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
    • 84. 发明授权
    • Grin lens microscope system
    • Grin镜片显微镜系统
    • US07969659B2
    • 2011-06-28
    • US12008486
    • 2008-01-11
    • Stephen C. JacobsenDavid P. Marceau
    • Stephen C. JacobsenDavid P. Marceau
    • G02B3/00
    • G02B21/0008A61B1/00188G02B3/0087G02B6/08G02B6/32G02B21/36G02B23/2407
    • A device for magnifying an object comprising an SSID having at least one imaging array disposed on a distal end thereof. The device further comprises a first optical element disposed on the distal end of the SSID wherein the first optical element has a distal end and a proximal end defining a first longitudinal length. A GRIN lens is disposed on the distal end of the first optical element and a second optical element is disposed on the distal end of the GRIN lens defining a second longitudinal length. The first longitudinal length and the second longitudinal length are configured such that when viewing the object at a predetermined wavelength of light, the object is magnified at a predetermined level of magnification and the focal plane of the magnified object is aligned at the proximal end of the first optical element.
    • 一种用于放大对象​​的装置,包括具有设置在其远端上的至少一个成像阵列的SSID。 该装置还包括设置在SSID的远端上的第一光学元件,其中第一光学元件具有限定第一纵向长度的远端和近端。 GRIN透镜设置在第一光学元件的远端上,并且第二光学元件设置在限定第二纵向长度的GRIN透镜的远端上。 第一纵向长度和第二纵向长度被配置成使得当以预定波长的光线观察物体时,物体以预定的放大倍率放大,并且放大物体的焦平面在 第一光学元件。
    • 86. 发明授权
    • Miniaturized imaging device including utility aperture and SSID
    • 小型化成像装置,包括实用孔径和SSID
    • US07787939B2
    • 2010-08-31
    • US10391490
    • 2003-03-17
    • Stephen C. JacobsenDavid T. MarkusRalph W. Pensel
    • Stephen C. JacobsenDavid T. MarkusRalph W. Pensel
    • A61B6/00
    • A61B1/05H04N2005/2255
    • The present invention is drawn toward miniaturized imaging devices. In one embodiment, the device can include a utility guide having at least one aperture configured for supporting utilities, and an SSID carried by the utility guide. The SSID can include an imaging array on a top surface, and a conductive element on a side surface, wherein the imaging array is electrically coupled to the conductive element. Further, a lens can be optically coupled to the imaging array, and an umbilical, including a conductive line, can be carried by the at least one aperture. The conductive line can be electrically coupled to the conductive element on the side surface of the SSID. Alternatively, the device can include an SSID having, as an integral structure, an imaging array electrically coupled to a conductive pad, wherein the SSID further includes at least one utility aperture passing therethrough. Further, a lens can be optically coupled to the imaging array, and an umbilical, including a conductive line carried by the at least one aperture, can be configured such that the conductive line is directly electrically coupled to the conductive pad.
    • 本发明涉及小型化成像装置。 在一个实施例中,设备可以包括具有配置用于支持实用程序的至少一个孔的实用指南,以及由该实用指南携带的SSID。 SSID可以包括顶表面上的成像阵列和侧表面上的导电元件,其中成像阵列电耦合到导电元件。 此外,透镜可以光耦合到成像阵列,并且包括导线的脐带可以被至少一个孔承载。 导电线可以电耦合到SSID的侧表面上的导电元件。 或者,该装置可以包括SSID,SSID具有电耦合到导电垫的成像阵列作为整体结构,其中SSID还包括通过其中的至少一个效用孔。 此外,透镜可以光学耦合到成像阵列,并且包括由至少一个孔承载的导电线的脐带可以被配置为使得导线直接电耦合到导电垫。
    • 87. 发明授权
    • Pressure control valve having an asymmetric valving structure
    • 具有不对称阀结构的压力控制阀
    • US07779863B2
    • 2010-08-24
    • US11824540
    • 2007-06-29
    • Stephen C. JacobsenShane OlsenMichael Morrison
    • Stephen C. JacobsenShane OlsenMichael Morrison
    • F15B13/04
    • F15B11/044F15B11/042F15B2211/30565F15B2211/30575F15B2211/50554F15B2211/528G05D16/18Y10T137/0396Y10T137/7765Y10T137/87201Y10T137/87225
    • The present invention describes, generally, a method and system for controlling the dynamics of an actuatable load functioning or operable within a servo or servo-type system, wherein the dynamics of the load are controlled by way of a unique asymmetric pressure control valve configured to provide intrinsic pressure regulation. The asymmetric pressure control valve, which may be referred to as a dynamic pressure regulator because of its capabilities, utilizes different sized free floating spools that are physically independent of one another and freely supported in interior cavities of respective corresponding different sized valving components that make up the valve body to regulate the pressures acting within the overall system between the control or pilot pressure and the load or load pressure. The dual spools of the pressure control valve, although physically independent of one another, function in cooperation with one another in an attempt to maintain a state of equilibrium in the system, namely to keep pressure acting on or within the actuator (the load pressure), or the feedback pressure corresponding to the load pressure, the same as the control or pilot pressure. Moreover, pressure regulation and control is intrinsic to the asymmetric pressure control valve because of the configuration and function of the dual spools and the feedback system acting on the spools, thus eliminating the need for electronically or mechanically user controlled systems.
    • 本发明总体上描述了一种用于控制在伺服或伺服型系统中起作用或可操作的可致动负载的动力学的方法和系统,其中负载的动力学通过独特的非对称压力控制阀来控制, 提供内在的压力调节。 不对称压力控制阀由于其功能而被称为动态压力调节器,它利用不同尺寸的自由浮动阀芯,它们在物理上彼此独立并且自由地支撑在组成相应不同尺寸阀门部件的内腔中 阀体调节在整个系统内作用于控制或先导压力与负载或负载压力之间的压力。 压力控制阀的双线轴虽然在物理上彼此独立,但彼此配合起作用,以维持系统中的平衡状态,即保持作用在致动器上或其内的压力(负载压力) ,或与负载压力相对应的反馈压力,与控制或先导压力相同。 此外,由于双线轴和作用在线轴上的反馈系统的配置和功能,压力调节和控制对于非对称压力控制阀是固有的,因此无需电子或机械用户控制的系统。