Driven-Right-Leg Three-Op-Amp Achieving High Common is a M.Tech project topic for Mechanical Engineering. It gives students a clear starting point for research, implementation planning, and documentation.
Driven-Right-Leg Three-Op-Amp Achieving High Common Project Details
| Abstract |
This project uses simulations to study a highβperformance biopotential acquisition interface that reduces powerβline interference (PLI) in wearable sensors. The circuit has two stages. The first stage is a threeβopβamp instrumentation amplifier. The second stage adds an active DrivenβRightβLeg (DRL) feedback loop. The main goal is to boost the CommonβMode Rejection Ratio (CMRR) while keeping noise, power use, and power sharing between stages under control. By giving the first amplification stage more power, the design suppresses commonβmode signals early, before later processing. The DRL loop works by measuring the commonβmode voltage and sending a compensating current back to the reference node. This actively cancels the 60 Hz line noise. All
performance predictions were built and checked in LTspice. The simulation framework lets us examine noise behavior, frequency response, and stability for precise mechatronic and biomedical sensor interfaces. Results show that allocating power strategically across the stages improves noise rejection without sacrificing overall power efficiency.
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| Reference Paper |
Driven-Right-Leg and Three-Op-Amp in Achieving a High Common Mode Rejection Ratio with LTspice |
| Domain |
Mechatronics & Robotics |
| Sub-Domain |
Mechatronics & Robotics / Vibration & Noise / Structural Health Monitoring |
| PDF Download |
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