Transistor Amplifier Circuits (CE CB  CC)

Transistor Amplifier Circuits (CE CB CC)

Product Details:

  • Heatsink Included for Output Stage
  • Voltage 9V DC (Typical, Variable as per circuit type)
  • Low Impedance Supports loads 8 ohms
  • Harmonic Distortion <0.1% (Typical)
  • Material High Quality PCB, Silicon Transistors, Metal Resistor & Capacitor Leads
  • Frequency (MHz) Up to 10 MHz (Depends on Model/Configuration)
  • Channels Single, Multi-stage (Based on Configuration)
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Transistor Amplifier Circuits (CE CB CC) Price And Quantity

  • FR4 Grade, Solder Masked
  • Voltage gain up to 100 (CE Mode), Current gain up to 1 (CC Mode)
  • Educational Lab, Electronic Projects, Signal Amplification
  • Common Emitter (CE), Common Base (CB), Common Collector (CC)
  • Assembled PCB, Documentation
  • RoHS Compliant
  • 0°C to 50°C
  • General Purpose NPN/PNP
  • Fixed with Screws/Stand-offs
  • Wire Terminals, Test Points

Transistor Amplifier Circuits (CE CB CC) Product Specifications

  • Supports loads 8 ohms
  • <0.1% (Typical)
  • Multicolor (Assembled Components)
  • 9 x 6 x 4 cm
  • 0.08 kg
  • 9V DC (Typical, Variable as per circuit type)
  • Battery Operated, 9V DC
  • Single, Multi-stage (Based on Configuration)
  • Included for Output Stage
  • High Quality PCB, Silicon Transistors, Metal Resistor & Capacitor Leads
  • Analog Audio/Voltage
  • Up to 10 MHz (Depends on Model/Configuration)
  • 0.5 mV
  • > 60 dB
  • FR4 Grade, Solder Masked
  • Voltage gain up to 100 (CE Mode), Current gain up to 1 (CC Mode)
  • Educational Lab, Electronic Projects, Signal Amplification
  • Common Emitter (CE), Common Base (CB), Common Collector (CC)
  • Assembled PCB, Documentation
  • RoHS Compliant
  • 0°C to 50°C
  • General Purpose NPN/PNP
  • Fixed with Screws/Stand-offs
  • Wire Terminals, Test Points

Product Description

Transistor Amplifier Circuits (CE, CB  CC) 

Objective : To study Frequency Response, Input Impedance, Output Impedance  negative Feed Back of Common Emitter, Common Base  Common Collector Transistor Amplifiers.

Features : Instrument comprises of fixed output. DC Regulated Power Supply +/-12V, Circuit diagram is printed and Components mounted on the front panel & connections of important points brought out at Sockets.



Versatile Amplifier Configurations

This product supports CE, CB, and CC modes, allowing easy demonstration of different amplifier types. Each configuration offers unique gain characteristics, making it suitable for a variety of educational and prototyping needs.


High-Quality, Reliable Components

Equipped with FR4 grade PCB, silicon transistors, and metal leaded resistors and capacitors, this circuit delivers reliable performance. A solder-masked finish enhances durability, while all components are mounted professionally for consistent operation.


Ideal for Laboratories & Projects

Perfect for classroom teaching or hands-on electronic projects, the kit is assembled and ready to use. Through wire terminals and clear documentation, users can conveniently test and analyze various amplifier circuits in real-time.

FAQs of Transistor Amplifier Circuits (CE CB CC):


Q: How does each amplifier configuration (CE, CB, CC) differ in operation?

A: The Common Emitter (CE) provides high voltage gain, Common Base (CB) offers low input impedance and wide bandwidth, and Common Collector (CC) delivers high current gain with unity voltage gain. Each configuration suits different signal amplification scenarios.

Q: What are the main benefits of using this amplifier kit in educational settings?

A: This amplifier kit allows students to practically explore and compare CE, CB, and CC transistor amplifier circuits, deepening their understanding of electronic theory and real-world circuit behavior through hands-on experimentation.

Q: When and where should I use this amplifier circuit kit?

A: This kit is ideal for use in physics or electronics laboratories, engineering classrooms, and DIY electronics projects. It operates reliably in environments between 0C and 50C, requiring only a standard 9V DC battery.

Q: What process should be followed to set up the amplifier circuit?

A: To set up, securely mount the PCB using screws or standoffs, connect input and output wires to the terminals, attach the 9V battery, and use the included documentation to select and verify the desired amplifier configuration.

Q: How does the noise level and S/N ratio benefit audio applications?

A: With a noise level 0.5 mV and a signal-to-noise ratio exceeding 60 dB, this circuit ensures clean audio output with minimal background interference, crucial for precise signal amplification in audio experiments or projects.

Q: What types of input signals are supported by this kit?

A: It supports analog audio and voltage signals, accommodating general lab demonstrations or project needs for amplifying low-level signals in single or multi-stage configurations.

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