Showing posts with label Transistor Circuit. Show all posts
Showing posts with label Transistor Circuit. Show all posts

Thursday, June 7, 2018

A Basic Transistor Amplifier with self-bias

A Basic Transistor Amplifier with self-bias
This circuit will amplify the input signal with self-bias or feedback which can prevent amplitude distortion. However, it has two small drawbacks. It is only partially effective and, therefore, is only used where moderate changes in ambient temperature are expected. It reduces amplification since the signal on the collector also affects the base voltage. This is because the collector and base signals for this particular amplifier configuration are 180 degrees out of phase (opposite in polarity) and the part of the collector signal that is fed back to the base cancels some of the input signal. This process of returning a part of the output back to its input is known as DEGENERATION or NEGATIVE FEEDBACK. Sometimes degeneration is desired to prevent amplitude distortion (an output signal that fails to follow the input exactly) and self-bias may be used for this purpose.

Monday, April 9, 2018

Micro-controller Output Protection by Current Limiting

Output protection by limiting current utilizing a transistor circuit
Q1B is the pass or output transistor. R2 sense the output current. Q1A  is the protection transistor which turns on as soon as the voltage across R2 becomes about 0.65 V.
Maximum current = VBE,Q1A / R2 = 0.65 / 33 = 19.7 mA

Power Calculation from Current and Resistance

Power Equation for Current and Resistance P = I² R Current (I) in Amps ...