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Transistor Amplifier Circuits

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We are one of the leading manufacturers and exporters of a wide range of Transistor Amplifier Circuits that are made deploying advanced techniques in engineering. We check the quality of these products at every stage to ensure only flawless range is delivered to customers. Our product range can be availed by our customers at market leading price.


Thermistor Devices
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Thermistor Devices

Objective:

  • To study the static characteristics and to plot the curve [ ohm’s law]

  • To study the dynamic characteristics and to plot the curve [ change in current with change in voltage]

 

Technical Specification :

 

  • Built in power supply : +15V DC

  • Mains : 230V AC

  • Dimension : 27CMS X 17CMS [metal cabinet]

  • Weight : 2KGS APPX



Transistor Amplifier Circuit
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Transistor Amplifier Circuit

Avail from us a wide and extensive range of transistors that finds its application in both digital and analog circuits. Basically used as a electronic signal amplifier, these transistors are used in virtually all electronic devices. The Transistor Amplifier Circuits are:

  • AF Amplifier Using TBA810
  • Boost Strap Voltage Sweep
  • Current & Voltage Feed Back Amplifier using LM380
  • Class A Power Amplifier 
  • Class B Power Amplifier
  • Class C Power Amplifier
  • Determination H Parameter of Transistor
  • Differential Amplifier
  • Fet Amplifier
  • Transistor Amplifier Circuits
  • Transistor Push Pull Amplifier
  • Transistor DC- Amplifier
  • Transistorised Complementary Symmetry Amplifier
  • Two stage RC Coupled Transistor Amplifier
  • Thermal Stability of Transistor
  • Thermal Characteristics
  • Transistor Time Delay Relay Circuit
  • Transistor Curve Tracer
  • Tuned RF Amplifier
  • Transformer Coupled Amplifier


Common Source Amplifier

Objective:

  • To construct common source amplifier

  • By applying input to the amplifier and there by observing the output

  • To calculate its gain

  • To plot its characteristics curve

 

Technical Specification :

 

  • Built in power supply : +15V DC

  • Mains : 230V AC

  • Dimension : 27CMS X 17CMS [metal cabinet]

  • Weight : 2KGS APPX

 



Emitter Follower (Darlington Amplifier)

Objective:

  • To construct emitter or Darlington pair amplifier

  • By applying input to the amplifier and there by observing the output

  • To calculate its gain

  • To plot its characteristics curve

 

Technical Specification :

 

  • Built in power supply : +15V DC

  • Mains : 230V AC

  • Dimension : 27CMS X 17CMS [metal cabinet]

  • Weight : 2KGS APPX

 



Negative Feedback Amplifier

Objective:

  • To construct two negative feedback amplifier

  • By applying input to the amplifier and there by observing the output

  • To study the amplifier with & without feedback

  • To plot its characteristics curve

 

Technical Specification :

 

  • Built in power supply : +15V DC

  • Mains : 230V AC

  • Dimension : 27CMS X 17CMS [metal cabinet]

  • Weight : 2KGS APPX



Square Wave Testing of An Amplifier

Objective:

  • To construct two stage amplifier

  • By applying “square” input to the amplifier and there by observing the output

  • To calculate its gain

  • To plot its characteristics curve

 

Technical Specification :

 

  • Built in power supply : +15V DC

  • Mains : 230V AC

  • Dimension : 27CMS X 17CMS [metal cabinet]

  • Weight : 2KGS APPX



Two Stage FET Amplifier

Objective:

  • To construct two stage FET amplifier

  • By applying input to the amplifier and there by observing the output

  • To calculate its gain

  • To plot its characteristics curve

 

Technical Specification :

 

  • Built in power supply : +15V DC

  • Mains : 230V AC

  • Dimension : 27CMS X 17CMS [metal cabinet]

  • Weight : 2KGS APPX



Class AB Amplifier

Objective:

  • To construct class AB amplifier

  • By applying input to the amplifier and there by observing the output

  • To calculate its gain

  • To plot its characteristics curve

 

Technical Specification :

 

  • Built in power supply : +15V DC

  • Mains : 230V AC

  • Dimension : 27CMS X 17CMS [metal cabinet]

  • Weight : 2KGS APPX

 



Transformer Coupled Amplifier

Objective:

  • To study transistor push pull amplifier

  • You can able to observe cross over distortion, due to non linearity some distortion will occur

  • By varying the input bias you can able to observe the different output waveforms

  • By connecting the loud speaker you can hear the distortion.

 

Technical Specification :

 

  • Built in power supply : +15V DC

  • Mains : 230V AC

  • Dimension : 27CMS X 17CMS [metal cabinet]

  • Weight : 2KGS APPX



Tuned RF Amplifier

Objective:

  • To construct the RF tuned amplifier

  • To find the resonant frequency

  • To plot the graph for voltage gain versus frequency[log f]

 

Technical Specification :

 

  • Built in power supply : +15V DC

  • Mains : 230V AC

  • Dimension : 27CMS X 17CMS [metal cabinet]

  • Weight : 2KGS APPX



Transistor Curve Tracer

Objective:

  • Transistor curve tracer used to study the NPN and PNP characteristics

  • To current gain, saturation voltage, saturation resistance, and other parameter

  • You can able to observe the CE characteristics curve through oscilloscope

 

Technical Specification :

 

  • Built in power supply : +15V & -15V, +5V DC & CLK [1HZ]

  • Mains : 230V AC

  • Dimension : 27CMS X 17CMS [metal cabinet]

  • Weight : 2KGS APPX

 



Transistor Time Delay Relay Circuit

Objective:

  • To construct the time delay circuit and verify its operation

  • Time delay can be obtained by selecting the different values of the capacitor

  • As the transistor starts conduction it turns on the relay

 

Technical Specification :

 

  • Built in power supply : +12V DC

  • Mains : 230V AC

  • Dimension : 27CMS X 17CMS [metal cabinet]

  • Weight : 2KGS APPX

 

 



Thermal Stability Of Transistor

Objective:

 

  • To construct the basic amplifier which uses base bias, voltage bias, emitter and collector feed back amplifier and to observe the relative thermal stability

  • To apply heat to the transistor and to observe the output voltage variation in the circuit

 

Technical Specification :

 

  • Built in power supply : +15V DC

  • Mains : 230V AC

  • Dimension : 27CMS X 17CMS [metal cabinet]

  • Weight : 2KGS APPX



Two Stage RC Coupled Transistor Amplifier

Objective:

  • To calculate the input output impedance and the individual gain of the each amplifier

  • To calculate the over all gain and the frequency

 

Technical Specification :

 

  • Built in power supply : +15V AC

  • Mains : 230V AC

  • Dimension : 27CMS X 17CMS [metal cabinet]

  • Weight : 2KGS APPX

 



Transistor Complementary Symmetry Amplifier

Objective:

 

  • To construct the complementary symmetry amplifier

  • To observe the dc bias current

  • To calculate the output power, efficiency, and to plot the graph

 

Technical Specification :

 

  • Built in power supply : +15V DC

  • Mains: 230V AC

  • Dimension : 27CMS X 17CMS [metal cabinet]

  • Weight : 2KGS APPX



Transistor DC- Amplifier

Objective:

 

  • To demonstrate how the beta value affects when the transistor input resistance changes

  • To demonstrate how beta can be increased with Darling ton pair circuit

 

Technical Specification :

 

  • Built in power supply : +30V

  • Mains : 230V AC

  • Dimension : 27CMS X 17CMS [metal cabinet]

  • Weight : 2KGS APPX



Transistor Push Pull Amplifier

Objective:


  • To measure the two different types of distortion

  • To observe the crossover distortion either on the C.R.O or by the loud speaker

  • To observe the non linear distortion either on the C.R.O or by the loud speaker

 

Technical Specification :

 

  • Built in power supply : +15V DC

  • Mains : 230V AC

  • Dimension : 27CMS X 17CMS [metal cabinet]

  • Weight : 2KGS APPX



Transistor Amplifier Circuits

Objective:


  • To construct and study the operation of common emitter amplifier

  • And the common base amplifier

  • And the common collector and their voltage gain

 

Technical Specification :

 

  • Built in power supply : +15V DC

  • Mains : 230V AC

  • Dimension : 27CMS X 17CMS [metal cabinet]

  • Weight : 2KGS APPX.



FET Amplifier

Objective:


  • To construct the common source amplifier and to determine the gain of the amplifier

  • To construct the common drain amplifier and to determine the gain of the amplifier


Technical Specification :

 

  • Built in power supply : +15V DC

  • Mains : 230V AC

  • Dimension : 27CMS X 17CMS [metal cabinet]

  • Weight : 2KGS APPX



Differential Amplifier

Objective:


  • To verify the differential amplifier

  • To verify the output is proportional to the difference between the two input voltages

 

Technical Specification :

 

  • Built in power supply : +15V & -15V DC

  • Mains : 230V AC

  • Dimension : 27CMS X 17CMS [metal cabinet]

  • Weight : 2KGS APPX



Determination H Parameter of Transistor

Objective:

 

  • To calculate the voltage parameters with the output shorted

  • To calculate the current gain with the output shorted

  • To calculate the reverse voltage gain with the input open

  • To calculate the output admittance

 

Technical Specification :

 

  • Built in power supply : +15V & -15V DC

  • Mains : 230V AC

  • Dimension : 27CMS X 17CMS [metal cabinet]

  • Weight : 2KGS APPX



Class C Power Amplifier

Objective:

 

  • To construct the class C power amplifier and to find the selectivity

  • To calculate the voltage gain at the higher frequencies

  • To draw the graph between gain versus frequency

 

Technical Specification :

 

  • Built in power supply : +15V DC

  • Mains : 230V AC

  • Dimension : 27CMS X 17CMS [metal cabinet]

  • Weight : 2KGS APPX

 



Class B Power Amplifier

Objective:

 

  • To draw the AC and the DC load line

  • To calculate the voltage amplification

  • To calculate the power


Technical Specification :

 

  • Built in power supply : +9V DC

  • Mains : 230V AC

  • Dimension : 27CMS X 17CMS [metal cabinet]

  • Weight : 2KGS APPX



Class A Power Amplifier

Objective:

 

  • To calculate the signal power

  • To calculate the efficiency

  • To draw its load line curve

 

Technical Specification :

 

  • Built in power supply : +9V DC

  • Mains : 230V AC

  • Dimension : 27CMS X 17CMS [metal cabinet]

  • Weight : 2KGS APPX



Construction Audio Amplifier Using LM380

Objective:

 

  • To construct the positive and the negative feedback amplifier

  • To calculate the voltage gain

  • To calculate the power

 

Technical Specification :

 

  • Built in power supply : +15V DC

  • Mains: 230V AC

  • Dimension : 27CMS X 17CMS [metal cabinet]

  • Weight : 2KGS APPX



Current & Voltage Feed Back Amplifier

Objective:

  • To construct the voltage feedback amplifier

  • To construct the current feedback amplifier

  • To prove that the output voltage is proportional to the feed back signal

 

Technical Specification :

 

  • Built in power supply : +15V DC

  • Mains : 230V AC

  • Dimension : 27CMS X 17CMS [metal cabinet]

  • Weight : 2KGS APPX



Boost Strap Voltage Sweep

Objective:

  • To construct the boost strap voltage sweep

  • To calculate its input impedance

  • To verify its unity voltage gain


Technical Specification :

 

  • Built in power supply : +9V DC

  • Mains : 230V AC

  • Dimension : 27CMS X 17CMS [metal cabinet]

  • Weight : 2KGS APPX



AF Amplifier Using TBA810

Objective:

  • To construct the AF amplifier using TB 810

  • To deliver the output power of about 7 watts

  • You can give either audio or voice signals as the input

Technical Specification :

 

  • Built in power supply : +15V & -15V DC

  • Mains : 230V AC

  • Dimension : 27CMS X 17CMS [metal cabinet]

  • Weight : 2KGS APPX.







DIAC Device

Digital Electronic

4 Bit Binary Universal Shift Register

Decoder

Digital To Analog Converter Weighted Resistor

Digital To Analog Converter R-2R

XOR Using Nor Gate

XOR Using Nand Gate

Binary to BCD Converter

BCD to Binary Converter

Parity Generator

Divide By Ten Counter Using 7490

Square Wave Generator & Divide By Circuit Using 7473

RS/D Flip Flop Using Nand Gate

CMOS to Lamp Interface

Interfacing TTL Drivers to Lamp

Interfacing TTL Drivers to LED

Counter Display Using Memory Register

Double Digit Counter

BCD Counter

Ring Counter

Johnson Counter

Ripple Down Counter

Ripple Up Counter

BCD to Decimal Converter

Gray to Binary & Binary to Gray

Programmable Logic Array

Programmable Array Logic

Recirculating Shift Register

1 of 4 Decoder

Left/ Right Shift Register

Logic Module

4 Digit Multiplexed Display Using 74C 926

Comparing The 4001 to 7402 IC

Memory Programming

Dual Nature Logic Gates

Analog Clock

Basic Discrete Flip Flop

555 Timer Circuits and Application

Digital to Analog Converter

Analog to Digital Converter

Crystal Controlled Clock Circuit

Alphanumeric 5x7 Dot Matrix Display

Study of Parity Circuits

Binary Multiplexer

Modulo N Counter N-2TO 9

Tri State Buffers & Bussing Technique

Read Only Memory

Random Access Memory (16 Word of 4 Bits)

4 Bit Binary Full Adder & Subtractor

Open Collector Gates & Wired or Connections

Arithmetic Logic Unit Demonstrator Using 74181 IC

C-Mos Integrated Circuits

4 Line To 16 Line Demultiplexer

16 Lines to 1 Line Multiplexer

Decade Counter Decoder Driver & 7 Segment Display

Excess 3 to Decimal Converter

BCD To 7 Segment Decoder & BCD to 7 Segment Decoder

BCD To Decimal Converter Using Nixie Tube

Nand Gate Encoder

Decimal to Binary Encoder

Master Slave Jk Flip Flop Using Nand Gates

Quadruple Jk Flip With Preset & Clear Using 7476

R- S /D /T Flip Flop Devices and Comparisontics

Exclusive or and Nor Gates, Half Adder & Full Subtractor

Nand Nor Inverter Gates

Basic Logic Gates (Using Diode & Transistors)

Bit Binary Up Down Counter Using 74192(Synchronous Counter)

Different Types Of Jk Flip Flop Triggering Method

Pulse Generator Using 5369 Crystal For Output Of 60 HZ


Contact Us

Ohm Technologiees
Mr. Vijayarajan K. (Proprietor)
No. 9/243, Plot No. 1 - D - 1, Sree Vijayalakshmi Nagar, Ambal Nagar, Koovor
Chennai - 600122, Tamil Nadu, India

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