MITEL 1A284

PRODUCT INFORMATION
1320nm
1A284
High-Performance LED
The low thermal droop of this device
allows baseband video transmission
with minimum distortion. The double-lens optical system provides for
optimum coupling of power into the
fiber.
Baseband Video
Optical and Electrical Characteristics
PARAMETER
Fiber-Coupled Power
(Fig.1, 2,& 3) (Table 1)
Rise and Fall Time
SYMBOL
MIN.
TYP.
Pfiber
35
50
MAX.
(25° C Case Temperature)
UNIT
TEST CONDITION
mW
IF =100mA
(Note 1)
tr,tf
6
fc
55
MHz
IF =100mA
lDPl
2
%
IF =100mA
Peak Wavelength
lp
1280 1320 1350
nm
IF =100mA
Spectral Width (FWHM)
Dl
120
155
nm
IF =100mA
Forward Voltage (Fig.5)
VF
1.5
2
V
IF =100mA
Reverse Current
IR
100
mA
VR=1V
Capacitance
C
pF
VR= 0V, f=1 MHz
(10-90%)
9
ns
Fiber:
IF =100mA
62.5/125mm
(no bias)
Graded
Bandwidth
(3dBel )
Thermal Droop
(nonlinearity) (Note 2)
200
Index
NA=0.275
Note 1: Measured at the exit of 100 meters of fiber.
Note 2: Transient decline in optical power due to self-heating.
Ø4.7
Ø1.5
Absolute Maximum Ratings
0.6
PARAMETER
3.7
SYMBOL
LIMIT
Tstg
Top
-55 to +1258C
230 mW
Continuous Forward Current (f<10 kHz)
Ptot
IF
Peak Forward Current (duty cycle<50%, f>1 MHz)
IFRM
170 mA
Reverse Voltage
VR
1.5 V
Soldering Temperature (2mm from the case for 10 sec)
Tsld
2608C
Storage Temperature
Operating Temperature (derating: Fig.4)
-55 to +1258C
14
Electrical Power Dissipation (derating: Fig.4)
0.4
ANODE
CATHODE
2.5
5.4
BOTTOM VIEW
The anode is in electrical contact with the case.
TO-46 Package With Lens
All dimensions in mm
CASE
110 mA
Thermal Characteristics
PARAMETER
MAX.
UNIT
Rthjc
100
8C/W
Rthja
Temperature Coefficient - Optical Power dP/dTj
400
8C/W
-0.8
%/8C
dl /dTj
0.55
nm/8C
Thermal Resistance - Infinite Heat Sink
SYMBOL
MIN.
TYP.
Thermal Resistance - No Heat Sink
Temperature Coefficient -Wavelength
12270.11 1997-07-08
Europe: Tel (46) 8 58 02 45 00 Fax (46) 8 58 02 01 10
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Asia:
Tel (65) 293 5312
Fax (65) 293 8527
1A284
High-Performance LED
Typical Fiber-Coupled Power
RELATIVE FIBER-COUPLED POWER
90 mW
80
60
40
r
r = opt.
Øc = 62.5ʵm
20
z = opt.
Øc = 62.5ʵm
80
z
60
40
20
z
0
0
0.5
1.0
2.0
1.5
2.5
0
3.0 mm
z - AXIAL DISPLACEMENT OF FIBER
FIGURE 3
%
20
40
60
80
100 µm
r - RADIAL DISPLACEMENT OF FIBER
FIGURE 4
mW
100
300
MAX. ELECTRICAL POWER DISSIPATION
50 mW
RELATIVE FIBER-COUPLED POWER
Table 1
100/140 mm
0.29
r
RELATIVE FIBER-COUPLED POWER
12 mW
62.5/125 mm
0.275
FIGURE 2
%
100
100
80
60
50% DUTY CYCLE
DC
40
20
HEAT SINKED
200
INFINITE
HEAT SINK
NO HEAT SINK
100
0
0
0
40
80
120
160
200 mA
FORWARD CURRENT
FIGURE 5
200
100
0
0
1
2
FORWARD VOLTAGE
0
50
100
OPERATING TEMPERATURE
mA
FORWARD CURRENT
50/125 mm
0.20
FIGURE 1
%
Core Diameter/Cladding Diameter
Numerical Aperture
1320nm
3V
150¡C
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