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
    • 33. 发明申请
    • XSLIT CAMERA
    • US20160253824A1
    • 2016-09-01
    • US15026768
    • 2014-10-03
    • Jingyi YUJinwei YEYu JI
    • Jingyi YuJinwei YeYu Ji
    • G06T11/00H04N5/225G06T5/00H04N13/02
    • G06T11/003G06T5/001H04N5/222H04N5/2253H04N5/2254H04N5/23209H04N13/204
    • Multi-perspective cameras, systems and methods for reconstructing a scene are provided. Light representing a scene is directed through a lens module coupled to an imaging sensor. The lens module includes: first and second cylindrical lenses positioned along an optical axis of the imaging sensor, and first and second slit-shaped apertures disposed on the respective first and second cylindrical lenses. A cylindrical axis of the second cylindrical lens is arranged at an angle away from parallel with respect to a cylindrical axis of the first cylindrical lens. The light directed through the lens module is captured by the imaging sensor to form at least one multi-perspective image. The at least one multi-perspective image is processed to determine a reconstruction characteristic of the scene.
    • 提供了多视角相机,用于重建场景的系统和方法。 表示场景的光被引导通过耦合到成像传感器的透镜模块。 透镜模块包括:沿着成像传感器的光轴定位的第一和第二柱面透镜,以及设置在相应的第一和第二柱面透镜上的第一和第二狭缝状孔。 第二柱面透镜的圆柱轴线相对于第一柱面透镜的圆柱轴线成平行的角度布置。 通过透镜模块引导的光被成像传感器捕获以形成至少一个多视角图像。 处理至少一个多视角图像以确定场景的重建特性。
    • 34. 发明申请
    • COMPACT MICROSCOPE APPARATUS AND METHOD OF USE
    • 紧凑型显微镜装置及其使用方法
    • US20160231548A1
    • 2016-08-11
    • US15014264
    • 2016-02-03
    • Chandran SabanayagamAroshan Jayasinghe
    • Chandran SabanayagamAroshan Jayasinghe
    • G02B21/00G02B21/24G02B21/02G02B21/36G02B21/26G02B21/06
    • G02B21/0008G02B21/082G02B21/16G02B21/361G02B21/362
    • Compact microscope apparatus and methods of use are disclosed. One apparatus includes a stage, a light source, an objective, a dichroic element, and an imaging sensor. The stage is configured to hold a sample thereon. The light source is configured to emit light toward the stage. The objective is positioned to focus light from the stage. The dichroic element is configured to pass or reflect respective ones of the light emitted by the light source and the light from the stage. The imaging sensor is positioned to receive the light from the stage. The stage, the light source, the objective, the dichroic element, and the imaging sensor are arranged such that they may be received within an enclosure having dimensions no longer than about 300 mm. The apparatus may include a clinostat operable to continuously rotate the components of the apparatus about an axis.
    • 公开了紧凑型显微镜装置和使用方法。 一种装置包括舞台,光源,物镜,二向色元件和成像传感器。 该台被配置为在其上容纳样品。 光源被配置为朝向舞台发光。 目标是将舞台的光线聚焦在一起。 二向色元件被配置为通过或反射由光源发射的光和来自舞台的光的相应的一个。 成像传感器被定位成接收来自舞台的光。 该台,光源,物镜,二向色元件和成像传感器被布置成使得它们可以被容纳在具有不超过约300mm的尺寸的外壳内。 该装置可以包括可操作以使设备围绕轴线连续旋转的定影器。
    • 37. 发明授权
    • Process and system for generating a specification for a customized device, and device made thereby
    • 用于生成定制设备的规范的过程和系统,以及由此制造的设备
    • US09201988B2
    • 2015-12-01
    • US14012620
    • 2013-08-28
    • University of Delaware
    • Steven J. StanhopeElisa S. Arch
    • G06F19/00G06F17/50G01B5/008G06T19/00
    • G06F17/50B33Y50/00G01B5/008G06T19/00G06T2210/41
    • A process and system for generating a specification for customized devices, such as rehabilitation or assistive devices, including prostheses and orthoses, or sports padding or equipment. A digital model, which is fully parameterized at least for characterizing clinical shape characteristics and functional characteristics of the device, is populated with a plurality of design parameter values and 3-dimensional coordinates of captured and calculated virtual landmarks to construct a customized model corresponding to the specification. The customized device may be manufactured based upon the specification. A system connected to a computer aided manufacturing system may generate instructions for automatically fabricating the device. In embodiments with standardized design parameter values, the customized model may be constructed without involving a human operator.
    • 用于生成定制设备的规范的过程和系统,例如康复或辅助设备,包括假体和矫形器,或运动衬垫或设备。 至少用于表征装置的临床形状特征和功能特征的完全参数化的数字模型被填充有捕获和计算的虚拟地标的多个设计参数值和3维坐标,以构建对应于 规范。 可以基于规格制造定制装置。 连接到计算机辅助制造系统的系统可以产生用于自动制造装置的指令。 在具有标准化设计参数值的实施例中,可以构造定制模型而不涉及人类操作者。
    • 38. 发明申请
    • ELECTRO-OPTIC MODULATORS
    • 电光调制器
    • US20150323819A1
    • 2015-11-12
    • US14199423
    • 2014-03-06
    • Juejun HuHongtao LinOkechukwu OgbuuJifeng LiuLin ZhangJurgen Michel
    • Juejun HuHongtao LinOkechukwu OgbuuJifeng LiuLin ZhangJurgen Michel
    • G02F1/035G02F1/00
    • G02F1/035G02F1/0018G02F1/3132G02F2203/15
    • Electro-optic modulators are disclosed. An electro-optic modulator includes an optical ring resonator, an optical waveguide, and a cavity of electro-optic material. The waveguide has a first portion positioned adjacent the resonator to create a first coupling region and a second portion positioned adjacent the resonator to create a second coupling region. The cavity of electro-optic material is embedded within the waveguide between the first portion and the second portion. A method of optical modulation includes the steps of receiving light into an optical waveguide, coupling a portion of the light from the waveguide into an optical ring resonator at a first coupling region between the waveguide and the resonator, transmitting the light remaining in the waveguide into a cavity of electro-optic material embedded within the waveguide, and transmitting the light from the cavity to a second coupling region between the waveguide and the resonator.
    • 公开了电光调制器。 电光调制器包括光环谐振器,光波导和电光材料腔。 波导具有邻近谐振器定位的第一部分以产生第一耦合区域和邻近谐振器定位的第二部分以产生第二耦合区域。 电光材料的腔体嵌入在第一部分和第二部分之间的波导内。 光调制方法包括以下步骤:将光接收到光波导中,将来自波导的光的一部分在波导和谐振器之间的第一耦合区耦合到光环谐振器中,将波导中剩余的光传输到 嵌入在波导内的电光材料的空腔,并将光从空腔传输到波导和谐振器之间的第二耦合区域。
    • 39. 发明申请
    • MEDICAL TREATMENT SIMULATION DEVICES
    • 医疗处理模拟装置
    • US20150056592A1
    • 2015-02-26
    • US14466027
    • 2014-08-22
    • Amy Cowperthwait
    • Amy Cowperthwait
    • G09B23/28G09B5/02
    • G09B23/288
    • Medical treatment simulation devices are disclosed. One device includes an overlay, a tracheostomy structure, one or more tubes, at least one sensor, and at least one feedback device. The overlay is configured to be secured to a subject. The overlay is configured to cover at least a portion of a neck and upper torso of the subject. The tracheostomy structure is provided in a neck portion of the overlay. The one or more tubes are positioned within the overlay. The tubes are connected to the tracheostomy structure. The sensor is coupled to the tracheostomy structure and configured to detect a manipulation of the tracheostomy structure. The feedback device is coupled to the overlay. The feedback device is configured to provide feedback based on the manipulation detected by the at least one sensor.
    • 公开了医疗模拟装置。 一个装置包括覆盖层,气管造口结构,一个或多个管,至少一个传感器和至少一个反馈装置。 覆盖层被配置为固定到主体。 覆盖层被构造成覆盖受试者的颈部和上部躯干的至少一部分。 气管切开结构设置在覆盖层的颈部。 一个或多个管定位在覆盖层内。 管连接到气管造口结构。 传感器耦合到气管造口结构并且被配置为检测气管造口结构的操纵。 反馈装置耦合到覆盖层。 反馈装置被配置为基于由至少一个传感器检测的操作来提供反馈。
    • 40. 发明授权
    • Electromagnetic wave detection systems and methods
    • 电磁波检测系统及方法
    • US08941379B2
    • 2015-01-27
    • US13030571
    • 2011-02-18
    • John Q. XiaoXin Fan
    • John Q. XiaoXin Fan
    • G01R33/00G01R33/09B82Y25/00G01R33/12
    • G01R33/093B82Y25/00G01R33/098G01R33/1284
    • Systems and methods for detecting electromagnetic waves are disclosed. A system for use in detecting an electromagnetic wave includes an inductive device and a spintronic device. The inductive device generates an induced electromagnetic field when the inductive device receives the electromagnetic wave. The spintronic device has an impedance that changes when exposed to the induced electromagnetic field from the inductive device. The change in impedance is indicative of the electromagnetic wave received by the inductive device. Another system for use in detecting or transmitting an electromagnetic wave includes a conductive device and an inductive device. The inductive device is configured to generate an induced electromagnetic wave when the inductive device receives an electromagnetic wave passed by the conductive device. Another system for detecting electromagnetic wave permittivity or permeability of an object includes a pair of antennas and an inductive device.
    • 公开了用于检测电磁波的系统和方法。 用于检测电磁波的系统包括感应装置和自旋电子装置。 当感应装置接收电磁波时,感应装置产生感应电磁场。 自旋电子装置具有当暴露于感应装置的感应电磁场时变化的阻抗。 阻抗的变化表示电感器件接收到的电磁波。 用于检测或发射电磁波的另一系统包括导电装置和电感装置。 感应装置被配置为当感应装置接收到由导电装置通过的电磁波时产生感应电磁波。 用于检测物体的电磁波介电常数或磁导率的另一系统包括一对天线和电感装置。