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    • 41. 发明授权
    • Empty bobbin supply device
    • 空筒管供应装置
    • US3939634A
    • 1976-02-24
    • US430513
    • 1974-01-03
    • Toshio YoshizawaYasuo YamadaToshinori TaniguchiTatsuo KoseKazuo OhchiKiyokazu Hori
    • Toshio YoshizawaYasuo YamadaToshinori TaniguchiTatsuo KoseKazuo OhchiKiyokazu Hori
    • B65H67/06D01H9/10
    • B65H67/067B65H2701/31
    • An empty bobbin supply device for use in a doffing machine which travels in front of spinning units and is adapted for doffing a cheese and donning an empty bobbin in place thereof. This empty bobbin supply device has a reserve box, a reserve conveyor and a horizontal transfer conveyor, which are all positioned substantially in a vertical direction. An empty bobbin comes downwardly by gravity from the reserve box and is received between transfer plates of the reserve conveyor. The bobbin is then transferred downwardly by the circulating reserve conveyor, and in the absence of a bobbin on the horizontal transfer conveyor, the bobbin is delivered therefrom, while when a bobbin is present on the transfer conveyor, the bobbin remains on the reserve conveyor. The terminal of the horizontal transfer conveyor serves as a stand-by position for an empty bobbin in the doffing portion.
    • 一种用于落纱机的空筒管供给装置,其在纺纱单元前方行进,适用于将干酪脱落并将空筒管装入其中。 该空筒管供给装置具有大体上沿垂直方向定位的储备箱,储存输送机和水平传送输送机。 一个空的筒管通过重力从储备箱中向下推动并被接收在备用输送机的转印板之间。 筒管然后通过循环储备输送机向下传送,而在水平传送输送机上没有筒管的情况下,筒管由其传送,而当转筒输送机上存在筒管时,筒管保留在备用输送机上。 水平传送输送机的端子用作落纱部分中的空筒管的待机位置。
    • 42. 发明申请
    • EXHAUST GAS PURIFYING DEVICE
    • 排气净化装置
    • US20110126528A1
    • 2011-06-02
    • US13057116
    • 2009-07-31
    • Yasuo YamadaKei KurokiNoritaka Sekiya
    • Yasuo YamadaKei KurokiNoritaka Sekiya
    • F01N3/10
    • F01N3/10B01D53/9468B01D53/9472B01D2255/1021B01D2255/1023B01D2255/1025B01D2255/204B01D2255/9025B01D2255/9032B01J23/58B01J23/63B01J37/0244F01N3/28F01N3/2828F01N3/2892F01N13/0097F01N2370/02F01N2410/00F01N2510/06F01N2510/0682F01N2510/0684
    • An exhaust gas purifying device having sufficient exhaust gas purifying performance and using a reduced amount of noble metal. An exhaust gas purifying device (10) is provided with an exhaust manifold (30) having a collecting section to which all branch pipes join, and also with a catalytic converter (40) provided directly downstream of the exhaust manifold (30). The catalytic converter (40) has an upstream catalyst (43) housed on the upstream side and also has a downstream catalyst (45) housed on the downstream of the upstream catalyst (43). The upstream catalyst (43) includes a carrier, an upstream first layer located on the carrier and containing Pd, an upstream second layer located on the upstream first layer and containing Rh, and an upstream third layer located on the upstream second layer and containing Pd. The downstream catalyst (45) includes a carrier, a downstream first layer located on the carrier and containing Pd, and a downstream second layer located on the downstream first layer and containing Pt and Rh. The collecting section connects to the catalytic converter (40) after passing, in order from the upstream side, through a flow regulating path (35) and a neck section (33) which is provided in the flow regulating path (35). The flow regulating path (35) has a predetermined length and a width which is gradually reduced to the downstream side.
    • 具有足够的排气净化性能和使用少量贵金属的废气净化装置。 排气净化装置(10)具有排气歧管(30),排气歧管(30)具有所有分支管连接的收集部分,以及设置在排气歧管(30)的正下方的催化转化器(40)。 催化转化器(40)具有容纳在上游侧的上游催化剂(43),并且还具有容纳在上游催化剂(43)的下游的下游催化剂​​(45)。 上游催化剂(43)包括载体,位于载体上并含有Pd的上游第一层,位于上游第一层上并含有Rh的上游第二层和位于上游第二层上的含有Pd 。 下游催化剂​​(45)包括载体,位于载体上并含有Pd的下游第一层和位于下游第一层上并含有Pt和Rh的下游第二层。 收集部分在从上游侧依次通过设置在流量调节通道(35)中的流量调节通道(35)和颈部部分(33)之后连接到催化转化器(40)。 流量调节路径(35)具有预定的长度和逐渐减小到下游侧的宽度。
    • 44. 发明申请
    • Driving circuit of flat display device, and flat display device
    • 平板显示装置的驱动电路和平板显示装置
    • US20050231409A1
    • 2005-10-20
    • US11091434
    • 2005-03-29
    • Masanori YamaguchiYasuo Yamada
    • Masanori YamaguchiYasuo Yamada
    • G09G3/36G09G3/20G09G3/30G09G3/32H03M1/06H03M1/70H05B33/08
    • G09G3/3696G09G3/3208G09G2310/027G09G2310/0297G09G2320/0238G09G2320/0276G09G2320/0666G09G2320/0673
    • The present invention provides a driving circuit of a flat display device, and a flat display device, and is for example applicable to a display device using organic EL (Electro Luminescence) elements. The present invention makes it possible to correct light emission characteristics variously, effectively avoid significant degradation in image quality due to noise, and further simplify an adjustment operation by generating original reference voltages by selecting a plurality of candidate voltages formed by voltage divider circuits according to original reference voltage setting data, generating reference voltages for digital-to-analog conversion from the original reference voltages, generating the reference voltages at both ends by dividing a reference voltage generating voltage by the voltage divider circuit, and generating the other original reference voltages with voltage divider circuits connected in series with each other and the reference voltages at both ends used as a reference.
    • 本发明提供一种平面显示装置的驱动电路和平面显示装置,例如可应用于使用有机EL(电致发光)元件的显示装置。 本发明使得可以各种校正发光特性,有效地避免了由于噪声引起的图像质量的显着劣化,并且通过根据原稿选择由分压器电路形成的多个候选电压来产生原始参考电压来进一步简化调整操作 参考电压设置数据,从原始参考电压产生用于数模转换的参考电压,通过用分压器电路分压基准电压产生电压并在电压两端产生其它原始参考电压,产生两端的参考电压 分压电路彼此串联连接,两端的参考电压用作基准。
    • 46. 发明授权
    • Method of adjusting characteristics of dielectric filter
    • 调节介质滤波器特性的方法
    • US06694601B2
    • 2004-02-24
    • US09590625
    • 2000-06-08
    • Haruo MatsumotoYasuo YamadaYukihiro KitaichiTadahiro YoritaHideyuki KatoTatsuya TsujiguchiHisashi MoriHitoshi Tada
    • Haruo MatsumotoYasuo YamadaYukihiro KitaichiTadahiro YoritaHideyuki KatoTatsuya TsujiguchiHisashi MoriHitoshi Tada
    • H01P1205
    • H01P1/2056Y10T29/49016
    • A method of adjusting characteristics of a dielectric filter including the following steps: forming a dielectric filter having a dielectric body, the dielectric body having an outer surface; forming an external conductor on the outer surface of the dielectric body; and forming at least one hole extending through the dielectric body, the at least one hole having a respective inner surface, and a respective internal conductor and a respective non-conductive portion at the inner surface; the outer surface of the dielectric body comprising first and second end surfaces and a side surface extending between the first and second end surfaces; the at least one hole extending through the dielectric body between the first and second end surfaces; the respective inner conductor being formed as a respective pair of internal conductors conductively connected to the external conductor at respective ends of the at least one hole, the respective non-conductive portion at the inner surface of the at least one hole being spaced from both end surfaces, thereby separating the corresponding pair of internal conductors and defining a respective capacitance between the corresponding pair of internal conductors; and a predetermined portion of the outer surface of the dielectric body being formed with a shape such that a first portion of the external conductor at the predetermined portion of the outer surface is closer to at least one of the internal conductors in the at least one hole as compared with a second portion of the external conductor at a portion of the outer surface of the dielectric body other than the predetermined portion; the method further comprising the steps of: initially forming the respective inner conductor over an entire length of the inner surface of the corresponding hole; and thereafter grinding off a portion of the respective inner conductor with a grinding tool in order to form the non-conductive portion.
    • 一种调整介质滤波器的特性的方法,包括以下步骤:形成具有电介质体的介电滤波器,所述电介质体具有外表面; 在绝缘体的外表面上形成外部导体; 以及形成延伸穿过所述电介质体的至少一个孔,所述至少一个孔具有相应的内表面,以及相应的内部导体和在所述内表面处的相应的非导电部分; 电介质体的外表面包括第一和第二端面以及在第一和第二端面之间延伸的侧表面; 所述至少一个孔延伸穿过所述介电体在所述第一和第二端面之间; 相应的内部导体形成为在所述至少一个孔的相应端部处导电地连接到外部导体的相应的一对内部导体,所述至少一个孔的内表面处的相应的非导电部分与两个端部间隔开 从而分离相应的一对内部导体并且在相应的一对内部导体之间限定相应的电容; 并且所述电介质体的外表面的预定部分形成为使得所述外表面的所述预定部分处的所述外部导体的所述第一部分更靠近所述至少一个孔中的至少一个内部导体 与外部导体的除了预定部分之外的绝缘体外表面的一部分的第二部分相比; 该方法还包括以下步骤:在相应孔的内表面的整个长度上初始形成相应的内部导体; 然后用研磨工具研磨各个内部导体的一部分,以便形成非导电部分。
    • 49. 发明授权
    • Triazole compounds and pest control agent
    • 三唑化合物和害虫防治剂
    • US5892048A
    • 1999-04-06
    • US605107
    • 1996-05-06
    • Takashi KishimotoYasuo YamadaTakao IwasaMichihiko MatsudaRenpei Hatano
    • Takashi KishimotoYasuo YamadaTakao IwasaMichihiko MatsudaRenpei Hatano
    • A01N43/653A01N47/24C07D249/08C07D401/12
    • C07D249/08A01N43/653A01N47/24C07D401/12
    • This Invention concerns a triazole compound represented by the formula �I! or a salt thereof and a method for the production thereof. ##STR1## �wherein X.sub.1 stands for halogen atoms, C.sub.1 -C.sub.6 alkyl groups, C.sub.1 -C.sub.6 alkoxy groups, C.sub.1 -C.sub.6 haloalkyl groups, etc., X.sub.2 stands for halogen atoms, C.sub.1 -C.sub.6 alkyl groups, or C.sub.1 -C.sub.6 alkoxy groups, Y stands for halogen atoms, C.sub.1 -C.sub.12 alkyl groups, C.sub.1 -C.sub.6 haloalkyl groups, phenyl group optionally containing a substituent, etc.R.sub.1 stands for C.sub.1 -C.sub.6 alkyl groups, C.sub.2 -C.sub.6 alkenyl groups, C.sub.2 -C.sub.6 alkinyl groups, etc. Z stands for --CR.sub.2 R.sub.3 --, --CH.sub.2 D--, or --CH.dbd.CH--, R.sub.2 and R.sub.3 independently stand for hydrogen atom, halogen atoms, hydroxy group, etc., D stands for CH.sub.2, CO, O, or S, m stands for an integer in the range of 0-4, and n stands for an integer from 0 to 5!.The compounds in accordance with this invention manifest outstanding effects for killing such harmful organisms as harmful insects and mites and are useful as pesticides for agriculture and horticulture.
    • PCT No.PCT / JP95 / 01314 Sec。 371日期:1996年5月6日 102(e)日期1996年5月6日PCT提交1995年6月30日PCT公布。 第WO96 / 01257号公报 日本1996年1月18日本发明涉及由式[I]表示的三唑化合物或其盐及其制备方法。 [其中X1表示卤素原子,C1-C6烷基,C1-C6烷氧基,C1-C6卤代烷基等,X2表示卤素原子,C1-C6烷基, 或C1-C6烷氧基,Y代表卤原子,C1-C12烷基,C1-C6卤代烷基,任选含有取代基的苯基等。R1代表C1-C6烷基,C2-C6烯基,C2 -C6炔基等,Z代表-CR2R3-,-CH2D-或-CH = CH-,R2和R3独立代表氢原子,卤素原子,羟基等,D代表CH2,CO, O或S,m表示0-4的整数,n表示0〜5的整数。 根据本发明的化合物对杀死有害昆虫和螨虫等有害生物具有突出的作用,可用作农业和园艺农药。