LETTER TO (Sanitized) FROM (Sanitized)
Document Type:
Collection:
Document Number (FOIA) /ESDN (CREST):
CIA-RDP66B00728R000100170001-0
Release Decision:
RIPPUB
Original Classification:
K
Document Page Count:
53
Document Creation Date:
December 20, 2016
Document Release Date:
June 28, 2006
Sequence Number:
1
Case Number:
Publication Date:
March 19, 1963
Content Type:
REPORT
File:
Attachment | Size |
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Body:
F
HANDLIVG 9040-63-564
Copy No. 7 ?
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(!,01
STATINTL TO:
STATI NTL
STATI NTL
COPY 1,9F1,
19 March 1963
In accordance with Item A.9, paragraph (d), enclosed
are three (3) copies of the reports listed below:
1. "Report of Low Temperature Test on Pan Subsystem
Unit No. 1," dated 14 February 1963.
2. "Report of Thermal Altitude Test on Pan Subsystem
Unit No. 2," dated 28 January 1963.
Very truly yours,
DJ: cm
Enclosures (6)
CC:
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ABSTRACT
The Pan Subsystem was subjected to vacuum
as itieCiried in QTP #49993. In addition to the
direct requirements Of the .thermal altitude test
procedure, tests were conducted to gather data
on ,the subsystem's tempe/ature rise, heat radia-
.tion, corona and lorig term vacuum effects on
comprehts.
The subsystem successfully endured 96 hours
of vacuum and transported a full spool of film
(approximately 7000 feet)?
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ADMINISTRATIVE DATA
The purpose of this test was to establish the endurance capabilities
of the subsystem under vacuum conditions.
Serial No.: 9040-2
Quantitiy of Items Tested: 1
Date Test Completed i 28 January 1963
Test Conducted by: Project 9040 test personnel
4
Disposition of Specimen: Use for additional tests.
Refurbish as required prior
to delivery to customer
.Reference Documents:
43961 Specification for Pan and S/I
Subsystems
49977 qualification Test Specification,
Pan Subsystem
.49993 __Qualification Test Preceddre; Pan
Subsystem
Environmental Test Specification
Electrical Schematic, Overall
:Equipment
Assembly Drawing, Main Assembly
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FACTUAL DATA
Test Procedure:
The thermal altitude test was conducted in accordance with QTP
#49993. A copy of this procedure, with completed data sheets. is
included in this report.
The subsystem was installed in the thermal jacket as shown in
Figures 1 and 2 and placed in the vacuum chamber, A reflector stow
and cell pinning test was performed prior to evacuation_
The sgsystem was operated at 700 + 10oF ambient at pressures of
10-3 to 10 mm hg. The unit was placed in the OPERATE mode every
ninety minutes and operated for a time duration or number of frames
specified in the test procedure. The time duration for each turn-on
varied from a single 16 frame burst to twenty minutes of continuous
operation. At least half of the operation was at maximum V/h.
Periods of both stereo and monoscopic operation were included and
operation at all values of roll-steering was performed. Photographic
data was taken onlyduring monoscopic, zero roll steer angle operation.
The following tests were conducted in additiOn to the test require-
ments of QTP #49993.
Subsystem Temperature Monitoring:
Temperature sensors installed in the subsystem (shown in
Figure 3) were monitored once every minute during each operate period
and approximately once every 15 minutes throughout the entire 96
hours .test perLod. 4
Corona Test:
A photo-multiplier type-COrOna'Was positioned in the film
transport area and-Its/ output was recorded during subbystem operation.
Thermal Blanket Temperature Test:
- - -
-.Thermal blanket.temperatdres -weie Monitored to indicate
radiation from the subsystem while under vacuum conditions.
Additional Functional 'Ili Tests:
The following TM points were monitored in addition to those
specified in QTP #49993:
a. Cycle start
b. DRT error signal
c. Light detector (corona)
d. Pan fintage
e. Roll steering
Included in this report are curves and data relating to
i the additional engineering tests as well as the direct requirements
of the thermal altitude test procedure.
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Test Results:
No degradation of performance occured as a direct result of prolonged
operation in vacuum.
There were some instances of DRT equipment and operator malfunctions
but these were temporary and did not disturb the test environment.
A section of damaged film passed through the transport causing
a temporary non-standard film metering condition but this was self corrected
'hen the section of defective film passed.
After prolonged operation at maximum V/h, the scan servo exhibited
a tendency of insufficient latch time, however, operation on subsequent
subsystem operate periods was normal.
One of the data block bits signifying roll steering angle appeared
to be intermittent.
Engineering Evaluation:
Operation of the Pan Subsystem for 96 hours under hard vacuum
conditions has demonstrated the subeystem's ability to operate and
transport a full spool of film as soecified in QT? #49993.
Operations in the Stereo mode were conducted without malfunctions.
However, during one run, a lead became disconnected from the console patch
-panel causing the TM to indicate no Stereo operation.
4
, I
The roll steering control'and drive' operated correctly as indicated
by TM output signal!. However, an intermittent operating microswitch in
the roll steering mechanism caused errors in the data block roll steering
angle indications. . A microswitch design change has been initiated.
Film tracking problems, causing film spoilage, were believed
caused by incorrect alignment between the platen and the film transport
assembly.: It is anticipated that investigation, now in progress, in -
this area will correct these conditions. , The recovery of the transport
system indicates that the subsystem can withstand considerable abuse
and still function normally.
Fogging occured repeatedly throughout the test. Investigations of
/the data block, film handling during processing, and corona during operation
are being conducted to determine the cause. Additional vacuum tests,
with the data block relocated outside the platen area as a self contained
package; have indicated some improvement. The degree of improvement will
be determined from the results of further testing, using data block
readout equipment, to establish data block compatability.
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Corona indications occured during operate periods 21 through 27
and 31 through 35. Film analysis revealed that corona and data block
fogging appeared in the same general area. During a previous test, a glow
was observed between the edge of the film and the spool. This glow is
believed to have caused the edge fogging (approximately .030 in width)
observed at the edge of the film.
To determine the cause of fogging, additional engineering
tests are being planned in conjunction with 24 operate periods in a hard
vacuum during the cold window test. Corrective action to be taken, if
necessary, ts as follows:
a. The film transport system rollers will be
coated with "Anti-stat" (an anti corona
substance) which has been effective in
similar conditions.
h. Film will be transported, utilizing the
new data block design.
c. Film will be transported during various
vacuum levels to determine ctitical corona
areas.
Pages 32 and 33 show plots of 14 temperature sensors representing
subsystem temperature variations throughout the entire endurance run,
Analysis of the data revealed the maximum temperature rise occured
during the continuous operate periods. The platen center area, sensor
#15 (A18.42) indicated the Largest temperature rise of 6,5?F at operate
period 18. This rise was a result,of radiation trom the film transport
amplifiers, mechanical friction of the shutter assembly and motor device
mounted at the end of the platen Temperature rise of sensor #14 (A21-
A5), which_isjlooated,:in the-filmItranspOrt:area, was 5?F. This rise:
'ioccured::dUrinOheMinimum ratherthan;,the:,maximum V/h run due to the
fact:that:the_three:,amplifiers, mounted;onthisstructure, dissapate more
pOWer*roWthe:outputtrinsistora.at:lOwhthan at high V/h operation.
The remaining amplifiers, located niaraenior:#2 ,(A19) will see the effects
of power dissipated from the amplifiers, friction of IMC cam and follower,
and the trunnion bearings.::
In -general, the temperature rise at maximum V/h was higher than at
minimum V/h. This occurs because the total power input to the subsystem
increases with V/h. However, as noted Previously, in localized areas near
the amplifiers, the temperature rise may be higher at minimum V/h due to
the power distribution difference between amplifiers and load. The temperature
rise of sensor #12 was caused by mechanical friction and power in the lens
torque motor.'
All remaining sensors appeared to follow the same trend as to time of
temperature rise. Sensors #4 add #5, mounted at the top and bottom of the
cell assembly, varied within the + 10 sensor accuracy range preventing
a positive statement of temperature variation.
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Page 34 shows the chamber pressure variations throughout the
96 hour test run. Chamber pressure increased each time that film was trans-
ported indicating outgassing of the film during each operate period.
Pressure difference occured between the inside of the subsystem and
the film transport area during sustained operating periods. If corona is
enhanced by oiitgassing, these pressure differences would tend to support
the existence ofcorona.
TM information during this test was invaluable. The pan footage
indicator on the take-up spool indicated a reduction of film expended
would be necessary to avoid running out of film before the test run was
completed. Functional TM-on roll steering indicated that the system
had performed the operation when a switch adjustment had failed to produce
an indication on the data block.
Due to the film rationing problem we fell 58 frames short of trans-
porting 1610 frames atmaximum V/h. It was decided at that time, that
the 96 hour operation was more important than 58 frames out of the 3220
tOtal.
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QA Evaluation:
The Pan Subsystem was subjected to vacuum as specified in
QTP #49993. A total of 3,220 frames of film were transported during
64 operating periods in a 10-4 mm.hg.vatuum. Analysis of the film
produced the following results:
Torn Film:
Definition: Any break in the film is considered a tear.
Total Count:
11 frames
Wrinkled Film:
Definition: Any irregularity on the surface of the film.
Total Count:
186 frames
Short Frames:
Definition: Any frame grossly undersized
Total Count:
3 frames
Clear Frames:_
Definition: Frames where no fogging was discernible
to the naked eye.
Total Count:
34 frames
Static Trees":
Definition: Static discharge impressions on the film
resembling a tree.
Total Count:
243 frames
Fogging:
Definition: Patches of struck film ranging in density
from barely discemnibie to high.density and
ranging in size from V to greater than
6 inches.
Total Count:
3186 frames
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Roll 66-02-15
Operate Period 1 - Frame I
t
Operate Period 4 - Frame 18
Operate Period Test Performed Results Remarks
#1
Thru focus
nom V/h, shift
platen + ,004
out of focus
400 - 500 ok,
550 - 600
operate error
#2 Thru focus No apparent Target drive sync
max V/h, shift focal shift incompatible with
,platen + .004 with operation camera
out of focus
#3 Thru focus min. No apparent
V/h, shift focal shift
platen + .004 with time
out of focus
#4 Thru focus max No apparent
V/h, shift platen focal shift
+ .004 out of focus, with time
Roll Summary:
This roll represents the first 6 hours of the endurance run and
indicates low resolution,due partly to the .fact that exposure was not
optimum. The target drive testequipmentdid not come to the proper
speed at the maximum V/h condition. There. was evidence of fogging
at the edge of the film near the index light. - This is believed to
be caused by electrical discharge between the edge of the film and
the spool. Visual indications have been observed during previous
tests which were conducted under similar conditions. Repetitive
fogging also ocCured in the area adjacent to the data block which
'could be the result of data block light-up. Testing with the relocated
data block should produce more evidence as to whether this is the
actual cause of fogging in this area. There were no tracking problems
during this period of-uperation.
4
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Roll 66-02-14
Operate Period 4 . Frame 9
to
Operate Period 9 Frame 86
Operate Period Test Performed
Results Remarks
#4 Thru focus max V/h, Satisfactory
Shift Platen + .004
out of focus
#5
#6
#7
#8
25X1
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15 minute ,operate at Unsatisfactory
noni:V/h photography at
platen positions8 & 2
-Roll Summary:
-
-Ir the_non-photojtortion of the operate period, data block light
up for Stereo operation and roll steering was correct for the commands
_given.- Film tracking appeared to be malfunctioning, but not to the extent
where it would effect the photographic format. During the first 15 minute
operate period, in which targets were to be exposed for 7.1/2 minutes at position #8,
there was an operator error. The DRT aperture was not opened to the light
source, resulting in no exposures until the error was discovered. A factory
._,splice in the film passed through the platen without difficulty., The
same edge fog which was present in the last film roll was observed.
Data Block Light Up
D2 - ON
D14 - OFF
No targets exposed
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Roll 66-0243
Operate Period 9-Frame 87
to
Operate Period 9-Frame 308
Operate Period Test Performed Results Remarks
#9 15 min. operate
nom V/h, photo at
platen positions
8 and 2
Unsatisfactory No visible targets
Ref. Roll Summary
66-02-11
Roll Summary:
This roll is a continuation of the film transported in the 15 minute
operate period described in 66-02-14. Fogging was observed around the data
block and edge of film out of format.
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Roll 66-02-12
Operate Period 8 - Frame 309
to
Operate Period 10 - Frame 17
Operate Period
Test Performed
Results
'Remarks
#9
15 min operate
at nom. V/h with
photo at platen
positions 8 and 2
Unsatisfactory
No targets
Ref. Roll Summary
66-02-11
#10
Max. V/h photo run
Unsatisfactory
No targets
Ref. Roll Summary
66-02..11
Roll Summary:
Film tracking remained satisfactory. There was a temporary malfunction
in the data block. This was attributed tc? the fact that the TM ground was
disconnected at the poftsole patch panel.
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Roll 66-02-11
Operate Period 10 - Frame 18
to
Operate Period 17 - Frame 22
Operate Period Test Performed
Max. V/h, 16 frames pos.
N.D.6Y frames pos.2
Min. V/h, 16 frames pos 8
N.D.64, 16 frames p08.2
Thru focus, max. V/h
450 - 600 pos 8 N.D. 4,
shift platen + .004
out of focus
Results
g, Unsatisfactory
, Unsatisfactory
Unsatisfactory
Remarks
No visible targets'.
No targets,
slight fogging
No targets,
slight fogging
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#17 Tru focus nom. V/h,
16 frames at pos. 8
16 frames at pos,, 14
Satisfactory
:Targets visible
No focus change
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66-02-11 (Continued)
Roll Summary:
A Data block li2ht-un malfunction occuredi
which actuates t e light up puise ror LI1113 La ?
Adijusting the 4 ganged micro switches has tiroved impractical. A re-
design has been initiated to correct this deficiency. All other TM
and tracking operations appeared to be normal,. Corona and static
discharge occured under questionable circumstances. Additional tests
are being formulated for verification.
It was in the 17th operate period that the DRT aperature was
discovered closed and corrected. Targets are now being photographed.
41
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Roll 66-02-10
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Operate Period 17 - Frame 23
to
Operate Period 18 - Frame 226
Operate Period Test Performed Results. Remarks
4 #17 (con't) Thru focus nom. V/h, Satisfactory
16 frames at pos. 8
16 frames at pos 14
#18 Max, V/h photo run, Passed
twenty min. operation 1 E.K. splice
896 frames Satisfactory, targets visible
pos. 8 & 14 DRT occasionally
out of sync result-
ing in loss of target
Roll Summary:
Targets were exposed and photographed during the 20 minute operate mode at
maximum V/h. During this period the second factory splice was passed through the
system. There was difficulty with target drive sync time resulting in an .
occasional loss of targets. At the conclusion of this operate period, 2,500
feet of film had been transported satisfactorily.
41
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Roll 66-02-09
Operate Period 18 - Frame 227
to
Operate Period 18 - Frame 468
Operate Period Test Performed Results Remarks
#18 Continued from Satisfactory No targets after
66-02-10 frame 333. Electrical
discharge patterns
appeared more frequently.
Roll Summary:
The loss of targets was the result of malfunctioning test equipment
caused by continuous operation in a hard vacuum. Because of the motor temperature
rise the test equipment had to be turned off to allow the motor to return to
operating temperature before taking more target photographs. There was
pvidence of electrical discharge patterns and fogging in the data block area.
The fogging was caused by vertical film motion in the data block area, which was
not part of the normal photographic format during the time of the light up
pulse. This problem has been corrected by relocating the data block outside
the platen area. Tests have been run on the new design and have satisfactorily
corrected this problem.
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Roll 66-02-08
Operate Period 18 - Frame 469
to
Operate Period 18 - Frame 720
Operate Period Test Performed Results Remarks
#18 Continued from Unsatisfactory
66-02-09 Section of film torn
at frame 494
Edge wrinkled
between 498-508,
513-520 and 641-642
Extreme wrinkles at
frames 673-672
Roll Summary:
A tracking problem occured at maximum V/h and resulted in severe
tearing of the film. The system continued transporting film at the
max. V/h condition adjusting and correcting for the torn film and
wrinkled edges. It's apparent that the ability to recover from this
condition was an achievement in itself. It was noted that TM indicated
a tracking problem and returned to normal after completion of the max.
V/h run. At this point we had transported 3,784 feet of the 7000
foot film supply.
4
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Operate Period 18 - Frame 721
to
Operate Period 19 - Frame 896
Operate Period Test Performed Results Remarks
#18 Continued from Unsatisfactory
66-02-08
Edge wrinkled
to 804 also
, 820-896
#19 Min. V/h, photo Targets available,
Pos. 8 & 14 Rather bad fogging
around data block area.
Roll Summary:
The previous three rolls (approximately 1500 feet) were in operation
under maximum V/h conditions. Film transport recovered and returned to
normal with a loss of about 60 feet of film. :Target photography was
resumed with all test systems operating satisfactorily.
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Roll 66-02-06
Operate Period 20 - Frame 1
to 4
Operate Perlod '25 - Frame *6
Operate Period Test Performed
#20 Max. V/h functional
operation.
Results
Remarks 25X1
NRO
Satisfactory Film free of wrinkle
#22
Thru focus pos. 8
max. V/h, shift
platen + .004 out of
fnrun
Unsatisfactory
DU not operating
during most of run.25x1
NRO
P25 Thru focus nom. satisfactory
V/h, shift platen
.004 out of focus
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Some fogging noted
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Roll 66-02-06 (continued)
Roll Summary:
During this roll, it became necessary to deviate from the normal
operating period sequence. The test equipment was repaired and
operation resumed following operate period #30. Roll steering, stereo,
and data block TM indications were satisfactory. There were no
indications of tracking problems during this roll. Test equipment
repairs were temporary and as the equipment failure would effect
only a small portion of the remaining test, the results were considered
insignificant compared to the endurance capabilities of the subsystem.
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Roll 66-02-05
Operate Period 25 - Frame 7
to
Operate Period 27 - Frame 32
Operate Period Test Performed Results
#25 Thru focus now. V/h,
shift platen + .004
out of focus
#26 Functional operation,
max. V/h
Remarks
Satisfactory Some fogging noted
Satisfactory Some fogging in data
block area
#27 15 min operate, min. V/h,
71/2 min. pos 8
71/2 min. pos 2
Some fogging in data
block area. Target
not operating properly
Roll Sumnary:
Recovery from the tracking problem which occured previously, was
verified in this roll. Data block fogging was present and test equipment
limitations continued to exist throughout this roll. Continuous operation
for 15 minutes at minimum V/h was initiated during this time. 486 feet
of film had been transported without difficulty, Normal test sequence
was resumed for the remaining operations.
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Roll 66-02-04
Operate Period 27 -
to
Operate Period 28 -
Operate Period Test Performed
#27 15 min. operate,
min. V/h,
7k min pos. 8
711 min pos. 2
#28 32 frames functional
operation, max V/h,
Frame 185
Frame 368
Results
Satisfactory
Remarks
Some fogging in data
block area. Target
drive not operating
properly, subsystem OK
Roll Summary:
15 minute continuous operation was completed satisfactorily.
'Operate periods, which required photographic operation at max. V/h,
were changed to nominal photographic operation under the same operate
conditions.
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Roll 66-62-03 (continuea)
Operate Period
#40
Test Performed
Results
Remarks
25X1
NRO
#41 16 frames photography, Satisfactory
nom. V/h, reflector
vertical, pos. 8
Roll Summary:
After 46 hours of operation, TM indications showed approximately
5,900 feet of film had been transported to the take up spool.
Examination of the amount of film remaining on the supply spool
revealed that film would be completely transported before the end of
the 96 hour endurance run. Therefore, a change in the number of frames
transported during each operate period was required to insure that a
sufficient quantitiy of film would be available for the remainder of the
test.
All functional systems have been operating satisfactorily with the
exceptions noted previously.
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Operate Period
Roll 66-02-02
Operate Period 41 - Frame 14
to
Operate Period 52 - Frame 10
Test Performed 4 Results
#41 Thru focus pos. 8, Unsatisfactory
nom V/h, shift
platen + .004 out
of focus
#42 Functional operate,
max V/h
#43
#44
#45
Thru focus pos. 8,
min. V/h, shift
platen + .004 out
of focus .
Functional operate,
max. V/h
Satisfactory
6 Satisfactory
Satisfactory
Remarks
Target drive
smear
Data block
light up OK
Out of focus
below 550
Data block
25X1
light up OK NRO
#49
.Thru focus pos. 8,
noM V/h, shift
platen - .004 out of
focus
Satisfactory
Ont.of focus
below 550
#50
Thru focus pos. 8,
nom VA, shift
plateni_ .004 out
of focus
Satisfactory
Out of focus
below 550
#51
Thru focus pos. 8,
min V/h, shift platen
Satisfactory
Out of focus
below 550
- .004 ou t of focus
#52
Thru focus pos. 8,
nom V/h, shift
platen _ .004 out
of focus
Satisfactory
Out of focus
below 550
Approved For Release
2007/03/28 : CIA-RDP66600728R000100170001-0
ur*: VIC PI r717-- r. I ? .0..
SPECIAL HANDLING
Approved (or Release agEtkr4pP66B0628R00010011g002?0 of 34
Roll 66-02-02 (Continued)
Roll Summary:
Target drive smear and data block light up problems were covered
in previous summaries. Tracking was satisfactory, however fogging still
persisted in the data block areas.
4
Approved For Release ?LT-pp
cDrellATA
VVRIDPS6600728R000100170001-0
,
MINA II r. AP,
Approved F Release /:01
Roll 66-02-01
8R00010004100170of 34
Operate Period 52 - Frame 11
to
Operate Period 61 - Frame 16
Operate Period Test Performed
#52 Thru focus pos. 8,
nom V/h, shift
platen -.004 out
of focus
#53
#54
#55
#56
Results
Satisfactory
Remarks
Out of focus
below 550
25X1
NRO
ru focus Pos.-A
om V/h, shift
ten 7.:-; out o
ocus
-Functioni/-operate,
max V/h, nOm photo
tie factor
Data block*
lamps OK
#59.-
Thru focus poa. 8,
min V/h, shift
platen -.004 out of
focus
Satisfactory
Data block
below 550
#60
Functional operate,
max V/h, nom photo
Satisfactory
Data block
lamps OK
#61
Thru focus Pos. 8,
shift platen +.004
out of focus
Satisfactory
Out of focus
below 550
Approved For Release 200
spEci
rtfUND66600728R000100170001-0
--FrAn!
SPECIAL
Approved or Release 200
B1 7R0001 &Pismo of 34
Roll 66-02-01 (Continued)
Operate Period Test Performed
#62 Thru focus pos. 8,
nom V/h, shift platen
:1-.008 out of focus
#63
#64
Results
Remarks
Satisfactory Out of focus
above 650
#65 Thru focus pos. 8,
shift platen -.008
out of focus
Unsatisfactory
Roll Summary:
Film tracking during this roll was satisfactory. Except!
Film supply
empty, 96
hour test
completed
25X1
all data blOCK Lamps were n
viemacitom vcae.v..
#63 and #64 were changed to non-photo runs to comserve film for a final
thru focus tun after the 96 hour test period was concluded. During this
. run, the film supply ran but ending the 'test.
Approved For Release 2007/
6c.?
ECRE4h
c n re'll A i I ? lk NV... ?
B00728R000100170001-0
NRO
25X1
NRO
Approved For lelease 2007/03/28 :Sk-RDP66B00728R000100170001-0
.?
}:?,t1i.
?
MkA
SENSOR START 5 10
LOCATIONS 6 7 5 9 1
#2
A16
70?
#-3
A 19
700
#4
A5A1
70?
#5
A5A2
700
#7
A23
. 70
#8
A24
70?
#9
A25
70
#10
A30
700
Approved For Releas3rtff63tiA-RDP661300728R000100170001-0
15 20 29 28 35 40 45
12 !3 14 16 17 18 19
2i 22 23 24 3225 26 2"
I I
33 34 36 37 38 39
50
55
41 42 4344 46 47 48 49 5; 5 53 54 56 5T 58 59
60
_ ? ? di., II 1.j
Page 32 of 34
61 6L 63 64
END
PEAK HOURLY AVER ;E ERATURE OF PAN SYSTEM TETERATURE SENSORS
Approved For Release 2007/03/28 : CIA-RDP66600728R000100170001-0
flL
SENSOR
LOCATIONS
#11
A26
700
#12
A27
700
#13
A28
70?
#14
A21A5
70o
#15
Al8A2
70?
START
5
10
Approved For Release 2007/03/28 : CIA-RDP66600728R000100170001-0
15
20
OPERATE PERIODS
29
28
35
40
45
50
gar-617,Pae 3 or 34
JALU A
55
60
L
3 4
7
Q7
234
37873
4
'
5 i6
I
3-
3 i3334
37
38 39
4
1 4243
4
46
47 48
49
5
5
5
54
56
5
52
5
6,
G2
63
4
IMMO
=
in
ii
M
.?
Adll
---i
?r
--
4-
-
r--,
-r-
?
-i---
ow
,---,?.?
I':
H
-
i
1
Alimmormw
,
1
--
AMR.
""lines?
sommiimmt
_
MMIONONIMIN
1
1
,
,
will
1
1
1
4
1
III
IF
11111.11iirm
"UI
11ft
Iii
Ash.
41111111.1.111111
MEP
111
1
__u1II
PEAK HOURLY AVERAGE TEMPERATURE OF PAN SYSTEM TEMPERATURE SENSORS
NOTE: Each Operate Period = 90 Min.
Approved For Release 2007/03/28 : CIA-RDP66600728R000100170001-0
SPECIAL HAN DUNG
Approved For Release 2007/03/28 : CIA-RDP66600728R000100170001-0
.TMP NO.1
2
0
?C2
0
0
?1
)31.
UNIT NO.
i
_
1 111
Ili -'-
/
-4o + tvi
'0..711\11 N 4
ON 'NI NO'D
IX
0 ul
?-
ew Z400
TA.Y E.-0 P
2
?P5,7 5-TTA's:,12z,
Ait,
5o 4 izeF
J i 0 Z - ci
I TM T c2
3
P.5.7, 5j5t4;jrz.5
A 09
50?? +12.o F.
i s
TMT
4
5cAN BoT FWD
A5 A, I
50?--.- + IzeF
.TM TR
eL
MA TR
5
5CA14 TOP FIND
AS AZ
5cf-.- 4 tzo`F
REFLECTOR
A9 RT I
-40?-4- +120?F
7.
5t,1Z.400
7
P,S.-1. 5-(A:Tal?
A23
So?-", +12d p
Y
TR
8
PST, .1-it'olps
Az4
X
5
P,s,T. 5Ilik3,`"Tc'
A
I I
ID.ST5TA-1-7--
, U
i
la
RS7r, Zroln--)
A-Z7
)5
PST. 21-1'1_9`)t
AZ8
5
14
5upPL-1, 5TR
AI A,C---,
R
IS
PLA,TE1,1 c.i.iT
A i6 AZ?
1G
c'suTTAg:?-"4-rk"
AZ9
. . . ) 1 ?.: , AL-
L__
TN, -r R
rio
crta,R.%'-?4?::e
41?J?)U
8 VS
14 ,33j 35).).1 "0
8
50 div.
16 frames j 0100001010
8
16 frames 0100001110 '
_ ,
;WIC-
0110001100
8
7?3 NOS
D110010001
2
7-1,
; C,Q5 ;3'3\ ; bo
'
ti
!
-
P:-.) ? 35
?
?
;
I ;
fl.;;
n;
35/V;3
z:?
S.
C>E-- ).`-? `A q-"-ICE-
Approved For Release 2007/03/28 : CIA-RDP66B00T248R0M 1A308-1-463
Approved ForRelease 2007/03/28 : CIA-RDP66600728R000100170001-0
I
OPERATE! V/h REFL
,
PERIOD i FRAMES RAMP MODE
H
28 32 1 off 1
(
4 4
29 32 6cyc, i
I
;
30 32 1 cyc
- -t
25X1
NRO
31 1.6 10
?
32
33
34
35
U -
cyc I
1 cyc !
4-
of f
off ;
off
-
off
cyc
6
t
10
39
4C,
40 .
41
16
1
10
cyc
cyc
1 cyc
6
off
PHOTO
- OPERATION
I
I TATARGET CLOCK
TIME
TARGET !
thru focus
450 to 600
thru focus
450 to6600
thru focusr
450 to 600
thru focus
450 to 600
? CYCLE
COUNT
!:-CODE f POSITION START FINISH( START, FINISH
-
I
0100001010
0011001000
0110001100
0011001000
1,50
1 8
50 diy?,,....tnc ,!-?Q '4\
_
8
50 div. inc )-itkA
4
8
,50 div. inc (-
r3 3cj
,
(-0
. k -
' t'lk -1545 't
\ \
8
div. inc -3--t4; tU3
thru focus
450 to 600 0100001010 50 div. inc
8
31 c3
(s) 7-i-s?:27\ !)
Approved For Release 2007/03/28 : CIA-RDP661300724R0N 00100173_0113, Q 0)) \ s_vek
4111111111111111110
OPERATE
PERIOD FRAMES
42 16
43 lb
44 16
-.---
45 16
47
48
49
.463
50
51
52
ZI JO Vol
53
54
55
16
is
16
16
L6
16
16
16
16
16
Approved Fen-Release 2007/03/28: CIA-RDP66600728R000100170001-0
25X1
NRO
v/ h
RAMP
1
,,
I.
i
4--
t
I
1--
REFL
MODE'
off 1
1
off
off
? ,-
cyc
PHOTO
OPERATION
thru focus
450 to 600
;
1
---+
t
t
,
i
I
,
,
4
i'
1
10
1
6
1 ,
cyc
10
cyc
1.
1
cyc
thru focus
450 to 600
-
j
6
6
off.
off
off
10
6
off
6
1
cyc
cyc
10
cyc
CLOCK ? CYCLE
TARGET
TIME COUNT
DRIVE TARGET
CODE POSITION START FINISH START `. FINISH
P ck5C) i C3C13 3 -10c)c-1 i i \ 01
8 I -1
0110001100 50 div. inc 11C)Qt 1M \C3-1
*- *
67c- \"cn. r-5\ 31.4\:65
-
jV .V7)\
t ' ? t-
,
inc
8
0100001010
50 div.
0011001000
8
1
0110001100
8
0011001000
8
_
_
?
Approved For Release 2007/03/28 : CIA-RDP66600728R0000001-0
CI-3
(;;Y3-.5
30.4,3
Approved For-Release 2007/03/28 : CIA-RDP661300728R000100170001-0
OPERATE
f PERIOD
FRAMES
V/ h REFL
MODE
25X1
NRO
56
16
1 i 'cyc :
57
16
6 off
--
58
16
,
?4-
1
off
59
16
,
10 off
I.
60
16
1
off
61
16
6
off
62
16
6
off
63
0
off
64
0
off.
65 16
6
PHOTO
OPERATION OPERATION
rhru Focus
gp_f-.79e50.02
TARGET
DRIVE TARGET
CODE POSITION
0100001010
0 Non Photo
Thru Focus
6F es
Jog ,
0100001010
CLOCK CYCLE
TIME
START FINISH.
,
COUNT
START ; FINISH
0
?
rhru 'ROMs
Non Photo
16 vrames
0100001010
600
rorti vocus
16 Frames
0100001010
25X1
4
-
NRO
V%
???????
??
Thru 'ocus
_
0100001010
1150 - 5ocr
Approved For Release 2007/03/28 : CIA-RDP66600728R000100170001-0
3k:5410,-1
--SPE
Approved For Kelease 2007/03/2 .
SE
000100170001-0
TEST DATA SHEET
THERMAL ALTITUDE TEST
3 2 Test Equipment:
Eight Channel Recorder
Checkout Console
Dynamic Resolutioil Tester
41
?
QUAL(
VAR.
I
Serial No.
Calibration Due
3.4.1 V/h Adjusted Check
4.4.2.1 Cell scans Check
4.4.2.2 Film transports Check
4.4.2.3 Frame Count advances Check t'
4.4.2.4 Reflector cycles, stops , Check
in vertical
4.4.2.5 Target drive operates
4.4.2.6 Operate mode stops
Check
Check
at 16 frames
4.4.2.7 Interval mode shuts off to Check
Standby
5.1 V/h at 6,
Refl Sto ea, Uell F.Annefi , -,,-,:,,,, C.,:1-7I(' . .
: 5.5.1 Cell Pin Released TM 4 volts .: '- --.---. ,'"Check:
: . , : , ' ?..: ' :f k, .? .: :, ';\'?.: V . '-.. -';. :.'2, '.; 'Th..; ; . '';'''' , A.-:,'. '' i ' ' '
- 5.5.2 : Reflector Position TM shows Stow - Check
5.5.3 Cell Pin Released TM to 0 volts - Check
25X1
NRO
? 5.5.4 Stowed indicator on ?Check
?5.5.5 Stowed indicator out Check
5.5.6 Reflector stops in Stow Check
Cell pin,. engaged
?
6.4 Endurance test completed
6.5.2 Film evaluated,
Data Block correlates
Check
Check
Check
i II Test Procedure
9040 THERMAL ALTITUDE 49993
ed For Release 200M0/2?8,,,:-.CIA-RDP66B0
?"-Cr171171", 12
L'"Al(Prr
?
STATI NTL
Approved For e!ease 2007/0 00120k000100170001-0
4
Test Started
Test Ended
Test Engineer'
Q. A.
Witness
Witness
TITLE
THERMAL ALTITUDE
ed For Release 20071/ p : CIA-RDP66B0
(
Car OVrturt IKI" S:i.:, t 12 'f 12
Test Procedure
49993