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    • 2. 发明授权
    • Method and apparatus for probe sensor assembly
    • 探头传感器组件的方法和装置
    • US06788054B2
    • 2004-09-07
    • US10281061
    • 2002-10-25
    • Duane Zedric CollinsSamuel Roland PalfenierMark Anthony ShostStephen G PaddockDavid W Lehrschall
    • Duane Zedric CollinsSamuel Roland PalfenierMark Anthony ShostStephen G PaddockDavid W Lehrschall
    • G01R3300
    • G01D11/245
    • A sensor package and method of making the same is disclosed in which the sensor package includes a sensor component for electromagnetic sensing having a holder assembly with the sensor component disposed at one end and sensor terminals in electrical communication with the sensor component extending from an opposite end. A harness assembly having a harness head configured with harness terminals extending therefrom for electrical connection with corresponding sensor terminals. The holder assembly and harness head are configured with a means for snap-fit assembly that provides space to mechanically connect corresponding sensor terminals and harness terminals with each other forming a resultant subassembly for insertion into a sensor housing. The housing further includes a heat-staked interface with the harness head that secures the subassembly relative to the sensor housing. A bracket and an elastomeric seal may be disposed in corresponding grooves configured on the sensor housing to complete assembly of the sensor package.
    • 公开了一种传感器封装及其制造方法,其中传感器封装包括用于电磁感测的传感器部件,其具有保持器组件,传感器部件设置在一端,传感器端子与传感器部件电连通,传感器部件从相对端延伸 。 一种线束组件,其具有线束头,其配置有从其延伸的线束端子,用于与相应的传感器端子电连接。 保持器组件和线束头构造有用于卡扣组合的装置,其提供空间以将相应的传感器端子和线束端子彼此机械连接,形成用于插入传感器壳体的合成子组件。 所述壳体还包括与所述线束头相连的固定在所述传感器壳体上的热压接口。 支架和弹性体密封件可以设置在配置在传感器外壳上的相应凹槽中以完成传感器封装的组装。
    • 3. 发明授权
    • Method and apparatus for probe sensor assembly
    • 探头传感器组件的方法和装置
    • US06851306B2
    • 2005-02-08
    • US10229237
    • 2002-08-27
    • Mark Anthony ShostDuane Zedric CollinsSamuel Roland Palfenier
    • Mark Anthony ShostDuane Zedric CollinsSamuel Roland Palfenier
    • G01P1/00G01P1/02G01P3/488G01M15/00
    • G01P1/026G01P1/00G01P3/488Y10T403/1616
    • A sensor package and method of making the same is disclosed in which the sensor package includes a sensor component for electromagnetic sensing having a sensor body with a sensor tip at one end. A sensor housing having a cavity for receiving the sensor component is disposed in a substrate and is aligned with an object to be sensed. The housing further includes a snap-fit interface with the sensor component that is configured to admit and secure the sensor tip during assembly thereof. A bracket is mechanically fixable to the substrate at a first end and is in operable communication with the sensor tip at a second end. The bracket is configured to bias the sensor tip towards the object to be sensed for elimination of an internal air gap between the sensor tip and housing formed during assembly thereof.
    • 公开了传感器封装及其制造方法,其中传感器封装包括用于电磁感测的传感器部件,其具有在一端具有传感器端头的传感器主体。 具有用于接收传感器部件的空腔的传感器壳体设置在基板中并与被感测物体对准。 壳体还包括与传感器部件的卡扣配合接口,其配置成在组装时允许和固定传感器尖端。 托架在第一端机械地固定到基板,并且在第二端处可与传感器端头可操作地连通。 支架构造成将传感器尖端朝向要被感测的物体偏置,以消除传感器尖端与在其组装期间形成的壳体之间的内部空气间隙。
    • 6. 发明授权
    • Mounting bracket for holding sensor assembly together
    • 用于将传感器组件保持在一起的安装支架
    • US06774623B2
    • 2004-08-10
    • US10268559
    • 2002-10-10
    • Samuel Roland PalfenierStephen G Paddock
    • Samuel Roland PalfenierStephen G Paddock
    • G12B904
    • G01D11/245G01D11/30
    • In an electronic sensor having a spool assembly and a housing cap, the spool assembly has a pair of grooves formed in the exterior surface and located diametrically opposed from each other. The housing cap has a pair of apertures configured and positioned in the cap to align with the grooves in the spool. The grooves and aperture are configured for receiving portions of a mounting bracket. When the mounting bracket is installed on the electronic sensor, a radial spring in communication with the spool assembly and housing cap maintains the mounting bracket in a locked relationship with the spool assembly and housing cap and minimizes the stack up tolerances from a reference surface to the tip of the electronic sensor.
    • 在具有线轴组件和壳体盖的电子传感器中,线轴组件具有形成在外表面中并且彼此径向相对定位的一对槽。 外壳盖具有一对孔,其构造和定位在盖中以与卷轴中的槽对准。 凹槽和孔被构造成用于容纳安装支架的部分。 当安装托架安装在电子传感器上时,与卷轴组件和壳体盖连通的径向弹簧将安装支架保持与卷轴组件和壳体盖处于锁定关系,并使从参考表面到 电子传感器的尖端。
    • 7. 发明授权
    • Vehicle variable reluctance sensor
    • 车辆可变磁阻传感器
    • US06424144B1
    • 2002-07-23
    • US09540027
    • 2000-03-31
    • Samuel Roland PalfenierCecilia Hernandez
    • Samuel Roland PalfenierCecilia Hernandez
    • G01P344
    • G01P1/026G01P3/488
    • A vehicle variable reluctance sensor includes a hollow generally cylindrical sensor housing with an open proximal end. Within the interior of the sensor housing is a coil wound around a “T”-shaped spool. The coil is connected to two electrical terminals by two electrical leads. A channel is formed in the spool between the coil and the electrical leads and the electrical leads are disposed within the channel. The channel is flanked on each side by a lip that extends outwardly from the spool. If the electrical leads become slack under extreme temperatures, the configuration of the channel, in conjunction with the lips, prevents the electrical leads from coming out of the channel and unwinding the coil. As such, it is not necessary to tape the coil or otherwise immerse the coil in varnish to prevent the coil from unwinding.
    • 车辆可变磁阻传感器包括具有开放近端的中空的大致圆柱形的传感器壳体。 在传感器外壳的内部是卷绕在“T”形卷轴上的线圈。 线圈通过两根电线连接到两个电气端子。 在线圈和电引线之间的线轴中形成通道,并且电引线设置在通道内。 通道在每一侧都由一个从卷轴向外延伸的唇缘。 如果电气引线在极端温度下变得松弛,则通道的配置与唇缘结合可以防止电线从通道中脱出并退绕线圈。 因此,不需要将线圈胶带或以其他方式将线圈浸入清漆中以防止线圈展开。
    • 8. 发明授权
    • Target wheel sensor
    • 目标轮传感器
    • US06249118B1
    • 2001-06-19
    • US09447484
    • 1999-11-23
    • Samuel Roland Palfenier
    • Samuel Roland Palfenier
    • G01P348
    • G01P3/487G01P3/48
    • A target wheel sensor includes a sensing structure (112) disposed within a hollow sensor housing (102). The sensing structure (112) has a T-shaped spool (114) that includes a pole piece holder (116) that terminates in a magnet holder (118). Moreover, a pole piece (120) and a magnet (122) are slidably engaged within the pole piece holder (16) and the magnet holder (118) respectively. The magnet (122) and the pole piece (120) are magnetically coupled so that the pole piece (120) is magnetized by the magnet. Also, the magnet (122) and the pole piece (120) are physically coupled so that they move in unison within the sensing structure (112). A metal target wheel (130) having one or more teeth (132) is provided and works in conjunction with the sensor (100). The target wheel (130) is placed in proximity to the sensor (100) and as the target wheel (130) rotates and a tooth (132) passes by the sensor (100) the force of magnetic attraction between the pole piece (120) and the tooth (132) will draw the pole piece (120) toward the target wheel (130) and into the extended position. As the target wheel (130) continues to rotate, the tooth (132) will move away from the pole piece (120) causing the magnetic force to lessen and allowing the pole piece (120) to return to the retracted position under the influence of a spring (128).
    • 目标轮传感器包括设置在空心传感器壳体(102)内的检测结构(112)。 感测结构(112)具有T形卷轴(114),其包括终止于磁体保持器(118)中的极片夹持器(116)。 此外,极片(120)和磁体(122)分别可滑动地接合在极片保持器(16)和磁体保持器(118)内。 磁体(122)和极片(120)磁耦合,使得极片(120)被磁体磁化。 此外,磁体(122)和极片(120)物理耦合,使得它们在感测结构(112)内一致地移动。 提供具有一个或多个齿(132)的金属目标轮(130)并与传感器(100)结合工作。 目标轮130放置在传感器100附近,并且当目标轮130旋转并且齿132通过传感器100时,磁极120之间的磁吸力的力就被传递到传感器100。 并且所述齿(132)将所述极片(120)朝向所述目标轮(130)拉伸并延伸到所述伸出位置。 当目标轮(130)继续旋转时,齿(132)将远离极片(120)移动,导致磁力减小并允许极片(120)在受影响的影响下返回缩回位置 一个弹簧(128)。
    • 9. 发明授权
    • Throttle control cartridge with double cam to force idle position
    • 节气门控制盒带双凸轮,以强制空转位置
    • US07735470B2
    • 2010-06-15
    • US12008231
    • 2008-01-09
    • Samuel Roland PalfenierManuel A Quintana
    • Samuel Roland PalfenierManuel A Quintana
    • F02D11/02F02D11/04
    • F02D11/04B62K23/04Y10T74/20828
    • A throttle control cartridge has a circuit board carrying a Hall-effect sensor, the position of which is fixed in a housing carrying a cam. A shaft carrying a magnet is rotatably and translatably disposed with respect to the housing and carries a cam follower that engages the cam and translates the shaft with respect to the housing when the shaft is rotated with respect to the housing in at least one of two opposed angular directions. The cam and the cam follower have at least first and second pairs of cam surfaces in which a first cam surface is disposed at a different cam or helix angle then the second cam surface. A redundant stop is cooperatively formed between the cam follower and splines on the shaft to limit axial translation of the cam follower in one direction of rotation of the shaft relative to the housing.
    • 节气门控制盒具有承载霍尔效应传感器的电路板,其位置固定在承载凸轮的壳体中。 承载磁体的轴可相对于壳体可旋转地并且可平移地设置,并且当相对于壳体在两个相对的壳体中的至少一个中相对于壳体旋转时,承载凸轮从动件,该凸轮从动件与凸轮接合并使轴相对于壳体平移 角度方向 凸轮和凸轮从动件具有至少第一和第二对凸轮表面,其中第一凸轮表面设置在与第二凸轮表面不同的凸轮或螺旋角处。 在凸轮从动件和轴之间的花键之间协同地形成冗余​​止动件,以限制凸轮从动件相对于壳体的一个旋转方向的轴向平移。
    • 10. 发明授权
    • Linear velocity sensor and method for reducing non-linearity of the sensor output signal
    • 线性速度传感器和减少传感器输出信号非线性的方法
    • US06876194B2
    • 2005-04-05
    • US10373432
    • 2003-02-26
    • Yingjie LinSteven Douglas ThomsonSamuel Roland Palfenier
    • Yingjie LinSteven Douglas ThomsonSamuel Roland Palfenier
    • G01P3/52G10P3/46
    • G01P3/52
    • Linear velocity sensor and method for reducing non-linearity in the output signal of the sensor are provided. The sensor comprises a ferromagnetic housing including an opening. The sensor further comprises a spool disposed in the housing. The spool includes a bore for receiving a slidable ferromagnetic rod. The ferromagnetic rod may be extendable through the opening in the housing. A magnet is mounted at the one end of the rod distal from the opening when the rod is substantially inserted in the bore. A coil is wound on the spool. The number of turns of the coil is arranged to taperingly increase as the coil progresses from an end of the spool proximate the opening in the housing to the opposite end of the spool. The tapering arrangement for the number of turns of the coil is selected to reduce non-linearity of an output signal of the coil indicative of linear velocity.
    • 提供了线速度传感器和减小传感器输出信号非线性的方法。 该传感器包括一个包含开口的铁磁壳体。 传感器还包括设置在壳体中的线轴。 线轴包括用于容纳滑动铁磁棒的孔。 铁磁棒可以通过壳体中的开口延伸。 当杆基本上插入孔中时,磁体安装在远离开口的杆的一端。 线圈缠绕在线轴上。 线圈的匝数被布置为随着线圈从靠近壳体中的开口的线轴的端部前进到线轴的相对端而逐渐增加。 选择用于线圈匝数的渐缩布置以减少线圈的输出信号的线性,其指示线速度。