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Maintenance— 2440 Service
Table 6-6 (cont)
W AVEFORM
ix
P
Waveform mP Kernel Mode:
This mode is used when a fault has been found on either the System mP data bus or the System
ixP
address bus while in the BUS CONNECT mode or when SELF TEST 5100 (RUN TASK) fails in the
Extended Diagnostics menu.
1.
Turn off the power and place the processor system in the BUS ISOLATE mode (see the preceding
steps).
2.
Remove jumper J128 (Waveform mP Kernel Mode) and jumper 185 (Waveform
n P
Reset Release).
Both are located on the Processor board near Waveform
ixP
U470.
3.
With the power on in the Kernel mode, the Instruction Data Bus lines are pulled up or pulled down
in a command that causes the U470 to address every instruction in its memory sequentially and
continually. Instruction address bus lines and data address bus lines can be checked for activity.
All the Instruction address bus lines and the data address bus lines with the exception of the top
five (WAA through WAE) increment with the periods shown in the following tables. WAA through
WAE will be fixed random values because page switching of the memory is not done and is not
set to any known state in the Kernel test.
W aveform mP Instruction Bus Address Lines
W aveform
nP
Data Bus Address Lines
Signal
Location
Period
IA9
TP580
409.6
ns
IA8
U490-22
204.8
ixs
IA7
U490-23
102.4 Ms
IA6
U490-1
51.2 Ms
IA5
U490-2
25.6
ms
IA4
U490-3
12.8
ms
IA3
U490-4
6.4
ms
IA2
U490-5
3.2
ms
IA1
U490-6
1.6
ms
IA0
U490-7
800 ns
CLK2D
U490-8
200 ns
Signal
Location
Period
WAB
U562-9
1.6384 ms
WAA
TP562
819.2
ms
WA9
U562-5
409.6
ms
WA8
U562-2
204.8
ms
WA7
U364-19
102.4
ms
WA6
U364-16
51.2
ms
WA5
U364-15
25.6
m
S
WA4
U364-12
12.8
ms
WA3
U364-9
6.4
ms
WA2
U364-6
3.2
m
s
WA1
U364-5
1.6 M s
WA0
U364-2
800 ns
4.
The Instruction Memory Data lines into the Waveform
m
P can also be checked to determine if any
of the lines are shorted or open. Check against the schematic to see which lines (IDO through IDF)
are normally pulled up or normally pulled down for the Kernel test.
6-103
Summary of Contents for 2440
Page 4: ......
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Page 91: ...Theory of Operation 2440 Service 3 49 Figure 3 5 Simplified CCD architecture ...
Page 120: ...Theory of Operation 2440 Service Figure 3 10 DC Restorer 3 78 ...
Page 130: ...Theory of Operation 2440 Service 3 88 ...
Page 136: ...Theory of Operation 2440 Service Figure 3 15 PWM Regulator and Inverter 3 94 ...
Page 138: ...Theory of Operation 2440 Service Figure 3 16 PWM switching waveforms 3 96 ...
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Page 423: ...2440 Service Figure 9 4b 2440 Block diagram part 2 6330 27 BLOCK DIAGRAM PART 2 ...
Page 427: ......
Page 428: ...2440 Service WAVEFORMS FOR DIAGRAM 1 6 2 8 5 3 2 ...
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Page 432: ...2440 Service WAVEFORMS FOR DIAGRAM 2 BUS ISOLATED 6 6 0 3 4 9 ...
Page 433: ...WAVEFORMS FOR DIAGRAM 2 ...
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Page 450: ...2440 Service WAVEFORMS FOR DIAGRAM 8 6603 27 ...
Page 455: ...W A V EFO R M S FOR D IAG RAM 11 WAVEFORMS FOR DIAGRAM 11 6603 29 ...
Page 458: ...WAVEFORMS FOR DIAGRAM 12 ...
Page 463: ...WAVEFORMS FOR DIAGRAM 14 ...
Page 471: ... C N i u i t e x r 4 j u J l i 1 i 6 28 5 44 WAVEFORMS FOR DIAGRAM 18 ...
Page 476: ...WAVEFORMS FOR DIAGRAM 20 ...
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Page 502: ...2440 Service FIG 1 C A B IN E T ...
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Page 510: ...2440 Service SISSVHO Z Old ...
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Page 512: ...A12 2440 Service F IG 3 C IR C U IT BOARDS ...
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Page 517: ...10 16 R E V J U L 1993 Replaceable Mechanical Parts ...
Page 518: ...2440 Service ...
Page 519: ...FIG 4 L V H V PWR SUPPLY ...
Page 520: ...FIG 5 ACCESSORIES 2440 Service ...
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