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    • 1. 发明申请
    • Integrated circuit device and electronic instrument
    • 集成电路器件和电子仪器
    • US20080252634A1
    • 2008-10-16
    • US12081008
    • 2008-04-09
    • Shinya SatoTakayuki SaikiHiroyuki TakamiyaMasaaki Abe
    • Shinya SatoTakayuki SaikiHiroyuki TakamiyaMasaaki Abe
    • G06F3/038H03K19/0175
    • H03K19/00315
    • An integrated circuit device includes a first circuit block that includes low-voltage transistors (LVTr) and operates using a first high-potential power supply voltage and a first low-potential power supply voltage, a second circuit block that includes low-voltage transistors (LVTr) and operates using a second high-potential power supply voltage and a second low-potential power supply voltage that differ in power supply system from the first circuit block, and an interface circuit (I/O buffer) provided between the first circuit block and the second circuit block. The interface circuit (I/O buffer) includes medium-voltage transistors (MVTr: transistors of which the thickness of the gate insulating film is larger than that of the low-voltage transistors (LVTr)). An electrostatic discharge protection circuit formed of bidirectional diodes is provided between a first and second low-potential power supply nodes.
    • 集成电路器件包括包括低压晶体管(LVTr)的第一电路块,并且使用第一高电位电源电压和第一低电位电源电压进行操作,第二电路块包括低压晶体管( LVTr),并且使用电源系统与第一电路块不同的第二高电位电源电压和第二低电位电源电压进行操作,以及设置在第一电路块之间的接口电路(I / O缓冲器) 和第二电路块。 接口电路(I / O缓冲器)包括中压晶体管(MVTr:栅极绝缘膜的厚度大于低压晶体管的厚度(LVTr)的晶体管)。 在第一和第二低电位电源节点之间设置由双向二极管形成的静电放电保护电路。
    • 3. 发明授权
    • Display device
    • 显示设备
    • US08031392B2
    • 2011-10-04
    • US12784279
    • 2010-05-20
    • Naoki HijiYoshinori MachidaMasaaki AbeRyota Mizutani
    • Naoki HijiYoshinori MachidaMasaaki AbeRyota Mizutani
    • G02B26/00G09G3/34G03G17/04
    • G02F1/167G02F2001/1678G02F2203/34G09G3/344
    • There is provided a display device including: an electrophoretic display element including, plural types of particles, each of the respective plural types of particles being charged with the same polarity, differing in optical properties, and differing in either in migration speed and/or electric field threshold value for moving, a translucent display-side electrode, a first back-side electrode, and a second back-side electrode; and a voltage control section that controls the voltages applied to the display-side electrode, the first back-side electrode, and the second back-side electrode, such that the types of particles having the fastest migration speed from the plural types of particles, or the types of particles having the lowest threshold value from the plural types of particles, are moved to the first back-side electrode or to the second back-side electrode, and then the particles that moved to the first back-side electrode are moved to the display-side electrode.
    • 提供了一种显示装置,包括:电泳显示元件,其包括多种类型的颗粒,各种类型的颗粒中的每一种被带有相同的极性,光学性质不同,并且在迁移速度和/或电流方面不同 用于移动的场阈值,半透明显示侧电极,第一背面电极和第二背面电极; 以及电压控制部,其控制施加到显示侧电极,第一背面电极和第二背面电极的电压,使得具有来自多种类型的粒子的最快迁移速度的粒子的类型, 或从多种类型的颗粒中具有最低阈值的颗粒的类型移动到第一背面电极或第二背面电极,然后移动到第一背面电极的颗粒移动 到显示侧电极。
    • 4. 发明申请
    • ELECTROMAGNET DEVICE
    • 电子设备
    • US20090219120A1
    • 2009-09-03
    • US12369063
    • 2009-02-11
    • Masaaki AbeTatsuo Shinoura
    • Masaaki AbeTatsuo Shinoura
    • H01H9/00
    • H01H51/2272H01H50/163
    • An electromagnet device has a movable iron piece having an end that is operable to contact and separate to and from a magnetic pole portion of an iron core. The movable iron piece rotates based on magnetization and demagnetization of a coil wound around the iron core. A tapered surface is formed on at least one end of an attraction surface of the movable iron piece, which attracts to and separates from the magnetic pole portion of the iron core. At least one contacting portion that is in flush with and continuous to the attraction surface and in contact with the magnetic pole portion of the iron core is arranged in a projecting manner on the tapered surface.
    • 一种电磁铁装置具有可动铁片,其具有可操作以接触和分离到铁心的磁极部分的一端。 可动铁片基于围绕铁芯卷绕的线圈的磁化和去磁而旋转。 锥形表面形成在可动铁片的吸引表面的至少一端上,该吸引表面吸引和分离铁芯的磁极部分。 至少一个与吸引表面齐平并且与铁心的磁极部分接触的接触部分以锥形的方式突出地布置。
    • 5. 发明授权
    • Laser scanning unit
    • 激光扫描单元
    • US07253936B2
    • 2007-08-07
    • US11088923
    • 2005-03-25
    • Masaaki Abe
    • Masaaki Abe
    • G02B26/08
    • G02B26/123G02B26/124G02B26/125
    • A laser scanning unit is provided which can use an inexpensive and easily manufactured fθ lens and which can further ensure good precision in adjustment. The laser scanning unit can repeatedly scan focused light onto a scan line, and includes a multi-beam light source for emitting parallel light, first and second cylindrical lenses for focusing the parallel light in a sub-scanning direction and a main scanning direction, respectively, a polygon mirror for deflecting the focused light in the main scanning direction, and an fθ lens for focusing the deflected light on the scan line.
    • 提供了可以使用廉价且容易制造的透镜的激光扫描单元,并且可以进一步确保良好的调整精度。 激光扫描单元可以将聚焦光重复扫描到扫描线上,并且包括用于发射平行光的多光束光源,分别在副扫描方向和主扫描方向上聚焦平行光的第一和第二柱面透镜 ,用于使聚焦光沿主扫描方向偏转的多面镜,以及用于将偏转光聚焦在扫描线上的光焦度透镜。
    • 6. 发明申请
    • Integrated mirror
    • 集成镜
    • US20070153406A1
    • 2007-07-05
    • US10574269
    • 2004-10-05
    • Yoshiyuki MatsumotoIsao UematsuMasaaki AbeKazuyuki MaruyamaYoujirou Tsutsumi
    • Yoshiyuki MatsumotoIsao UematsuMasaaki AbeKazuyuki MaruyamaYoujirou Tsutsumi
    • G02B7/182G02B5/08
    • B60R1/082
    • An intergrated mirror for automobiles through which the driver of an automobile can confirm the situation of vehicles in the rear and side rear with a light burden in the movement of eyes or the recognition of the rear image when the driver changes the lane, for example. The integrated mirror (16) comprises an inside mirror section (18) reflecting the view of the rear part of the inside of the vehicle, an outside mirror section (17) reflecting the view of the outside in the rear of the vehicle, a coupling member (21) for coupling the inside mirror section and the outside mirror section such that their mirror surface become parallel to each other, and an attaching member (22) provided in an intermediate portion of the coupling member and fixed rotatably to the upper end of a front pillar (15) or the like.
    • 一种用于汽车的集成镜,例如,当驾驶员改变车道时,汽车的驾驶员可以通过该车辆的车辆驾驶员在眼睛的运动中以轻的负担或后方图像的识别来确认后侧和后侧的车辆的情况。 集成镜16包括反映车辆内部后部视图的内侧镜部分18,反射车辆后部外侧视角的外侧镜部17, 构件(21),用于将内镜部分和外镜部分联接成使得它们的镜面彼此平行;以及安装构件(22),设置在联接构件的中间部分中并可旋转地固定到 前支柱(15)等。
    • 8. 发明申请
    • Light irradiator and light irradiating method
    • 光照射器和光照射法
    • US20050269298A1
    • 2005-12-08
    • US10533948
    • 2003-10-24
    • Shin HottaKoichi TsukiharaAkifumi OhshimaTakashi MizusawaMasaaki Abe
    • Shin HottaKoichi TsukiharaAkifumi OhshimaTakashi MizusawaMasaaki Abe
    • B23K26/06B23K26/08H01L21/20H01L21/268
    • H01L21/02675B23K26/064B23K26/0643B23K26/0648B23K26/08B23K26/082H01L21/2026H01L21/268
    • A light irradiator used as a laser annealing apparatus is provided which includes a controller (9) which controls a solid-state laser (4) to make pulse-on operation by detecting that the angle of rotation of a rotating shaft (7a) becomes +β after the rotating direction of the rotating shaft (7a) changes from clockwise to counterclockwise and then make pulse-off operation by detecting that the angle of rotation become −β, while controlling the solid-state laser (4) to make the pulse-on operation by detecting that the angle of rotation becomes −β after the rotating direction changes from counterclockwise to clockwise and then make the pulse-off operation by detecting that the angle of rotation becomes +β. Further, the controller (9) controls a moving stage (3) to move at a constant velocity in a constant-velocity moving direction, and move over a predetermined distance in a predetermined-distance moving direction after a to-be-annealed object (2) is irradiated with the light beam on a range from one end thereof to the other end in the constant-velocity moving direction, thereby irradiating the whole surface of the to-be-irradiated object (2) with a uniform energy.
    • 提供了一种用作激光退火装置的光照射器,其包括控制器(9),控制器(9)通过检测旋转轴(7a)的旋转角度变为(...),控制固态激光器(4)进行脉冲接通操作 旋转轴(7a)的旋转方向的旋转角度(β)的β+β在顺时针方向向逆时针方向变化,然后通过检测旋转角度变为-beta来进行脉冲关闭操作,同时控制固态激光器 通过检测旋转方向从逆时针方向向顺时针方向变化后的旋转角变为-beta,然后通过检测旋转角度为+β进行脉冲关闭操作,进行脉冲开启操作。 此外,控制器(9)控制移动台(3)以等速移动方向以恒定速度移动,并且在待退火物体之后在预定距离移动方向上移动预定距离( 2)在恒定速度移动方向的一端至另一端的范围内用光束照射,从而以均匀的能量照射被照射物体(2)的整个表面。
    • 9. 发明授权
    • Semiconductor device with potting resin structures
    • 带封装树脂结构的半导体器件
    • US6028368A
    • 2000-02-22
    • US22275
    • 1998-02-11
    • Masaaki Abe
    • Masaaki Abe
    • H01L23/28H01L21/56H01L23/16H01L23/50
    • H01L23/16H01L21/565H01L2224/48091H01L2224/48247
    • A semiconductor apparatus that can limit the shifting of a semiconductor device when it is sealed with a sealing resin and can prevent bonding wires from being exposed at the surface of the sealing resin, and that can provide improved resistance to moisture and prevent deterioration of performance and reliability, potting resin structures are affixed to bonding wire mounting faces of a plurality of inner leads before they are sealed by a sealing resin, so that the tops of the potting resin structures are higher than the positions at which the bonding wires are mounted. With this arrangement, the shifting of the semiconductor device is halted by the potting resin structures, the bonding wires are not exposed at the surface of the sealing resin, and the potting resin structures and the sealing resin are closely attached, so that resistance to moisture is improved.
    • 一种半导体装置,其可以限制半导体器件在用密封树脂密封时的偏移,并且可以防止接合线暴露在密封树脂的表面,并且可以提供改善的耐湿性和防止性能的劣化, 可靠性,灌封树脂结构在被密封树脂​​密封之前固定在多根内部引线的接合线安装面上,使得封装树脂结构的顶部高于接合线的安装位置。 通过这种布置,通过灌封树脂结构停止半导体器件的移动,接合线不会在密封树脂的表面露出,并且灌封树脂结构和密封树脂紧密附着,使得耐湿性 改进了
    • 10. 发明授权
    • Semiconductor chip package
    • 半导体芯片封装
    • US5849608A
    • 1998-12-15
    • US865495
    • 1997-05-29
    • Masaaki Abe
    • Masaaki Abe
    • H01L21/60H01L23/12H01L23/495H01L23/50H01L21/44H01L21/48H01L21/50
    • H01L23/4951H01L2224/48091
    • A semiconductor chip package is produced using a lead frame which has an island where a plurality of through holes are formed corresponding to the electrodes of the semiconductor chip, respectively. After an insulating film is formed on the island, the semiconductor chip is fixed to one side of the island through an adhesive layer while aligning the electrodes of the semiconductor chip with the through holes of the island portion, respectively. After sealing the semiconductor chip with sealing resin, solder balls are formed on the other side of the island portion, the solder balls are connected to the electrodes of the semiconductor chip through the through holes of the island portion, respectively.
    • 使用引线框来制造半导体芯片封装,所述引线框具有分别对应于半导体芯片的电极形成多个通孔的岛。 在岛上形成绝缘膜之后,半导体芯片通过粘合层固定在岛的一侧,同时将半导体芯片的电极与岛部的通孔对准。 在用密封树脂密封半导体芯片之后,在岛部的另一侧形成焊球,焊球分别通过岛部的通孔与半导体芯片的电极连接。