HFBR-0410 Avago Technologies US Inc., HFBR-0410 Datasheet - Page 17

KIT EVAL FIBER OPTIC 5MBD

HFBR-0410

Manufacturer Part Number
HFBR-0410
Description
KIT EVAL FIBER OPTIC 5MBD
Manufacturer
Avago Technologies US Inc.
Datasheets

Specifications of HFBR-0410

Main Purpose
Interface, Fiber Optics
Embedded
No
Utilized Ic / Part
HFBR-1412, HFBR-2412
Primary Attributes
DC ~ 5MBd TTL
Secondary Attributes
ST Connectors
Silicon Core Number
HFBR-1412, HFBR-2412
Kit Contents
TX/RX Mods, Cable, Pol Kit, SW, Pwr. Sup
Silicon Family Name
HFBR-0400
Features
Dc To 5 MBd TTL Compatible Fiber Optic Component
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Other names
516-2138
HFBR-0410
17
Recommended Drive Circuits
The circuit used to supply current
to the LED transmitter can
significantly influence the optical
switching characteristics of the
LED. The optical rise/fall times
and propagation delays can be
improved by using the appro-
priate circuit techniques. The
LED drive circuit shown in
Figure 11 uses frequency com-
R
R
R
R
C(pF) = ––––––––
Example for I
obtained from Figure 9 (= 1.84 V).
y
X1
EQ2
X2
= –––––––––––––––––––––––––––––––
= –
= R
( ) = R
(V
2
1
CC
X3
( )
2000(ps)
R
––––
- V
3.97
= R
X1
R
X1
F
y
( )
) + 3.97 (V
F ON
X4
- 1
= 3(R
I
F ON
= 100 mA: V
(A)
EQ2
CC
)
- V
pensation 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-
tortion of less than 1 ns. This
circuit is recommended for appli-
cations requiring low edge jitter
F
F
- 1.6 V)
can be
R
R
R
R
R
C = ––––––– = 169 pF
y
y
X1
EQ2
X2
= –––––––––––––––––––––––––––––
= ––––––––––– = 93.5
= –
= R
2000 ps
11.8
3.16 + 6.19
(5 - 1.84) + 3.97 (5 - 1.84 - 1.6)
= 11.8 - 1 = 10.8
1
2
X3
( )
0.100
93.5
––––
3.97
= R
X4
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
Application Bulletin 78 and
Application Note 1038.
= 3(10.8) = 32.4
= 11.8
0.100

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