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LRTBGVSR-U4V2-JW+A6BB-D8+S2U2-7Z

Description
Visible LED,
CategoryLED optoelectronic/LED    photoelectric   
File Size3MB,32 Pages
ManufacturerOsram Opto Semiconductor
Websitehttps://www.osram.com/index-2.jsp
Environmental Compliance
Download Datasheet Parametric View All

LRTBGVSR-U4V2-JW+A6BB-D8+S2U2-7Z Overview

Visible LED,

LRTBGVSR-U4V2-JW+A6BB-D8+S2U2-7Z Parametric

Parameter NameAttribute value
Is it Rohs certified?conform to
MakerOsram Opto Semiconductor
Reach Compliance Codeunknown

LRTBGVSR-U4V2-JW+A6BB-D8+S2U2-7Z Preview

Produktdatenblatt | Version 1.1
LRTB GVSR
www.osram-os.com
LRTB GVSR
OSIRE
®
E3635
The OSIRE E3635 is especially designed for auto-
motive applications (interior) and RGB displays. The
6-lead technology offers an additive mixture of color
stimuli by independent driving of each chip. The
white package guarantees high brightness.
Applications
Interior Illumination (e.g. Ambient Map)
Features:
Package: white PLCC-6 package, silicone resin
Chip technology: Thinfilm / UX:3
Typ. Radiation: 120° (Lambertian emitter)
Color:
λ
dom
= 626 nm (● red);
λ
dom
= 528 nm (● true green);
λ
dom
= 465 nm (● blue)
Corrosion Robustness Class: 3B
Qualifications: AEC-Q102 Qualified
ESD: 2 kV acc. to ANSI/ESDA/JEDEC JS-001 (HBM, Class 2)
1
Version 1.1
| 2020-05-04
LRTB GVSR
Ordering Information
Type
Brightness
1)
Ordering Code
Q65112A8552
Q65112A8552
Q65112A8552
Q65112A8552
LRTBGVSR-U4V2-JW+A6BB-D8+S2U2-7Z
red
true green
blue
I
v
= 500 ... 1120 mcd (I
F
= 20 mA)
I
v
= 1590 ... 2800 mcd (I
F
= 20 mA)
I
v
= 224 ... 710 mcd (I
F
= 20 mA)
2
Version 1.1
| 2020-05-04
LRTB GVSR
Maximum Ratings
Parameter
Operating Temperature
Storage Temperature
Junction Temperature
Forward Current
T
S
= 25 °C
Surge Current
t ≤ 10 µs; D = 0.005 ; T
S
= 25 °C
Reverse voltage
2)
T
S
= 25 °C
ESD withstand voltage
acc. to ANSI/ESDA/JEDEC JS-001
(HBM, Class 2)
Symbol
T
op
T
stg
T
j
I
F
I
FS
V
R
V
ESD
min.
max.
min.
max.
max.
min.
max.
max.
max.
Values
red
-40 °C
110 °C
-40 °C
110 °C
125 °C
5 mA
40 mA
100 mA
12 V
2 kV
Values
true green
-40 °C
110 °C
-40 °C
110 °C
125 °C
5 mA
50 mA
300 mA
5V
2 kV
Values
blue
-40 °C
110 °C
-40 °C
110 °C
125 °C
5 mA
50 mA
300 mA
5V
2 kV
3
Version 1.1
| 2020-05-04
LRTB GVSR
Characteristics
I
F
= 20 mA; T
S
= 25 °C
Parameter
Peak Wavelength
Dominant Wavelength
3)
Symbol
λ
peak
λ
dom
typ.
min.
typ.
max.
typ.
typ.
min.
typ.
max.
typ.
max.
typ.
max.
Values
red
632 nm
620 nm
626 nm
632 nm
18 nm
120 °
1.70 V
2.05 V
2.40 V
0.01 µA
10 µA
90 K / W
120 K / W
Values
true green
523 nm
519 nm
528 nm
546 nm
33 nm
120 °
2.10 V
2.60 V
3.00 V
0.01 µA
10 µA
83 K / W
100 K / W
Values
blue
455 nm
447 nm
465 nm
476 nm
25 nm
120 °
2.50 V
2.85 V
3.20 V
0.01 µA
10 µA
66 K / W
90 K / W
Spectral bandwidth at 50% I
rel,max
Viewing angle at 50% I
V
Forward Voltage
4)
I
F
= 20 mA
Reverse current
2)
VR = 5 V (blue / true green); 12 V
(red)
Real thermal resistance junction/sol-
derpoint
5)
∆λ
V
F
I
R
R
thJS real
4
Version 1.1
| 2020-05-04
LRTB GVSR
Brightness Groups
Color of emission
Group
Luminous Intensity
1)
I
F
= 20 mA
min.
I
v
500 mcd
560 mcd
630 mcd
710 mcd
800 mcd
900 mcd
1590 mcd
1800 mcd
2010 mcd
2240 mcd
224 mcd
250 mcd
280 mcd
315 mcd
355 mcd
400 mcd
450 mcd
500 mcd
560 mcd
Luminous Intensity
1)
I
F
= 20 mA
max.
I
v
630 mcd
710 mcd
800 mcd
900 mcd
1000 mcd
1120 mcd
2010 mcd
2240 mcd
2500 mcd
2800 mcd
280 mcd
320 mcd
355 mcd
400 mcd
450 mcd
500 mcd
560 mcd
630 mcd
710 mcd
red
red
red
red
red
red
true green
true green
true green
true green
blue
blue
blue
blue
blue
blue
blue
blue
blue
U4
U2
U6
V1
V4
V2
A6
BA
B4
BB
S2
S6
T1
T4
T2
T6
U1
U4
U2
Wavelength Groups
red
Group
Dominant Wavelength
3)
min.
λ
dom
620 nm
623 nm
627 nm
Dominant Wavelength
3)
max.
λ
dom
625 nm
629 nm
632 nm
JP
MT
RW
5
Version 1.1
| 2020-05-04
Is there any way to make a circuit conduct for 0.1s-0.5s in the closed state and then disconnect immediately?
The time cannot exceed 0.5 seconds. Please help me with details....
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