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
    • 1. 发明授权
    • Image display apparatus
    • 图像显示装置
    • US07436399B2
    • 2008-10-14
    • US10379576
    • 2003-03-06
    • Keijiro Naito
    • Keijiro Naito
    • G09G5/00
    • H04N9/3144H04N5/74H04N9/315
    • A projector (image display apparatus) having enhanced visual mute or A/V mute functions includes a light modulation element for displaying an image, a lamp for illuminating the light modulation element, and a fan for cooling the lamp; the image display apparatus further includes a visual mute means for setting a visual mute mode in which no image or a predetermined image is displayed on a display screen thereof, and a lamp output luminance adjusting means for adjusting the output luminance of the lamp in response to the setting and canceling of the visual mute mode by the visual mute means.
    • 具有增强的视觉静音或A / V静音功能的投影仪(图像显示装置)包括用于显示图像的光调制元件,用于照亮光调制元件的灯和用于冷却灯的风扇; 图像显示装置还包括用于设置在其显示屏幕上不显示图像或预定图像的视觉静音模式的视觉静音装置,以及用于响应于图像显示装置调节灯的输出亮度的灯输出亮度调节装置 通过视觉静音方式设置和取消视觉静音模式。
    • 3. 发明授权
    • Image display device which staggers the serial input data onto multiple
drive lines and extends the time per data point
    • US5973661A
    • 1999-10-26
    • US575930
    • 1995-12-20
    • Mamoru KobayashiYasuji YamazakiToru AokiKeijiro Naito
    • Mamoru KobayashiYasuji YamazakiToru AokiKeijiro Naito
    • G09G3/20G09G3/36H04N3/12H04N9/31
    • H04N9/312G09G3/3648G09G3/3688H04N3/127H04N9/3105G09G2310/0297G09G3/2011G09G3/3614
    • An image display device incorporating a specialized phase expansion circuit, a rotation circuit, a sampling device and unique controlling circuitry. The phase expansion circuit includes a plurality of trail buffers or sample holder circuits for receiving a serially applied train of pixel image signals, expanding or extending the assertion cycle time and generating a corresponding plurality of expanded image signal trains in parallel. Preferably, one combination of expanded pixel image signals corresponding to specific position of pixels arranged in matrix in one train is different from another combination of expanded pixel image signals. The rotational circuit includes a plurality of selecting circuits for receiving the manifold trains of expanded pixel image signals generated by the phase expansion circuit. Each selecting circuit preferably selects one of these trains of expanded pixel image signals and generates a corresponding second train of expanded pixel image signals in parallel according to variable combinations specified by the control circuit. The sampling device receives these second trains of expanded pixel image signals, reconstructs and generates image signal for driving pixels. The control circuitry directs the phase expansion circuit to periodically change the pixel column ordering combinations used to generate the first set of expanded image signal trains. As the column ordering combinations vary, the preferred control circuitry may correspondingly instruct the rotation to reorder or decode the received image signal trains into an expanded signal train in a form suitable for sampling image reconstruction and display. Therefore, even if there are variations of characteristics of individual components such as transistors in the phase expansion circuit and such variation affects uniform brightness of each pixel, these differences in characteristics can be dissipated through periodic resequencing. Consequently, a uniform high-resolution image can be displayed and perceived in the display area.
    • 4. 发明授权
    • Illuminator and projector
    • 照明器和投影机
    • US07055966B2
    • 2006-06-06
    • US10682824
    • 2003-10-10
    • Akira MomoseAtsushi MiyazawaKeijiro Naito
    • Akira MomoseAtsushi MiyazawaKeijiro Naito
    • G03B21/14G03B21/16G03B21/20G03B21/26G02B26/02F21V1/03H04N5/74
    • G03B21/18
    • When a video signal is inputted to a projector (10) through a video input terminal, a luminance peak value of an image of the video signal is detected by an image-analyzing circuit (61) to be outputted to a CPU (71). A gain-adjusting circuit (63) adjusts a luminance signal in the video signal based on a command from the CPU (71). The CPU (71) determines a gain adjustment amount based on the luminance peak value of the image obtained by the image-analyzing circuit (61) and outputs the result to the gain-adjusting circuit (63). For instance, when the luminance peak value (Ip) of the image is 50% of the upper limit (Imax) thereof, a gain-adjusting amount AG is doubled. In this case, an illuminating light volume of a light valve (44a) has to be reduced to 50%, which is achieved by light-attenuation by a light-source lamp (21) and an open/close light shield (23).
    • 当通过视频输入端子将视频信号输入到投影仪(10)时,由图像分析电路(61)检测视频信号的图像的亮度峰值,以输出到CPU(71)。 增益调整电路(63)根据来自CPU(71)的命令调整视频信号中的亮度信号。 CPU(71)基于由图像分析电路(61)获得的图像的亮度峰值确定增益调整量,并将结果输出到增益调整电路(63)。 例如,当图像的亮度峰值(Ip)为其上限(Imax)的50%时,增益调整量AG增加一倍。 在这种情况下,光阀(44a)的照明光量必须减小到通过光源灯(21)和开闭光屏蔽(23)的光衰减来实现的50% 。
    • 5. 发明申请
    • Illuminator and projector
    • 照明器和投影机
    • US20050068505A1
    • 2005-03-31
    • US10682824
    • 2003-10-10
    • Akira MomoseAtsushi MiyazawaKeijiro Naito
    • Akira MomoseAtsushi MiyazawaKeijiro Naito
    • G02F1/13357F21V11/18G02F1/133G03B21/00G03B21/14G03B21/18G03B21/26H04N5/74
    • G03B21/18
    • When a video signal is inputted to a projector (10) through a video input terminal, a luminance peak value of an image of the video signal is detected by an image-analyzing circuit (61) to be outputted to a CPU (71). A gain-adjusting circuit (63) adjusts a luminance signal in the video signal based on a command from the CPU (71). The CPU (71) determines a gain adjustment amount based on the luminance peak value of the image obtained by the image-analyzing circuit (61) and outputs the result to the gain-adjusting circuit (63). For instance, when the luminance peak value (lp) of the image is 50% of the upper limit (Imax) thereof, a gain-adjusting amount AG is doubled In this case, an illuminating light volume of a light valve (44a) has to be reduced to 50%, which is achieved by light-attenuation by a light-source lamp (21) and an open/close light shield (23).
    • 当通过视频输入端子将视频信号输入到投影仪(10)时,由图像分析电路(61)检测视频信号的图像的亮度峰值,以输出到CPU(71)。 增益调整电路(63)根据来自CPU(71)的命令调整视频信号中的亮度信号。 CPU(71)基于由图像分析电路(61)获得的图像的亮度峰值确定增益调整量,并将结果输出到增益调整电路(63)。 例如,当图像的亮度峰值(lp)为其上限(Imax)的50%时,增益调整量AG加倍。在这种情况下,光阀(44a)的照明光量具有 减少到通过光源灯(21)和开闭光屏蔽(23)的光衰减来实现的50%。
    • 7. 发明授权
    • Rear projection display
    • 背投显示
    • US06276802B1
    • 2001-08-21
    • US09288222
    • 1999-04-08
    • Keijiro Naito
    • Keijiro Naito
    • G03B2122
    • G03B21/10
    • Methods and apparatus for using more effectively the front side area of a rear projection display as a screen positioning area disclosed. Almost all of the p-polarized light beams emitted from an image projector are reflected by a polarizing selection element, and almost all of the reflected light beams are converted into s-polarized light beams by a polarizing conversion mirror as the light beams are reflected towards a screen. Of the s-polarized light beams produced as the light beams are reflected by the polarizing conversion mirror, those that are not incident upon the polarizing selection element strike the screen in order to form an image. On the other hand, those that are incident upon the polarizing selection element pass through the polarizing selection element and strike the screen in order to form an image thereon.
    • 更有效地使用背投影显示器的前侧区域作为屏幕定位区域的方法和装置。 从图像投影仪发射的几乎所有的p偏振光都被偏振选择元件反射,并且随着光束被反射向几乎所有的反射光束被偏振转换镜转换成s偏振光束 一个屏幕。 在由偏光转换镜反射的光束产生的s偏振光束中,没有入射到偏振选择元件的S偏振光束撞击屏幕以形成图像。 另一方面,入射到偏振选择元件的那些通过偏振选择元件并撞击屏幕以在其上形成图像。
    • 9. 发明授权
    • Projection-type display apparatus
    • US5905540A
    • 1999-05-18
    • US708139
    • 1996-08-27
    • Kiyoshi MiyashitaSatoshi HirashimaKeijiro NaitoMamoru Kobayashi
    • Kiyoshi MiyashitaSatoshi HirashimaKeijiro NaitoMamoru Kobayashi
    • H04N3/14H04N5/74H04N9/31H04N9/69H04N5/202
    • H04N9/312H04N9/3105H04N9/3141H04N9/3144H04N9/317H04N9/3182H04N9/69H04N2005/745
    • A projection-type video display in which the entire input video signal is first digitally corrected through digital gamma correction. Then, a subset of the corrected video signal is corrected again through analogue correction techniques. In particular this portion of the digitally corrected video signal corresponds to the subject where slopes of applied voltage-transmissivity characteristic curve (V-T curve) of liquid crystal changes relatively rapidly. The result is a more accurate gamma correction which is also less expensive than conventional, purely digital gamma correction systems. Another feature is the inclusion of three liquid crystal light valves, each having have a plurality of pixels arranged in the matrix and identical shift registers in such a way that pixels of one scanning line are driven selectively and sequentially from the same horizontal direction according to a given set of video signals, a memory where at least video signals for pixels of one scanning line are written and stored, a first drive controller for outputting video signals of one scanning line from memory in the order in which the video signals were written and supplying the video signals to pixels of a scanning line in at least one of light valves, and a second drive controller for outputting video signals of one scanning line from memory in a reverse order in which video signals were written thereto for supplying another light valve. Also disclosed is recognition unit for recognizing different types of input video signal format systems and a write controller for controlling the way of writing input video signals of each scanning line into pixels of horizontal scanning lines in the light valves based on different type of input video signal format system.
    • 10. 发明授权
    • Projection-type display apparatus
    • 投影型显示装置
    • US6115084A
    • 2000-09-05
    • US287910
    • 1999-04-07
    • Kiyoshi MiyashitaSatoshi HirashimaKeijiro NaitoMamoru Kobayashi
    • Kiyoshi MiyashitaSatoshi HirashimaKeijiro NaitoMamoru Kobayashi
    • H04N3/14H04N5/74H04N9/31H04N9/69
    • H04N9/312H04N9/3105H04N9/3141H04N9/3144H04N9/317H04N9/3182H04N9/69H04N2005/745
    • A projection-type video display in which the entire input video signal is first digitally corrected through digital gamma correction. Then, a subset of the corrected video signal is corrected again through analogue correction techniques. In particular this portion of the digitally corrected video signal corresponds to the subject where slopes of applied voltage-transmissivity characteristic curve (V-T curve) of liquid crystal changes relatively rapidly. The result is a more accurate gamma correction which is also less expensive than conventional, purely digital gamma correction systems. Another feature is the inclusion of three liquid crystal light valves, each having have a plurality of pixels arranged in the matrix and identical shift registers in such a way that pixels of one scanning line are driven selectively and sequentially from the same horizontal direction according to a given set of video signals, a memory where at least video signals for pixels of one scanning line are written and stored, a first drive controller for outputting video signals of one scanning line from memory in the order in which the video signals were written and supplying the video signals to pixels of a scanning line in at least one of light valves, and a second drive controller for outputting video signals of one scanning line from memory in a reverse order in which video signals were written thereto for supplying another light valve. Also disclosed is recognition unit for recognizing different types of input video signal format systems and a write controller for controlling the way of writing input video signals of each scanning line into pixels of horizontal scanning lines in the light valves based on different type of input video signal format system.
    • 投影型视频显示器,其中整个输入视频信号通过数字伽马校正被首先数字校正。 然后,通过模拟校正技术再次校正经校正的视频信号的子集。 特别地,数字校正视频信号的这一部分对应于液晶的施加的电压 - 透射率特性曲线(V-T曲线)的斜率相对快速地变化的对象。 结果是更准确的伽马校正,其也比常规的纯数字伽马校正系统便宜。 另一个特征是包括三个液晶光阀,每个液晶光阀具有排列在矩阵中的多个像素和相同的移位寄存器,使得一个扫描线的像素根据相同的水平方向选择性地和顺序地被驱动 给定的一组视频信号,至少存储一个扫描线的像素的视频信号的存储器,用于以写入和供给视频信号的顺序从存储器输出一条扫描线的视频信号的第一驱动控制器 视频信号到光阀中的至少一个中的扫描线的像素;以及第二驱动控制器,用于以与写入视频信号的方式相反的顺序从存储器输出一条扫描线的视频信号,以提供另一个光阀。 还公开了用于识别不同类型的输入视频信号格式系统的识别单元和用于基于不同类型的输入视频信号来控制将每条扫描线的输入视频信号写入水平扫描线的像素的方式的写入控制器 格式系统。