E7802 SEMTECH [Semtech Corporation], E7802 Datasheet - Page 10

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E7802

Manufacturer Part Number
E7802
Description
Low Cost, Dual-Channel, 15V Pin Electronics Driver/Window Comparator
Manufacturer
SEMTECH [Semtech Corporation]
Datasheet

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
E7802A
Manufacturer:
SEMTECH/美国升特
Quantity:
20 000
Optimizing Driver Waveforms
Overshoot/Undershoot/Preshoot
E7802 Driver overshoot, undershoot and preshoot are
functions of the DOUT edge rate. Slower DOUT edge rates
are associated with smaller overshoot, undershoot and
preshoot amplitudes. The DOUT edge rate is influenced
by the amount of capacitance that is present on the driver
output with larger capacitance resulting in slower edge
rates and less overshoot as shown below.
Overshoot, undershoot and preshoot are also influenced
by power supply levels. In general, lower VCC levels are
associated with less overshoot and better small-swing
performance.
Output Impedance Matching
How well the driver output impedance matches a
transmission line connected to it has a direct effect on
waveform characteristics. Driver output impedance can
be separated into two components:
1)
TEST AND MEASUREMENT PRODUCTS
Application Information (continued)
©
-0.5
3.0
2.5
2.0
1.5
1.0
0.5
0.0
Real Component:
portion of the driver output impedance and is
matched to a transmission line by using an external
“back-match” resistor. Using empirical methods in
our lab, we have determined that a 45.3Ω back-
match resistor offers the best real impedance
2008 Semtech Corp. , Rev. 5, 3/7/08
0
10
Driver Output Waveform vs. Capacitive Load
C = 0pf
C = 33pF
20
Accounts for the resistive (DC)
30
Time [nS]
40
50
60
0
70
2)
External component connections are illustrated in the
E7802 Hookup Diagram.
-0.5
3.5
3.0
2.5
2.0
1.5
1.0
0.5
0.0
matching for a 50Ω transmission line. See
Applications Note PE-A2, “Optimizing the Output
Configuration of Semtech Bipolar Pin Drivers” for
more details on selecting the proper “back-match”
resistor.
Reactive Component:
or “AC” component of the output impedance and
is matched to a transmission line by using external
inductors and/or capacitors. Using empirical
methods in our lab, we have determined that an
8nH series inductor offers the best impedance
matching for a 50Ω transmission line (see below).
Driver Output Impedance Optimization (Reactive Component)
Accounts for the reactive
Time [ns]
L = 18nH
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E7802

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