ML19224B677
| ML19224B677 | |
| Person / Time | |
|---|---|
| Site: | Crane |
| Issue date: | 01/16/1976 |
| From: | Lentz R Metropolitan Edison Co |
| To: | Mullinix W NRC/IE |
| References | |
| TM-0348, TM-348, TP-301-3D, NUDOCS 7906180089 | |
| Download: ML19224B677 (62) | |
Text
{{#Wiki_filter:. a 'DfI DOCUMENTS //k-hfk DOCUMENT NO: COPY MADE ON ) .f OF DOCUMENT PROVIDED BY METROPOLITAN EDISON COMPANY. Wilda R. Mullinix, NRC 7'906I80039 1S 226 PJS
...\\ S.~ ' TliREE MILE ISLt 'llT II NUMBER TT301/3D ~ ~ TWG ~ MTX 108.5 DETER'fINATION AND SETTING . CATEGORY A CF DETECTOR VOLTAGES DRAFT Rev. o ~ FREPARED: Cogni: ant Engineer _ n % k Date ///d[7(> APPROVED: Lead Engineer Mr. M-Date 3/2/'74 APPR0vED: Technical Eni;ineer a[0 Date 4 //f/76 e ho PRELIMINARY REVIEW MEETING: Date J /76 HINUTES OF MEETING NU?:8ER 73 f TWG APP.10 VAL FOR PERF0PN 'lCE: GPU L G Representative 4 (/ u L4--2C / Date (( 77 Met-Ed TWG Representative [ h Date 5-5-/7 NSSS TMG Representati've .-J Aed Date S-S '77 A-E TUG Representative / Whfu ' Date d u TEST RESULTS: Acceptable with the following test exceptions and deficiencies-E-1, Z, J
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Date E-/3-78 Technical Engineer /7 w TWG APPROVAL OF TEST RESULTS: Date 2 2 / 78 GPU TWG Representative /: 6 .m s Date 2 M 7/ Met-Ed TMG Representative a I'2V-2'/~ NSSS TWG Representative [f Date j Datef 4 Y'- M A-E TKG Representative / %%e ') ') { h } Q t.NCLOSURES$1. rest Exception and Deficiency List 2. Sa=ple Proportional Counter liigh Voltage Plateau Ct.rve 3. Sample Count Rate versus Discriminator Level Curve 4. Computer Inputs Act'uated During TP 301/3D 5. Plan View of Detector and Scdrce Tube Locations OFF!C!AL F! ELD COPY a ~: u . Duplicato Page 0 -... WZ 7_.n
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~ j =- w.,- TA3LE OF EFFECTIVE PAGES Effective Page Page Effective Pace Page_ 1 0 21 0 2 d 22 0 3 0 23 0 4 0 24 0 5 0 25 0 6 0 26 0 7 0 27 0 8 0 28 0 9 0 29 0 10 0 30 0 11 0 31 0 12 0 32 0 23 0 33 'O 14 0 34 0 15 0 35 0 16 0 36 0 17 0 18 0 g N3AL. cir-1 D COPY .. - i,, i L e-- 1 6 19 0 -t <n 20 0 cy / O lq c Duplicate Page TMI UNIT II TF 301/3D -l_ i
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-n %e'. 1.0 PURPOSE 1.1 To determine and set the source range detector operating high o . voltage and discriminator level u. sing neutron and ga==a check sources. 1.2 To set the inter =ediate range detector high voltage and cc pen-sating voltage to prescribed values and verify instrument response to source neutrons. 1.3 to set the power range detector high voltage to prescribed value. 226 EW lY 7 Or""'gg' afb asL n COoY r ^l r2r-E 8 gT TMI UNIT II TP 301/3D Effective Page 0 Duplicato Page_ Pase 1
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2.0 REFERENCES
SP 2.1 Burns and Roe drawings 3024, Sheet 42, Rev.,2 and 3024, Sheet 43, Rev. f g fy f k -c 2.2 Procedure for the Initial Setup of the Source Range Channel, R.S. Rand, Rev. 1, S/22/74 2.3 Vendors Manuals I 2.3.1 Bailey Instruction Book for 880 Nuclear Instru=entation and Reactor Protection System (3&W #01-0009, Rev. 2). 1 226 3D tsTs OeriL* +al RELD COPY m rr ) ; ;.. TMI U'1IT II TP 301/3D Effective Page 0 Duplicate Page-Page 2
._.-.,1.",, 7 -l~ i. - l M.r zaw.<-.e 3.0 TIME REQUIRED I 3.1 4 men, 2 days, one shift per day. 3.2 1 Radiological Technician, 2 days, one shift per day. = sa e 2 2 6 u"s. gn OFFICIAL FEi_D COPY ,s. TMI UtiIT II ~ TF 301/3D O E'fecti"* ""s" Duplicate Pago-F se 3 j,
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- d. *M 4.0 PREREQUISITES 4.1 Tests The follc,ving tests have been completed suf ficiently to support perf ormance of this per,ceuure.
Source Range Nuclear Instrumentation Pre-operational 4.1.1 Calibration,- TF 301/3 A, MTX 108.2. /h 2[ Date Signature I / T Intermediate Range Nuclear Instrumentation Pre-operational 4.1.2 Calibration, TF 301/33, MIX 108.3. f. I.!33/9 [ Date ~' Signature e / [ Power Fange "uclear Instrumentation Pre-operational Calib-4.1.3 ration, TP 301/3C, MTX 103.4. / 3 7f 7 Date Signature / w \\ Nuclear Instrumentation Detector Cabling and Response Test, 4.1.4 TF 301/2, MTX 108.1. 4.2 Construction Co=pletion Status: Met-Ed has accepted the system for pre-operational testing. 4.2.1 / M }\\ Date Signature 22$rdE2 \\ "i o CFF!CIAL RED COPY TMI U'11T II N. 3., TP 301/3D Effective Page 0 O " S* ' D licate Page
..'c_ _ _ -. g yp /L._7 ~ ~ 2-.. -Wer?. ~~ : 4.0 PREREQUISITES (Cont'd.) 4.3 Environmental Con itions - Nor=al Ambient M9 Signature c -N Date /, v j ~ ^ 226E95(, ) OFFIC!AL FiE.D. COPY m usu u TP. 301/3D Effective Page 0 Page 5 Duplicate Page 0 ~
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LQ TE' _ ; .s,._. %. w.- 5.0 TEST EQUIPMENT 5.1 MTE d6, Digital Voltmeter, John Fluke Module 8300A or equivalent. 5.2 MTE #19, oscilloscope, Tektronic Model 454A or equivalent. l 5.3 MTE 6123, Scaler - Timer, Hewlett-Packard Model 5202-L or equivalent. 5.4 MTE #129, Neutron Source, 5.0 Curie /Ji-BE or equivalent. 5.5 MTE #129, Canna Source, 0.5 Curie Co-60 or equivalent. 5.6 Health Physics Equipment as required by EPP 1633 and 1634. a Nw ~ 226 c6 ' jl C CiFFiC!AL FiH.D COP'( TM1 UNIT II TF 301/3D Effective Page 0 Duplicate Page Page 6 .__ _ _. _ j
?.W l 5,.~ ' ~ ~ kn...M _-- " 5.s,. 6.0 LIMITATIONS AND PPICnUTIO;IS 6.1 Neutron and Ca=ma Sources must be handled by a Radiological Technicianinaccord$ncewithHPP1633and1634. .-c l l i 226 eds (9 3 OFRC AL RELD COPY +, ' -_ ~ IMI UNIT II ~.,.. .TP 301/3D D E"" 'ivo P38e 0 Duplicaic Pago-Page 7 i ~
,.?v.-=.: s._. _. M..-- j 5CT %<.ww, . 0_ PLANT STATUS 1 7.1 Fuel not loaded in reactor veree7. Date l 2-Y d Signature ~ ( / j-7.2 Source check wells are accessible (seal plates removed). m u Signature \\1 _., M " ~ ~~ Date l V7 j ~ l
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^ -s 7 ?'_----. hb; ~ ~ $4' " r%.s,. S.O PREREQUISITE SYSTE! CCMDITIONS -u-8.1 All detector cabling is connected to detectors and prea=plifiers h-I .in 880 system cab nets. See Reference 2.1. D Date Signature 8.2 880 Systes energized with the exception of the NI High Voltage and Auxiliary Power Supplies which ate de-energized. j J Signature d w, ~ Date / / })/ O I I /' um-A 226 PJ< \\ ct OFFiCML FIE!.D COPY TMI UNIT II TF 301./30 ~ ~ .~33. - ' 'l:, Effective Page 0 Duplicate Pago 0, r 8e 9
p.r.d ~ ~ %K,..~ ~ ~ ~ _ ~. --a. %c w.. 9.0 " DST METHOD r I NOTES: 1. Section 9.1 and 9.2 of this procedure are applicable to both source range channels, and should'be performed in sequence on each channel. Section 9.3 of this pr'ocedure is applicable to both inter =ediate range channels. Section 9.4 of this procedure is applicable to all four power range channels. 2. If required satpoints cannot be obtained, check the calibration of the test equipment and/or refer to Bailey Product instructions for component test and trouble shooting procedures. 3. Refer to Enclosure 4 for steps of this procedure during which applicable computer input verifications =ay be perfor ed per TF 350/10., 4. With . e exception that Section 9.1 and 9.2 =ust be ,ierfor=ed together and in sequence, the remaining sections of this procedure can be perfor=ed in any sequence. 9.1 Source Fange High Voltage b i 9.1.1 Verify that the pre amp gai'a is.cet at 4X by visually inspecting the link in the prea=plifier. Record data. 1% 226MB OFFIC!AL FELD COP'( IMI UNIT II ,.' 5*. TP.301/3D Effective Page 0 Duplicole Page O a
g y -.~___ +=- 'a4rtw 9.0 TEST METHOD (Cont'd.) +. 9.1.2 Verify that the Count Eat e A=plifier (CRA) is set at 2X as follows: 9.1.2.1 Flace the Source Range Test (SRT) switch in the 100 KI!Z-position. 9.1.2.2 Connect the oscillosc.pe to the pulse ~ amplitude jack on the S.R.T. Module. 9.1.2.3 Adjust the pulse a plitude on the S.R.T. Module until the negative pulse on the pulse a=plitude j ack is -1.8 j-0. 2VDC. 9.1.2.4 Connect the oscillocco;;e ta the output test jack on the CRA. 9.1.2.5 Adjust the gain on tEc CRA fcc 2X i.e. 'until the positive pulse.out of the CRA is just bel'ow ~
- 4VDC, CRA gain = pulse a=plitude out/ pulse amplit.ide in.
Record data. 9.1.3 Verify the discriminator set at 1.0. Record data. NOTE: Insure that the discriminator dial is set properly 1.e.'Zero on Dial = Zero on Pot. NEUTRON AND CA. MA SOURCES MUST BE HA' IDLED 3Y CAUTION: A RADIOLOGICAL TECH'i1CIAN IN ACCORDANCE 'JITH HPP 1633 and 1634. '22 OEE!CEAL FIELD COPY TMI UNIT II - s., *.; r... - TP 301/3D s - ' ^ hj 'd Effective Page 0 , /.%,: page zy ., 0 Duplicato Page_ g
g.- a. _ _ r; q v---- j MC %c %- 9.0 TEST METHOD (Cont'd.) troltage c 9.1 Deter =ine Detector Operating 9.1.4.1 Connect the D.V.M. to the cutput/1000 test jack on the detector power supply connect
- -c the counter / scaler to the scaler test jack on the CPA.
9.1.4.2 Insert the neutrc check source in the source check well such that the centerline or the neutron check source corresponds to the center-i line of the source range detector being tested i i.e. 17 ft. 6 in. 9.1.4.3 Energize; then raise the SR HV to 1800VDC, observe CRA, scaler, pulse amplifier input and output with oscilloscope. Take counts on the scaler for 10 Sec. Record data. 1 i 9.1.4.4 Increase the SR EV to 2/00VDC, observe the CRA, $h I scaler, pulse a:plifier input and output with oscilloscope. Take counts on'the scaler for i 10'Sec. Record data. i 9.1.4.5 In steps 9.1.4.3 and 9.1.4.4 the highest neutron pulse on the CRA input should not exceed -2.0VDC. If it does set the gain of the source range pre a=p to the next lower le. vel. If the pulse height is much less than -2.0VDC set the gain of the SR pre anp to the next higher level. ~ 226 Gi~$ M OFRC!AL HaD COPY gt gg,1 3 Effective Page 0 Page 12 D Duplicate Page_ _4
't Q Q Q v-~-- ^ YTQ." + ?4 c.. -. 9.0 TEST METHOD (Cont'd.) n: 9.1.4.5 (Cont'd.) In either case the gain should be set so that the is as close to -2.0VDC as possible. pulse height After setting the pre a:p gain, set the CRA gain so that the output pulse is as close to 4VDC with only occasional clipping. If necessary repeat steps 9.1.4.3 and 9.1.4.4 until both are satisfactory. 9.1.4.5A Re-deter =ine CRA gain if it is changed. Place the source range test circuit in the 100 KH2 position. With.the scope autached to the CRA pulse a=plifier output, adjust the pulse a:plitude on the source range test module until the positive pulse heigh t e.n the CRA = +2.0 +2.0VDC. Record pulse height With the scope attached to the pulse a plitude jack on the source range test' - cadule, record pulse negative height CRA gain = = [ SR test pulse height ' Record data. 9.1.4.6 Set the SR HV to 1700VDC. 9.1.4.7 Take counts on the scaler for 100 sec. Record data. $O C 9.1.4.8 Increase SR HV jdTC. 9.1.4.9 Repeat Steps 9.1.4.7 and 9.1.4.8 until detector voltage is 24007DC. 2 2 6 isi;i' 'e,c 7 OFF!C!AL RED. Co*py mt = tt TP 301/3D Effective Page 0
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.v.. Q W ~* _. .,=.. :. % c -,, 9.0 TEST METHOD (Cont'd.) 9.1.4.10 Reduce the detector voltage to 1200VDC. 9.1.4.11 Draw the curve on the data sheet. ..... - - _. ~. 9.1.4.12 Determine the beginning of. plateau by pl_ott'ing/ / a line on the plot with a slope of 4% of the nominal flat porcion of.the plateau pe 100 volts detector voltage. With a parallel rule find the points on the curve tangent co this slope. / J / The points of tangency determine the be;; inning of the plateau and the end of the plateau. Beginning of piateau = End of plateau = 9.1.4.13 Determine the detector operating voltage by: nd of 3eg b.ning Operating " *eg nn ng Y *" ~
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- i Voltage-Voltage h Voltage Voltage j
3 = J'- ~ _...... l (o?'G Unsat. l nil Accc=plished Sat. yuk Date / / _ Signature 67 Ir2 b V NI2 Actosplished Sat. Unsat. -9 n / 7I I / G Date Signature s 226 Fil OFF! GAL RNLD COPY A" TMI UNIT II h. TP 301/3D Effective Page 0 Page 14 DuplicaLa Ecge O g - - ~ -
. =p. e _ _. gg.-.;. _I lK^C. '% rI-9.0 TEST.1ET110D (Cont'd.) [ l \\ 9.1.4.10 Reduce the detector voltage to 1200VDC. 1.- i. s 7 9.1.4.11 Draw the curve on the data sheet. / 9.1.4.12 Determine the beginning of' plateau by plotting a line on the plot with a slope of 4% of the nominal flat portion of the plateau per 100 volts detector voltage. With a parallel rule find the points on tae curve tangent to thi.s ~ ~ slope / e The points of tangency detemine the beginning 4 / 7-/ I of the plateau and the end of thi plateau. f' Beginning of plateau = End of plateau = l / 9.1.4.13 Determine the detector operating voltage by: ' Beginning End of ' Beginning "S = of Plateau +j Plateau - of Plat'cau Voltage Voltage Voltage J. 3 ._d f S~PAEF nil Accomplished Sat. Unsat.
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.W \\) Date / 2- '7 7 ( [o2.iG N12 Accomplished Sat. Unsat. [ L-E! h9 [ Signature A Date s )- ,;1o l (,m, Lw.r RTiD COPY end T!!I UNIT II TP 301/3D Effective Page 0 l Page 14 Duplicate Page .i
w.rrs" ~CT ^ I' '._. K:*.. M.-c. - t -. 9.0 TEST METHOD (Cont'd.) 4 etermine the Discriminator Setting / / <3 9.2.1 At the operating voltage and with a neutron source, run i a " Discriminator Curve" starting at 0.05 on the discrimina-tor; increasing the discriminator setting at 0.05 increments up to 0.5, 0.1 increments up to 1.0, 0.25 increcents up to 2.0, and 0.5 incre=ents up to 7.0. At each discriminator setting take counts for 100 sec. with the scaler MTE #123. Record data on data sheet, and the " Discriminator Curve" graph sheet. NOTE: Be sure the discri=inator dial is set properly i.e. Zero on Dial = Zero on Pot. 9.2.2 Insert the ga==a source so that it rests on the neutron source. 9.2.3 At the operating voltage and with neutron soarce and the g,mma source, run a " Discriminator Curve" on ha same data sheets used above. Start at 0.05 on the discriminator, " plot counts vs discri=inator setting in 0.05 increnents up to 0.5 and 0.1 increments up to 1.0 and 0.25 increments up to 2.0. At each discriminator setting take counts for 100 sec. with the scaler MIE #123. 2262Gb!P-OFFICIAL FIELD COP'( TMI UNIT II 'TP 301/3D ~ Effective Page 0 I Page 15 E Duplicate Page _1-_
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' Tq.. 9.0 TEST METHOD (Cont'd.) t 9.2.4 Select a discricinator setting by inspection of the above curves such that gn==a pulses are not counted but fev -b neutron pulses are lost. This setting should nor= ally be set 0.3 to 1.0 higher han the intersection of the neutron and neutron + ga==a plots. The discriminator should not be set less than 0.4 as this approaches the noise thres-hold. See example, Enclosure 3. l. 9.2.5 At this discri=inator setting and with neutron and ga==a sources, run a " plateau" per step 9.1.4 and if the operating voltage is on the flat portion of the " plateau" the source range channel setup is co=plete. If the operating voltage is not on tha flat portion of the " plateau" select a new higher operating voltage as in 9.4.1.13' and repeat steps i l 9.2.1 through 9.2.5. I ~ 9.2.6 Place the source range test circuit in the 100 KHZ position. l With the scope attached to the CRA pulsa a=plifier output, adjust the pulse a=plitude on the sourca range test =odule until the positive pulse height on the CRA = +2.0 +0.2VDC. Record pulse h,eight With the scope attached to the pulse amplitude jack on the source range test module, record negative pulse height pu se hei2ht CRA gain = SR test pulse height }[p}f Record data. OFFICIAL F! ELD COPY. = att u ^ TP 301/3D Effective Page 0 Page 16 Duplicate Pctga
' ^ x :[-.. .:qc p -~ ~~~u:Q ~ ~r-h.. 9.0. TEST METHOL ' cont'd.) ~ l / 9.2.7 By visually inspectin;; the link in the pre a=p, determine the SR pre amp gain. Record data. 9.2.8 Remove the test equipment and reset all tripped bistables. Check to make sure all equipment is functioning properly. and each channel untripped. V Unsat. nil Accomplished Sat. I, TA Date I '2 YY T ~ Signature s c7 M N b,3 N12 Accocplished Sat. Unsat. A I b 3!? r3 Signature I v Date i 9.3 Setting of the intermediate range detector high voltage and com-pensating voltage and checking of channel response to source rm :trons. 9.3.l~ Connect the digital volt =eter to the output /1000 test jack on the detector power supply codule, turn P/S potentiometer C.C.W. and turn on P/S. 9.3.2 Adjust the output potentiemeter'on the detector powe. supply module for a voltage of 0.6VDC 1036VLC. '/e rif y front plate meter reads 600VDC 136VDC. Record data. 226 ff d Y OFFIC0AL E! ELD COP'/ TMI UNIT II TP 301/3D ' ~ Effective Page 0 Duplicate Page_ 0 4 a
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O5Q':.-- 51~.- 9.0 TEST MET 110D (Cont'd.) K 9.2.7 By visually inspecting the'lini, in the pre amp, determine N beQRpreampgain. \\ Record data.' r f r ~ __ 'quipment.and reset all tr_pped bistables. 9.2.8 Remove the. test e I \\ Ch,eck to make sure all equipment Is functicning properly Y and each channel untripped. 57426 nil Accomplished Sat. Uncat. 2g//2[ c1( Date Signature t g ov.s G NI2 Accomplished Sat. / Unsat. '? 6 7 Signature 9 Date r 4 I 9--3-- Setting 'of the intermediate range detector high voltage and-com-pensating voltage and checking of channel response to source, neutrons. 9.3.1 Connect the digital voltmeter to the output /1000 test jack on the detector power supply module, turn P/S potentiometer V C.C.W. and turn on P/S. 9.3.2 Adjust the output potentiometer on the detector power supply module for a voltage of 0.6VDC 1 036VDC. Verify front plate meter tcads 600VDC 136VDC. Record data. 226 497 OFRGAL MELD COPY g 131,1,11 TP 301/3D Effective Page 0 Page 17 Duplicato Pago_
.._i.__. n}. i;['*- '~ mn. -% c.e__.,. a 9.0 TEST METHOD (Cont'd.) 9.3.3 Connect the digital voltmeter to the output /100 test j ack on the auxiliary power supply =odule. Turn the P/S. k ~ potentiometer C.C.W. and turn on the F/S. 9.3.4 Adjust the output potenticceter on the auxiliary power supply module for a voltage of 0.2VDC +.03VDC. Verify front plate meter reads 20VDC +3.0. Record data. ,I 9.3.5 Observe reading on the log a:plifier =eter, it should not indicate a current less than 1 X 10 -11 amps. Record data. 9.3.6 Insert the neutron check source into the source check well adjacent to the detector such that centerline of the neutron check source corresponds to the centerline rf the f intermediate range detector being tested. (Centerline of detector is 17 ft. 6 in, below t!;e reactor seal surfa:e).. f 9.3.7 Observe log a=plifier seter for indication that the detector responds to r.eutrens. Record data. 9.3.8 Remove the check source and store in appropriate containers.
- NI3 Accomplished Sat.
Unsat. L ~ [ Signature af-Date t 226 ffS OFFiCBAL FELD COPY 2* m m, u .TP 301/3D .,s Effective Page 0 ~ Page 18 D Duplicate Pcgo 4
L- - l NW.w.- 90 TEST METHOD (Cent'd.) N j V NI4 Acccaplished Sat. Unsat. d Y / Date Signature ( / t 9.4 Power Fange Detector High Voltage Adjustment 9.4.1 Turn the P/S potentio=cter C.C.W. and energi. the power range detector. power supply. 9.4.2 Connect the digital volt =cter to the output /1000 test jack on the front of the detector power supply codule. 9.4.3 Increase the output potenticceter setting for a digital voltmeter reading of 0.80VDC 10.036VDC. Record data. 9.4.4 Verify the front plate meter on the detector power supply =cdule reals 800 136VDC.~ Record data. / NIS Accomplished Sat. Unsat. da 5 Signature Date t ~ NI6 Accceplished Sat. Unsat. Signature W,N -~ Z lb fQf Date L NI7 Acco plished Sat. Unsat. 7 Signature ) Date v OFRC!AL FELD COPY =gl)T n"nsm$co o Effective Page 0 Page 19 Duplicate Page
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..7e s,- "hC.' s -w:_.w.. 9.0 TEST METHOD (Cont'd.) '"? l Unsat. NI8 Acco=plished Sat. Date lo b Signature 78 OFFIC!AL FIE!.D COPY TMI U: LIT II e. TP 301/3D Effective Page 0 b Duplicate Page _ __ i
.... =.. .r; 'M.. _ _' " ": _. 6. a ' * + ' SECTION 10 'JATA REQUIRED NI Channel 1 o 7_. t 6-STEP NUMBER ACCEPTA' ICE CRITERIA DA'A INIT/ORG. DATE 4 M CP0 / / 24/'2 T ' 9.1.1 Link set at 4X 7., O 91 (90 t/Or/Oy 9.1.2 CRA Cain $ 2X 'l28-l'F-9.1.3 Discriminator set at 3.0 3o ,2.k 5 (U l 9.1.4.3 CRA Scaler C/iG Sec. 4O$95 M M l[ M ?T f*- j~ Pulse Anp In ( -2.0VDC - C,"( 6 M M(; 1/ 2T/N-Pulse Amp out f 4.0VDC (, ? ?. - M (Mi //27~/'.Y 9.1.4.4 CRA b ! !2X'! ~2R I< M$Ib d hka Scaler C/10 Sec. f f " Pulse A=p In 5-2.0VDC - 1. 2-0 flk TPu ! 2r # E / 2-(/ 9 % Pulse A=p Out f4.0VDC 4, C O 0 Lb /~ 8 ' / 9.1.4.5 Pre Amp Gain /O jiA Q)I [ / 2.<'/74 CRA Gain
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(ih ; ' / / 'lf7 ') C 9.1.4.6 (For 9.1.4.6 through 9.1.4.11 7 9.1.4.11 (SeeAttachedGraph 9.1.4.12 'Ioainal. " Flat" Counts y1 Beginning of Plateau VDC,' Cy End of Plateau VDC o End < 3eginning > 200VDC 9.1.4.13 Operating Voltage (Trail)
- 7. O g a p
Cg, / / 2-r / 'M 9.1.4.14 Slope 40 2 (- - $ -For 9.2.1 through 9.2.5 9.2.1 f J 9.2.5 bSee Attacl.ed Sheetc 9.2.6 CRA Pulse Height 4/. O O - Cd 5 i'O " T/MS /. 8 O N dD //7X/7i SRT Pulse Height 3.31 W
- r. M l'/2i~/7' CRA Gain lO L
(fU ((1I[#5 9.2.7 P r o A.- o Ga in Test Equipment Used 2E, ~ Model ID8 Na w v a -, (- 226 21 Date / /O ,f g, F I?$ '3 l 4u24, Reviewed by
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'(l(e 77/4 /nl UrFK!AL FELD COPY 5"2)?D Etfective Page 0 ~ Page 21 0,. g T'n.. 1: L_ n._ _ _
-? w-T. '- 4 = %.- ,.~ i ~ 21-I SECTION 10 - DATA REQUIRED ' - ~. - 4 -t NI Channel 1 (SP4RE-)
- f STEP NUMBER ACCCPTANCE CRITERIA DATA I
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DATE W PM. $ 90 4[W/76 9.1.1 Link set at 4X 2,O pJ cJo / / zu/<77 9.1.2 CRA Cain pd 2X 9.1.3 Discriminator set at 3.0 30 GP cf Q 1/2.y[7y 9.1.4.3' CRA Scaler C/10 Sec. h) Pulse Amp In ( -2.0VDC Pulse Ano out 4.4.0VDC 9.1.4.4 CRA
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- 2. 2 d o V D(_
Scaler C/10 Sec. 62 755 RP GNO I 2Tl?Y Pulse Anp In C-2.0VDC -l, [ T F# 6 f C) //2 Y/7,( Pulse Amp Out 64.0VDC c/, o O iP# C-8O / /2,7/ 77' 9.1.4.5 Pre Anp Gain f oX 'QD c@D f/2r/7 V CRA Gain 3.33 O Mb [2X 77 f o r 9.1.4. 6 through 9.1. 4.11 F 9.1.4.6 9.1.4.11 lSee Attached Graph / 9.1.4.12 p + '"F'etMa.m 7 Be g of Plate. C h6 End of Pia p q j Ena/pe..s
- x.h 9.1.4.13 dperatingvoltage (Trail)
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$@C /pg/'77 9.1.4.14 SJope < 0. 3 y -3 9.2.1 [For9.2.1throu?,h9.2.5 \\ I I k ee Attached Sheets S 9.2.5 %0o bhO //2Y/98 9.2.6 CRA Pulse Height l SRT Pulse Heinht l, 2, O CQQ l / /27/'7 7 CDA nain '9,33 QD C I / 2 t-/) f_ i 9.2.7 y Prc AL.o Cain fo% Q (f\\j / /'2, i-h Test Equipment Used Model IDJ 226iiR suoan. no c9 N d?$ R IW7;4 Revicwed by / Date i Dl4 (o ( fa.}f {-l ] Q f.-(- T._.'.Kf TMI UNIT II TP 301/3D Effective Page O Page 21 Dunlicate Pace I g
'w. fj ~" SECTION 10 - o(TA REQUIRED ~" M.e n -. NI Channel 2 (SPAEE) w.. DATE DATA INIT/ ORC. ACCEPTANCE CRITERIA t/ DJ CPO //2J/7e STEP NUMBER 9.1.1 Link set at 4X M cf0 //23/77 2, 0 9.1.2 CRA Cain $ 2X 9.1.3 Discrininator set at 3.0 3, a PJ rA) l/2.3/95 l 9.1.4.3 CRA Scaler' C/10 Sec. '/'7o24 Q._) /M 'l b'? 3/ 7 ' 48 c8) /,/2I-275 2 /r b Pulse /.ap In _< -2.0VDC 0,45 //23/Os Pulse Aap Out 6 4.CVDC /. '? O d-(.A / 9.1.4.4 CRA Scaler C/10 See, f(h. Pulse Anp In 6-2.0VDC -l.S 3 p_l Go / / 2.3M Pulse Any Out .C4.0VDC 4,00 L/ cpy ) i hh< r 9.1.4.5 Pre A=p Gain JO 'gS{ 2) cp ). / /23r)g / b / 23 .e p, 9 g, fa cp, CRA Cain For 9.1.4.6 through 9.1.4.11 9.1.4.6 1 l ) ,i l l 9.1.4.11 hha Ar"u ba Graph 9.1.4.12 poninal " Flat" Counts ..h l $egihning of Plateau ^ VDC / o ([7 End of PGecau VDC j j T d Beginning N >200VDC
- 9.1.4.13 operating voltage (Trail) 4os o
- 21
( p,,, d23/h 9.1.4.14 Slope <0.3 ~ p,.-$ 9.2.1 l(For9.2.1through9.2.5 7 J beeAttachedSheets Y. d o .I2M fE/ 90- -/MN 9.2.5 9.2.6 CRA Pulse Height [ f.Y i SRT Pulse Height -1.6 % -Y. 6 21, pp ,-/A > /hMh 2.45 RM dR) CRA Cain //.5/h tO GR) 7 9.2.7 I Pre Ana Cain O ll Test Equipcent Used b Model IDG ,l 2-h,S T! Ofr. 'h$C y T'llGD (, Revicued by H I %bN Date -
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i((d'!;;- ~ ~ TMI U'iIT II TP 3C1/3D Effective Page O rage 22 O' Ddplicato Page 5
.y.- - i's k W. 2.* 2 SECTION 10 -- DATA REQUIRED E, m' h '
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NI Channel 2 (o R. t G } =3 - DATA INIT/ORG. DATE STEP NUMBER ACCEPTANCE CRITERIA '[ Y k 6 fu YS/2T 9.1.1 Link set at 4X 3.O $9U 2[6[23 9.1.2 CRA Cain % 2X 9.1.3 Discriminator set at 3.0
- 3. O
(? A 69U kM'2 Y 9.1.4.3 CRA Scaler' C/10 Sec. h. Pulse Amp In < -2.OVDC Pulse Amp Out < 4.0VDC l 9.1.4'.4 CRA g L t o e, V p c._ Scaler C/10 Sec. it 6 z ( M 690 2/4/77 Pulse Anp In C-2.0VDC - l. 3 cf M 690 7[k/?p Pulse Anp Out f4.0VDC l cf. o o qf (,Q O 2[f /'25' 9.1.4.5
- Pre Anp Gain ioy M (,0 L 2/5'/W I CRA Cain t.yy h (.,90 g /((W
- 9.1.4.6
,For 9.1.4.6 through 9.1.4.11 3l l l\\ee.AttachedGraph / S 9.1.4.11 9.1.4.12 N Q al "Flom" C a rr y Beginn M Plateau /db y,b End of Plat TQ I ( ' E is.., ? rC.;c 9.1.4.13 operating voltage (Trail)
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% 6QO I2/h% 9.1.4.14 l Slope < 0. 3 g t, 9.2.1 l,3 For 9.2.1 through 9.2.5 s !k ee~ Attached Sheets / S 9.2.5 9.2.6 CRA Pulse lieight Y, O ! W P4 6:Lh 69 0 " N/m/ SRT Pulse ileir,ht -1. 3 Y ' ' s -QL $Lk ({90 7/c /W J CRA Cain
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$/g/or 9.2.7 $ Prc Amn Gain /o K '64 (1 % 2[6/77 7gy Test Equipment Used 226 Ein Model ID# 9 Reviewed by N Date [d u.. (v ? D.'.'L. 'f. i C,4. h I ';i % D \\.C W 'u Om c u. n. -.; DII UNIT II TP 301/JD Effective Page 0 ~ Page 22 l . _..uplicate Page_ D = 4
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- -.s - kQ7 ' " '~n~ ' SECTION 10 - DATA REQUIRED
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