Wavelength dispersion probing system
    1.
    发明授权
    Wavelength dispersion probing system 失效
    波长色散探测系统

    公开(公告)号:US07020360B2

    公开(公告)日:2006-03-28

    申请号:US10495415

    申请日:2002-11-12

    IPC分类号: G02B6/26 G01N21/00

    CPC分类号: G01M11/3172 G01M11/3163

    摘要: A wavelength dispersion probing system for determining a value of wavelength dispersion and its sign and reducing the trouble and time required for this determination. This wavelength dispersion probing system comprises light sources 10, 12, light attenuators 14, 16, optical multiplexer 18, phase modulator 20, optical amplifiers 22, 26, acoustooptical modulator 24, optical receiver 30. The intensity ratio of two wavelengths is set at 1 to 2 to detect Stokes light or anti-Stokes light included in the return light of an optical fiber 100 by the optical receiver 30, so that wavelength dispersion is probed. The wavelength dispersion is probed by changing the intensity ratio of the two wavelengths to observe the state of the change of the wavelength dispersion, so that the sign of wavelength dispersion is determined by the optical receiver 30.

    摘要翻译: 用于确定波长色散值及其符号的波长色散探测系统,并减少该确定所需的故障和时间。 该波长色散探测系统包括光源10,12,光衰减器14,16,光复用器18,相位调制器20,光放大器22,26,声光调制器24,光接收器30。 两个波长的强度比被设定为1〜2,以通过光接收器30检测包括在光纤100的返回光中的斯托克斯光或反斯托克斯光,从而探测波长色散。 通过改变两个波长的强度比来探测波长色散,观察波长色散变化的状态,从而由光接收器30确定波长色散的符号。

    Connector with lock piece that longitudinally deforms
    2.
    发明授权
    Connector with lock piece that longitudinally deforms 有权
    具有纵向变形的锁定件的连接器

    公开(公告)号:US06796837B2

    公开(公告)日:2004-09-28

    申请号:US10606541

    申请日:2003-06-26

    IPC分类号: H01R1340

    CPC分类号: H01R13/4223

    摘要: A connector housing (30) has a cavity (31) and a resiliently deformable lock (40) cantilevers forwardly from a wall (35) of the cavity (31) for engaging a locking surface (24) of a terminal fitting (10) inserted into the cavity (31). A base end of the lock (40) has a thinned portion (52). A backward pulling force on the female terminal fitting (10) creates a compressive force on the lock (40) in the longitudinal direction. Thus, the lock (40) undergoes such a resilient deformation at the thinned portion (52) that the length (L1) of the lock (40) becomes shorter than its natural length (L0). Buckling strength is enhanced by as much as the lock (40) is shortened and, as a result, a force for locking the female terminal fitting (10) is enhanced.

    摘要翻译: 连接器壳体(30)具有腔(31)和弹性可变形的锁(40),其从空腔(31)的壁(35)向前悬伸,用于接合插入的端子接头(10)的锁定表面(24) 进入空腔(31)。 锁(40)的基端具有变薄部分(52)。 阴端子接头(10)上的向后拉力在纵向方向上在锁(40)上产生压缩力。 因此,锁(40)在减薄部分(52)处经历这样的弹性变形,使得锁(40)的长度(L1)变得短于其自然长度(L0)。 随着锁(40)的缩短,弯曲强度得到提高,结果,增强了用于锁定阴端子接头(10)的力。

    Connector and a method of assembling it
    3.
    发明授权
    Connector and a method of assembling it 有权
    连接器和组装方法

    公开(公告)号:US06702627B2

    公开(公告)日:2004-03-09

    申请号:US10316221

    申请日:2002-12-10

    IPC分类号: H01R13436

    CPC分类号: H01R13/4361

    摘要: A connector has a housing (1) and retainer mount hole (8) is open in the housing (1) from its bottom surface over to its opposite side surfaces. Upon being moved from a partial locking position to a full locking position, A retainer (7) can be moved from a partial locking position to a full locking position and is guided obliquely forward by guides (22-25). Thus, the retainer (7) can be constantly guided to a specified position regardless of a variation in the fitted position of the retainer (7) in the retainer mount hole (8) along forward and backward directions. Since the retainer (7) and terminal fittings (4) can constantly have a proper positional relationship, a problem of a varying function of the retainer (7) to detect the insufficiently inserted states of the terminal fittings (4) due to a variation in the fitted position of the retainer (7) can be solved.

    摘要翻译: 连接器具有壳体(1),并且保持器安装孔(8)在壳体(1)中从其底表面开放到其相对的侧表面。 当从部分锁定位置移动到完全锁定位置时,保持器(7)可以从部分锁定位置移动到完全锁定位置,并被引导件(22-25)倾斜向前引导。 因此,无论保持器安装孔(8)中的保持器(7)的装配位置沿前后方向的变化如何,都可以将保持器(7)恒定地引导到指定位置。 由于保持器(7)和端子配件(4)能够不断地具有适当的位置关系,所以保持器(7)的功能变化的问题是为了检测端子接头(4)由于变化而不能插入的状态不足 可以解决保持器(7)的装配位置。

    Card edge connector
    4.
    发明授权

    公开(公告)号:US06547577B2

    公开(公告)日:2003-04-15

    申请号:US10029274

    申请日:2001-12-28

    IPC分类号: H01R2900

    CPC分类号: H01R12/721 H01R13/4538

    摘要: In order to prevent terminal fittings of a card edge connector from short circuiting, a housing 11 is provided with a short circuit preventing member 50 made from insulating material. This short circuit preventing member 50 can be moved between a short circuit preventing position, between resilient contacts 42 of terminal fittings 40 provided at mutually opposing upper and lower locations, and a retreated position, which is to the posterior of the short circuit preventing position. Since the upper and lower terminal fittings 40 are prevented from short circuiting when the short circuit preventing member 50 is in the short circuit preventing position, the resilient contacts 42 are bendable to a greater degree, thus increasing their contacting force with contacts of a card edge connector.

    Split-type connector assembly and method of assembling it
    5.
    发明授权
    Split-type connector assembly and method of assembling it 失效
    分体式连接器组件及其组装方法

    公开(公告)号:US07063577B2

    公开(公告)日:2006-06-20

    申请号:US10431884

    申请日:2003-05-08

    IPC分类号: H01R13/502

    摘要: A male connector (M) has male housings (20A, 20B, 20C) and is connectable with a female connector (F) with female housings (40A, 40B, 40C). Error connection preventing projections (28A, 28B) of the male housings (20A, 20B) are received in receiving portions (47A, 47B) of the female housings (40A, 40B) to connect the two connectors (M, F) properly if the combination of the housings in the male and female connectors (M, F) is correct. However, the error connection preventing projections (28A, 28B) on the male housings (20A, 20B) interfere with opposed the female housings (40B, 40C) and hinder connection of the two connectors (M, F) if the combination of housings is incorrect.

    摘要翻译: 阳连接器(M)具有阳壳体(20A,20B,20C),并且可与具有阴壳体(40A,40B,40C)的阴连接器(F)连接。 阳壳体(20A,20B)的错误连接防止突起(28A,28B)被容纳在阴壳体(40A,40B)的接收部分(47A,47B)中,以将两个连接器 (M,F)的外壳组合正确时,请适当地使用(M,F)。 然而,阳壳体(20A,20B)上的错误连接防止突起(28A,28B)与阴壳体(40B,40C)相对地干涉并妨碍两个连接器(M,F)的连接, 如果外壳的组合不正确。

    Wavelength dispersion probing system
    6.
    发明申请
    Wavelength dispersion probing system 失效
    波长色散探测系统

    公开(公告)号:US20050094936A1

    公开(公告)日:2005-05-05

    申请号:US10495415

    申请日:2002-11-12

    IPC分类号: G01M11/00 G01M11/02 G02B6/26

    CPC分类号: G01M11/3172 G01M11/3163

    摘要: A wavelength dispersion probing system for determining a value of wavelength dispersion and its sign and reducing the trouble and time required for this determination. This wavelength dispersion probing system comprises light sources 10, 12, light attenuators 14, 16, optical multiplexer 18, phase modulator 20, optical amplifiers 22, 26, acoustooptical modulator 24, optical receiver 30. The intensity ratio of two wavelengths is set at 1 to 2 to detect Stalk light or anti-Stalk light included in the return light of an optical fiber 100 by the optical receiver 30, so that wavelength dispersion is probed. The wavelength dispersion is probed by changing the intensity ratio of the two wavelengths to observe the state of the change of the wavelength dispersion, so that the sign of wavelength dispersion is determined by the optical receiver 30.

    摘要翻译: 用于确定波长色散值及其符号的波长色散探测系统,并减少该确定所需的故障和时间。 该波长色散探测系统包括光源10,12,光衰减器14,16,光复用器18,相位调制器20,光放大器22,26,声光调制器24,光接收器30。 两个波长的强度比被设定为1〜2,以便通过光接收器30来检测包括在光纤100的返回光中的Stalk光或反Stalk光,从而探测波长色散。 通过改变两个波长的强度比来探测波长色散,观察波长色散变化的状态,从而由光接收器30确定波长色散的符号。

    Connector, a disengagement jig and a method
    7.
    发明授权
    Connector, a disengagement jig and a method 有权
    连接器,分离夹具和方法

    公开(公告)号:US06796836B2

    公开(公告)日:2004-09-28

    申请号:US10364844

    申请日:2003-02-11

    IPC分类号: H01R1340

    摘要: A female housing (10) has cavities (11) into which female terminal fittings (30) are insertable from behind. A lock (13) projects forward from its base end and is restorable after being temporarily resiliently deformed by the female terminal fitting (30) being inserted, thereby engaging and locking the female terminal fitting (30) in the cavity (11). Maneuverable recesses (24) maneuverable by a disengagement jig (60) from front are provided at positions on the front surface of each lock (13) retracted from the locked terminal fitting (30) and within a width range of a locking surface of the lock (13) engageable with the terminal fitting (30) and located more toward the base end of the locking portion than the locking surface.

    摘要翻译: 阴壳体(10)具有空腔(11),阴端子配件(30)可从后面插入。 锁(13)从其基端向前突出,并且在被插入的阴端子接头(30)暂时弹性变形之后可恢复,从而将阴端子接头(30)接合并锁定在空腔(11)中。 在从锁定的端子接头(30)缩回并且在锁定的锁定表面的宽度范围内的位置处,设置有从前面由分离夹具(60)可操纵的可操纵的凹部(24) (13)可与端子接头(30)接合并且比锁定表面更靠近锁定部分的基端。

    Terminal fitting, connector provided therewith and method for producing the terminal fitting
    8.
    发明授权
    Terminal fitting, connector provided therewith and method for producing the terminal fitting 有权
    端子接头,连接器及其制造方法

    公开(公告)号:US06752660B2

    公开(公告)日:2004-06-22

    申请号:US10238132

    申请日:2002-09-09

    IPC分类号: H01R1340

    摘要: A terminal fitting (30) has a rectangular tubular main body (31) with a ceiling wall (33), first and second sidewalls (34, 35) extending down from the opposite sides of the ceiling wall (33), a bottom wall (36) projecting from the first sidewall (34) to face the ceiling wall (33), and an outer wall (37) projecting from the second side wall (35) and placed on the outer side of the bottom wall (36). A front-portion holding piece (50) projects from a front portion (37a) of the outer wall (37) and engages a front-portion holding groove (51) in the first sidewall (34). A restrictable projection (70) is provided at the rear end of the front-portion holding piece (50), and engages a restricting groove (71) of the front-portion holding groove (51) for restricting an opening deformation of the outer wall (37).

    摘要翻译: 端子接头(30)具有带有顶壁(33)的矩形管状主体(31),从天花板壁(33)的相对侧向下延伸的第一和第二侧壁(34,35),底壁 从所述第一侧壁(34)突出以面对所述顶壁(33),以及从所述第二侧壁(35)突出并设置在所述底壁(36)的外侧上的外壁(37)。 前部保持片(50)从外壁(37)的前部(37a)突出并与第一侧壁(34)中的前部保持槽(51)接合。 在前部保持片(50)的后端设置有可限制的突起(70),与前部保持槽(51)的限制槽(71)接合,限制外壁的开口变形 (37)。

    Measurement method for optical short-pulse waveform
    9.
    发明授权
    Measurement method for optical short-pulse waveform 失效
    光学短脉冲波形测量方法

    公开(公告)号:US5909659A

    公开(公告)日:1999-06-01

    申请号:US807636

    申请日:1997-02-27

    申请人: Shinya Fujita

    发明人: Shinya Fujita

    IPC分类号: G01J11/00

    CPC分类号: G01J11/00

    摘要: The present invention is directed toward realizing a measurement method that enables finding the intensity waveform of optical short-pulse as well as the change in chirp frequency over time at a high resolution. Such a method involves irradiating an optical short-pulse that is to be measured at a delay time .tau. upon a first photoconductor that enters a conductive state when irradiated by light and upon a second photoconductor that enters a conductive state only when irradiated by light while the first photoconductor is in a conductive state. In this way, the autocorrelation waveform of optical short-pulse that is to be measured is found; the result F(.omega.) of a Fourier transform of the autocorrelation waveform of optical short-pulse to be measured is found; and this result is divided by the result of a Fourier transform of the cross-correlated waveform h.sub.12 (.tau.) of the impulse response waveform h.sub.1 (t) of the first photoconductor and the impulse response waveform h.sub.2 (t) of the second photoconductor to find the intensity power spectrum .vertline.I(.omega.).vertline..sup.2 from which the response characteristics of the photoconductors are eliminated, and finding short-pulse waveform from above-described .vertline.I(.omega.).vertline..sup.2 and field power spectrum .vertline.E(.omega.).vertline..sup.2.

    摘要翻译: 本发明旨在实现能够以高分辨率找到光学短脉冲的强度波形以及啁啾频率随时间的变化的测量方法。 这样的方法包括在被光照射时进入导通状态的第一感光体和仅在光照射时进入导电状态的第二感光体上以延迟时间τT照射待测量的光学短脉冲,同时 第一光电导体处于导电状态。 以这种方式,找到要测量的光学短脉冲的自相关波形; 找到要测量的光短脉冲的自相关波形的傅里叶变换的结果F(ω); 并且将该结果除以第一光电导体的脉冲响应波形h1(t)和第二感光体的脉冲响应波形h2(t)的互相关波形h12(τ)的傅立叶变换的结果,以找到 消除光电导体的响应特性的强度功率谱| I(ω)| 2,从上述| I(ω)| 2和场功率谱| E(ω)| 2找到短脉冲波形 。