VLMW1300
VLMW1300 is Highbright 0603 ChipLED manufactured by Vishay.
FEATURES
- High efficient In Ga N technology
- Super thin Chip LED with exceptional brightness 1.6 mm x 0.8 mm x 0.55 mm (L x W x H)
- High reliability PCB based
- Temperature range
- 20 °C to + 80 °C
- Chromaticity coordinate categorized according to CIE 1931 per packing unit
- Typical color temperature 7000 K
- EIA standard package
- patible to IR reflow soldering
- Available on 7" diameter reel
- Preconditioning: according to JEDEC level 2a
- pliant to Ro HS Directive 2002/95/EC and in accordance to WEEE 2002/96/EC
- ESD-sensitive device
Note
- - Please see document “Vishay Material Category Policy”: .vishay./doc?99902
DESCRIPTION
The new 0603 Chip LED series have been designed in the smallest SMD package. This innovative 0603 Chip LED technology opens the way to
- smaller products of higher performance
- more design in flexibility
- enhanced applications The 0603 LED is an obvious solution for small-scale products that are expected to work reliably in an arduous environment. This package is filled with a mixture of epoxy and yellow converter. This yellow converter converts the blue emission partially to yellow, which mixes the remaining blue to give white.
APPLICATIONS
- Telemunication: telephone and fax indicator and backlighting in
- Backlighting for audio and video equipment
PRODUCT GROUP AND PACKAGE DATA
- Product group: LED
- Package: SMD 0603 Chip LED
- Product series: standard
- Angle of half intensity: ± 65°
- Backlighting in office equipment
- Indoor and outdoor message boards
- Flat backlight for LCDs, switches and symbols
PARTS TABLE
PART COLOR LUMINOUS INTENSITY (mcd) MIN. VLMW1300-GS08 White 45 TYP. MAX. 180 at IF (m A) 5 WAVELENGTH (nm) MIN. TYP. MAX. FORWARD VOLTAGE (V) MIN. 2.70 TYP. MAX. 3.15 In Ga N/ yellow converter TECHNOLOGY
ABSOLUTE MAXIMUM RATINGS (Tamb = 25 °C, unless otherwise specified) VLMW1300
PARAMETER DC forward current Surge forward current Power dissipation Operating temperature range Storage temperature range Thermal resistance...