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    • 2. 发明授权
    • Image processing system, transmitting-side device and receiving-side device
    • 图像处理系统,发送侧设备和接收侧设备
    • US09307211B2
    • 2016-04-05
    • US14564312
    • 2014-12-09
    • FUJIFILM Corporation
    • Kenkichi Hayashi
    • H04N9/64H04N1/64H04N9/04H04N9/65H04N9/873H04N5/77H04N9/793H04N9/804
    • H04N9/646H04N1/648H04N5/77H04N9/045H04N9/65H04N9/793H04N9/8042H04N9/873
    • Provided is an image processing system capable of coping with data which is obtained in a new color filter array, and making full use of the performance of a receiving-side device by reducing the influence of a difference in the performance of the receiving-side device on an image quality. An image processing system 100 includes a transmitting-side device 101 and a receiving-side device 102. The transmitting-side device 101 generates intermediate data by preprocessing RAW data, generates three-plane color data by processing synchronization of the intermediate data, and outputs placement information for specifying pixel positions corresponding to the three-plane color data and the intermediate data. The receiving-side device 102 restores the intermediate data using the three-plane color data and the placement information from the transmitting-side device 101, and generates the three-plane color data from the restored intermediate data.
    • 提供了一种图像处理系统,其能够应对在新的滤色器阵列中获得的数据,并且通过减少接收侧设备的性能的差异的影响来充分利用接收侧设备的性能 对图像质量。 图像处理系统100包括发送侧设备101和接收侧设备102.发送侧设备101通过预处理RAW数据生成中间数据,通过处理中间数据的同步来生成三平面彩色数据,并输出 用于指定对应于三平面彩色数据和中间数据的像素位置的放置信息。 接收侧设备102使用来自发送侧设备101的三平面颜色数据和布局信息来恢复中间数据,并且从恢复的中间数据生成三平面颜色数据。
    • 3. 发明授权
    • Video signal generator circuit and video image processing device using
the same
    • 视频信号发生器电路和视频图像处理装置使用相同
    • US5311296A
    • 1994-05-10
    • US974885
    • 1992-11-12
    • Yoshihiro IkefujiSadakazu Murakami
    • Yoshihiro IkefujiSadakazu Murakami
    • H04N5/46H04N9/45H04N9/65H04N11/20H04N7/01
    • H04N9/45H04N5/46H04N9/65
    • A state memory circuit responsive to a selection signal indicative of either the first television system or the second television system selected according to an external setting operation and adapted to be set to a logical "1" or "0" state when the selection signal indicates that the first television system is selected, the state of the state memory circuit being alternated between "1" and "0" for every signal according to the burst flag pulse when the selection signal selects the second television system, and a timing circuit for outputting the state of the state memory circuit at a timing before a leading edge of the burst flag pulse or after a trailing edge of the burst flag pulse and responds to an even number of burst signals in one frame and generates a color video signal suitable to the first or the second television system according to the selection signal.
    • 响应于指示根据外部设置操作选择的第一电视系统或第二电视系统的选择信号的状态存储器电路,并且当选择信号指示为“1”或“0”时,该状态存储器电路被设置为逻辑“1”或“0” 选择第一电视系统,当选择信号选择第二电视系统时,状态存储电路的状态根据突发标志脉冲针对每个信号在“1”和“0”之间交替,以及定时电路,用于输出 状态存储器电路的状态在脉冲串标志脉冲的前沿之前的时刻或在脉冲串标志脉冲的后沿之后的时刻,并且响应于一帧中的偶数个脉冲串信号,并产生适合于第一个 或第二电视系统。
    • 5. 发明申请
    • IMAGE PROCESSING SYSTEM, TRANSMITTING-SIDE DEVICE AND RECEIVING-SIDE DEVICE
    • 图像处理系统,发送侧设备和接收设备
    • US20150138398A1
    • 2015-05-21
    • US14564312
    • 2014-12-09
    • FUJIFILM Corporation
    • Kenkichi HAYASHI
    • H04N9/64H04N9/65H04N9/873H04N9/04
    • H04N9/646H04N1/648H04N5/77H04N9/045H04N9/65H04N9/793H04N9/8042H04N9/873
    • Provided is an image processing system capable of coping with data which is obtained in a new color filter array, and making full use of the performance of a receiving-side device by reducing the influence of a difference in the performance of the receiving-side device on an image quality. An image processing system 100 includes a transmitting-side device 101 and a receiving-side device 102. The transmitting-side device 101 generates intermediate data by preprocessing RAW data, generates three-plane color data by processing synchronization of the intermediate data, and outputs placement information for specifying pixel positions corresponding to the three-plane color data and the intermediate data. The receiving-side device 102 restores the intermediate data using the three-plane color data and the placement information from the transmitting-side device 101, and generates the three-plane color data from the restored intermediate data.
    • 提供了一种图像处理系统,其能够应对在新的滤色器阵列中获得的数据,并且通过减少接收侧设备的性能的差异的影响来充分利用接收侧设备的性能 对图像质量。 图像处理系统100包括发送侧设备101和接收侧设备102.发送侧设备101通过预处理RAW数据生成中间数据,通过处理中间数据的同步来生成三平面彩色数据,并输出 用于指定对应于三平面彩色数据和中间数据的像素位置的放置信息。 接收侧设备102使用来自发送侧设备101的三平面颜色数据和布局信息来恢复中间数据,并且从恢复的中间数据生成三平面颜色数据。
    • 6. 发明授权
    • Digital color signal modulating apparatus
    • 数字彩色信号调制装置
    • US6061101A
    • 2000-05-09
    • US864673
    • 1997-05-28
    • Akihiro Takei
    • Akihiro Takei
    • H04N9/65H04N5/40H04N9/66H04N9/77
    • H04N9/65
    • An apparatus to modulate the digital color signal using a simple circuit that utilizes neither multiplier nor ROMs to multiplying a sine wave and cosine wave. The digital color signal modulating apparatus includes a first selector, a second selector 3, and a third selector. The first selector and the second selector provide the U signal component and the V signal component of the digital color signal to the third selector at a half cycle, rate respectively. The third selector alternately selects one of those signals, which is combined with the sub-carrier wave. For both modulations with the sine wave and with the cosine wave, the input signal is inverted and the fourth selector selects the outputs of the through path and the inversion path in turn, thus producing the modulated outputs.
    • 使用既不利用乘法器也不利用ROM乘以正弦波和余弦波的简单电路来调制数字彩色信号的装置。 数字彩色信号调制装置包括第一选择器,第二选择器3和第三选择器。 第一选择器和第二选择器分别以半周期的速率将数字彩色信号的U信号分量和V信号分量提供给第三选择器。 第三选择器交替地选择与副载波组合的那些信号之一。 对于具有正弦波和余弦波的两种调制,输入信号被反转,第四选择依次选择通路和反转路径的输出,从而产生调制输出。
    • 7. 发明授权
    • Device and method for generating a composite color signal with digital
QAM
    • 用数字QAM生成复合彩色信号的装置和方法
    • US5929937A
    • 1999-07-27
    • US991484
    • 1997-12-16
    • In Seong Hwang
    • In Seong Hwang
    • H04N9/65
    • H04N9/65
    • A device and method for generating a composite color signal are disclosed. The device includes a first memory unit for storing digital cosine data, a second memory unit for storing digital sine data, a first arithmetic unit for multiplying digital color difference data Cr input thereto with the digital cosine data, a second arithmetic unit for multiplying digital color difference data Cb input thereto with the digital sine data, and an adder for adding outputs of the first and arithmetic units to generate a digital composite color signal. The method includes the steps of storing digital cosine data and sine data in at least one of first and second memories, modulating digital color data using the stored digital sine and cosine data, and generating a composite color signal using the modulated digital color data.
    • 公开了一种用于产生复合颜色信号的装置和方法。 该装置包括用于存储数字余弦数据的第一存储单元,用于存储数字正弦数据的第二存储单元,用于将输入的数字色差数据Cr与数字余弦数据相乘的第一运算单元, 利用数字正弦数据输入的差分数据Cb,以及用于相加第一和运算单元的输出以产生数字合成彩色信号的加法器。 该方法包括以下步骤:将数字余弦数据和正弦数据存储在第一和第二存储器中的至少一个中,使用存储的数字正弦和余弦数据调制数字彩色数据,以及使用调制的数字彩色数据生成合成彩色信号。
    • 8. 发明授权
    • RGB encoder for producing a composite video signal for NTSC and PAL
systems
    • RGB编码器,用于产生用于NTSC和PAL系统的复合视频信号
    • US5402180A
    • 1995-03-28
    • US187545
    • 1994-01-28
    • Soon-gil Jung
    • Soon-gil Jung
    • H04N9/64H04N9/65H04N9/66H04N11/14H04N11/16
    • H04N9/65H04N11/143H04N11/162
    • An RGB encoder includes a Y-matrix processor, a chrominance signal processor, a bandpass filter, a delay element, an OTA (operational transconductance amplifier) control signal generator and a mixer. The OTA bandpass filter has a plurality of operational transconductance amplifiers for bandpass-filtering the chrominance signal, wherein the passband is varied according to the transconductance of the operational transconductance amplifiers included therein. The OTA delay element has a plurality of operational transconductance amplifiers for receiving and delaying the luminance signal, wherein the delay time is varied according to the transconductance of the operational transconductance amplifiers included therein. The OTA control signal generator generates first and second control signals in accordance with an NTSC/PAL select signal. The first control signal controls the transconductance of the operational transconductance amplifiers included in the OTA bandpass filter and the second control signal controls the transconductance of the operational transconductance amplifiers included in the OTA delay element. The mixer mixes the outputs of the bandpass filter and delay element, in order to produce a composite video signal. The RGB encoder has lower manufacturing costs and reduced power consumption.
    • RGB编码器包括Y矩阵处理器,色度信号处理器,带通滤波器,延迟元件,OTA(运算跨导放大器)控制信号发生器和混频器。 OTA带通滤波器具有多个用于对色度信号进行带通滤波的运算跨导放大器,其中通带根据其中包括的工作跨导放大器的跨导而变化。 OTA延迟元件具有多个用于接收和延迟亮度信号的运算跨导放大器,其中延迟时间根据其中包括的工作跨导放大器的跨导而变化。 OTA控制信号发生器根据NTSC / PAL选择信号产生第一和第二控制信号。 第一控制信号控制包括在OTA带通滤波器中的运算跨导放大器的跨导,第二控制信号控制包括在OTA延迟元件中的运算跨导放大器的跨导。 混频器混合带通滤波器和延迟元件的输出,以产生复合视频信号。 RGB编码器具有较低的制造成本和降低的功耗。