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Lm2596 Arduino Datasheet

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LM2596 datasheet Here are why I like them. Drives 3.0 A load with excellent line and load regulation. Runs on a switching frequency of 150 kHz. I use this step down converter with input 30V DC and output set to exactly 5V. At the output I connected an ESP8266 (WEMOS D1 mini, has 3.3v regulator on its board) and an MP3 player module (DY-SF. Dc Dc Step Down Module Datasheet Lm2596 Buy Datasheet. Lm2596 Dc Dc Step Down Converter Cc Cv Arduino Shop Eu Lm2596 Dc Dc Step Down Module In3 40v Out1 5 35v.

  1. Lm2596 Adjustable Voltage Regulator
  2. Lm2596s
  3. Lm2596 Arduino Datasheet Esp8266
  4. Lm2596s Datasheet Pdf

Do you want a 3A voltage regulator circuit? Before we often you LM350. But now we may use others. Some use LM2596 circuit.

It is suitable for easy and convenient use as a step-down switching regulator. Some called a buck converter circuit.

LM2596 datasheet

Here are why I like them.

Drives 3.0 A load with excellent line and load regulation.

Runs on a switching frequency of 150 kHz. So, we can use a smaller sized filter than lower frequency switching regulators.

Requires a few external components. So, smaller circuit.
Imagine You are using LM350 is smaller and not hot. I like the LM2596.

Arduino

Features

Let's read the features. I may say wow!
There are 2 versions. Fixed and Adjustable voltage Read more below

  • Fixed output voltages of 3.3V, 5V, 12V. Requires only 4 external components
  • Adjustable Output Voltage Range 1.23 V − 37 V
  • 3.0A Output Load Current (Guaranteed)
  • Wide Input Voltage Range up to 40 V
  • 150 kHz Fixed Frequency Internal Oscillator
  • TTL Shutdown Capability
  • Low Power Standby Mode, type 80 uA
  • Perfect protection circuit. Thermal Shutdown and Current Limit Protection
  • Internal Loop Compensation

Pinout

We can use them with 2 package.

  • Standard—5-lead TO-220 package with
    several different lead bend options
  • Small—5-lead TO-263 surface mount package. (Now we often see this

LM2596 Fixed voltage regulator

Lm2596 adjustable voltage regulator

In fixed voltage regulator version. See the circuit above.

We can set output voltage with changing IC follows.

  • LM2596-3.3 for 3.3V output.
  • LM2596-5.0 is 5V output.
  • LM2596-12 is 12V output.

And we should other appropriate components too.

  • C1 should become 330uF (when using LM2596-3.3, LM2596-5.0).
    or 180uF (for LM2596-12)
  • L1 = wire coil inductor, be valuable 33uH (for LM2596-3.3, LM2596-5.0) or 68uH (for LM2596-12)

LM2596 Adjustable Output Voltage Regulator

Now we see most people use LM2596 in adjustable out voltage regulator. It is easy like LM350. See in the circuit below.

Please ensure that the input voltage is higher than the output voltage.
In the general input is 3.2V to 40V. And the output is 1.23V to 35V.

We just only add R1 and R2 to Feed back lead. To control the output voltage.

Vout = VREF{(1+(R2/R1)} where VREF = 1.23V
R1: 1K
R2 = R1{(Vout/VREF)-1}

Parts list

C1: 470uF 50V Electrolytic

C2: 220uF 50V Electrolytic

D1: 5A, 40V Schottky Rectifier, 1N5825

L1: 68uH

R1: 1K, 0.25W 1% resistor

C3: 0.0033uF

You are reading here. You may want to build a good DC Variable power supply, right?

Let's read below.

You may also like these:

DIY LM2596 adjustable voltage switching regulator

Here is DIY LM2596 Adjustable Voltage Regulator Switching Power Supply circuit. The Output adjustable 1.23V to 37V at 3A current.

It is a real circuit in use.

See the circuit diagram below.

How LM2596 circuit works

AC voltage from the transformer gets in the circuit.

Here is the step-by-step process.

1. That AC voltage flows fuse-F1 to protect overload current at the output.

2. Then, AC voltage comes in the Bridge rectifier diodes(D1 through D4)

Some may look familiar: This is Unregulated power supply.

Now AC voltage turns a DC pulse ready

3. Next, Both capacitor C1 and C2 filtered that DC pulse to stable DC voltage better.

  • If you want max output is 37V. You should C1-1000uF 63V. Because DC voltage input is 40V max.
  • But output is 15V. You can use C1: 1000uF 25V. Because input DC voltage is 18V. The voltage AC input is 12V.
  • OR the output is 30V. You can use C1: 1000uF 50V. The AC voltage input is 24V.

If you see: Unregulated power supply principle you more understand.

4. LM2596 get the DC voltage. It keeps a constant voltage in a switching regulator. It needs to have a helper are:

  • L1 is a special inductance, which acts as energy conversion.
    when you look a switching regulator need have it.See: How to make inductance easily!
  • D5 is the Schottky diode, which plays a continuous role in the circuit.Check: you cannot check this type diode in normal use this tool.
  • C5 is Feedforward Capacitor. It keeps a more stable voltage of the circuit. When the output voltage is more 10V up.

5. The output voltage of R1 and W1. We can calculate by the following formula:

Vo=1.23(1 W1/R1)

We notice formula look simar: LM317, LM350 and LM338

6. C3, C4 is the output filter capacitors.

7. LED1 is 8mm white LED. Its brightness can roughly indicate the output voltage.

If the brightness is too bright, you can increase the resistance of R2 properly.

Look… using the limiting current resistor

Parts list

IC1-LM2596 switching regulator circuit
F1- 3A fuse
D1-D4: 1N4007, 1000V 1A diodes
D5: SS34, Schottky diode or 1N5825
C1: 1000uF 50V Electrolytic, See text.
C3: 220uF 50V Electrolytic
C2, C4: 0.1uF 50V Ceramic
C5: 0.0033uF 50V Ceramic
LED1: 8mm white LED
R1: 510 ohms 1%, 0.25W Resistor
VR1: 10K potentiometer
L1: 33 uH coil
R2: see text

What is more

At times, you may wonder like me.
Can use 1N4007 in 3A power supply?
Watch video this circuit can give current more 3A.

Why?

It runs with very high frequency. So, use energy lower and fast. Then, keep the power in the inductor. To reduce a load current of a diode and more parts.

You like this?

If you are interested in this project, do not wait. It is surprisingly cheap. And free shipping Convenient with PayPal payment

Buy here!

Not only that Do you see other 3A switching supply IC chip? Below!

LM2673 -5V 3A Switching Voltage Regulator

This is the DC switching regulator Voltage 5V at current 3A. It is make for digital circuit. The important part of the circuit is LM2673, it is 3A Step-Down Voltage Regulator with Adjustable Current Limit. The LM2673 is Simple and easy to design with using off-the-shelf external components.

Pdf

The LM2673 series of regulators circuits that main function as a step-down or buck switching regulator, can drive up to 3-A load with excellent line and load regulation. It has High efficiency 90% up, use a low ON-resistance DMOS power switch inside.

The series consists of fixed output voltages of 3.3 V, 5 V, and 12 V and an adjustable output version. Now we use 5V 3A switch power supply using LM2673.

This circuit complete design that a minimum number of external parts. A high fixed frequency oscillator up to 260 kHz allows the use of physically smaller sized components. A family of standard inductors used with the LM2673, are available from several manufacturers to simple the design working.

More features include to reduce the input surge current at power on by adding a soft start timing capacitor to soft turn on this. The LM2673 series will has built-in thermal shutdown and resistor programmable current limit of the power MOSFET so switch to protect the device and load circuit. The output voltage has a ±2% tolerance. The clock frequency is controlled to within a ±11% .

Feature Lists

  • Efficiency Up to 94%
  • Simple and Easy to Design With (Using Off-The-Shelf External parts)
  • Resistor Programmable Peak Current Limit Over a Range of 2A to 5 A

What's more? You can look other power supply circuits: Click Here

Please see circuit diagram and read more source.
https://www.national.com/pf/LM/LM2673.html

Related Posts

GET UPDATE VIA EMAIL

I always try to make Electronics Learning Easy.

Category:Electronic Components
No Comments
Hi Guys! Welcome you on board. Happy to see you around. In this post today, I'll detail the Introduction to LM2596.LM2596 is a step-down voltage regulator, also known as buck convertor, mainly used to step down the voltage or to drive load under 3A. It carries the remarkable load and line regulation and is available in fixed output voltages including 3.3V, 5V, 12V. It also comes with a customized output version where you can set the output voltage as per your requirement.Just stay with me for a little while, as in this post I'll walk you through the Introduction to LM2596 covering the datasheet, pinout, features, and main applications of this tiny device.Let's jump right in.

Introduction to LM2596

  • LM2596 is a voltage regulator mainly used to step down the voltage or to drive load under 3A.
  • It is also known as DC-to-DC power converter or buck converter which is used to step down the voltage from its input supply to the output load. The current goes up during this voltage step down process.
  • LM2596 comes with a remarkable load and line regulation. It is available in both versions: fixed output voltage version with 3.3V, 5V, 12V, and customized output version where you can choose the output as per your requirement.
Lm2596s

Features

Let's read the features. I may say wow!
There are 2 versions. Fixed and Adjustable voltage Read more below

  • Fixed output voltages of 3.3V, 5V, 12V. Requires only 4 external components
  • Adjustable Output Voltage Range 1.23 V − 37 V
  • 3.0A Output Load Current (Guaranteed)
  • Wide Input Voltage Range up to 40 V
  • 150 kHz Fixed Frequency Internal Oscillator
  • TTL Shutdown Capability
  • Low Power Standby Mode, type 80 uA
  • Perfect protection circuit. Thermal Shutdown and Current Limit Protection
  • Internal Loop Compensation

Pinout

We can use them with 2 package.

  • Standard—5-lead TO-220 package with
    several different lead bend options
  • Small—5-lead TO-263 surface mount package. (Now we often see this

LM2596 Fixed voltage regulator

In fixed voltage regulator version. See the circuit above.

We can set output voltage with changing IC follows.

  • LM2596-3.3 for 3.3V output.
  • LM2596-5.0 is 5V output.
  • LM2596-12 is 12V output.

And we should other appropriate components too.

  • C1 should become 330uF (when using LM2596-3.3, LM2596-5.0).
    or 180uF (for LM2596-12)
  • L1 = wire coil inductor, be valuable 33uH (for LM2596-3.3, LM2596-5.0) or 68uH (for LM2596-12)

LM2596 Adjustable Output Voltage Regulator

Now we see most people use LM2596 in adjustable out voltage regulator. It is easy like LM350. See in the circuit below.

Please ensure that the input voltage is higher than the output voltage.
In the general input is 3.2V to 40V. And the output is 1.23V to 35V.

We just only add R1 and R2 to Feed back lead. To control the output voltage.

Vout = VREF{(1+(R2/R1)} where VREF = 1.23V
R1: 1K
R2 = R1{(Vout/VREF)-1}

Parts list

C1: 470uF 50V Electrolytic

C2: 220uF 50V Electrolytic

D1: 5A, 40V Schottky Rectifier, 1N5825

L1: 68uH

R1: 1K, 0.25W 1% resistor

C3: 0.0033uF

You are reading here. You may want to build a good DC Variable power supply, right?

Let's read below.

You may also like these:

DIY LM2596 adjustable voltage switching regulator

Here is DIY LM2596 Adjustable Voltage Regulator Switching Power Supply circuit. The Output adjustable 1.23V to 37V at 3A current.

It is a real circuit in use.

See the circuit diagram below.

How LM2596 circuit works

AC voltage from the transformer gets in the circuit.

Here is the step-by-step process.

1. That AC voltage flows fuse-F1 to protect overload current at the output.

2. Then, AC voltage comes in the Bridge rectifier diodes(D1 through D4)

Some may look familiar: This is Unregulated power supply.

Now AC voltage turns a DC pulse ready

3. Next, Both capacitor C1 and C2 filtered that DC pulse to stable DC voltage better.

  • If you want max output is 37V. You should C1-1000uF 63V. Because DC voltage input is 40V max.
  • But output is 15V. You can use C1: 1000uF 25V. Because input DC voltage is 18V. The voltage AC input is 12V.
  • OR the output is 30V. You can use C1: 1000uF 50V. The AC voltage input is 24V.

If you see: Unregulated power supply principle you more understand.

4. LM2596 get the DC voltage. It keeps a constant voltage in a switching regulator. It needs to have a helper are:

  • L1 is a special inductance, which acts as energy conversion.
    when you look a switching regulator need have it.See: How to make inductance easily!
  • D5 is the Schottky diode, which plays a continuous role in the circuit.Check: you cannot check this type diode in normal use this tool.
  • C5 is Feedforward Capacitor. It keeps a more stable voltage of the circuit. When the output voltage is more 10V up.

5. The output voltage of R1 and W1. We can calculate by the following formula:

Vo=1.23(1 W1/R1)

We notice formula look simar: LM317, LM350 and LM338

6. C3, C4 is the output filter capacitors.

7. LED1 is 8mm white LED. Its brightness can roughly indicate the output voltage.

If the brightness is too bright, you can increase the resistance of R2 properly.

Look… using the limiting current resistor

Parts list

IC1-LM2596 switching regulator circuit
F1- 3A fuse
D1-D4: 1N4007, 1000V 1A diodes
D5: SS34, Schottky diode or 1N5825
C1: 1000uF 50V Electrolytic, See text.
C3: 220uF 50V Electrolytic
C2, C4: 0.1uF 50V Ceramic
C5: 0.0033uF 50V Ceramic
LED1: 8mm white LED
R1: 510 ohms 1%, 0.25W Resistor
VR1: 10K potentiometer
L1: 33 uH coil
R2: see text

What is more

At times, you may wonder like me.
Can use 1N4007 in 3A power supply?
Watch video this circuit can give current more 3A.

Why?

It runs with very high frequency. So, use energy lower and fast. Then, keep the power in the inductor. To reduce a load current of a diode and more parts.

You like this?

If you are interested in this project, do not wait. It is surprisingly cheap. And free shipping Convenient with PayPal payment

Buy here!

Not only that Do you see other 3A switching supply IC chip? Below!

LM2673 -5V 3A Switching Voltage Regulator

This is the DC switching regulator Voltage 5V at current 3A. It is make for digital circuit. The important part of the circuit is LM2673, it is 3A Step-Down Voltage Regulator with Adjustable Current Limit. The LM2673 is Simple and easy to design with using off-the-shelf external components.

The LM2673 series of regulators circuits that main function as a step-down or buck switching regulator, can drive up to 3-A load with excellent line and load regulation. It has High efficiency 90% up, use a low ON-resistance DMOS power switch inside.

The series consists of fixed output voltages of 3.3 V, 5 V, and 12 V and an adjustable output version. Now we use 5V 3A switch power supply using LM2673.

This circuit complete design that a minimum number of external parts. A high fixed frequency oscillator up to 260 kHz allows the use of physically smaller sized components. A family of standard inductors used with the LM2673, are available from several manufacturers to simple the design working.

More features include to reduce the input surge current at power on by adding a soft start timing capacitor to soft turn on this. The LM2673 series will has built-in thermal shutdown and resistor programmable current limit of the power MOSFET so switch to protect the device and load circuit. The output voltage has a ±2% tolerance. The clock frequency is controlled to within a ±11% .

Feature Lists

  • Efficiency Up to 94%
  • Simple and Easy to Design With (Using Off-The-Shelf External parts)
  • Resistor Programmable Peak Current Limit Over a Range of 2A to 5 A

What's more? You can look other power supply circuits: Click Here

Please see circuit diagram and read more source.
https://www.national.com/pf/LM/LM2673.html

Related Posts

GET UPDATE VIA EMAIL

I always try to make Electronics Learning Easy.

Category:Electronic Components
No Comments
Hi Guys! Welcome you on board. Happy to see you around. In this post today, I'll detail the Introduction to LM2596.LM2596 is a step-down voltage regulator, also known as buck convertor, mainly used to step down the voltage or to drive load under 3A. It carries the remarkable load and line regulation and is available in fixed output voltages including 3.3V, 5V, 12V. It also comes with a customized output version where you can set the output voltage as per your requirement.Just stay with me for a little while, as in this post I'll walk you through the Introduction to LM2596 covering the datasheet, pinout, features, and main applications of this tiny device.Let's jump right in.

Introduction to LM2596

  • LM2596 is a voltage regulator mainly used to step down the voltage or to drive load under 3A.
  • It is also known as DC-to-DC power converter or buck converter which is used to step down the voltage from its input supply to the output load. The current goes up during this voltage step down process.
  • LM2596 comes with a remarkable load and line regulation. It is available in both versions: fixed output voltage version with 3.3V, 5V, 12V, and customized output version where you can choose the output as per your requirement.
  • This regulator is incorporated with a fixed-frequency oscillator and an internal frequency compensation method.
  • Frequency compensation is applied by adjusting both phase and gain characteristics of the open-loop output to avoid oscillation and vibration in the circuit. This is achieved with the help of resistance-capacitance networks.
  • A minimum number of external components are required for this regulator that works at a fixed frequency of 150 kHz.
  • It is available in surface mount package TO-263 and standard 5-pin package TO-220.

LM2596 Datasheet

Before you use this device for your electrical project, it's wise to have a look at its datasheet that gives you an overview of the main characteristics of the component.Click below to download the datasheet of LM2596.

LM2596 Pinout

The following figure shows the pinout diagram of LM2596.The LM2596 comes with total five pins as follow:Vin = I = this is the input supply pin interlaced with the input bypass capacitor to provide the switching current and to reduce voltage transients.Output

Lm2596 Adjustable Voltage Regulator

= O = this is the internal switch with voltage switches between (Vin – Vsat) and -0.5V. It comes with a duty cycle of Vout/Vin. The PCB copper area attached to this pin is used to minimize the coupling.Ground = this pin is connected to the ground.Feedback = I = this pin identifies the regulated output voltage for the feedback loop.ON/OFF = I = this pin is used to shut down the voltage regulator circuit with input supply current reducing to 80uA. When the voltage on this pin goes below the threshold voltage of 1.3V, it turns on the buck converter. And when the voltage goes above the 1.3V, it turns off the converter. You can get rid of this shutdown feature by attaching the pin to the ground or leaving it open. In both cases, the regulator remains ON.

LM2596 Features

  • Fixed versions i.e. 3.3-V, 5-V, 12-V, and customizable output versions
  • Customizable output version with voltage range: 1.2-V to 37-V ±4% maximum over load and line conditions
  • Available in two packages including TO-263 and TO-220 packages.
  • Can drive load under 3A.
  • 40 V is the input voltage range
  • 4 external components are needed
  • Remarkable load and line regulations
  • Internal oscillator with a fixed frequency of 150 kHz
  • TTL shutdown capability
  • Comes with low power standby mode, commonly 80 μA
  • High efficient and readily available
  • Protection against thermal shutdown and current

LM2596 Power Ratings

Lm2596s

The following table represents the absolute maximum ratings of regulator LM2596.Absolute Maximum Ratings LM2596
No.RatingValueUnit
1Maximum Supply Voltage45V
2SD/SS Input Voltage6V
3Delay Pin Voltage1.5V
4Flag Pin Voltage45V
5Feedback Pin Voltage25V
6Output Voltage to Ground-1V
7Storage Temperature-65 to 150C
  • While working with this component, make sure stresses don't exceed the absolute maximum ratings, else they can permanently damage the component.
  • Plus, if stresses are applied for more than the required time, they can affect device reliability.

LM2596 Applications

  • Used to step down voltage
  • Can drive load under 3A
  • Provide remarkable load and line regulation
That's all for today. I hope you find this read helpful. If you're unsure or have any questions, you can leave your query in the section below, I'd love to help you the best way I can. You're most welcome to share your feedback and suggestions, they help us create quality content. Thank you for reading the article.


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I am Syed Zain Nasir, the founder of The Engineering Projects (TEP).I am a programmer since 2009 before that I just search things, make small projects and now I am sharing my knowledge through this platform.I also work as a freelancer and did many projects related to programming and electrical circuitry. My Google Profile+

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