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    • 1. 发明申请
    • Photomultiplier
    • 光电倍增管
    • US20080087831A1
    • 2008-04-17
    • US11594244
    • 2006-11-08
    • Takayuki OhmuraSuenori KimuraMasuo ItoTeruhiko Yamaguchi
    • Takayuki OhmuraSuenori KimuraMasuo ItoTeruhiko Yamaguchi
    • H01J43/00
    • H01J43/28
    • The present invention relates to a photomultiplier that realizes significant improvement of response time properties with a structure enabling mass production. The photomultiplier comprises a sealed container, and the sealed container includes a hollow body section, extending along a tube axis, and a faceplate. The faceplate has a light incidence surface and a light emission surface on which a photocathode is formed. In particular, the light emission surface is constituted by a flat region, and a curved-surface processed region that is positioned at a periphery of the flat region and that includes edges of the light emission surface. A surface shape of the peripheral region of the light emission surface of the faceplate is thus intentionally changed in order to adjust the angles of emission of photoelectrons from the photocathode positioned at the peripheral region. Thus, the spread of transit times of photoelectrons propagating from the photocathode to a first dynode is thus reduced effectively and made not to depend on the emission positions of the photoelectrons.
    • 光电倍增管技术领域本发明涉及一种光电倍增管,其可实现响应时间特性的显着改善,并能实现批量生产。 光电倍增管包括密封容器,密封容器包括沿管轴延伸的中空主体部分和面板。 面板具有光入射面和形成有光电阴极的发光面。 特别地,光发射表面由平坦区域和位于平坦区域的周边并且包括发光表面的边缘的曲面处理区域构成。 因此,为了调整位于周边区域的光电面的光电子的发射角度,有意地改变面板的发光面的周边区域的表面形状。 因此,有效地降低了从光电阴极传播到第一倍增电极的光电子的传输时间的扩散,并且不依赖于光电子的发射位置。
    • 2. 发明申请
    • Multi-anode type photomultiplier tube
    • 多阳极型光电倍增管
    • US20070182325A1
    • 2007-08-09
    • US10807292
    • 2004-03-24
    • Suenori KimuraTakayuki OhmuraTeruhiko YamaguchiMasuo Ito
    • Suenori KimuraTakayuki OhmuraTeruhiko YamaguchiMasuo Ito
    • H01J43/18
    • H01J43/18
    • A glass container has a faceplate, a side tube, and a bottom. A photocathode is formed on the inner side of the faceplate. The glass container includes a partitioning wall, a shield electrode, a first dynode, a second dynode, a dynode array, and an anode. The partitioning wall has a cross shape to divide an electron focusing space into four space segments. The shield electrode is provided to shield the second dynode from the photocathode. A Venetian blind type of dynodes is provided as the dynode array. The first dynode, the second dynode, the dynode array, and the anode are maintained at the potential which is higher than that of the photocathode. Electrons emitted from the photocathode in response to incident light thereon efficiently impinge on the dynodes regardless of where the electrons are emitted. The electrons are multiplied and then detected by the anode.
    • 玻璃容器具有面板,侧管和底部。 在面板的内侧形成有光电阴极。 玻璃容器包括分隔壁,屏蔽电极,第一倍增电极,第二倍增电极,倍增极阵列和阳极。 分隔壁具有十字形状,以将电子聚焦空间分成四个空间段。 屏蔽电极被设置为屏蔽第二倍增电极与光电阴极。 提供了威尼斯式的倍增电极作为倍增电极阵列。 第一倍增电极,第二倍增极,倍增极阵列和阳极保持在比光电阴极高的电位。 不管发射电子的位置如何,从光电阴极发出的响应于入射光的电子有效地撞击在倍增极上。 电子被乘以然后由阳极检测。
    • 3. 发明授权
    • Photomultiplier tube having focusing electrodes with apertures and screens
    • 光电倍增管,其具有带孔和屏幕的聚焦电极
    • US07064485B2
    • 2006-06-20
    • US10807334
    • 2004-03-24
    • Suenori KimuraTakayuki OhmuraTeruhiko YamaguchiMasuo Ito
    • Suenori KimuraTakayuki OhmuraTeruhiko YamaguchiMasuo Ito
    • H01J43/18H01J43/04
    • H01J43/06
    • A glass container has a faceplate, a side tube, and a bottom. A photocathode is formed on the inner side of the faceplate. The glass container includes a first dynode, a second dynode, a screen focusing electrode, a dynode array, and an anode. The screen focusing electrode consists of a first screen, a second screen, a flat plate, and an aperture. The first screen is provided on the first dynode side of the aperture and extends across the lower end of the first dynode towards the photocathode. The second screen is provided on the second dynode side of the aperture and extends across the lower end of the second dynode towards the photocathode. A Venetian blind type is provided as the dynode array. The first dynode, the second dynode, the dynode array, and the anode are maintained at the potential which is higher than that of the photocathode. Electrons emitted from the photocathode in response to incident light thereon efficiently impinge on the dynodes regardless of where the electrons are emitted. The electrons are multiplied and then detected by the anode.
    • 玻璃容器具有面板,侧管和底部。 在面板的内侧形成有光电阴极。 玻璃容器包括第一倍增电极,第二倍增极,屏幕聚焦电极,倍增极阵列和阳极。 屏幕聚焦电极由第一屏幕,第二屏幕,平板和光圈组成。 第一屏幕设置在孔的第一倍增极侧,并且延伸穿过第一倍增电极的下端朝向光电阴极。 第二屏幕设置在孔的第二倍增电极侧并且延伸穿过第二倍增电极的下端朝向光电阴极。 提供了一种威尼斯式盲目类型作为dynode阵列。 第一倍增电极,第二倍增极,倍增极阵列和阳极保持在比光电阴极高的电位。 不管发射电子的位置如何,从光电阴极发出的响应于入射光的电子有效地撞击在倍增极上。 电子被乘以然后由阳极检测。
    • 4. 发明申请
    • Photomultiplier tube
    • 光电倍增管
    • US20050212421A1
    • 2005-09-29
    • US10807334
    • 2004-03-24
    • Suenori KimuraTakayuki OhmuraTeruhiko YamaguchiMasuo Ito
    • Suenori KimuraTakayuki OhmuraTeruhiko YamaguchiMasuo Ito
    • H01J43/04
    • H01J43/06
    • A glass container has a faceplate, a side tube, and a bottom. A photocathode is formed on the inner side of the faceplate. The glass container includes a first dynode, a second dynode, a screen focusing electrode, a dynode array, and an anode. The screen focusing electrode consists of a first screen, a second screen, a flat plate, and an aperture. The first screen is provided on the first dynode side of the aperture and extends across the lower end of the first dynode towards the photocathode. The second screen is provided on the second dynode side of the aperture and extends across the lower end of the second dynode towards the photocathode. A Venetian blind type is provided as the dynode array. The first dynode, the second dynode, the dynode array, and the anode are maintained at the potential which is higher than that of the photocathode. Electrons emitted from the photocathode in response to incident light thereon efficiently impinge on the dynodes regardless of where the electrons are emitted. The electrons are multiplied and then detected by the anode.
    • 玻璃容器具有面板,侧管和底部。 在面板的内侧形成有光电阴极。 玻璃容器包括第一倍增电极,第二倍增极,屏幕聚焦电极,倍增极阵列和阳极。 屏幕聚焦电极由第一屏幕,第二屏幕,平板和光圈组成。 第一屏幕设置在孔的第一倍增极侧,并且延伸穿过第一倍增电极的下端朝向光电阴极。 第二屏幕设置在孔的第二倍增电极侧,并且延伸穿过第二倍增电极的下端朝向光电阴极。 提供了一种威尼斯式盲目类型作为dynode阵列。 第一倍增电极,第二倍增极,倍增极阵列和阳极保持在比光电阴极高的电位。 不管发射电子的位置如何,从光电阴极发出的响应于入射光的电子有效地撞击在倍增极上。 电子被乘以然后由阳极检测。
    • 5. 发明授权
    • Photomultiplier
    • 光电倍增管
    • US07821203B2
    • 2010-10-26
    • US11594244
    • 2006-11-08
    • Takayuki OhmuraSuenori KimuraMasuo ItoTeruhiko Yamaguchi
    • Takayuki OhmuraSuenori KimuraMasuo ItoTeruhiko Yamaguchi
    • H01J43/18
    • H01J43/28
    • The present invention relates to a photomultiplier that realizes significant improvement of response time properties with a structure enabling mass production. The photomultiplier comprises a sealed container, and the sealed container includes a hollow body section, extending along a tube axis, and a faceplate. The faceplate has a light incidence surface and a light emission surface on which a photocathode is formed. In particular, the light emission surface is constituted by a flat region, and a curved-surface processed region that is positioned at a periphery of the flat region and that includes edges of the light emission surface. A surface shape of the peripheral region of the light emission surface of the faceplate is thus intentionally changed in order to adjust the angles of emission of photoelectrons from the photocathode positioned at the peripheral region. Thus, the spread of transit times of photoelectrons propagating from the photocathode to a first dynode is thus reduced effectively and made not to depend on the emission positions of the photoelectrons.
    • 光电倍增管技术领域本发明涉及一种光电倍增管,其可实现响应时间特性的显着改善,并能实现批量生产。 光电倍增管包括密封容器,密封容器包括沿管轴延伸的中空主体部分和面板。 面板具有光入射面和形成有光电阴极的发光面。 特别地,光发射表面由平坦区域和位于平坦区域的周边并且包括发光表面的边缘的曲面处理区域构成。 因此,为了调整位于周边区域的光电面的光电子的发射角度,有意地改变面板的发光面的周边区域的表面形状。 因此,有效地降低了从光电阴极传播到第一倍增电极的光电子的传输时间的扩散,并且不依赖于光电子的发射位置。
    • 6. 发明授权
    • Multi-anode type photomultiplier tube
    • 多阳极型光电倍增管
    • US07489077B2
    • 2009-02-10
    • US10807292
    • 2004-03-24
    • Suenori KimuraTakayuki OhmuraTeruhiko YamaguchiMasuo Ito
    • Suenori KimuraTakayuki OhmuraTeruhiko YamaguchiMasuo Ito
    • H01J31/50H01J43/04G01T1/20
    • H01J43/18
    • A glass container has a faceplate, a side tube, and a bottom. A photocathode is formed on the inner side of the faceplate. The glass container includes a partitioning wall, a shield electrode, a first dynode, a second dynode, a dynode array, and an anode. The partitioning wall has a cross shape to divide an electron focusing space into four space segments. The shield electrode is provided to shield the second dynode from the photocathode. A Venetian blind type of dynodes is provided as the dynode array. The first dynode, the second dynode, the dynode array, and the anode are maintained at the potential which is higher than that of the photocathode. Electrons emitted from the photocathode in response to incident light thereon efficiently impinge on the dynodes regardless of where the electrons are emitted. The electrons are multiplied and then detected by the anode.
    • 玻璃容器具有面板,侧管和底部。 在面板的内侧形成有光电阴极。 玻璃容器包括分隔壁,屏蔽电极,第一倍增电极,第二倍增电极,倍增极阵列和阳极。 分隔壁具有十字形状,以将电子聚焦空间分成四个空间段。 屏蔽电极被设置为屏蔽第二倍增电极与光电阴极。 提供了威尼斯式的倍增电极作为倍增电极阵列。 第一倍增电极,第二倍增极,倍增极阵列和阳极保持在比光电阴极高的电位。 不管发射电子的位置如何,从光电阴极发出的响应于入射光的电子有效地撞击在倍增极上。 电子被乘以然后由阳极检测。
    • 10. 发明申请
    • Photomultiplier
    • 光电倍增管
    • US20080088232A1
    • 2008-04-17
    • US11594234
    • 2006-11-08
    • Takayuki OhmuraTeruhiko Yamaguchi
    • Takayuki OhmuraTeruhiko Yamaguchi
    • H01J43/18
    • H01J43/26H01J43/20H01J43/28
    • The present invention relates to a photomultiplier that realizes significant improvement of response time properties with a structure enabling mass production. In the sealed container, a photocathode, a dynode unit including at least one dynode set, and preferably dynode sets of two series, a focusing electrode unit arranged between the photocathode and the dynode unit are housed. The focusing electrode unit is set to the same potential as the second dynode arranged at a position where secondary electrons from said first dynode, which emits secondary electrons in response to incidence of photoelectrons, arrive, and is provided with partitioning plates partitioning the second dynode into two in a longitudinal direction of the second dynode.
    • 光电倍增管技术领域本发明涉及一种光电倍增管,其可实现响应时间特性的显着改善,并能实现批量生产。 在密封容器中,容纳有光电阴极,包括至少一个倍增电极组的倍增电极单元,优选两个串联的倍增电极组,布置在光电阴极和倍增极单元之间的聚焦电极单元。 聚焦电极单元被设置为与布置在响应于光电子的入射发射二次电子的来自所述第一倍增电极的二次电子到达的位置处的第二倍增电极相同的电位,并且设置有将第二倍增电极分隔成的分隔板 两个在第二倍增电极的纵向方向上。