Fluke 8506A Instruction Manual page 201

Thermal true rms multimeter
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600-1.
RACK
EAR
MOUNTING ASSEMBLY
600-2.
Figure
600-1
illustrates
installation
of the
Rack
Ear
Mounting
Assembly. Use
the
following
procedure:
1.
Remove
the
nameplate
decals
from
the
handles.
2.
Remove
the
screws
from
the handles.
3.
Attach
the rack ears
with #8-32 x 5/8
PH
screws (included with
the
kit).
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bottom
trim
items.
Remove
the
corresponding
screws
from
the multimeter's
top
and bottom
covers.
5.
Attach
the
top
and bottom
trim items
with
#6-32 x 3/8
PHP
screws
and
lock
washers
(included with
the
kit).
600-3.
'HIGH
VOLTAGE PROBE
(80K-6)
600-4,
The 80K-6
extends
the
voltage
measuring
capability of
an ac/dc
voltmeter
up
to
6000
volts.
A
1000:1
voltage divider provides
a
high input
impedance. High accuracy
is
provided
when
the
divider
is
used with
a
voltmeter
having
a
10
Mohm
input
impedance.
A
molded
plastic
body
houses
the
divider
and
protects the user
from
the voltage
being
measured.
600-5.
HIGH
VOLTAGE PROBE
(80K-40)
600-6.
The 80K-40
is
a high voltage accessory
probe
designed
to
extend
the
voltage
measuring
capability of
an ac/dc voltmeter up
to
40,000
voits.
I
he
probe
is
a precision
1000:1
voltage divider
formed
by
two matched
metal-film
resistors.
The
unusually
high input
impedance
offered
by
these
resistors
minimizes
circuit
loading
and
optimizes
measurement
accuracy.
A
special
plastic
body
houses
the
divider
and
provides
the user
with
isolation
from
the voltage
being measured.
800-7.
HIGH
FREQUENCY PROBE
(83RF)
600-8.
The
83
RF
converts
a
dc voltmeter
into a
high frequency, 100
kHz
to
100
MHz
ac voltmeter.
Conversion from
ac
to
dc
is
on
a
one-to-one
basis
over
a
range of
0.25
to
30V
rms.
The
probe's
dc
output
is
calibrated
to
be equivalent
to
the
rms
value
of
a
sinewave
input.
600-9.
HIGH
FREQUENCY PROBE
(85RF)
600-10.
The
85
RF
is
designed
to
convert
a
dc
voltmeter
into a
high frequency, 100
kHz
to
500
MHz.
ac voltmeter.
Ac
to
dc conversion
ratio
is
one-
to-one over
a
range of
0.25
to
30V
rms.
The
probe's
dc output
is
calibrated
to
be equivalent
to
the
rms
value of
a
sinewave
output.
600
-
1
/
600-2

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