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Home » Active Crossover Circuit using IC LM324

Active Crossover Circuit using IC LM324

Last updated on 4 August 2025 by Admin-Lavi Leave a Comment

Active Crossover Circuit using IC LM324 important project for audio.

It split audio signal into parts like low, mid and high.

Each part go to right speaker with woofer for bass and tweeter for high.

This make sound better and system works well.

IC LM324 op-amp is used a lot.

It is cheap, low power and works with single or dual power supply.

This article show how to make and use active crossover with LM324 IC.

Circuit Working:

Active Crossover Circuit Diagram using IC LM324

Parts List:

ComponentValueQuantity
Resistors22k 1/4 watt7
6.2k 1/4 watt2
Capacitors6.8nF3
SemiconductorIC LM3241

This circuit is 2nd order active crossover using LM324 chip.

It split audio into two parts:

  • High frequency output
  • Low frequency output

It uses op-amps in LM324 with resistors and capacitors to set crossover point.

Input Stage:

  • First op-amp is buffer and it protect input and prepare signal.

High Frequency Filter:

  • Second op-amp is high-pass filter with R3, R5, C1.
  • It passes high sounds and block low.
  • Output give high frequency signal.

Low Frequency Filter:

  • Third op-amp is low-pass filter with R6, R8, C2.
  • It passes low sounds and block high.
  • Output give low frequency signal.

Final Amplification:

  • Fourth op-amp make low sound stronger before output.

Good Points:

  • It is simple and cheap design
  • Only one LM324 IC used.
  • Can change crossover by changing resistor/capacitor
  • It works with ±15V dual power for better sound

Where to Use:

  • Audio systems, home theater and studio
  • Loudspeakers and PA systems
  • Communication devices for sound filtering

Formulas and Calculations:

Formulas for Active Crossover with LM324:

High Pass Filter:

Cutoff frequency (ƒc) use this formula:

ƒc = 1 / 2πRC

where:

R = R5 is 22k

C = C1 is 6.8nF

Put values in formula:

ƒc = 1 / (2π × 22,000 × 6.8 × 10⁻⁹)

ƒc = 1.06 kHz

Low Pass Filter:

Same formula and same values:

R = R8 is 22k

C = C2 is 6.8nF

Put values:

ƒc = 1 / (2π × 22,000 × 6.8 × 10⁻⁹)

ƒc = 1.06 kHz

So crossover frequency is around 1.06 kHz.

This help split high and low signals clearly in circuit.

How to Build:

To build a Active Crossover Circuit using IC LM324 follow the below mentioned steps for connections:

  • Collect all parts as shown in circuit diagram.
  • Connect pin 4 of LM324 to +15V and pin 11 to –15V with dual power.
  • Audio input goes to pin 3 with non-inverting of first op-amp.
  • Put resistor R1 between pin 2 of inverting input.
  • Connect resistor R2 between pin 1 output and pin 2 of inverting input.
  • Connect pins 3, 5, 10, 12 to GND.
  • Connect capacitor C1 6.8nF and resistor R5 in parallel to pin 6 of inverting input,
  • Pin 7 gives high frequency output.
  • From pin 1 go to pin 9 of non-inverting of third op-amp using resistor R7.
  • Connect capacitor C2 6.8nF and resistor R8 in parallel to pin 10 of inverting input.
  • Pin 8 gives output to next stage.
  • Connect pin 8 which is the low signal to pin 13 of inverting input of fourth op-amp using resistor R9.
  • Put capacitor C3 6.8nF and resistor R7 between pin 14 of output and pin 13.
  • Pin 14 gives low frequency output.

Conclusion:

This Active Crossover Circuit using IC LM324 is smart and useful project.

It is easy to make with low cost and is good for many audio projects.

It splits sound nicely and helps each speaker play better.

References:

I want to implement a 2-active crossover circuit with LM833 and amplify it using LM386 and now the problem is I couldn’t understand the circuit [closed]

Filed Under: Audio Circuits

About Admin-Lavi

Lavi is a B.Tech electronics engineer with a passion for designing new electronic circuits. Do you have questions regarding the circuit diagrams presented on this blog? Feel free to comment and solve your queries with quick replies

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