宇跃峰, 尹勇生, 谢熙明, 权磊, 贾晨. 一种应用于AMOLED显示驱动芯片的伽马校正电路[J]. 微电子学与计算机, 2021, 38(2): 34-39.
引用本文: 宇跃峰, 尹勇生, 谢熙明, 权磊, 贾晨. 一种应用于AMOLED显示驱动芯片的伽马校正电路[J]. 微电子学与计算机, 2021, 38(2): 34-39.
YU Yue-feng, YIN Yong-sheng, XIE Xi-ming, QUAN Lei, JIA Chen. A gamma correction circuit for AMOLED display driver chip[J]. Microelectronics & Computer, 2021, 38(2): 34-39.
Citation: YU Yue-feng, YIN Yong-sheng, XIE Xi-ming, QUAN Lei, JIA Chen. A gamma correction circuit for AMOLED display driver chip[J]. Microelectronics & Computer, 2021, 38(2): 34-39.

一种应用于AMOLED显示驱动芯片的伽马校正电路

A gamma correction circuit for AMOLED display driver chip

  • 摘要: 基于UMC80nm工艺,本文采用非线性数据变换结合线性DAC的结构,设计了一种应用于1080 p分辨率AMOLED显示驱动的伽马校正电路.其中,非线性变换电路采用分段线性拟合的方法设计;DAC位宽设计为11 bit,采用“6+5”两级结构;第一级为阻值相等的电阻串组成的6 bit二进制加权DAC,第二级DAC设计为class-AB输出的插值运放结构,不仅作为11 bit DAC一部分,还用于驱动R、G、B像素电路,节省了芯片面积.对电路进行Spectre仿真,非线性数据转换误差为0.77%,11 bit DAC的INL最大为+0.33LSB/-0.51LSB,DNL最大为+0.24LSB/-0.16LSB,整体伽马校正电路的误差为0.96%,满足1080 p分辨率AMOLED驱动芯片的需求,具有一定的应用价值.

     

    Abstract: Based on the UMC80nm process, this paper uses a non-linear data transformation combined with a linear DAC structure to design a gamma correction circuit for 1080 p resolution AMOLED display drive. Among them, the non-linear transformation circuit is designed by piecewise linear fitting method, which is simple and flexible, and easy to implement; in order to meet the high-precision requirements of gray-scale voltage, the DAC bit width is designed to be 11 bit, and the "6 + 5" two-stage structure is adopted; The stage DAC is designed as a class-AB output interpolation op amp structure, not only as part of the 11 bit DAC, but also used to drive R, G, B pixel circuits, saving chip area. Spectre simulation of the circuit, the non-linear data conversion error is 0.77%, the maximum INL of the 11 bit DAC is + 0.33LSB / -0.51LSB, the maximum DNL is + 0.24LSB / -0.16LSB, and the error of the overall gamma correction circuit is 0.96 %, Meeting the needs of AMOLED driver chips with 1080 p resolution, which has certain application value.

     

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