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    • 11. 发明授权
    • Manual-reset thermostat
    • 手动复位恒温器
    • US07218200B2
    • 2007-05-15
    • US10967522
    • 2004-10-18
    • Toshiharu HayashiMasato Minamiura
    • Toshiharu HayashiMasato Minamiura
    • H01H37/54H01H37/70
    • H01H37/5409
    • A movable operating member 5 is swingably borne by the base 1, and its distal end is moved upward by allowing its proximal end 5b to be pressed downward. The movable contact 3 is separated from the stationary contact 2 upward by moving the distal end of the movable operating member 5 upward. The proximal end of the movable operating member 5 is pressed downward by a guide pin 6 in response to a reverse action of a bimetal 7. When a reset shaft 8 is pushed upward, the movable contact 3 is pressed upward, and the guide pin 6 is pressed upward so that the bimetal 7 can be returned to an initial state.
    • 可移动操作构件5由基座1可摆动地承载,并且通过允许其近端5b向下压,其远端向上移动。 通过向上移动可移动操作构件5的远端,可动触头3向上与固定触点2分离。 响应于双金属片7的反作用,可动操作构件5的近端被引导销6向下压。 当向上推动复位轴8时,可动触头3被向上按压,并且向上按压引导销6,使得双金属片7能够返回初始状态。
    • 12. 发明申请
    • Manual-reset thermostat
    • 手动复位恒温器
    • US20060082432A1
    • 2006-04-20
    • US10967522
    • 2004-10-18
    • Toshiharu HayashiMasato Minamiura
    • Toshiharu HayashiMasato Minamiura
    • H01H37/52
    • H01H37/5409
    • A movable operating member 5 is swingably borne by the base 1, and its distal end is moved upward by allowing its proximal end 5b to be pressed downward. The movable contact 3 is separated from the stationary contact 2 upward by moving the distal end of the movable operating member 5 upward. The proximal end of the movable operating member 5 is pressed downward by a guide pin 6 in response to a reverse action of a bimetal 7. When a reset shaft 8 is pushed upward, the movable contact 3 is pressed upward, and the guide pin 6 is pressed upward so that the bimetal 7 can be returned to an initial state.
    • 可移动操作构件5由基座1可摆动地承载,并且通过允许其近端5b向下压,其远端向上移动。 通过向上移动可移动操作构件5的远端,可动触头3向上与固定触点2分离。 响应于双金属片7的反作用,可动操作构件5的近端被引导销6向下压。 当向上推动复位轴8时,可动触头3被向上按压,并且向上按压引导销6,使得双金属片7能够返回初始状态。
    • 13. 发明授权
    • Fine metal particle-dispersion solution and conductive film using the same
    • 精细金属颗粒分散液和使用其的导电膜
    • US06451433B1
    • 2002-09-17
    • US09395353
    • 1999-09-14
    • Tomoko OkaToshiharu HayashiDaisuke Shibuta
    • Tomoko OkaToshiharu HayashiDaisuke Shibuta
    • B32B900
    • H01B1/22H01B1/02
    • A fine metal particle-dispersion solution and a method for the solution are disclosed which enables to form a transparent conductive film having an uniform distribution of at least two kinds of metals and is produced by mixing an aqueous solution (A) of at lest one metal salt, the metal comprising one or more metals selected from the group consisting of Au, Pt, Ir, Pd, Ag, Rh, Ru, Os, Re and Cu and an aqueous solution (B) including citrate ion and ferrous ion under an atmosphere having substantially no oxygen to produce fine metal particles. A multi-layers conductive film having a low reflectivity, a low resistance and an excellent durability is available by using the dispersion solution of the present invention comprising Ag—Pd fine particles.
    • 公开了一种细金属颗粒分散溶液和溶液的方法,其能够形成具有至少两种金属均匀分布的透明导电膜,并且通过将至少一种金属的水溶液(A) 盐,所述金属包含选自Au,Pt,Ir,Pd,Ag,Rh,Ru,Os,Re和Cu中的一种或多种金属和在气氛下包含柠檬酸根离子和亚铁离子的水溶液(B) 基本上没有氧气以产生细小的金属颗粒。 通过使用包含Ag-Pd细颗粒的本发明的分散溶液,可以获得具有低反射率,低电阻和优异耐久性的多层导电膜。