电子元件与材料
電子元件與材料
전자원건여재료
ELECTRONIC COMPONENTS & MATERIALS
2015年
3期
62-66
,共5页
吴晟%梁津津%兰卉%刘宁
吳晟%樑津津%蘭卉%劉寧
오성%량진진%란훼%류저
薄膜电阻器%微弱信号%放大电路%噪声测量%热噪声%1/f噪声
薄膜電阻器%微弱信號%放大電路%譟聲測量%熱譟聲%1/f譟聲
박막전조기%미약신호%방대전로%조성측량%열조성%1/f조성
thin-film resistor%weak signal%amplification system%noise measurement%thermal noise%1/f noise
针对薄膜电阻器微弱噪声信号的检测,设计了一种实用化的基于 AD797集成运放芯片的低噪声放大电路。同时,在电路形式设计和器件选择两方面论述了放大电路设计要点,并在实验和理论的基础上分别进行了电路性能的验证和探测下限的讨论。实验结果表明:电路在10 Hz~10 MHz宽频带内的放大增益为1210倍;电路在100 Hz输出的噪声功率谱密度仅为3.12×10–18 V2·Hz–1。
針對薄膜電阻器微弱譟聲信號的檢測,設計瞭一種實用化的基于 AD797集成運放芯片的低譟聲放大電路。同時,在電路形式設計和器件選擇兩方麵論述瞭放大電路設計要點,併在實驗和理論的基礎上分彆進行瞭電路性能的驗證和探測下限的討論。實驗結果錶明:電路在10 Hz~10 MHz寬頻帶內的放大增益為1210倍;電路在100 Hz輸齣的譟聲功率譜密度僅為3.12×10–18 V2·Hz–1。
침대박막전조기미약조성신호적검측,설계료일충실용화적기우 AD797집성운방심편적저조성방대전로。동시,재전로형식설계화기건선택량방면논술료방대전로설계요점,병재실험화이론적기출상분별진행료전로성능적험증화탐측하한적토론。실험결과표명:전로재10 Hz~10 MHz관빈대내적방대증익위1210배;전로재100 Hz수출적조성공솔보밀도부위3.12×10–18 V2·Hz–1。
In view of the measurement for the weak noise signal in thin-film resistor, a practical and low noise amplifier circuit of weak noise signal detection was designed. It was based on AD797 ultralow noise operational amplifier. The essentials of this circuit design were described from the aspects of the circuit form and device selection. At the same time, the performances of amplifier circuit were validated based on the experiment and the detection limit were discussed based on the theory respectively. The experimental results indicate that:the gain of this amplifier circuit is 1 210 in the wide frequency range of 10 Hz–10 MHz;the noise power spectral density at 100 Hz is only about 3.12×10–18 V2·Hz–1.