This article describes what a power amplifier is and its requirements, different types and categories of power amplifiers, and several applications of power amplifiers.
At the end of the article, we will show you 250 design drawings of power amplifiers for your reference. If you like, please bookmark this article and share it with more people.
Power amplifier definition
A power amplifier is an electronic amplifier designed to increase the power amplitude of a given input signal. The power of the input signal is increased to a level sufficient to drive the load of output devices such as speakers, headphones, and RF transmitters.
Unlike voltage/current amplifiers, power amplifiers are designed to directly drive the load and serve as the final module in the amplification chain. The input signal of the power amplifier must be higher than a certain threshold.
Therefore, instead of passing the original audio/RF signal directly to the power amplifier, it is pre-amplified with a current/voltage amplifier and sent to the power amplifier as input after making the necessary modifications.
You can observe the block diagram of the audio amplifier and the usage of the power amplifier below.

In this case, the microphone is used as the input source. The signal strength from the microphone is not strong enough for the power amplifier.
First pre-amplify it, and then slightly increase its voltage and current. Then, the signal passes through the tone and volume control circuit to make aesthetic adjustments to the audio waveform. Finally, the signal passes through the power amplifier, and the power amplifier’s output is fed to the speaker.
Types of power amplifier
According to the type of output device connected, the power amplifier is divided into the following three types:
Audio power amplifier
RF power amplifier
DC power amplifier
Audio power amplifier
This type of power amplifier is used to increase the power level of weaker audio signals. Amplifiers used in speaker drive circuits of TVs, mobile phones, etc. fall into this category.
The output range of audio power amplifiers ranges from a few milliwatts (such as headphone amplifiers) to several kilowatts (such as power amplifiers in Hi-Fi/home theater systems).
Wireless transmission requires modulated waves to be sent over long distances through the air. The antenna is used to transmit the signal, and the transmission range depends on the power of the signal fed to the antenna.
For wireless transmissions such as FM broadcasting, the antenna needs to input signals with a power of several thousand kilowatts. Here, the RF power amplifier is used to increase the power amplitude of the modulated wave to a level sufficient to achieve the required transmission distance.
DC power amplifier
The DC power amplifier is used to amplify the power of the PWM (Pulse Width Modulation) signal. They are used in electronic control systems that require high-power signals to drive motors or actuators.
They take input from the microcontroller system, increase its power, and feed the amplified signal to the DC motor or actuator.
PA class
There are many ways to design power amplifier circuits. The operation and output characteristics of each circuit configuration are different from each other. To distinguish the characteristics and performance of different PA circuits are used, in which letter symbols are assigned to identify operation methods.
They are roughly divided into two categories. Power amplifiers designed to amplify analog signals belong to Class A, B, AB, or C.
Power amplifiers designed to amplify pulse width modulated (PWM) digital signals are located under D, E, F, etc.
The most commonly used power amplifiers are those used in audio amplifier circuits. They belong to Class A, B, AB, or C. So let us understand them in detail.
Class A power amplifier
The analog waveform is composed of positive high points and negative low points. In this type of amplifier, the entire input waveform is used in the amplification process. A single transistor is used to amplify the positive and negative half of the waveform.
This makes their design simple and makes Class A amplifiers the most commonly used type of PA. Although such PAs have been replaced by better designs, they are still very popular among hobbyists.

In this type of amplifier, even if there is no input signal, the active components (electronic components used for amplification, in this case, transistors) are always in use.
In the case of a normal configuration, this will generate a lot of heat and reduce the efficiency of the Class A amplifier to 25%. In the case of a transformer-coupled configuration, the efficiency will be reduced to 50%.
The conduction angle of the Class A amplifier (the part of the waveform used for amplification in 360 degrees) is 360°. Therefore, the signal distortion level is very small, which can provide better high-frequency performance.
Class B amplifier
Class B amplifiers are designed to reduce the efficiency and heating problems that exist in Class A amplifiers. This type of amplifier uses two complementary transistors instead of a single transistor to amplify the entire waveform.
One transistor amplifies the positive half of the waveform, and the other amplifies the negative half of the waveform. Each active device conducts half of the waveform (180°), and two of them will amplify the entire signal when they are turned on.

Due to the two-transistor design, the efficiency of the Class B amplifier has been greatly improved compared with the Class A amplifier. They can reach about 75% of the theoretical efficiency.
This type of power amplifier is used in battery-powered equipment, such as FM radios and transistor radios. Since the two halves of the waveform overlap, there is little distortion in the intersection area. To reduce this signal distortion, a class AB amplifier is designed.
Class AB amplifier
Class AB amplifier is a combination of Class A and Class B amplifiers. This type of amplifier is designed to reduce the inefficiency of Class A amplifiers and the signal distortion in the crossover area of Class B amplifiers.

It can maintain high-frequency response like a class A amplifier and maintain good efficiency like a class B amplifier. The combination of diode and resistor is used to provide a very small bias voltage, thereby reducing waveform distortion near the crossover area. Therefore, the efficiency drops slightly (60%).
Class C amplifier
Class C amplifier design can achieve higher efficiency and reduce linearity/conduction angle (below 90°).
To improve efficiency, the quality of amplification is sacrificed. A smaller conduction angle means greater distortion, so this type of amplifier is not suitable for audio amplification. They are used for the amplification of high-frequency oscillators and radio frequency signals.
Class C amplifiers usually contain a tuned load that filters and amplifies the input signal at a specific frequency, while waveforms at other frequencies are suppressed.

In this type of PA, the active element only turns on when the input voltage is higher than a certain threshold, thereby reducing power consumption and improving efficiency.
Other PAs
Power D amplifiers, E, F, G, etc. are used to amplify PWM modulated digital signals. They belong to the category of switching power amplifiers, which can continuously turn the output on or off without any other level in between. Due to this simplicity, PAs belonging to the above categories can achieve theoretical efficiencies as high as (90-100)%.
Applications
The following are the applications of PAs in different fields.
Consumer electronics products
Audio power amplifiers are used in almost all consumer electronic devices, from microwave ovens, headphone drivers, TVs, mobile phones, and home theater systems to theater and concert enhancement systems.
Industry
Switching power amplifiers are used to control most industrial actuator systems, such as servos and DC motors.
Wireless communication
High-power amplifiers are very important for transmitting cellular or FM broadcast signals to users. Thanks to the PA higher power levels are possible, thereby increasing the data transmission rate and availability. They are also used in satellite communication equipment.
Below are the more than 250 PA design circuit diagrams for your reference. Besides this, the PA supplier C&T RF Antennas Inc also provides the existing RF PAs and RF PA design services.
PA design circuit diagram 001

PA design circuit diagram 002

PA design circuit diagram 003

PA design circuit diagram 004

PA design circuit diagram 005

PA design circuit diagram 006

PA design circuit diagram 007

PA design circuit diagram 008

PA design circuit diagram 009

PA design circuit diagram 010

PA design circuit diagram 011

PA design circuit diagram 012

PA design circuit diagram 013

PA design circuit diagram 014

PA design circuit diagram 015

PA design circuit diagram 016

PA design circuit diagram 017

PA design circuit diagram 018

PA design circuit diagram 019

PA design circuit diagram 020

PA design circuit diagram 021

PA design circuit diagram 022

PA design circuit diagram 023

PA design circuit diagram 024

PA design circuit diagram 025

PA design circuit diagram 026

PA design circuit diagram 027

PA design circuit diagram 028

PA design circuit diagram 029

PA design circuit diagram 030

PA design circuit diagram 031

PA design circuit diagram 032

PA design circuit diagram 033

PA design circuit diagram 034

PA design circuit diagram 035

PA design circuit diagram 036

PA design circuit diagram 037

PA design circuit diagram 038

PA design circuit diagram 039

PA design circuit diagram 040

PA design circuit diagram 041

PA design circuit diagram 042

PA design circuit diagram 043

PA design circuit diagram 044

PA design circuit diagram 045

PA design circuit diagram 046

PA design circuit diagram 047

PA design circuit diagram 048

PA design circuit diagram 049

PA design circuit diagram 050

PA design circuit diagram 051

PA design circuit diagram 052

PA design circuit diagram 053

PA design circuit diagram 054

PA design circuit diagram 055

PA design circuit diagram 056

PA design circuit diagram 057

PA design circuit diagram 058

PA design circuit diagram 059

PA design circuit diagram 060

PA design circuit diagram 061

PA design circuit diagram 062

PA design circuit diagram 063

PA design circuit diagram 064

PA design circuit diagram 065

PA design circuit diagram 066

PA design circuit diagram 067

PA design circuit diagram 068

PA design circuit diagram 069

PA design circuit diagram 070

PA design circuit diagram 071

PA design circuit diagram 072

PA design circuit diagram 073

PA design circuit diagram 074

PA design circuit diagram 075

PA design circuit diagram 076

PA design circuit diagram 077

PA design circuit diagram 078

PA design circuit diagram 079

PA design circuit diagram 080

PA design circuit diagram 081

PA design circuit diagram 082

PA design circuit diagram 083

PA design circuit diagram 084

PA design circuit diagram 085

PA design circuit diagram 086

PA design circuit diagram 087

PA design circuit diagram 088

PA design circuit diagram 089

PA design circuit diagram 090

PA design circuit diagram 091

PA design circuit diagram 092

PA design circuit diagram 093

PA design circuit diagram 094

PA design circuit diagram 095

PA design circuit diagram 096

PA design circuit diagram 097

PA design circuit diagram 098

PA design circuit diagram 099

PA design circuit diagram 100

PA design circuit diagram 101

PA design circuit diagram 102

PA design circuit diagram 103

PA design circuit diagram 104

PA design circuit diagram 105

PA design circuit diagram 106

PA design circuit diagram 107

PA design circuit diagram 108

PA design circuit diagram 109

PA design circuit diagram 110

PA design circuit diagram 111

PA design circuit diagram 112

PA design circuit diagram 113

PA design circuit diagram 114

PA design circuit diagram 115

PA design circuit diagram 116

PA design circuit diagram 117

PA design circuit diagram 118

PA design circuit diagram 119

PA design circuit diagram 120

PA design circuit diagram 121

PA design circuit diagram 122

PA design circuit diagram 123

PA design circuit diagram 124

PA design circuit diagram 125

PA design circuit diagram 126

PA design circuit diagram 127

PA design circuit diagram 128

PA design circuit diagram 129

PA design circuit diagram 130

PA design circuit diagram 131

PA design circuit diagram 132

PA design circuit diagram 133

PA design circuit diagram 134

PA design circuit diagram 135

PA design circuit diagram 136

PA design circuit diagram 137

PA design circuit diagram 138

PA design circuit diagram 139

PA design circuit diagram 140

PA design circuit diagram 141

PA design circuit diagram 142

PA design circuit diagram 143

PA design circuit diagram 144

PA design circuit diagram 145

PA design circuit diagram 146

PA design circuit diagram 147

PA design circuit diagram 148

PA design circuit diagram 149

PA design circuit diagram 150

PA design circuit diagram 151

PA design circuit diagram 152

PA design circuit diagram 153

PA design circuit diagram 154

PA design circuit diagram 155

PA design circuit diagram 156

PA design circuit diagram 157

PA design circuit diagram 158

PA design circuit diagram 159

PA design circuit diagram 160

PA design circuit diagram 161

PA design circuit diagram 162

PA design circuit diagram 163

PA design circuit diagram 164

PA design circuit diagram 165

PA design circuit diagram 166

PA design circuit diagram 167

PA design circuit diagram 168

PA design circuit diagram 169

PA design circuit diagram 170

PA design circuit diagram 171

PA design circuit diagram 172

PA design circuit diagram 173

PA design circuit diagram 174

PA design circuit diagram 175

PA design circuit diagram 176

PA design circuit diagram 177

PA design circuit diagram 178

PA design circuit diagram 179

PA design circuit diagram 180

PA design circuit diagram 181

PA design circuit diagram 182

PA design circuit diagram 183

PA design circuit diagram 184

PA design circuit diagram 185

PA design circuit diagram 186

PA design circuit diagram 187

PA design circuit diagram 188

PA design circuit diagram 189

PA design circuit diagram 190

PA design circuit diagram 191

PA design circuit diagram 192

PA design circuit diagram 193

PA design circuit diagram 194

PA design circuit diagram 195

PA design circuit diagram 196

PA design circuit diagram 197

PA design circuit diagram 198

PA design circuit diagram 199

PA design circuit diagram 200

PA design circuit diagram 201

PA design circuit diagram 202

PA design circuit diagram 203

PA design circuit diagram 204

PA design circuit diagram 205

PA design circuit diagram 206

PA design circuit diagram 207

PA design circuit diagram 208

PA design circuit diagram 209

PA design circuit diagram 210

PA design circuit diagram 211

PA design circuit diagram 212

PA design circuit diagram 213

PA design circuit diagram 214

PA design circuit diagram 215

PA design circuit diagram 216

PA design circuit diagram 217

PA design circuit diagram 218

PA design circuit diagram 219

PA design circuit diagram 220

PA design circuit diagram 221

PA design circuit diagram 222

PA design circuit diagram 223

PA design circuit diagram 224

PA design circuit diagram 225

PA design circuit diagram 226

PA design circuit diagram 227

PA design circuit diagram 228

PA design circuit diagram 229

PA design circuit diagram 230

PA design circuit diagram 231

PA design circuit diagram 232

PA design circuit diagram 233

PA design circuit diagram 234

PA design circuit diagram 235

PA design circuit diagram 236

PA design circuit diagram 237

PA design circuit diagram 238

PA design circuit diagram 239

PA design circuit diagram 240

PA design circuit diagram 241

PA design circuit diagram 242

PA design circuit diagram 243

PA design circuit diagram 244

PA design circuit diagram 245

PA design circuit diagram 246

PA design circuit diagram 247

PA design circuit diagram 248

PA design circuit diagram 249

PA design circuit diagram 250
