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
    • 3. 发明授权
    • Micro-display engine
    • 微型显示引擎
    • US07133207B2
    • 2006-11-07
    • US10781598
    • 2004-02-18
    • Paul J. Travers
    • Paul J. Travers
    • G02B27/10G02B27/14G09G5/00
    • G02B27/16G02B5/30G02B27/0172G02B27/144G02B2027/011G02B2027/0118
    • Virtual displays with micro-display engines are arranged in compact, lightweight configurations that generate clear virtual images for an observer. The displays are particularly suitable for portable devices, such as head-mounted displays adapted to non-immersive or immersive applications. The non-immersive applications feature reflective optics moved out of the direct line of sight of the observer and provide for differentially modifying the amount or form of ambient light admitted from the forward environment with respect to image light magnified within the display. Micro-display engines suitable for both non-immersive and immersive display applications and having LCD image sources displace polarization components of the LCD image sources along the optical paths of the engines for simplifying engine design. A compound imaging system for micro-display engines features the use of reflectors in sequence to expand upon the imaging possibilities of the new micro-display engines. Polarization management also provides for differentially regulating the transmission of ambient light with respect to image light and for participating in the image formation function of the image source.
    • 具有微显示引擎的虚拟显示器以紧凑,轻便的配置进行布置,为观察者生成清晰的虚拟图像。 显示器特别适用于便携式设备,例如适用于非沉浸式或沉浸式应用的头戴式显示器。 非沉浸式应用的特征在于反射光学器件移动到观察者的直接视线之外,并且提供差异化​​地修改相对于在显示器内放大的图像光从正向环境允许的环境光的量或形式。 微型显示引擎适用于非沉浸式和沉浸式显示应用,并且具有LCD图像源沿着发动机的光学路径偏移LCD图像源的偏振分量,以简化发动机设计。 用于微显示引擎的复合成像系统特征在于使用反射器来依次展开新的微显示引擎的成像可能性。 极化管理还提供了差异调节环境光相对于图像光的透射并且用于参与图像源的图像形成功能。
    • 4. 发明申请
    • SELECTIVELY ADJUSTABLE MOUNTING ASSEMBLY
    • 选择性可调安装组件
    • US20080302937A1
    • 2008-12-11
    • US11760557
    • 2007-06-08
    • Vincent J. FerrerStephen GlaserDavid A. Vogler
    • Vincent J. FerrerStephen GlaserDavid A. Vogler
    • A47F5/00
    • F16M13/02F16M11/14F16M2200/022F16M2200/027
    • An adjustable attachment mechanism includes an elongate shaft, first and second seats disposed on opposite ends of the shaft, first and second collars, and an actuator. The first and second collars are disposed to translate along the elongate shaft. An inner surface of the first collar cooperates with the first seat to define a first receptacle and an inner surface of the second collar cooperates with the second seat to define a second receptacle. The actuator is in communication with the first and second collars and is actuable to selectively traverse the first and second collars along the shaft in a first direction away from each other and in a second direction toward each other, the movement in the first direction loosening the first and second receptacles and the movement in the second direction tightening the first and second receptacles.
    • 可调附接机构包括细长轴,设置在轴的相对端上的第一和第二座,第一和第二轴环以及致动器。 第一和第二轴环被设置成沿着细长轴平移。 第一套环的内表面与第一座位配合以限定第一容器,并且第二衬套的内表面与第二座椅配合以限定第二容器。 所述致动器与所述第一和第二轴环连通,并且可致动以使所述第一和第二轴环沿所述轴沿着彼此远离的第一方向和朝向彼此的第二方向选择性地横移,所述第一方向的运动松动 第一和第二容器以及第二方向上的运动使第一和第二容器收紧。
    • 5. 发明申请
    • Micro-Display Engine
    • 微型显示引擎
    • US20070081256A1
    • 2007-04-12
    • US11538250
    • 2006-10-03
    • Paul Travers
    • Paul Travers
    • G02B27/14
    • G02B27/16G02B5/30G02B27/0172G02B27/144G02B2027/011G02B2027/0118
    • Virtual displays with micro-display engines are arranged in compact, lightweight configurations that generate clear virtual images for an observer. The displays are particularly suitable for portable devices, such as head-mounted displays adapted to non-immersive or immersive applications. The non-immersive applications feature reflective optics moved out of the direct line of sight of the observer and provide for differentially modifying the amount or form of ambient light admitted from the forward environment with respect to image light magnified within the display. Micro-display engines suitable for both non-immersive and immersive display applications and having LCD image sources displace polarization components of the LCD image sources along the optical paths of the engines for simplifying engine design. A compound imaging system for micro-display engines features the use of reflectors in sequence to expand upon the imaging possibilities of the new micro-display engines. Polarization management also provides for differentially regulating the transmission of ambient light with respect to image light and for participating in the image formation function of the image source.
    • 具有微显示引擎的虚拟显示器以紧凑,轻便的配置进行布置,为观察者生成清晰的虚拟图像。 显示器特别适用于便携式设备,例如适用于非沉浸式或沉浸式应用的头戴式显示器。 非沉浸式应用的特征在于反射光学器件移动到观察者的直接视线之外,并且提供差异化​​地修改相对于在显示器内放大的图像光从正向环境允许的环境光的量或形式。 微型显示引擎适用于非沉浸式和沉浸式显示应用,并且具有LCD图像源沿着发动机的光学路径偏移LCD图像源的偏振分量,以简化发动机设计。 用于微显示引擎的复合成像系统特征在于使用反射器来依次展开新的微显示引擎的成像可能性。 极化管理还提供了差异调节环境光相对于图像光的透射并且用于参与图像源的图像形成功能。
    • 8. 发明申请
    • METHODS OF ADAPTIVE ENCODING AND DECODING VIDEO SIGNALS
    • 自适应编码和解码视频信号的方法
    • US20080175313A1
    • 2008-07-24
    • US11626690
    • 2007-01-24
    • Ian SinclairSteven D. SmithVincent J. FerrerPaul J. Travers
    • Ian SinclairSteven D. SmithVincent J. FerrerPaul J. Travers
    • H04N11/02
    • G09G5/005G09G2310/0224G09G2340/10H04N19/80H04N21/84
    • A method of encoding video signals includes obtaining, averaging, offsetting, and replacing steps. In the obtaining step, a first value comprising a value of a video characteristic for a first portion of a first video signal and a second value comprising a value of the video characteristic for a second portion of a second video signal are obtained. In the averaging step, the first value and the second value are averaged to obtain an average value. In the offsetting step, the average value is offset by a first predetermined offset to obtain a first offset value and the average value is offset by a second predetermined offset to obtain a second offset value. In the replacing step, the first value is replaced with the first offset value on the first signal and the second value is replaced with the second offset value on the second video signal.
    • 编码视频信号的方法包括获得,平均化,偏移和替换步骤。 在获取步骤中,获得包括第一视频信号的第一部分的视频特性值的第一值和包括第二视频信号的第二部分的视频特征值的第二值。 在平均步骤中,对第一值和第二值进行平均以获得平均值。 在偏移步骤中,平均值偏移第一预定偏移量以获得第一偏移值,并且平均值偏移第二预定偏移量以获得第二偏移值。 在替换步骤中,第一个值被替换为第一个信号上的第一个偏移值,第二个值被替换为第二个视频信号的第二个偏移值。