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    • 6. 发明授权
    • Shielded cable connecting structure
    • 屏蔽电缆连接结构
    • US07431608B2
    • 2008-10-07
    • US11706998
    • 2007-02-16
    • Tadahisa SakaguchiTakayoshi Endo
    • Tadahisa SakaguchiTakayoshi Endo
    • H01R4/24
    • H01R9/034H01R4/185H01R4/2454
    • A shielded cable connecting structure for connecting a shielded cable, the shielded cable including an electric wire portion which has a conductor and an inner sheath covering the conductor, a braided wire braided around the inner sheath, and an outer sheath covering the braided wire, the shielded cable connecting structure includes a connecting member. The connecting member includes a connecting main body, a press-fastening portion which press-fastens at least part of the shielded cable, a connecting portion which connects to the braided wire, and a spacer which connects to the braided wire. The spacer increases a contact pressure of the braided wire with the connecting portion.
    • 一种用于连接屏蔽电缆的屏蔽电缆连接结构,所述屏蔽电缆包括具有导体的电线部分和覆盖所述导体的内护套,围绕所述内护套编织的编织线和覆盖所述编织线的外护套, 屏蔽电缆连接结构包括连接构件。 连接构件包括连接主体,压紧紧固屏蔽电缆的至少一部分的压紧部分,连接到编织线的连接部分和连接到编织线的间隔件。 间隔物增加编织线与连接部分的接触压力。
    • 7. 发明授权
    • Connector
    • 连接器
    • US06860760B2
    • 2005-03-01
    • US10720160
    • 2003-11-25
    • Takayoshi EndoKimihiro AbeIsao KameyamaYasuo Yoshiura
    • Takayoshi EndoKimihiro AbeIsao KameyamaYasuo Yoshiura
    • H01R4/18H01R9/05H01R13/41
    • H01R24/40H01R4/185H01R9/0518H01R13/41H01R2103/00H01R2201/02
    • A pair of engaging holes 15 are formed in side wall portions of the plug pin 1 and a pair of engaging beams 35 are formed on side wall portions of an insulating housing 3, the engaging beams 35 being pushed by an external contact 5 and moving toward a pin inserting hole 31 when the insulating housing 3 with the plug pin 1 press-fitted therein is inserted into the external contact 5. As a result, a pair of retaining pawls 37 are put in engagement with the engaging holes 15, whereby the plug pin 1 and the insulating housing 3 are fixed to each other. Since the plug pin 1 and the insulating housing 3 are fixed together by both press-fit engagement of the plug pin 1 into the insulating housing 3 and engagement of the retaining pawls 37 with the engaging holes 15, the strength of the fixing is enhanced.
    • 一对接合孔15形成在插销1的侧壁部分中,并且一对接合梁35形成在绝缘壳体3的侧壁部分上,接合梁35被外部接触件5推动并朝向 当插入插头1的绝缘壳体3被压入其中时,插入孔31插入到外部接触件5中。结果,一对保持爪37与接合孔15接合,由此插头 销1和绝缘壳体3彼此固定。 由于插销1和绝缘壳体3通过将插销1压入配合到绝缘壳体3中并将保持爪37与接合孔15接合而固定在一起,因此固定强度得以提高。
    • 8. 发明授权
    • Power circuit breaker
    • 电源断路器
    • US06418005B1
    • 2002-07-09
    • US09498650
    • 2000-02-07
    • Takayoshi EndoNorio MatsumuraGoro Nakamura
    • Takayoshi EndoNorio MatsumuraGoro Nakamura
    • F23Q300
    • H01H39/00H01H85/0417H01H2009/0077H01H2039/008
    • The power circuit breaker has an igniter unit disposed in a cylindrical wall formed in a main housing. A holder is disposed in the cylindrical wall so as to oppose to the igniter unit. The holder has a boss engaged with the cylindrical wall, and a fuse element is held by the holder. Each end of the fuse element is electrically connected to one of a pair of interconnection terminals disposed in the main housing. The holder is locked by a locking lance formed in the main housing when each end of the fuse element has engaged with one of the interconnection terminals. The holder rests on the locking lance when the fuse element has been released from the interconnection terminals after activation of the igniter unit. The fuse element is engaged with and stopped by an insertion hole of the holder. The interconnection terminals each are a receptacle type terminal having two resilient contact strip portions one of which is connected to one end of the fuse element and the other of which is connected to an opposing terminal of a power circuit.
    • 电源断路器具有设置在形成在主壳体中的圆筒壁中的点火器单元。 保持器设置在圆筒壁中以与点火器单元相对。 保持器具有与圆筒壁接合的凸台,并且保持器保持保险丝元件。 保险丝元件的每个端部电连接到设置在主壳体中的一对互连端子之一。 当保险丝元件的每一端与一个互连端子接合时,保持器被形成在主壳体中的锁定杆锁定。 当点火器单元激活后,当熔丝元件从互连端子释放时,支架搁置在锁定矛杆上。 保险丝元件与保持器的插入孔接合并由其止动。 互连端子各自是具有两个弹性接触带部分的插座型端子,其中一个连接到熔丝元件的一端,另一个连接到电源电路的相对端子。
    • 10. 发明授权
    • Wear resistant copper base alloy, method of preparing the same and electrical part using the same
    • 耐磨铜基合金,其制备方法及使用其的电气部件
    • US06336979B1
    • 2002-01-08
    • US09493997
    • 2000-01-27
    • Akira SugawaraYoshitake HanaTakayoshi Endo
    • Akira SugawaraYoshitake HanaTakayoshi Endo
    • C23C2600
    • C22F1/08C22F1/02C23C26/00C25D5/505H01R13/03Y10S428/929Y10S428/941Y10T428/1259Y10T428/12715
    • Wear resistant copper or a wear resistant copper base alloy having formed on the outermost surface thereof an oxide layer having a thickness of 10-1000 nm and a layer of an intermetallic compound primarily comprising Cu—Sn having a thickness of 0.1-10 &mgr;m under the oxide film layer is provided; a method of preparing the above-described wear resistant copper or copper base alloy by coating base material copper or a copper base alloy with Sn, preferably performing reflow treatment and then conducting heat treatment is provided; and an electrical part comprising the above-described wear resistant copper or copper base alloy is provided. A terminal made of the alloy according to the present invention which has an appropriate oxide film layer by performing heat treatment can greatly decrease a terminal-insertion force compared with that made of an ordinary copper base alloy which is not subjected to the heat treatment. The wear resistant copper or copper base alloy according to the present invention has a large surface hardness, an excellent slipping property, small contact resistance, an excellent electrical characteristic, as well as the small terminal-insertion force so that it can advantageously be used in an electrical part such as a connector or the like for use in an automobile, a charging socket or the like for use in an electric automobile.
    • 耐磨铜或耐磨铜基合金,其最外表面上形成有厚度为10-1000nm的氧化物层和主要包含厚度为0.1-10μm的Cu-Sn的金属间化合物层, 氧化膜层; 提供了通过涂覆基底材料铜或铜基合金与Sn,优选进行回流处理然后进行热处理来制备上述耐磨铜或铜基合金的方法; 并且提供包括上述耐磨铜或铜基合金的电气部件。 与通过不进行热处理的普通铜基合金相比,通过进行热处理具有合适的氧化膜层的本发明的合金端子,能够大大降低端子插入力。 根据本发明的耐磨铜或铜基合金具有大的表面硬度,优异的滑动性,小接触电阻,优异的电特性,以及小的端子插入力,使得其可以有利地用于 用于汽车的电气部件,例如连接器等,用于电动汽车的充电插座等。