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    • 2. 发明授权
    • Support member of vibrator
    • 支持振动器的成员
    • US08434363B2
    • 2013-05-07
    • US12840619
    • 2010-07-21
    • Seiji IshikawaTakayuki KikuchiShigeki Hayashi
    • Seiji IshikawaTakayuki KikuchiShigeki Hayashi
    • G01C19/56H01L41/00
    • G01C19/5621G01C19/5628G01C19/5783
    • The present invention provides, in a physical quantity measuring system using a vibrator, a supporting structure of a vibrator for reducing the zero-point temperature drift of detection signal. It is provided a supporting member for supporting a vibrator with bonding wires. The supporting member has a supporting plate with an opening formed therein to be positioned direct under a vibrator, and a bonding wire comprising a bonding end to be bonded with the vibrator, a fixed portion fixed on the supporting plate and a bent portion direct under the opening. A distance “L1” between the bent portion and a position where the bonding wire starts to protrude from the supporting plate is 10 percent or more of a distance “L2” of the bent portion and the bonding end.
    • 本发明在使用振动器的物理量测量系统中提供一种用于减小检测信号的零点温度漂移的振动器的支撑结构。 设置有用于用键合线支撑振动器的支撑构件。 支撑构件具有形成在其中的开口的支撑板,直接位于振动器的下方,并且接合线包括与振动器接合的接合端,固定在支撑板上的固定部分和直接在振动器下方的弯曲部分 开放 弯曲部和接合线从支撑板开始突出的位置之间的距离“L1”为弯曲部和接合端的距离“L2”的10%以上。
    • 3. 发明授权
    • Support member of vibrator
    • 支持振动器的成员
    • US07456554B2
    • 2008-11-25
    • US11430531
    • 2006-05-09
    • Seiji IshikawaTakayuki KikuchiShigeki Hayashi
    • Seiji IshikawaTakayuki KikuchiShigeki Hayashi
    • H01L41/00
    • G01C19/5621G01C19/5628G01C19/5783
    • The present invention provides, in a physical quantity measuring system using a vibrator, a supporting structure of a vibrator for reducing the zero-point temperature drift of detection signal. It is provided a supporting member 22 for supporting a vibrator 1A with bonding wires 26. The supporting member 22 has a supporting plate 40 with an opening 25 formed therein to be positioned direct under a vibrator 1A, and a bonding wire 26 comprising a bonding end 29 to be bonded with the vibrator 1A, a fixed portion 26a fixed on the supporting plate 40 and a bent portion 28 direct under the opening 25. A distance “L1” between the bent portion 28 and a position 39 where the bonding wire 26 starts to protrude from the supporting plate 40 is 10 percent or more of a distance “L2” of the bent portion 28 and the bonding end 29.
    • 本发明在使用振动器的物理量测量系统中提供一种用于减小检测信号的零点温度漂移的振动器的支撑结构。 设置有用于用接合线26支撑振动器1A的支撑构件22。 支撑构件22具有形成在其中的开口25的支撑板40,其直接位于振动器1A的下方,以及接合线26,其包括与振动器1A接合的接合端29,固定部26a固定 在支撑板40上,弯曲部28直接位于开口25的下方。 弯曲部28与接合线26从支撑板40开始突出的位置39之间的距离“L 1”为弯曲部28和接合端29的距离“L 2”的10%以上 。
    • 4. 发明申请
    • Support member of vibrator
    • 支持振动器的成员
    • US20060267458A1
    • 2006-11-30
    • US11430531
    • 2006-05-09
    • Seiji IshikawaTakayuki KikuchiShigeki Hayashi
    • Seiji IshikawaTakayuki KikuchiShigeki Hayashi
    • H01L41/00
    • G01C19/5621G01C19/5628G01C19/5783
    • The present invention provides, in a physical quantity measuring system using a vibrator, a supporting structure of a vibrator for reducing the zero-point temperature drift of detection signal. It is provided a supporting member 22 for supporting a vibrator 1A with bonding wires 26. The supporting member 22 has a supporting plate 40 with an opening 25 formed therein to be positioned direct under a vibrator 1A, and a bonding wire 26 comprising a bonding end 29 to be bonded with the vibrator 1A, a fixed portion 26a fixed on the supporting plate 40 and a bent portion 28 direct under the opening 25. A distance “L1” between the bent portion 28 and a position 39 where the bonding wire 26 starts to protrude from the supporting plate 40 is 10 percent or more of a distance “L2” of the bent portion 28 and the bonding end 29.
    • 本发明在使用振动器的物理量测量系统中提供一种用于减小检测信号的零点温度漂移的振动器的支撑结构。 设置有用于用接合线26支撑振动器1A的支撑构件22。 支撑构件22具有形成在其中的开口25的支撑板40,其直接位于振动器1A的下方,以及接合线26,其包括与振动器1A接合的接合端29,固定部26a固定 在支撑板40上,弯曲部28直接位于开口25的下方。 弯曲部28与接合线26从支撑板40开始突出的位置39之间的距离“L 1”为弯曲部28和接合端29的距离“L 2”的10%以上 。
    • 5. 发明申请
    • SUPPORT MEMBER OF VIBRATOR
    • 支持振动员
    • US20100307245A1
    • 2010-12-09
    • US12840619
    • 2010-07-21
    • Seiji ISHIKAWATakayuki KikuchiShigeki Hayashi
    • Seiji ISHIKAWATakayuki KikuchiShigeki Hayashi
    • G01C19/56
    • G01C19/5621G01C19/5628G01C19/5783
    • The present invention provides, in a physical quantity measuring system using a vibrator, a supporting structure of a vibrator for reducing the zero-point temperature drift of detection signal. It is provided a supporting member for supporting a vibrator with bonding wires. The supporting member has a supporting plate with an opening formed therein to be positioned direct under a vibrator, and a bonding wire comprising a bonding end to be bonded with the vibrator, a fixed portion fixed on the supporting plate and a bent portion direct under the opening. A distance “L1” between the bent portion and a position where the bonding wire starts to protrude from the supporting plate is 10 percent or more of a distance “L2” of the bent portion and the bonding end.
    • 本发明在使用振动器的物理量测量系统中提供一种用于减小检测信号的零点温度漂移的振动器的支撑结构。 设置有用于用键合线支撑振动器的支撑构件。 支撑构件具有形成在其中的开口的支撑板,直接位于振动器的下方,并且接合线包括与振动器接合的接合端,固定在支撑板上的固定部分和直接在振动器下方的弯曲部分 开放 弯曲部和接合线从支撑板开始突出的位置之间的距离“L1”为弯曲部和接合端的距离“L2”的10%以上。
    • 6. 发明授权
    • Support member of vibrator
    • 支持振动器的成员
    • US07788978B2
    • 2010-09-07
    • US12259441
    • 2008-10-28
    • Seiji IshikawaTakayuki KikuchiShigeki Hayashi
    • Seiji IshikawaTakayuki KikuchiShigeki Hayashi
    • G01P9/04H01L41/00
    • G01C19/5621G01C19/5628G01C19/5783
    • The present invention provides, in a physical quantity measuring system using a vibrator, a supporting structure of a vibrator for reducing the zero-point temperature drift of detection signal. It is provided a supporting member for supporting a vibrator with bonding wires. The supporting member has a supporting plate with an opening formed therein to be positioned direct under a vibrator, and a bonding wire comprising a bonding end to be bonded with the vibrator, a fixed portion fixed on the supporting plate and a bent portion direct under the opening. A distance “L1” between the bent portion and a position where the bonding wire starts to protrude from the supporting plate is 10 percent or more of a distance “L2” of the bent portion and the bonding end.
    • 本发明在使用振动器的物理量测量系统中提供一种用于减小检测信号的零点温度漂移的振动器的支撑结构。 设置有用于用键合线支撑振动器的支撑构件。 支撑构件具有形成在其中的开口的支撑板,直接位于振动器的下方,并且接合线包括与振动器接合的接合端,固定在支撑板上的固定部分和直接在振动器下方的弯曲部分 开放 弯曲部和接合线从支撑板开始突出的位置之间的距离“L1”为弯曲部和接合端的距离“L2”的10%以上。
    • 8. 发明授权
    • Developing device and image forming apparatus
    • 显影装置和图像形成装置
    • US08588657B2
    • 2013-11-19
    • US13213548
    • 2011-08-19
    • Shigeki HayashiTakafumi Nagai
    • Shigeki HayashiTakafumi Nagai
    • G03G15/08
    • G03G15/0891G03G2215/0822G03G2215/083
    • In a developing device including a developer tank and a developing roller, an internal space of the developer tank is partitioned by a partition into a first conveying path, a second conveying path, a first communication path, and a second communication path. A first developer conveying section that conveys the developer in the developer tank in a first conveying direction X is disposed in the first conveying path. A second developer conveying section that conveys the developer in the developer tank in a second conveying direction Y is disposed in the second conveying path. The first developer conveying section includes a first spiral blade, and a rotation tube.
    • 在包括显影剂罐和显影辊的显影装置中,显影剂罐的内部空间被隔板分隔成第一输送路径,第二输送路径,第一通信路径和第二通信路径。 在第一传送路径中设置有将第一传送方向X上的显影剂槽中的显影剂输送的第一显影剂输送部。 在第二输送路径中配置有将显影剂槽中的显影剂沿第二输送方向Y输送的第二显影剂输送部。 第一显影剂输送部分包括第一螺旋叶片和旋转管。
    • 9. 发明申请
    • DEVELOPING DEVICE AND IMAGE FORMING APPARATUS HAVING THE DEVELOPING DEVICE
    • 具有开发设备的开发设备和图像形成装置
    • US20120014719A1
    • 2012-01-19
    • US13178860
    • 2011-07-08
    • Shigeki HayashiTakafumi Nagai
    • Shigeki HayashiTakafumi Nagai
    • G03G15/08
    • G03G15/0887G03G15/0853G03G15/0877G03G15/0879G03G15/0893G03G2215/0838
    • A developing device comprising: a developer tank housing a developer including a toner and a carrier; a toner replenishment port; a developing roller; a first developer conveying path and a second developer conveying path; a conducting plate for peeling a recovery developer on a surface of the developing roller after the toner is supplied to a photosensitive drum from the surface of the developing roller so as to guide the recovery developer to the first developer conveying path; and first and second developer conveying members arranged on the first and second developer conveying paths, wherein the first developer conveying member has a cylindrical hollow rotating shaft with opened both ends that is rotatably provided to the first developer conveying path, and divides the first developer conveying path into an external first developer conveying path and an internal first developer conveying path, an external spiral blade fixed to an outer periphery of the hollow rotating shaft, and an internal spiral blade fixed to an inner periphery of the hollow rotating shaft, a direction where the developer is conveyed by the external spiral blade is the same as a direction where the developer is conveyed by the second developer conveying member and is opposite to a direction where the developer is conveyed by the internal spiral blade.
    • 一种显影装置,包括:容纳包含调色剂和载体的显影剂的显影剂罐; 调色剂补充口; 显影辊; 第一显影剂输送路径和第二显影剂输送路径; 将调色剂从显影辊的表面供给到感光鼓之后,将显影辊的表面上的回收显影剂剥离的引导板,以将回收显影剂引导到第一显影剂输送路径; 以及布置在第一和第二显影剂传送路径上的第一和第二显影剂传送构件,其中第一显影剂传送构件具有圆柱形空心旋转轴,其两端敞开,可旋转地设置在第一显影剂输送路径上,并且将第一显影剂输送 进入外部第一显影剂输送路径和内部第一显影剂输送路径的路径,固定到中空旋转轴的外周的外部螺旋叶片和固定到中空旋转轴的内周的内部螺旋叶片, 由外部螺旋叶片输送的显影剂与显影剂被第二显影剂输送构件输送的方向相同,并且与由内部螺旋叶片传送显影剂的方向相反。
    • 10. 发明申请
    • X-RAY TUBE APPARATUS
    • US20100195799A1
    • 2010-08-05
    • US12671021
    • 2007-08-09
    • Sadamu TomitaShigeki Hayashi
    • Sadamu TomitaShigeki Hayashi
    • H01J35/14H01J35/10
    • H01J35/14H01J35/16H01J35/305H01J2235/1212H01J2235/1216H01J2235/162
    • Conventionally, the magnetic field generator was arranged perpendicularly to the axis of the electron beam. The magnetic field generator of this invention is arranged so as to be inclined relative to the plane perpendicular to the axis of the electron beam. Specifically, the magnetic field generator is arranged so as to be inclined relative to the plane perpendicular to the axis of the electron beam within the range in the cathode side from the focused and deflected electron beam. Inclination up to the anode side opposite to the cathode side will lead to a possibility of increasing the reduced X-ray source diameter. Thus, arranging the magnetic field generator so as to be inclined within the range in the cathode side from the electron beam may reduce the X-ray source diameter.
    • 通常,磁场发生器垂直于电子束的轴线布置。 本发明的磁场发生器被布置成相对于垂直于电子束轴的平面倾斜。 具体地说,磁场发生器被布置为相对于垂直于电子束轴线的平面在从聚焦偏转电子束的阴极侧范围内倾斜。 直到与阴极侧相反的阳极侧的倾斜将导致增加X射线源直径减小的可能性。 因此,将磁场发生器设置成在电子束的阴极侧的范围内倾斜,可能降低X射线源直径。