TLWTG8600 Vishay, TLWTG8600 Datasheet

LED, GREEN, 1600MCD, 615NM

TLWTG8600

Manufacturer Part Number
TLWTG8600
Description
LED, GREEN, 1600MCD, 615NM
Manufacturer
Vishay
Datasheet

Specifications of TLWTG8600

Bulb Size
1.35mm
Led Color
Green
Viewing Angle
30°
Forward Current If
50mA
Forward Voltage
4.4V
Led Mounting
Through Hole
Lens Shape
Round
Wavelength Typ
535nm
Luminous Flux
2lm
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
TELUX™
Description
The TELUX™ series is a clear, non diffused LED for
applications where supreme luminous flux is required.
It is designed in an industry standard 7.62 mm square
package utilizing highly developed (AS) AllnGaP
technology.
The supreme heat dissipation of TELUX™ allows
applications at high ambient temperatures.
All packing units are binned for luminous flux, forward
voltage and color to achieve the most homogenous
light appearance in application.
SAE and ECE color requirements for automobile
application are available for color red.
ESD resistivity 2kV (HBM) according to MIL STD
883D, method 3015.7.
Features
Parts Table
Document Number 83168
Rev. 1.9, 14-Jan-05
• Utilizing one of the world’s brightest (AS) AllnGaP
• High luminous flux
• Supreme heat dissipation: R
• High operating temperature:
• Meets SAE and ECE color requirements for the
• Packed in tubes for automatic insertion
• Luminous flux, forward voltage and color
• Small mechanical tolerances allow precise usage
• Lead-free device
TLWR8600
TLWY8600
TLWTG8600
TLWBG8600
TLWB8600
technologies
T
automobile industry for color red
categorized for each tube
of external reflectors or lightguides
amb
= - 40 to + 110 °C
Part
Red, φ
Yellow, φ
True green, φ
Blue green, φ
Blue, φ
V
V
= 3000 mlm (typ.)
V
= 650 mlm (typ.)
= 3000 mlm (typ.)
thJP
V
V
Color, Luminous Intensity
= 3000 mlm (typ.)
= 1300 mlm (typ.)
is 90 K/W
TLWB / BG / R / TG / Y8600
Applications
Exterior lighting
Dashboard illumination
Tail-, Stop - and Turn Signals of motor vehicles
Replaces small incandescent lamps
Traffic signals and signs
19232
30 °
30 °
30 °
30 °
30 °
Angle of Half Intensity
(±ϕ)
Vishay Semiconductors
e3 Pb
InGaN on SiC
InGaN on SiC
InGaN on SiC
AllnGaP on GaAs
AllnGaP on GaAs
Technology
Pb-free
www.vishay.com
1

Related parts for TLWTG8600

TLWTG8600 Summary of contents

Page 1

... Lead-free device Parts Table Part Red, φ TLWR8600 = 3000 mlm (typ.) V Yellow, φ TLWY8600 = 3000 mlm (typ.) V True green, φ TLWTG8600 Blue green, φ TLWBG8600 Blue, φ TLWB8600 = 650 mlm (typ.) V Document Number 83168 Rev. 1.9, 14-Jan-05 TLWB / Y8600 19232 Applications ...

Page 2

... Junction temperature Operating temperature range Storage temperature range t ≤ 1.5 mm from body Soldering temperature preheat temperature 100 °C/ 30 sec. Thermal resistance junction/ with cathode heatsink ambient TLWTG8600 , TLWBG8600 , TLWB8600 Parameter = 10 µA Reverse voltage I R ≤ 50 °C DC Forward current T amb ≤ 10 µs ...

Page 3

... Peak wavelength mA Angle of half intensity mA Total included angle Total Flux Captured Forward voltage mA µA Reverse voltage I R Junction capacitance MHz R True green TLWTG8600 Parameter Total flux mA Luminous intensity/Total flux mA Dominant wavelength mA Peak wavelength mA Angle of half intensity mA Total included angle Total Flux Captured ...

Page 4

... TLWB / Y8600 Vishay Semiconductors Blue TLWB8600 Parameter Total flux mA Luminous intensity/Total flux mA Dominant wavelength mA Peak wavelength mA Angle of half intensity mA Total included angle Total Flux Captured Forward voltage mA µA Reverse voltage I R Junction capacitance MHz R Temperature coefficient of λ dom F Typical Characteristics (Tamb = 25 °C unless otherwise specified) ...

Page 5

... Figure 8. Rel. Luminous Flux vs. Ambient Temperature 2 1.0 0.1 300 2 18022 Figure 9. Specific Luminous Flux vs. Forward Current 10 1 0.1 0.01 1 15978 Figure 10. Relative Luminous Flux vs. Forward Current Vishay Semiconductors Red -40 - 100 – Ambient Temperature ( ° amb Red 1 10 ...

Page 6

... TLWB / Y8600 Vishay Semiconductors 1.2 Red 1.1 1.0 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0.1 0.0 570 580 590 600 610 620 630 640 650 660 670 λ - Wavelength ( nm ) 16007 Figure 11. Relative Intensity vs. Wavelength 100 90 Yellow 1.4 1.5 1.6 1.7 1.8 1.9 2.0 2.1 2.2 2.3 2.4 V – ...

Page 7

... Figure 21. Relative Intensity vs. Wavelength 541 539 537 535 533 531 529 527 525 523 521 0 100 16301 Figure 22. Dominant Wavelength vs. Forward Current Vishay Semiconductors True Green 10 100 I - Forward Current ( True Green λ - Wavelength ( nm ) True Green Forward Current ( www ...

Page 8

... TLWB / Y8600 Vishay Semiconductors 100 90 Blue Green 2.5 3.0 3.5 4.0 4.5 5 Forward Voltage ( V ) 16058 F Figure 23. Forward Current vs. Forward Voltage 1.8 Blue Green 1.6 1.4 1.2 1.0 0.8 0.6 0.4 0.2 0.0 -40 - − Ambient Temperature ( ° 16061 amb Figure 24. Rel. Luminous Flux vs. Ambient Temperature Blue Green 1 ...

Page 9

... Figure 33. Relative Intensity vs. Wavelength 473 472 471 470 469 0 100 16299 Figure 34. Dominant Wavelength vs. Forward Current Vishay Semiconductors Blue 10 100 I - Forward Current ( Blue λ avelength ( nm ) Blue Forward Current ( www ...

Page 10

... TLWB / Y8600 Vishay Semiconductors Package Dimensions in mm www.vishay.com 10 16004 Document Number 83168 Rev. 1.9, 14-Jan-05 ...

Page 11

... Various national and international initiatives are pressing for an earlier ban on these substances. Vishay Semiconductor GmbH has been able to use its policy of continuous improvements to eliminate the use of ODSs listed in the following documents. 1. Annex A, B and list of transitional substances of the Montreal Protocol and the London Amendments respectively 2 ...

Page 12

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