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    • 3. 发明授权
    • Connector capable of preventing incomplete fitting
    • 连接器能防止不完全的配合
    • US06918783B2
    • 2005-07-19
    • US10771287
    • 2004-02-05
    • Tomomi EndoAtsushi NishidaYoshitaka KashimaMasato MinakataKeiichi Ito
    • Tomomi EndoAtsushi NishidaYoshitaka KashimaMasato MinakataKeiichi Ito
    • H01R13/639H01R13/627H01R13/64H01R13/641H01R13/703
    • H01R13/6272H01R13/641H01R13/7031
    • A first connector housing is provided with a flexible lock arm. A tubular fitting detector is fitted to an outer periphery of the first connector housing while being slidable thereon between a first position and a second position. A retainer is provided on the fitting detector, and adapted to be engaged with a first portion of the lock arm in a case where the fitting detector is placed at the first position, and engaged with a second portion of the lock arm in a case where the fitting detector is placed at the second position. A second connector housing is provided with a projection adapted to release the engagement between the retainer and the first portion of the lock arm in a case where the second connector housing is completely fitted with the first connector housing, so that the fitting detector is allowed to slide from the first position to the second position. A finger pad is provided on the fitting detector, and arranged such that an operator's finger is placeable thereon while being separated from at least the lock arm, during a fitting operation between the first connector housing and the second connector housing.
    • 第一连接器壳体设置有柔性锁定臂。 管状配件检测器装配到第一连接器壳体的外周边,同时在第一位置和第二位置之间可滑动。 在安装检测器上设置有保持器,并且适合于在装配检测器被放置在第一位置的情况下与锁定臂的第一部分接合,并且在与锁定臂的第二部分接合的情况下, 装配检测器被放置在第二位置。 第二连接器壳体设置有突起,该突起适于在第二连接器壳体完全与第一连接器壳体配合的情况下释放保持器和锁定臂的第一部分之间的接合,使得装配检测器被允许 从第一位置滑动到第二位置。 手指垫设置在装配检测器上,并且布置成使得在第一连接器壳体和第二连接器壳体之间的装配操作期间,操作者的手指可放置在其上,同时至少与锁定臂分离。
    • 4. 发明授权
    • Connector apparatus
    • 连接器装置
    • US06488515B2
    • 2002-12-03
    • US09793585
    • 2001-02-27
    • Harehide SasakiKeiichi ItoKazuyuki ShirakiMasanori Wakui
    • Harehide SasakiKeiichi ItoKazuyuki ShirakiMasanori Wakui
    • H01R1362
    • H01R13/62938H01R13/62905H01R13/62955
    • A projection (9) is provided in a male connector (1). A lever (16) is rotatably provided in a female connector (2). The lever (16) has a curved groove (18). When the lever (16) is turned, the projection (9) is inserted into the groove (18). As the projection (9) is inserted into this groove (18), the connection between the male connector (1) and the female connector (2) is strengthened. At that time, the lever (16) provides leverage. Moreover, the distance between the fulcrum for this lever and a point of action gradually decreases. Furthermore, in this case, the groove (18) is formed in such a way as to extend to the turning center portion of the lever (16), so that the distance between the fulcrum for the lever and the point of action is reduced still more. Consequently, a larger connecting force can be provided thereto.
    • 在阳连接器(1)中设置有突起(9)。 杠杆(16)可旋转地设置在阴连接器(2)中。 杠杆(16)具有弯曲的凹槽(18)。 当杠杆(16)转动时,突起(9)插入槽(18)中。 当突起(9)插入到该凹槽(18)中时,阳连接器(1)和阴连接器(2)之间的连接被加强。 当时杠杆(16)提供杠杆作用。 此外,该杠杆的支点与作用点之间的距离逐渐减小。 此外,在这种情况下,槽(18)形成为延伸到杠杆(16)的转动中心部分,使得杠杆的支点和作用点之间的距离仍然减小 更多。 因此,能够提供较大的连接力。
    • 5. 发明授权
    • Multipolar connector apparatus with force transmitting member
    • 具有力传递构件的多极连接器装置
    • US06447346B2
    • 2002-09-10
    • US09795366
    • 2001-03-01
    • Harehide SasakiKeiichi ItoKazuyuki ShirakiMasanori Wakui
    • Harehide SasakiKeiichi ItoKazuyuki ShirakiMasanori Wakui
    • H01R922
    • H01R13/631
    • A plurality of steps respectively constituted by inner housings (19) are incorporated into an outer housing (18) of a female connector (12). Moreover, a pushing operation force transmitting member (20) is incorporated there into. The engaging relation of this pushing operation force transmitting member (20) to each of the inner housings is changed every time this member is externally operated. Thus, a pushing operation force applied to the outer housing (18) is transmitted to the inner housings (19) sequentially. Consequently, the outer housing (18) and the pushing operation force transmitting member (20) are alternately pushed. Thus, the plurality of steps respectively constituted by the inner housings (19) are sequentially connected to a male connector (12).
    • 由内壳体(19)分别构成的多个台阶结合到阴连接器(12)的外壳体(18)中。 此外,将推压操作力传递部件(20)并入其中。 每当该构件被外部操作时,该推动操作力传递构件(20)与每个内壳体的接合关系改变。 因此,施加到外壳体(18)的按压操作力依次传递到内壳体(19)。 因此,外壳(18)和推压操作力传递构件(20)交替地被按压。 因此,分别由内壳体(19)构成的多个台阶顺序地连接到阳连接器(12)。
    • 6. 发明授权
    • Printed circuit board connector
    • 印刷电路板连接器
    • US06457980B2
    • 2002-10-01
    • US09855742
    • 2001-05-16
    • Tetsuya HattoriYoshiaki KatoKeiichi ItoKazuyuki ShirakiMasanori Wakui
    • Tetsuya HattoriYoshiaki KatoKeiichi ItoKazuyuki ShirakiMasanori Wakui
    • H01R1200
    • H01R12/7082H01R13/6315
    • A connector housing (1) of a connector (1) is constituted by a lower housing (7), which is mounted on a printed circuit board (2), and an upper housing (8) connected to the lower housing (7) in such a manner as to be able to perform shifting movement with respect the housing (7). Further, terminals (6) are provided in such a way as to penetrate through a partitioning wall portion (8a) of the upper housing (8) and through a connecting block portion (7b) of the lower housing (7). At that time, tapered holes (7d) are provided in the connecting block portion (7b). The terminals (6) are maintained in a state in which a bending deformation thereof caused by the shifting movement of the upper housing (8) is allowed. Consequently, when the connector (1) is connected to the mating connector (3), the connectors (1, 3) can be connected to each other by performing the shifting movement of the upper housing (8) thereby to concurrently absorb the positional displacement therebetween. Moreover, occurrences of problems, such as breakage and bend of the terminals (6) at that time, are prevented.
    • 连接器(1)的连接器壳体(1)由安装在印刷电路板(2)上的下壳体(7)和连接到下壳体(7)的上壳体(8)构成, 这样的方式能够相对于壳体(7)执行移动运动。 此外,端子(6)设置成穿过上壳体(8)的分隔壁部分(8a)并且穿过下壳体(7)的连接块部分(7b)。 此时,在连接块部(7b)上设置锥形孔(7d)。 端子(6)保持在由上壳体(8)的移动运动引起的弯曲变形的状态。 因此,当连接器(1)连接到配合连接器(3)时,通过执行上壳体(8)的移动运动,连接器(1,3)可以彼此连接,从而同时吸收位置位移 之间。 此外,防止了此时出现诸如端子(6)的断裂和弯曲的问题。
    • 7. 发明授权
    • Switchable connector device
    • 可切换连接器装置
    • US06773283B2
    • 2004-08-10
    • US09858906
    • 2001-05-17
    • Kazuharu YoshimatsuYoshiaki KatoKeiichi ItoKazuyuki ShirakiMasanori Wakui
    • Kazuharu YoshimatsuYoshiaki KatoKeiichi ItoKazuyuki ShirakiMasanori Wakui
    • H01R1362
    • H01R12/714H01R12/515H01R12/7047H01R13/24
    • A connector housing (6) of the connector device (1) is composed of an outer housing (9) to be mounted onto a printed circuit board (2) by screwing, and an inner housing (8) connected to the outer housing (9) so as to be movable in the right and left direction with respect to the outer housing (9). Into the inner housing (8), there is incorporated a terminal (7) including a connecting portion (7a) to be connected by a terminal (5) of a mating connector device (3), a spring portion (7c), and a switch contact (7b) respectively formed integral with the terminal (7). On the printed circuit board (2), there is disposed an electrode (2a) with which the switch contact (7b) can be elastically contacted. Thanks to this structure, by switchingly moving the inner housing (8) in the right and left direction, circuit switching can be achieved.
    • 连接器装置(1)的连接器壳体(6)由通过旋拧安装在印刷电路板(2)上的外壳体(9)和连接到外壳体(9)的内壳体 )相对于外壳体(9)在左右方向上移动。 在内壳体(8)内装有一个端子(7),该端子(7)包括一个连接部分(7a),该连接部分通过配合的连接器装置(3)的端子(5),一个弹簧部分(7c)和 分别与端子(7)形成的开关触点(7b)。 在印刷电路板(2)上设置有电极(2a),开关触点(7b)可与该电极弹性接触。 由于这种结构,通过在左右方向上切换内部壳体(8),能够实现电路切换。
    • 10. 发明授权
    • Gradation correction apparatus
    • 梯度校正装置
    • US07034896B2
    • 2006-04-25
    • US10343512
    • 2002-05-30
    • Keiichi ItoAtsuhisa Kageyama
    • Keiichi ItoAtsuhisa Kageyama
    • H04N9/69
    • H04N5/202G06T5/009G09G2320/0276H04N5/20
    • The present invention provides a gradation correction device which can perform gradation correction using digital feedback processing, and furthermore, can control the digital feedback processing with high accuracy. The gradation correction device is provided with a correction gain adjustable amount generation circuit (103) and a correction gain generation circuit (104), and the correction gain adjustable amount generation circuit (103) obtains a correction gain adjustable amount which is non-linear in relation to a difference S between a reference luminance level Yb1 and a maximum luminance level, and greater gamma correction is carried out as the value of the difference is larger.
    • 本发明提供了一种可以使用数字反馈处理执行灰度校正的灰度校正装置,并且可以高精度地控制数字反馈处理。 灰度校正装置具有校正增益可调量生成电路(103)和校正增益生成电路(104),校正增益可调量生成电路(103)获得非线性的校正增益可调量 与基准亮度电平Yb 1和最大亮度电平之间的差S的关系以及较大的伽马校正被执行,因为差值越大。