LA E65B - .AA 1120 mcd 1400 mcd 1590 mlm AB 1400 mcd 1800 mcd 2020 mlm BA 1800 mcd 2240 mcd 2560

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Text of LA E65B - .AA 1120 mcd 1400 mcd 1590 mlm AB 1400 mcd 1800 mcd 2020 mlm BA 1800 mcd 2240 mcd 2560

LA E65B

1 Version 1.3 | 2018-09-21

Produktdatenblatt | Version 1.1 www.osram-os.com

LA E65B

Power TOPLED Lens PowerTOPLED with lens, a powerful member of the TOPLED family. Thanks to their high luminous efficacy, the LEDs are ideal for rear light clusters and indicators on vehicles and for display panels for traffic control systems.

Applications Interior Illumination (e.g. Ambient Map) Signalling

Traffic Lights

Features: Package: white PLCC-4 package, colorless clear resin

Chip technology: InGaAlP

Typ. Radiation: 60

Color: dom = 617 nm ( amber)

Corrosion Robustness Class: 3B

ESD: 2 kV acc. to ANSI/ESDA/JEDEC JS-001 (HBM, Class 2)

LA E65B

2 Version 1.3 | 2018-09-21

Ordering Information Type Luminous Intensity 1) Ordering Code

IF = 50 mAIv

LA E65B-AACA-24-1 1120 ... 3550 mcd Q65110A2351

LA E65B

3 Version 1.3 | 2018-09-21

Maximum RatingsParameter Symbol Values

Operating Temperature Top min. max.

-40 C 100 C

Storage Temperature Tstg min. max.

-40 C 100 C

Junction Temperature Tj max. 125 C

Forward current TS = 25 C

IF max. 70 mA

Surge Current t 10 s; D = 0.005 ; TS = 25 C

IFS max. 100 mA

Reverse voltage 2) TS = 25 C

VR max. 12 V

ESD withstand voltage acc. to ANSI/ESDA/JEDEC JS-001 (HBM, Class 2)

VESD 2 kV

LA E65B

4 Version 1.3 | 2018-09-21

CharacteristicsIF = 50 mA; TS = 25 C

Parameter Symbol Values

Peak Wavelength 3) peak typ. 624 nm

Dominant Wavelength 3) IF = 50 mA

dom min. typ. max.

612 nm 617 nm 624 nm

Spectral Bandwidth at 50% Irel,max typ. 18 nm

Viewing angle at 50 % IV 2 typ. 60

Forward Voltage 4) IF = 50 mA

VF min. typ. max.

1.90 V 2.20 V 2.50 V

Reverse current 2) VR = 12 V

IR typ. max.

0.01 A 10 A

Temperature Coefficient of Peak Wavelength -10C T 100C

TCpeak typ. 0.15 nm / K

Temperature Coefficient of Dominant Wavelength -10C T 100C

TCdom typ. 0.07 nm / K

Temperature Coefficient of Forward Voltage -10C T 100C

TCVF typ. -3.7 mV / K

Real thermal resistance junction/solderpoint 5) RthJS real typ. max.

110 K / W 130 K / W

LA E65B

5 Version 1.3 | 2018-09-21

Brightness Groups Group Luminous Intensity 1) Luminous Intensity. 1) Luminous Flux 6)

IF = 50 mA IF = 50 mA IF = 50 mAmin. max. typ.Iv Iv V

AA 1120 mcd 1400 mcd 1590 mlm

AB 1400 mcd 1800 mcd 2020 mlm

BA 1800 mcd 2240 mcd 2560 mlm

BB 2240 mcd 2800 mcd 3190 mlm

CA 2800 mcd 3550 mcd 4020 mlm

Forward Voltage Groups Group Forward Voltage 4) Forward Voltage 4)

IF = 50 mA IF = 50 mAmin. max.VF VF

3A 1.90 V 2.05 V

3B 2.05 V 2.20 V

4A 2.20 V 2.35 V

4B 2.35 V 2.50 V

Wavelength Groups Group Dominant Wavelength 3) Dominant Wavelength 3)

IF = 50 mA IF = 50 mAmin. max.dom dom

2 612 nm 616 nm

3 616 nm 620 nm

4 620 nm 624 nm

LA E65B

6 Version 1.3 | 2018-09-21

Group Name on Label Example: AA-2-3ABrightness Wavelength Forward Voltage

AA 2 3A

LA E65B

7 Version 1.3 | 2018-09-21

LA E65B

350 400 450 500 550 600 650 700 750 800

/

0,0

0,2

0,4

0,6

0,8

1,0I

: V: amber

Relative Spectral Emission 6) Irel = f (); IF = 50 mA; TS = 25 C

LA E65B

-100

-90

-80

-70

-60

-50

-40

-30

-20-10 0 10 20 30 40 50 60 70 80 90

/

0,0

0,2

0,4

0,6

0,8

1,0I

Radiation Characteristics 6) Irel = f (); TS = 25 C

LA E65B

8 Version 1.3 | 2018-09-21

LA E65B

1 701 2 3 4 5 10 20 30 40 50

IF / mA

0,01

0,05

0,1

0,5

1

IVIV(50mA)

Relative Luminous Intensity 6), 7)Iv/Iv(50 mA) = f(IF); TS = 25 C

LA E65B

1,6 1,8 2,0 2,2 2,4

VF / V

1

2

3

4

5

10

20

30

40

50

IF / mA

Forward current 6), 7)IF = f(VF); TS = 25 C

LA E65B

9 Version 1.3 | 2018-09-21

LA E65B

-40 -20 0 20 40 60 80 100 120

Tj / C

0,0

0,5

1,0

1,5

2,0IvIv(25C)

Relative Luminous Intensity 6)Iv/Iv(25 C) = f(Tj); IF = 50 mA

LA E65B

10 Version 1.3 | 2018-09-21

0 20 40 60 80

0,0

0,2

0,4

0,6

0,8

1,0

1,2

1,4

OHL01413

00 20 40 60 80 C 100

T

IF

20

40

60

80mA

AT ST

temp. ambienttemp. solder point

A

S

10

30

70

50

Max. Permissible Forward CurrentIF = f(T)

OHL01506

FI

0

0.02

0.04

0.06

0.08

0.10

0.12

A

pt-510 -410 -310 -210 -110 010 110 210

0.0050.050.5

s

Permissible Pulse Handling CapabilityIF = f(tp); D: Duty cycle; TA = 85 C

OHL01505

FI

0

0.02

0.04

0.06

0.08

0.1

0.12

A

pt-510 -410 -310 -210 -110 010 110 210

0.0050.050.5

s

Permissible Pulse Handling CapabilityIF = f(tp); D: Duty cycle; TA = 25 C

LA E65B

11 Version 1.3 | 2018-09-21

Dimensional Drawing 8)

3.5 (0.138) max.

2.5

5 (0

.100

)

0.13 (0.005)

0.18 (0.007)

0.1 (0.004) typ

markingPackage

1.1

(0.0

43)

0.5

(0.0

20)

2.6 (0.102)

3.4

(0.1

34)

3.0

(0.1

18)

2.1 (0.083)

2.3 (0.091)

3.0 (0.118)

3.7

(0.1

46)

3.3

(0.1

30) 4

1

GPLY7000

0.4 (0.016)

0.6 (0.024)

0.9 (0.035)

0.7 (0.028)

1.7 (0.067)2.1 (0.083)

0.6 (0.024)

0.8 (0.031)

A C

CC

2.6

0 (0

.102

)

CC

CA

Approximate Weight: 38.0 mg

Package marking: Cathode

Corrosion test: Class: 3B Test condition: 40C / 90 % RH / 15 ppm H2S / 14 days (stricter then IEC 60068-2-43)

LA E65B

12 Version 1.3 | 2018-09-21

For superior solder joint connectivity results we recommend soldering under standard nitrogen atmosphere. Package not suitable for ultra sonic cleaning.

Recommended Solder Pad 8)

OHLPY440

Padgeometrie frverbesserte Wrmeableitung

improved heat dissipationPaddesign for

LtstoplackSolder resist

0.8 (0.031)

3.7

(0.1

46)

1.1

(0.0

43)

2.3 (0.091)

3.3 (0.130)

1.5

(0.0

59)

11.1

(0.4

37)

Cu Flche / 16 mm per pad2Cu-area

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