HFBR-14E4Z Avago Technologies US Inc., HFBR-14E4Z Datasheet - Page 18

XMITTER FIBER OPTIC HIGH PWR SC

HFBR-14E4Z

Manufacturer Part Number
HFBR-14E4Z
Description
XMITTER FIBER OPTIC HIGH PWR SC
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of HFBR-14E4Z

Wavelength
820nm
Voltage - Forward (vf) Typ
1.7V
Current - Dc Forward (if)
100mA
Voltage - Dc Reverse (vr) (max)
1.8V
Capacitance
55pF
Connector Type
SC
Data Rate Max
0.16Gbps
Supply Voltage
5V
Wavelength Typ
820nm
Leaded Process Compatible
Yes
Applications
100Base-SX Fast Ethernet, Media/Fiber Conversion, Switches, Routers, Hubs
Product
Transmitter
Data Rate
160 MBd
Diode Capacitance
55 pF
Maximum Rise Time
6.5 ns
Maximum Fall Time
6.5 ns
Maximum Output Current
25 mA
Operating Supply Voltage
4.75 V to 5.25 V
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 40 C
Function
High performance fiber optic communication links for information systems and industrial applications.
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Spectral Bandwidth
-
Lead Free Status / Rohs Status
 Details
For Use With
Multimode Glass, Hard Clad Silica
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant
Other names
516-2041

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
HFBR-14E4Z
Manufacturer:
SHARP
Quantity:
21 040
Recommended Drive Circuits
The circuit used to supply current to the LED transmitter
can significantly influence the optical switching charac-
teristics of the LED. The optical rise/fall times and propa-
gation delays can be improved by using the appropriate
circuit techniques. The LED drive circuit shown in Figure
11 uses frequency compensation to reduce the typical
rise/fall times of the LED and a small pre-bias voltage to
minimize propagation delay differences that cause pulse-
width distortion. The circuit will typically produce rise/fall
times of 3 ns, and a total jitter including pulse-width dis-
18
R
R
R
R
C(pF)
Example
V
Y
X1
EQ2
X2
F
All HFBR-14XXZ LED transmitters are classified as IEC 825-1 Accessible Emission Limit (AEL) Class 1 based upon the current
proposed draft scheduled to go in to effect on January 1, 1997. AEL Class 1 LED devices are considered eye safe. Contact your
Avago Technologies sales representative for more information.
CAUTION: The small junction sizes inherent to the design of these components increase the components’ susceptibility to
damage from electrostatic discharge (ESD). It is advised that normal static precautions be taken in handling and assembly of
these components to prevent damage and/or degradation which may be induced by ESD.
can
(V
=
=
(
CC
R
1
Ω
2
=
X3
be
(
)
-
2000
R
3.97
=
for
V
R
=
obtained
X1
R
F
Y
R
)
(
X1
X4
I
)
Ω
+
ps
F
-
=
3.97(V
)
ON
I
F
1
3(R
ON
=
from
100mA
(A)
EQ2
CC
)
-
Figure
V
F
:
-
1.6V)
( 9
=
1.84
V)
.
tortion of less than 1 ns. This circuit is recommended for
applications requiring low edge jitter or high-speed data
transmission at signal rates of up to 155 MBd. Component
values for this circuit can be calculated for different LED
drive currents using the equations shown below. For
additional details about LED drive circuits, the reader is
encouraged to read Avago Technologies Application Bul-
letin 78 and Application Note 1038.
R
R
R
R
R
C
Y
Y
X1
EQ2
X2
=
=
=
=
=
2000
11.8
=
(5
3.16
R
1
2
11.8
X3
(
-
0.100
93.5
3.97
1.84)
Ω
ps
=
+
1 -
R
6.19
=
X4
)
=
169
+
=
=
10.8
3.97(5
=
11.8
3
0.100
pF
93.5
(10.8)
Ω
Ω
-
Ω
1.84
=
32.4
-
1.6)
Ω

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