
System
V
erication
Cycle
and
Kit
Recertication
The
recommended
system
verication
cycle
is
every
six
months
.
Hewlett-
P
ackard
also
suggests
the
calibration
kit
be
recertied
annually
.
F
or
more
information
about
the
kit
recertication,
refer
to
the
HP
85032B
50
Type-N
Calibration
Kit
Operation
and
Service
Manual
or
HP
85036B
75
Type-N
Calibration
Kit
Operation
and
Service
Manual.
Measurement
Uncertainty
Associated
with
any
analyzer
are
measurement
errors
that
add
uncertainty
to
the
measured
results
.
This
uncertainty
limits
how
accurately
a
device
under
test
(DUT)
can
be
measured.
The
measurement
uncertainty
is
dened
to
be
the
sum
of
the
residual
systematic
(repeatable)
and
random
(non-repeatable)
errors
in
the
measurement
system.
The
systematic
errors
are
eective
directivity
,
eective
source
match,
load
match,
reection
and
transmission
tracking,
and
isolation
(crosstalk).
Random
errors
include
errors
due
to
noise
,
drift,
connector
repeatability
,
and
test
cable
stability
.
The
typical
measurement
uncertainties
for
type-N
connectors
using
a
1-port
error
correction
utilize
an
RSS
(Root
Sum
of
Squares)
model
for
the
contributions
of
random
errors
such
as
noise
,
pin
depth,
pin
diameter
variation,
load
return
loss
,
and
connector
repeatability
.
Measurement
Uncertainty
Window
The
P
ASS/F
AIL
result
of
the
limit
line
test
generally
indicates
the
status
of
the
verication
test.
The
validity
of
the
limit
lines
,
drawn
on
the
analyzer
display
during
the
verication
tests
,
are
determined
by
the
measurement
uncertainty
.
The
measurement
uncertainty
must
be
taken
into
account
when
analyzing
the
test
results
.
If
the
analyzer
detects
the
test
data
outside
of
the
limits
,
a
FAIL
will
be
displayed
on
the
analyzer
.
This
FAIL
status
may
not
represent
a
true
failure
if
at
the
worst
point,
the
test
data
is
within
the
measurement
uncertainty
window
(not
displayed
on
the
analyzer).
Refer
to
Figure
2-1
for
interpretations
of
test
data.
2-4
System
V
erication
and
P
erformance
T
ests
Содержание 8752C
Страница 22: ...Before Applying Power 15 6 Servicing 15 6 Index Contents 16 ...
Страница 38: ......
Страница 43: ...Figure 2 1 Measurement Uncertainty Window System Veri cation and Performance Tests 2 5 ...
Страница 80: ...Figure 2 15 Magnitude Dynamic Accuracy Test Setup 2 42 System Veri cation and Performance Tests ...
Страница 116: ......
Страница 122: ...Figure 3 1 Location of Major Assemblies 3 6 Adjustments and Correction Constants ...
Страница 176: ......
Страница 192: ...4 16 Start Troubleshooting Here ...
Страница 193: ......
Страница 194: ...Figure 4 7 HP 8752C Overall Block Diagram 2 of 4 Option 003 and 004 Start Troubleshooting Here 4 19 ...
Страница 195: ...Figure 4 7 HP 8752C Overall Block Diagram 3 of 4 Option 006 4 20 Start Troubleshooting Here ...
Страница 196: ...Figure 4 7 HP 8752C Overall Block Diagram 4 of 4 Option 004 and 006 Start Troubleshooting Here 4 21 ...
Страница 197: ......
Страница 221: ...5 24 Power Supply Troubleshooting ...
Страница 222: ......
Страница 225: ...Digital Control Group Block Diagram Figure 6 1 Digital Control Group Block Diagram Digital Control Troubleshooting 6 3 ...
Страница 267: ...Figure 7 18 25 MHz HI OUT Waveform from A14J1 Figure 7 19 60 MHz HI OUT Waveform from A14J1 Source Troubleshooting 7 27 ...
Страница 271: ...Figure 7 21 A14 Generated Digital Control Signals Source Troubleshooting 7 31 ...
Страница 301: ...Figure 9 2 Typical Smith Chart Traces of Good Short a and Open b Accessories Troubleshooting 9 7 ...
Страница 302: ......
Страница 366: ......
Страница 378: ...Figure 11 4 Typical ED Re ection Test Port 11 12 Error Terms ...
Страница 380: ...Figure 11 5 Typical ES Re ection Test Port 11 14 Error Terms ...
Страница 382: ...Figure 11 6 Typical ER Re ection Test Port 11 16 Error Terms ...
Страница 384: ...Figure 11 7 Typical EX with 10 Hz Bandwidth Figure 11 8 Typical EX with 3 kHz Bandwidth 11 18 Error Terms ...
Страница 386: ...Figure 11 9 Typical ET 11 20 Error Terms ...
Страница 407: ...Figure 12 5 High Band Operation of the Source Theory of Operation 12 21 ...
Страница 410: ...Figure 12 6 Receiver Functional Group standard and Option 003 12 24 Theory of Operation ...
Страница 411: ...Figure 12 7 Receiver Functional Group Option 003 and 004 Theory of Operation 12 25 ...
Страница 412: ...Figure 12 8 Receiver Functional Group Option 006 12 26 Theory of Operation ...
Страница 413: ...Figure 12 9 Receiver Functional Group Option 004 and 006 Theory of Operation 12 27 ...
Страница 416: ......
Страница 419: ...Figure 13 1 Module Exchange Procedure Replaceable Parts 13 3 ...
Страница 423: ...Major Assemblies Replaceable Parts 13 7 ...
Страница 425: ...Front Panel Assemblies Replaceable Parts 13 9 ...
Страница 427: ...Rear Panel Assemblies Replaceable Parts 13 11 ...
Страница 429: ...Cables Top View Replaceable Parts 13 13 ...
Страница 431: ...Front Panel Cables and Attaching Hardware Replaceable Parts 13 15 ...
Страница 433: ...Rear Panel Cables and Attaching Hardware Replaceable Parts 13 17 ...
Страница 435: ...Source and Sampler Parts Standard and Option 003 Replaceable Parts 13 19 ...
Страница 437: ...Source and Sampler Parts Option 004 006 Replaceable Parts 13 21 ...
Страница 439: ...Source and Sampler Parts Options 004 and 003 004 Replaceable Parts 13 23 ...
Страница 441: ...Source and Sampler Parts Option 006 Replaceable Parts 13 25 ...
Страница 443: ...Display Bezel Assembly Replaceable Parts 13 27 ...
Страница 445: ...Chassis Parts Replaceable Parts 13 29 ...
Страница 447: ...Top View of Attaching Hardware and Post Regulator Fuses Replaceable Parts 13 31 ...
Страница 449: ...Bottom View of Attaching Hardware Replaceable Parts 13 33 ...
Страница 488: ......