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About Operational Amplifier LM358: 24 Classical Circuits

  • Contents

This article mainly tells about what's an op amp, and then briefly introduce LM358 about its features and parameters, the last we present you the 24 classical circuits of LM358.

 

 


Catalog

 

I. What is an Op Amp?

II. LM358 Introduction

     2.1 What is LM358?

     2.2 LM358 Features

     2.3 LM358 Parameters

III. 24 Classic Circuits of LM358

FAQ

 


I. What is an Op Amp?

This is a tutorial video introducing what's an opearational amplifier in details.

 


II. LM358 Introduction

 

2.1 What is LM358?

The LM358 includes two independent, high gain, internal-frequency compensated dual operational amplifiers that are suitable for single power sources with a wide range of voltages, as well as dual-power operation modes. Under recommended operating conditions: the power supply current is independent of the power supply voltage. Its applying range includes sensor amplifiers, DC gain modules, audio amplifiers, industrial control, DC gain components, and all other situations where operational amplifiers can be used with a single power supply.

 

The LM358 has plug-in type and the patch type packaging which are the plastic package with double-row 8 lead wires.

 

 

2.2 LM358 Features

 

 

 

2.3 LM358 Parameters

Input bias current 45 nA

Input offset current 50 nA

Input offset voltage 2.9mV

Power suppression ratio (100dB)

Common-mode suppression ratio (80dB)

Input common-mode voltage maximum VCC about 1.5 V

 


III. 24 Classic Circuits of LM358

 

Schematic diagrams are as shown as following: 

DIP Plastic Pin Diagram

Figure 1. DIP Plastic Pin Diagram

Figure 2. Circular Metal Shell Packaging Pin Diagram

Figure 2. Circular Metal Shell Packaging Pin Diagram

Figure 3. Internal Circuit Schematic Diagram

Figure 3. Internal Circuit Schematic Diagram

Figure 4. DC Coupled Low Pass RC Active Filter

Figure 4. DC Coupled Low Pass RC Active Filter

Figure 5. LED Driver

Figure 5. LED Driver

Figure 6. TTL Drive Circuit

Figure 6. TTL Drive Circuit

Figure 7. RC Bandpass Filter (BPF)

Figure 7. RC Bandpass Filter (BPF)

Figure 8. Squarewave Oscillator

Figure 8. Squarewave Oscillator

Figure 9. Hysteresis Comparator

Figure 9. Hysteresis Comparator

Figure 10. Bandpass Filter (BPF)

Figure 10. Bandpass Filter (BPF)

Figure 11. Lamp Driver

Figure 11. Lamp Driver

Figure 12. Current Monitor

Figure 12. Current Monitor

Figure 13. Low Drift Peak Value Detector

Figure 13. Low Drift Peak Value Detector

Figure 14. Voltage Follower

Figure 14. Voltage Follower

Figure 15. Power Amplifier Peripheral Circuit

Figure 15. Power Amplifier Peripheral Circuit

Figure 16. Voltage Controlled Oscillator (VCO)

Figure 16. Voltage Controlled Oscillator (VCO)

Figure 17. Fixed Current Source

Figure 17. Fixed Current Source

Figure 18. Pulser

Figure 18. Pulser

Figure 19. AC Coupled Inverting Amplifier

Figure 19. AC Coupled Inverting Amplifier

Figure 20. AC Coupled Non-Inverting Amplifier

Figure 20. AC Coupled Non-Inverting Amplifier

Figure 21. Adjustable Gain Instrument Amplifier

Figure 21. Adjustable Gain Instrument Amplifier

Figure 22. DC Amplifier

Figure 22. DC Amplifier

Figure 23. Pulser

Figure 23. Pulser

Figure 24. Bridge Current Amplifier

Figure 24. Bridge Current Amplifier


FAQ

 

1. What is lm358 op amp?

LM358 is a dual op-amp IC integrated with two op-amps powered by a common power supply. It can be considered as one half of LM324 Quad op-amp which contains four op-amps with common power supply. The differential input voltage range can be equal to that of power supply voltage.

 

2. What is lm358 used for?

LM358 can be used as transducer amplifier, DC gain block etc. It has large dc voltage gain of 100dB. This IC can be operated on wide range of power supply from 3V to 32V for single power supply or from ±1.5V to ±16V for dual power supply and it also support large output voltage swing.

 

3. How does an lm358 work?

IC LM358– LM358 consists of two independent, high gain operational amplifiers in one package. Important feature of this IC is that we do not require independent power supply for working of each comparator for wide range of power supply. LM358 can be used as transducer amplifier, DC gain block etc.

 

4. How do I know if my lm358 op amp is broken?

Measure the DC voltage at the +input. then measure the DC voltage at the output. if the results are significantly different, the opamp is most likely shot. if they are the same, the opamp is most likely ok and the problem is something else.

 

5. What is the difference between lm386 and lm358?

The LM386 is a complete audio power amplifier, the LM358 is a dual operational amplifier. When using the LM358 e.g. as a pre-amplifier, you will have to supply a separate power amplifier.

 

6. How to import lm358 into LTspice?

1. Download model file and unzip.
2. Place .cir file in same folder as schematic.
3. Place "opamp2" symbol on schematic.
4. Change "opamp2" value to LMX58_LM2904.
5. Place directive on schematic ". lib LMx58_LM2904. CIR" without quotes.

 

7. How many comparators are in LM358?

2 comparator. In this tutorial LM358 IC is used. It has got 2 comparator.

 

8. What is the difference between LM358 and LM741?

Two commonly used opamp are LM741 & LM358. Difference between LM358 & LM741 is, LM358 is newer and have two OP-AMP on chip while in 741 only one OP-AMP is present. Both the IC's have 8 pins.

 

9. Why does an op amp require both positive and negative supply voltages?

Without the dual supplies the output signal would clip at the ground potential. Operational amplifiers have two power supply rails because they usually need to swing bipolar - output voltages that go either positive or negative in response to the normal range of input signals.

 

10. Does op amp need ground?

An Op Amp inverting input (-) is at zero potential (A virtual ground), even though it does not have a galvanic connection to ground.


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