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    • 2. 发明申请
    • EDID SHADOWING TECHNIQUES FOR FAST DISPLAY STARTUP
    • EDID SHADOWING技术用于快速显示启动
    • US20130314423A1
    • 2013-11-28
    • US13480116
    • 2012-05-24
    • Taesung KimPaolo SacchettoPrasanna Nambi
    • Taesung KimPaolo SacchettoPrasanna Nambi
    • G06F3/038G06T1/00
    • G09G5/18G09G5/006G09G2330/026G09G2370/047G09G2370/22
    • Techniques are provided for improving electronic display startup time using extended display identification data (EDID) shadowing. In one example, a method for starting an electronic display may include accessing, by a timing controller, EDID from a memory device. The method may also include storing EDID from the memory device in the timing controller. The method may include, after storing EDID from the memory device, transmitting a signal from the timing controller to a host device to indicate that the host device can access the stored EDID. The method may also include accessing, by the timing controller, configuration data from the memory device. The method may include, after transmitting the signal to the host device, transferring the EDID stored in the timing controller to the host device while the timing controller is accessing the configuration data resulting in reduced startup time of the electronic display.
    • 提供了使用扩展显示识别数据(EDID)阴影改善电子显示启动时间的技术。 在一个示例中,用于启动电子显示器的方法可以包括由定时控制器访问来自存储器设备的EDID。 该方法还可以包括在定时控制器中存储来自存储器设备的EDID。 该方法可以包括在从存储器设备存储EDID之后,将信号从定时控制器发送到主机设备,以指示主机设备可以访问存储的EDID。 该方法还可以包括由定时控制器访问来自存储器设备的配置数据。 在定时控制器访问配置数据导致电子显示器的启动时间减少的情况下,该方法可以包括在向主机设备发送信号之后将存储在定时控制器中的EDID传送到主机设备。
    • 6. 发明申请
    • Motion-Adaptive Alternate Gamma Drive for LCD
    • 用于LCD的运动自适应替代伽马驱动器
    • US20090109290A1
    • 2009-04-30
    • US12254289
    • 2008-10-20
    • Bo YeTaesung KimChung Phan Vu
    • Bo YeTaesung KimChung Phan Vu
    • H04N7/18G06K9/40
    • G09G3/3611G09G3/2025G09G2320/0247G09G2320/0252G09G2320/0261G09G2320/0673G09G2320/103
    • Systems and methods are provided for reducing motion blur in a video display. A system for reducing motion blur in a video display may include a motion detection circuit and a luminance control circuit. The motion detection circuit may be used to compare a plurality of frames in a video signal to generate a motion detection output signal that indicates whether the video signal includes an image that is in motion or a still image. The luminance control circuit may be used to vary luminance levels between two or more consecutive frames of the video signal when the motion detection output signal indicates that the video signal includes an image that is in motion. The luminance control circuit further may also be used to discontinue varying the luminance levels of the video signal when the motion detection output signal indicates that the video signal includes a still image.
    • 提供了用于减少视频显示中的运动模糊的系统和方法。 用于减少视频显示中的运动模糊的系统可以包括运动检测电路和亮度控制电路。 运动检测电路可以用于比较视频信号中的多个帧,以产生指示视频信号是包括运动中的图像还是静止图像的运动检测输出信号。 当运动检测输出信号指示视频信号包括运动中的图像时,亮度控制电路可用于改变视频信号的两个或更多个连续帧之间的亮度级别。 当运动检测输出信号指示视频信号包括静止图像时,亮度控制电路还可用于停止改变视频信号的亮度级。
    • 10. 发明申请
    • Eleutheria (Freedom), Digital Cryptocurrency for Virtual Electricity Trading Platform
    • US20190197635A1
    • 2019-06-27
    • US16214670
    • 2018-12-10
    • TAESUNG KIM
    • TAESUNG KIM
    • G06Q50/06G06Q20/06G06Q40/04
    • G06Q50/06G06Q20/065G06Q40/04G06Q2220/00
    • This invention describes a new digital cryptocurrency—named Eleutheria throughout this patent—that can be used within a virtual electricity trading platform to virtually transact real and digital currencies, smart contracts, financial derivatives, and electricity based on Distributed Electricity Generation (“DG”) plants using Distributed Energy Resources (“DERs”) and Energy Storage Systems (“ESS”) by utilizing new technologies including Internet of Things (IoT). Information and Communication Technology (ICT), Artificial Intelligence (AI), and Smart Grid. Eleutheria is composed of four basic and two derivative cryptocurrencies: (i) ψ1(k,t)-Cryptocurrency to transact “Currency Exchange” in a designated country and time; (ii) ψ2(k,t)-Cryptocurrency to transact “Smart Contracts” in a designated country and time; (iii) ψ3(k,t)-Cryptocurrency to transact “Financial Derivatives” in a designated country and time ; (iv) ψ4(k,t)-Cryptocurrency to transact “Electricity” in a designated country and time; (v) ψown(k,t)-Cryptocurrency to transact “Ownership of DG plants” in a designated country and time; (vi) ψeleutheria(k,t)-Cryptocurrency, Eleutheria represents a portfolio of cryptocurrencies, ψi and is expressed as ψeleutheria(k,t)=ψ0+Σβi(k,t)×χi(k,t)×ψi(k,t), where i=1, 2, 3, 4, and own (ownership). Then a risk premium fi(R:k,t) based on a risk assessment matrix of Eleutheria is incorporated to express a cryptocurrency as ψ1(k,t)=ψ0[1+fi(R:k,t)].