HFBR-0501 Avago Technologies US Inc., HFBR-0501 Datasheet - Page 8

KIT EVAL FIBER OPTIC 5MBD

HFBR-0501

Manufacturer Part Number
HFBR-0501
Description
KIT EVAL FIBER OPTIC 5MBD
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of HFBR-0501

Main Purpose
Interface, Fiber Optics
Embedded
No
Utilized Ic / Part
HFBR-0501 series
Primary Attributes
1MBd @ 70m, 40 kBd @120m
Secondary Attributes
6 mA Peak
Silicon Core Number
HFBR-1524, HFBR-2524
Kit Contents
TX/RX Mods, Cable, Pol Kit, SW, Pwr. Sup
Silicon Family Name
Versatile Link
Features
Dc To 5 MBd TTL Compatible Fiber Optic Component
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant
Other names
516-2141
HFBR-0501
Transmitter Electrical/Optical Characteristics 0 C to 70 C unless otherwise specified.
Notes:
1. Measured at the end of 0.5 m standard fiber optic cable with large area detector.
2. Optical power, P (dBm) = 10 Log [P( W)/1000 W].
3. Rise and fall times are measured with a voltage pulse driving the transmitter and a series connected 50
Figure 9. Typical forward voltage vs. drive current
8
Parameter
Transmitter Output
Optical Power
Output Optical Power
Temperature Coefficient
Peak Emission
Wavelength
Forward Voltage
Forward Voltage
Temperature Coefficient
Effective Diameter
Numerical Aperture
Reverse Input Breakdown
Voltage
Diode Capacitance
Rise Time
Fall Time
electrical waveform analyzer, terminated to a 50
1.8
1.7
1.6
1.5
1.4
2
I
Fdc
– TRANSMITTER DRIVE CURRENT (mA)
10
0°C
25°C
70°C
100
Symbol
P
V
V
NA
C
P
T
F
V
D
t
t
BR
PK
/ T
/ T
r
T
F
O
f
input of a wide bandwidth oscilloscope, is used for this response time measurement.
Min.
-16.5
-14.3
1.45
5.0
Typ.
-0.85
-1.37
1.67
11.0
660
0.5
86
80
40
1
[5]
Figure 10. Normalized typical output power vs. drive current
-10
-15
-20
-5
Max.
5
0
2.02
-7.6
-8.0
2
I
Fdc
– TRANSMITTER DRIVE CURRENT (mA)
mV/ C
%/ C
Units
dBm
dBm
mm
nm
pF
ns
ns
V
V
10
Conditions
I
I
I
I
T
V
10% to 90%,
I
Fdc
Fdc
Fdc
Fdc
A
F
F
= 25 C
= 0, f = MHz
= 60 mA
load. A wide bandwidth optical to
= 60 mA
= 60 mA, 25 C
= 60 mA
= 10 A,
100
Ref.
Notes 1, 2
Fig. 9
Note 3

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