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广西师范大学学报(自然科学版) ›› 2023, Vol. 41 ›› Issue (2): 67-75.doi: 10.16088/j.issn.1001-6600.2022040807
赵媛1, 宋树祥1*, 刘振宇1,2, 岑明灿1, 蔡超波1, 蒋品群1
ZHAO Yuan1, SONG Shuxiang1*, LIU Zhenyu1,2, CEN Mingcan1, CAI Chaobo1, JIANG Pinqun1
摘要: 针对传统低压微功耗电流镜运算跨导放大器存在低增益和小摆率的缺陷,设计了一款新型电流镜运算跨导放大器。在不影响电路的静态功耗和稳定性的基础上,该运算跨导放大器采用增益提高(gain-boosting,GB)结构,增大了电路的小信号增益;引入开关型摆率增强(switched slew-rate enhancement,SSRE)结构,提高了电路的大信号摆率。基于UMC 0.11 μm标准CMOS工艺进行电路设计和仿真。仿真结果表明:在1.2 V电源电压和10 pF负载电容下,与传统电流镜运算跨导放大器相比,设计的新型电流镜运算跨导放大器的增益提高了47 dB,正摆率提高了11.2倍,负摆率提高了12.4倍。
中图分类号:
[1] HUNG C H, ZHENG Y Q, GUO J P, et al.Bandwidth and slew rate enhanced OTA with sustainable dynamic bias[J]. IEEE Transactions on Circuits and Systems II: Express Briefs, 2020, 67(4): 635-639. [2] 凡东东, 宋树祥, 蒋品群,等.新型高增益CMOS跨导运算放大器[J]. 广西师范大学学报(自然科学版), 2014, 32(4): 6-10. [3] 谢海情, 陈玉辉, 王振宇.一种低压低功耗恒跨导轨到轨运算放大器设计[J].电子元件与材料, 2020, 39(10): 65-69. [4] LUO H, HAN Y, CHEUNG R C C, et al. A 0.8-V 230-μW 98-dB DR inverter-based ∑Δ modulator for audio applications[J]. IEEE Journal of Solid-State Circuits, 2013, 48(10): 2430-2441. [5] LEE H, MOK P K T, LEUNG K N.Design of low-power analog drivers based on slew-rate enhancement circuits for CMOS low-dropout regulators[J]. IEEE Transactions on Circuits and Systems II: Express Briefs, 2005, 52(9): 563-567. [6] BU S, TSE H W, LEUNG K N, et al. Gain and slew rate enhancement for amplifiers through current starving and feeding[C]// 2015 IEEE International Symposium on Circuits and Systems (ISCAS).Piscataway, NJ: IEEE, 2015: 2073-2076. DOI: 10.1109/ISCAS.2015.7169086. [7] YAN Z S, MAK P I, LAW M K, et al. Nested-current-mirror rail-to-rail-output single-stage amplifier with enhancements of DC gain, GBW and slew rate[J]. IEEE Journal of Solid-State Circuits, 2015, 50(10): 2353-2366. [8] BELOSO-LEGARRA J, DE LACRUZ-BLAS C A, LOPEZ-MARTIN A J, et al. Gain-boosted super class AB OTAs based on nested local feedback[J]. IEEE Transactions on Circuits and Systems I: Regular Papers, 2021, 68(9): 3562-3573. [9] LEE S Y, SU P H, HUANG K L, et al. High-pass sigma-delta modulator with techniques of operational amplifier sharing and programmable feedforward coefficients for ECG signal acquisition[J]. IEEE Transactions on Biomedical Circuits and Systems, 2021, 15(3): 443-453. [10] 孙帆, 黄海波, 王卫华.基于高摆率误差放大器的无片外电容LDO设计[J].电子元件与材料, 2022, 41(2): 206-212. [11] 拉扎维. 模拟CMOS集成电路设计[M]. 陈贵灿,程军,张瑞智,等译.西安:西安交通大学出版社, 2003. [12] 吴锋霖, 李思臻, 余凯, 等. 一种增益提升和摆率增强的运算跨导放大器[J]. 电子技术应用, 2020, 46(7): 65-69. [13] 王梦海, 张春茗, 严展科. 一种增益和摆率提升的电流镜运算放大器[J]. 微电子学, 2019,49(4): 452-456. [14] YAO L B, STEYAERT M S J, SANSEN W. A 1-V 140-μW 88-dB audio sigma-delta modulator in 90-nm CMOS[J]. IEEE Journal of Solid-State Circuits, 2004, 44(11): 1809-1818. [15] KUO P Y, TSAI S D, et al. An enhanced scheme of multi-stage amplifier with high-speed high-gain blocks and recycling frequency cascode circuitry to improve gain-bandwidth and slew rate[J]. IEEE Access, 2019, 7: 130820-130829. [16] FEIZBAKHSH S V, YOSEFI G. An enhanced fast slew rate recycling folded cascode Op-Amp with general improvement in 180 nm CMOS process[J]. AEU-International Journal of Electronics and Communications, 2019, 101: 200-217. [17] DONG L Y, ZHAO X, WANG Y Q.Design of an adaptively biased low-dropout regulator with a current reusing current-mode OTA using an intuitive analysis method[J]. IEEE Transactions on Power Electronics, 2020, 35(10): 10477-10488. [18] 宁宁, 倪春晓, 李靖,等. 高性能AB类折叠共源共栅CMOS放大器设计[J]. 微电子学, 2013, 43(3): 333-336. [19] WANG Y Q, ZHANG Q S, YU S S, et al. A robust local positive feedback based performance enhancement strategy for non-recycling folded cascode OTA[J]. IEEE Transactions on Circuits and Systems I: Regular Papers, 2020, 67(9): 2897-2908. [20] 范国亮, 张国俊. 一种增益提升和摆率增强的电流镜放大器[J]. 微电子学, 2016,46(3): 289-292. [21] AKBARI M, HASHEMIPOUR O, MORADI F. A high slew rate CMOS OTA with dynamic current boosting paths[C]// 2018 IEEE International Symposium on Circuits and Systems (ISCAS). Piscataway, NJ: IEEE, 2018: 1-5. DOI: 10.1109/ISCAS.2018.8350926. |
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