Medical Instrumentation: Application and Design confound 1 and 2: Biopotential Amplifier Application Content pouch 1: locution of an electrocardiogram Biopotential Amplifier 1.1. Introduction 1.2. surmise 1.3. Methodology 1.4. Simulation 1.5. fount 1.6. Discussion 1.7. Conclusion| 224912162022| Project 2: Application of cardiogram Biopotential Amplifier 2.1. Introduction 2.2. Methodology 2.3. Result 2.4. Discussion 2.5. Conclusion| 232324262830| References| 31| Appendix| 32| Project 1: Construction of an cardiogram Biopotential Amplifier 1.1. Introduction Biopotential signal such as ECG is at very low level of premium or voltage, which is just about 1 to 5 mV (Webster, 2010). Thus, a biopotential amplifier is necessary to hyperbolize the signal to ease the ECG amount and signal summary (Webster, 2010). Biopotential ECG amplifier bed be constructed by using 3 operational amplifiers (op-amp) as shown in think 1.1.1 below which is cognize as instrumentation amplifier. In addition, the biopotential amplifier is committed with a b secern alley riddle to only withdraw signals with frequencies in a certain image. This is because ECG signal is in the frequency range of 0.

05 to 100 Hz (Webster, 2010). v1 v2 v- vo2 v4 v3 B D vo1 A C A skeleton 1.1.1: Biopotential ECG amplifier. Reproduced from (Webster, 2010). From Figure 1.1.1 above, this amplifier circuit can be divided into some(prenominal) parts. Part A is buffer amplifier or voltage associate amplifier (King Abdul Aziz University, 2009), B is d ifferential amplifier, C is senior high scho! ol pass filter (King Abdul Aziz University, 2009; Michigan State University, 2010; Webster, 2010) and lastly D is non-inverting low pass filter (Michigan State University, 2010; Webster, 2010). Component A and B normal the instrumentation amplifier (Michigan State University, 2010; Webster, 2010) while C and D imprint the band pass filter (Webster, 2010). Figure 1.1.2...If you want to get along a full essay, order it on our website:
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