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    • 1. 发明授权
    • Mechanism for detecting half-insertion of a terminal for a connector
    • 用于检测用于连接器的端子的半插入的机构
    • US5769664A
    • 1998-06-23
    • US632324
    • 1996-04-17
    • Hitoshi SaitoHisashi Tsukamoto
    • Hitoshi SaitoHisashi Tsukamoto
    • H01R13/42H01R13/422H01R13/436H01R13/64H01R13/514
    • H01R13/4365H01R13/4223
    • A mechanism for detecting whether a terminal of a connector is full-inserted or half-inserted into a terminal receiving chamber. A housing of the connector has a terminal receiving chamber into which a metal terminal is to be inserted, a flexible engagement arm projecting into the terminal receiving chamber and being designed engage to a metal terminal inserted into the terminal receiving chamber to thereby prevent disengagement of the metal terminal from the terminal receiving chamber, and a wall defining a deformation space between itself and the engagement arm, the engagement arm deformable in the deformation space. A front holder is to be inserted into the deformation space so as to prevent the metal terminal from being disengaged from the terminal receiving chamber, and has a half-insertion detector for detecting half-insertion of the metal terminal into the terminal receiving chamber. The wall includes an abutment surface to which the half-insertion detector abuts when the metal terminal is half-inserted into the terminal receiving chamber, the abutment surface being located closer to the deformation space than to a free end of the engagement arm. The wall further includes, at an inlet through which the front holder is to be inserted into the housing, an abutment surface guide for deforming the half-insertion detector towards the abutment surface.
    • 用于检测连接器的端子是否全插入或半插入端子接收室的机构。 连接器的壳体具有终端容纳室,金属端子将被插入其中,柔性接合臂突出到端子容纳室中并设计成与插入端子容纳室的金属端子接合,从而防止 金属端子,以及限定其与接合臂之间的变形空间的壁,所述接合臂在变形空间中可变形。 将前保持器插入变形空间中,以防止金属端子从端子接收室脱离,并具有用于检测金属端子进入端子接收室的半插入的半插入检测器。 当所述金属端子半插入所述端子容纳室时,所述壁包括邻接表面,当所述金属端子被半插入所述端子容纳室时,所述抵接表面位于所述接合表面上,所述邻接表面位于比所述接合臂的自由端更靠近所述变形空间。 所述壁还包括在所述前保持器将被插入所述壳体的入口处,用于使所述半插入检测器朝向邻接表面变形的邻接表面引导件。
    • 3. 发明授权
    • Rear holder for waterproof connector and method of producing the same
    • 防水连接器后支架及其制造方法
    • US6132249A
    • 2000-10-17
    • US120465
    • 1998-07-23
    • Hitoshi SaitoHisashi Tsukamoto
    • Hitoshi SaitoHisashi Tsukamoto
    • H01R43/00H01R13/52H01R13/40
    • H01R13/5208
    • A rear holder for a waterproof connector which causes no short shots is provided. The metal mold for forming this rear holder is easy to produce. The rear holder includes a resin material member and a rubber material member. The resin material member is provided with a plate-like holding member substantially in parallel with the terminal insertion side end face thereof. Holder terminal insertion holes and holder connecting holes penetrate through the plate-like holding member. The rubber material member is made up of a front portion, a rear portion, and a connecting portion. The front portion and the rear portion are separated from each other by the plate-like holding member of the resin material member, and are connected by the connecting portion that penetrates through the holder connecting holes of the resin material member. A front rubber member terminal insertion hole and a rear rubber member terminal insertion hole penetrate through the front portion and the rear portion, respectively, and communicate with the holder terminal insertion holes of the resin material member.
    • 提供一种防止连接器的后保持器,​​其不产生短路。 用于形成该后支架的金属模具容易制造。 后保持器包括树脂材料构件和橡胶材料构件。 树脂材料构件设置有与其端子插入侧端面大致平行的板状保持构件。 支架端子插入孔和支架连接孔穿过板状保持构件。 橡胶材料构件由前部,后部和连接部构成。 前部和后部通过树脂材料构件的板状保持构件彼此分离,并且通过穿过树脂材料构件的保持器连接孔的连接部连接。 前橡胶构件端子插入孔和后橡胶构件端子插入孔分别穿过前部和后部并与树脂材料构件的保持器端子插入孔连通。
    • 9. 发明授权
    • Semiconductor device and test method
    • 半导体器件及测试方法
    • US08633571B2
    • 2014-01-21
    • US13482146
    • 2012-05-29
    • Akihiko OkutsuHitoshi SaitoYoshiaki Okano
    • Akihiko OkutsuHitoshi SaitoYoshiaki Okano
    • H01L23/544H01L29/66
    • G01R31/275G01R31/2601G01R31/2884H01L22/32H01L23/522H01L23/564H01L23/585H01L2224/05554H01L2924/0002H01L2924/00
    • A semiconductor device includes a semiconductor substrate including an element region, an inner sealing and an outer sealing which are formed on the element region and have a first opening part and a second opening part, respectively, a multilayer interconnection structure which is formed on the substrate and stacks multiple inter-layer insulation films each including a wiring layer, a moisture resistant film formed between a first inter-layer insulation film and a second inter-layer insulation film which are included in the multilayer interconnection structure, a first portion which extended from a first side of the moisture resistant film and passes the first opening part, a second portion which extended from a second side of the moisture resistant film and passes through the second opening part, and a wiring pattern including a via plug which penetrates the moisture resistant film and connects the first portion and the second portion.
    • 半导体器件包括:半导体衬底,包括元件区域,内部密封件和外部密封件,所述元件区域,内部密封件和外部密封件分别形成在所述元件区域上并具有第一开口部分和第二开口部分,所述多层互连结构分别形成在所述衬底上 并且堆叠多个层间绝缘膜,每个层间绝缘膜包括布线层,形成在包括在多层互连结构中的第一层间绝缘膜和第二层间绝缘膜之间的防潮膜,第一部分从 所述防潮膜的第一面通过所述第一开口部,所述第二部分从所述防湿膜的第二侧延伸并穿过所述第二开口部;以及布线图案,其包括穿过所述防潮膜的通孔塞 并且连接第一部分和第二部分。
    • 10. 发明申请
    • MAGNETIC FIELD OBSERVATION DEVICE AND MAGNETIC FIELD OBSERVATION METHOD
    • 磁场观测装置和磁场观测方法
    • US20130174302A1
    • 2013-07-04
    • US13819486
    • 2011-09-05
    • Hitoshi SaitoSatoru Yoshimura
    • Hitoshi SaitoSatoru Yoshimura
    • G01Q60/50
    • G01Q60/38G01Q60/50G01Q60/54G01R33/022G01R33/0385
    • A magnetic-field-observation device and method for measuring magnetic force near a magnetic material specimen's surface with high resolution and detecting the polarity of the magnetic pole of specimen's surface. The device including: a probe; excitation mechanism that excites it; scanning mechanism that relatively moves the probe and specimen; alternating magnetic field generation mechanism to make the probe periodically undergo magnetization reversal and apply thereto an alternating magnetic field having magnitude not making the specimen undergo magnetization reversal; and modulation measurement mechanism for measuring degree of periodical frequency modulation of the probe's oscillation caused by its apparent spring constant periodically changed by force of periodically changed intensity and applied to the probe by alternating force through magnetic interaction between magnetizations of the probe and specimen, by frequency demodulation or by measuring intensity of one sideband wave spectrum among spectrums generated by the frequency modulation. The method performed using the device.
    • 一种用于以高分辨率测量磁性材料试样表面附近的磁力并检测试样表面磁极极性的磁场观测装置和方法。 该装置包括:探头; 激发机制; 相对移动探头和试样的扫描机构; 交变磁场产生机构使探针周期性地进行磁化反转,并向其施加具有不使样本经历磁化反转的量值的交变磁场; 以及用于测量由其由周期性变化的强度周期性地改变的表观弹簧常数引起的探头振荡周期性频率调制程度的调制测量机构,并且通过以探针和样品的磁化之间的磁相互作用的交替力通过频率施加到探针 通过频率调制产生的频谱中的一个边带波谱的强度进行解调或测量。 使用该设备执行的方法。