrently transmit the content data indicating the content to the respective apparatuses of the communication system excluding the transmission apparatus.
    • 传输控制装置包括:经由中继装置与通信装置通信的通信单元,其中通信装置包括在经由一个中继装置执行通信的通信系统中; 确定单元,根据通信装置的接收到的各个通信装置的质量信息,确定在通信系统中的装置与中继装置之间传送指示要发送的内容的内容数据的发送装置的发送装置, 通信单元,并且包括关于中继装置和通信装置之间的传输质量的信息; 以及发送控制单元,其允许由确定单元确定的发送设备将指示该内容的内容数据同时发送到除了发送设备之外的通信系统的各个设备。
    • 29. 发明申请
    • METHOD FOR PRODUCING LAMINATED POROUS FILM
    • 生产层压多孔膜的方法
    • US20140161967A1
    • 2014-06-12
    • US14232495
    • 2012-07-17
    • Hirohiko HasegawaKoichiro Watanabe
    • Hirohiko HasegawaKoichiro Watanabe
    • H01M2/14
    • H01M2/145C08J7/047C08J2323/02C08J2403/02H01M2/1653H01M2/166H01M2/1686
    • The present invention provides a method for producing a laminated porous film comprising a porous film substrate and a heat-resistant layer. The method comprises forming a heat-resistant layer mainly comprising a filler on the surface of the porous film substrate by applying a coating slurry comprising a solvent, a binder resin and the filler to the surface of the porous film substrate and then removing the solvent, wherein the coating slurry is prepared so as to have a contact angle of 75° or more with an untreated porous film substrate, and the method comprises conducting surface treatment of a porous film substrate so that the contact angle of the coating slurry with the porous film substrate can be 65° or less before applying the coating slurry to the surface of the porous film substrate.
    • 本发明提供了一种包含多孔膜基材和耐热层的叠层多孔膜的制造方法。 该方法包括在多孔膜基材的表面上形成主要包含填料的耐热层,将包含溶剂,粘合剂树脂和填料的涂料浆料涂覆到多孔膜基材的表面,然后除去溶剂, 其中涂布浆料与未处理的多孔膜基材的接触角为75°以上,并且该方法包括对多孔膜基材进行表面处理,使得涂布浆料与多孔膜的接触角 在将涂布浆料涂布到多孔膜基材的表面之前,基材可以为65°以下。