Learn About LED Lighting (2024)

  • The Basics
    • What are LEDs and how do they work?
    • Lifetime of LED lighting products
    • Where to use LED Bulbs
    • LEDs and Heat
  • How is LED lighting different?
  • Why should I choose ENERGY STAR® certified LED lighting products?

The Basics of LED Lighting

Learn About LED Lighting (1)

What are LEDs and how do they work?

LED stands for light emitting diode. LED lighting products produce light up to 90% more efficiently than incandescent light bulbs. How do they work? An electrical current passes through a microchip, which illuminates the tiny light sources we call LEDs and the result is visible light. To prevent performance issues, the heat LEDs produce is absorbed into a heat sink.

Lifetime of LED Lighting Products

The useful life of LED lighting products is defined differently than that of other light sources, such as incandescent or compact fluorescent lighting (CFL). LEDs typically do not “burn out” or fail. Instead, they experience ‘lumen depreciation’, wherein the brightness of the LED dims slowly over time. Unlike incandescent bulbs, LED “lifetime” is established on a prediction of when the light output decreases by 30 percent.

How are LEDs Used in Lighting

Learn About LED Lighting (2)Learn About LED Lighting (3)

LEDs are incorporated into bulbs and fixtures for general lighting applications. Small in size, LEDs provide unique design opportunities. Some LED bulb solutions may physically resemble familiar light bulbs and better match the appearance of traditional light bulbs. Some LED light fixtures may have LEDs built in as a permanent light source. There are also hybrid approaches where a non-traditional “bulb” or replaceable light source format is used and specially designed for a unique fixture. LEDs offer a tremendous opportunity for innovation in lighting form factors and fit a wider breadth of applications than traditional lighting technologies.

LEDs and Heat

LEDs use heat sinks to absorb the heat produced by the LED and dissipate it into the surrounding environment. This keeps LEDs from overheating and burning out. Thermal management is generally the single most important factor in the successful performance of an LED over its lifetime. The higher the temperature at which the LEDs are operated, the more quickly the light will degrade, and the shorter the useful life will be.

LED products use a variety of unique heat sink designs and configurations to manage heat. Today, advancements in materials have allowed manufacturers to design LED bulbs that match the shapes and sizes of traditional incandescent bulbs. Regardless of the heat sink design, all LED products that have earned the ENERGY STAR have been tested to ensure that they properly manage the heat so that the light output is properly maintained through the end of its rated life.

How is LED lighting different than other light sources, such as incandescent and Compact Fluorescent (CFL)?

Learn About LED Lighting (4)LED lighting differs from incandescent and fluorescent in several ways. When designed well, LED lighting is more efficient, versatile, and lasts longer.

LEDs are “directional” light sources, which means they emit light in a specific direction, unlike incandescent and CFL, which emit light and heat in all directions. That means LEDs are able to use light and energy more efficiently in a multitude of applications. However, it also means that sophisticated engineering is needed to produce an LED light bulb that shines light in every direction.

Common LED colors include amber, red, green, and blue. To produce white light, different color LEDs are combined or covered with a phosphor material that converts the color of the light to a familiar “white” light used in homes. Phosphor is a yellowish material that covers some LEDs. Colored LEDs are widely used as signal lights and indicator lights, like the power button on a computer.

In a CFL, an electric current flows between electrodes at each end of a tube containing gases. This reaction produces ultraviolet (UV) light and heat. The UV light is transformed into visible light when it strikes a phosphor coating on the inside of the bulb. Learn more about CFLs.

Incandescent bulbs produce light using electricity to heat a metal filament until it becomes “white” hot or is said to incandesce. As a result, incandescent bulbs release 90% of their energy as heat.

Learn About LED Lighting (5)

Why should I choose ENERGY STAR certified LED lighting products?

There are more lighting options available today than ever before. Despite that, ENERGY STAR is still the simple choice to save on your utility bills.

LED bulbs that have earned the ENERGY STAR are subject to very specific requirements designed to replicate the experience you are used to with a standard bulb—so they can be used for a wide variety of applications. As the graphic on the right demonstrates, a general purpose LED bulb that does not qualify for the ENERGY STAR may not distribute light everywhere and could prove to be a disappointment if used in a table lamp.

ENERGY STAR means high quality and performance, particularly in the following areas:

  • Color Quality
    • 5 different requirements for color to ensure quality up front and over time
  • Light Output
    • Light output minimums to ensure you get enough light
    • Light distribution requirements to ensure the light goes where you need it
    • Guidelines for equivalency claims to take the guess-work out of replacement
  • Peace of mind
    • Verified compliance with more than 20 requirements to address performance and labeling
    • Long-term testing to back up lifetime claims
    • Testing to stress the products in operating environments similar to how you will use the product in your home
    • 3-year minimum warranty requirement

And as with all ENERGY STAR products, certified LED bulbs are subject to random testing every year to ensure they continue to meet the ENERGY STAR requirements.

For more information on how to select an ENERGY STAR certified bulb for each application in your home, view the ENERGY STAR Light Bulb Purchasing Guide (PDF, 1.49 MB) or use the interactive online Choose a Light tool.

Learn About LED Lighting (2024)

FAQs

What do you need to know about LED lighting? ›

LED stands for light emitting diode. LED lighting products produce light up to 90% more efficiently than incandescent light bulbs. How do they work? An electrical current passes through a microchip, which illuminates the tiny light sources we call LEDs and the result is visible light.

What is a LED short question answer? ›

LED stands for Light Emitting Diode. It is a semiconductor light source that emits visible light when an electric current passes through it. This process is called electroluminescence. Light is produced when the electrons that carry the current, combine together within the semiconductor material.

What is the basic knowledge of LED? ›

LED, in electronics, a semiconductor device that emits infrared or visible light when charged with an electric current. Visible LEDs are used in many electronic devices as indicator lamps, in automobiles as rear-window and brake lights, and on billboards and signs as alphanumeric displays or even full-colour posters.

What is the basic principles of LED? ›

How do LEDs work? LEDs work on the principle of Electroluminescence. On passing a current through the diode, minority charge carriers and majority charge carriers recombine at the junction. On recombination, energy is released in the form of photons.

What are 3 advantages of LED lighting? ›

LED lighting comes with a multitude of amazing benefits.
  • Long Life. Long lifetime stands out as the number one benefit of LED lights. ...
  • Energy Efficiency. ...
  • Ecologically Friendly. ...
  • Durable Quality. ...
  • Zero UV Emissions. ...
  • Design Flexibility. ...
  • Operational in Extremely Cold or Hot Temperatures. ...
  • Light Dispersem*nt.

What makes LED lights work? ›

How Do LED Bulbs Work? An LED bulb produces light by passing the electric current through a semiconducting material—the diode—which then emits photons (light) through the principle of electroluminescence.

How does a LED work in simple words? ›

A light-emitting diode (LED) is a semiconductor device that emits light when current flows through it. Electrons in the semiconductor recombine with electron holes, releasing energy in the form of photons.

What are LEDs in simple terms? ›

In the simplest terms, a light-emitting diode (LED) is a semiconductor device that emits light when an electric current is passed through it. Light is produced when the particles that carry the current (known as electrons and holes) combine together within the semiconductor material.

What does an LED do simple? ›

Compared with conventional light sources that first convert electrical energy into heat, and then into light, LEDs (Light Emitting Diodes) convert electrical energy directly into light, delivering efficient light generation with little-wasted electricity.

What is the main purpose of LED? ›

The major uses of LED (Light Emitting Diodes) are to illuminate objects and even places. Its application is everywhere due to its compact size, low consumption of energy, extended lifetime, and flexibility in terms of use in various applications. Applications and uses of LEDs can be seen in: TV Backlighting.

How to identify LED lights? ›

How to identify. Most residential LED light bulbs have a typical light bulb shape but are usually made with a plastic shell instead of glass, with only a portion of the body being translucent. Look for an "LED" or "LED LAMP" marking on the bulb as well.

What makes a good LED light? ›

A huge part of determining a LED's quality is how the bulb manages heat. LEDs give off less heat than your typical incandescent or fluorescent light, but they create heat all the same. In order to live out their 50,000+ hour lifespan, they must effectively and efficiently pull heat away from the LED.

What is LED very short answer? ›

The full form of LED is Light Emitting Diode. LED is a semiconductor device that emits light when an electric current flows through it.

What causes a LED to emit light? ›

Light-emitting diodes (LEDs) produce light (or infrared radiation) by the recombination of electrons and electron holes in a semiconductor, a process called "electroluminescence". The wavelength of the light produced depends on the energy band gap of the semiconductors used.

What are the disadvantages of LED? ›

Disadvantages of LED Lighting

The cost to manufacture LEDs are higher and therefore, LED's are more expensive to purchase than incandescent or fluorescent lights. However, as discussed above, the cost savings generated by LED's over time and their longer lifespan will help recover and compensate for their higher costs.

What do I need to know about LED strip lights? ›

LED strip brightness is typically described in lumens per foot (or meter). A good quality LED strip should provide at least 450 lumens per foot (1500 lumens per meter), which provides approximately the same amount of light output per foot as a traditional T8 fluorescent lamp.

What do you need for LED lights to work? ›

LED strip lights run on either 12v or 24v DC power. To convert the power in your building from AC to DC, you need a transformer, power supply or driver. To test your voltage, use a DC volt meter.

How do I choose the right LED light? ›

Factors to Consider When Choosing LED Lights
  1. LED Brightness. ...
  2. Lumens. ...
  3. Wattage. ...
  4. Wattage Equivalence. ...
  5. Color Temperature and LEDs.
  6. The color temperature of an LED light — measured in Kelvins or K — gives an indication of the type of light it'll produce.

What are two things to consider when wiring an LED? ›

Understanding LED Voltage and Current

The two most important things to consider are voltage and current. Voltage is the amount of electrical force that drives the current through a circuit. It is measured in volts (V).

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