60290000S_FA705A_Mass_Storage_Controller_CE_Manual_Aug1976 60290000S FA705A Mass Storage Controller CE Manual Aug1976
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@:~
CONT"OL DATA
CO~OR{\TION
DAT~ FA705A
MASS STORAGE CONTROLLER
CONTROL
GENERAL DESCRIPTION
OPERATION
INSTALLATION AND
CHECKOUT
THEORY OF OPERATION
DIAGRAMS
MAINTENANCE
MAINTENANCE AIDS
PARTS DATA
WIRE LISTS
EQUATION SUMMARY
CUSTOMER ENGINEERING MANUAL
REVISION RECORD
REVISION
01
DESCRIPTION
Preliminary edition.
(2-19-70)
02
Pages 5-3 and 5-47 revised.
(3-16-70)
A
Manual released; equipment level FA705-A03.
(9-15-70)
B
Manual revised; includes Engineering Change Order 26338.
Pages 8- 3 through 8- 3 0 revised.
(5-5-71)
C
(5-5-71)
Manual revised; includes Field Change Order 25999, equipment level FA705-A01 through A05.
Pages 2-2,2-5, 5-i, 5-ii, 5-iv, 5-v, 5-6, 5-7, 5-16,5-17, 5-18,'q-19, 5,-24, 5-29,
5-44,5-45,5-47,7-1,7-2,7-3,7-5,9-7,9-8,9-9,9-11, 9-16; 9-46,
9~47,
5-3~,
5-40,5-41,5-43,
9-56, 9-59, 9-60, 9-69, 9-70,
9-71,9-72,9-75,9-76,9-77,9-80,9-82,9-83,9-87, 9-88, 9-96, 9';'10.0,9-107, 9-108, 9-109, 9-111, 9-112,
9-113,10-5,10-6,10-7,10-8,10-21,10-24,10-29, 10-30, 10-34, 10-48,.10-51, 10-53, 10-59, 10-60,
10-61,10-64,10-67,10-70,10-73,10-74,10-75, 10-81,10-83,10-84,10-88,10-106,10-117,10-130,
10-133,10-136,10-137, and 10-141 revised.
D
Manual revised; includes Engineering Change Order 26941.
Pa.ge 8-3 revised.
(5-5-71)
E
(5-5-71)
F
(5-5-71)
G
(1-20-72)
Manual revised; includes Field Change Order 26676, equipment level FA 705-A01 through A06.
Pages 5-iii, 5-8, 5-9, 9-63, 9-64, 9-76, 9-113, 10-36, 10-37, 10-38, 10-39, and 10-61 revised.
Manual revised; includes Field Change Order 26574, equipment level FA 705-A01 through A07.
Page 5-49 revised.
Manual revised, includes Field Change Order 27484.
and 10-133 revised.
H
Pages 5-2,5-3, 5-4, 5-5, 5-6,5-7,5-24, 5-25,
9-75,9-79,9-102,9-103,9-106,9-112,10-59,10-67, 10-119, 10-122, 10-124, 19-125, 10-128, 10-129,
Correlation Sheet added.
Manual revised; includes Engineering Change Order 27116.
Page 8-8 revised.
(1-20-72)
J
Manual revised; includes Field Change Order 28097.
Page 5 -4 9 is revised.
Manual revised; includes Field Change Order 31495.
Pages 5-44, 5-45. 9-108, 10-69. and 10-132
(11-3-72)
K
(11-3-72)
L
are revised.
Manual revised; includes Engineering Change Order 32024.
Page 5-49 is revised.
(11-3-72)
M
(11-3-72)
N
(11-3-72)
p
Manual revised; includes Field Change Order 3230l.
Pages 5-6, 5-7, 9-78, 9-108, 9-111, and
10-143 are revised.
Manual revised; includes Field Change Order 32524.
Pages 5-26, 5-27, 5-28, 5-29, 9-72, 9-86.
9-113, 10-52. 10-53, 10-68, 10-80, and 10-83 are revised.
Manual revised; includes Engineering Change Order 32868, publications change only.
Publication No.
60290000
REVISION LETTERS I, 0, Q AND X ARE NOT USED
Address comments concerning this
manual to:
© 1970, 1971, 1972, 1974,1976
by Control Data Corporation
Printed in the United States of America
Control Data Corporation
Publications and Graphics Division
4201 North Lexington Avenue
St. Paul, Minnesota 55112
or use Comment Sheet in the back of
this manual.
New features, as well as changes, deletions, and additions to information in this manual are indicated by bars in the
margins or by a dot near the page number if the entire page is affected. A bar by the page number indicates pagination rather than content has changed.
ii
REVISION RECORD (CONT/D)
DESCRIPTION
REVISION
(11-3-72)
R
01-14-74)
Page vi and 3 -1 is revised.
Pages 5-:--51, 5-53, 7-18 through 7-27 are added.
Manual revised; includes Field Change Order 35602.
10-123, 10-129, 10-144 and 10-145 are revised.
Pages 5-viii, 5-7, 9-103, 9-106, 9-111,
Miscellaneous changes are made to pages 5-51
and 5-53.
S
(8-20-76)
Manual revised; includes Engineering Change Order 37388.
5-25
5-30
5-31
5-33
and 7-27 are revised.
5-35
5-41
5-43
7-18
7-19
Pages viii
7-20
7-21
5-3
7-22
5-15
7-23
5-19
7-24
5-21
7-25
5-23
7-26
Page 3 -6 is added.
Publication No.
60290000
ii-a/ii-b
MANUAL TO EQUIPMENT LEVEL CORRELATION SHEET
EQUIPMENTS
SHEET_1_O,_1
MANUAL FCO OR ECO
REV
FA705-A
G
FC027484
A09
H
EC027116
A09
J
FC028097
AIO
K
FC03l495
All
L
EC032024
All
M
FC032301
A12
N
p
FC032524
A13
EC032868
A13
R
FC035602
A14
S
EC037388
A14
60290000 S
,
iii/ iv
PREFACE
This manual is intended to be used by customer engineering in maintaining the CONTROL
DATA ® FA 705 Mass Storage Controller and to serve as an aid in understanding the operation
of the equipment.
It is assumed that the reader is familiar with the Control Data 3000 Series Computer Input/
Output Specifications Manual and the Control Data 3553 and Mass Storage Controller Reference
Manual.
The controller operates the following multiple disk drives (MDD) and disk files:
Equipment No.
60290000
Product No.
BM102 MDD (dual channel, two disk units)
841 MDD
BM104 MDD (dual channel, one disk unit)
841 MDD
BM101 MDD (single channel, two disk units)
841 MDD
BM103 MDD (single channel, one disk unit)
841 MDD
BH410 Disk File (dual channel, two disk units)
821- 2 Disk File
BH408 Disk File (dual channel, one disk unit)
821-1 Disk File
S
v/vi
I
CONTENTS
1.
GENERAL DESCRIPTION
Functional Characteristics
1-1
Physical Characteristics
1-1
1-3
Cabinet Dimensions and Data
Power Requirements
2.
1-3
Physical Dimensions
3-1
Power Requirements
3-1
Power Connections
3-1
Cabling and Connectors
3-1
Cooling Requirements
3-1
Environmental Considerations
3-1
OPERATION
4.
Switches and Indicators
Signal Definitions
4-1
Control Panel (Key Switch)
2-1
Control A and Control B
2-1
Data Channel Interface
4-1
Track
2-1
Storage Unit Interface
4-1
Cylinder
2-1
File
2-1
Repeat
2-3
Symbol Index
5-i
Seek Address
2-3
Key to Logic Symbols
5-ix
Master Clear
2-3
Block Diagram
5-1
Device Select
2-3
Channel A Interface
5-3
Register Select
2- 3
Channel B Interface
5-5
Connect Control
5-7
2-4
Function Translation, and MC
5-9
5-11
Register Display Indicator Switches 2- 3
Defective Track
5.
DIAGRAMS
Data
2-4
Data Bus
Header
2-4
Signal Interface "OR" and Interrupt
5-13
Write Lockout
2-4
Main Timing
5-15
Repeat Seek
2-5
Address Register
5-17
Repeat Seek Operate
2-5
Seek and Address Increment Chains
5-19
2-5
Sector Verify and Time Out
5-21
Manual Operation
Power
2-6
Write Sequence and Compare
5-23
Loading and Unloading Procedures
2-7
Read and Manual Sequences
5-25
Ready State
2-7
Busy, Positioner Ready, Address
End of Operation, Address Error
5-27
End of Operation/End of Record
5-29
Buffer Register and Transmit
Register
5-31
Shift Re gister
5-33
Cyclic Encoder
5-35
Procedures for Writing Address Header 2- 8
Procedures for Writing Data
3.
THEORY OF OPERATION
2-1
2-9
INSTALLATION AND CHECKOUT
Crating and Uncrating
60290000 S
3-1
vii
I
Counter 1
5-37
Counter 2
5-39
Counters 1 and 2, Control and
Translations
5-41
Select Compare, Seek Interrupt
5-43
Address and Control Bus, and Interface
5-45
Control Panel Interface (Switches)
5-47
Power Wiring
5-49
6.
i:.
MAINTENANCE
Tools and Test Equipment Required
for Maintenance
6-1
Pulse Shaper, Converter
Type 6AFH
Power Loss Detector,
Type 6AGH
7-17
Increment Address
7-18
Load Addre ss
7-19
Write Header
7-20
Read Header
7-21
Compare
7-22
Compare Operation
7-23
Write
7-24
Seek
7-25
7-26
7-27
Maintenance Panel
6-1
Read, Read Checkword,
Checkword Verify (Part 1)
Controller Preventive Maintenance
Index
6-1
Read, Read Checkword,
Checkword Verify (Part 2)
7.
MAINTENANCE AIDS
Chassis Map
7-1
Special Cards
7-9
Discriminator, Type BDM
7-9
Line Receiver, Type BGM
7-11
Oscillator Shaper, Type BFM
7-13
8.
PARTS DATA
9.
WIRE LISTS
10.
- 7 -15
EQUATION SUMMARY
FIGURES
1-1
Subsystem Configurations
1-2
1-2
Chassis Layout, Rear View
1-4
2-1
Maintenance Panel and Controls
2-1
3 -1
Power Connections
3-2
3-2
Connector Panel
3-3
3-3
3-4
3-5
Typical System Signal
Cabling - MDD
3-4
Typical System Signal
Cabling - Disk File
3-5
Typical Subsystem Signal
Cabling - MDD and Disk File
3-6
TABLE
1-1
viii
Input Power Requirements
1-3
60290000
S
SECTION 1 .
GENERAL DESCRIPTION
GENERAL DESCRIPTION
FUNCTIONAL CHARACTERISTICS
The CONTROL DATA FA705 Mass Storage Controller is an electrical and logical interface
between a 3000 Data Channel and the storage units.
Figure 1-1 shows two subsystem configurations.
Up to eight MDD or disk file units, in any
combination, can be connected to the controller.
Two controllers can be used as shown in
Figure 1- 1 (maximum subsystem) but only with dual channel disk units.
The main functions of the controller are:
1.
Assembly/Disassembly
a.
Assembly of the serial bit stream from disk unit into 12- bit bytes during Read
operations.
b,
Disassembly of 12- bit bytes from the data channel into a serial format during
Write operations.
2.
Addressing - The controller stores a 24- bit address, sent from the data channel,
and transmits portions of this address to a disk unit to select a cylinder, track, and
sector. During Read and Write operations the controller automatically increments
the address so that these operations progress sequentially through all sector
addresses within a disk unit.
3.
Unit Selection - The controller selects one of the eight possible disk units for an
operation,
4.
Error Detection - The controller provides parity checking for the data channel
interface.
It also contains a cyclic encoder for checking data read from the disk
units.
PH YSICAL CHARACTERISTICS
Figure 1- 2 shows the major components in the controller.
Standard 3000 logic cards are
used throughout.
60290000 A
1-1
12-BIT DATA PATH
DATA
CHANNEL
SERIAL BIT STREAM
\
~---L
~ CONTROLLE~
r
MINIMUM
DATA
CHANNEL
~
DISK
UNIT
~
~
DISK
UNIT
~
0-.
DISK
UNIT
~
~
DISK
UNIT
~
DISK
UNIT
-
DISK
UNIT
~
~
~
•
CONTROLLER
-
~
DATA
CHANNEL
~
...
~
DISK
UNIT
~
DISK
UNIT
~
STANDBY
DISK
UNIT
MAXIMUM
Figure 1-1.
1- 2
J
l___
DISK
U_N_'_T_ _
SUBSYSTEM
r--4
,,~
{
~r"
DATA
CHANNEL
.
CONTROLLER
--DATA
CHANNEL
~
....
.;
-
SUBSYSTEM
Subsystem Configurations
60290000
A
CABINET DIMENSIONS AND DATA
Height
76 inches
Width
50 inches
Depth
31 inches
Weight
950 lbs.
Heat Dissipation
6100 BTU /hr
.
Operatlng Temperature
L
,7
l'
vi
vi. (~ ,;
'
I
1\
50°F - 90°F
Shipping and Storage Temperature
-30°F - 125°F
Humidity During Operation
20% - 80%
Humidity While Not Operating
5% - 95%
~:,
~:,
PO\VER REQUIREMENTS
The 60-Hz power should be provided by a 2-wire system (hot and neutral) and a separate
ground line.
The 400- Hz power should be provided by a 4-wire system (three phases and
neutral) and a separate ground line.
TABLE 1-1.
Refer to Table 1- I,
INPUT POWER REQUIREMENTS
Voltage
Frequency
Current
120 single phase
60 Hz
6.7 amperes
Blowers
400 Hz
3,3 amperes
Logic Power Supply
208
40
~:'Providing
60290000
DC
Use
Termina tor Power
that there is no condensation
A
1- 3
A
ROW
MAINTENANCE
RELAY
PANEL
n
B
C
C
0
D
LOGIC
POWER
E
E
SUPPLY
(SWINGS OUT
CHASSIS
I
F
CHASSIS
F
2
G
G
ON HINGES
TO EXPOSE
CHASSIS)
r-
H
I
J
VPOWER
DISTRIBUTION
BOX
K
L
I
IJ7
IJ6
IJ5
IJ4
IJ3
IJ I
0
0
0
0
0
0
BLOWER
Figure 1- 2.
1-4
II
0000
0000
2J I 2J2 2J3 2J4
2J52J6 2J7 2J8
I
~
I
BLOWER
Chassis Layout, Rear View
60290000
A
SECTION 2
OPERATION
OPERATION
SWITCHES AND INDICA TORS
This part lists the switches and indicators on the maintenance panel (Figure 2-1) and other
port~ons
of the controller.
CONTROL PANEL (KEY SWITCH)
For normal programmed operation, this switch should be OFF.
This switch is used to
activate other switches on the maintenance panel.
CONTROL A AND CONTROL B
CONTROL A and CONTROL B are two sets of switches and indicators which provide individual control for each data channel physically connected to the controller.
Each set consists
of a nine-position rotary switch which permits varying the equipment (controller) designation
from 0-7 or STANDBY, and a CONNECTED, RESERVED, and PARITY ERROR indicator
which lights when the associated condition exists in the controller.
TRACK
This switch/ indicator selects Track mode wherein the remainder of the track designated by
the content of the Address register is operated upon, starting at the address held in the
Address register.
Operation ceases at the end of the selected track.
CYLINDER
This switch/ indicator selects Cylinder mode wherein the remainder of the cylinder designated
by the content of the Address register is operated upon, starting at the address held in the
Address register.
Operation ceases at the end of the selected cylinder.
FILE
This switch/indicator selects File mode wherein the remainder of the file designated by the
content of the Address register is operated upon, starting at the address held in the
Address register.
When using this switch, the REPEAT switch should be off since a file
will not be repeated automatically.
60290000 A
2-1
WRITE
@
DATA
WRITE
HEADER\ft)
READ
READ
WRITE
DEFECTIVE~
~
TRACK
OFF
ADDRESS
UPPER
DATA
\
LOWER
/
STAT US
~N"
REGISTER
SELECT
000
000 0
2 II
28 2 7
2 10 2 9
26
o
0
5
2
2
4
2
3
2
2
2
I
2
o
CLEAR
WRITE
WRITE
LOCKOUT
~
W
CONNECT ED
o
OFF
DISI(
PACI<
PARITY
ERROR
RESERVED
o
0
CONNECTED
o
"ESERVED
o
PARITY
ERROR
o
DISI<
O'~'LE
3
4
5
~' r:?\ '
~
DEVICE
SELECT
ON
STBY
CONTROL A
CONTROL
B
KEY SWITCH
CARD
LOCATION
1005
REPEAT SEEK
r- q 00
REPEAT SEEK OPERATE
HEAD LIMIT
S
S q0 ~
q OZ
UNUSED
Figure 2-1.
2-2
Maintenance Panel and Controls
60290000
C
REPEAT
This switch/ indicator causes the selected mode of operation (Track Cylinder or File) to be
continuously repeated.
This switch should not be used by the programmer / operator.
is meant for maintenance purposes only.
When this switch is used, the controller does not
stop for any abnormal conditions unless it is unable to continue.
switch should be off.
It
When in File mode, this
A File will not be repeated.
SEEK ADDRESS
This switch/ indicator initiates a Seek operation on the selected unit to the address indicated
by the content of the Address register.
On completion of the Seek, the selected operation
commences.
MASTER CLEAR
This switch/ indicator causes a Master Clear in the controller. If a Master Clear is performed
while a Write operation is in progress, operation 'ceases immediately.
That sector now
contains information which will generate a checkword error if a Read operation is attempted.
DEVICE SELECT
For normal programmed operation, this switch should be OFF.
This rotary switch selects
the device type (disk drive, disk file) from the maintenance panel.
REGISTER SELECT
This rotary switch provides the capability for displaying and entering information via the
Register Display Indicator Switches to or from the register selected.
REGISTER DISPLAY INDICATOR SWITCHES
Thirteen indicator-type pushbutton switches (CLEAR and bits 0-11) provide for displaying and/
or entering information to and from the register indicated by the setting of the REGISTER
SELECT switch when the Key switch is on.
The CLEAR switch clears only the selected
register.
60290000 A
2-3
DEFECTIVE TRACK
For normal programmed operations this switch should be OFF.
This toggle switch is used
to write a Defective Track bit in each sector of the Address Headers (refer to Procedures
for Writing Address Headers).
DATA
For normal programmed operations. this switch should be in the READ position.
In the
WRITE position this toggle switch provides for writing data from the panel via the Register
Display Indicator switches.
The same data byte is written in the entire storage area
specified by the mode selection (TRACK. CYLINDER and FILE).
In the Read Position this switch provides for reading data from the selected storage area.
The data read is not displayed in the Data register when operating from the panel; however.
a checkword error and other errors are displayed in the Status register.
HEADER
For normal programmed operations this switch should be in the READ position.
This
toggle switch provides for writing or reading address headers in the storage area selected
during a control panel operation according to the setting of the ending mode switches (refer
to Procedures for Writing Address Headers).
WRITE LOCKOUT
This switch. in conjunction with the Key switch. determines the degree of data protection
pr'ovided by the controller to the subsystem units as follows:
WRITE LOCKOUT
KEY
DATA
On/Off
Off
Data protected from computer
Write if WLO bit present
On
On
Data protected from computer
Write if WLO bit present
Off
On
Data not protected even if WLO
bit present
CAUTION
Data is not protected during panel operations
if HEADER switch is in Write position.
2-4
60290000 A
NOTE
For programmed operation the mode (TRACK,
CYLINDER, FILE), REPEAT, SEEK ADDRESS,
and MASTER CLEAR switches should be off.
REPEAT SEEK
This switch, located at card location ID05A, is for maintenance purposes only and causes
the disk unit to seek alternately between cylinder 0 and the selected cylinder when:
1.
It is on (up position),
2.
Track or Cylinder mode is selected, and
3.
The SEEK ADDRESS switch is pressed.
REPEA T SEEK OPERATE
This switch, located at card location ID05B, is for maintenance purposes only and causes
the disk unit to seek alternately between cylinder 0 and the selected cylinder and perform
an operation when:
1.
It is on (up position),
2.
The REPEAT SEEK switch is on,
3.
Track or Cylinder mode is selected, and
4.
The SEEK ADDRESS switch is pressed.
The controller will stop for an error condition and the REPEAT switch will not override an
error.
HEAD LIMIT
This switch, located at card location ID05C is for maintenance purposes only and causes
the unused indicator in the SEEK -SWITCH to light when:
1.
A maintenance aid sw itch is left on.
2.
The REPEAT-SEEK switch is on (up position).
3.
The HEAD-LIMIT switch is on (up position).
MANUAL OPERATION
Operation of the disk storage subsystem is under program control from the computer through
the use of the Connect and function codes.
Initial manual starting procedures include turning
the power on, selecting the various switch settings, and loading a disk pack into the associated unit (if none are presently loaded).
Disk packs and files must have headers recorded
before they can be used for programmed operations.
60290000 C
2-5
POWER
The following procedure turns on the power for the subsystem.
Disk Drive:
Turn on the main power switch and terminator power switch (located on top
of the power distribution box in the back of the cabinet).
The disk drive units automatically enter a Power On sequence.
Each disk
drive unit requires approximately 1 minute to come up to speed and land the
read/write.heads. In a multiple unit sYEltem each succeeding disk drive motor is
automatically sequenced.
The sequencing overlaps and a full complement of
drive units should be up to speed in approximately 2 minutes.
As soon as the
disk drive units become operable (read/write heads landed) and the PHYSICAL
UNIT NUMBER indicator
lights~
operation of the disk drives may begin; how-
ever, a 15-minute warm-up period is recommended when commencing from
a cold start.
Disk File:
Normally the disk file and associated hydraulic unit should have all switches in
the proper position and only step 7 should be necessary to activate the units.
CAUTION
The blowers should remain on at all times to
prevent dirt accumulation on the disk surfaces.
If the units must be started from a completely shut down position, the following steps should
be performed:
1.
Open front doors on the disk file and hydraulic unit and the right side door on the
disk file.
2.
Place all front panel circuit breakers of both units to the ON position.
3.
Set both Positioner switches to the NORMAL position.
4.
Set all Manual/Automatic switches to the AUTOMATIC position.
5.
Set FILE OPERATION switch to the AUTOMATIC position.
6.
Set main circuit breaker (located below power distribution panel) to the ON position.
7.
Press START and observe START indicator light.
The following indicators light
temporarily: LOW FILE TEMP, STACK RPM 0, STACK RPM 1, and dc voltages.
2-6
60290000
A
The disk file requires approximately 3 minutes to come up to operating speed; the
hydraulic unit requires approximately 15 minutes (on water cooled unit).
LOADING AND UNLOADING PROCEDURES
The storage medium of the disk file units cannot be changed.
The following procedures
should be performed to load or change the storage medium in the disk storage drive:
1.
If the unit is operating, turn power OFF by pressing the START switch located on
the front of the disk drive unit.
Wait until the spindle stops rotating
~d
the SPIN
light turns OFF.
2.
Pull the appropriate drawer forward as far as possible.
3.
Load or unload the pack as follows:
Loading
Place the pack on the spindle and turn the cover handle clockwise to a full stop
position.
The pack should now be tight on the spindle and the protective cover
should lift off easily.
Unloading
Engage the protective cover over the disk pack and rotate the cover three times
in a counterclockwise direction.
The pack releases from the spindle and can be
lifted from the drive unit.
4.
Close the disk drive unit drawer and press the START switch on the front of the
drive unit.
This causes the unit to perform an initial Seek operation which positions
and loads the read/write heads and brings the unit to the Ready state.
READY STATE
The controller is always Ready when power is available; however, subsystem readiness
(indicated by the Ready status bit) depends upon the state of the selected storage unit.
The requirements and time necessary to bring the subsystem components to the Ready state
are:
60290000
A
2-7
Disk File
The disk file units are Ready only when all of the following are present:
1.
Power is available to the disk and hydraulic units,
2.
The hydraulic and air systems are operating,
3.
o
Hydraulic temperature (100 F) and pressure (1100 psi) are up to normal,
4.
The disks are spinning and up to speed (1750 rpm), and
5.
The positioner is in the landing area and the read/write heads are landed and in
an operating pos ition.
Disk Storage Drive
The disk drive units are Ready only when all of the following are present:
1.
A pack is loaded,
2.
The drawer is closed,
3.
The disks are spinning and up to speed (2400 rpm), and
4.
An initial seek has been performed to position the read/write heads.
PROCEDURES FOR WRITING ADDRESS HEADERS
Address Headers can be written only from the maintenance panel.
In order to write the
Header, Defective Track, and Write Lockout bits, the following procedure should be
followed:
1.
Turn the maintenance panel Key switch ON. Select the proper device type with the
DEVICE SELECT Switch.
2.
Set the REGISTER SELECT switch to the UNIT position, load the desired unit
number into the Unit register and press the SELECT switch.
3.
Select the desired ending mode by pressing the appropriate mode switch (TRACK,
CYLINDER, etc.).
4.
Enter the starting addresses into the upper and lower portions of the Address register.
(Select the appropriate portion of the Address register via the REGISTER SELECT
switch and enter the starting address by pressing the appropriate indicator /
pushbutton switches. )
2-8
60290000
A
5.
If there is no useable data in the sectors where new headers are to be written, it
is recommended that both the HEADER and DATA switch be set to the WRITE
position.
If there is useful data in the sectors and it is desired that only headers
be written, the HEADER switch must be set to the WRITE position and the DATA
switch to the READ position.
NOTE
Do not use the REPEAT mode switch when writing
headers. Ensure that the REPEAT switch is OFF.
6.
If Write Lockout and/or Defective Track bits are to be written, these switches
should be set to ON.
7.
Press the SEEK ADDRESS switch.
Step 7 initiates the operation which will end when the
addres~
of the last sector of the selected
storage area has been written or an abnormal condition will be displayed in the Status register.
On completion of the operation, select READ HEADERS and READ DATA and read (verify)
the area just written.
Error conditions will be displayed in the Status register.
NOTE
When in Read Data mode, the data read is not
displayed in the Data register.
When completed, return all switches to their normal positions.
PROCEDURES FOR WRITING DATA
Data can be written from the maintenance panel.
write data.
1.
The procedure is to read headers and
The following procedures should be followed:
Turn the maintenance panel Key switch ON.
Select the proper device type with
the DEVICE SELECT switch.
2.
Set the REGISTER SELECT switch to the UNIT position, load the desired unit
number into the Unit register, and press the SELECT switch.
3.
Select the desired storage mode by pressing the appropriate corporate switch
(TRACK, CYLINDER, etc.).
60290000
A
2-9
4.
Enter the data to be written into the Data register.
Select the Data register via
the REGISTER SELECT switch and enter the data by pressing the appropriate
indicator / pushbutton switches.
5.
Set the HEADER switch to READ and the DATA switch to WRITE.
6.
The WRITE LOCKOUT and/or DEFECTIVE TRACK switches should be OFF.
7.
Press the SEEK ADDRESS switch.
Step 7 initiates the operation which will end when the last sector of the selected storage
area has been written or an abnormal condition occurs.
Any abnormal condition will be
displayed in the Status register.
On completion of the operation, select READ HEADERS and READ DATA and read (verify)
the area just written.
Error conditions will be displayed in the Status register.
NOTE
When in Read Data mode, the data read is not
displayed in the Data register.
When complete, return all switches to their normal positions.
2-10
60290000
A
SECTION 3
INSTALLATION AND CHECKOUT
INSTALLATION AND CHECKOUT
CRATING
Should a requirement arise to crate this equipment in preparation for shipment to another
destination, consult Procedure 8:504:00 in the Customer Engineering Field Procedures
Manual. This should provide the latest information to aid in obtaining packaging materials
and kits.
PHYSICAL DIMENSIONS
Physical dimensions of the cabinet are included in Section 1.
POWER REQUIREMENTS
Power requirements are included in Section 1.
POWER CONNECTIONS
Refer to Section 5 for the diagram showing power input terminals.
Figure 1-1 shows the
location of the power distribution box that houses the power terminals.
Power connections
should be made according to Figure 3-1, in accordance with local electrical codes.
CABLING AND CONNECTORS
The distance between each cable connector and the floor is shown in Figure 3-2.
This
information is required when determining the lengths of the cables between the controller
and the disk units or data channels.
in a typical system.
Figure 3- 3 shows how the signal cables are connected
Figure 3-4 shows disk file cabling.
COOLING REQUIREMENTS
There are no special cooling requirements.
Room air is used for cooling purposes.
ENVIRONMENTAL CONSIDERATIONS
Information concerning temperature and humidity is included in Section 1.
60290000
P
3-1
TB2
TO 120 VAC Igj
50/60 HZ PWR
SOURCE
00
{
Q FT"===
~ ACCESS
1
B
CABLES
Maximum Total
A Cable Length (3)
Cabinets
Maximum B
Cable Length
821
841
Mixed
§.ll
ill..
150 feet
180 feet
150 feet
100 feet
180 feet
150 feet
155 feet
150 feet
100 feet
180 feet
150 feet
130 feet
130 feet
100 feet
180 feet
150 feet
105 feet
105 feet
100 feet
180 feet
150 feet
80 feet
80 feet
100 feet
180 feet
Total cable length on channel
Terminator assemblies
Includes inter-unit cabling
Figure 3-4.
Typical Subsystem Signal Cabling (MDD and Disk File)
60290000 S
•
3-6
SECTION 4
THEORY OF OPERATION
THEORY OF OPERATION
SIGNAL DEFINITIONS
DATA CHANNEL INTERFACE
The connector pin numbers are included in the Cable Tabs portion of the Wire Lists,
Section 9.
Refer to the 3000 Input/ Output Specifications (Pub. No. 60048800) for a description of these
signals.
STORAGE UNIT INTERFACE
The connector pin numbers are listed in the Cable Tabs portion of the Wire Lists, Section 9.
Address and Control Bus
These nine lines carry address and control information between the controller and selected
storage units.
The data on these lines is defined by one of the accompanying select lines.
Cylinder Select
When this line is a "1", it indicates to the selected Storage Unit that the Address and Control
Bus now contains positioning information.
current cylinder address.
The bit assignments are as follows:
Address and Control Bus
Bit 0
60290000 A
The positioning information is the controller's
Cylinder Number
1
Bit 1
2
Bit 2
4
Bit 3
8
Bit 4
16
Bit 5
32
Bit 6
64
Bit 7
128
Bit 8
256
Bit 9
512
4-1
Head Select
When this line is a "1", it indicates to the selected storage unit that the Address and Control
Bus now contains head select information.
Address and Control Bus
The bit assignments are as follows:
Head Number
t fJ c,.." ~
t:t
Disk File
Disk Pack
Bit 0
1
1
Bit 1
2
2
Bit 2
4
4
Bit 3
8
8
Bit 4
16
16
Bit 5
32
Not Used
Bit 6
Not Used
Not Used
Bit 7
Not Used
Not Used
Bit 8
Not Used
Not Used
&/'4fII! Y:~t:/'
Difference Select
When this line is a "1", it indicates to the selected disk pack unit that the Address and Control Bus now contains positioning information.
The positioning information is the difference
between the disk unit's current cylinder and the controller's current cylinder.
The bit
assignments are as follows:
Address and Control Bus
4-2
Cylinder Differnece
Bit 0
1
Bit 1
2
Bit 2
4
Bit 3
8
Bit 4
16
Bit 5
32
Bit 6
64
Bit 7
Bit 8
128
256
Bit 9
512
60290000 A
Control Select
When this line is a "1", it indicates to the selected storage unit that the Address and Control
Bus now contain control information.
Bit assignments are as follows:
Address and Control Bus
Bit 0
Control Signals
Write Enable
Disk Units - When this line is a "1", it
enables the write driver.
Bit 1
Read Enable
Disk Units - When this line is a '1", it
enables the read amplifiers.
Bit 2
Seek Forward
Disk Units - When this line is a "1", it
initiates the positioning sequence in a
forward direction.
Bit 3
Not Used
Bit 4
Erase Enable
Disk Units - This line follows the Write
Enable and is used to erase the data prior
to writing.
Bit 5
Seek Ba ckward
Disk Units - When this line is a "1", it
initiates the positioning sequence in a
backward direction.
Bit 6
Restore
Disk Packs - When this line is a '1", it
initiates positioning motion to position zero.
Bit 7
60290000 A
Not Used
4-3
Read Cylinder Select
When this line is a "1", it enables the Address and Control Bus transmitters in the selected
disk unit.
The information transmitted to the controller is the current cylinder address.
Bit assignments are as follows:
Address and Control Bus
Cylinder
Bit 0
1
Bit 1
2
Bit 2
4
Bit 3
8
Bit 4
16
Bit 5
32
Bit 6
64
Bit 7
128
Bit 8
256
Sector Select
When this line is a "1", it indicates to the selected disk unit that the Address and Control
Bus now contains sector information.
The bit assignment is as follows:
Address and Control Bus
Bit 0
Sector
1
Bit 1
2
Bit 2
4
Bit 3
8
Bit 4
16
Positioner Ready
When this line is a "1", it indicates that the selected storage unit is in position and is ready
to read or write.
On Sector or Seek Error
When this line is a "1", it indicates that any storage unit which has been addressed has
either completed a seek or is unable to complete a seek.
Sector Mark
This line is used to receive track reference marks from the selected storage unit.
4-4
60290000
A
Index
This line is used to receive a track reference mark from the selected storage unit.
All
other track reference marks must be measured in time from this point.
Seek Error
When this line is a "1", it indicates that the selected storage unit was unable to complete
a Seek operation to the point of returning a Positioner Ready signal to the controller.
Unit Select
Initiates the select sequence in the unit whose logic number corresponds to the number on
the four logic number lines.
Unit Selected
These nine lines are used to check which physical storage unit is selected.
Clear
This line goes to a "1", when a Master Clear, Channel Clear, Release, or Function Clear
occurs.
It will unreserve units on the clear channel without regard for status.
Pack Unsafe
This line indicates that the selected storage unit has one or more fault conditions.
These
conditions are:
1.
More than one head selected.
2.
Both write and read controls enabled.
3.
Erase driver on and no write driver enabled.
4.
Both write drivers enabled.
5.
Read or write driver enabled and Not Ready status.
Unit Ready
This line indicates that the selected storage unit is ready to use.
Write Data
This line is used to transfer data to be written to the selected storage unit.
60290000
A
4-5
Read Data
This line is used to transfer data from the selected storage unit.
Release
This line clears the Compare Enable FF's in the selected drive unit.
Clock Source
This line carries the recorded clock to the controller.
Unit Busy
Indicates selected unit is reserved by the other channel.
When a channel selects a unit
which is reserved by another controller, it receives a Unit Busy signal.
4-6
60290000
A
SECTION 5
DIAGRAMS·
DIAGRAMS
SYMBOL INDEX
The symbol index lists all logic terms in the controller and shows the logic diagram page
number for each term.
60290000 C
5-i
SVM80L INDEX
AOO.
Ao01
A002
A003
A010
A01*
A012
A013
A014
A020
AOU
A022
A02~
A030
A031
A032
'0 3 3
A040
A041
A042
A043
A050
A051
A052
A053
A060
A061
'062
A070
A071
Ao72
A080
A081
A082
A090
A091
A092
Al00
Al01
A102
A110
AUf
A112
A120
A121
A1 3 0
A131
A136
A139
A140
A141
A142
A143
A144
A145
5-ii
5 .. 17
5-17
5 .. 17
5-17
5·17
5 .. 17
5-17
5 .. 17
5 .. 17
5 .. 17
5 .. 17
5.,17
5-17
5"17
5 .. 17
5"17
5"17
5 .. 17
5 .. 17
5"17
5-17
5-17
5 .. 17
5·17
5-17
5 .. 17
5"17
5-17
5·17
!)~17
5"17
5"17
5-17
5-17
!)"17
5-17
5-17
5-17
5-17
5-17
5"17
5-17
5-17
5-17
5-17
5"17
5"17
5-47
5-47
5·17
5-17
5-17
5-17
5"17
5·17
PAG!::
A146
A147
A148
A149
A150
A151
A152
A153
A154
A155
A156
A157
A158
A159
A160
A161
A162
A163
A164
A165
A16b
A167
A168
A169
A170
A17l
Al72
A173
A17S
A176
Al77
A17S
A179
A18U
A181
A184
A185
A191
A2!)O
A201
A210
A211
A220
A221
A230
A231
A240
A241
A25G
A251
A260
A261
A270
A271
01
5~17
5~11
5~17
5-17
5~11
5-17
5-17
5-17
5-17
5-17
5-17
5-17
5-17
5-17
5-17
5-17
5-17
5-17
5-17
5-17
5-17
5~17
5-17
5~17
5-27
5·27
5·27
5-27
5-27
5-27
5-27
.
A280
A281
A290
A291
A300
A301
A310
A31l
BOOO
8001
A002
8003
BOlO
BOll
8012
8013
R020
A021
8022
B023
R030
R031
R032
B033
8040
8041
8042
8043
13050
13051
8052
5~27
~053
5~21
A060
8061
8062
8063
R070
B071
A072
8073
8080
A081
A082
8083
8090
8091
Ii! 0 92
8093
Al00
Al01
8102
Al03
5-1-'
5~17
5-2/
5~27
5-17
5-11
5-17
5~17
5-17
5-17
5-1'
5-17
5-17
5-17
5-17
5~11
5-17
5-1/
5-11
R110
5~17
Rl11
5-17
8112
5.17
5.17
5.17
5.17
5.17
5.17
5.17
5.17
5.31
5.31
5.31
5.31
5.31
5.31
5.31
5-31
5·31
5.31
5.31
5·31
5.31
5.31
5 .. 31
5.31
5-31
5 .. 31
5·31
5.31
5·31
5-31
5-31
5-31
5-31
5-31
5·31
5·31
5·31
5-31
5-31
5·31
5·31
5·31
5.31
5·31
5.31
5.31
5-31
5.31
5·31
5-31
5·31
5.31
5.31
5·31
5.31
B113
'~31
~200
5~31
8201
8202
8203
8204
8205
8206
8207
8208
8209
8210
8211
8212
B213
COOO
COOl
C002
0003
C004
e005
eo06
C007
C008
0010
5-Jl
COll
C012
C013
C014
'-31
5 .. 31
5~~U
5-31
5-U
5 .. 31
5-31
5-31
'-31
5"'31
5-31
5~31
5~37
5 ... J7
5"37
5-~J7
5-J7
5~37
'-37
5"37
5-37
'-37
!)-37
'-;51
5-H
'-J7
C015
5-;37
G016
C017
C018
C020
C021
C022
e023
C024
0025
6026
C027
C028
C030
C031
0032
0033
C034
C035
C036
0037
C038
C039
C040
C041
C042
!)-J7
'-37
5-37
5~37
5-37
5-37
5-37
5-37
5-37
'-37
5-37
5-37
5-37
5-37
5-37
5-37
5-37
'-37
5-37
5-37
5-37
5-37
5~37
'-37
5-37
C043
C044
C045
C046
C047
C048
C050
C051
C052
C053
C054
C055
C050
C057
C058
C059
0060
C061
C062
C063
C064
C065
C066
C067
C070
C071
C072
C073
C074
C075
C076
Co77
C078
C079
C080
C081
C082
C063
C084
C085
C086
C087
C090
C091
C092
C093
C094
C095
C096
C098
C100
Cl01
Cl02
Cl03
Cl04
5 .. 37
5-37
5 .. 37
5 .. 37
5-37
5-37
5 .. 37
5 .. 37
5-37
5-37
5-37
5-37
5"37
5 .. 37
5-31
5-37
5-31
5-37
5-37
5-31
5 .. 37
5-37
5-37
5-J7
5·37
5-37
5·37
5 .. 37
5-37
5-39
5-37
5-39
5-39
5-37
5-39
5-39
5-39
5-39
5-39
5-39
5-39
5-39
5 .. 39
5-39
5~39
5-39
5-39
5-39
5-39
5-39
5-39
5-39
5 .. 39
5-39
5~39
60290000 C
SYMBOL INDEX
Cl05
Cl06
Cl07
Cll0
Cllt
C112
C113
C114
G115
C116
C120
e121
C122
e123
e124
C125
C127
0128
0130
el31
C132
0133
0134
C135
C140
C141
C142
C1 4 3
C144
C150
C151
C152
C153
C160
C161
C164
C165
C166
C167
C170
C171
C172
C1 7 3
C1 7 4
C175
C176
Cl77
C180
C181
C182
C183
C190
C191
C194
C1 9 5
60290000
PAr,~
5 .. 39
5-39
5.39
5-39
5·39
5 .. 39
5 .. 39
5-39
5 .. 39
5-39
5 .. 39
5-39
5-39
5-39
5-39
5-39
5-39
5-39
5.39
5-39
5-39
5-39
5-39
5-39
5-39
5-39
5-39
5-39
5-39
5-39
5-39
5-39
5-39
5-15
5-15
5-15
5-15
5-15
5 .. 15
5-15
5-15
5-15
5 .. 15
5-15
5-15
5-15
5-15
5-15
5-15
5-15
5-15
5-15
5-15
5-25
C196
C197
C200
C2Dl
C20?
C2D3
C204
C205
C2'10
C2n7
C208
C204
~"25
C26~
E
C;':lO
C211
CC12
C2t3
C214
C21.5
C2H.
C217
C210
C219
C221
C222
C223
C224
C226
C227
C228
C229
C23U
C231
C23~
C233
C235
C236
C237
C238
C239
C240
C241
C242
C243
C250
C251
C25~
C2?4
C255
C256
C257
C25H
C259
C260
C261
02
5-2".
5-2"
5-41
5-41
5-41
5-41
5-41
5-41
5-41
5-41
5-41
5-41
5-41
5-41
5-41
5-41
5-31
5-41
5-41
5-41
5-41
5-41
5-1'
5-1'
5-15
5-15
5-15
5-1"
5-1'::>
5-41
5-1'::>
5-15
5-1'>
5-1'::>
5-41
5-39
5-3Y
5-41
5-11
5-41
5-41
5-41
5-41
5-41
5-41
5-41
5-41
5-41
5-41
5-41
5-41
5-41
5-41
5-41
5-41
C263
C264
e265
C266
C267
e268
C270
~271
(':272
C273
C275
e276
C277
C27b
C28C
e281
e282
(';283
e285
C30C
C301
~302
e303
(';304
e305
r:306
C307
C308
C309
e310
C311
e312
C313
C314
C315
e318
C319
e32D
C325
C329
(:350
C351
C380
e3R1
C390
C391
C400
C401
C402
C403
F035
FOOO
FOOl
F'002
FOOS
5·41
5-41
5-41
5·41
5-41
5-41
5.41
5-41
5-41
5·41
5.37
5-41
5-41
5-41
5-23
5-23
5-23
5·41
5-41
5·15
5.15
5-15
5.15
5-15
5·15
5 .. 15
5 .. 41
5.41
5.41
5·37
5 .. 37
5 .. 37
5 .. 37
5 .. 37
5 .. 15
5 .. 41
5.41
5.41
5,,41
5.15
5.41
5.41
5.15
5 .. 15
5-15
5.15
5.45
5.45
5-45
5.45
5·9
5-9
5.9
5.9
5·9
FOO4
FOO5
FOO6
FOO7
FOOI:l
F009
F010
FOll
F'012
FQ13
F014
F015
FOlb
F017
FOlS
F019
F020
F02i
F022
F023
F024
F025
F026
F027
F028
F029
F030
F031
F032
F'033
F"034
F035
F037---f0 36
F038
F03~
F040
F041
F042
F'043
F045 __ F044
F048
F049
F050
F051
F052
F053
F054
F055
F057
F05S
F060
F061
F062
F063
Fl00
5~9
5-9
'-9
5-9
rl01
F"102
Fl03
fl04
F1DS
FUO
fUl
FU2
f113
F'120
F121
F122
F123
F124
F125
f126
F 127
f128
F129
F130
F13i
f140
'141
F142
f143
r144
'145
'146
'147
F148
F149
f150
'>-~-9
"'151
5-9
F152
F153
F156
F157
F158
1'159
5-9
5-9
5-9
5-9
5-9
5-9
5-11
5-11
5-11
5-11
5-11
5-11
5-11
5-11
5-11
5-11
5-11
5-11
5-11
5-11
5-11
5-11
~-9
5-9
5-9
5-9
,-9
5-9
5-9
5-9
5-9
5-9
'-9
~-9
,-9
,-9
,-9
~-9
~-9
'-9
,-9
,-9
'-9
5-9
'-9
5-9
5-9
5-9
,-9
5-9
5-9
'-13
'::>-13
'-13
,-9
~-9
5-13
5-L5-9
,-9
5-9
,-27
5-27
5-9
5-9
'-9
5-9
5-9
5-9
5-13
5-13
5-13
5-13
'-9
1090
IU01
1002
1003
1004
1005
1006
1007
1008
1009
1010
1011
1020
1021
1022
1023
5- iii
5-9
5-9
5-9
5-9
5-9
5-9
5-9
5-9
5-13
5-13
5-13
5-13
5-13
5-13
5-13
5-13
5-13
5-13
5-13
5-13
5-9
5-9
5-9
5-9
5-9
5-9
5-9
5-9
5-9
5-9
5-9
SytolBOL INDEX
1024
1025
10 2 6
1027
1028
1029
1030
1031
1032
1040
1041
1042
1043
1044
1045
10 4 6
10047
1048
1049
1050
1051
1052
10 5 3
1054
1060
1061
1062
1063
1064
1065
'066
1067
1068
1069
1070
1071
1100
1101
1102
1103
I1D4
1105
1106
1107
1108
1109
1110
1112;
1112
1113
1114
1115
JODO
JOOl
,)002
5 .. iv
5.11
5 .. 11
5-11
5 .. 11
5-11
5 .. 11
5 .. 11
5 .. 11
5-11
5 .. 11
5 .. 11
5-11
5·11
5 .. 11
5-11
5 .. 11
5 .. 11
5 .. 11
!:i .. 11
5 .. 11
5-11
5 .. 11
5-11
5 ... 11
5-13
' .. 13
5-13
5-13
5 .. 13
5 .. 13
5·13
5 .. 13
5-13
5·13
5-13
' .. 13
5-9
'--9
5 .. 9
5-9
5-9
5·9
5 .. 9
5 .. 9
5-13
5 .. 9
5 .. 9
5 .. 9
,.9
5 .. 9
5 .. 9
5 .. 9
5-21
5-21
5 .. 21
PAGE:
JOQ3
JOQ4
JOQS
JOQ6
JOD7
JOOd
~I 0 09
JOtO
JOl1
JOt~
J015
J016
JOt7
J01S
JOt9
JO?O
J021
J022
J023
J024
J025
J027
J028
J02(;
J030
J03l
J032
J033
J034
J035
J036
J037
J038
J039
J040
J041
J042
J043
J044
J045
J040
J047
J048
J049
J050
J051
J052
J053
J054
J05S
J056
J057
J05S
J059
.1il60
03
5-21
5-21·
5-21
5-21
5-21
5-21
5-21
5-21
5 .. 21
5-21
5-29
5-3.5
5-33
5-27
5-27
5-3,5
5-3,~
5-3,5
5-19
5-19
5-33
5-3,5
5-33
5-33
5-33
5-33
5-33
5-33
5-33
5-33
5-19
5-21
5-33
5-29
5-19
5-19
5-19
5-1~
5-19
5-19
5-19
5-19
5-19
5-19
5-1~
5-19
5-19
5-19
5-19
5-19
5-19
5-19
Soot<}
5-11}
5-3"
J061
J062
J063
J064
J06?
J066
J067
J068
J069
J070
J071
J072
J073
J074
J075
J076
J077
J078
J079
J 08 0
JOBl
J082
J083
JOB4
JOB5
J086
J087
JOB8
J089
J090
J091
J092
J093
J094
J095
J096
J097
J098
J099
Jl00
,Jl01
Ji02
Ji03
Ji04
Jl05
Jl06
Ji07
Jl0Cl
Jl09
J110
Jlll
J112
J113
J113
J114
5-35
5 .. 35
5 .. 35
5.35
5-35
5.35
5-35
5.23
5.23
5.29
5-29
5.27
5.27
5.29
5.29
5 .. 29
5",29
5.29
5.29
5",29
5-29
5.29
5·29
5.29
5.29
5.29
5·29
5.29
5.29
5.29
5.29
5·27
5·29
5.27
5-27
5-19
5.19
5.35
5.29
5.23
5-23
5.23
5.23
5 .. 23
5.25
5.23
5.23
5.23
5.23
5923
5.23
5.23
5.23
5·25
5.23
J114
JU5
JU6
J117
J118
Jli'1
J120
J121
J122
J123
J125
J126
J127
J128
J129
J130
J131
J132
J133
J134
J135
J136
J137
J140
J142
J143
J145
J146
J147
J148
J149
J150
J151
J152
J160
J161
J162
J163
J164
J16S
J16e
J171
Jl72
JiBO
J181
J183
J1B4
,,1200
J201
J202
J203
J204
J205
5-25
?-25
5-25
5-23
5-23
5-23
5"25
5-29
5-a5
5-25
5-25
5-25
5-25
5-25
!;)"25
5-a5
5-25
5-25
!;)-a5
5-25
5-25
5-23
5-23
5-19
5~29
5-29.
5-23
5-33
5";53
5-a9
5-a9
5-25
5-i9
5-29
5"19
5-19
5-19
5-19
5-19
5-19
5-19
5-19
5-29
5-19
5-29
5-,,7
5-47
~-43
5-43
5-'3
5-43
5-43
5-43
J206
J207
J20B
J209
J210
J211
J212
J213
J214
J215
J216
J217
J218
J219
J220
J221
J222
J223
J224
J225
J226
J227
J228
J229
J230
J231
J232
J233
J234
J235
J236
J237
J238
J239
J240
J241
J242
J243
J244
J245
J246
J247
J248
J252
J253
J254
J255
J256
J258
J259
J260
J261
J262
J263
,,1264
5 .. 43
5 .. 43
5 .. 43
5-43
5-43
5-43
5-43
5 .. 43
5-43
5-43
5-43
5-43
5 .. 43
5-43
5-43
5-43
5 .. 43
5-43
5-43
5-43
5-43
5 .. 43
5"'43
5 .. 43
5-43
5 .. 47
5 .. 45
, .. 45
5-45
5-45
5-45
5 .. 45
5-45
5-45
5 .. 45
5-45
5-45
5-45
5-45
5-45
5 .. 45
5-45
5 ... 19
5-45
5-45
5-45
5-45
5-45
5-45
5-47
5 .. 45
5-45
5-45
5 .. 45
5-45
60290000 C
SyMBOL INDEX
J265
J266
J267
J268
J269
J270
J271
J272
J273
J276
J277
J278
J280
J281
J282
J283
J284
J285
J286
J287
J288
J289
J290
J29,
J293
J294
J295
J296
J2 9 6
J297
J298
J299
J400
J401
J402
J403
J404
J405
J406
J407
J408
J4iO
J41t
J412
J413
J423
J424
J425
J900
J901
J902
J903
J904
J906~05
J907
KOOO
60290000 C
5~45
5 .. 45
5 .. 45
5 .. 45
5 ... 47
5 .. 47
5-47
5 .. 27
5·47
5 .. 33
5 .. 33
5 .. 47
5 .. 47
5 .. 47
5.27
5·27
5 .. 27
5·27
5.27
5.47
5·27
5",45
5 .. 27
5·47
5 .. 27
5 .. 19
5 .. 47
5-31
5 .. 47
5 .. 19
5.27
5-29
5 ... 45
5,,35
5 .. 21
5 .. 25
5·25
5 .. 25
5-23
5-23
5.. 23
5-45
5-45
5-45
5-45
5·15
5·15
5·15
5 .. 25
5-25
5-47
5·47
5-37
5 .. 2.2.....5-47
5 .. 21 5-47
PAr,E
KOOl
KJ(J2
1<003
K004
K005
K006
1(01)7
K008
K009
1<010
K011
K012
K013
K014
K015
K016
K017
K018
K019
K020
1<021
K022
K023
K030
1(031
1(032
1<033
K034
1<035
1<036
1<037
1<038
1<039
1(041)
K041
1<042
K043
K044
K045
K046
K047
1<048
1<049
K052
1<053
K054
K055
K056
K057
K058
K059
1<060
K061
K062
K063
04
5-21
5-21
!)-21
5-21
5-21
5-21
5-21
5-21
5-21
5-21
5-21
5-21
5-21
5-21
5-21
5-21
5-21
5-21
5-21
5-21
5-21
5 .. 21
5-21
5-19
5-19
5-19
5-19
5-19
5-19
5-19
5-19
5-19
5-19
5-19
5-19
5-19
5-19
5-19
5-19
5-19
5-19
5-19
5-19
5-19
5-19
5-19
5-19
5-19
5-19
5-19
5-19
5-19
5-19
5-19
5-19
1<064
1(065
1(066
1<067
1(068
~069
1<070
K071
1<072
K073
K074
K075
I
5-45
5 .. 43
5-43
5"2~
5 .. 25
5-1!>
5-1~
5-43
5-43
5-2?
5-2~
5-1~
5-1"
5-43
5-43
5-25
5-2~
5-l~
5·1!)
5-43
5-43
5-25
5-25
5.43
5-25
5-15
5.33
5.33
5.33
5.33
5.35
5.35
5.35
5.35
!h35
5.35
'.33
5.33
5.33
5.33
5.35
5.35
5.35
5-35
5.35
5.35
5.33
5.33
5.33
5.33
5.35
5.35
,.35
5-35
5·35
,-33
5-33
5-33
5-33
5·35
5·35
5-35
5.35
5-35
5-33
5.33
5-33
5-33
5-35
5-35
5·35
5-35
5-33
5.33
5.33
5-33
5-35
5.35
9056
SO 57
5060
S061
S062
9063
5064
5065
5066
8067
S070
S071
5072
5073
S074
5075
5076
S077
S080
5081
5082
5083
50e<4
S085
5086
5087
5090
5091
5092
S093
5094
5095
5096
5097
5100
S101
5102
5103
5104
5105
5106
5107
5110
S111
5112
5113
9114
S115
5116
S117
5120
5121
S124
S125
S126
5~35
5-35
5-33
5-;53
5-33
5-33
5-35
5-35
5-35
5-35
5"33
5"33
5-33
5-33
5-35
5-35
5-35
5-35
5-33
5-33
5-33
'-33
5-~5
5-35
5-;)5
5 .. 35
5-33
5"J3
5-J3
5-33
5-35
S-;J5
5-;J5
5-35
5-33
5-33
5 .. 33
5-33
5-35
5-J5
5-35
5-J5
5"33
,"J3
5"33
5-33
5-35
5"35
5-35
5-35
5-23
5-23
5-35
5"'35
5-35
5127
5128
S129
'-35
5-35
5-35
5130
'~35
S131
T090
TOOl
T002
T003
T004
T005
T006
T007
T008
T009
TOtO
TOU
T012
T013
TOt4
T015
TOt6
T017
T018
T020
T021
T022
5-35
5-5
,·5
5-5
5-5
,·5
, .. 5
5 .. 5
5-5
5-5
5 ... 5
,-5
5-5
5 .. 5
5-5
5-5
5 .. 5
, .. 5
5-5
5-5
5-5
5 .. 5
5 .. 5
,.5
, .. 5
, .. 5
5 .. 5
5-5
5·5
5 .. 5
5-5
5-5
5 .. 3
5-3
'-3
5-3
5-3
,-3
T023
T024
T025
T026
T027
T028
T029
T030
T031
l100
TiOl
TlO2
T103
T104
Ti05
Ti06
Ti07
Tl08
Ti09
T110
flU
T112
Tl13
T114
T115
T116
T117
T118
,-3
5 ... 3
5-3
5 ... 3
5 .. 3
5-3
5 .. 3
5 .. 3
5-3
5 .. 3
5 .. 3
5-3
5 .. 3
60290000 A
SYMBOL INDEX
H2O
T121
T122
T123
T124
T125
1126
1127
T128
T129
1130
U:U
1200
T201
T202
1203
T208
T209
T210
T211
T212
T213
T214
T215
T216
T217
T218
T219
T220
1221
T222
1223
T224
T225
T299
T30.
T301
T310
Uta
T320
T321
1330
TUt
T340
11108
VlO1
Vl02
Yl03
Vl04
Vl05
Y114
"115
V116
V1l7
V118
5-3
5.3
5 .. 3
5 .. 3
5·3
5 .. 3
5 .. 3
5 .. 3
5.3
5.3
5.3
5.3
5.7
5.7
5.1
5 .. 7
5 .. 45
5.45
' ... 5
5 .. 45
5.45
5.45
5.45
5.45
'.45
5.45
5.45
5.45
5.45
5.45
' •• 5
..
,,
'.45
5.45
5.45
5-23
'-13
5·23
'.n
5.23
5.23
'.23
'·23
5.23
5-15
5.15
5"'15
5·15
5 .. 15
5·15
5 .. 35
5"'41
5 .. 35
5 .. 41
5-35
60290000 A
PAr;E
V119
V121
V123
v124
V125
V200
V201
V202
V203
V205
V209
V2U
V2t3
V215
V216
v217
V218
v223
V224
v250
V3DO
V3U
V3D3
V3n4
V3Q5
101000
wOOl
10/002
101003
wOH
W005
101006
101007
101008
WOO9
1oI0lD
101011
101012
1oI0t3
WOt4
101015
101016
101017
101018
101019
101020
101021
101022
\01023
101024
101025
'0/ 0 26
101027
;./028
\.j 029
06
5- 41
5-41
5-3s
5-3J
5- 3:5
5-1')
5-15
5-15
5-1"
5-15
5-41
5-41
5-41
5-41
5-3!5
5-35
5-35
5-33
5-33
5 -l!:)
5-1'1
5-15
5-1'
5-33
5-15
5-5
5 .. 5
5-5
5-5
5 .. 5
5 .. 5
5 .. 5
5-5
5-5
5 .. 5
5-5
5-5
5 .. 5
5-5
5 .. 5
5 .. 5
5 .. 5
5"5
5-5
5-5
5-5
5-5
5 .. 5
5-5
5 .. 5
5-5
5-5
5-5
5-5
5-5
W030
101031
101032
101033
W034
w035
w036
101037
101038
101039
101040
W041
W042
W043
101044
101047
101048
101049
W050
W051
101052
W053
101054
W055
W056
101057
w058
101059
W060
101061
W062
101063
101064
101065
W066
W067
101068
W069
W070
101071
W072
101073
W074
101075
101080
101081
101082
101083
101084
101085
W086
101087
101090
W091
101100
5·5
5.5
5.5
5 .. 5
5.5
5.5
5.5
5·5
5.5
5·5
5 .. 5
5.5
5·7
5.7
5.7
5·7
5.13
5.13
5.5
5.5
5.7
5.7
5.7
5.7
5.7
5·7
5.7
5.7
5.13
5.13
!S.13
5.13
5.13
5.13
5.13
5.13
5.13
5.13
5.13
5.13
5.13
5.13
5.7
5.7
5.7
!h7
5,,7
5fi17
5.7
5.7
5.7
5.7
5.5
5",5
5113
w101
:'-3
111102
W103
W104
5-3
5-3
5-3
5-3
5-3
5-3
5-3
5-3
5-;5
5-3
5-3
5-3
5-3
5-3
5-3
5-J
\lIl05
11/106
101107
Wl013
Wl09
111110
IUl1
111112
\11113
IU14
111115
111116
W117
W118
5-3
1'119
11120
5-3
NUl
111122
11123
1'124
1'125
14126
IU27
W128
14129
11/130
11/131
14132
11/133
w134
fU35
rU36
M137
\11138
\q139
~140
1l/141
\11142
W143
14144
IU47
W149
al150
W151
101152
101153
\11154
101155
101156
14157
W15S
'.;)-3
5-3
5-3
5-3
5-3
5-3
5-3
5~3
5-3
5·3
5-J
5 .. 3
5-;)
~.i5
5 .. ;1
5 .. 3
5-J
5-;1
5-3
5"3
5-J
5-3
5-7
5-7
5-7
5-7
5-13
5"3
5-3
5-7
5-7
5-7
5-7
5-7
5-7
5-7
"'159
5-7
~160
~-13
10/161
"1174
101 175
w180
101181
101 182
101183
11184
101185
w190
101 191
101200
101201
101202
111203
101204
10/205
111206
W207
w206
W209
101210
101211
11212
101213
101214
W215
111216
101219
111220
w221
111224
101225
W226
101227
101228
101229
101230
101231
W232
101233
111234
101235
111236
101237
W239
101242
101 243
101244
101246
i00i247
11/248
i00i249
5-vii
~-13
'.;)-7
5-7
5-7
5-7
5-7
5-7
5-7
5-7
!)-3
5-3
5-7
5-7
5-7
5-7
5-7
5-7
5-7
5-7
5-7
5-7
5-7
5-7
5 .. 45
5-45
5-45
5 .. 7
5-7
5-7
5-7
5-7
5·7
5-7
5~7
5 .. 7
, .. 7
5-7
5-7
5 .. 5
5-5
5·5
5 .. 5
5·5
5-5
5-13
5-7
5-7
5-7
5-7
5-13
5-13
5-7
5-7
SYMBOL INDEX
W250
"25t
"'252
111253
"254
"'256
"257
"258
11259
"260
N261
.262
·266
"261
"269
M287
MOOO
lOO1
.0 0 2
U03
M004
lO05
)(006
)(007
lO08
M009
lOlO
lO11
M012
MOU
U14
l015
1(016
lO17
lOU
)(020
lOU
lO22
)(023
)1024
)(025
)(026
11027
X028
tlQ29
1(032
"0 3 2
'000
YOO1
Y002
VOOJ
V004
V005
"006
Yo07
5-viii
5.7
5 .. 7
5.7
5.7
5117
'.7
5.:5
'·7
5.15
5.7
5·7
5.3
5.7
5·7
5.7
5.7
5·11
'.11
5.11
'.11
'·11
5.11
5.11
5·11
5 .. 11
5"U
5 .. 11
5·11
'.41
'-47
'.47
.'.47
5.47
'.47
'.47
5.47
5.47
5.47
'.47
5-41
5.41
5.47
5.47
5.47
5.47
5·11
PAr.E
VOO8
VOQ9
VOto
YOU
V012
V013
V014
V015
V016
VOH
YH8
V019
Y020
V02l
V022
Y023
YO?4
y026
V027
V028
Y029
V030
V031
V032
Y033
YOJ4
Y035
V036
V037
Y038
VO.O
VOU
V042
V04J
VO.,
Y046
VOH
VO"8
Y049
VO .. 9
yO,O
YO!50
V051
V052
V053
VO'4
5-47
VO!55
5·5
5",3
5 .. 1
5 .. 7
5,,7
5 .. 7
5 .. 45
V056
V058
V059
Y061
V062
VOl!l3
V064
Y065
~h7
07
5-7
5-7
5-9
5-9
5 .. 9
5-9
5-9
5-9
5 .. 5
' .. 7
5-3
5-27
'-3
5-9
5-23
'-17
5-17
5-19
'-19
5-19
5-19
5-19
5-19
5-19
'-19
5"19
5-19
5-19
5·19
Y066
Y067
Y068
Y069
Y070
V07l
Y072
Y073
YOH
U75
U76
Un
I
'-19
'''19
, .. 29
, .. 21
,-29
, .. 21
'-23
'-23
,-19
, .. 23
'''25
'-23
, .. 25
5 .. 25
5-29
I
Y078
V079
V080
'081
Y082
9083
'084
5 .. 27
5.29
5 .. 27
5v43
5.43
5.9
5.43
5.7
,.7
5-47
5·15
5·15
5·15
5-15
!h15
5.15
'.15
,.15
5 .. 15
Y085
~-7
'086
Y081
U88
"090
'091
Y092
'093
Y094
Y095
Y096
'091
f098
'099
uOO
flU
9102
Yl07
9112
5.45
5.9
,.9
!h19
5·19
!5.H
5·41
,.47
5.27
__ YiB5
'900
'901
Y902
9903
V904
5-29
'.19
,.7
'-19
,-15
,.23
,.21
'.23
,.2:5
5-7
,.25
'-25
5.25
!5;.25
5.25
5 .. 25
5-29
5-39
5-25
5"41
5-31
5-29
5-29
5-29
5-27
5-27
60290000
R
Logic diagrams represent a symbolic approach to electronic schematics.
By using symbols to represent building block circuits, the diagram becomes
easy to read if the reader understands the function of the symbols.
A circuit
Control Delay
A control delay is a timing device consisting of an H term which receives the
In
Control Data Corporation logic, two signals, a logical a ("0") and logical
1 (" 1"), are the possible input or output conditions of a circuit.
KEY TO LOGIC SYMBOLS
input and one or more V, Y, or N terms to provide the outputs.
(STANDARD 1604 OR 3600 CARD TYPES)e
The H term
is essentially a flip-flop with controlled feedback and occupies an entire
printed circuit card.
The output term(s) are inverter(s) located elsewhere
with an output of "I" is "up" and a circuit with an output of "0" is "down".
on the logic chassis.
The" I" outputs from a control delay are clocked pulses
Detailed descriptions of logic symbols and their associated build"ng block
which are delayed one phase time from the "1" inputs.
circuit cards are contained in the appropriate printed circuit manual
shown on the logic diagrams for any H, V, Y, or N terms; these terms,
(1604 and 3600 Card Types).
Refer to the Literature Distribution Center
which control the start and duration of the delayed output pulses, may be
Catalog for the publication number and latest revision level.
found in the Equation Summary.
ST ANDARD LOGIC SYMBOLS
3600-type cards are inverters, flip-flops, control delays, capacitive delays,
inductive delays, and line drivers and receivers.
of the control delay symbol, with possible inputs and outputs labelled.
The flip-flop (FF) is a storage device with two stable states - designated as
8 shows the electrical connections for the two forms.
inputs and outputs are shown in the lower part of the symbol.
Uooo
STANDARD FF
SET INPUT
When more than one input is provided to an inverter, "1 's" take
precedence over "a's" and drive the output of the inverter to "0".
Because
CLEAR INPUT
KOOI
any" 1" inp'ut of several inputs drives the output to a "0", an inverter may be
---fJoOj'l::!:}
~
I OR MORE
IDENTICAL
OUTPUTS
Figure 1.
INPUT
INPUT
INPUT
A
B
C
~
}
OUTPUT(S)
( GOES TO "I" ONE CLOCK PHASE
AFTER AN INPUT OF "I ", UNLESS
DISABLED
BY A CONDITION INPUT,
AND
REMAINS A "I" THROUGH ONE
PHASE TIME.)
CONDITION INPUT
(" I" WILL DISABLE
THE OUTPUT)
SET OUTPUT
"I" WHEN SET AND
"0" WHEN CLEAR
TIMED "0" OUTPUT
TO OTHER V- - - TERMS
GOES TO "0" WHEN INPUT
IS "I" AND REMAINS "0"
THROUGH ONE PHASE TIME
AFTER INPUTS
DROPS.)
,~,~E::e.~U~~~:R
I OR MORE.
IDENTICAL
OUTPUTS
'" '''"''
Inverter Symbols
K002
{
MULTIPLE
SET OUTPUT
CLEAR INPUT
INPUT
A
INPUT
B
"OR" INPUT
Figure 2.
INPUT
INPUT
A
B
INPUT
C
~
J002
Figure 5.
}
flop symbol.
Notice that the Set output is the output of inverter
KOOI, and the Clear output is the output of inverters KOOO and K002.
"0".
Figure 3 illustrates conventions for showing AND gates feeding an
LOGI C INPUT
(GATED DURING
ODD CLOCK PHASE
"'''M~
j:gg~
J810
J910
J920
j:gg~
J810
J910
J920
J991
J960
J970
J960
J970
Figure 3.
CLEAR INPUT
I~
L ____
I
OUTPUT
I
RAW CLOCK
(0001
STANDARD FF
KOOO
inverter.
Control Delay Symbols
The term numbers assigned to each flip-flop are the term num-
with those in Figure 6.
If one or more of the inputs to an AND gate are "0", the output is a
OUTPUTS
Figure 6 illustrates the interconnection of inverter symbols to form a flip-
An AND gate requires that all its inputs be "1 's" in order that its output be
a "1".
DELAY
Flip-Flop Symbols
bers of the internal inverters as seen by comparing the terms in Figure 5
OR Circuit Conventions
CONTROL
CLEAR OUTPUT
Figure 7.
A ~
B ~
C
DELAY
EXTRA-SET FF
Acceptable conventions for showing multiple OR inputs are given in Figure 2.
INPUT
INPUT
INPUT
CONTROL
INPUT (S)
LOGI C
AND "0" WHEN SET
considered an inverting OR (NOR) gate when more than one input is present.
INPUT
STANDARD
By convention,
Set inputs and outputs are shown in the upper part of the symbol and Clear
Inverters
L-
SET OUTPUT
r - - - - - - - - - - CLEAR OUTPUT
~
- ...,
INVERTERS VIOO AND
I V200 PRODUCE
OUTPUTS ONE CLOCK
PHASE AFTER EITHER
I INPUT A OR B
I GOES TO "I"
"1':
",",.~
RAW
J991
CLOCK
(000)
I
EXTRA-SET FF
INPUT
SET INPUT
SET OUTPUT
AND Circuit Conventions
RAW
(000)
B
CLOCK
L
4}
SET INPUT
Figure 4 illustrates a combination AND/OR input.
J200
J300
J400
•
}
CLEAR INPUT
CLEAR
OUTPUTS
,1 .. n·1
'I I
RAW CLOCK
(EVEN)
I
RAW CLOCK
(EVEN)
L
I
,
______
OUTPUTS
J
L
J500
Figure 4.
&0.290000
A
AND/OR Circuit Convention
Figure
The logic symbols
(Figure 5) are formed by the combination of inverter symbols.
An inverter is a logic element which provides an output that is an inversion of
its input.
Figure 7 illustrates two representative forms
Flip- Flops (FF)
Set and Clear - and is composed of two or more inverters.
Standard logic diagram symbols for Control Data equipment using 1604- or
Clock inputs are not
Figure 6.
Internal Inverter Connections for a Flip-Flop
Figure 8.
Electrical Connections for Control Delay
5-ix
Contl'ol delays may have multiple inputs and/or multiple outputs.
When a
in the same manner as capacitive delays (except for the vertical lines) unless
CABLE IDENTIFICATION
control delay has multiple output terms (i. e., more than one V, Y, or N term),
they are used as delay lines.
each output term may have a separate conditioning input.
circuit letters are present, pin numbers are shown adjacent to the input and
Cable connections ar'c repr'esented by the MIL-STD-15 symbol and identified
output arrows.
as to connector location and pins used, as shown in Figure 15.
On multi-section cards where no identifying
Figure 12 shows both kinds of inductive delays.
Capacitive Delays
STANDARD
A capacitive delay is used to delay the" 1" input to a logic elemen!,
are not affected by the delay.) Capacitive delays may be active
("0" inputs
passive,
01'
circuit.
2B29
points for the scope and probes vary for different cards and should be deter-
--ell
DELAY
of the card location.
IN
12
Figure 12.
In the third
3C16A- 5: 10, II
~
2C27C
~
0,2 !-,SEC
401
~
J
4 MS
2C16- 9,10
2012-7
0.7 !-,SEC
FIXED
PLUGGABLE
WIT H EXTERNAL
CAPACITDR(SI
Active Capacitive Delays
Figure 15.
capacitors, located on one or more capacitor cards, as an AND input to the
affected logic element.
For this reason, all passive delays show pin numbers
P
NUMBER
lASED
LINE)
Cable Connections
SPECIAL LOGIC SYMBOLS
those used for internal logic. The level shift to and from internal logic is
made by line dl'ivers and line l'eceivers. These cards may be consider'ed as
Nonstandard elements (special logic and/or non-logic elements) are repre-
inverting the signal electrically, but not logically.
sented by a special cil'cuit symbol (generally a rectangle as shown in Figure
The letters commonly
associated with these cards are L & M (1604) and R & T (3000 Series).
A
16).
The special circuit symbol always shows the symbol designation, jack
3000 Series Receiver may also he used to perform a logical inversion by
location, and the car'd type,
swapping the twisted pair wires.
This usage is indicated by a circle on the
such as in the case of special delay cards which indicate the delay period.
In Figure 13, "J's" and "O's" have been added to
For detailed information refer to the specific card type in the appropriate
clarify the logic states; they are not part of the symbol.
All passive capacitive delays (Figure 10) are formed by wiring grounded
SECOND
Voltage levels used to represent" l's" and "O's" on cables are different from
input side of the symbol.
Figure 9.
"I"
"I"
""
--7~
to provide this external wiring data.
"I"
Supplemental information may also be shown
Printed Cil'cuit or Logic Module Manual.
"I"
"0"
--7~
~>-+
Figure 13.
LINE
FIRST PI N
NUMBER
(POSITIVE -BIASED LINE)
Inductive Delays
Line Drivers / Receivers
2C2SA
RANSMISSION
OUTPUTS
example, this wiring connects to capacitor's located on two separate capacitor
cards.
T
1 '-~ ~
(NEGATIVE~NB
CONNECTOR /
NUMBER
I
v
~
TWISTED- PAIR
3HI-A9, AID
In Figure 9, the pluggable delay
uses this wiring to connect to capacitors on the same card.
RETURN)
--7~
~
TIM ED
GROUND
M
OF
I~
II
10
(COMMON
DELAY
!
Pin numbers are also shown when external wiring is
needed to connect the proper capacitance.
INDUCTIVE
LINE
mined by referring to the Printed Circuit Manual.
Acth'e delays may be recognized by the circuit letter always present as part
(SHOWING PIN 'V'
CDNNECTDR
2J12)
0,15 !-,SEC
TAPPED
WIRE
2JI2
~
D,I !-,SEC
Delay periods are checked by using a dual-trace scope connected to
The actual c0nnection
SINGLE
DELAYS
---j£ -4
II
MEMORY
REGISTER
12
~
WI]
I
3 ;;'-S'J- -1
FA71J.F-,4
CONTROL
I
ADDRESS REGISTER
(8)
(A)
(UPPER)
~
1
(LOWER)
:
0
$
10
.---
SHIFT REGISTER
(S)
~
C
0
U
N
T
E
R
L--
H9
ADDRESS
AND
t
CONTROL
cb
BUS
CHGCt.(.J,
l--:l
TRANSMIT
e I-I?O ~
r-
CYCLIC
ENCODER
REGISTER
)GT.
I
,. . ,I
y~
(T)
«-
OSCILLATOR
I
MOD
CLOCK
CONTROL
READ
READ
DATA
12
I
~
WRITE
()-DISK FILE
,...
DATA
l'
WRITE
DISK
KEY
- - - DATA
9
- - - ADDRESS AND CONTROL
--@-
NUMBER OF BITS
SELECTED
CLOCK
~
1
STr~~r Dij,IC~
_TITLE
BLOCK DIAGRAM
I~RODUCT
FA 705
.'RI DRAWING NO,
_
_
_ _ _ A. _ _ _
I
0.'
INPUT TERM LIST
F'OR PAGE
TeRM
A181
8003
8013
8023
B033
1:l043
8053
B063
B073
8083
B093
Bl03
8113
F"113
1069
J019
J073
J132
J151
1<011
K091
K163
5001
S011
5021
S031
5041
5051
5061
S071
5081
5091
5101
S111
101048
101057
101065
101067
W069
101071
"'082
W1 4 3
111152
101153
101154
W157
WUi8
w159
1.1161
101175
101 1 8 0
I
5-2
5-3
LOCATION PAGF.
20140
2H4I2D
2H410
2H40D
2H39D
2H38D
2H37D
2H36D
5"17
5 .. 31
5-31
5-31
5-31
5-31
5 .. 31
5-31
2H350
5-31
2H340
21-1330
2H320
2H310
2E07D
2G21C
2G29C
2E19A
2B24C
2F"098
lC360
28400
2A340
2G4I28
2G41B
2G40B
2G398
2G388
2G378
2G36B
2G358
2G348
2G338
2G328
2G318
2E20A
21258
2E238
2E24B
2E25B
2E278
2I31C
2J248
2I24A
21248
2123A
21250
2122A
212213
2E26B
21368
2I21A
5 .. 31
5 .. 31
5 .. 31
5 .. 31
5-9
5-13
5-21
5-27
5-25
5-2q
5 .. 21
5-29
5-29
5-33
5-33
5-33
5 .. 33
5-33
5-33
5-33
5-33
5-33
5 .. 33
5-33
5-33
5-13
'.J-7
5-13
5-13
5-13
5-13
5-7
5-7
5 .. 7
5-7
5-7
5-7
5-7
5 .. 7
5"13
5-7
5-7
1..1181
W11:13
wl B4
wlB5
1oI213
101232
1oI2J4
W236
2t211;
21<2 5 13
213JC
21.,sJI)
2i3JB
2.,JJ6A
2,)368
2.,J3cC
101237
2e011:l
5·7
5-7
5.7
5-7
'·45
5·5
5-5
5·5
5-13
60290000 G
2J3/2J4
2JI/2J2
D5,06
2KI7C
21.24B
2Jl4D
CONNECT---7~
DATA LINES
07 08
B
FUNCTION~~
2JII2J2
j.I-<)
Rllb
Wl80
w13b
READ
A CONN
EVEN PARITY
2Kl!;A
2J14A
09, DID
OATA
2L178
2KlbB
03,04
ZKlbA
C7,C8
2K1SC
STATUS RESPONSE
B RESERVED WOB2 ---IW190
E7,ES
r-
2KlbC
XSI'foI PARITY ERROR
l.E.CONNECT
SIGNAL---7~
01,02
INITRRUPT (TO 1 OF 8 LINES)
2JI/2J2
A RES W157
2KI7B
DI .. E6
f~~ :~~r-
>--
E5,E6
READ---'~
+
M.C. WI75 ~
CONN REJ WIS8
2J3/2J4
2K25C
CHANhEL
2Kl5B
2~~/C~J4
2KI7A
INITRRUPT
89,810
'11067
>--
MASITR CLEAR ---7~
COMPUTER
W231
RUNNING~~
TRACK. OR
RESERVED
IC)b9
8USY---7~ C~~~
E3,E4
Tl~>-- DEF'ECTIV£
DEF TRK
END OF RECORD
IIfIIIT---7~
2LlbB
2L23B C3,C4
A181~
87,88
>--ENO OF OPERATION .
INITRRUPT
IC)b5
0.12 ,..S£C
Wl113
"
CON NECTED
TRANSMISSION PARITY CHECKER 8 GENERATOR
W119 cOl'ii SIGNAL
~~~~~~N E~~~~RUPT
J019
W154~
k011
WRITE RIIS
Wll5
2L20B
81,82
>-
CHI-- LOST DATA OR
NO COMPARE
PARITY BIT
TO INTERFACE
TRANSMITTER
A 7, A8
>--
ADDRESS ERROI\ OR
ON SECTOR
IUNIT UNAVAILABLE
UNIT AVAIL
BUSY
A3,A4
>--
BUSY I UNIT RESERVED
WI91
Wl52
R109
R110
W111
R110
2Jl5C
R11l
W109
. . . - -_ _ _ \01181
EONIrA
+
R10b
R107
R10e
DATA
R107
\oIlOb
\01108
R103
R104
R105
R104
W103
W105
R100
R10l
R102
STATUs
R101
\01100
W102
SIGNAL
1069 READ
F 113 RETURN AODRESS
10. ___ Ie
t ,
JI32
READ CONTROL
.... CONTItOL DATA
.... CORPORATION
DEVELOPM£NT
DIVISION
",u
CHANNEL A INTERFACE
_T
FA70!5
INPUT TERM LIST
FOR PAGe
TeRM
8003
8013
8023
8033
1:1043
8053
1:J063
80 7 3
5-5
LOCATION PAGe
21-i420
2H41D
2H40D
2H39D
21>1380
.J151
2H370
2H360
2H350
2H34D
2H330
21-1320
2H310
2G29C
2E19A
2835D
2B24C
2F'099
J224
J298
10118
2F'lU
J299
2BUC
lC36D
28388
2B40C
2B400
20410
2,,248
2"340
2G428
2G4S.B
2G409
2G399
2G38B
2G319
8083
8093
8103
1:1113
J019
J073
J075
J132
1(011
K087
K090
1<091
1<121
K159
1<163
SOO1
S011
5021
5031
5041
5051
5061
5071
5081
5091
S101
S111
5127
111043
W048
W052
111053
W054
11057
2G~6S
2G358
2G348
2G33B
2G32B
2G3s.e
lE07S
2J24A
2E20A
2J28A
21289
2t27A
212'8
5-31
101069
21i2~8
5",31
101071
W075
101080
W081
2'127"
2f3 0 A
2t31A
2t31S
5 .. 3s.
5 .. 35,
5-;S1
5 .. 31
5 .. 31
5"31
5-31
5"31
5 .. 3t
WOij3
2~2SA
1.01084
101085
21,338
5-27
W157
W182
1.1213
w237
101257
101262
5-29
v020
5-31
5-27
2t33A
212;0
2't21C
2&3~8
2;018
2;j3Y~
2tq2::tC
283 411
' .. 13
5 .. 13
5·'
5.,
5-,
5-7
5-7
5.'
5·7
5·7
'.45
5-13
5·3
5-3
5-3
5.~,
5,,29
5-4:5
5 .. 21
5 .. 2,
5 .. 21
5 .. 29
!hii!9
'-29
5-23
5-29
'-29
' .. 33
5-33
5 .. 33
5-33
5 .. 33
5 .. 33
5-33
5-33
5 .. 33
5.33
5 .. 33
5-33
~.;S!3
5 .. 7
5"13
5-7
5·7
5 .. 1
2~~ . ~
5 .. 7
"0"
5·13
W061
2E218
.l1l4S'..
W065
101067
5-4
2E23B
2E248
5-13
5·13
60290000 G
2J5 12J6
05 06
2K29B
I NT wo.s
B RES. WOS7
2J390
CONNECT~~
DATA LINES
07 08
2K29A
t------
DATA
09 010
2K37C
2J5/2J6
2UtlB E7 EB
01,02
~~~~~
~
2L2SB E5,E6
K163
2K37B
0304
2K37A
+
2J7/2J8
21.30B C3 C4
MC W075~
CONN REJ
T~>--DEFECTIVE
W058 DEF TRK Wll>
>-- END OF RECORD
2J40D
CHANNEL
C7 C8
2K38C
E3 ,E4
2K3BB
2g:~~8
2K29C
TRACk {)R
RESERVED
INTERRUPT
WOt>7
WRlTE~~
2K39C
PARITY ERROR
L.E.CONN
READ-7~
2L378
~
A RESERVED WI82
~>--TRANSMISSION
WOS1
SIGNAL--;;~
2J39A
STATUS RESPONSE
A REL WOol
FUNCTION~~
ROl6 READ
woeo B CONN
W036 EVEN PARITY
2J7/2J8
ZL29B 01-E6
~>--INTERRUPT (TO 1 OF B LINES)
BUSY~~
INTERRUPT
2U7A
MASTER
lQ1Ql:
COMPUTER
9-7~
87,8B
5091
8093
2 USA
W083 B CO NN
2K39A
GENERATOR
WQ19~
2J~B
W054 CiiNNEffiD
CONNECT I NG RO 19
DATA SIG
WRITE
2K40C
a
ROll
ROl5
2J40A
----{GQQi
81,82
> - CHECKWORO ERROR OR
.Wl32
END OF RECORD
2U9B
85,86
507l
8073
7-7~
2K~B
A9,AI0
>-LOST DATA AND
OPN ERR
2J41D
PARITY BIT
TO INTERFACE
TRANSMI TTER
A7,A8
) - - ADDRESS ERROR OR
ON SECTOR
2J41C
WOl4
WQ~
50')1
8053
A9,AI0
4~
,
87,88
> - END OF OPERATION
INTERRUPT
Y020~
TRANSMISSION PARITY CHECKER
50B1
BOB3
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INPUT
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FOR PAGE
TERM
LIST
5-7
LOCATION
F029
F032
1020
1021
1032
1061
1105
1107
1114
2H2R8
2H278
21360
2F'31C
2G01C
20090
2F'01C
J134
2F29B
J184
J220
J231
J271
lJ278
J285
2r15A
lG418
2119A
IF"22B
2I20C
10078
2120B
K190
MODO
1'4001
M002
"1005
1'4012
1'4013
1'4014
1'4029
1'4046
1'4048
R013
R019
R113
R119
R200
R201
R202
R203
R204
R205
R206
R207
R220
2E39A
2D39A
2D41A
lD104A
10148
1D14C
10138
2F'16A
1009B
lD09C
lC05B
1F'358
lD158
2K3aB
2K298
2K158
2K17C
2EOU
2E018
2E01C
2F02A
2E02B
2E02C
2E O:U
2E03B
2E03C
R230
2J02A
Kl41
111050
\11150
5-6
2J31A
2J20A
PAliF
5-9
?-9
5-11
5-11
5-11
5-13
5-9
5-9
5~9
5-25
5 .. 47
5-43
5 .. 47
5-47
5-47
5-27
5"2!5
5-19
5 .. 1.1
5-11
5"11
5 .. 11
5 .. 47
5-47
5 .. 41
5 .. 47
5"47
5"'47
5-5
5 .. 5
5 .. 3
5-3
5-25
5-25
5-25
5"25
5 .. 25
5-25
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5-25
5 .. 25
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5-5
5-3
60290000
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F050
1000
1001
1002
1083
1004
10"
1020
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1022
1023
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INPUT TERI'! L.IST
F"OR PAGE
TeRM
COOl
C011
C021
C031
C041
C051
C061
C071
C081
C091
elD1
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J281
1<061
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11106
11107
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5063
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282D8
28198
29188
2B178
2B168
28158
2B14B
28138
281G8
28098
28088
2BD79
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lE388
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4166
4140
4144
4142
INPUT TERM LIST
fOR PAGE
TeRM
5-19
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A1 7 3
2A25D
5 .. 27
A179
2A25C
5-27
2D21C
2021D
2D2nC
2D200
2A2OA
2A208
2A200
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2A19A
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28178
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2A12A
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2B118
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2Al08
2A10C
2A10D
2A09A
2H020
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2A090
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2A088
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2A08C
24080
2A07A
2A078
2A01C
2A070
2H04C
2H04D
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5-17
5"17
5-17
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5-37
5 .. 37
5-37
5-37
5-37
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5 .. 37
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5"31
5 .. 37
5 .. 31
5·31
5-37
5-37
5-37
5-37
5-37
5 .. 39
5"39
5-39
5 .. 39
5-39
5-39
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5-39
5-39
5 .. 39
5 .. 39
5,.39
5 .. 39
5-39
5-39
5 .. 39
5 .. 39
5 .. 45
5 .. 4,;
5-45
5-45
5-9
5-9
5 .. 9
5"9
5 .. 9
5 .. 13
A280
"281
"290
"291
C002
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C013
C017
C018
C022
C027
C031
C032
C031
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C052
C057
C062
C067
C072
C019
C082
C083
C092
C093
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C112
C113
C122
C123
C121
C132
C133
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C143
C152
C153
C400
C401
C402
C403
f'103
f'111
F'lH
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f'159
1071
5-18
2E088
2E080
2E078
2E10D
2E13A
2E138
lE36C
1101
1104
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J173
J282
J288
K089
K140
K147
K150
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V300
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INPUT TERM LIST
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TeRM
e1 7 5
Cl77
0224
C226
C235
C238
C262
CZ65
C267
C270
0271
C276
C285
fO"l
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J134
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J269
1(160
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21050
2G058
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2D14A
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2C21D
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20428
2C200
2E198
2A228
2G22D
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2F'298
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10100
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2D4U
10088
2K06A
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PAGE
5 .. 15
5-15
5-15
5"15
5-41
5·'H
5 .. 41
5-41
5·41
5·41
5 .. 415 .. 41
5 .. 41
5-9
5 .. 9
5 .. 27
5 .. 19
5-25
5-29
5 .. 47
5-25
5~19
5-47
5"45
' .. 33
2F'37B
5 .. 33
5.33
5112
2F'37C
5"33
5120
2H1U
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1F'18C
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5 .. 23
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5 .. 115
5..,15
5 .. 15
5 .. 13
602noooo A
5-20
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INDEX C227
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2-11-3 C267
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DATA
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2-11 C235
t2 V201
SEEK CHAIN JI81
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INPUT TERM LX ST
FOR
TERM
fj213
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C123
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C1 9 0
C1 9 1
C223
C232
C240
C242
C257
fl260
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1063
1065
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1106
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K091
K112
KU4
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K133
K141
K156
K190
M024
R200
5-22
PAGE
5-23
LOCATION PAGE
2y;S7A
2A098
2A088
2J050
2101A
21019
2102A
2E288
2Cit19
2C21C
2010A
2D09C
28240
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2E14A
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2E09D
2G251:1
2G24A
2G238
2G218
2030D
20128
lD38A
2E298
!) .. 31
5-39
5-39
5-15
5-15
5"15
5"15
5 .. 15
5-41
5-41
5-41
5-41
5 .. 41
5 .. 9
' .. 9
5-9
5"9
5 .. 9
5 .. 9
5 .. 13
5"13
5-13
5·13
5 .. 9
5-9
2J06A
2832A
~·29
1D38C
lF06A
2C34A
Sl11
5114
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5·25
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5.33
5-33
5·33
5.33
5·35
5-35
5·35
5-15
'·15
5·15
5·15
5-7
5-7
5-21
5 .. 21
5 .. 33
5-19
5-35
5 .. 29
5-27
21='148
R201
R202
R203
R204
R205
R206
R207
R220
5002
5003
s110
283t;B
5 .. 29
2C3SA
2C388
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1C37B
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5-2;
5·25
5-21
5 .. 21
5-19
5 .. 19
5-29
2033A
5"2~
2E33C
2D398
2F.318
2D39A
2A33A
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5 .. 1q
5 ... 41
5-25
60290000
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8061
B071
8081
B091
8101
8111
1030
21398
1031
8204
8202
8209
..
,
INPUT TERM L.lST
fOR PAGE
TERM
AOO1
AOl1
A021
A031
A041
A051
A061
A011
A081
A091
A101
A111
A130
A131
A201
A211
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A241
A251
A261
A271
A281
A291
A300
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5-33
LOCATION PAGE
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5"11
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20260
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5"43
LOCATION PAGE
fi3i
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A020
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A060
A070
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5-19
5-19
5 .. 1Q
5 .. 19
S-19
5 .. 19
5 .. 19
5-19
5-19
5 .. 19
5"19
5-19
5-19
5-19
5-19
5-2:;
5-7
5-7
5-7
5 .. 37
5 .. 37
5 .. 37
5-37
5 .. ;57
5-3Q
5-3q
5-,39
5-39
5·39
5 .. 39
5"39
5"39
5-41
5 .. 41
5"9
5"9
,,,9
,-9
,-19
'-19
lU298
5-19
1038D
'''19
5-23
2E30A
K041
KQ42
f( 0 4:5
K044
KQ4S
lF2?~
16'2'1 A
2~308
5"2<;
lD4QD
21208
H25A
5"19
5-47
~-19
G02DOOOO K
ADDRESS AND CONTROL
BOS
A291
2K038
2KO'8
.1
A 27 O-+------?O
BIT
7
CI43
C067
A281
2K03"
2KO 1 "
A260~
IJI-34,37
2k'D6C
~~FILE
1(032
F'02
C219
C I 33
C229
-35,38
C057
2JD9C
~~
A2"'0~
SELECTED
SEEK
ERROR
SEEK
CI27
-58,62
C047
~~
2JD9A
POSITIONER
READY
IJI- 66,71
UNIT RESERVED
~
-30,33
2K03C
Y073
~~
CI 13
C037
-60,64
W211
2K06A
~~
CtfJ IT rw
INDEX
W243 SELECT ERROR
-59,63
I
2JD2B
~C
~~~READY
CI07
con
2L03B
Y073
2LOBA
C093
(FCN 0001) FOS8
IJI-047,5D
~>----
UNIT
SEL
IJI-6S,70
~>----RELEASE
C013
2L0481JI-67,72
COB7
1115
J218
C007
~>--
CLEAR
, 24,27
J261
HD
SEL
2
>----
CONTROL
SEL
IE19A
K049~
Df'F""f
K038
ii"f'A'D
CYL
KO'l1
STROBE
J268~T2251f---4>--
HEAD
SEL
SEL
DIFF
CYL.K040~33B
EAD
SELl
SECTOR I
SEL
1
RITE
ENABLE
J 107
READ
ENABLE
J115
K044
SEEK
K047
HEAD
K901
K043~-----------------
K043
DR
lE28B
S E C"TO"RI k' 0 04 04
IF27D
Z
RESTORE
RESTORE
FCN
~
K041}
K0042
STROBE
K033
READ
ENABLE
J, 15
FI03
~RITE
ENABLE
Jl07
NOT ES'
CVL
D.2USEC
T221
IS
"
PO .... ER
TRANSMITTER
2
CYL SEL
0'" 9
14
NOTE'
I.
A9
POWER SEQUENCE ASS Y
CHASSIS
AIO
CHASSIS
TBIO
20 VDC
i--+----
{ ;H-.-
+20 V {
TERMINATOR
POWER
T 820 - 6
TB20 - 7
T820 - 8
TB20 -II
7
+
{
TB20 - I
TB20-2
-
FRAME
14°
1-i2
'4f"~O
FRAME
~A9E3
'~"Yf .
9
laC>II0>-j--I_ _ _ _ _ _ _---1
12°
REFER TO CONTROL DATA
POWER SUPPLIES MANUAL
PUB. NO. 60120700 FOR A
SCHEMATIC OF THIS POWER
SUPPLY.
GRID GND
FA705 -A
POWER WIRING USING
HI-SPEED BLOWER WITH
VANE SWITCH
A10
GRID GND
ICOOE IOENT
c
E<
....
AI
POWER SUPPLY LOGIC
METERING
A2 POWER DISTRIBUTION
BOX
120/208
~
N Io-I,----r--------------------~--~~
r-T_I_4
_ _ _ _ _~----L
VAC (IJ B 3
r-T~2,-=-5_ _ _ _ _-l.-_-.-lL
r-T_3~6_ _ _ _ _~-~L
4
(lJA
(lJC
3
PIN 9
I'~
'i~~J~
,W
TBIO~
GRD
i
:,
GRD
TB10-2
- 20 V
GRD
- 20 V
Y
N
TBIO-!5
TBI0-1-20V
EI
"0'"'''''
TBIO -7
+ 20 V
- 20 V
400 Hz
DISCONNECT
2
I
Til
T810-6
GAD
TBl
~
CABINET
llyly I
I
m
ili
II 11.I
I, , , .',
TERMI:~~= {+ I'~
'''DO
-
, "i :.,
,
':
I
SEE PAIl 1-.....
A4
A3
BLOWER
I IO~:"~ I
r
T,il,Jz','.-.'.'
IU PAGE 5-03. fOR BlOftR
W / AIRFLOW HllSOR
TB4
~
TB20
POWER SUPPLY
GRD
PART NO. IB626300.
REFER TO CONTROL
- 20 V
DATA POWER SUPPLIES
MANUAL PUB. NO. 60110700
FOR A SCHEMATIC
OF THIS POWER SUPPLY
SI
REMOVf THIS JUMPER
WHEN AUXiliARY
--..
CONTROL IS USED
~
~
FROM JACK LOC.
AT CENTER OF
CHASSIS
_ .- - - I
+ 20 V
~
I' 10 Hz
~
:FB3 ::~ :}
4°
TB5
2
30 400 Hz
{
POWER ON
ILOwP
.,
..
I
.
NOTE:
I. REFER
TO CONTROL DATA
POWER SUPPLIES MANUAL
PUB. NO. 60120700 FOR A
SCHEMATIC OF THIS POWER
SUPPLY.
A9
CHASSIS·
POWER SEQUENCE ASS Y
20 VDC
H,("j,2
TSI
C!SJ
+20V
TB20 -I
r~
T8l0-2
T820 -6
RJI
-UPI
061
TB20 -7
TBlO- B
DISK
263
465
TB20 -II
DRIVE
FRAME
~A'"
1--f2AOO"
GRID GND
GRID GND
':"Ltf .
667
12°
14°
FRAME
FA705 -A
POWER WIRING
USING BLOWER WITH AIRFtOW
SENSOR
~ Ltf":O
1- ....,.--pl
,.
2
3
1
D
D
......
TB4
~IR~A-;-~';-
- - - - - ----,
I
CI
TBI
'I
J.,
'I_
CRlf
2
I
3
I
........
c
2
1..... 4
'"
~I
II
'--'
.J!
C2
I
II
I&~~
·i.
'-35 V21 5 W237 Ca98 C250 C01 1 C116 • •
~2n9 V213 xxxx xxxx xxxx XXXX XXX X xxxx
V211 C319 xxxx XXX X xxxx xX)(x xxxx xxxx
101.8
V201
V2n3
J1D4
c
C62 1<22 C.2 C62 10148
T3i'0 Jt0 6 U1a 130n ViOl
T3'-1 J145 T311 TJ01 V1DJ
XXXX XX)(X )(Xxx xxxx J402
0
H46 BS~ BGM "GM ~GM BGM 80M
F110 R334 R315 R304 R206 R20J R200
FlU R135 R324 R~05 R201 R204 R201
,112 R344 R325 R314 R220 R205 R202
F1l3 )()(X X XX)(X xxxx XMXX xxxx xxxx
E
10148 1<33 101418 10141 C1S "'~7 C15 10441
F'03a 1<1 7 0 V~01 V3,,0 J4g4 vaOn J40~ W215
J095 1<171 V303 J016 xxxx V202 xxxx '1102
"-042 xxxx It13 J012 xxxx J904 XXXlC 1114
J09 4 xxxx 1115 C037 xxx x V2G5 XXX X '1105
F'
H48
C251
C258
C23S
CJ25
1a47 C21 C21 C62
C3 1H f'n57 C307 U30
0259 C255 C318 T331
C2110 xxxx xxxx xxxx
ltn7 xxxx xxxx XXXX
1-146 "'4f1 10146
F14. r148 C402
F145 F"149 C403
~156 F.'102
,147 "1157 f'1 0 3
rt.'
8GM 8GM BEM
R332 Al13 R302 POOD
R333 R321 R303 XXXX
R342 R323 R312 XXXX
H48
"003
F'006
r044
W229
H47
1103
1104
1105
ro31
H4a
J092
1102
J06S
W228
H48
W259
C224
"'260
'048
BGM
1<14
K25
K67
H"3
K3?
H46
4F'H
8CM
• •
XXXX xxxx uxx XXXI(
10147 1146 H30 11147
FU07 ~ 004 C065 "002
FU08 ~oo5 F'n61 F'009
w~87 ~104 xxxx '010
JU69 f1n5 xxxx rOOl
Kl<4
03
B
K23 H47
C200 C201
Ci:'oJ C208 C20'
CCi04 xxxx C207
C205 Xxxx C271
XXXX xxxx POlO Pon8 • * XXXX * • C183 C1St
l(XXX xxxx X)(XX Wxl(X
xxxx XXXl( YOs 0 xxxx C400
• •* XXXX
\(XXX xxxx xxxx xxxx *xxx xxx x xxxx YiOO XXX X C401
*
101087 I1UO
1148 C15 C15
(;302 J424 J423
(;301 xxxx WXXX
(;300 XXXX XXl(X
J264 xox lOexX
H48
C281
C282
J267
C?28
H47 1<23 10146 1146
W118 W11 7 C174 K080
"'018 104017 0175 KoS1
J265 XXXX C176 C172
J288 XXXX Cl77 C173
H47 H47 H'I7 li47 H47 eGM K23 K71
i00i112 ~~1 0 8 VoilO 4 1'1100 C303 "225 W235 Y08l
J42? 101109 wl05 1'1101 C304 "222 F'060 Y083
J?72 101 11 0 1'1106 wl02 C305 PI~,-7 xxxx YOB4
W11 9 1.1111. WlO 7 W103 C306 "XXX XXX X Y041
H46
H41
H53
C161 C222 V059
e1 7 0 J40n •
0171 Cl01 • •
H46
Jn72 C164
101
H53
C21 "'46
Vi76 C22~ C190
Yin C329 C1 91
va 78 XXXl( C390
V8 79 xxxx C391
1(67 BGM 4GH
Vi S6 R230 T221
C227 C165 104247 XMXX R231 xxxx
J282 C166 XX)(X )()(XX R2i 9 XXXX
C231 C167 xxxx xxxx xxxx XXXX
H47
G
xxxx )(XXx XXXX XXXX
101086 1101 S121 S120 P009 1100 7 J261 Y002 YII12 C182 C180 C160 C221 Y10 7
1148 1<67 K61 1<33 1<33 K33 K33 1(.)3
J184 von VOH W202 101204 "'20 6 101218 w~20
J262 XXX)( xxxx w203 101205 W?O 7 '~219 wi:'21
W224 XXXX XXl(X xxxx xxxx Xxxx xxx x xxxx
C226 xxx x xxxx xxxx xxxx Xl()(X XXXX xxxx
K35 ~148 1<23
W150 i00i134 W13~
W151 w135 W036
XXX)( W13 7 xxxx
XXX X 101 252 xxxx
08
1<33 1<33 1<33 1<33 1<33 1<33 1<33 1(33 H47 C21
Co80 C090 ClOD Cll0 C120 CUD C140 C150 C210 Co 58
C08! coca Cl01 CHl C12l CUl C141 C151 C211 C128
xxxx IiCxxX xxxx XXXX XXXX xxxx xxxx )(XXx C21' XXXX
XXXX yooex xxxx xxxx xxxx xxxx xxxx xxxx C213 xxxx
C~02
H47 K26 HJO K67
C265 J142 JU2'> YO"8
J023 * * 1112 xxxx
A191 xxxx XXXX xxxx
A181 XXXX xxx X xx)(X
~46
•
1<29 1<29 1<29 1<29 1<71 1<22
100 8 100 9 InlO 1011 Yt}09 \11250
1028 1029 1030 1031 Vo71 101249
XXXX xxxx xxxx XXl(X Y095 xxxx
XXX X xxxx xxxx xxxx yn19 xxxx
60290000 C
H46
C082
C083
C092
CD93
10141 K33 10147 1<24 1<27 C21 C~l K71 1<67 1(23
J152 F'11'10 M!I12 F'029 Fn15 F016 FU19 You VOla 'ana
r049 F'lU 1109 J406 J022 roll ,u20 Y055 X)()(x ::2151
* XXl(X "'269 xxxx xxxx xxxx XXX)( YOt5 xxxx .xxx
r054 xxxx 1110 xxxx xxxx xxxx xXXX YO'8 Xl(XX hxx
H48 1<67 10146
F'038 '013 W266
r039 xxX)( W261
r040 xxxx C194
J293 XXX X C195
1147
J 4 05
J278
J2J1
C280
10
H47
C21 1<26 C21 K35 C21 1<23 H46 K33 H46 H46
W048 Jo7J W261 I1(.
~I
.. 20V
ISO
J...
100
1°":>
221
-20
t
100
COI/.I~.
+80'1.
29
- lo?,.
./VI/'
I~O
7
NOTES:
-l
I
CD
I.
UNLESS OTHERWISE SPECIFIEO:
ALL RESISTANCES ARE IN OHMS.
ALL CAPACITA'ICES ARE IN PF.
ALL R£SISTf)qS ARE 1/4 W, 1: 5%,
ALL CAPACiTOPS ARE ~ 20"'•.
~
REFERENCE OQAWINGS
ASSE"niLY ',(":>6S201
(lOArn>
:~.·.1.l<..>00
Discriminator, Type BDM
S
LINE RECEIVER, TYPE BGM
This card contains three receiver circuits similar to 3000 type receivers.
These circuits
are self terminating and the input wires cannot be reversed to achieve a logical inversion.
The circuits on this card are non- inverting and receive data and signals from the disk units.
0')
o
l.\.:)
co
o
o
o
o
~~
lJI
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C)
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RU
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3.91<
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.,.
i
~~
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.
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-ZOV
[]
?,,'K
:> ..
P4A
l.2. ...
1
R6A
-Z.O'l
5"
il.OV ~
-=
CIS
-tOv
+
RIZB
TP- Co
~
-2.0V
~ ~ :,
11
+
C'C
-::-2.0v
"
• ,
""..
-=
,,
".~
~
~
:Ol
~ u-o
~~~~'f
-UN
'"
II
T"'8
-=
-=
5 .. 0
Ycil. WT
UNLESS OTHERWISE SPECIFIED:
ALL RESISTANCES ARE IN OHMS.
ALL CAPACITANCES ARE IN PF.
All RESISTORS ARE 1/4 W,:I: ~%,
ALL CAPACITORS ARE:!; 20'Y.,
REFERENCE DRAWINGS·
ASSf.'-40lY
:;2..570300
~o:.S7QIOO
::-
--
-to
+20V
Line Receiver, Type BaM
9
.ZO
4000
:t 30"
115
4000
~ 30"
R7
CR3
BOARD
I
~.,OC
-20V
NOTES:
-.J
•• C
5"
-=
2.
I
•• c f
c.1\4C
,4
I.
10
8
1
OSCILLATOR SHAPER, TYPE BFM
This circuit is a 5. 06 MHz oscillator and shaper with a square-wave output.
pulses should be adjusted for 100 nsec.
en
o
~
co
o
o
o
o
The negative
JI
JI
m
o
I:...:l
\.0
o
o
o
o
~
-tOY
.. to v
...
-zo v
rn
4.7K
~
j
<
RIO
1.51';'
~
"~~ rT~ III
' '.lll,u,m y i1Y~~.
}?i' " 1 4~ zl'
1
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J
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,0
_n
~
<
R3
R"
1.0 K
CR.
roM
I
I
CRt
2.0 I(
IS
-=-
RII
CRZ
1
TP-C
CRl
•
-ZDY
NOTES:
UNLESS OTHERWISE SPECIFIED:
ALL RESISTANCES ARE IN OHMS.
ALL CAPACITANCES ARE IN PF.
ALL RES!STORS ARE 1/4 W, ± ~P.4.
ALL
2.
CAPACITORS ARE +
ASSEMBL '\': ~25b"800
BOf.RD
-J
I
I--'
W
eo% -ZOOt.
REFERENCE DRAWINGS
:
52Sb~OOO
Oscillator Shaper, Type BFM
PULSE SHAPER, CONVERTER TYPE 6AFH
Each of the two circuits on this card converts an output of the discriminator to controller
voltage levels.
0')
o
N
co
o
o
o
o
JI
0)
1--'
JI
.. tOV
-20V
0
I:\:)
CO
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0
0
0
0
>-
R4A~I.8Id·w
47
RSA
~e.~K
~'
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4.71<
~
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~
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I
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.70
1
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Q8A
11801101
RZA
l
t--VVV
47
-=
~''I;;l'''C:UU
.,
-=
.R-iTP.a
J?3A
Q'A
3
5
t4S6UOO
t---t()C7A
11801100
CRIA
-=
-=:
-
+20
11
12
-aov
I
RIO~
~9K
RIB
?
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CRZ A
IL
?
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2·2iCi W
R'2.&
470
?
47
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I
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I
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1.11(
+20V
-=
.86
"80WZ
I
~~ IIr
R2B
14~
47
\,,"'-1''1 :)10"00
CR2 B
Z4,(,ZZOO
~Q7e
-=
..ry-
•
......
CJ1
IIa02100
,.D ...
-=
NOTES:
2.
~
-=
C.flJf
~~uf
~LH
'0
-20V
(He
'3
-J
I
-
-=-
I.
~
UNLESS OTHERWISE SPECIFIED:
ALL RESISTANCES ARE IN OHMS.
ALL CAPACITANCES ARE IN PF.
ALL RESISTORS ARE 114 W, :t ~ -/0,
ALL CAPACITORS ARE +60% -20%.
3.
UNLtSS OTI-IE~W'SE SP!ClFIED:
AL.L DIODES A~£ CONTROL DATA
Dli>AW1NG NUMBtR 11802900
POI..ORAIZ:'D
~-
REFERENCE DRAWINGS:
ASSEMBLY: 18225100.
BOARD: Ig200700.
Pulse Shaper. Converter Type 6AFH
7
a
9
POWER LOSS DETECTOR. TYPE 6AGH
This card contains a transmitter identical to the type HA19 (transistors Q9, Ql0 and Qll)
and a power loss detector (transistors Ql through Q8).
together in order for the transmitter to operate.
Pins 3 and 4 must be connected
A voltage drop of approximately 2 volts
in either the +20v or - 20v power supplies will disable the transmitter.
m
o
t\J
co
o
o
o
o
m
0
I:\,j
CO
n
0
0
0
0
'It
.tov
t
-.
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+to V
JI
R'U~ ft1~n
CRt
R~~
5'
2~5C;UOO
L"
r
CRI ..
t-I551500
13
8
.
C4
~~ZIISOS~ot
CIU'
-=
~QI
:P
JI
r-
10K
75 V,:
.~~ I"
R'
6,1K
·/O'~."/If'1)""" ..... ,,"
CRIS
ZASS3S00
14-1 14
CIUl
l.4501801
-=
B
0.&
Ftl!
110
R1
3.9K
CR4
fl60Z,IOO
2.4553500
A
-=
-::"
R8
I.&K
'V\I\;"
3 I
II
~
+zo~
RI~
-=
+2()V
C6
v-A
4 I
22.
.. -2.0V
CRII
1160t900
~
CRI1
IISOl.900
116102.00
-J
I
f-O
-J
2.
REFERENCE
~-2D1/
'3. A55E:MBLY RE.QUIRE:S TWO
LOCATIONS.
DRAWINGS;
ASSEMBLY I ~~ 55800
BOA~O
I e~~6000
~"*,-.20$
rlt1~-.;2o"
II
NOTES:
CARD
~
CRIO
11810tOO
RtO
UNLESS OTHERWISE SPECIFIED:
ALL RESISTANCES ARE IN OHMS.
ALL CAPACITANCES ARE IN PF.
ALL RESISTORS ARE 1/4 W, ±!5 •.4.
ALL CAPACITORS ARE: 20"1•.
.IUF
12.1
S.tK
I.
CI
I
.lUW
ct
C~9
-i
Power Loss Detector, Type 6AGH
•
I
-=
ttK
R7
I.SI(
-tOY
7
8
I
-J
1
~
00
INCREMENT ADDRESS
5-29
RECORD
START
T2.5
5- 19
T1
SET
5-19
T2
5-19
CLEAR
T1
T3
5-19
T1
T2
5-19
T2
5-19
T3
5-19
CLEAR
CLEAR
CLEAR
MARK
COUNTER
BLOCK
COUNTER
END
Tr~E
CONTROL
CONTROL
CONTROL
BLOCK
OF
5-41
T3
~
5-43
Ie LEA R
Ie OUN TE R
END
j
OF
BLOCK
I 5-41
T2.5:0
TI
COUNTER
I" L
--;. C
T3
~
<:0
o
Ul
CONTROL
5-19
GENERATE 100
T2
"IS END
IAU
OF
PULSE
ENABLE
BITS
6-10 OF
LO\lolERi
ADDR
o
o
o
TO
DATA
5-17
BLOCK
m
o
T3
5-19
CLEAR
CVLINDER
BUS
I
LO~D
ENABLE
COUNTER
5-11
I
TO
THE
5-17
ILOAD
I --;.
5-17
AU I
AU
T3
5-17
OJ
o
~
CD
o
o
o
o
LOAD ADDRESS
Cf)
START
A1 30/A131~
A 1 30/ A 1 3 1~ES
SE T ?
~/
/NO
NO
5-17
5-17
5 17
CLEAR
LOAD
UPPER
CLEAR
LO~ER
UPPER
ADDRESS
ADDRESS
ADDRESS
REGISTER
REGISTER
REGISTER
5-3
5-5
5- 3
5-5
5- 13
5 - 31
CHANNEL
BUSY
ADDRESS
REGISTER
-l
I
......
CD
,,»Y~E~S~_________________________________________
WRITE HEADER
5-19
5-25
5-15
5-15
-.J
I
t\j
PUSH
SEEK
SWITCH
o
SET
MANUAL
SET
INDEX
SET
INDEX
1
1
2
5-15
CLEAR
INDEX
BYTE
BIT
TIME
5-21
SET
INDEX
T2
5-21
SET
WRITE
HEADER
5-21
SET
SECTOR
Tl
5-21
SET
SECTOR
3
5-21
5-23
T2 __ Tl
SEND ERASE
WRITE ENABLE
AND CONTROL
SELECT TO DRIVE
5-23
WRITE CLOCKI
BITS. SYNC
PATTERN
232 BITS
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20238200 32348
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60290000
A
SECTION 10
EQUATION SUMMARY
).
PAGE
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14
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10 I 11
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A201
A211
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15 I 13
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15 I 14
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15 I 14
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3 I
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5
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PAGE
8
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9
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14
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PAGE
62
J183aJ278 w254.
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2
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11 I 12
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+GND
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PAGE
65
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CO• •ENT SHEET
MANUAL TITLE
CDC FA 7 05A Mass Storage Controller
Customer Engineering Manual
PUBLICATION NO. _6_0_2_9_0_0_0_0_ _ _ __
FROM:
REVISION _ _ _
S_ _ __
NAME: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ __
BUSINESS ____________________________________
ADDRE~:
NO POSTAGE STAMP NECESSARY IF MAILED IN U. S. A.
FOLD ON DOTTED LINES AND STAPLE
STAPLE
STAPLE
FOLD
fOLD
--------------------------------------------~
fiRST CLASS
PERMIT NO. 8241
MINNEAPOLIS. MINN.
BUSINESS IEPLY MAIL
NO POSTAGE STAMP NECESSARY If MAILED IN U.S.A.
POSTAGE WILL BE PAID BY
CONTROL DATA CORPORATION
Publications and Graphics Division
ARH219
4201 North Lexington Avenue
Saint Paul, Minnesota 55112
fOLD
FOLD
~
:;~: ~:}~!?~i?~{:~ rI~tfI:t\ ~ t{: ~ t~ ~ r~ ~t ~ t~ t~ )t ~ ~ ~ (tj~:t )ji~ ~ti~ft }~
CONTROL DATA
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IT
CUT OUT FOR USE AS LOOSE -LEAF BINDER TITLE TAB
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CONTROL DATA
___________
(' 0 F-,'
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0 _____
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8100 34th AVE. SO~. MINNEAPOLIS. MINN. 55440
LlTtj0INU.S.A.
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