KINGBRIGHT L-934ID Service Manual

SPEC NO:
'6$$
REV NO: V.5 DATE: APR/08/2005 PAGE:
1OF3
APPROVED: J. Lu
CHECKED: Alle n Liu DR AWN: S. H.C HE N
Package Dimen sion
s
Features
z
LOW POWER CON SU MPTION.
z
POPULAR T
-
1 DIAMETER PACKAGE.
z
GENERAL PUR PO S E LEADS.
z
RELIABLE AN D RU G GED.
z
LONG LIFE
-
SOLID STATE RELIABILITY.
z
AVAILABLE ON T AP E AND REEL.
z
RoHS COMPLIANT.
T-1
(3mm) SOLID STATE LAMP
L-934ID HIGH EFFICIENCY RED
Description
The High Efficiency Red sourc e color devices are
made with Gallium Arsenide Phos phide on Gallium
Phosphide Orange Light Em itting Diode.
Notes:
1. All dimensions are in millimeters (inches).
2. Tolerance is
±0
.25(0.01") unless ot h er wis e note d.
3. Lead spacing is measured where the leads emerge from the package.
4. Specifications are subject to change without notice.
SPEC NO:
'6$$
REV NO: V.5 DATE: APR/08/2005 PAGE:
2OF3
APPROVED: J. Lu
CHECKED: Alle n Liu DR AWN: S. H.C HE N
Selection Guid
e
Note:
1. θ1/2 is the angle from optical centerline where the luminous intensity is 1/2 the optical centerline value.
Part No.
Dice
Lens Type
Iv (mcd)
@ 10mA
Viewing
Angle
Min.
Typ.
2 θ 1/2
L-934ID
HIGH EFFICIENCY RED (GaAsP/GaP)
RED
DIFFUSED
82060
°
Electrical / Optical Characteristics at T
A
=25
°C
Symbol
Parameter
Device
Typ.
Max.
Test Conditions
Units
λ
peak
Peak Wavelength
High Efficiency Red
627 nmIF=20mA
D
Dominant Wavelength
High Efficiency Red
625nmIF=20mA
1/2
Spectral Line Half
-
width
High Efficiency Red
45 nmIF=20mA
C
Capacitance
High Efficiency Red
15 pFVF=0V;f=1MHz
VFForward Voltage
High Efficiency Red
2.0
2.5
V
IF=20mA
IRReverse Current
High Efficiency Red
10uAVR = 12V
Absolute Maximum Ratings at T
A
=25
°C
Notes:
1. 1/10 Duty Cycle, 0.1ms Pulse Width.
2. 2mm below package base.
3. 5mm below package bas e.
Parameter
High Efficiency Red
Units
Power dissipation
105mWDC Forward Current
30mAPeak Forward Current [1]
160mAReverse Voltage
5VOperating/Storage Temperature
-
40°C
To +85°C
Lead Solder Te mperature [2]
260°C
For 3 Seconds
Lead Solder Te mperature [3]
260°C
For 5 Seconds
λ
∆λ
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