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Tektronix 2205 Operator's Manual

Tektronix 2205
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Applications
EXAMPLE.
In
Figure
3-2,
the
zero-vott
reference
is
as
shown
at
the
center
vertical
graticule
line,
a
10X
attenuation
probe
is
be¬
ing
used,
and
VOLTS/DIV
is
set
to
2
V
(10X
PROBE).
Two
un¬
known
voltage
levels,
A
and
8,
are
marked
on
the
waveform.
A
is
1.5
divisions
above
the
zero-volt
reference
level,
and
B
is
three
divisions
below
the
zero-volt
reference
level.
What
are
the
respective
voltages
of
levels
A
and
B?
Substituting
the
given
values:
Instantaneous
Voltage
A
=
1.5
div
x
(+1)
x
2
V/div
=
3.0
V.
Instantaneous
Voltage
B
=
3.0
div
x
(-1)
x
2
V/div
=
-6.0
V.
Algebraic
Addition
With
the
three
VERTICAL
MODE
selectors
set
to
BOTH-NORM-
ADD,
the
waveform
displayed
is
the
algebraic
sum
of
the
signals
applied
to
the
Channel
1
and
Channel
2
inputs
(CHI
+
CH2).
If
the
middle
MODE
selector
is
then
set
to
CH2
INVERT,
the
waveform
displayed
is
the
difference
between
the
signals
ap¬
plied
to
the
Channel
1
and
Channel
2
inputs
(CH1
-
CH2),
When
both
VOLTS/DIV
controls
are
set
to
the
same
deflection
factor,
the
deflection
factor
of
the
ADD
trace
is
equal
to
the
deflection
factor
indicated
by
either
VOLTS/DIV
control.
The
following
general
precautions
should
be
observed
when
us¬
ing
ADD
VERTICAL
MODE.
1.
Do
not
exceed
the
input
voltage
rating
of
the
oscilloscope.
2.
Do
not
apply
signals
whose
peaks
exceed
the
equivalent
of
about
±8
times
the
VOLTS/DIV
settings,
because
large
volt¬
ages
may
distort
the
display.
For
example,
with
a
VOLTS/
DIV
setting
of
0.5
V,
the
voltage
applied
to
that
channel
should
not
exceed
approximately
4
V.
3.
Position
the
Channel
1
and
Channel
2
waveforms
near
cen¬
ter
screen,
when
viewed
separately.
This
ensures
the
great¬
est
dynamic
range
for
ADD
mode
operation.
4.
To
attain
similar
responses
from
both
channels,
set
the
Channel
1
and
Channel
2
input
coupling
selectors
to
the
same
position.
2205
Operator’s
3-5

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Tektronix 2205 Specifications

General IconGeneral
BrandTektronix
Model2205
CategoryTest Equipment
LanguageEnglish

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