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A Low Dark Leakage Current High-Sensitivity CMOS Image Sensor With STI-Less Shared Pixel Design

机译:具有STI最小共享像素设计的低暗泄漏电流高灵敏度CMOS图像传感器

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摘要

A CMOS image sensor with a low dark current and high sensitivity is developed with shallow trench isolation (STI)-less shared pixel. By sharing in-pixel transistors, such as the reset transistor, select transistor, and source follower amplifier, each pixel achieves a high fill factor of 43% and a high sensitivity of 144.6 ${rm ke}^{-}/{rm lx}cdot~{rm s}$ . In addition, compared with a conventional image sensor which has the STI structure in the pixel for isolation, the developed image sensor achieves a relatively low dark current of 104.5 ${rm e}^{-}/{rm s}/{rm pixel}$ (median), corresponding to a current density $J_{rm dark}$ of approximately 30 ${rm pA}/{rm cm}^{2}$ at 60 $^{circ}{rm C}$ . This is a low value and the consequence of not using STI as pixel isolation. Both types of pixels, namely the conventional and the proposed active pixel sensor have the same pixel size of $7.5times 7.5~mu{rm m}^{2}$ and are fabricated by the same process. The developed imager with STI-less shared pixel obtains sufficiently good responses at 400 to 900 nm, and, particularly, a peak QE of 68% at 600 nm. This is suitable for scientific applications.
机译:开发了具有低暗电流和高灵敏度的CMOS图像传感器,并采用了无浅沟槽隔离(STI)的共享像素。通过共享像素内的晶体管,例如复位晶体管,选择晶体管和源极跟随器放大器,每个像素可实现43%的高填充率和144.6 $ {rm ke} ^ {-} / {rm lx } cdot〜{rm s} $。另外,与在像素中具有用于隔离的STI结构的常规图像传感器相比,开发的图像传感器实现了相对较低的暗电流104.5 $ {rm e} ^ {-} / {rm s} / {rm pixel } $(中位数),对应于60 $ ^ {circ} {rm C} $时约30 $ {rm pA} / {rm cm} ^ {2} $的电流密度$ J_ {rm dark} $。这是一个低值,其结果是不使用STI作为像素隔离。两种类型的像素,即常规像素像素和所提出的有源像素传感器,具有相同的像素大小,为$ 7.5乘以7.5〜mu {rm m} ^ {2} $,并且是通过相同的工艺制造的。具有较少STI共享像素的已开发成像器在400至900 nm处可获得足够好的响应,特别是在600 nm处的峰值QE为68%。这适合于科学应用。

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