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LEDs (Light Emitting Diodes)

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SLLP-F586-1520-UV-395
TSLC
TSLC UVLED, 425nmwavelength
Quantity: 137
Ship Date: 7-13 working days
10+ $1.1345
100+ $0.8663
250+ $0.8291
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C3535U-UNL1-A1G11H-410
TSLC
TSLC UVLED, 420nmwavelength
Quantity: 8
Ship Date: 7-13 working days
1+ $8.1268
10+ $6.3385
50+ $6.1042
100+ $5.6294
300+ $5.5349
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C3535U- UNL1-A1G11H-380
TSLC
TSLC UVLED, 390nmwavelength
Quantity: 35
Ship Date: 7-13 working days
1+ $11.0459
10+ $8.6147
50+ $7.7614
100+ $7.5735
200+ $7.3971
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N3535U-UNL1-A1G11H-380
TSLC
TSLC UVLED, 390nmwavelength
Quantity: 0
Ship Date: 7-13 working days
1+ $28.2644
10+ $21.4636
50+ $19.3644
100+ $18.7202
150+ $18.3117
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x $28.2644
Ext. Price: $28.26
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N3535U-UNL1-A1G11H-410
TSLC
TSLC UVLED, 420nmwavelength
Quantity: 0
Ship Date: 7-13 working days
1+ $17.3393
10+ $13.1741
50+ $11.8842
100+ $11.4845
150+ $11.2361
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x $17.3393
Ext. Price: $34.67
MOQ: 2
Mult: 1

LEDs (Light Emitting Diodes)

LED stands for Light Emitting Diode, a semiconductor device that emits light when an electric current passes through it. Here's a concise introduction in English:

Definition:
LEDs are small, energy-efficient light sources that can emit light in various colors, including white, when an electric current flows through them. They are made from semiconductor materials and are known for their long life, durability, and low energy consumption.

Function:
LEDs function by allowing current to flow in a controlled manner through a semiconductor material, which then recombines with electron-hole pairs, releasing energy in the form of photons. This process is known as electroluminescence. LEDs can be designed to emit light in a specific wavelength, which determines the color of the light.

Applications:
LEDs are used in a wide range of applications due to their versatility and energy efficiency. Some common uses include:
1. General lighting, such as LED bulbs and tubes.
2. Automotive lighting, including headlights, taillights, and interior lights.
3. Display technology, such as LED screens and digital signage.
4. Medical equipment, for diagnostic and therapeutic purposes.
5. Horticulture, for growing plants under artificial light.
6. Traffic signals and signage.
7. Flashlights and portable lighting devices.

Selection Criteria:
When choosing LEDs, consider the following factors:
1. Brightness (Lumens): The amount of visible light emitted.
2. Color Temperature (Kelvin): The color of the light, ranging from warm (lower Kelvin) to cool (higher Kelvin).
3. Energy Efficiency (Lumens per Watt): How much light is produced per unit of energy consumed.
4. Lifespan: The expected duration of the LED before it needs to be replaced.
5. Color Rendering Index (CRI): A measure of how accurately colors are rendered under the light.
6. Dimming Capabilities: Whether the LED can be dimmed without flickering or color shifting.
7. Size and Shape: Depending on the application, the physical dimensions of the LED may be important.
8. Cost: The price of the LED, including initial cost and potential savings over time due to lower energy use.

LEDs are a popular choice for lighting due to their energy-saving potential and the ability to produce a wide range of colors and light effects. As technology advances, LEDs continue to improve in performance and become more affordable, expanding their use in various industries and applications.
Please refer to the product rule book for details.