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Session 6Imagers and Displays.pdf

上传人: 张** 编号:620786 2025-03-31 32页 46.09MB

1、Session 6 Overview:Imagers and Displays I MAGERS,MEDI CAL,AND DI SPLAYS SUBCOMMI TTEEImage sensor technology continues to evolve in two main directions:(1)high-resolution,high-dynamic-range,high-speed imaging using 3D integrated technology,and(2)low-power,background-resilient depth sensing using SPA

2、Ds.The first paper introduces a high-resolution imager with hybrid shutter operation.This is followed by two SPAD-based time-of-flight sensors,excelling in low power consumption,and immunity to strong background light,respectively.Finally,three imagers with pixel-parallel ADC architectures are prese

3、nted,offering high-quality global-shutter solutions for consumer cameras,AR/VR systems,and LW-IR imaging.Display technology continues to advance in two main directions:(1)source-driver ICs with uniform,high color depth,area-and power-efficient design,and(2)touch analog front-end ICs with high SNR an

4、d frame rate.The first three papers introduce different source-driver ICs:the first is designed for OLED-on-Silicon(OLEDOS)displays with uniform outputs,the second features an OLED driver IC with a real-time pixel compensator,and the third focuses on a compact OLED driver IC utilizing a delta-sigma

5、modulation technique.The final paper presents an EMI-reduced touch analog front-end IC for CISPR 25 class 5 for automotive displays.Session Chair:Leonardo Gasparini FBK,Trento,Italy Session Co-Chair:Hyung-Min Lee Korea University,Seoul,Korea 112 2025 IEEE International Solid-State Circuits Conferenc

6、eI SSCC 2025/SESSI ON 6/I MAGERS AND DI SPLAYS/OVERVI EW979-8-3315-4101-9/25/$31.00 2025 IEEE1:30 PM 6.1 A 3-St acked Hybrid-Shut t er CMOS I mage Sensor wit h Swit chable 1.2m-Pit ch 50Mpixel Rolling Shut t er and 2.4m-Pit ch 12.5Mpixel Global Shut t er Modes for Mobile Applicat ions Heesung Shim,S

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本文主要介绍了几种新型图像传感器和显示技术的发展。首先,介绍了三星电子开发的一种新型混合式快门的CMOS图像传感器,该传感器可以在1.2μm像素间距的50M像素滚动快门模式和2.4μm像素间距的12.5M像素全局快门模式之间切换。其次,介绍了两种基于单光子雪崩二极管(SPAD)的时间飞行(ToF)传感器,这两种传感器在低功耗和强背景光下具有出色的性能。最后,介绍了三种具有像素并行模数转换器(ADC)架构的图像传感器,这些传感器为消费级相机、AR/VR系统和长波红外成像提供了高质量的全球快门解决方案。此外,还介绍了几种新型显示技术,包括具有高色深、高效率和低功耗的源驱动集成电路,以及具有高信噪比和帧率的触控模拟前端集成电路。
3D成像技术如何应用于自动驾驶? 数字像素传感器如何提高虚拟现实体验? 低功耗显示技术如何影响智能设备?
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