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High CMRR Instrumentation Amplifier (Schematic and Layout) design for biomedical applications

Instrumentation amplifiers are intended to be used whenever acquisition of a useful signal is difficult. IA’s must have extremely high input impedances because source impedances may be high and/or unbalanced. bias and offset currents are low and relatively stable so that the source impedance need not be constant. Balanced differential inputs are provided so that the signal source may be referenced to any reasonable level independent of the IA output load reference. Common mode rejection, a measure of input balance, is very high so that noise pickup and ground drops, characteristic of remote sensor applications, are minimized.Care is taken to provide high, well characterized stability of critical parameters under varying conditions, such as changing temperatures and supply voltages. Finally, all components that are critical to the performance of the IA are internal to the device. The precision of an IA is provided at the expense of flexibility. By committing to the one specific task of

741Op-Amp based on DC Motor Controller Circuit

This DC motor control circuit with an operational amplifier 741 operating as a voltage follower which is connected to the inverting input not the speed and direction of rotation of a potentiometer VR1. When VR1 is in position, the op amp output is close to zero and both Q1 and Q2 is OFF.

When VR1 is turned toward the positive supply, the output is a positive signal and supply the current Q1 and Q2 will be the engine OFF. When VR1 is turned to the negative supply, the circuit operational amplifier output to the negative voltage and turns off Q1 and Q2 which reverses the direction of rotation of the motor.
741 Op-Amp Pinout
As the potentiometer VR1 is moving toward the ends, the speed increases in the direction you are becoming. The Q1 TIP3055 NPN power transistor has a collector current ratings of 15A and 60V DC VCE0. The MJE34 PNP power transistor Q2 has a sheet collector current of 10 A and 40 V DC VCE0.

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