UVB LED 1W 30MW Ultraviolet 308nm 300nm 315nm UVC 3535 Chip LED UV

Product Details
Customization: Available
LED Packaging Type: Chip
Chip Material: InGaN
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Number of Employees
15
Year of Establishment
2020-12-15
  • UVB LED 1W 30MW Ultraviolet 308nm 300nm 315nm UVC 3535 Chip LED UV
  • UVB LED 1W 30MW Ultraviolet 308nm 300nm 315nm UVC 3535 Chip LED UV
  • UVB LED 1W 30MW Ultraviolet 308nm 300nm 315nm UVC 3535 Chip LED UV
  • UVB LED 1W 30MW Ultraviolet 308nm 300nm 315nm UVC 3535 Chip LED UV
  • UVB LED 1W 30MW Ultraviolet 308nm 300nm 315nm UVC 3535 Chip LED UV
  • UVB LED 1W 30MW Ultraviolet 308nm 300nm 315nm UVC 3535 Chip LED UV
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  • Overview
  • Specification
  • Product Description
  • Product Parameters
  • Company Profile
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  • FAQ
Overview

Basic Info.

Beam Angle
120°
Emitting Color
Purple
Base Material
Copper
Power
1W
Life
30000h
Certification
RoHS, CE
Product Name
SMD 3838 3W 6V 306nm 310nm LED Chip
Wavelength
306nm-310nm
Forward Current
600 Ma
Input Voltage
6V
Size
3.8*3.8*1.6mm
Type
UV LED
Radiation Flux
50-60MW
Operating Temperature(ºC)
-30 - 60
Storage Temperature(ºC)
-30 - 85
Working Time
10000 Hours
Lifespan (Hours)
30000 Hours
Support Dimmer
Yes
Warranty(Year)
1 Year
Application 1
Medical Equipment
Application 2
Ultraviolet Sensor
Transport Package
Carton
Specification
1000 PCS/Roll
Trademark
GZYSLED
Origin
China
HS Code
9405990000
Production Capacity
10000/Week

Product Description

 

Specification

UVB LED 1W 30MW Ultraviolet 308nm 300nm 315nm UVC 3535 Chip LED UV
Power Consumption
1W
Peak Wavelength
300-315NM
Radiant Flux
25-30MW
Spectrum Half Width
11NW
Forward Current
150-200MA

3838Package(308NW 5-6.5V) Reflow temperature 170-230 ºC

Product Description

UVB LED 1W 30MW Ultraviolet 308nm 300nm 315nm UVC 3535 Chip LED UV
UVB LED 1W 30MW Ultraviolet 308nm 300nm 315nm UVC 3535 Chip LED UV


Soldering Conditions
• When soldering High Power Led, Heat may affect the electrical and optical characteristics of the LEDs.
• In soldering, do not stress the lead frame and the resin part under high temperatures.
• The silicone part should be protected from mechanical stress or vibration until the High Power Led return to room temperature after soldering.
• Preliminary heating to be at 140˜160ºC max, for 120 seconds max.
• Soldering heat to be at 260ºC max, for 3 seconds max.
• For manual soldering is not more than 3 seconds at max 260ºC, under soldering iron.
Notes:
1. The Anode side of the emitter is denoted by the "+" Sign in the lead frame.
2. Electrical insulation between the case and the board is required. Do not electrically connect either the anode or cathode to the slug.
3. Drawing not to scale.
4. All dimensions are in millimeters.
5. Unless otherwise indicated, tolerances are ± 0.2mm.
6. Please do not bend the leads of the LED, otherwise it will damage the LED.
7. Please do not use a force impact or pressure on the lens of the LED, otherwise it will cause a catastrophic failure.



UVB LED 1W 30MW Ultraviolet 308nm 300nm 315nm UVC 3535 Chip LED UV



UVB LED 1W 30MW Ultraviolet 308nm 300nm 315nm UVC 3535 Chip LED UV

The 3535 UVC series is GZYSLED's newest surface mount high-power device featuring high brightness combined with a compact size that is suitable for all kinds of lighting applications such as general illumination, flash, spot, signal, industrial and commercial lighting. The 3535 series is one of the most promising devices in RZXLED's high-power product offering and is ready to face the challenges of today's Solid-State Lighting requirements.
 

In recent years, the development and application of new products for UV LEDs have indeed become a hot spot in the LED industry. Compared with traditional mercury lamps, it has various excellent characteristics such as instant lighting, low power consumption, and environmental protection. Especially in the context of the 
implementation of the Minamata Convention, which limits the mercury content after 2020, the use of UVLED technology to develop energy-efficient and environmentally-friendly high-efficiency light sources has become a major 
technological trend.


Moreover, due to the difference in wavelength of ultraviolet LED (UVA: 320-400 nm) (UVB: 280 nm-320 nm) (UVC: 200-280 nm), the application scenarios involved are very broad, and the prospect is highly
promising.


For example: UVA-LED can be used for curing (glue, ink). UVB-LED is used for skin treatment (vitiligo, psoriasis). 
UVC-LED is used for sterilization of solids, liquids and gases (straight drinkers, water dispensers, etc.).
 
Principle of ultraviolet disinfection

It is the use of ultraviolet light of an appropriate wavelength to destroy the molecular structure of DNA (deoxyribonucleic acid) or RNA (ribonucleic acid) in the cells of the microorganism, causing growth cell death and/or regenerative cell death to achieve sterilization and disinfection. After testing, the effective wavelength range of ultraviolet sterilization can be divided into four different wavelength bands: UVA (400 ~ 315nm), UVB (315 ~ 280nm), UVC (280 ~ 200nm) and vacuum ultraviolet (200 ~ 100nm). Among them, only the UVA and UVB parts can reach the surface of the earth through the ozone protective layer and the cloud layer. As far as the sterilization rate is concerned, UVC is within the range of microbial absorption peaks, and the virus and bacteria can be killed within 1 s by destroying the DNA structure of the microorganisms, while UVA and UVB are slow to sterilize because they are outside the range of microbial absorption peaks. It often takes hours to sterilize, and in the actual two-second hydraulic stop (irradiation) time, the part actually belongs to the inactive ultraviolet portion. Vacuum ultraviolet light penetration ability is very weak, lamps and casings need to use quartz with extremely high light transmittance. Generally, the semiconductor industry degrades TOC in water, and is not used for sterilization. Therefore, the ultraviolet disinfection mentioned in the water supply and drainage project actually refers to UVC disinfection. UV disinfection technology is based on modern epidemic prevention, medicine and photodynamics. It uses specially designed high-efficiency, high-intensity and long-life UVC-band ultraviolet light to spray various bacteria, viruses, parasites and algae in water. And other pathogens are directly killed to achieve the purpose of disinfection.

Studies have shown that ultraviolet light is mainly caused by radiation damage to microorganisms (bacteria, viruses, spores and other pathogens) and the function of destroying nucleic acids to kill microorganisms, thereby achieving the purpose of disinfection. The action of ultraviolet light on nucleic acids can lead to breakage of bonds and chains, cross-linking between strands and formation of actinic products, etc., thereby changing the biological activity of DNA, so that the microorganisms themselves cannot replicate, and this ultraviolet damage is also a fatal damage.

UV disinfection is a physical method. It does not add any substance to the water. It has no side effects. This is better than chlorination. It is usually used in combination with other substances. The common combination process is UV+H2O2, UV+H2O2. +O3, UV+TiO2, so the disinfection effect will be better.

Product Parameters

UVB LED 1W 30MW Ultraviolet 308nm 300nm 315nm UVC 3535 Chip LED UV

Company Profile

 

UVB LED 1W 30MW Ultraviolet 308nm 300nm 315nm UVC 3535 Chip LED UV
 

Certifications



UVB LED 1W 30MW Ultraviolet 308nm 300nm 315nm UVC 3535 Chip LED UV

Packaging & Shipping


UVB LED 1W 30MW Ultraviolet 308nm 300nm 315nm UVC 3535 Chip LED UV

Our Advantages

 

UVB LED 1W 30MW Ultraviolet 308nm 300nm 315nm UVC 3535 Chip LED UV

FAQ

UVB LED 1W 30MW Ultraviolet 308nm 300nm 315nm UVC 3535 Chip LED UV
















 

 

 

 

 

 

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