SPEC NO:
DSAD1427
REV NO: V.3 DATE: APR/25/2005 PAGE:
1
OF
3
APPROVED: J. Lu
CHEC KED: Joe Lee DR AWN: S. H. CHE N
ERP:1331000048
Notes:
1. All dimensi ons ar e in mi llimete rs (inc hes), T olerance is
±0
.25(0.0 1")unless otherwise noted.
2.
Spec ificati ons are subjec t to ch ange with out noti ce.
DC10SRW A SUPER BRIGHT RED
Description
The Super Bright Red source color devices are m ade
with Gallium Aluminum Arseni de Red Light Emitting
Diode.
10 S EG M EN TS B AR G R APH AR R AY
Features
z
SUITABLE FOR LEVEL INDICATORS.
z
LOW CUR RENT O PE RATIO N.
z
EXCE LLENT O N/OFF CO NTRAS T.
z
W IDE VIEWING ANGLE.
z
END STACKABLE.
z
MECHANICALLY RUGGED.
z
BI
-
COLO R VERSION AVAILA BLE.
z
STANDARD : GRAY FACE, WHITE SEGMENT.
z
RoHS COMPLIA NT .
SPEC NO:
DSAD1427
REV NO: V.3 DATE: APR/25/2005 PAGE:
2
OF
3
APPROVED: J. Lu
CHEC KED: Joe Lee DR AWN: S. H. CHE N
ERP:1331000048
Selectio n Guid
e
Part No.
Dice
Lens Type
Iv (ucd)
@ 10mA
Min.
Typ.
DC10SRWA
SUPER BRIGHT RED (GaAIAs)
WHITE DIFFUSED
8000
31000
10 Segments
Bargraph
-
Display
Description
Electrical / Optical Characteristics at T
A
=25
°C
Absolute Maximum Ratings at T
A
=25
°C
Notes:
1. 1/10 Duty Cycle, 0.1ms Pulse Width.
2. 5mm below package base.
Symbol
Parameter
Device
Typ.
Max.
Test Conditions
Units
λ
peak
Peak Wavelength
Super Bright Red
660
nm
I
F
=20mA
λ
D
Dominant Wavelength
Super Bright Red
640
nm
I
F
=20mA
∆λ
1/2
Spectral Line Half
-
width
Super Bright Red
20
nm
I
F
=20mA
C
Capacitance
Super Bright Red
45
pF
V
F
=0V;f=1MHz
V
F
Forward Voltage
Super Bright Red
1.85
2.5
V
I
F
=20mA
I
R
Reverse Current
Super Bright Red
10
uA
V
R
= 5V
Parameter
Super Bright Red
Units
Power dissipation
100
mW
DC Forward Current
30
mA
Peak Forward Current [1]
155
mA
Reverse Voltage
5
V
Operating / Storage Temperature
-
40°C
To +85°C
Lead Solder Temperature [2]
260°C
For 5 Seconds
SPEC NO:
DSAD1427
REV NO: V.3 DATE: APR/25/2005 PAGE:
3
OF
3
APPROVED: J. Lu
CHEC KED: Joe Lee DR AWN: S. H. CHE N
ERP:1331000048
Super Bright
Red
DC10SRWA
Remarks:
If special sorting is required (e.g. binning based on forward voltage, luminous intensity, or wavelength),
the typical accuracy of t he sorting process is as foll ows:
1. Wavelength: +/
-
1nm
2. Luminous Intensit y: +/
-
15%
3. Forward Voltage: +/
-
0.1V
Note: Accuracy may depend on the sorting parameters.