2016-09-27
OSLON Black Series (850 nm) - 90°
Version 1.5
SFH 4715A
Features:
•
IR lightsource with high efficiency
•
Low thermal resistance (Max. 10 K/W)
•
Centroid wavelength 850 nm
•
Superior Corrosion Robustness (see chapter package outlines)
•
The product qualification test plan is based on the guidelines of AEC-Q101-REV-C, Stress Test Qualification
for Automotive Grade Discrete Semiconductors.
Applications
•
Infrared Illumination for cameras
•
Surveillance systems
•
Machine vision systems
•
Eye tracking systems
Notes
Depending on the mode of operation, these devices emit highly concentrated non visible infrared light which
can be hazardous to the human eye. Products which incorporate these devices have to follow the safety
precautions given in IEC 60825-1 and IEC 62471.
Ordering Information
Type:
Radiant Intensity
I
e
[mW/sr]
I
F
= 1 A, t
p
= 10 ms
SFH 4715A
SFH 4715A-CBDA
Note:
Ordering Code
415 (≥ 250)
320 ... 630
Q65111A6159
Q65111A8096
measured at a solid angle of Ω = 0.01 sr
2016-09-27
1
Version 1.5
Maximum Ratings
(T
A
= 25 °C)
Parameter
Operation and storage temperature range
Junction temperature
Reverse voltage
Forward current
Surge current
(t
p
= 3 ms, D = 0)
Power consumption
ESD withstand voltage
(acc. to ANSI/ ESDA/ JEDEC JS-001 - HBM)
Thermal resistance junction - solder point
Note:
SFH 4715A
Symbol
T
op
; T
stg
T
j
V
R
I
F
I
FSM
P
tot
V
ESD
R
thJS
Values
-40 ... 125
145
5
2000
3
5
2
10
Unit
°C
°C
V
mA
A
W
kV
K/W
For the forward current and power consumption please see "maximum permissible forward current"
diagram
Characteristics
(T
A
= 25 °C)
Parameter
Peak wavelength
(I
F
= 1 A, t
p
= 10 ms)
Centroid wavelength
(I
F
= 1 A, t
p
= 10 ms)
Spectral bandwidth at 50% of I
max
(I
F
= 1 A, t
p
= 10 ms)
Half angle
Dimensions of active chip area
Rise and fall times of I
e
( 10% and 90% of I
e max
)
(I
F
= 3 A, R
L
= 50 Ω)
Forward voltage
(I
F
= 1 A, t
p
= 10 ms)
Forward voltage
(I
F
= 2 A, t
p
= 100 µs)
Forward voltage
(I
F
= 3 A, t
p
= 100 µs)
Total radiant flux
(I
F
= 2 A, t
p
= 100 µs)
Total radiant flux
(I
F
= 1 A, t
p
= 10 ms)
(typ)
(typ)
(typ)
(typ)
(typ)
(typ)
Symbol
λ
peak
λ
centroid
∆λ
ϕ
LxW
t
r
/ t
f
Values
860
850
30
± 45
1x1
11/ 14
1.65 (≤ 2.1)
1.9 (≤ 2.5)
2.2 (≤ 3)
1450
770
Unit
nm
nm
nm
°
mm x
mm
ns
V
V
V
mW
mW
(typ (max)) V
F
(typ (max)) V
F
(typ (max)) V
F
(typ)
(typ)
Φ
e
Φ
e
2016-09-27
2
Version 1.5
SFH 4715A
Parameter
Radiant intensity
(I
F
= 2 A, t
p
= 100 µs)
Temperature coefficient of I
e
or Φ
e
(I
F
= 1 A, t
p
= 10 ms)
Temperature coefficient of V
F
(I
F
= 1 A, t
p
= 10 ms)
Temperature coefficient of wavelength
(I
F
= 1 A, t
p
= 10 ms)
Grouping
(T
A
= 25 °C)
Group
Min Radiant Intensity
I
F
= 1 A, t
p
= 10 ms
I
e, min
[mW / sr]
SFH4715A - CA
SFH4715A - CB
SFH4715A - DA
Note:
Symbol
(typ)
(typ)
(typ)
(typ)
I
e
TC
I
TC
V
TC
λ
Values
780
-0.3
-1
0.3
Unit
mW/sr
%/K
mV / K
nm / K
Max Radiant Intensity
I
F
= 1 A, t
p
= 10 ms
I
e, max
[mW / sr]
400
500
630
250
320
400
measured at a solid angle of Ω = 0.01 sr
Only one group in one packing unit (variation lower 1.6:1).
2016-09-27
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Version 1.5
Relative Spectral Emission
1)
page 13
I
rel
= f (λ), T
A
= 25 °C, I
F
=1A, t
p
= 10 ms
100
OHF04132
SFH 4715A
Relative Total Radiant Flux
1)
page 13
Φ
e
/Φ
e
(1A) = f (I
F
), T
A
= 25 °C, Single pulse,
t
p
= 100 μs
10
1
OHF05693
I
rel
%
80
Φ
e
(1 A)
10
0
Φ
e
60
10
-1
40
20
10
-2
0
700
750
800
850
nm 950
λ
Max. Permissible Forward Current
I
F
= f (T
S
), R
thJS
= 10 K/W
10
-3 -2
10
10
-1
10
0
A
10
1
I
F
Forward Current
1)
page 13
I
F
= f(V
F
), single pulse, t
p
= 100 µs, T
A
= 25°C
I
F
3
A
OHF05723
I
F
10
1
A
OHF05725
2
10
0
5
1
10
-1
5
0
0
25
50
75
100
˚C 150
10
-2
1
1.2 1.4 1.6 1.8
2
V 2.4
T
S
V
F
2016-09-27
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Version 1.5
SFH 4715A
Permissible Pulse Handling Capability
I
F
= f(t
p
), T
S
= 85 °C, Duty cycle D = parameter
I
F
3.5
A
OHF05724
D
=
T
P
t
t
P
I
F
T
3.0
D
=
0.005
0.01
0.02
0.05
0.1
0.2
0.5
1
2.5
2.0
1.5
-5
10 10
-4
10
-3
10
-2
10
-1
10
0
10
1
s 10
2
t
p
Radiation Characteristics
1)
page 13
I
rel
= f(ϕ), T
A
= 25°C
40˚
30˚
20˚
ϕ
50˚
0.8
60˚
10˚
0˚
1.0
OHL04470
0.6
70˚
0.4
80˚
90˚
0.2
0
100˚
1.0
0.8
0.6
0.4
0˚
20˚
40˚
60˚
80˚
100˚
120˚
2016-09-27
5