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Vishay TLWB BG O R TG W Y7900 Data Handbook

Summary

Discover the TELUX™ clear LED series, engineered for high-end applications requiring supreme luminous flux and reliability. Built with advanced AlInGaP and InGaN technologies, these durable LEDs feature superior heat dissipation, allowing stable operation across extreme temperatures (-40 to +110 °C). The manual provides comprehensive documentation covering electrical parameters, detailed optical characteristics (flux, intensity), and usage guidelines for multiple colors. It is ideal for professional outdoor signage, vehicle illumination (dashboard, turn signals), and commercial lighting where consistent, high-brightness performance is critical.

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TLWB / BG / O / R / TG / W / Y7900

VISHAY

Vishay Semiconductors

TELUX™ LED

Description The TELUX™ series is a clear, non diffused LED for high end applications where supreme luminous flux is required. It is designed in an industry standard 7.62 mm square package utilizing highly developed (AS) Alln Ga P and In Ga N technologies. The supreme heat dissipation of TELUX™ allows applications at high ambient temperatures. All packing units are binned for luminous flux and color to achieve best homogenous light appearance in application.

Features Applications Utilizing (AS) Al In Ga P and In Ga N technologies Exterior lighting High luminous flux Dashboard illumination Supreme heat dissipation: Rth JP is 90 K/W Tail-, Stop - and Turn Signals of motor vehicles

High operating temperature: Replaces incandescent lamps

Tamb = - 40 to + 110 °C Traffic signals and signs Type TLWR meets SAE and ECE color require- ments Packed in tubes for automatic insertion Luminous flux and color categorized for each tube Small mechanical tolerances allow precise usage of external reflectors or lightguides TLWR and TLWY types additionally forward voltage categorized ESD-withstand voltage: > 2 k V acc. to MIL STD 883 D, Method 3015.7 for Al In Ga P, > 1 k V for In Ga N

Parts Table

Part Color, Luminous Intensity Angle of Half Intensity (±ϕ) Technology

TLWR7900 Red, φV = 2100 mlm (typ.) Alln Ga P on Ga As

TLWO7900 Softorange, Alln Ga P on Ga As

φV = 2100 mlm (typ.)

TLWY7900 Yellow, φV = 1400 mlm (typ.) Alln Ga P on Ga As

TLWTG7900 True green, φV = 900 mlm (typ.) In Ga N on Si C

TLWBG7900 Blue green, φV = 700 mlm (typ.) In Ga N on Si C

TLWB7900 Blue, φV = 330 mlm (typ.) In Ga N on Si C

TLWW7900 White, φV = 650 mlm (typ.) In Ga N / YAG on Si C

Document Number 83144 www.vishay.com Rev. 1.7, 24-Jun-04

Page Summary Contents For Vishay TLWB BG O R TG W Y7900 Data Handbook

Page 1 TLWB / BG / O / R / TG / W / Y7900 VISHAY Vishay Semiconductors TELUX™ LED Description The TELUX™ series is a clear, non diffused LED for high end applications where supreme luminous flux is required....
Page 2 VISHAYTLWB / BG / O / R / TG / W / Y7900 Vishay Semiconductors Absolute Maximum Ratings Tamb = 25 °C, unless otherwise specified TLWR7900 , TLWO7900 , TLWY7900 Parameter Test condition Symbol Value Un...
Page 3 TLWB / BG / O / R / TG / W / Y7900 VISHAY Vishay Semiconductors Parameter Test condition Symbol Min Typ. Max Unit Reverse voltage IR = 10 µA VR Junction capacitance VR = 0, f = 1 MHz Cj p F Temperatur...
Page 4 VISHAYTLWB / BG / O / R / TG / W / Y7900 Vishay Semiconductors Blue green TLWBG7900 Parameter Test condition Symbol Min Typ. Max Unit Total flux IF = 50 m A, Rth JA = 200 °K/W φV mlm Luminous intensit...
Page 5 TLWB / BG / O / R / TG / W / Y7900 VISHAY Vishay Semiconductors is ip ti or ar ur re nt ow er is si pa tio Typical Characteristics (Tamb = 25 °C unless otherwise specified) Rth JA=200K/W Rth JA K/W Ta...
Page 6 VISHAYTLWB / BG / O / R / TG / W / Y7900 rw rd rr in /W ta in lu FI th Vishay Semiconductors IF m ARed, Softorange 0.0 Total Included Angle (Degrees)16201 -40 -20 Tamb Ambient Temperature °C )15976 Fi...
Page 7 TLWB / BG / O / R / TG / W / Y7900 VISHAY Vishay Semiconductors in le th la ti in In te it la ti in In te it re re 1.1 Red Softorange IF Forward Current m A avelength nm )16007 Figure 13. Relative Int...
Page 8 VISHAYTLWB / BG / O / R / TG / W / Y7900 la ti in In te it la ti in In te it re re if ic in lu Vishay Semiconductors Yellow Yellow IF Forward Current m A IF Forward Current m A )15981 Figure 19. Speci...
Page 9 TLWB / BG / O / R / TG / W / Y7900 VISHAY Vishay Semiconductors el at iv Lu in ou In te ns ity la ti in In te it if ic in lu re re True Green True Green IF Forward Current m A )16038 IF Forward Curren...
Page 10 la ti VISHAYTLWB / BG / O / R / TG / W / Y7900 in lu la ti in In te it re if ic in lu Vishay Semiconductors Blue Green Blue Green IF Forward Current m A IF Forward Current m A Figure 31. Specific Lumi...
Page 11 TLWB / BG / O / R / TG / W / Y7900 VISHAY Vishay Semiconductors la ti in In te it la ti in In te it re re if ic in lu Blue Blue IF Forward Current m A IF Forward Current m A )16041 Figure 37. Specific...
Page 12 VISHAYTLWB / BG / O / R / TG / W / Y7900 la ti in In te it la ti in lu re re if ic in lu Vishay Semiconductors White White IF Forward Current m A )16063 IF Forward Current m A Figure 43. Specific Lumi...
Page 13 TLWB / BG / O / R / TG / W / Y7900 VISHAY Vishay Semiconductors Package Dimensions in mm Document Number 83144 www.vishay.com Rev. 1.7, 24-Jun-04
Page 14 VISHAYTLWB / BG / O / R / TG / W / Y7900 Vishay Semiconductors Ozone Depleting Substances Policy Statement It is the policy of Vishay Semiconductor Gmb H to 1. Meet all present and future national and...

Manual Details

Brand Vishay
Pages 14
File Size 543.42 KB
Published June 15, 2026
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Frequently Asked Questions

What is the primary advantage of the TELUX™ LED series?

It is a clear, non-diffused LED designed for high end applications that require supreme luminous flux.

What is the typical operating temperature range for this LED?

The operational ambient temperature range is -40 to +110 °C, and storage is -55 to +110 °C.

How does it handle heat dissipation?

It offers supreme heat dissipation with a thermal resistance of R = 90 K/W thJP.

Is the device rated against electrostatic discharge (ESD)?

Yes, the ESD-withstand voltage is > 2 kV for AlInGaP and > 1 kV for InGaN.