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HP 1630D

HP 1630D
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Direct
connection
to
microprocessor
state
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Interface
Modules
Link
Eight-bit
Or
16-bit
Microprocessor
Systems
And
Logic
Analyzer
Hewlett-Packard's
preprocessor
interface
modules
provide
quick
and
convenient
interface
between
eight-bit
or
16-bit
microprocessor systems
and
HP
1630A/D/G
and
HP
1631A/D
logic
analyzers
.
Interface
modules
are
installed
in
an
HP
10269B
general-purpose
probe
interface
.
A
low-profile
dual-in-line
or
leadless
chip
carrier
probe
provides
simple
hook-up
to
specific
microprocessors
.
The
target
microprocessor
is
then
inserted
into
the
probe's
socket
.
With
this
interconnection,
the user
can
immediately
access the
measurement
power
of
an
HP
1630A/D/G
or
HP
1631A/D
logic
analyzer
for efficient
and
effective
debugging,
troubleshooting,
and
code
optimization
.
Hewlett-Packard
Microprocessor
Preprocessors
Provide
:
"
Fast,
convenient,
and
reliable
interconnection
"
Address/data
signal
demultiplexing
when
necessary
"
Inverse
assembly
of
microprocessor
instruction
sets
"
Dequeueing
when
necessary
Inverse
Assembly
Inverse
assembly
software
translates
the
microprocessor
instruction
set
to
mnemonic
form
for
display,
and
configures
the
analyzer
format
for
each
microprocessor
.
The
inverse
assembler
is
loaded
from
a
3-1/2
inch
disc
into
the
logic
analyzer
.
The
3-1/2
inch
disc
is
compatible
with
the
HP
9121
S/D
and
HP
9122S/D
disc
drives
.
Custom
Design
Interfaces
With
User-definable
Interface
Module
For custom
interfaces,
the
HP
10320A
user-definable
interface
module
provides
a
wire-wrapped
printed-circuit
board,
wire-wrap
pins,
cable
connectors,
and
a
design
manual
.
For
convenience,
the
HP
10321A
can
be
ordered
with
the
HP
10320A
.
The
HP
10321A
includes additional
chip
sockets,
wire-wrapping
pins,
and
an
assortment
of passive
components
.
When
using
the
HP
10320A
and
HP
10321A,
state
(synchronous)
clocking
up
to
25
MHz
is
available
.
Maximum
power from
the
HP
1630A/D/G
or
HP
1631A/D
is
volts
at
1
amp
.
The
design
manual
provided with
the
HP
10320A
discusses
the
target
system
and
its
relationship
to
the
interface
module
.
+5

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