会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 84. 发明申请
    • LIQUID EJECTION APPARATUS
    • 液体喷射装置
    • US20080309732A1
    • 2008-12-18
    • US11864680
    • 2007-09-28
    • Naoto IwaoKoji Kawai
    • Naoto IwaoKoji Kawai
    • B41J2/05
    • B41J2/155B41J2002/14459B41J2202/20
    • A liquid ejection apparatus having liquid ejection heads extending in a particular direction, and each liquid ejection head has an ejection surface with ejection ports configured to eject a liquid, a supply port to which liquid is supplied, and a flow path formed in the liquid ejection bead. The flow path is configured to place the ejection ports and the supply port in fluid communication. The liquid ejection heads are positioned at predetermined intervals in a direction perpendicular to the particular direction, and for each liquid ejection head, the supply port of one liquid ejection head is in a different location in the particular direction, than all of the liquid ejection heads adjacent to the one liquid ejection head in the perpendicular direction.
    • 具有沿特定方向延伸的液体喷射头的液体喷射装置,并且每个液体喷射头具有喷射表面,喷射口被配置为喷射液体,供应液体的供应口和形成在液体喷射中的流路 珠子。 流动路径被配置成使排出口和供给口流体连通。 液体喷射头沿垂直于特定方向的方向以预定间隔定位,并且对于每个液体喷射头,一个液体喷射头的供应口在特定方向上处于与所有液体喷射头不同的位置 在垂直方向上与一个液体喷射头相邻。
    • 86. 发明授权
    • Indirectly heated electrode for gas discharge tube, gas discharge tube using said indirectly heated electrode, and lighting device for said gas discharge tube
    • 用于气体放电管的间接加热电极,使用所述间接加热电极的气体放电管,以及用于所述气体放电管的照明装置
    • US07429826B2
    • 2008-09-30
    • US11222934
    • 2005-09-12
    • Koji Kawai
    • Koji Kawai
    • H01J17/02
    • H01J1/20H01J1/24H01J17/063H01J61/06
    • An indirectly heated cathode C1 comprises a heater 1, a double coil 2, a mesh member 3, and a metal oxide 10. An electrical insulating layer 4 is formed on the surface of heater 1. Heater 1 is inserted into and positioned at the inner side of double coil 2. Mesh member 3 is disposed along the length direction of double coil 2 at the outer side of double coil 2. Double coil 2 is grounded by being connected to the ground terminal of heater 1 via a lead rod 7. Metal oxide 10 is held by double coil 2 and disposed to be in contact with mesh member 3. Metal oxide 10 and mesh member 3 are exposed to the outer side of indirectly heated electrode C1 so that the surface of metal oxide 10 and the surface of mesh member 3 make up a discharge surface and mesh member 3 is in contact with the surface part of metal oxide 10.
    • 间接加热的阴极C 1包括加热器1,双线圈2,网状构件3和金属氧化物10.在加热器1的表面上形成电绝缘层4.加热器1插入并定位在 网状构件3沿双线圈2的长度方向配置在双线圈2的外侧。双线圈2通过引线杆7与加热器1的接地端子接地。 金属氧化物10由双线圈2保持并与网状构件3接触。金属氧化物10和网状构件3暴露于间接加热的电极C 1的外侧,使得金属氧化物10的表面和表面 网状构件3构成排出面,网状构件3与金属氧化物10的表面部分接触。
    • 89. 发明授权
    • Indirectly heated electrode for gas discharge tube, gas discharge tube with this, and its operating device
    • 气体放电管间接加热电极,气体放电管及其操作装置
    • US07193367B2
    • 2007-03-20
    • US10450110
    • 2001-12-13
    • Koji Kawai
    • Koji Kawai
    • H01J17/02H01K1/04
    • H01J1/20H01J1/24H01J17/063H01J61/06
    • An indirectly heated cathode C1 comprises a heater 1, a double coil 2, a mesh member 3, and a metal oxide 10. An electrical insulating layer 4 is formed on the surface of heater 1. Heater 1 is inserted into and positioned at the inner side of double coil 2. Mesh member 3 is disposed along the length direction of double coil 2 at the outer side of double coil 2. Double coil 2 is grounded by being connected to the ground terminal of heater 1 via a lead rod 7. Metal oxide 10 is held by double coil 2 and disposed to be in contact with mesh member 3. Metal oxide 10 and mesh member 3 are exposed to the outer side of indirectly heated electrode C1 so that the surface of metal oxide 10 and the surface of mesh member 3 make up a discharge surface and mesh member 3 is in contact with the surface part of metal oxide 10.
    • 间接加热的阴极C 1包括加热器1,双线圈2,网状构件3和金属氧化物10。 在加热器1的表面上形成电绝缘层4.加热器1插入并定位在双线圈2的内侧。网状构件3沿着双线圈2的长度方向设置在双线圈的外侧 双线圈2通过引线杆7连接到加热器1的接地端子而接地。金属氧化物10由双线圈2保持并设置成与网状部件3接触。金属氧化物10和网状部件3 暴露于间接加热电极C 1的外侧,金属氧化物10的表面和网状部件3的表面构成放电面,网状部件3与金属氧化物10的表面部分接触。