会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 31. 发明授权
    • Wide range cylindrical mirror mount with radial clamp
    • US5847885A
    • 1998-12-08
    • US878466
    • 1997-06-18
    • David F. ArnoneMichael BrownellSherwin D. CabaticKhiem Ba Do
    • David F. ArnoneMichael BrownellSherwin D. CabaticKhiem Ba Do
    • G02B7/00G02B7/182G02B7/02
    • G02B7/1825G02B7/003
    • An improved optical mounting apparatus permits a single kinematically adjustable surface to be presented in either a horizontal or vertical orientation with respect to a support. A three point fastening system allows cylindrical optical elements of various sizes to be fastened to the kinematically adjustable surface in a horizontal orientation. The three point fastening system is removable so that when the kinematically adjustable surface is placed in a horizontal orientation transparent optical elements such as prisms can be fastened to the surface with an unobstructed optical path for a full 360.degree. around the mounting surface. The apparatus for mounting optical elements comprises a support, base plate, a pivot member, two adjustable projections, a stage plate, and at least three removable fasteners. The base plate includes first and third opposing faces and a second face at right angles to the first and third faces. The base plate has on its first and second faces, respectively, a first and a second fastening member, for fastening the first and third opposing faces in a horizontal orientation or a vertical orientation with respect to the support. The pivot member extends from the third face of the base plate. The two adjustable projections extend from the third face of the base plate. The two adjustable projections are arcuately separated by an angle of approximately 90.degree. with respect to the pivot member. The stage plate includes first and second opposing faces. The first face of the stage plate is spaced apart from the base plate by the pivot member and is arcuately disposed with respect to the base plate by the two adjustable projections. To lock the cylindrical optical elements of different diameters to the second face of the stage plate, at least three removable fasteners are provided.
    • 33. 发明授权
    • Precision component positioner
    • 精密元件定位器
    • US5400674A
    • 1995-03-28
    • US186743
    • 1994-01-25
    • David F. ArnoneFrancis S. Luecke
    • David F. ArnoneFrancis S. Luecke
    • G02B6/24G02B6/42G02B7/00G05G11/00F16H25/20
    • G02B7/004G02B6/4226Y10T74/18624Y10T74/20348Y10T74/20378
    • A precision component mounting and positioning apparatus comprises a frame member and a stage member suspended in the frame member. The frame member is adapted to be mounted on a support surface, and the stage member is adapted to receive a precision component, typically a precision optical component such as an optical fiber or waveguide. The stage member can be positionally adjusted relative to the frame member in five degrees of freedom. Three axially oriented actuators are grounded in the frame member to provide for selectively rotating the stage member about two orthogonally disposed transverse axes relative to the frame member as well as for axially translating the stage member relative to the frame member. A pair of orthogonally opposed transverse actuators are grounded in the frame member and oriented to provide for transverse translation of the stage member relative to the frame member.
    • 精密部件安装和定位装置包括框架构件和悬挂在框架构件中的平台构件。 框架构件适于安装在支撑表面上,并且台架构件适于接收精密部件,通常为诸如光纤或波导的精密光学部件。 舞台构件可以相对于框架构件以五个自由度进行位置调节。 三个轴向定向的致动器在框架构件中接地,以提供相对于框架构件围绕两个正交设置的横向轴线选择性地旋转平台构件,以及用于使平台构件相对于框架构件轴向平移。 一对正交相对的横向致动器在框架构件中接地并且被定向成提供平台构件相对于框架构件的横向平移。
    • 34. 发明授权
    • Laser source that generates a plurality of alternative wavelength output beams
    • 产生多个替代波长输出光束的激光源
    • US07848382B2
    • 2010-12-07
    • US12353223
    • 2009-01-13
    • Miles James WeidaRuss PritchettDavid F. Arnone
    • Miles James WeidaRuss PritchettDavid F. Arnone
    • H01S3/08H01S3/10
    • H01S5/141G01N21/3504H01S3/08059H01S3/105H01S3/1055H01S5/02248H01S5/02415H01S5/02453
    • A laser source (10) for emitting a set of sequential, different wavelength output beams (12) includes a gain medium (16), a feedback assembly (26) and a control system (30). The gain medium (16) includes a first facet (16A), and the gain medium (16) generates a beam (12A) that exits the first facet (16A). The feedback assembly (26) includes a feedback device (40) and a device mover (42). The feedback device (40) is positioned in the path of the beam (12A) that exits the first facet (16A) and the feedback device (40) redirects at least a portion of the beam (12A) back to the gain medium (16). The device mover (42) continuously adjusts an angle of incidence (θ) of the beam (12A) on the feedback device (40). The control system (30) selectively directs pulses of power to the gain medium (16) as the device mover (42) is continuously adjusting the angle of incidence (θ) of the beam (12A). Further, the laser source (10) can include a position detector (28) that generates a position signal that relates to the angle of incidence (θ) of the beam (12A) on the feedback device (40). In this embodiment, the control system (30) can selectively direct pulses of power to the gain medium (16) based on the position signal from the position detector (28). Further, the control system (30) can determine a center wavelength of the output beam (12) based on the position signal.
    • 用于发射一组顺序的不同波长输出光束(12)的激光源(10)包括增益介质(16),反馈组件(26)和控制系统(30)。 所述增益介质(16)包括第一刻面(16A),所述增益介质(16)产生离开所述第一刻面(16A)的光束(12A)。 反馈组件(26)包括反馈装置(40)和装置移动器(42)。 反馈装置(40)位于离开第一小面(16A)的光束(12A)的路径中,并且反馈装置(40)将光束(12A)的至少一部分重定向回增益介质(16) )。 装置移动器(42)连续调节反馈装置(40)上的梁(12A)的入射角(& L)。 当设备移动器(42)连续地调节光束(12A)的入射角(>)时,控制系统(30)有选择地将功率脉冲引导到增益介质(16)。 此外,激光源(10)可以包括位置检测器(28),其产生与反馈装置(40)上的光束(12A)的入射角(&θ)有关的位置信号。 在该实施例中,控制系统(30)可以基于来自位置检测器(28)的位置信号,有选择地将功率脉冲引导到增益介质(16)。 此外,控制系统(30)可以基于位置信号确定输出光束(12)的中心波长。
    • 35. 发明授权
    • Lenses, optical sources, and their couplings
    • 镜头,光源及其联轴器
    • US07535656B2
    • 2009-05-19
    • US11525384
    • 2006-09-22
    • Timothy DayDavid F. Arnone
    • Timothy DayDavid F. Arnone
    • G02B3/02H01L31/00
    • G02B3/00B82Y20/00G02B7/023H01S5/02288H01S5/02476H01S5/3401
    • A lens may operate in the mid-IR spectral region and couple highly divergent beams into highly collimated beams. In combination with a light source having a characteristic output beam, the lens may provide highly stable, miniaturized mid-IR sources that deliver optical beams. An advanced mounting system may provide long term sturdy mechanical coupling and alignment to reduce operator maintenance. In addition, devices may also support electrical and thermal subsystems that are delivered via these mounting systems. A mid-IR singlet lens having a numerical aperture greater than about 0.7 and a focal length less than 10 mm may be combined with a quantum well stack semiconductor based light source such that the emission facet of the semiconductor lies in the focus of the lens less than 2 mm away from the lens surface. Together, these systems may provide a package that is highly portable and robust, and easily integrated with external optical systems.
    • 透镜可以在中红外光谱区域中操作,并将高度发散的光束耦合到高度准直的光束中。 结合具有特征输出光束的光源,透镜可以提供高度稳定的,小型化的中红外光源,其传送光束。 先进的安装系统可以提供长期坚固的机械联接和对准,以减少操作人员的维护。 此外,设备还可以支持通过这些安装系统传送的电气和热系统。 具有大于约0.7的数值孔径和小于10mm的焦距的中红外单透镜可以与基于量子阱堆叠半导体的光源组合,使得半导体的发射小面位于透镜的焦点较少 距镜头表面2毫米以外。 一起,这些系统可以提供高度便携和坚固的包装,并且容易地与外部光学系统集成。
    • 36. 发明授权
    • Optical assembly with removable section
    • 具有可拆卸部分的光学组件
    • US07508602B2
    • 2009-03-24
    • US11585548
    • 2006-10-24
    • David F. ArnoneKen WallaceCarl Iacono
    • David F. ArnoneKen WallaceCarl Iacono
    • G02B7/02
    • G02B7/003G02B7/008G02B7/1822
    • An optical assembly (16) for a precision apparatus (10) includes an optical element (234) and a housing (230) that defines a housing cavity (244). The housing (230) includes a body section (238), a removable section (240) and a fastener assembly (242). The body section (238) is secured to an apparatus frame (12) of the precision apparatus (10). The removable section (240) retains the optical element (234) with the optical element (234) positioned in the housing cavity (244). The fastener assembly (242) selective secures the removable section (240) to the body section (238). With this design, the removable section (240) can be selectively removed to repair or replace the optical element (234) and the optical element (234) is supported by a rigid mechanical housing (230) so that the optical element (234) is less susceptible to long term or operating misalignments.
    • 用于精密设备(10)的光学组件(16)包括限定壳体空腔(244)的光学元件(234)和壳体(230)。 壳体(230)包括主体部分(238),可移除部分(240)和紧固件组件(242)。 主体部(238)固定在精密装置(10)的装置框架(12)上。 可拆卸部分(240)将光学元件(234)保持在光学元件(234)位于壳体空腔(244)中。 紧固件组件(242)选择性地将可移除部分(240)固定到主体部分(238)。 利用这种设计,可以选择性地去除可拆卸部分(240)以修复或更换光学元件(234),并且光学元件(234)由刚性机械壳体(230)支撑,使得光学元件(234) 不太容易长期或经营不对准。
    • 39. 发明授权
    • Linear output, closed loop mover assembly
    • 线性输出,闭环动力组件
    • US07323804B2
    • 2008-01-29
    • US10829413
    • 2004-04-21
    • Eric C. WilliamsDavid F. ArnoneManish Sharma
    • Eric C. WilliamsDavid F. ArnoneManish Sharma
    • H01L41/08
    • H02N2/0095B23Q1/34B23Q1/58B23Q5/50H02N2/101H02N2/126
    • A mover assembly (16) that moves or positions an object (12) along a first axis includes a motor (20) and a coupling assembly (22). The motor (20) includes a motor output (332) that is moved along the first axis and about the first axis. The coupling assembly (22) includes a stage (344) that couples the motor output (332) to the object (12) and a stage guide (346) that guides the motion of the stage (344) along the first axis. In one embodiment, the stage guide (346) is a linear bearing that allows for motion of the stage (344) along the first axis and inhibits motion of the stage (344) about the first axis, along a second axis and along a third axis. Additionally, the coupling assembly (22) can include a measurement system (28) that monitors the movement of the stage (344).
    • 沿着第一轴移动或定位物体(12)的动子组件(16)包括马达(20)和联接组件(22)。 马达(20)包括沿第一轴线和第一轴线移动的马达输出(332)。 联接组件(22)包括将马达输出(332)耦合到物体(12)的台(344)和引导台(344)沿着第一轴的运动的平台引导件(346)。 在一个实施例中,平台引导件(346)是线性轴承,其允许平台(344)沿着第一轴线的运动并且沿着第二轴线并沿着第三轴线阻止台架(344)围绕第一轴线的运动 轴。 另外,联接组件(22)可以包括监测台(344)的运动的测量系统(28)。
    • 40. 发明授权
    • Positionable multi-optic holder
    • 可定位多光学支架
    • US5936785A
    • 1999-08-10
    • US152352
    • 1998-09-14
    • Khiem Ba DoDavid F. Arnone
    • Khiem Ba DoDavid F. Arnone
    • G02B7/00G02B7/02
    • G02B7/00G02B7/004G02B7/021G02B7/023
    • An optic mount for holding an optic element in a light path is provided. The optic mount includes a base and a holder. A base and a holder are pivotally connected. The holder includes an optic bore. The optic bore is dimensioned to contain an optical element. Arcuate movement of the holder with respect to the base allows an optic element to be moved from a first position, in which the light path passes through the optic bore to a second position in which the optic bore avoids the light path. In another embodiment of the invention, a modular configuration of optic mounts for holding a plurality of optic elements in a light path is provided. The modular configuration includes at least two base and holder pairs. Each base and holder are pivotally connected. Each holder includes an optic bore. The optic bores of both holders are dimensioned to hold an optical element. The first and second bases are aligned by complementary interlocking elements on the opposing faces of each of the base units. Arcuate movement of each holder with respect to its base allows optic elements to be moved individually from a first position in which the light path passes through the optic bore to a second position in which the optic bore avoids the light path. The optic bores can clamp thin optic elements axially and thick optic elements radially.
    • 提供了用于在光路中保持光学元件的光学安装座。 光学支架包括基座和支架。 基座和支架枢轴连接。 支架包括一个光学孔。 光学孔的尺寸被设计成包含光学元件。 保持器相对于基座的弓形运动允许光学元件从第一位置移动,其中光路通过光学孔到达第二位置,光纤孔避开光路。 在本发明的另一个实施例中,提供了用于在光路中保持多个光学元件的光学安装座的模块化配置。 模块化配置包括至少两个基座和保持器对。 每个基座和支架枢转连接。 每个支架包括一个光学孔。 两个支架的光学孔的尺寸被设计成保持光学元件。 第一和第二基座在每个基座单元的相对面上的互补互锁元件对准。 每个保持器相对于其底座的弓形运动允许光学元件从光路通过光学孔的第一位置分别移动到光孔避开光路的第二位置。 光学孔可以径向夹紧细小的光学元件轴向和厚的光学元件。