PCBs with LED components are commonly referred to as "LED PCBs"
Advantages of LED PCB
When it comes to the advantages of using LED PCB, well there are plenty of them and we are now going to mention a few so that you know about the application too.
Lower Power Consumption: Replacing incandescent bulbs with LED lights can reduce power consumption by over 80%.
Longer Lifespan: LEDs typically have a lifespan of over 20,000 hours, allowing for continuous usage for up to 3 years, which is 25 times longer than incandescent bulbs. This not only saves costs but also reduces the frequency of replacement.
Higher Efficiency: Incandescent bulbs emit a significant amount of heat, while LEDs can reduce it by up to 20%. This means that unnecessary heating can be reduced even when using higher-power LED lights.
Smaller Size: Due to their compact size, LED lights can come in various dimensions, making them applicable in different locations. Manufacturers can incorporate LEDs into anything, whether it is electronic devices, automobiles, traffic signals on roads, or signage.
Environmentally Friendly: Unlike other types of bulbs, LED lights do not contain mercury. Therefore, LEDs have a smaller environmental impact and are easier to dispose of or handle.
What is a LED PCB?
LED stands for Light-Emitting Diode, which is a semiconductor diode. LEDs are soldered onto PCBs and are equipped with a chip that generates light through electrical connections. A heat sink and a ceramic base are used to connect the chip. Undoubtedly, LED PCBs are the core of LED lighting. An LED PCB tends to generate a significant amount of heat, which is challenging to dissipate using traditional methods. Metal core PCBs, especially those made of aluminum, are widely used in LED applications due to their strong heat dissipation capabilities. Typically, an aluminum PCB includes a thin layer of thermally conductive material, which efficiently transfers and dissipates heat compared to traditional rigid PCBs.
Currently, surface mount packaging is the most widely used form of LED packaging in LED applications. Generally, the light emitted by a single LED component is limited. Therefore, a luminaire will utilize multiple LED components to achieve sufficient brightness. Similar to other semiconductor devices, PCBs provide the optimal means of electrical connection for LED components. PCBs with LED components are commonly referred to as "LED PCBs."
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Applications of LED PCB
A vast range of applications across numerous industries use LED circuit boards, and the popularity of LED PCBs continues to grow. Some examples of the industries that use LED circuit boards include the following.
Consumer lighting: One of the first LED circuit board industries many people think of is consumer lighting. Flashlights, lanterns, lamps, spotlights and solar-powered lighting may all use LED PCBs.
Consumer electronics: LED PCBs are becoming increasingly common in consumer electronics manufacturing. Products such as computers, tablets, smartphones, televisions and other devices often feature LED displays and indicators. Consumer electronics equipment is heat-sensitive, so aluminum PCB LEDs are valuable in this industry due to their ability to transfer heat.
Telecommunications: The telecommunications industry often uses LED indicators and displays because of their durability, long life and ability to transfer heat, as much of the equipment used in telecommunications generates significant amounts of heat.
Transportation: PCBs LEDs have many uses in traffic and transportation, in everything from vehicles to stoplights. In cars and trucks, you may find PCB LEDs in headlights, brake lights, indicators and more. Outside the car, LED PCBs function in traffic and signal lighting, highway tunnel lighting and street lighting. In the aviation industry, you may see LED PCBs used in indicators and interior lighting, as well as in air landing and running lights. Other transportation sectors use LED PCBs for similar purposes.
Medical: In the medical field, hospital lighting, as well as lighting tools used for surgeries and medical examinations, often use PCB LEDs due to their durability and heat transfer capabilities.
PCBontime supplied affordable LED PCBs
As a PCB manufacturer with more than a decade of experience, we can provide LED PCB fabrication, components purchasing and assembly. You just need to upload your customized Gerber file and BOM for us to quote. And then you can check our quotation and decide to buy from us or not, it is also acceptable that you supply us the parts for assembly if you want.
PCB used for LED Strip
An LED strip PCB, also known as a printed circuit board, is a specialized circuit board designed for use with LED light strips. LED strips consist of a series of individual light-emitting diodes (LEDs) that are mounted on a flexible or rigid strip of material. The PCB serves as the base or substrate onto which the LEDs are soldered, providing electrical connections and support.
The LED strip PCB typically has copper traces or conductive pathways that connect the LEDs in a specific configuration, allowing for the flow of electrical current to power the individual LEDs. The PCB also provides structural stability and protection for the LEDs, as well as thermal management to dissipate heat generated by the LEDs.
LED strip PCBs come in different forms depending on the type of LED strip. For flexible LED strips, the PCB is usually made of a flexible material like polyimide, which allows the strip to bend and conform to different shapes and surfaces. Rigid LED strips, on the other hand, use a rigid PCB material like fiberglass or aluminum, providing a more stable and durable construction.
LED strip PCBs may also feature additional components such as resistors, capacitors, or integrated circuits (ICs) to regulate voltage, control brightness, or enable various lighting effects. These additional components are often mounted directly onto the PCB.
Overall, LED strip PCBs play a crucial role in providing electrical connectivity, support, and thermal management for LED light strips, allowing for easy installation and integration into various lighting applications.
Lumens: Lumens is a unit of measurement that indicates the total amount of visible light emitted by an LED strip. It represents the brightness of the LED strip. The exact lumen output of an LED strip can vary depending on the specific model or configuration.
2835: 2835 refers to the size and type of LED chip used in the LED strip. The number 2835 represents the dimensions of the LED chip, which is 2.8mm by 3.5mm. It is a commonly used size for LED chips in LED strips.
120: The number 120 usually refers to the number of LEDs per meter or per unit length of the LED strip. In this case, it indicates that there are 120 LEDs present in every meter or per unit length of the LED strip.
12V: The voltage rating of the LED strip indicates the level of electrical voltage required to power the LEDs. In this case, the LED strip operates at 12 volts. It is important to ensure that the power supply used for the LED strip matches the voltage requirement to avoid damaging the LEDs.
3000k: The color temperature of an LED strip is measured in Kelvin (K) and indicates the color appearance or "warmth" of the light emitted. In this case, the LED strip has a color temperature of 3000 Kelvin, which represents a warm, yellowish-white light similar to traditional incandescent bulbs.
5mm: The parameter "5mm" typically refers to the width or diameter of the LED strip. It indicates the physical size of the strip. However, it's worth noting that most LED strips are available in various width options, commonly ranging from 8mm to 12mm. The width can affect the flexibility, intensity, and heat dissipation capabilities of the LED strip.
These parameters provide specific information about the characteristics and specifications of the LED strip PCB, such as brightness, LED chip size, LED density, voltage requirement, color temperature, and the width of the strip.
LED Strip 2835-120-12V-5mm-3000k
The parameters you mentioned for an LED strip PCB are as follows:
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