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    • 2. 发明授权
    • Gas sensor element, method for manufacturing the same, and gas sensor
    • 气体传感器元件及其制造方法以及气体传感器
    • US08080143B2
    • 2011-12-20
    • US11392574
    • 2006-03-30
    • Shigeki MoriMasaki MizutaniAkinori KojimaShigeo Kondo
    • Shigeki MoriMasaki MizutaniAkinori KojimaShigeo Kondo
    • G01N27/407G01N27/409
    • G01N27/4071Y10T156/107
    • A method for manufacturing a gas sensor element (300), which includes a plate-like second solid electrolyte member (109), a fourth electrode (110) formed on the second solid electrolyte member (109), and a protection layer (111) including a reinforcement member (112) having an insertion hole (112a), and a porous electrode protection member (113a) provided in the insertion hole (112) and adapted to protect the fourth electrode (110) from becoming poisoned. The method includes a pressing step of, after disposing a green electrode protection member (113a) in the insertion hole (112a) of a green reinforcement member (112), pressing at least one of the green reinforcement member (112) and the green electrode protection member (113a) so as to form a green protection layer (111); a laminate-forming step of arranging the green protection layer (111) and a green solid electrolyte member (113a) in layers so as to form a laminate which will become the gas sensor element (300) after being fired; and a firing step of firing the laminate.
    • 一种制造气体传感器元件(300)的方法,其包括板状第二固体电解质部件(109),形成在第二固体电解质部件(109)上的第四电极(110)和保护层(111) 包括具有插入孔(112a)的加强构件(112)和设置在插入孔(112)中并适于保护第四电极(110)不被中毒的多孔电极保护构件(113a)。 该方法包括按压步骤,在绿色加强部件(112)的插入孔(112a)中设置绿色电极保护部件(113a)之后,按压至少一个绿色加强部件(112)和绿色电极 保护构件(113a),以形成绿色保护层(111); 层叠形成步骤,将绿色保护层(111)和绿色固体电解质构件(113a)分层布置,以形成在烧成之后成为气体传感器元件(300)的层压体; 以及焙烧步骤。
    • 3. 发明授权
    • Gas sensor
    • 气体传感器
    • US07811434B2
    • 2010-10-12
    • US11779043
    • 2007-07-17
    • Masaki MizutaniShigeki MoriShigeo KondoNobuo Furuta
    • Masaki MizutaniShigeki MoriShigeo KondoNobuo Furuta
    • G01N27/407
    • G01N27/4071
    • A gas sensor including a gas detecting element extending in a longitudinal direction and in which a plurality of ceramic layers are stacked, and wherein a detecting portion is provided at a leading end side of the gas detecting element, the gas detecting element including: a first ceramic layer; a second ceramic layer; a first through-hole conductor; a first peripheral portion; a second through-hole conductor; a second peripheral portion; and an opening all as defined herein, wherein the first peripheral portion and the second peripheral portion respectively have mutually overlapping adhered portions and separated portions opposing one another through a gap continuing to the opening, and a relationship L1>S1 is satisfied, where L1 represents a maximum length of the adhered portion, and S1 represents a maximum length of the separated portion.
    • 一种气体传感器,包括沿纵向延伸并且多个陶瓷层堆叠的气体检测元件,并且其中检测部分设置在气体检测元件的前端侧,气体检测元件包括:第一 陶瓷层; 第二陶瓷层; 第一通孔导体; 第一周边部分; 第二通孔导体; 第二周边部分; 以及全部如本文所定义的开口,其中第一周边部分和第二周边部分分别具有相互重叠的粘附部分和通过与开口连续的间隙彼此相对的分离部分,并且满足关系L1> S1,其中L1表示 粘合部分的最大长度,S1表示分离部分的最大长度。
    • 4. 发明申请
    • Gas sensor element, method for manufacturing the same, and gas sensor
    • 气体传感器元件及其制造方法以及气体传感器
    • US20060219554A1
    • 2006-10-05
    • US11392574
    • 2006-03-30
    • Shigeki MoriMasaki MizutaniAkinori KojimaShigeo Kondo
    • Shigeki MoriMasaki MizutaniAkinori KojimaShigeo Kondo
    • G01N27/28
    • G01N27/4071Y10T156/107
    • A method for manufacturing a gas sensor element (300), which includes a plate-like second solid electrolyte member (109), a fourth electrode (110) formed on the second solid electrolyte member (109), and a protection layer (111) including a reinforcement member (112) having an insertion hole (112a), and a porous electrode protection member (113a) provided in the insertion hole (112) and adapted to protect the fourth electrode (110) from becoming poisoned. The method includes a pressing step of, after disposing a green electrode protection member (113a) in the insertion hole (112a) of a green reinforcement member (112), pressing at least one of the green reinforcement member (112) and the green electrode protection member (113a) so as to form a green protection layer (111); a laminate-forming step of arranging the green protection layer (111) and a green solid electrolyte member (113a) in layers so as to form a laminate which will become the gas sensor element (300) after being fired; and a firing step of firing the laminate.
    • 一种制造气体传感器元件(300)的方法,其包括板状第二固体电解质部件(109),形成在第二固体电解质部件(109)上的第四电极(110)和保护层(111) 包括具有插入孔(112a)的加强构件(112)和设置在所述插入孔(112)中并适于保护所述第四电极(110)不被中毒的多孔电极保护构件(113a)。 该方法包括按压步骤,在绿色加强部件(112)的插入孔(112a)中设置绿色电极保护部件(113a)之后,按压至少一个绿色加强部件(112)和 绿色电极保护构件(113a),以形成绿色保护层(111); 层叠形成工序,将绿色保护层(111)和绿色固体电解质构件(113a)分层配置,形成在烧成后成为气体传感元件(300)的层压体; 以及焙烧步骤。
    • 5. 发明申请
    • MEMORY SYSTEM AND COMPUTER SYSTEM
    • 存储系统和计算机系统
    • US20100313101A1
    • 2010-12-09
    • US12697555
    • 2010-02-01
    • Shigeo KondoKiyomi NarukeNaoyuki Shigyo
    • Shigeo KondoKiyomi NarukeNaoyuki Shigyo
    • H03M13/05G06F11/10
    • G06F11/1044
    • A memory system includes: a memory chip group including n chips of a nonvolatile semiconductor memory dividedly managed for each of unit areas having predetermined sizes, an unit area of one chip among the n chips storing an error correction code for a group including unit areas in the other n−1 chips associated with the unit area, and the chip that stores the error correction code being different for each of positions of the unit areas; and an access-destination calculating unit that designates, when data in the unit areas is rewritten, the unit area in which the error correction code of data is stored as a writing destination of rewriting data, and designates an unit area in which data before rewriting is stored as a storage destination of a new error correction code.
    • 存储器系统包括:存储器芯片组,其包括对具有预定尺寸的每个单位区域分配管理的非易失性半导体存储器的n个芯片,n个芯片中的一个芯片的单位面积存储用于包括单元区域的组的纠错码 与单位区域相关联的其他n-1个码片,并且存储错误校正码的码片对于单位区域的每个位置是不同的; 以及访问目的地计算单元,当单元区域中的数据被重写时,指定存储数据的纠错码的单位区域作为重写数据的写入目的地,并且指定重写前的数据的单位区域 被存储为新的纠错码的存储目的地。
    • 8. 发明授权
    • Electrochromic display device
    • 电致变色显示装置
    • US4331385A
    • 1982-05-25
    • US139122
    • 1980-04-10
    • Shigeo KondoNobuyuki Yoshiike
    • Shigeo KondoNobuyuki Yoshiike
    • G02F1/15G02F1/17
    • G02F1/1523G02F2001/1517
    • The invention relates to an electrochromic display device (referred to as ECD hereinafter) which is stably workable for a long period and shows a long cycle life. The ECD of the invention has its feature in using a counter electrode which comprises a collector composed of a valve effect having metal such as titanium, tantalum, aluminum and the like, the metal being hardly soluble in an electrolyte, and an active material on the said collector and electrically connected to the said collector, the active material being selected from reductant of tungsten oxide, iron berlinate and the like and being able to carry out a reversible oxidation reaction at a lower potential than that at which the collector carries out an oxidation reaction.
    • 本发明涉及一种电致变色显示装置(以下称为ECD),该电致变色显示装置可长时间稳定地工作并且循环寿命长。 本发明的ECD的特征在于使用对电极,其包括由具有金属如钛,钽,铝等的阀效应的集电体组成的金属,金属难溶于电解质,以及活性材料 所述收集器并与所述集电器电连接,所述活性材料选自氧化钨,铁矾土等的还原剂,并且能够以比所述集电体进行氧化的电位低的电位进行可逆氧化反应 反应。
    • 10. 发明授权
    • Memory system and computer system
    • 内存系统和计算机系统
    • US08533549B2
    • 2013-09-10
    • US12697555
    • 2010-02-01
    • Shigeo KondoKiyomi NarukeNaoyuki Shigyo
    • Shigeo KondoKiyomi NarukeNaoyuki Shigyo
    • G10R31/28
    • G06F11/1044
    • A memory system includes: a memory chip group including n chips of a nonvolatile semiconductor memory dividedly managed for each of unit areas having predetermined sizes, an unit area of one chip among the n chips storing an error correction code for a group including unit areas in the other n−1 chips associated with the unit area, and the chip that stores the error correction code being different for each of positions of the unit areas; and an access-destination calculating unit that designates, when data in the unit areas is rewritten, the unit area in which the error correction code of data is stored as a writing destination of rewriting data, and designates an unit area in which data before rewriting is stored as a storage destination of a new error correction code.
    • 存储器系统包括:存储器芯片组,其包括对具有预定尺寸的每个单位区域分配管理的非易失性半导体存储器的n个芯片,n个芯片中的一个芯片的单位面积存储用于包括单元区域的组的纠错码 与单位区域相关联的其他n-1个码片,并且存储错误校正码的码片对于单位区域的每个位置是不同的; 以及访问目的地计算单元,当单元区域中的数据被重写时,指定存储数据的纠错码的单位区域作为重写数据的写入目的地,并且指定重写前的数据的单位区域 被存储为新的纠错码的存储目的地。