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    • 72. 发明授权
    • Connector fitting structure
    • 连接器接头结构
    • US06102726A
    • 2000-08-15
    • US322160
    • 1999-05-28
    • Masanori TsujiToru Nagano
    • Masanori TsujiToru Nagano
    • H01R13/627H01R13/635H01R13/641
    • H01R13/641H01R13/6272H01R13/635
    • The connector fitting structure includes: a first connector 2 including in the leading end portion thereof a pair of engaging grooves 7 and a pair of securing projections; and, a second connector 3 including a housing main body 4 which incorporates therein not only a pair of flexible lock arms 10 each having in the leading end thereof a lock portion 9 to be engaged with its associated one of the two engaging grooves 7 but also a slider 5 elastically energized in the axial direction thereof and including in the front end portion thereof a pair of contact portions 11 to be engaged with their associated securing projections 8. The slider 5 is mounted within the housing main body 4 in such a manner that it sits astride the lock arms 10 and it can be slided not only in the back-and-forth direction but also in the vertical direction; and, in the lock arms 10, there are provided the push-up projections 14 which are used to push up the contact portions 11.
    • 连接器装配结构包括:第一连接器2,其在其前端部分包括一对接合槽7和一对固定突起; 以及包括壳体主体4的第二连接器3,其不仅包括一对柔性锁定臂10,所述柔性锁定臂10的前端具有与其相关联的两个接合槽7中的一个接合的锁定部9,但是也 滑动件5沿其轴向方向弹性激励,并且在其前端部分包括一对接合部分11以与其相关联的固定突起8接合。滑块5以这样的方式安装在壳体主体4内, 它跨越锁臂10,不仅可以在前后方向,而且在垂直方向上滑动; 并且在锁定臂10中设置有用于向上推动接触部11的上推突起14。
    • 74. 发明授权
    • Connector
    • 连接器
    • US6017250A
    • 2000-01-25
    • US887266
    • 1997-07-02
    • Masanori TsujiOsamu SugiyamaNorio Matsumura
    • Masanori TsujiOsamu SugiyamaNorio Matsumura
    • H01R13/631H01R13/518H01R24/00H01R13/502
    • H01R13/518
    • A male sub-connector has a plurality of terminal accommodating chambers for accommodating female terminal metal members respectively. A holding member accommodates a plurality of male sub-connectors. A plurality of terminal receiving portions are provided on a cover wall of the holding member. Entrance portions of the male sub-connector open to the terminal receiving portions to receive male terminal metal members of a female sub-connector. At the time of engaging the holding member with the female sub-connector, the engagement is influenced by only a deviation between the holding member and the male sub-connector, there arises only a small positional deviation, so that the male terminal metal members of the female sub-connector can be entered securely into the terminal accommodation chambers without being interrupted.
    • 阳型子连接器具有分别用于容纳阴端子金属构件的多个端子容纳室。 保持构件容纳多个阳型子连接器。 多个端子接收部分设置在保持构件的盖壁上。 阳型子连接器的入口部分通向端子接收部分,以接收阴型子连接器的公端子金属部件。 在将保持构件与阴型副连接器接合时,仅由保持构件和阳型副连接器之间的偏差影响接合,仅产生小的位置偏差,使得阳极端子金属构件 母连接器可以牢固地进入端子容纳室而不中断。
    • 75. 发明授权
    • Mechanism for detecting an unlocked state of connectors
    • 用于检测连接器的未锁定状态的机构
    • US6017236A
    • 2000-01-25
    • US86936
    • 1998-05-29
    • Haruki YoshidaMasanori Tsuji
    • Haruki YoshidaMasanori Tsuji
    • H01R13/639H01R13/629H01R13/64H01R13/641H01R4/50
    • H01R13/62905H01R13/641
    • A mechanism for detecting an unlocked state of connectors is provided. An interfering portion for interfering with a slider which is not pushed in is formed on a mating component to which a component having first and second connectors is attached. The locking plate of the slider is provided with an inclined portion and a flat portion in a direction perpendicular to the connector engagement direction. The second connector is provided with an inclined surface corresponding to the inclined portion, a flat surface corresponding to the flat portion, and an insertion opening adjacent to the flat surface for accommodating the locking plate. When the flat portion is completely in contact with the flat surface, the length of the protruding portion of the slider is the same as the width of the clearance between the second connector and the interfering portion. When the inclined portion slides along the inclined surface so that the terminals of the connectors are separated from each other, the length of the protruding portion of the slider is the same as the width of the clearance. A side surface of the interfering portion faces to the operation surface of the pushed-in slider.
    • 提供了用于检测连接器的未锁定状态的机构。 用于干涉未被推入的滑块的干涉部分形成在具有第一和第二连接器的部件附接到的配合部件上。 滑块的锁定板在垂直于连接器接合方向的方向上设置有倾斜部分和平坦部分。 第二连接器具有对应于倾斜部分的倾斜表面,对应于平坦部分的平坦表面以及与平坦表面相邻的用于容纳锁定板的插入开口。 当平坦部分与平坦表面完全接触时,滑块的突出部分的长度与第二连接器和干涉部分之间的间隙的宽度相同。 当倾斜部分沿着倾斜表面滑动使得连接器的端子彼此分离时,滑块的突出部分的长度与间隙的宽度相同。 所述干涉部的侧面朝向所述推入滑块的操作面。
    • 76. 发明授权
    • Lock detecting structure of connector
    • 连接器锁定检测结构
    • US5839915A
    • 1998-11-24
    • US816999
    • 1997-03-14
    • Rhodri FordMasanori Tsuji
    • Rhodri FordMasanori Tsuji
    • H01R13/639H01R13/64H01R13/641H01R3/00
    • H01R13/641
    • A lock detection structure of a connector, includes: a first connector housing (63) having a connector lock projection (65); a second connector housing (39) having a deformable lock arm (49); and a lock detecting member (33, 83) for detecting whether the connector lock projection is locked with the deformable lock arm. The lock detecting member is composed of at least one deformable detection arm (69, 71; 87), at least one engage projection (77, 93) engaged with the deformable lock arm when the lock detecting member is engaged with the second connector housing, and at least one disengage projection (79, 95) formed also on the deformable detection arm (71, 87) at a position different from the at least one engage projection (77, 93) and dislocated from the deformable lock arm (49) by the connector lock projection (65) of the first connector housing (63) to disengage the engage projection (77, 93) from the deformable lock arm (49) when the first connector housing (63) is engaged with the second connector housing (39).
    • 连接器的锁定检测结构包括:具有连接器锁定突起(65)的第一连接器壳体(63); 具有可变形锁定臂(49)的第二连接器壳体(39); 以及用于检测连接器锁定突起是否与可变形锁定臂锁定的锁定检测构件(33,83)。 锁定检测部件由至少一个可变形检测臂(69,71,87)组成,当锁定检测部件与第二连接器壳体接合时,至少一个与可变形锁定臂接合的接合突起(77,93) 以及至少一个在与所述至少一个接合突起(77,93)不同的位置处形成在所述可变形检测臂(71,87)上并且从所述可变形锁定臂(49)脱位的位置处的脱离突起(79,95)由 当第一连接器壳体(63)与第二连接器壳体(39)接合时,第一连接器壳体(63)的连接器锁定突起(65)使接合突起(77,93)与可变形锁定臂(49) )。
    • 77. 发明授权
    • Double-retaining connector
    • 双保持连接器
    • US5662501A
    • 1997-09-02
    • US632138
    • 1996-04-15
    • Sakai YagiMasanori TsujiKeishi Jinno
    • Sakai YagiMasanori TsujiKeishi Jinno
    • H01R13/42H01R13/436
    • H01R13/4362
    • To provide a double-retaining connector in which terminals can be inserted smoothly, thereby enhancing an operation efficiency and eliminating an obstacle to the achievement of an automation production. In the double-retaining connector, a cavity is formed in a connector housing, and a spacer is provided so as to be inserted into the cavity in a two-stage manner, that is, in a provisionally-retained condition and a completely-retained condition, and the spacer has openings which are aligned respectively with terminal receiving chambers in the provisionally-retained condition of the spacer so as to allow terminals to pass through the openings, respectively. Each of the terminal receiving chambers is divided by the cavity into a front receiving chamber and a rear receiving chamber in such a manner that the cavity is interposed between the front and rear receiving chambers. At a boundary between the opening and the rear receiving chamber, an open end of the opening is larger than an open end of the rear receiving chamber. At a boundary between the front receiving chamber and the opening, an open end of the front receiving chamber is larger than an open end of the opening.
    • 为了提供能够平滑地插入端子的双保持连接器,从而提高操作效率并消除实现自动化生产的障碍。 在双重保持连接器中,在连接器壳体中形成空腔,并且隔离件设置成以两级方式插入到空腔中,即处于临时保持状态和完全保持的状态 并且间隔件具有开口,分别在间隔物的暂时保持状态下分别对准端子接收室,以允许端子分别穿过开口。 每个端子接收室由空腔分成前接收室和后接收室,使得空腔插入在前和后接收室之间。 在开口和后接收室之间的边界处,开口的开口端大于后接收室的开口端。 在前接收室和开口之间的边界处,前接收室的开口端大于开口的开口端。
    • 78. 发明授权
    • Double-retaining connector
    • US5630736A
    • 1997-05-20
    • US385304
    • 1995-02-07
    • Sakai YagiMasanori TsujiKeishi Jinno
    • Sakai YagiMasanori TsujiKeishi Jinno
    • H01R13/42H01R13/436
    • H01R13/4362
    • To provide a double-retaining connector in which terminals can be inserted smoothly, thereby enhancing an operation efficiency and eliminating an obstacle to the achievement of an automation production. In the double-retaining connector, a cavity is formed in a connector housing, and a spacer is provided so as to be inserted into the cavity in a two-stage manner, that is, in a provisionally-retained condition and a completely-retained condition, and the spacer has openings which are aligned respectively with terminal receiving chambers in the provisionally-retained condition of the spacer so as to allow terminals to pass through the openings, respectively. Each of the terminal receiving chambers is divided by the cavity into a front receiving chamber and a rear receiving chamber in such a manner that the cavity is interposed between the front and rear receiving chambers. At a boundary between the opening and the rear receiving chamber, an open end of the opening is larger than an open end of the rear receiving chamber. At a boundary between the front receiving chamber and the opening, an open end of the front receiving chamber is larger than an open end of the opening.
    • 79. 发明授权
    • Lock detecting structure of connector
    • 连接器锁定检测结构
    • US5628649A
    • 1997-05-13
    • US443752
    • 1995-05-18
    • Sakai YagiMasanori TsujiKeishi Jinno
    • Sakai YagiMasanori TsujiKeishi Jinno
    • H01R13/639H01R13/627H01R13/64H01R13/641H01R3/00
    • H01R13/641H01R13/6272
    • A lock detecting structure of connector comprises: a male connector housing (100) formed with a deformable lock arm (105) having a lock projection (112), and with two slider stoppers (150); a female connector housing (200) mated with the male connector housing (100) and formed with a lock claw (210) engaged with the lock projection of the male connector housing, and a slider release projection (206); and a slider (300) slidable inserted into the male connector housing (100) and stopped at a temporary engage position due to engagement of the slider with the lock projection (112) and the two slider stoppers (150) of the male connector housing. When the male connector housing (200) is perfectly mated with the female connector housing (100) and thereby the slider is deformed inward away from the lock projection (112) and the slider stoppers (150) of the male connector housing by the lock claw (210) and the slider release projection (206) of the female connector housing (200), the slider can be further inserted deep into the female connector housing (200) to a lock confirmation position. In particular, since the two slider stoppers (150) are formed inside the male connector housing and therefore the slider can be stopped within the male connector housing, it is possible to reliably detect the connector housing lock conditions, without being subjected to the influence of an external force applied to the slider.
    • 连接器的锁定检测结构包括:阳连接器壳体(100),其形成有具有锁定突起(112)的可变形锁定臂(105),并具有两个滑块挡块(150); 与阳连接器壳体(100)配合并形成有与公连接器壳体的锁定突起接合的锁定爪(210)的阴连接器壳体(200)和滑块释放突起(206); 以及滑动件(300),其可滑动地插入到阳连接器壳体(100)中并且由于滑块与凸形连接器壳体的锁定突起(112)和两个滑块挡块(150)的接合而在临时接合位置处停止。 当阳连接器壳体(200)与母连接器壳体(100)完全配合时,滑块通过锁定爪从锁定突起(112)和凸型连接器壳体的滑块止动件(150)向内变形 (210)和阴连接器壳体(200)的滑块释放突起(206)之间,滑动件可以进一步深入插入阴连接器壳体(200)到锁定确认位置。 特别地,由于两个滑块挡块(150)形成在公连接器壳体的内部,因此滑块可以停在阳连接器壳体内,因此可以可靠地检测连接器壳体锁定状态,而不会受到 施加到滑块的外力。
    • 80. 发明授权
    • Double locking connector
    • 双锁定连接器
    • US5607327A
    • 1997-03-04
    • US353976
    • 1994-12-06
    • Masanori TsujiKeishi Jinno
    • Masanori TsujiKeishi Jinno
    • H01R13/42H01R13/436H01R13/514
    • H01R13/4365
    • A double-locking connector including a front holder for double locking terminals within a connector housing where the terminals can be removed from the housing without disengaging the front holder from the housing. The double-locking connector includes a connector housing including terminal accommodating chambers which have stoppers against which metal terminals abut when they are inserted into the terminal accommodating chambers from the rear, and flexible locking pieces adapted to lock the metal terminals in the terminal accommodating chambers, respectively. The connector also includes a front holder which is engageable with the connector housing from the front. The front holder has flexible locking pieces which are respectively engageable with the metal terminals. Each of the flexible locking pieces has temporary locking protrusions and final locking protrusions which are engaged with locking portions forming the front end of the respective terminal accommodating chamber. When the front holder is in a temporarily locked position, the flexible locking pieces are not engaged with the metal terminals; when the front holder is in a completely locked position the flexible locking pieces are engaged with the metal terminals; and when the front holder is thereafter moved in a perpendicular direction the final locking protrusions become disengaged with the metal terminals.
    • 双锁定连接器,其包括用于连接器壳体内的双重锁定端子的前保持器,其中端子可以从壳体移除而不将前保持器与壳体分离。 双锁定连接器包括:连接器壳体,其包括端子容纳室,当从后部将金属端子插入端子容纳室时,端子容纳室具有阻挡件,金属端子抵靠在其上;以及柔性锁定件,其适于将金属端子锁定在端子容纳室中, 分别。 该连接器还包括可从前部与连接器壳体接合的前保持器。 前支架具有可分别与金属端子接合的柔性锁定件。 每个柔性锁定件具有临时锁定突起和最终锁定突起,其与形成相应端子容纳室的前端的锁定部分接合。 当前保持器处于临时锁定位置时,柔性锁定件不与金属端子接合; 当前保持器处于完全锁定位置时,柔性锁定件与金属端子接合; 并且当前保持器随后在垂直方向上移动时,最终的锁定突起与金属端子脱离接合。