ML20235J446
ML20235J446 | |
Person / Time | |
---|---|
Site: | Comanche Peak |
Issue date: | 01/11/1989 |
From: | WHITTAR INDUSTRIES, LTD. DBA WHITTAR STEEL STRIP |
To: | |
Shared Package | |
ML20235J128 | List: |
References | |
TR8822, TR8822-R01, TR8822-R1, NUDOCS 8902240278 | |
Download: ML20235J446 (49) | |
Text
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' February 17, 1989 TREG23 5 RKv. I 'll 2321 ;
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L.TR DESCRIPTION DATE AUTHORITY 0 bfk ISSJC l0QL/.f8 &, ' *l' [4T* 1 INCORPORATE ECO //59037 01-11-89
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- - % -" - g g,, g ELECTRONIC RESOURCES DIVISION Whittaker Corporation Test Enginee'r Date 1955 North Surveyor Avenue Simi Valley, California 93063 ---.._ h*. Y ___-- . .E ineer Date fo g Test Report, Demonstration P o ect g ee Date of Ili to Non IE. Isolation / (/ for RS-232C Serial D.ata Port Mfg. Enginee.- Date Code Ident. No. File No. TR0822. DOC Page 1 of 5 e g 4 g DUCK 050004 43 PDC '*-----___a--- - - ^^-^-- ' __ _ _ __ _ _._____ - - - - - - - -- ---- -
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APPENDICES i { R. Appendixe, A'- Drawings Appendixe. d - ITP-102, ' Rev. ' 2 Test - f rocedure and Test Data l
. ; Appendixe .C,-'St'one L Webster Calculation-16345-EE-231 ~ .Appendixe D - Rework instructions!
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0- - l' m' TR8922 REV. 1 ' ] N , < 'l 1.0- SCOPE. This document describesLthe procedures, test results.and' analysis ! completed to demonstrate.RS-232C; Port IE to Non 1E; isolation for. 1the Core: Cooling Monite?ing' System supp1'ied to Texas' Utilities '..,
, under Purcnase' Order CPF 1453-5 and Specificetlon "e323-MS-631A.
Ultimately the.2ntent was to demonstrate' compliance with IEEE std
;- (. 384-1977 4.5.3, Associate Circuits,,"They'shall bn. analyzed or- y ' tested to~ demonstrate that class.1E circuits are not degraded 3!
t belowlan acceptabic' level." The demonstration consisted of i l, ; subjecting one of the RS-232C Ports, J7, to a high energy fault i ' Ll- condition-and documenting susceptibility.of the Core Cooling. Monitor 1E' functions to the faulted condition. t 2.0 RELATED DOCUMENTS f' 2.1 112D003 . Wiring and Connection Diagram 2.2 1120004 Interface Board Schematic 2.3 112D005 Interface Doard, Core Cooling Monitor 2.4' 'IEEE'std. 304-1977, IEEE Standard Criteria'for Independence of Class 1E Equipment and Circuits. ( 2.5 Stone t Webster Calculation 16345-EE-231 Rev. O
; 2.6 ITF-102 1E to Non IE Isolation Test Procedure for Core Cooling Monitor RS-232C Port, Rav. 2 -{ , 87 Rework Instructiofis 3.0 EQUIPMENT TECTED i ! The Core Cooling Monitor System's interfac3 board (1120005) is s multipurpose module. One purpose is to provide isciation for the 4 RS-G32C Ports. Specific components providing the 1E tc Non IE I
isolation are integrated circuits 6N139, opte coupler, $4G6N, RS-238C driver and the DC-DC Converter DDC1212D, Figure 3-1. The J function of the isolation integrated circuits (IC's' are to act j I as ir,put current limiters thereby preventing any damage to the IE 1 i side; Isolatior; devices aru defined by IEEE std. 384-1977 1 6.1.F. 3, Input Cur +ent Limiters, " Devices which will limit the )j inuut current to en acceptable value under faulted conditions of the output qualify as isolation devices." The actual data port I resides on the OPU with the Interface board circuitry convarting I the ports from non isolated to iso 1&ted. .) l r>
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l t TR8822 REV. 1 > 4.0 ISOLATION TEST 1 The arrangement of test equipment and speciaen was as shown in j Figure 4 1 of the procedure (see Appendix.B). . The ability of the power supplies to deliver the required current was verified as discussed in Section 4.1 ef the test procedure. The supplies simulated the required f ault condition by closing St. The peak current value observed following Si closure was aiaproximately 40 > amps (Ref. 2.5). The CCM continued to perform its IE function l during and aft.er the test. As expected, ths RS-232C port associated with J7 was no longer functional. The interface mcdule was removed end inspected for damage. There was no vickble evidence of damage or heating however, diagnostic verification of the interface board revealed that the 6N139 opto r coupler and the 14'08N RS-232C driver were internally damaged as a
! result of the test. It was demonstrated that replacement of the defective components (coupler and driver) restored port , operability, Appendix D.
5.0 CD;JCLUSION Acceptance criteria as stated in paragraph 6.0 of ITP-102 "... retains ability to perform its safety related function by requiring as worse case, e system reset" was full'y satisfied. l The system reset was not required, CCM function continued without interruption and there was no evidence of solder splatter, artwork damage or component residue that could potentially disrupt system oneration. The CCM System Reset function merely allows the reinitialization of the system by means of pressing a reset button on the CCM front panel and does not affect system l isolation. The measured perturbation of 500 mV was deemed acceptable based on the system's ability to function without ; evidence of data corruption. In summary, the test demonstrated ' that the CCM circuitry hs presently designed provides the required 1E to Non IE isolation consistent with IEEE Std. 384 ' 1977. i i l 1 i i ! l f l l
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REV. 1 APPENDIX B
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ITP-102, Rev. 2, TEST PROCEDURE AND TEST DATA I
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Ll 1E to NON 1E ISOLATION TEST PROCEDURE I
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j 4 CORE' COOLING MONITOR RS-232C PORT I ry ^ i !
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{ PREPARED BY:_/ _ _ DATE: 1 MARK ADAMS, Engineer 1, .. REVIEWED BY d %.kI ~DATE:~'[ 4 0'
; ERRY [LALER, Project Engineer l
APPROVED BY: N DATE: I# RJy M rEis7 Q A Engineer #'
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Rev. # Date Changed $ Approved 9 5-19-88 Ne,w Issue gg I ~ t 7-22-88 clarify Test Procedure 7 9[ 2 10-04-88 Incorporate ECO #58812 l4 8 . o [ l
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. ITP-162 REV. E' , 1.0 SCOPE This' instruction established the procedure for testing IE to NON 1E isolation for high energy fault . conditions. The Core Cooling Monitor circuitry to be tested are the Serial Data Ports to the host computer.
2.0 RELATED DOCUMENTS 1120003 Wiring and Connectioi) Diagram
? ) 112D004 Interface Board Schematic 112D005- Interface Board, Core Cooling Monitor IEEE Standard 304-1977 Stone & Weoster Calculation 16345-EE-231, Rev. 0 3.0 EQUIPMENT LIST Test equipment shall be equal to or exceGd the following.
l . (' .3.1 Two Elgar Power Supplies, P/N 3001 >40 Amps
! 3.2 Elgar Oscillators, P/N 403V-3.3 Yokogawa Chart Recorder, M/N 8100 3.4 Digital Multimeter, accuracy .1%, range 0.00mV to 200VAC l 3.5 Current Shunt, accuracy 1.1%, range 9 to 50+ AMPS 3.6 Oscilloseche, range 10 Hz to 100 KHz.
3.7 Display Teriainal, capable of receiving 1200+ Baud input. 3.8 Eagle Glow Coils,as required to draw 40+ amps at 120VAC 10VAC 4.0 SET UP PROCEDURE 4.1 Set up 2 Elgar power supplies (model 3001) and i i oscillators in tandom, Follow instructions on the back of the power supplies. (Leave jumpers on). Set up to produce 120 VAC 110 VAC, 60 Hz at 40 Amps. Place the Page 2 of 7 b.___._______._.m_ _ - . _ - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - " - - - - ' ' ~ ~ ~ ~ ' ' ~ ~
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REV. 2 current shunt and Eagle glow coils in. series.with the s . '
, output'of the transformers.-Short. cable connections tol , Core Cooling Monitor durjng setup'.sReference . figure 4-1.' Connect a volt'meterLacross the' current shunt.- 1 Adjust outputfto 40 Lamps .5 Amp. Record actualimV reading and calculate 1the equivalent corrent. Remove short and connect'to J7 or the CCM.
4.2 Record all serial numbers of equipment under . test and test equipment I.D. numbers and calibration status as' applicable.-Arrange the test. specimen-as- . illustrated by figure 4-1.
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Elgar / ' O. o ,
.J7 PINS Power S1 23 '7 Supplies OREEEEEEEo load oo .o q, &' current .o ' ' .i Osciltrs shunt I l
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. DVM Monitor SCOPE
- Short during setup Figure 4-1 Isolation Test Setup e
4.3 Connect the chart Recorder channel 1 to side 1.of U35.2 (3.9K resistor) & pin 3(Gnd) of U39 and channel
'f' 2 to pins 6 & 5(Gnd) of U41 on the interface board.
Set chart speed for maximum rate. Chart recorder function'will be to detect perturbations on input side of the optical isolators. i Page 3 of 7 1 ue_ma___________m _______._m_____m -_____.___.__m.__m_.___ ._.
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power suppliesiand pin 7(port;)71-of' Core Cooling ' Monitor. Connect lthe DVM'and.oscilloscopefacrossJthe < j)
. current; shunt to_ measure feult condition currer.t. ' ~
( o 4.3 Verify' dip switch positionc1 oc interface: board are as fo11ows).1,2,3,8 are-closed anu 4,5,6,7 are y opened..This allows the CdM to opri%te the; ports 11
. 3' automatically and-establishes' con.municaticn~protoco). , )
ofc 7 data bits, 2 stop bits, '1299 bauG and' aven; i parity. 4.6' ' Perform pretest- irispection sf core (ooling P.j l monitor components.. Turn'en power t6 the. Care Cup 1 sng j Monitor.. Verify operation by connecting a Dortable. ', terminal to' port 16 and execute A6'.and C2 softwdre. , commands. Proceed with the test after,follbwing a j satisfactory demonstration of softwere commands. 4.7 Record readings from Oscilloscope, chart recorder 4 and DVM.
- l I' 5.9 TEST PROCEDURE t
5.1 Close S1 and monitor the Scope and the DVM. Test
! is completed when, the DVM reads less.than .SemV, thus. . l- confirming an open. circuit condition exists.
5.2 Record readings.frcm Oscilloscope, chart recorder and DVM. 5.3 Open St. Verify system is operational by repeating paragraph 4.7. Perform a System reset if required by depressing'the reset-button on the INTEL power supply or cycle p'ower off than on, The specimen passes if date is being contifvcpsly displayed e,nd fails if system does not responds
- 5.4 Turn power off to Core Cooling Monitor. Remove 4
Interface Board. Inspect for physical damage, solder splatter, lifted traces and damaged components. Record location and identify components. k 5.5 Repeat Inspection on all other boards and record results.
,i j 6.0 ACCEPTANCE CRITERIA 6.1 System retains its ability to perform its sefety related Function by requiring at worst case, a system reset. (See 5.3 on Data Sheet).
Page 4 of 7
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,E_GUIPt1ENT & RANGE SEA!QL # CAL DUE j 0-25 40 . )
JLo, An&nL -aa nooi .15~7 2 -25*-87 ) J Uf ( o,.2.64J l E" k R A L aa % ot ma 2 Of
'7 l0Mz_b 6kk ,1 4
[Avw-V O03% 400 c[ldm Hz, d4C3 a rl/ # r- 721,. 2 -2.5-89 i
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' <t is 700 YAc.
medel # Floke ,pVin etwA 14452 2 8f modef #
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1 ) .( w k L t . unsoico__ o, n sov 14 M9 2-4727 i i Aok # I Yokomw M3 % sewh< 14747,, I2-23-8B l o
- wva. i Simsson Dvm .-a.g ms 1461l J-23-2't l o n now-1 Flah ovm mael*Bo428 13084 ll-5-99 l T_q@T DATA J
#fil ACTUAL _p$ g SIG./DATE j.
4.1 Power Supplies Output mV hf -a /hf- /dd-88 40.5A & 1 Calculate Amps u-y , M A0-//-88 l 4.5 Verify Dip Switch Position. //74 /04bf3 i PASS / FAIL l 44 5 Verify CCM is operational. .gjl lbbhN l PASE/ FAIL Page 5 of 7 w_,ag_- 'T N Aa '-
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ITP-1C2'- :l REY. 2 _A_CTU/L; SIG./DATE 4 . '7 Oscilloscope Reading ,
, . Information.Only. '/T llde E yk- /M [6-M/~k:
Churt Reco.~ der Channr1 1 ./q ,4.g*'
,1 nfor me t i e st only ./t24 /O-//-f$ -
Chart, Recorder'Chafinel 2 Information Only *t'2.v im S/ g fo //g . DVM' Information Only N farY /NA/M-/hM< l 0VM Iduk E' $2.,hm k rp)(r.g . l IFST PROCEQUEE DATA l 9od l 5.2 . Oscilloscope Reading 1 \/g: .oo$ V hId'* +-909dM-
/O O" d ) -7,1V iD 3 d f/ ; Chart Recorder Channe1 1 .g2pt 10-//'*8N i b . Ylat .
Chart Recorder Channel 2 f __7 l V /17 4 #S-//-M I- , DVM e l2 5 /]lA lo-IF$ 4 5.3 Core Cooling Monitor l n Information Only /f1A~ _ M-//IM J filf00 JYo <tseY a fcwes- CycdL CCM after reset. "f"' ' [ .gup- /9-1/.88 PASS / FAIL J
)I ' ' I 5.4 Int;erface Board Inspection Solder Splatter 8am e _
j LiftedTiracess_.[0/ft
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Damaged Components: Nob vb, N(L b le_. eve- ,
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Comments:het,} 0 43 Oc-oc to,*A9y40 )4f$ S291 M,.y l feplaceb U39 C#G9 of vf ~ covf eelr o c. oc c,,,,A, d,'p 040 IWs c wed 24fnee) / rM u oc-oc o Q /e~s,, al T k sth ? >~,O . nir. r
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/G 3 +S ' E, l . (S) 23i WA l . a
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C ALCULATION IDENTIFICAfl0N NUM8ER DIVISION & Gh0UP j
^ CALCUL ATION NO. OPTIONAL TASK 'C00E PAGEl#f? /G245 _
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' REV. 1 APPENDIX D -4 REWORK INSTRUCTIONS 4
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WHITTAKER ELECTRONIC RESOURCES Rework instruction DateF//-F
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- Drawing /Part No.: 1I7D005 - Rev.: 4 5erial No.: . _5// ,
' . Item
Description:
' L,f,, foal >cd Project: T //. ~ Jcb No.: /84/33k $Datelo/n/ff , , Mfg. Approval: .
b Date /0/#/88 0.A. Approval ; Rework Requirements: 0overk oe- ?ufruek*on delow. r . .
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.I -l Fework Instruction ~
DRAWhNG". - QUALIFIEU M peg ge.n,
. OPER
- COMMENTS SPEC."
- l- OPERATION l
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I .. 1 TR8822 T Z REV. 1 APPENDIX E. ! EQUIPMENT CERTIFICATIONS l i
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N.JLM s _EcmoN:cs, lNc. an a rk. C 130 (818)998 6500 i Certificate of Conformance I l
$RQ Electronics, Inc. artifies that this instrument was thoroughly tested and inspected andfound to meet its specifications dben it was sbiffed. $$Q further certifies that its cali6 ration measurements are tracea6ft to the U.S.
National Bureau of Standards to the e.rtent alloweb Gy the Bureau's cali6 ration facility. (In accordance with MIL-STD-45662A. ) Incoming Status: In Colerance GYDut of Colerance O hianufacturer - Tha' , hiobel Num6er 300 i
; Serial Num6er /M 1 $cfort Num6er 21/ aw/ ; Date Cali6 ratch 1-HJ Y l $ecall Date ) ' 2 ' / 5 " .:p/ .. Humidity 9)
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5 ! i Certificate o Conformance RRQ Electronics, Inc. certifies that this instrument das thoroughly tuteb and inspected andfound to mee! its specification:s When it das shipped. RRQ \ , further certifies that its cali6 ration measurements are tracea6le to the U.S.0 ' National Bureau of Standards to the extent allowed 96 the Bureau'c csli6 ration facility. (In accordance with MIL-STD-45662A. ) Incoming Status: In Colerance [iYTTut of Colerance Q l hianufacturer hiodel Numfer ?no I
! Serial Num6er ir9 Report Num6er G U Q u '/
Date Cali6 rated ? 2 ;-/ r
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J l A Certificate of Conformance e . i RRQ Electronics, Inc. certifi:: that this instrument das thoroughly testeh 7 ' and inspected andfound to meet its specifications When it das shipped. $RQ further certifies that its cali6 ration measurements are tracea6]c to the U.S.
, 1 National Bureau of Standards to the utent allodch 69 the Bureau's cali6 ration facility. (In accordance with MIL-STD-45662A.)
Incoming Status: In Colerana [Y6ut of Colerance C hianufacturer Afobel NumSer [ha'un J l Serial Num6er %l l l Report Num6er 01 r F -2 S s 'I \ Date Cali! rated f x>~-k! Recall Date L 4 I' W Gemp/Humibity o v' hlrW -- j ll'_0
, ulity Assurance hianager t _
I. 3 ! *. l HONEYWELLINSTRUMENTATION L SUPPORT SERVICES- === =:= s 1 i Certificate *: 6576143100030 i \g, CERTIFICATE OF CALIBRATION i i Submitted By. GENSTAR RENTAL ELECTRONICS I WOODLAND HILLS, CA )! Manufacturer: TEKTRONYX
, Nomenclature: ANALOG / DIGITAL SCOPE Model Nuniber: 2230 Serial Nuaiber: B022143 Asset Number: 120045 HONEYWELL INC. certtes that this instrument has been calibrated using standards and instruments which are traceable to the U.S. National Bureau of Standards. The standards and instruments used in the calibration are supported by a systern which meets or exceeds the requin ments of MIL-STD-45662. !
Supporting documentation telative to traceability le on file at this office, and is
; available for examination upon regt.ee.
t' MANUFACTURER MODEL DESC S/N DATE DUE ! ! l HEWLETT.PACKARD 2533A SYNTH FUNCTIO GEN 5249 11-24-80 REC'O WITHIN-TOLERANCE I ( l This instrument has been calibrated in terms of the standards rnalatained at this laboratory, and was returned: f ( XX) within manufacturer's specified accuracy ( ) i I Calibration date: 08-20-88 TEST REPORT NUMBERS
% Rel. Humidity: 40 % 10 UH INDUCTOR 211964 08-27-75 f Temperature: 70 F AC VOLTAGE D-0193 02+11-87 l Test Report 8: 857.46642 CAPACITANCE 232953 06-20"84 l Recall Date : 02-20-89 DC VOLTAGE 236526 01-29-86 4 , RESISTANCE S-1613 07-22-85 I FOWLER, DAVID TEMPERATURE K-0739 02-02-87 i By: - TIMF & FREQ WWVB j Approved: - , .#Mu --, /
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.WTA Fr#NE SYSTEMS COMPANY i 19601 Nordhail St Northridge, Calif 01324 (818) 886 2211 F.xt.3501 e i Metrology Laboratory Report ,
FOR ELECTRONICS RESOURCES PROPERTYI.D. NO. MANUFACTURER MODELho. DESCRIPTION f '
.j j4652 FLUXE 8840A i NETER DIGITAL SERIAL NUMasER SErtVICE DATE TECH NO. PflOCEDURE UbED NEXTDUE DATE ,
3793066 08-09-58 18 4100"226 02-69-89 t l RECErvEo ceNamON . SERVICEINFORMATION SEALS Tot.ERANCE ADJUSTn4ENTS CLEANOQ LU8RACATED' l HE':8 AIRS i INTACT 0-80% IN TOL NONE MINOR NO {NONE
.i PARTS REPLACED ADJUSTMENTS 1
i 1 1 REMARKS 22C50% f
~
I sTTJDARDs EwevED [NuER MANUFACTURER MODEL NUMBER DESCRIPTION DUG DAT'6 1 CC23439 DATRON INSTRUMENTS 4200 CALIBRATOR .11-01-88. CC25053 DATRON INSTRUMENTS 4000A AUTO CALIBRATION SYSTEM 11-01-08, E050548 TELEDYNE SR1010S a RESISTOR STANDARD 10-06-88 i I I i FARAMETER NOS VEST NUMBEN NBS%ST CAT"s
)
DC VOLTAGE 239582 06-19-87 l CURRENT (RESISTANCE) 238616 01-13-87 i RESISTANCE 2386i7 01-13-87 l lAC VOLTAGE DH60 11-13-87
! AC CURRENT 232467 03-16-87 Telodyne Systems Company Metrology c6rtifies that the equioment noted hereon has been compared to the standarcs liste- aba accercance with the referenced procedura, or specification, and has been found to be wittJn manufacturer'e spec.lficellets. The standaros 6 to perfctm this
) calibration are certified by, or traceable to, 'the Natio si BurdJ of Star.dsrds, and the calibrttloo systems and recorcs are in comp 4.nce to MIL STD 45662. , APPRQVED BY: ' ' n ., ,k . , ,, s, e Rev. 810/63 TSC 0009
I U . T A R RR E T . E C t S T G " NI F A A P Tf L N r E i D 4, C I 9L A t E P T N r S ND O I T /r VR o u
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1 Certificate of Calibration ' Equipment Owner Calibration Facility
' ELECTRONIC RESOURCESi L A SERVICE 1955'N'.~ SURVEYOR 6212 PEACHYREE STREET SIMI' VALLEY CA , ; 000093063 LOS ANGELES, CA. 90040 Calibration traceable to the National Bureau of Standards in accordance with MIL STD-45662-has been accomplished on the instrument listed below by comparison with standards maintained b E.I.L. Instruments, The accuracy i and stability of all standards maintal:7ed E.I.L. Instruments are tracamble to l- national standards maintained by the National Burea~u e S tandards in Washington, D.C. and Boulder, Colorado. Complete reewy sf all work performed is maintained by E.I.L. Instruments and is availabk ",f inspection j upon request.
MANUFACTURE: EMPRO MODEL NUMBER: HA50100 028232 NOMENCLATURE: SHUNT SERIAL NUMBER: CALIBRATION P.O. NUMBER: 516701 REPORT: 0082201 Date Of Calibration 9 d_ M RH N ld Temp. O Y b ---- Certified By: d Li% J . r'A 1
@ in Tolerance When Received Out Of Tolerance When Received l
j THOMAS 1 OHM STANDARD, NBS #240160, SEP 10, 1987
- j. 1000 PIC0 FARAD CAPACITOR', NBS4231031, JUL 26, 1983 100 MILLIHENRY INDUCTOR, NBS #241713, MAY 10, 1988 GUILDLINE STANDARD CELL, NBS #240000, GEP 24, 1987 AC/DC TRANSFER STANDARD, NBS #234077, JUN 23, 1987 WWV TIME STANDARDS WWVB BY RECEIVER COMPARISON f
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'p 4' ., . Accuracy and Resolution (Dead Band! , -
A
- The following specifications apply to receMers oper*. ' , ating. under standard operating condhions - (tt;ra*
perature: 23 l 2'C humidity: 35 * .10%. power ;
= supply voltage and power supply frequency:. Rated power suppiy voltage for frequer.ry) t1( warmup -- s time: at lext 30 minutes; other ambient conditions M . ,. _ .j . should not adwrstfy effect 'the recordt pretion).
n.Q J > Table 2*2. ,
.. , .01 j; ),' Meeswoment (Digitet depleyl- Mcord (Analog recordingl'1 ,. .c'. input- Range Romerks .Jg.g.f .. ,
Accurecy - fleeutution " Accevacy Dead band .n p . 20mV :t:(0.2% of rdg*+ 3 digits! ' 10pVl
- 10.2% of stig+ 0.3%
DC V '.00rnV 210.2%cf rdg+2 digits) 100pV ef SPANI . 00 2V. , 210.1% of edg+ 2 dayes) .tmv 2 (61 X of rdg+ 0.3% . 30 SV '- .
.1ov osSPANI . ; Dead band *rdg: .40 20V
- 10mv J *(0.3% of rdg+ 0.3% 0.2% of . indicat(on GOV ) *10.3% of edg + 2 digite) tr)env ' ) ofSPANI recording Ireedings q' ,
I m:0.15%of edg+1*C '
- U#" ##"
' hi*h " I" 8'
t S however R,$: 0 to 100*C23.N O f*C More then 100 fev 300*Cil.S*C 8: 400 W 600*C22*C
.TC . m10.15% of rdg+0.1*Cl t homewer, - 200 to - 100*C ,, ,
(Meierence k junction com. 210.19% of reg + 1*C Accurery + 0.3%
' of SPAN) 0.1 *C i . penseen ace E n:10.15% of edg+ 0A*C) t, ; e m k no!- or incluoed) ) %,,, y ,200 to t00*C tOSA of SPAN T *10.1d% of edg f 0.?'O whichever is greater iO ,
N 2 80.15% of reg + 0.7'd 1 W- *'O 15% of edg+ t*Q 0.2*C RTO Pt 100 2 PL15% of rdg+ 0.3*C 0.t *C ' l*1 When recordinn noen is set u follows.(in Table :2 2)
+1 7 , mange Spen DM 20mV. 2 5mV ; .L . . 200mV '> 20mV :
9at.' 2V > NV ' ! SV >f30mV t 20V > SV SOV > 20V i e TC 100+C or enore end 3mv or more j
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i RTD 50*C or enore ! l 3 i.. i
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\f i,'4 Yhmbg " ' ' * * ' * " ' * " ' ' " ' ' ' ' " 'a Whittaker Corm opn 1955 North Surveyor Avertue - . Simi Verey, Caktorre 93063 833/584-4100 1WX 910-498-2751 FAX: 805/584 9157 l
l Sales Order 2321A j 1.. L 1 Texcs Utility Signal 1 solation Test i This test requires an interface board Part No. 1120005 Rev. A to be tested. A 112D005 REV. A interface board was found without any paperwork. The original P.O. #1230 for the manuf?cturing of the_ printed circuit board was written on the board itself. The RS-232 components, DC-DC converters, and integrated circuits (I.C.'s) were removed and replaced with P.O. traceable components. The RS-232 components were identified through CCMS-IB Schematlic 1120004 drawing. The following rework instructions include part numbers along with traceable purchase orders.
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