The State [User Base] Format Specification; Figure 4-12. State Listing With Relocation And Absolute Value Lists; Figure 4-13 . State [User Base] Format Specification Menu - HP 1630A Operating And Programming Manual

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Model 1630A/D/G
State Measurements
State Listing________________________________________________-
Label>
RDDR
RDDR1
DATA
STAT
Time
Base >
®
®®®
Figure 4-12. State Listing With Relocation and Absolute Value Lists
The State [User Base] Format Specification
The State [User Base] Format Specification is used to assign user defined names to conditions on control and
status lines . The user base names may then be displayed on the state listing in place of the numeric values to
make the data on the display easier to interpret.
Only labels with four probe bits or less may be assigned user base names. The maximum amount of user base
conditions for each label is sixteen . All labels that have been assigned in the State [Assignment] Format
Specification may have user base names assigned providing four or less bits are assigned to each label . The
user base names may be any of 1 to 5 alphanumeric characters .
State Format Specification____________________________________.
------------------------------------
Value STf1T----------------
0000
0001
0010
0011
0100
0101
0110
0111
1
000
1001
1010
1011
1100
1101
1110
1111
State Labels --------------------
Figure 4-13 . State [User Base] Format Specification Menu
1 . Press FORMAT and select [User Base] with NEXT[] or PREY[] key. STAT is the label from the
assignment specification with four or fewer probe bits assigned to it and is automatically displayed in
the State [User Base] Format Specification menu, shown in figure 4-13 . Since there are four bits
assigned to the label, STAT, there are sixteen possible conditions that may exist in the STAT label .
When the 8085 is executing instructions, there are six basic types of operations that are performed . The
six operations, the STAT label binary conditions, and the user base names to be assigned are listed in
table 4-2 .
4-1 3
+0000+
TIME
+000D
0436
36
3
0 .0
s
+0001*
TIME
+000E
0437
37
3
2.000 ps
+0002*
TIME
+000F
0438
38
2
2.000
Ps
+0003*
TIME
+0010
0439
39
2
1 .460 ps
+0004*
TIME
+000D
0436
36
3
1 .520
PS
+0005*
TIME
+000E
0437
37
3
2.000
Ps
+0006*
TIME
+000F
0438
38
2
2.000
Ps
®*
TIME
+0010
0439
39
2
1 .460 ps
+0008*
TIME
+000D
0436
36
3
1.520
Ps
+0009*
TIME
+000E
0437
37
3
2.000
Ps
+0010*
TIME
+000F
0438
38
2.000 ps
+0011*
TIME
+0010
0439
39
2
1 .480 ~,s
+0012*
TIME
+000D
0436
36
3
1 .520 ps
+0013*
TIME
+000E
0437
37
3
2 .000 PE
+0014*
TIME
+000F
0438
38
2
2 .000
k's
+0015*
TIME
+0010
0439
39
2
1 .480 Ps

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