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    • 73. 发明授权
    • Cleaning structure for out-of-liquid conveying portion
    • 液体输送部分的清洁结构
    • US5606394A
    • 1997-02-25
    • US648444
    • 1996-05-15
    • Kouki NomuraHiroyuki Satoh
    • Kouki NomuraHiroyuki Satoh
    • G03B27/32G03D3/02G03D3/13G03B13/08G03B27/52G03B29/00
    • G03D3/13G03B27/32G03D3/02G03D3/132
    • A cleaning structure for an out-of-liquid conveying portion whose object is to facilitate detachment and attachment of a cleaning nozzle unit from and to a crossover rack, and to hold cleaning nozzles in predetermined positions suitable for the out-of-liquid conveying portion in a state in which the cleaning nozzle unit has been mounted to the crossover rack. In order to mount the cleaning nozzle unit to the crossover rack, the cleaning nozzles are made to penetrate through through-holes defined in one of side walls of the crossover rack. In this state, an interlocking member is elastically flexed so as to be inserted into an interlocking hole. After completion of its insertion of the interlocking member, a hook is brought into engagement with an upper edge of the interlocking hole by elastic recovery of the interlocking member. As a result, a case can be mounted to the side wall.
    • 一种用于液体输送部分的清洁结构,其目的是便于将清洁喷嘴单元从交叉架排出和附接,并将清洁喷嘴保持在适合于液体外输送部分的预定位置 在清洁喷嘴单元已经安装到交叉架上的状态下。 为了将清洁喷嘴单元安装到交叉架上,使得清洁喷嘴穿过限定在交叉架的侧壁之一中的通孔。 在这种状态下,互锁构件被弹性弯曲以插入到互锁孔中。 在完成互锁构件的插入之后,通过互锁构件的弹性回复,钩与互锁孔的上边缘接合。 结果,可以将壳体安装在侧壁上。
    • 74. 发明授权
    • Cleaning structure for out-of-liquid conveying portion
    • 液体输送部分的清洁结构
    • US5555072A
    • 1996-09-10
    • US483270
    • 1995-06-07
    • Kouki NomuraHiroyuki Satoh
    • Kouki NomuraHiroyuki Satoh
    • G03B27/32G03D3/02G03D3/13G03B27/52G03D3/08
    • G03D3/13G03B27/32G03D3/02G03D3/132
    • A cleaning structure for an out-of-liquid conveying portion whose object is to facilitate detachment and attachment of a cleaning nozzle unit from and to a crossover rack, and to hold cleaning nozzles in predetermined positions suitable for the out-of-liquid conveying portion in a state in which the cleaning nozzle unit has been mounted to the crossover rack. In order to mount the cleaning nozzle unit to tile crossover rack, the cleaning nozzles are made to penetrate through through-holes defined in one of side walls of the crossover rack. In this state, an interlocking member is elastically flexed so as to be inserted into an interlocking hole. After completion of its insertion of the interlocking member, a hook is brought into engagement with an upper edge of the interlocking hole by elastic recovery of the interlocking member. As a result, a case can be mounted to the side wall.
    • 一种用于液体输送部分的清洁结构,其目的是便于将清洁喷嘴单元从交叉架排出和附接,并将清洁喷嘴保持在适合于液体外输送部分的预定位置 在清洁喷嘴单元已经安装到交叉架上的状态下。 为了将清洁喷嘴单元安装到瓦片交叉架上,使清洁喷嘴穿过限定在交叉架的侧壁之一中的通孔。 在这种状态下,互锁构件被弹性弯曲以插入到互锁孔中。 在完成互锁构件的插入之后,通过互锁构件的弹性回复,钩与互锁孔的上边缘接合。 结果,可以将壳体安装在侧壁上。
    • 75. 发明授权
    • Boot for universal joint
    • 万向节引导
    • US07955179B2
    • 2011-06-07
    • US12084041
    • 2006-10-02
    • Hiroyuki SatohKenta YamazakiMinoru Ishijima
    • Hiroyuki SatohKenta YamazakiMinoru Ishijima
    • F16D3/84
    • F16D3/845F16J3/041
    • To make a bellows section of a boot to be flexibly and repeatedly deformable without deterioration in durability, to thereby reduce rotational resistance when a joint angle is large, the boot has the bellows portion where three or more circumferentially extending crest portions and root portions therebetween are alternately formed. A large-diameter attaching portion is formed at one end of the bellows portion. A small-diameter attaching portion is formed at the other end. A rising wall closest to the large-diameter attaching portion and a rising wall closest to the small-diameter attaching portion have smaller wall thickness than other portions of the bellows section. A ratio (t1/t2) of the thickness (t1) of the rising walls to the thickness (t2) of the other portions of the bellows portion is set to 0.6≦t1/t2
    • 为了使靴子的波纹管部分能够弹性地反复变形而不会劣化耐久性,从而在关节角度较大时降低旋转阻力,靴子具有波纹部分,其中三个或更多个周向延伸的顶部和根部在它们之间 交替形成。 在波纹管部的一端形成有大径的安装部。 在另一端形成有小直径的安装部。 最靠近大直径安装部分的上升壁和最靠近小直径连接部分的上升壁具有比波纹管部分的其它部分更小的壁厚。 上升壁的厚度(t1)与波纹管部分的其他部分的厚度(t2)的比(t1 / t2)设定为0.6&lt; nlE; t1 / t2 <1.0。
    • 77. 发明授权
    • Constant current source apparatus
    • 恒流源装置
    • US07952342B2
    • 2011-05-31
    • US11873425
    • 2007-10-17
    • Hiroyuki Satoh
    • Hiroyuki Satoh
    • G05F1/46G05F1/56G05F1/563
    • G05F3/26
    • A constant current source apparatus is provided that includes a complementary switching section that selectively outputs a reference voltage or a driving voltage according to a control signal and a constant current source circuit that causes a constant current determined by the reference voltage to flow to a load in a case where the reference voltage is received from the complementary switching section and cuts off the current flowing to the load in a case where the driving voltage is received from the complementary switching section. The complementary switching section includes a first FET in which one of either a source or a drain is connected to the driving voltage, the other source or drain is connected to an output end of the complementary switching section, and a gate receives the voltage according to the control signal and a second FET that switches to an opposite polarity of the first FET in which one of either a source or a drain is connected to the reference voltage, the other source or drain is connected to the output end of the complementary switching section, and a gate receives the voltage according to the control signal.
    • 提供了一种恒流源装置,其包括互补开关部分,其根据控制信号和恒流源电路有选择地输出参考电压或驱动电压,恒流源电路使得由参考电压确定的恒定电流流向负载 在从互补开关部接收驱动电压的情况下,从互补开关部接收基准电压并切断流向负载的电流的情况。 互补开关部分包括其中源极或漏极之一连接到驱动电压的第一FET,另一个源极或漏极连接到互补开关部分的输出端,栅极接收根据 所述控制信号和第二FET切换到所述第一FET的相反极性,所述第一FET的源极或漏极中的一个连接到所述参考电压,所述另一个源极或漏极连接到所述互补开关部分的输出端 并且门根据控制信号接收电压。
    • 79. 发明申请
    • Boot for Universal Joint
    • 万向节引导
    • US20090253522A1
    • 2009-10-08
    • US12083544
    • 2006-10-02
    • Hiroyuki SatohKenta YamazakiMinoru Ishijima
    • Hiroyuki SatohKenta YamazakiMinoru Ishijima
    • F16D3/84
    • F16D3/845
    • To prevent inverting of a mountain portion (111) of a bellows member (11) when a rotating shaft (23) is angularly displaced, the boot comprising the bellows member (11) with large and small diameter mounting members (12, 13) is structured such that a first mountain portion (111) nearest the large diameter mounting member (12) raises from the large diameter mounting member (12), a length (L1) between a top (111a) of the first mountain portion (111) and a bottom (111b) at the large diameter mounting member (12) side is not more than a length (L2) between the inner peripheral position of the bottom (111b) and an end portion (21b) of an outer ring (21) at the rotating shaft (23) side, and a first valley portion (112) adjacent to the first mountain portion (111) is positioned at the rotating shaft (23) side from the end part (21b).
    • 为了防止当旋转轴(23)有角度位移时波纹管构件(11)的山部(111)的翻转,包括具有大直径和小直径安装构件(12,13)的波纹管构件(11)的护罩是 构造成使得最接近大直径安装构件(12)的第一山部(111)从大直径安装构件(12)上升,在第一山部(111)的顶部(111a)和 大直径安装构件(12)侧的底部(111b)不大于底部(111b)的内周位置与外圈(21)的端部(21b)之间的长度(L2) 旋转轴(23)侧和与第一山部(111)相邻的第一谷部(112)位于从端部(21b)的旋转轴(23)侧。