Low Power Consumption Technology for Ultra-High Resolution Mobile Display by Using RGBW System

计算机科学 背光 亮度 能见度 计算机视觉 人工智能 RGB颜色模型 液晶显示器 计算机硬件 计算机图形学(图像) 光学 物理 操作系统
作者
Akira Sakaigawa,Masaaki Kabe,Tsutomu Harada,Fumitaka Goto,Naoyuki Takasaki,Masashi Mitsui,Tae Nakahara,Kojiro Ikeda,Kenta Seki,Toshiyuki Nagatsuma,Amane Higashi
出处
期刊:IEICE Transactions on Electronics [Institute of Electronics, Information and Communication Engineers]
卷期号:E96.C (11): 1367-1372 被引量:11
标识
DOI:10.1587/transele.e96.c.1367
摘要

Battery life and outdoor visibility are two of the most important features for mobile applications today. It is desirable to achieve both low power consumption and excellent outdoor visibility on the display device at the same time. We have previously reported a new RGBW method to realize low power consumption and high luminance with high image quality. In this paper, the basic concept of a new RGBW calculation utilizing an “Extended HSV color space” model is described, and also its performance, such as low power consumption, color image reproducibility and outdoor visibility is presented. The new method focuses on the luminance-increase ratio by means of a White signal for the display image data, and derives the appropriate RGBW signal and backlight PWM signal for every frame period. This dynamically controlled system solves the problems of conventional RGBW systems, and realizes the same image quality as a corresponding RGB display. In order to quantify its color image reproducibility, a spectroscopic measurement has been completed using the Macbeth Color Chart. In addition, the advantages of high luminance by the new RGBW method is described. The converted tone curve with an RGBW method provides very high luminance, such as 1,000cd/m2, and improved outdoor visibility. Finally, a newly developed 4.38-inch full-HD (1,080 × 1,920) 503ppi prototype LCD utilizing this new RGBW technology is described.

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