...
首页> 外文期刊>IEEE Journal of Solid-State Circuits >A 1-V BiCMOS rail-to-rail amplifier with n-channel depletion mode input stage
【24h】

A 1-V BiCMOS rail-to-rail amplifier with n-channel depletion mode input stage

机译:具有n沟道耗尽模式输入级的1V BiCMOS轨到轨放大器

获取原文
获取原文并翻译 | 示例
           

摘要

A BiCMOS rail-to-rail operational amplifier capable of operating from supply voltages as low as 1 V is presented. The folded cascode input stage uses an nMOS depletion mode differential pair to provide rail-to-rail common mode voltage range while typically requiring only 40 fA of input bias current. The bipolar transistor differential-to-single-ended conversion network employs a low-voltage base current cancellation technique which provides high input stage voltage gain from a l-V supply yet allows a 3-V//spl mu/s slew rate capability. The bipolar transistor output stage uses a low-voltage translinear loop which maintains a low impedance signal path to the output common emitter power devices. This circuit topology enables the amplifier to achieve a 4-MHz bandwidth with 60/spl deg/ of phase margin. The output voltage can swing to within 50 mV of each supply rail. An "on-demand" base current boost technique will be presented which can provide up to 50 mA of output drive capability from a 5-V supply, yet consumes only a few microamps when the output is in the quiescent state. A low voltage level shift technique will be described which uses an n-channel depletion mode source follower to provide isolation between the input and output stages.
机译:提出了一种BiCMOS轨到轨运算放大器,该放大器能够在低至1V的电源电压下工作。折叠后的共源共栅输入级使用nMOS耗尽型差分对来提供轨到轨共模电压范围,而通常仅需要40 fA的输入偏置电流。双极型晶体管的差分至单端转换网络采用了低压基极电流消除技术,该技术可从lV电源提供高输入级电压增益,但具有3V // splμ/ s的转换速率能力。双极晶体管输出级使用低压跨线性环路,该环路保持通向输出公共发射极功率器件的低阻抗信号路径。这种电路拓扑使放大器能够以60 / spl deg /的相位裕度实现4 MHz带宽。每个电源轨的输出电压摆幅可以在50 mV以内。将提出一种“按需”基本电流升压技术,该技术可从5V电源提供高达50mA的输出驱动能力,但当输出处于静态时仅消耗几微安。将描述一种低电压电平移位技术,该技术使用n沟道耗尽模式源极跟随器在输入和输出级之间提供隔离。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号