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    • 41. 发明授权
    • Connector having engagement detecting device
    • 具有接合检测装置的连接器
    • US5618201A
    • 1997-04-08
    • US429881
    • 1995-04-27
    • Sakai YagiMasanori TsujiKeishi JinnoTakahiro Yoneda
    • Sakai YagiMasanori TsujiKeishi JinnoTakahiro Yoneda
    • H01R13/627H01R13/641H01R13/703H01R13/717H01R3/00
    • H01R13/7032H01R13/6275H01R13/641H01R13/717H01R13/7177
    • A connector having an engagement detecting device, comprises: a first connector housing for housing a plurality of first connector terminals; a second connector housing for housing a plurality of second connector terminals mated with the first connector terminals, and engaged with the first connector housing; a slider inserted into the first connector housing in two stages of a half engagement position and a full engagement position; and a short-circuit spring disposed within the first connector housing, for shorting electrically two adjacent mated connector terminals when the slider is inserted into the first connector housing to the half engagement position, but disconnecting electrically the same two adjacent mated connector terminals when the second connector housing is engaged with the first connector housing and thereafter the slider is further inserted into the first connector housing to the full engagement position. The short-circuit spring can apply a reaction force to the slider when the slider is further inserted to the full engagement position, thus providing a stable connector engagement detecting device while decreasing the number of parts.
    • 一种具有接合检测装置的连接器,包括:用于容纳多个第一连接器端子的第一连接器壳体; 第二连接器壳体,用于容纳与所述第一连接器端子配合的多个第二连接器端子,并与所述第一连接器壳体接合; 滑块,其在半接合位置和完全接合位置的两个阶段中插入到第一连接器壳体中; 以及设置在所述第一连接器壳体内的短路弹簧,用于当所述滑块在所述第一连接器壳体中插入所述半接合位置时将两个相邻的配合连接器端子短路,但是当所述第二连接器端子 连接器壳体与第一连接器壳体接合,此后滑块进一步插入第一连接器壳体到完全接合位置。 当滑块进一步插入到完全接合位置时,短路弹簧可以向滑块施加反作用力,从而在减少部件数量的同时提供稳定的连接器接合检测装置。
    • 44. 发明授权
    • Data transmitting apparatus and data retransmitting method
    • 数据发送装置和数据重传方法
    • US08259724B2
    • 2012-09-04
    • US12668271
    • 2008-07-11
    • Kazunobu KonishiEiichi MuramotoTakahiro YonedaIchiro TakeiMasashi KobayashiTaisuke Matsumoto
    • Kazunobu KonishiEiichi MuramotoTakahiro YonedaIchiro TakeiMasashi KobayashiTaisuke Matsumoto
    • H04L12/28H04L12/56
    • H04L12/44H04L1/1887H04L2001/0093
    • A data transmitting apparatus makes it possible to send out a retransmitting packet at early timing even when a delivery tree structure is unclear. A transmitting terminal device including this data transmitting apparatus is includes a retransmitting request receiver that receives a data retransmitting request, a receiving terminal device relevancy updater that stores a past history of the number of reception of a retransmitting request transmitted from a first data receiving device and a past history of the number of reception of a retransmitting request sent from the other data receiving devices, wherein the subject of the retransmitting request sent by the other data receiving devices is the same as the object of the retransmitting request sent by the first data receiving device, and a retransmitting destination selector that estimates a delivery tree from the history stored by the receiving terminal device relevancy updater when the retransmitting destination selector receives the retransmitting request from the first data receiving device and selects, another data receiving device positioned downstream of the first data receiving device in the estimated delivery tree.
    • 即使在传送树结构不清楚的情况下,数据发送装置也可以在早期定时发送重发分组。 包括该数据发送装置的发送终端装置包括接收数据重传请求的重发请求接收者,存储从第一数据接收装置发送的重传请求的接收次数的过去历史的接收终端装置相关更新器,以及 从其他数据接收装置发送的重发请求的接收次数的过去历史,其中由其他数据接收装置发送的重发请求的对象与由第一数据接收发送的重传请求的对象相同 设备和重传目的地选择器,当所述重传目的地选择器从所述第一数据接收装置接收到所述重传请求时,从所述接收终端装置相关性更新器所存储的历史中估计传送树,并选择位于所述第一接收装置的下游的另一数据接收装置 数据接收 ving设备在估计交付树。
    • 45. 发明授权
    • Flow control method, transmitting terminal device used in same, receiving terminal device and packet transfer system
    • 流量控制方法,使用的发送终端设备,接收终端设备和分组传送系统
    • US08031608B2
    • 2011-10-04
    • US12443895
    • 2007-08-29
    • Eiichi MuramotoTakahiro YonedaKazunobu Konishi
    • Eiichi MuramotoTakahiro YonedaKazunobu Konishi
    • H04L12/26
    • H04L47/10H04L43/0829H04L43/0864H04L47/2441H04L47/283
    • It is an object to provide a flow control method in which a packet round trip time is not excessively calculated out and its performance is not unnecessarily deteriorated even at the time of continuously connected packet transfers through relays of a plurality of receiving terminal devices. This method is directed to a flow control method in which the delivery of packets are carried out through relays of a plurality of receiving terminal devices. The method is comprised of steps (S501-S517) for acquiring a packet round trip time for every pair of neighboring terminal devices in a path of the delivery, a selection step for selecting one from the acquired round trip time in accordance with a predetermined standard, and a step (S518) for calculating a packet transmission rate on the basis of the selected round trip time, so that the round trip time of each receiving terminal device is measured and the transmission rate is calculated in accordance with the measured result. Thus, a packet round trip time is not excessively calculated out, and data transmission performance can be improved.
    • 本发明的目的是提供一种流量控制方法,其中分组往返时间不被过度计算,即使在通过多个接收终端设备的中继连续连接分组传输时,其性能也不会不必要地劣化。 该方法涉及一种流控制方法,其中通过多个接收终端设备的中继进行分组传送。 该方法包括用于在传送路径中获取每对相邻终端设备的分组往返时间的步骤(S501-S517),根据预定标准从获取的往返行程时间中选择一个的选择步骤 以及基于所选择的往返时间计算分组传输速率的步骤(S518),从而测量每个接收终端设备的往返时间,并根据测量结果计算传输速率。 因此,分组往返时间不会被过度计算出来,并且可以提高数据传输性能。
    • 46. 发明授权
    • Communication method and receiving terminal
    • 通信方式和接收终端
    • US07924714B2
    • 2011-04-12
    • US11813476
    • 2006-01-06
    • Eiichi MuramotoTakahiro YonedaToyoki Kawahara
    • Eiichi MuramotoTakahiro YonedaToyoki Kawahara
    • G01R31/08
    • H04L45/00H04L47/10
    • It is an object of the present invention to receive/play a streaming immediately after a switching not to disconnect it when a terminal for receiving the streaming is switched from a first receiving terminal to a second receiving terminalA communication method of switching a receiving terminal of a streaming to which a rate control using TFRC is applied from a first receiving terminal to a second receiving terminal, includes a deciding step of deciding whether or not a route on a network between a transmitting terminal of the streaming and the first receiving terminal is identical to a route on the network between the transmitting terminal and the second receiving terminal, and a transferring step of transferring history information of a packet loss that the first receiving terminal is managing to the second receiving terminal when it is decided that both routes are identical.
    • 本发明的目的是在用于接收流的终端从第一接收终端切换到第二接收终端之后,在切换之后立即接收/播放流。 包括从第一接收终端向第二接收终端应用使用TFRC的速率控制的流,包括决定步骤,判定流的发送终端与第一接收终端之间的网络上的路由是否相同 到发送终端和第二接收终端之间的网络上的路由,以及当确定两条路由相同时,将第一接收终端正在管理的分组丢失的历史信息传送给第二接收终端的传送步骤。
    • 48. 发明授权
    • Electrical connector having terminal distortion preventing structure
    • 具有端子失真防止结构的电连接器
    • US6083033A
    • 2000-07-04
    • US226186
    • 1999-01-07
    • Hiroshi YamamotoTakahiro Yoneda
    • Hiroshi YamamotoTakahiro Yoneda
    • H01R13/11H01R13/115H01R13/422H01R13/50H01R13/64
    • H01R13/113H01R13/4223H01R13/50
    • The connector includes at least a terminal accommodating cavity for receiving a receptacle terminal of a rectangular hollow beam shape. The receptacle terminal has an electrical connection portion including a resilient contact tongue. The terminal accommodating cavity has a pin terminal insertion opening. Furthermore, a pair of distortion preventing members opposed to one another and projecting respectively from each of opposed inner side walls of the terminal accommodating cavity are provided adjacent to the pin terminal insertion opening. A guide recess is defined in each side wall of the electrical contact portion for guiding the distortion preventing member. The distortion preventing members are able to prevent distortion of the pin terminal cooperatively with an inner surface of a pin terminal insertion opening even when the pin terminal is incorrectly inserted in a slanting direction through the pin terminal insertion opening into the receptacle terminal.
    • 连接器包括至少一个端子容纳腔,用于接收矩形空心梁形状的插座端子。 插座端子具有包括弹性接触舌片的电连接部分。 端子容纳腔具有销端子插入开口。 此外,与销端子插入口相邻地设置有一对彼此相对并且分别从端子容纳腔的相对的内侧壁突出的防变形构件。 引导凹部限定在电接触部分的每个侧壁中,用于引导防变形构件。 即使当销端子通过插针端子插入开口的倾斜方向不正确地插入插座端子时,防变形构件也能够防止销端子与销端子插入口的内表面协调地变形。
    • 49. 发明授权
    • Connector having engagement detecting device
    • 具有接合检测装置的连接器
    • US5672073A
    • 1997-09-30
    • US663534
    • 1996-06-13
    • Norio MatsumuraSakai YagiMasanori TsujiKeishi JinnoTakahiro Yoneda
    • Norio MatsumuraSakai YagiMasanori TsujiKeishi JinnoTakahiro Yoneda
    • H01R13/627H01R13/641H01R13/703H01R13/717H01R29/00
    • H01R13/7032H01R13/641H01R13/6275H01R13/717H01R13/7177
    • A connector having an engagement detecting device, comprises: a first connector housing (100) for housing a plurality of first connector terminals (23); a second connector housing (200) for housing a plurality of second connector terminals (21) mated with the first connector terminals, and engaged with the first connector housing; a slider (300, 300A) inserted into the first connector housing in two stages of a half engagement position and a full engagement position; and a short-circuit spring (400) disposed within the first connector housing, for shorting electrically two adjacent mated connector terminals (23, 21) when the slider is inserted into the first connector housing to the half engagement position, but disconnecting electrically the same two adjacent mated connector terminals when the second connector housing (200) is engaged with the first connector housing (100) and thereafter the slider is further inserted into the first connector housing to the full engagement position. The short-circuit spring (400) can apply a reaction force to the slider when the slider is further inserted to the full engagement position, thus providing a stable connector engagement detecting device while decreasing the number of parts.
    • 一种具有接合检测装置的连接器,包括:用于容纳多个第一连接器端子(23)的第一连接器壳体(100); 第二连接器壳体(200),用于容纳与第一连接器端子配合的多个第二连接器端子(21),并与第一连接器壳体接合; 在半接合位置和完全接合位置的两级中插入到第一连接器壳体中的滑块(300,300A); 以及设置在所述第一连接器壳体内的短路弹簧(400),用于当所述滑块在所述第一连接器壳体中插入所述半接合位置时将两个相邻的配合连接器端子(23,21)短路,但是将其电连接 当第二连接器壳体(200)与第一连接器壳体(100)接合时,两个相邻的配合连接器端子,然后滑块进一步插入第一连接器壳体到完全接合位置。 当滑块进一步插入到完全接合位置时,短路弹簧(400)可以向滑块施加反作用力,从而在减少部件数量的同时提供稳定的连接器接合检测装置。
    • 50. 发明授权
    • Weak mating force female terminal
    • 弱配合力女性终端
    • US5295874A
    • 1994-03-22
    • US52603
    • 1993-04-27
    • Takahiro YonedaKeishi JinnoTakayoshi Endo
    • Takahiro YonedaKeishi JinnoTakayoshi Endo
    • H01R13/11H01R4/18H01R13/115H01R13/193H01R13/422H01R13/627H01R11/22
    • H01R13/115H01R13/193H01R13/4223H01R13/6272H01R4/18
    • In a weak mating force female terminal forced with a base plate portion; a pair of elastic curled portions extending from both side ends of the base plate portion so as to be folded over an inner surface of the base plate portion; and a pair of electric contact portions each extending from a middle end of the elastic curled portion so as to bent outwardly along the inner surface of the base plate portion at an inner end of the elastic curled portion, in particular each of the elastic curled portions is formed with a primary inclinded guide portion extending upwardly and outwardly toward a male terminal insertion opening at an outer end of the elastic curled portion; and each of the electric contact portions is formed with a secondary inclined guide portion extending upwardly so as to intersect the primary inclined guide portion of the elastic curled portion at an outer end of the electric contact portion. Therefore, the male tab terminal can be mated with the female terminal smoothly by a weak mating force, in particular when the number of the terminals is large.
    • 在弱匹配力中,雌性终端用基板部分强制; 一对弹性卷曲部分,其从所述基板部分的两个侧端部延伸以折叠在所述基板部分的内表面上; 以及一对电接触部分,每个电接触部分从弹性卷曲部分的中端延伸,以在弹性卷曲部分的内端沿着基板部分的内表面向外弯曲,特别是每个弹性卷曲部分 形成有在弹性卷曲部分的外端处向上和向外朝向阳端子插入开口延伸的主要倾斜引导部分; 并且每个电接触部分形成有向上延伸的次级倾斜引导部分,以在电接触部分的外端处与弹性卷曲部分的主要倾斜引导部分相交。 因此,公接头端子可以通过弱配合力平滑地与母端子配合,特别是当端子数量大时。