How to Calculate Resistor Value for LED Lighting | Simply Smarter Circuitry Blog (2024)

Determining the resistor value for lighting LEDs is simple and straightforward, but we must take into consideration the color of the LED as well as the wattage rating of the required resistor, and the number of LEDs in the circuit. We hope reading How to Calculate Resistor Value for LED Lighting gives you what you would need for your project.

LEDs are becoming more and more popular for a variety of lighting projects and needs. This is due to the excellent power efficiency and extended lifetimes of LEDs over incandescent lamps. Also, as the technology improves and production increases, the cost continues to be reduced.

Following these steps to calculate resistor value for LED Lighting by 12V, DC:
  1. Determine the voltage and current needed for your LED.
  2. We’ll use the following formula to determine the resistor value:Resistor = (Battery Voltage – LED voltage) / desired LED current.
  3. For a typical white LED that requires 10mA, powered by 12V the values are: (12-3.4)/.010=860 ohms.
  4. To use several LEDs in parallel, sum the current values. From the example above, if we use 5 white LEDs the current requirement is 10mA x 5 = 50mA. So(12-3.4)/.050=172 ohms.
Explain the idea of Calculating Resistor value for LED Lighting

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LED is an acronym for Light Emitting Diode. This means that an LED has a specific polarity that must be applied to make it produce light. Failure to observe this polarity requirement could cause catastrophic damage to the LED. This is because an LED has a relatively low value of reverse polarity voltage that is allowed (normally about 5 volts). Since an LED is essentially a diode, it has a maximum current value that cannot be exceeded for any period of time.

LEDs Applications

With this in mind, we will explore the requirements for the limiting resistor that must be used in an LED circuit. Since LEDs are available in various colors, the required resistance value will vary depending on the color of the LED. This is because the color of the LED is determined by the materials used to make it and these various materials have different voltage characteristics. The forward voltage value is the voltage required to cause the LED to light. Typical Red, Green, Orange, and Yellow LEDs have a forward voltage of approximately 2.0 volts; but White and Blue LEDs have a forward voltage value of 3.4 volts. Because of this variation, the value of resistor value will vary depending on what the LED color is.

The procedure is to choose a resistor value that will produce the correct amount of current to flow in the LED-based on this forward voltage value and the value of the Power supply that is powering the circuit.

Since automotive applications are one of the most popular uses for LEDs, I will go through an example of an LED lighting project that uses 12 volts as the power source. The formula required is ohm’s law which states that the Resistance is equal to the voltage divided by the Current. The important feature to note here is that the voltage value used in the calculation. The difference between the power supply (battery) voltage and the LED’s forward voltage value. This is because we want the resistor to “drop” the voltage from the power source down to the forward voltage value of the LED.

The formula
Resistor = (Battery Voltage – LED voltage) / desired LED current.

So assuming a 12-volt power source and a white LED with the desired current of 10 mA; The formula becomes Resistor = (12-3.4)/.010 which is 860 ohms. Since this is not a standard value I would use an 820-ohm resistor. We also need to determine the power rating (watts) of the required resistor. This is calculated by multiplying the voltage value dropped across the resistor by the current value flowing in it. For our example above, (12-3.4) X .010 = 0.086 so we can safely use a ¼ watt resistor in this application since we should use the next highest standard wattage rating.

If more than one LED is required, multiple LEDs (of the same color) may be connected in parallel. This will maintain the same voltage requirement but the current value will increase in direct proportion to the number of LEDs. The wattage rating of the resistor may also increase. An as an example we will assume the same white LED but we will connect 5 LEDs in parallel. Therefore, the current value required will be 10 mA multiplied by 5 (.010 X 5 =.050). Using this in our formula ; (12-3.4)/.050= 172 ohms. Use the standard value of 180 ohms. The wattage rating will now be higher (12-3.4) X .050 = .43 so we need to use at least a ½ watt resistor in this case.

Conclusion

The two examples will be repeated for Red LEDs.For a single Red LED: (12-2.0)/.010= 1000 ohms which is 1K ohms and wattagerating is (12-2.0) X (.010) = .100 so ¼ watt is sufficient.For5 Red LEDs in parallel: (12-2.0)/.05= 200 ohms which is a standard value andwattage rating is (12-2.0) X .050 = .5 so I would use a 1-watt resistor to give ussome tolerance to compensate for variations in power supply voltage etc.

As we can see, determining the resistor value for lighting LEDs is simple and straightforward, but we must take into consideration the color of the LED as well as the wattage rating of the required resistor and the number of LEDs in the circuit. You can visit our store for a varied selection of LEDs and resistors.

How to Calculate Resistor Value for LED Lighting | Simply Smarter Circuitry Blog (2024)

FAQs

How to Calculate Resistor Value for LED Lighting | Simply Smarter Circuitry Blog? ›

We'll use the following formula to determine the resistor value: Resistor = (Battery Voltage – LED voltage) / desired LED current. For a typical white LED that requires 10mA, powered by 12V the values are: (12-3.4)/. 010=860 ohms. To use several LEDs in parallel, sum the current values.

How do you calculate the resistor for IR LED? ›

Subtract the IR LED forward voltage (Vf) from the power supply voltage. That gives the voltage that the resistor must drop (Vr). Divide the difference (Vr) by the required LED current (insure that the current is less than the max continuous current from the data sheet). The result is the resistance required.

How do you find the resistor of a LED? ›

Look up your LED's datasheet. It will have a typical voltage-current curve, and a rated absolute maximum current (e.g. 20mA). At 20mA, according to the I-V curve, it will have a forward voltage of e.g. 2V. So you can calculate the needed resistor by: (5-2)/20mA = 150R.

What value of resistor should I use for LED? ›

An LED in a circuit without a limiting resistor can exceed its operating current rating quite easily and burn out in a short time. For many projects a resistor rated at 1/8W or 1/4W will be fine, but you may want to check for long term or high power use to make sure.

How do you choose resistor value? ›

A resistor of at least twice the calculated power dissipation is selected. If resistor is for power application, a resistor of at least three or four times higher than the calculated power dissipation value should be selected.

How to calculate resistor value for LED in parallel? ›

For LEDs connected in parallel, the LED resistor calculator uses the following equations:
  1. Resistance: R = (V - Vₒ) / (n × Iₒ);
  2. Power dissipated in a single LED: Pₒ = Vₒ × Iₒ;
  3. Power dissipated in all LEDs (total): P = n × Vₒ × Iₒ; and.
  4. Power dissipated in the resistor: Pr = (n × Iₒ)² × R.
Jun 30, 2024

How do you size LED resistors? ›

Resistor = (Battery Voltage – LED voltage) / desired LED current. So assuming a 12-volt power source and a white LED with the desired current of 10 mA; The formula becomes Resistor = (12-3.4)/. 010 which is 860 ohms. Since this is not a standard value I would use an 820-ohm resistor.

How do you calculate the resistor of an LED in series? ›

The value of the correct Resistor for LEDs in Series is the Supply Voltage (pressure) minus the total pressure consumed by all off the LEDs (Voltage Drop Across a Single LED times by the total Number of LEDs), that answer is then divided by the LED Current (electron flow) required by the circuit.

What resistor to use for a red LED? ›

Basics: Picking Resistors for LEDs
Power Supply VoltageLED ColorResistor (rounded)
5 VBlue, Green, White, or UV68 Ω
5 VRed, Yellow, or Yellow-Green150 Ω
5 VRed, Yellow, or Yellow-Green56 Ω
9 VRed, Yellow, or Yellow-Green75 Ω
4 more rows
Aug 29, 2012

What resistor values for rgb LED? ›

Resistor values are typically around 100-330 ohms. The three LEDs inside a single RGB LED often have different operating voltages and current levels, so check the datasheet. A red LED typically needs about 2 volts.

What is the Ohm's law of LED? ›

Ohm's law states that the current through a resistive conductor (a resistor) between two points is directly proportional to the voltage across the two points. I={\frac {V}{R}} where I is current (amps or A), V is voltage (volts or V) and R is resistance (ohms or \Omega).

What resistor do I need for LED indicators? ›

Simple answer: Normally 1 x OF373 resistor per indicator is sufficient to get the flash rate but occasionally as much as 2 per indicator is required.

Can I use a 1K resistor for LED? ›

1K is also low enough in current it is compatible with any size LED (around 10mA) over the DCC track voltages you will encounter. Do not be surprised if the LEDs is to bright. To reduce the brightness try high value such as 2K or more. It is visually subjective and hence the final value of the resistor will be too.

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