led710-01au Roithner LaserTechnik GmbH, led710-01au Datasheet

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led710-01au

Manufacturer Part Number
led710-01au
Description
Infrared Led
Manufacturer
Roithner LaserTechnik GmbH
Datasheet
TECHNICAL DATA
LED710-series are AlGaAs LEDs mounted on a lead frame and encapsulated in various types of
epoxy lens, which offers different design settings.
On forward bias, it emits a high power radiation of typical 13 mW at a peak wavelength at 710 nm.
03.05.2011
Absolute Maximum Ratings (T
Power Dissipation
Forward Current
Pulse Forward Current
Reverse Voltage
Operating Temperature
Storage Temperature
Soldering Temperature (for 5 sec.)
Electro-Optical Characteristics (T
Forward Voltage
Reverse Current
Radiated Power
Peak Wavelength
Half Width
Rise Time
Fall Time
Specifications
Infrared LED
Structure: AlGaAs
Peak Wavelength: typ. 710 nm
Optical Ouput Power: typ. 13 mW
Resin Material: Epoxy resin
Solder: Lead free
Item
Type
Symbol
LED710-series
P
Δλ
V
λ
I
t
t
R
P
r
f
O
F
a
=25°C)
a
Condition
I
I
I
I
I
I
=25°C)
F
F
F
F
F
F
V
= 50 mA
= 50 mA
= 50 mA
= 50 mA
= 50 mA
= 50 mA
R
LED710-series
= 5 V
Symbol
T
T
T
P
I
V
STG
I
SOL
FP
OP
F
D
R
Min.
700
9
-
-
-
-
-
-40 … +100
-30 … +85
Value
160
500
265
75
5
Typ.
710
1.9
13
30
50
25
-
Max.
720
2.3
10
-
-
-
-
AlGaAs
Unit
mW
mA
mA
°C
°C
°C
V
Unit
mW
nm
nm
µA
ns
ns
V
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led710-01au Summary of contents

Page 1

... TECHNICAL DATA Infrared LED LED710-series are AlGaAs LEDs mounted on a lead frame and encapsulated in various types of epoxy lens, which offers different design settings. On forward bias, it emits a high power radiation of typical peak wavelength at 710 nm. Specifications • Structure: AlGaAs • Peak Wavelength: typ. 710 nm • ...

Page 2

... Characteristics of Radiant Intensity (T Viewing Type Half Angle LED710-01AU ±10° LED710-02AU ±7° LED710-03AU ±10° LED710-04AU ±20° LED710-05AU ±40° LED710-06AU ±7° ±25° (long) LED710-09AU ±15° (short) LED710-46AU LED710-41AU ±16° LED710-42AU ±23° LED710-31AU LED710-33AU ± ...

Page 3

... Figure-5 Ø 5Mold (Type 05) Figure-7 Ø 5Mold (Type 09) Figure-9 Ø 4Mold (Type 41) Figure-11 Ø 3Mold (Type 31) Figure-13 Ø 3Mold (Type 34) 03.05.2011 Figure-6 Ø 5Mold (Type 06) Figure-8 Ø 5Mold (Type 46) Figure-10 Ø 4Mold (Type 42) Figure-12 Ø 3Mold (Type 33) Figure-14 Ø 3Mold (Type 36) LED710-series ...

Page 4

... Figure-1 Ø 5Mold (Type 01) Figure-3 Ø 5Mold (Type 03) Figure-5 Ø 5Mold (Type 05) Figure-7 Ø 5Mold (Type 09) Figure-9 Ø 4Mold (Type 41) 03.05.2011 Figure-2 Ø 5Mold (Type 02) Figure-4 Ø 5Mold (Type 04) Figure-6 Ø 5Mold (Type 06) Figure-8 Ø 5Mold (Type 46) Figure-10 Ø 4Mold (Type 42) LED710-series ...

Page 5

... Figure-11 Ø 3Mold (Type 31) Figure-13 Ø 3Mold (Type 34) Typical Performance Curves Forward Current – Forward Voltage 03.05.2011 Figure-12 Ø 3Mold (Type 33) Figure-14 Ø 3Mold (Type 36) Relative Radiant Intensity – Pulsed Forward Current LED710-series ...

Page 6

... Forward Current – Pulse Duration Relative Radiant Intensity – Ambient Temperature 03.05.2011 Forward Voltage – Ambient Temperature Allowable Forward Current – Ambient Temperature LED710-series ...

Page 7

... When mounted the LEDs onto the printed circuit board, the holes on the circuit board should be exactly aligned with the leads of LEDs. If the LEDs are mounted with stress at the leads, it causes deterioration of the lead and it will degrade the LEDs. 03.05.2011 Peak Wavelength – Ambient Temperature LED710-series ...

Page 8

... LEDs. • All devices, equipment and machinery must be grounded properly recommended that precautions should be taken against surge voltage to the equipment that mounts the LEDs. 03.05.2011 Recommended Land Layout (Unit: mm) Soldering Conditions LED710-series ...

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