Product Description
SINCOM SD-135 Current Series and Current Shunt Negative Feedback Amplifier using BJT is a Two-In-One remarkable simply designed trainer for the purpose to study the concept, operation, Frequency response and determine the Bandwidth, Voltage gain and other parameters of a Current Series and Current Shunt negative feedback Amplifier in a simple experimental way.
Product Features
- Two Separate modules of Current Series and Current Shunt negative feedback circuits
- Current Series Negative feedback amplifier uses BJT NPN BC548 in CE mode with voltage divider base bias and emitter resistor capacitor feedback elements
- Current Shunt negative feedback uses two stage RC Coupled CE Amplifier using NPN Transistor BC548 in voltage divider bias mode, with the feedback from the second stage emitter to the first stage base input through RC network.
- Output with and without Feedback
- Silicon NPN BJT of TO-92 package on board
- Resistive Collector and Output Load for Current series circuit
- Resistive Collector Load for Current Shunt circuit
- Switch to select/deselect the RC feedback elements in the circuit
- Input and Output Coupling Capacitors
- In-Built Fixed regulated DC Power Supply
- User friendly Design
- Very Easy for Operation
- Multi color Circuit Diagram is printed on the front panel of the white board
- Enclosed in an attractive, light weight, High Quality, Poly Coated Imported Pine Wooden cabinet
- Facility to connect external Function Generator and Oscilloscope
- Interconnections by 2mm high quality banana sockets and pins
- Maximum Test points to explore all the corners of experiment
Learning Scope
- To study Current Series Negative Feedback Amplifier.
- To observe and Note the change in O/P voltage w.r.t. change in I/P frequency. To Plot the Frequency response curve and to Determine Voltage Gain and Bandwidth.
- To study Current Shunt Negative Feedback Amplifier.
- To observe and Note the change in O/P voltage w.r.t. change in I/P frequency. To Plot the Frequency response curve and to Determine Voltage Gain and Bandwidth.