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Permit File BLD-2019-0612 3707 W2nd Street (6)
FOR �ul�� Cp Y 1 M o� gCOg Tp FIEL'0 S�Se .• VICINITY MAP CD to ap' P�' aa P b� o> co D 0.0 ¢ 1 ITM510N LAWN _ 90' FLOW PAIN NP C105+16H VIZ FENCE o 9'6" 51f7E SE1T3ACK 35' LAWN v �I PKOP05W F� I9FCK AWAOF19151U PANCF 17FEE F$21) 0 0 Sa FT. OF LARD ( 8 TOTAL) LOCATION FD20MB2( RELD VBIFY) I 24" OVEF q JGS TYP. p 24' LO ALL DOW4900UFS TO SRASH BLODS TO SFELT FLOW ONTO / PFDPF3RY7YP. BMPC236 / a N PF OPiOS® G 1), /I 7 6- POS® HDu7C PRDPDS® DRVE/ PARING ( TEMP OONSF BViWVCQ BMP CD 40' 6' I- c) I20 %( '60 0 SO. FT.) L4 DSCAFED ARE E AVATED SOIL, OWER WTH PLASTIC ( BMP C23) 7e, (:)tl RD BOARDER W STRNW SBAE2TO D4STING VADDLES hDOnpATSiF;EEf (5) I q LAM ~ I -v UVPC235- N SiRaWv 20' FF7ONT MATS" SEfBXX FLOW PATHPATH BMP C20 5 STRP DRNN TO BE R-4CED ATTWASMONF OM, DRVE TO SIDEwALK FLLAB OUfFLOWTO S BAP KTO F)QSTI%CJTYSTDRVI PATH 20' LAVU�I BWPCU 3-HGFiVIZ FBVCE �� El L DTEMON _\� UfILR16TD F>4511 w/ W FLOW PATH _ I-UOFaPS AT StF$T SITS / 12P,,AINA6F PI,AN if = ID 1 -0 it LAWN v STFdkW VVNDDLM FLAG TD CFFATE BA:RM I BEMM OONSr ENT� I APD SOIL AFFA 11A)r_IN:roll 0Z:.7hI�TJ3f7cIM--411179AAIt: :Jir lUy_I-.:,-Al LOT SIZE 75 0 0 9Q. FT. + - I B40SION CONMUL: BIVIP CV I - :3SER/E NATLRNL VEGTA-nON --ES:- • •-• ti AFEA AS POSSIBLE DLRNG CONSTFILMON BIVIP CU 3 HGHPLASTIC • - INSTA-L HGH VLZ PLASTIC PENCE ON SETBACK LINES AS SHDV\N TO MARK CLEARNG LIMITS PLASTICOOVERNG TO SI-EET R-OVV ONTO SITE ALL DIFEUTIONS FINISHSLAB BKAPC235 • . ► 1 • -. �Q -� - • . - .: . ANY - AFE NON-PET-ORAING DLRNG CONSTR.L-TION --• •ate - • `• • : • SI-DLLD BE MADE TO RTLACE VVTH A BETTER PEFFORAING BIVIP .. -_.. -. D AS . CH These plans have been reviewed for code compliance for the revision to change to an ICF structure. Please refer to origional stamped approved plans for all other City redlines. N N � lS V J1IV Y rn `' C�� Fr O 1 ALL TJI INSTALLAl10NPERMANT. DOIBLEJSTS. WDERINTERORBR�CMVV4LLS, RUADESOLID BLOCI4NG LNDERINT. BFKM WALLS 11-ATAF€ PEF;P TO FLR JSTS. 2. ASSIMED SOIL BEARNG PFEMI W_ @'6 0 0 FSF. 3. DO NOT SCALE DF;AWINGS, WRTTEN DIM. TAIE PFE03DBVCE 4. OOMRX7, MTO VEFdFYALL DIMBVSIONS AND Sr E OONDFnONS PRORTO OONST. 5 . ALL GLASS VUTHN B ii OF FLR DOORS ORG3ASS IN DOOF TO BE SAFETYG ASS 6 . STAIFS TO HAVE A MAX 7 3/ 4" " RSE AND A MIN. 13 ri TFEADAND A3i-0ri MIN.VUDTH 7. ALL ECF;ESS VUNDOV S TO HAVE A MIN. OPENING OF 5.7 SD FT. ( WTH MIN. 20 ii CLEARWDTHAND HBG-If 8 . WNDOW SILL TO BE MAX44ii OFF OF FLOOR 9. ID(MORW4LLSTOBE2ii X6ii @'6ii O.C, INT2ii X4ii @S" O.G. 'D . ALL BATFF ICOM UnLfTYAND HTaiM TO HOVE B4-WL6T FANS MIN..35 AIRCI-N\K1 S PMIH R 11 A_FnC VENT. TO BE OONT. RDGE VENT AND SCFEENED G4BLE VBVTS 12. ALL I-EADE•-S PER DUAL B. ALL OONCFE E BR)S®TO V\EATH R-OBE 30 0 0 PSI. so IM • ��11TIT71 I 11VT' •1 • 9 • • • 1 1 • 1 •1 • C- 919 -1 II 1 C-II -� - II•• ©� 1 • • e:• • • • - -1 �� 1 • : - 1 • ��-- 1 1 � 1 :1 1• ©�--1 : 1�1 :1 MILPING r1TQU1rTWNf5; I. TOTAL 1%ILPIN6 5Q. FT.: 3393 5Q. FT, 2, TOTAL 6MA6F 5Q. FT,: 624 5Q. FT, 5, fOT& COVFp1�19 POPCH 5Q, Ff,: 552 5Q. FT, IN51MON PTQUIPWFNf5 Poor: p-49 FXT PIOp W&1, 5; p-21 MIN. `�OOp5; p-38 IN51ATEP CONCp�Tt `1�00p5; 2'' P,161P p-10 5lmple Heating System bize: wasnington State This heating system sizing calculator is based on the Prescriptive Requirements of the 2015 Washington State Energy Code (W SEC) and ACCA Manuals J and S. This calculator will calculate heatina loads only. ACCA orocedures for sizina coolina systems should be used to determine coolina loads. Please fill out all of the green drop -downs and boxes that are applicable to your project. As you make selections in the drop -downs for each section, some values will be calculated for you. If you do not see the selection you need in the drop -down options, please call the W SU Energy Extension Program at (360) 956-2042 for assistance. Project Information Contact Information STRAATHOF CUSTOM BRIAN STRAATHOF XXXX WEST SECOND STREET (360)610-6016 ANACORTES, WA Heating System Type: O All other Systems • Heat Pump To see detailed instructions for each section, place your cursor on the word "Instructions" Design Temperature Instructions Design Temperature Difference (AT) 46 OT =Indoor (70 degrees) -Outdoor Design Temp Area of Building Conditioned Floor Area Instructions Conditioned Floor Area (sq ft) Average Ceiling Height Instruction_ Average Ceiling Height (ft) Glazing and Doors Instructions Skylights Instructions Insulation Attic 1,815 Conditioned Volume 9.0 16,335 U-Factor X Area = UA 0.280 607 169.96 U-Factor X Area = UA 0.50 I ,......., ........ R 9 Single Rafter or Joist Vaulted Ceilings ..�._.�vJ Select R-Value Above Grade Walls (see Figure 1) J Floors Instructions Below Grade Walls (see Figure 1) Instructions Sel«ca-awe - Slab Below Grade (see Figure 111) Instructions R-l0 lolly inwbtttl . Slab on Grade (see Figure 1 Instructions Location of Ducts ulsuuccions U-Factor X Area = 0.026 1,815 U-Factor X Area No selection U-Factor X Area 0.056 2,596 U-Factor X Area 0.025 1,815 U-Factor X Area No selection 0 F-Factor X Length 0.303 1,040 F-Factor X Length No selection Duct Leakage Coefficient � u<onenoea swe . 1.10 Figure 1. Above Grade UA 47.19 UA UA 145.38 UA 45.38 UA UA 315.12 UA Sum of UA 723.02 Envelope Heat Load 33,259 Btu / Hour Sum of UA X;\T Air Leakage Heat Load 8,115 Btu / Hour Volume 0.6X \TX.018 Building Design Heat Load 41,374 Btu / Hour Air Leakage + Envelope Heat Loss Building and Duct Heat Load 45,512 Btu / Hour Ducts in unconditioned space: Sum of Building Heat Loss X 1.10 Ducts in conditioned space: Sum of Building Heat Loss X 1 Maximum Heat Equipment Output 56,890 Btu / Hour Building and Duct Heat Loss X 1.40 for Forced Air Furnace Building and Duct Heat Loss X 1.25 for Heat Pump (07101113) Window, Skylight and Door Schedule Project Information STRAATHOF CUSTOM XXXX WEST SECOND STREET ANACORTES, WA Ref. U-factor Exempt Swinging Door (24 sq. ft. max.) Exempt Glazed Fenestration (15 sq. ft. max.) 11 Vertical Fenestration (Windows and doors) Component DescriDtion Ref. U-factor MASTER BEDROOM 0.28 MASTER BEDROOM SGD 0.20 GREAT ROOM 0.28 GREAT ROOM 0.28 GREAT ROOM GLASS DOOR 0.20 DINING ROOM 0.28 DINING ROOM 0.28 DINING ROOM 0.28 UTILITY 10.28 OFFICE / GUEST 0.28 OFFICE / GUEST 0.28 FOYER 0.28 FOYER DOOR AND SIDE LIGHTS 0.28 WIC 0.28 MASTER BATH 0.28 BEDROOM #3 0.28 BATH 0.28 BEDROOM #2 10.28 REC-ROOM 10.28 Overhead Glazing (Skylights) Component Contact Information BRIAN STRAATHOF (360)610-6016 Width Height Qt. Feet Inch Feet Inch k4-1 I I Width Height Ot. Feet Inch Feet Inch MMEME ©©■M■ MMEME MMEME MMEME MMEME MMEME MMEME MMEME MMEME MMEME MMEME MMEME MMEME MMEME MMEME Sum of Vertical Fenestration Area and UA Vertical Fenestration Area Weighted U = UA/Area Description Ref. U-factor Width Height Qt. Feet Inch Feet Inch Sum of Overhead Glazing Area and UA Overhead Glazing Area Weighted U = UA/Area Total Sum of Fenestration Area and UA (for heating system sizing calculations) Area UA 11 111 11 111 Area UA 12.0 3.36 80.0 16.00 70.0 19.60 42.0 11.76 40.0 8.00 21.0 5.88 24.0 6.72 72.0 20.16 12.0 3.36 24.0 6.72 16.0 4.48 12.0 3.36 40.0 11.20 12.01 3.36 18.0 5.04 16.0 4.48 6.0 1.68 40.0 11.20 50.0 14.00 607.01 160.36 0.26 Area UA 11 111 11 111 11 111 11 111 11 111 11 111 11 111 1 11 •1 1 •1 • Al COVED A2 61�NFFAL N01E5, �NFF6Y 51d �T5 A� MAIN FLOOp PLAN, LOW�I? FLOOI? PLAN A4 FOUNPAWN PLAN, 12Ff&5 A5 FX1Ff?IOIP, FL�VATION5 A6 FXTEI?101? FLFVAfI0N5 Al FOOF Ff?AMIN6 PLAN, 12FTAIL5 AB MAIN FLOOIF, FrAMIN6 PLAN, PFTAIL5 A9 Cf?055 51�CfION VIFW AIO LAff,& 12F516N PLAN All MFCHANICAL N0T�5 Prescriptive Energy Code Compliance for All Climate Zones in Washington Project Information Contact Information STRAATHOF CUSTOM BRIAN STRAATHOF XXXX WEST SECOND STREET (360)610-6016 ANACORTES, WA This project will use the requirements of the Prescriptive Path below and incorporate the the minimum values listed. In addition, based on the size of the structure, the appropriate number of additional credits are checked as chosen by the permit applicant. Authorized Representative All Climate Zones R-Value' U-Factora Fenestration U-Factorb n/a 0.30 Skylight U-Factor n/a 0.50 Glazed Fenestration SHGCb,e n/a n/a Ceilingk 49 0.026 Wood Frame Wall9'n' n 21 int 0.056 Mass Wall R-Value' 21121h 0.056 Floor 301 0.029 Below Grade Wall° m 10/15/21 int + TB 0.042 Slabd R-Value & Depth 10, 2 ft n/a *Table R402.1.1 and Table R402.1.3 Footnotes included on Page 2. Date Each dwelling unit in a residential building shall comply with sufficient options from Table R406.2 so as to achieve the following minimum number of credits: 1. Small Dwelling Unit: 1.5 credits ❑ Dwelling units less than 1500 square feet in conditioned floor area with less than 300 square feet of fenestration area. Additions to existing building that are greater than 500 square feet of heated floor area but less than 1500 square feet. 22. Medium Dwelling Unit: 3.5 credits All dwelling units that are not included in #1 or #3. Exception: Dwelling units serving R-2 occupancies shall require 2.5 credits. ❑ 3. Large Dwelling Unit: 4.5 credits Dwelling units exceeding 5000 square feet of conditioned floor area. ❑ 4. Additions less than 500 square feet: .5 credits Table R406.2 Summary Ootion Description Credit(s) 1a Efficient Building Envelope 1a 0.5 lb Efficient Building Envelope lb 1.0 1c Efficient Building Envelope 1c 2.0 1d Efficient Building Envelope 1d 0.5 2a Air Leakage Control and Efficient Ventilation 2a 0.5 2b lAir Leakage Control and Efficient Ventilation 2b 1.0 2c Air Leakage Control and Efficient Ventilation 2c 1.5 3a High Efficiency HVAC 3a 1.0 3b High Efficiency HVAC 3b 1.0 3c High Efficiency HVAC 3c 1.5 3d High Efficiency HVAC 3d 1.0 4 High Efficiency HVAC Distribution System 1.0 5a Efficient Water Heating 5a 0.5 5b Efficient Water Heating 5b 1.0 5c Efficient Water Heating 5c 1.5 5d Efficient Water Heating 5d 0.5 6 Renewable Electric Energy 0.5 Total Credits *Please refer to Table R406.2 for complete option descriptions Table R402.1.1 Footnotes For SI: 1 foot .= 304.8 mm, ci .= continuous it a R-values are minimums. U-factors and SHG( less than the label or design thickness of the Appendix Table A101.4 shall not be less than b The fenestration U-factor column excludes: n10/15/21.+TB" means R-10 continuous insl insulation on the interior of the wall, or R-21 basement wall at the interior of the basemer cavity insulation on the interior of the basem of the wall. 1110/1311 means R-10 continuous i insulation at the interior of the basement wa wall. d R-10 continuous insulation is required uncle There are no SHGC requirements in the Mal f Reserved. g Reserved. b Reserved. The second R-value applies when more than Reserved. k For single rafter - Reserved. m Int. (intermedia minimum of R-10 insulation. a Nonfenestration U-factors shz specified in Section R402.1.3. 0 0.5 El El El El El El El El ❑� 1.0 ❑J 0.5 El ❑� 1.5 El 1200 kwh 0.0 3.50 N 0 � � N � M N�✓ R C O g�w `o� ro Fr�LI) �rt5e� NOP,,TH FI.FVATION 14"=1-0" 5OUTH FLFVATION 1 4"=1-0" rim II 1 - ■! I_k \I- WeNd-I.rmAV,_Rift.5-] 0 g# ,�FGIS4ERFO `rSi�NAL ENC �W-w•vrso H N N � S S FpR RCO- `roc ,� co VBVT. lYP. 4n ,YFAt mMP ax,)Rnr nvRR WEST FLFVATION f 4"=1-0" 40 WAROOMP RDORNG OVER 'S I R FR Tn\/FR 7/ T," (I R N N S Fpr-FNG/ MANUF. MONO TpU55r5 @ 2' -0" O.C. N0�5 1 ALL 1IR a TO BE BULTAND 6VG BYA LIB TR-SS K/l FROM TFE STATE OF WA 2. ALL RDOF RTC ES AS NOT® 3. ROOFING TO BE 40 YR OOMP W 00INT RDC-E V NT.. 4. ALL OVE1+KaNGS @24" WO —T---7--------------------- 7----- 6 X 6 PT COLUMN W/ 6 X 6 PT COLUMN W/ /71 \ \ rCCLLQ66 5b52.5 COL, CAP 51 2" X 6" Ci6 (F84) �CCWQ66 51252.5 COL. CAP I PpF-rNG/ MANUF. JACK I \ F� / 15;12 PITCH TpU55�5 @ 2' -0" O,C, \ ( � / - SLOPr — — — — — — — — — \ 13FAM x N \ POCKrf (o Ppr-rW MANUF, JACK IRU55F5 @ / 2'-0" O.C. I p, \ \ PFF-FNW MANUF, MONO/ S / / / / 1 / x TRU55F5 @ 2 0 O.C. v F---- —�---- —T _ 6"X6''MINCONIC. \ I 13rAM `° 5,12 PITCH \ Z- # / N o MULLION W/ (2) 4 VFPf. \ �3 POCKPT 6II?I2FV TFU55 PW MANUF,_ \ \ 6 X 6 MIN CONC. 2) 2 X 6\ / �2 \ I \ MULLION W/ (2) #4 VFpT, / TpIMMPpS / \ \ I 2 X 6 bF #2 OVFPFP,41P LOOP OP 5TEP12OWN TpU55F5 \ j @ 2' -0" O,C. \ N I y� TI KI I \ I I --- 2 X 6 bF # 2 OVFrFkAMFP — — — �� I POOP Op 5Vt9OWN TpU55F5— @ 2' -0" O.C. — — — Nl IRIZ E5;12 PITCH SLOPS � I / /I QONCFETE LIME PPP-FNW MANUF. 12 JACK1VU55r5 @ — — — 2' -0" O.C. — — - CONr, ALUM GUTV ANb bOWN5POUT5 TO 5FLA5H13LOCK5 WNrpr N�RbFb, SHFrTFLOW QOOF I?UN-OFF ONTO PPOPrPTY, TYP. ly \ \` 2 X 6 bF #2 OVrprpAMrb11 rOOF OF 5tPbOWN TpU55r5 \ @ 2' -0" O.C. / Ppr-FNG/ MANUF, VU551�5 @ 2'-0" N o \ \ Iz V1121A \ \ — — — — — \ 5;12 PITCH \ 5LOPF ZZ. I 2 X 6 bF # 2 OVFFFPAMFb 1 rOOF Op 5V[9OWN IVU55r5 @ 2'-0 O.C. ,07) 1 /) 6" X 6" MIN CONC, MULLION W/ (2) #4 VFkf. I / / L2 K2 Ppr-FNG/ MANUF. VU55r5 @ 2' -0" O.C, �o �I �I L50 CLIP @ IS" O'C' L50 CLIP @ 18" O.C. F j / PFTMFN IFU55F5 POTTOM 1 PFTWFFN VU55r5 POTTOM — — — — — — — — CHOI?b ANb WALL TOP PLATP I CHOW ANb WALL TOP PLATr I I OONCFETE UNRL E 5;12 PITCH I 5;12 PITCH 5LOFF 50PF I I jo 7 2 X 6 bF # 2 OVI;PFVAMW Poor Op 5SP19OWN VU55r5 @ 2'-0 O,C,�` 3) 2X6 (3) 2 X 6 Ppr-rNG/ MANUF. 4I 5TUb5 / / GIpbFp TpU55 PFp MANUF. \ \ I I PpF-rNG/ MANUF, JACK TRU55r5 @ - I JACK TPU55F5 @ 2' -0'' O.C. I I/ `I I 2' -0'' O.C. /I I\ PFF-FNW MANUF. MONO / I VU55r5 @ 2' -0" O.C. I \ ---- — — — ---- — — / 5 1 2" X 12" X26' G-B ( Fit) \ P\OOF FP\AMIN6 PLAN 1�'- - - ---- -L- -�---- - - ---- `�! 14"=1-0" 6\ A; 7 6 II 3 STIf?f?UPS 4" O.C. I) # 4 CONY, Top & PoTTOM UI/ L2>-M1f� bF1'AL MAPK 51Z� P\NNFOPUM�Nf K1 6" X16" (1)#4fOPANPDMOM #-5 STIppUpS @ 4" OIL 1) #4 TOP ANn POTTOM K2 6" X 16" #3 5TII?I?Up5 @ 4" O.C. 1.3 6" X 16" ( 2) #4 fOP ANn [30TTOM #-5 5TIpI?Up5 @ 4" O.C. K� 6" X 24" 1) # 4 TOP ANn BOTTOM #3 511ppUp5 @ 4" O,C, 61� STIf?f?UPS O.C. > # 4 CONY, Top & PoTTOM �-LINTE� PFTAL � STIppUPS 4" O'c' 1) # 4 COW. V TOP & 130TTOM �4-Mtn P�TAL NOTE; 11?ussFs To C3F r3u1LT ANn MGINFM 1213Y A LIC%5W TRU55 MANUF. PY THE STATE OF WASHINGTON PI?F-FNG ANn MANUF, VIJ55F5 @ 24" O.C. W/ 1/ 16'' 05P POOP SHEATHING, 8d @ 6" O.C. FnGF, 12" O.C. FIFLb PLAN PFp PITCH p00FIN6 PFp PLAN PAFFLF SCf?FFNFn �31f?n MOCK COW, GUTTFp `HI CLIP FACH 11?U55 I" X 6" FASCIA 1/ 2" CCX PLYWOOn 2�" 5OFFIT ( Or, FQUAL ) W/ LINO CONTI 5OFFIT VFNT 1/ 2" GWF3 2" X 6" 5TU125 @ 16" O.C. W/ 1/ 16'' 05P SHEETING OVFp, TYM HOUSE WpAP Op EQUAL, p-21 INSULATION, 5112IN6 PFp PLAN TYK WALK 12FfAL -7 5141, -1 -o" (rpussrb w/ o sorrir > KKY NOTES TOP a-M OF TRM 2) ( 2 ) E d NAILS TOP & BOTTOM 3) 2 X4 POST, TYR 4) 2 X6 RWTEROVERFF MING@24" O.C. 5) 2 X 8 RDCf-: BOAM CON C 6)CONT. 2X4 7) FUOF 9-EATHNG MAY BE OMITTED IN SI-ADED AFFEAS BELOW FRAMING FORV N11LA11ON DST VW HN 4' -0 " OF CENTERLINE 8) ORSTIR DOV\N TRESES PBRMANLF. NT5 NOT: TPIJ55F5 TO PF PUILT ANn FNGINFMFn PY A LICFNSFn 1P155 MANUF. PY THE STATF OF WASHINGTON M-%6 ANb MANUF. TPIJ55F5 @ 2411 O.C, W/ 1/ 16" 05r3 PLAN p00F SHEATHING," 8d @ 6 O.C. F%F, 12" O.C. FIFLP PFf? PITCH p-�}9 INSULATION 5/8 GWC3 L50 CLIP EACH TVIJ55 W/ ('5) #9XI1/2" 5CrM EACH FACE FW. 5Y5TFM PFI? PLAN, GLUF ANb NAIL W/ 8d @ 6" O,C. FbGF, 12" p-49 O.C. FEW. 3/ q" T & G 0513 5UP- IN5ULA110N FLOR, PpOVIPF 50LIP BLOCKING OM\ ALL SUPPOpT POINTS 5 / 8" CIV0 f?-38 IN5ULA11ON Q 2 CONCPFTF 5LAP 50pMF19 C31pn FLOCK PAFFLF 2" X 10'' TOP PLATE W/ 51LL / GASKET Op EQUAL, 1/ 2" po @ 48" O,C W/ 3" X 3" X 1/ 4" PLATE WA51-1W WOFING PFp PLAN CONTI GUTT P\ I" X 6" FASCIA 1/ 2" CCX PLYWOOD 5OFFIT ( Ok FOUAL) W/ CONTI 5OFFIT VFNT 5112ING PFI? PLAN 6" ICF C3LOCK M PLAN W/ I/ 2 #4 @ 16" O.C. VFp11CAL ANI2 GW[3 #4 @ 16" O.0 HOpIZONT& -� 5/ 4" -1' -01, ( VU55W W/ 0 SOFFIT PA5FMFNT #q MU @ 12"O.C. FINAL GAF N 0 � Q z z �< RHO � � o <N ZN � z v z �< 0 � � �o x Q x Q O Foot LV�E C� 1'v Y � M Rio, l0 FIELn 6 X 612F #2 COL, W/ �CCQ66 5125 2,5 COL, CAP 0 co 5 �; 2" X 10" PT LPI26W, �i44 i ATTACH PFP f7PTAIL L2 '-2'1 2" '6' +0 " 6 X 612F #2 COL, W/ CC066 5P5 2,5 COL, CAP L2 40'-2 1 2" 5 1 / 2" X 15" X 40' 6" C113 ( PI330 2411 0" 6 X 6 ►2F #2 COL, W/ ti PCC066 5125 25 COL, CAP '6' -0 if 2" X 10'' PT LP126P1?, ATTACH PPR 12FTAIL HOLI2120WN5 POP\ PORTAL PRAMP OP\ 2" X 10" PT J5f5 @ 1611 O.C. I ----- �2 -- — — MOMPNT FRAMMF A130V� PAR LNG, J015T 13PARII WALL 24' 0 " 0 211 X 1011 PT LP► 6Fv' ATTACH PPP f7PTAIL I d 13PAM POCKPT YL_k 9 '48 ' 12' -5" 11-9 1 2" I I 11' -3 1 2" 112/ 8" TJI 210 J5T5 @ 16" O.C. PROVIP I I �3 50L11213LOCKIN6 OVFk ALL 5UPPOkf 13PAM5, I1\15TALL PPR MANUP, 5PPC5, 4 X 812F # 2 J015T 13PARIN6 WALL - -" J015T 13WNG � WALL 4"ix o — — — — — — 4" X8" DF#2� # `o 11 N x N 6 X 6 t2P #2 COL, W/ PCCQ66 5125 2,5 COL, CAP, A13U66Z P05T 13A5P J015T 13FA1?IN6 I12/ 8" TJI 210 J5T5 @ 16" O.C. rPOVIt2P 50L11213LOCKIN6 OVFP\ ALL 5UPP01?T P3 AM5, IN5TALL PPR MANUP, 5PPC5, co J015T ' WING RI �3 I� J 24" X 24" X 8" PTG III w/ <2) #q F.W. I i II 6 X 6 12P #2 COL, W/ PCCQ66 5125 25 COL, CAP, VU66Z P05T 13A5P u r �3 5o'� x 5o" x 8" LTG w/ (3O #q �.W, I I - n �P x, �3 �2 �2 1VRIN6 -------- — WALL I I UPPPR CONCRPTP ! x PA110 CPILING 'B'- 12' 12'-7" 1 4"=1-0" CV CV C14 0 0 1/ 16" THICK WOC 5TVUCTUVAL PANEL SHEATHING ON ON FACE DOUBLE POVTA. FVAME ( TWO 13RACE19 WALL PANEL5 ) EXTENT OF HEADER 51N6LF PORTAL FRAME ( ONE 13VACE19 WALL PANEL ) WTURN HANDRAIL TO WALL Of? TPRMINA11; @ N�ML P05T,, MAX TRPAP OR P15Pp VARIA11ON- 5/ 8" LAN1211\165 @ TOP ANP POfTOM MINIMUM LPN6TH-5TA11? WI19TH FIN15H PL001? PLP, J5T, PAR PLAN MIN, 3" X 11 1 / 4" NET HEADEV M5T2� (1000 Ib MIN, > 5TVAP TV. POVTAL FRAME CON5TVUCTION 5/ 8" PIA, X 10" ANCHOR BOLT PEV PLAN POFTAu MAW WITH HOLPOWN5 nML 10" MIN, PROTPCT FNCL05FP U5A13LP 5PACP�\ UNPFP\ 5TAIp5 W/ 5/ 8" GWI3 @ WALL5 ANP OILING PIPTDLOCK CONCPALF12 2" X 12" 5VIN6P1? 5PACP5 @ TOP ANP BOTTOM 13PMW N WALL 5TU25 ALONG 5TAII? RUN 5/ 8" GWI3 MAX 9 I?u5 PFN11Au 5fA u PFTAL 211-I'-011 FIN15H CPILING -I / 4" - 2" 6PTPADLP HANWAIL roofIN6 51GH�pl� MA�I?K SJZ� �I 611 X 1211 F 2 1211 X 2411 �3 8° X 16" FIN15H PLOOF NO #4 CONT. (2) C3) #4 CONf C 2) #4 CONT. FOP PANEL 5PLICF ( IF NEEPEP) , PANEL FZE5 SHALL 13E f3LOCKEP, ANP OCCUR WITHIN 24'' OF MIP HEIGHT, ONE VOW OF TYP, SHEATHING -TO- FVAMIN6 NAILING 15 VEQUIVEP, IF 2 X 4 BLOCKING 15 U5EP, THE 2 X 4'5 MU5T 13E NAILEP TOGETHER W/ 3-16d SINKERS, 5THPI4 HOLPOWN, 5TP.AP 5MY ANCHOV5 5HALL 6E PEVMITTEP TO f3E ATTACHED OVER THE WOOF 5TVUCTURAL PANEL ( MIN. HOL12OWN FORCE5 REQ.-4200 lb ) 5/ 8" PIA. X 12" ANCHOR13OLTIN CFNTEV OF 5111 PLATE N N � z� Z z � s i �1 R O � � � O <N o / �z � C � C � i 0 � z 0 � � � O x Q � x Q v O 15 F40 2.4.11 INSTALLATION FOR CODE Co �0c, TI-E COMPONENTS OF THE BOLDING THERMAL ENVELOPE AS LIST® IN TABLE P40 2.4.11 SHALL BE -NA Y INSTALLED IN AOOOFDANCE VUTH THE MANLFACTIf;ER S INSTR GTIONS AND THE CR ITERaA LIST® IN TABLE P40 2.4.11 AS APPLICABLE TO TI-E METFOD OF CONSTR CflON. VU-EFF- FEQURED BYTI-E CODE OFFICIAL, AN APPFOVE3 THFD PARTY SFIALL INSPEOFALL COMPONENTS AND VE3FYCOMPLIANCE. TABLE F;40 2.4.11 AIRBAF ERAND INSILAIION INSTALLATION see FIELD IN MMFONB�f f AJRBAMERAJND TH33II AL BARRIER WALLS RIM JOISTS D • -THTMAL BqVR-OPE CONTANS A 00NTINOU5 ' - : `":- PLATEBRISAIG ORJOINITS IN THE ARRAMERSI-ALL BE SEALED. INSU.-ATION AND ANY CA:S IN THE AR RAMER SEALED SPACES SI-PLL BE SEALBID SILL . . :. SEAM.TI-E J LNCTON OF TFE TOP PLATE AND TOP OF E)MRORWALLS Sl-PLL BE SEALED. MEE V\PLLS WILL BE ;. Sl-PLLSEALED. JOISTSRM .ANDINCLUDEARRAMER : INSILATION SHALL BE INSTALLED TO MAINTAIN PEFd\/IANENT OONTACT VUT H LNDEFSIDE OF FLOOFS ( INCLUDING ABOVE- GW E AND SU3FLOORDECR4NG QWnLEVEFEID FLOORS) THEAIRBAMERSH4LL BE INSTALLED ATANY DFOSED EDCF-OF INSULATION. VU--ERE- PFUMDED IN LIEU OF FLOORINSllATION, INSULATION SFALL BE P3RMAJNENT1-Y CR RAL SPACE V\PLLS ATTACHED TO THE CRIMLSPACE VVALLS DEOSED EARTH IN WVBVTED CF;AV\IL SPACE SHALL BE COVERED VUTHA CLASS I VAPOR FETAFDERVUTH OVERLAPPING JOINTS TAPED. DUCT SH4FTS, UTILITY PENETRATIONS, AND FLUE SI-PM OPENING TO B(TE RCROR "FTS, PBNEm-IONS UNCONDITIONED SPACE Sl-PLL BE SEALED. BATTS IN NAFTDW CAVITIES SHALL BE CUf TO AT OR NAR;0W CAVITIES SHALL BE FILLED NARTDW CAVFIIES BY INSULATION TI-AT ON INSTALLATION FEADILY CONFORMS TO THE AVAILABLE CAVITY SPACE. GNlkGE= SEPARATION AIRSEALING SHALL BE PROVIDED BE V\EEN THE GARS AND CONDITIONED SPACE. R33MSBD LIGHflNG LIGHT FTXIl F E S INSTALLED IN THE BULDING THUMAL BNVELOFE SI-PLL BEAR TIGHT,, IC RJBD, AND SEALED TO THE DRNVALL. BAT INSULATION SHALL BE CUF NEATLYTO FITAR LND WRING AND PLLMBING IN PLUMBING AND WRING DQffdORWALLS ORINSUVaTION TATON INSTALLATION FEADILYCONFORMSTOAVAILABLE SPACE SHALL EXJEND BE-IND RANG AND VURNG SH0V\ER/ TU3 ON E)CMORV\ALL D(MORVVALLS ADJA03NTTO SFDVU;S AND TUBS SHALL BE INSt1ATED AND THE AIR RAMER INSTALLED SEPAF;Al1NG THEM F RDM TF-E SI-DV\;S AND TUBS �ECiRCAL / PFDI�E BOX ON DCTffdORV164LLS THE AIRBAR IERS-PLL BE INSTALLED BEHND ELECTRCAL ORCOMMLNICATION BOKS OR AIRSEALED BOA SHALL BE INSTALLED. FWAC F€GISTERBOOTS FVAC FSGISTERBOOTS THAT PENETRATE BOLDING THERMAL ENVELOPE SHALL BE SEALED TO TFE SUBFLOOR OR DRYWALL. FIFA AN AIRBAR ERSH4LL BE INSTALLIE ON FIRST AC WALLS FIRE1 ACIES SHALL HOVE G45F= DOOFS. F40 2.4.12 TESIINO PFESSLFF- OF 0.2 INCHES W.G. ( 5 0 PASCALS) . w-ERE- FuQuRED Byi�-E CODE OFFICIAL, =NG SI-PLL BE SIGNED BYTI-E PARTY 00NDLCTING THE TIESTAND PRDVIDE) 70 11-E CODE OFFICIAL. TEB11NG SI-PLL ENVELOPE. DUlNG TESTING D •- .• • AND.•• .AICE AND STOVE .•• • BE • ••:. BILT NOTSEALED, CLOSED, BLJF NOT SEALED BEYOND INTENDED INFILTF;ATION CONTFUL MEASJ;ES 3. INTEROR DOOF;S� IF INSTALLED AT THE TIME OF THE TE-7), -c+-ALL BE OPEN; BE CLOSED AND SEALED 5. HEATING AND COOLING SYS� IF INSTALLED AT TI-E TIME OF THE =, Sl-ALL BE TLRNED OFF, AND 6. aPPLY AND RETLFN REGISU;S� IF INSTALLED AT TI-E TIME OF THE TEBT, S--ALL BE FLLLY OPEN. =ON M 15 0 7 - MECHANICAL VEN11LA110N. • 1 • • �• ' : ` • : Bl • : • 'Al• MSS 7.3.1 SYSTIEM DESIGN. EACH DAELLING LNITORGUES"TFDOM SHALL BE EQUPPED VUTHA VENTILATION SYSTEM COMPLYING VUTH SECTION M 5 0 7.3.4, MT 0 7.3.5, M'5 0 7.3.6 OR M16 0 7.3.7. COMPLIANCE IS ALSO PERMITTED TO BE DEMONSTRATED TFFDUSH COMPLIANCE VUTHTHE INTE]:NATIONAL MECR-PNICAL CODE I LOCATION OF CONTFOLS CONTRIDLS FORALL VENTILATION SYSTEMS Sl-PLL BE READLYACICESSIBLE BYTF-E • C -' 3. LOCAL E)M-ST SYSTM LOCAL BM.HF SYSTEMS SI-ALL BE CONTROLLED BY MANUOL SMATCHIS, 4. •• • •LE - HDLSE VWTILATIONODNTINLOLS W-OLE• • VENTILATION SYSTEM V\ATF-DUF EN8;GZING OTHER ENB:;GY - CONaMING APPLIANCES A LABEL SI-PLL ` 00MFLY VMTH THE FOLLOV\ANG: 5.1 THEY Sl-PLL BE CAPABLE OF OFEF;ATING INTBWITTB\fTLY AND CON-TINUDLELY 5.4. THE SYST8\A SI-PLL BE DESIGNED SO TFAT IT CAN OPERATE AJTOMATICA-LY BASED ON THE TYPE OF CONTIRDL TIMERINSIALLED. 5.5. THE INTERMITTENT •-ANICAL VENTILATION SYSTEMOPER57E AT LEAST ONE DLR OLT OF _• • • TIMER 5.7. AT THE TIME OF FINAL INSPECTION, THE ALMOMATIC OONT;OL Sl-ALL BE SET TO OPER\TE TI-E V\h-OLE - •-- - • •1 -• • -A • • : • • • • • ` IN AO0O VUTH TABLE M'S 0 7.3.3 ( � . D(CIPTION: -n-E w-DLE- FIXES mEa-PNICPL VB mLA-noN semEms B F97 MFD TO OF9i1lE IMBWiTIBayw4ff€ T1 E s67F 1 FASCON1 S7EATE\M�OLH4\flMKRNOTLESSTFPN25 FHCHZOFEALH4-FOLRS=GMR\iANDTI-E \EOLNION RATE PFMDiB®IN TABLE M'50 7.3.3(I IS MLLTIRIEDBYTI-E FPLTORDEIBdv➢N®IN P YVCE WTHTABLE M50 7.3.3(2) . TABLE M'6 0 7.3.3 ( 1 NLMBEROF BEDFOOMS DAELLING UNIT 0- 1 2-3 4-5 6-7 > 7 FLOORAFEA ( SQUVF- FEET) AIRFLOW IN CFM <1500 1500 -3,000 3,0 01- 4,50 0 4,501- 6,000 6,001- 7,500 45 60 60 75 75 90 1) 5 75 90 90 V 5 1) 5 120 V 5 120 135 120 135 0 >7,501 'D 5 120 135 150 135 FORS: 1SQUAFEF00T= 0.0929 W, 1 CUBIC FOOT PERMINJE = 0.000471) W/ S TABLE M-5 0 7.3.3( 2 ) IN ER MITTBNT WO F - HJLEE MECFI4NICAL VENTILATION WE FACTORSa; b RN - TIME RUCENWE IN 15" 4 - FDIRSBgVENT 2 5 % 33 % 5 0 % 6 6 % 75 % 130 FAG"TORa 4 3 2 15 13 10 INTB4201-AfICIN. -1.116 Al0► :alb\• I■ ::I■-.11:• I. M15 0 7.3.4.1 VU-DLE HJUPE - VENTILATION FANS. E*AUST FANS AFOVIDING V\FFDLE - HDLSE VENTILATION SHALL HAVE A FLOW R4TING AT 0 .2 5 INCHES WATER GALE AS SPEOFIEDIN TABLE M'6 0 7.3.3 (1 . MAJNUFACTUf;EFs FAN FLOW F;4TINGS'FALL BE DETERMINED ACOOFDING TO FM 9 B ORAVICA 21J . M'6 0 7.3.4.3 FAN CONTROLS 11-E W-IDLE - FDLSE VEMILATION FAN SHALL MEET THE FEQOFEVIBNTS OF SE7ON MT 0 7.3.2 AND MT 0 7.3.2.1 . 1 OUTDOORAIR INLETS . ...- • -. . . :. TO EACH HOBITABLESPACE CONTFULLABLE AND • • OPENINGS; 3. PFOVIDE NOT LESS TFAN 4 SQLARE INCHES OF NEF FREE AREA OF OPENING FOR EACH H8BITABLE SPACE ANY INLEF ORCIDIVIBINATION OF INLETS V\&-iCH PRDVIDE V CFM AT V PASCALS ARE DEEMED I CLOSERTHON 1) FEET RZOM AN APFLIA`,JCE- VENT OLJTLEF, LNLIESS aJ--H VENT OLJTLEF IS 3 FEET ABOVE TF-EOUrDOORARINLEF. : OPENING :• RINLEF. 6.ATTIC, •-• SPACES • - !a FEDUREMENTS FORA•E - HDLGE VENTILATION FABITABLE SPACE SLFPLY FANS SI-PLL FAVE TFE CAPACITY TO PFOVIDE TFE AVIOLNT OF OLJTDOORAR MLSF BE ALTERED BEFORE IT IS DIELIVEFTID TO HOBITABLE SPACES THE FILTER MAYBE LOCATED AT THE INTAF- _ . . FILTER N8THRTWE OF DUCT Sl-ALL BE 00NNIECTED DIRECTLY INTO A FU`NACE CABINEF TO PIREVENT THERMAL SI-DG< TO THE [-FAT BCH�NGER TI-E OIJTDOORAR INLEF DUCT SI-ALL BE PFE3CRlP`TlVR-Y SIZED IN A•••R.A•E \NTH TABLE Mf5 1 • R-EMENT ON OLJrSlDE OF : DING Sl-PLL TABLE• 1 • RIPME SUPPLY FAN DUM7 SIZING SUPPLY FAN 1ES'T® CR M AT 0.40 " VVG SPECIFIED VOLUME FRIDM MINIMUM MINIMUM TABLE B 0 7.3.3 ( 1) SIVIOOT H FLEMBLE DIGT DUCT DIAMETER DIAMETER 50 - 90 CFM 4 INCH 5 INCH 90 - 150 CAM 5 INCH 6 INCH '6 0 - 250 CFM 6 INCH 7 INCH 250 - 40 0 CFM 7 INCH 8 INCH M/5 0 7.3.6.3 DAMPERS. TI-E SYS fBVI SHALL BE EQUPPED VUTHA BACK- DR*T DAMPERAND ONE OF TFE FOLLOVUNG 1A CALIBFATED MANUAL VOLUME DAMPERINSTALLED AND SETTO MEET THE MEAaf;ED FLOW FATES SPECIFIED IN TABLE MT 0 7.3.3(' BY FIELD TESTING VUTHA PFESSLFE GAUXE AND / ORFOLLOVUNG MANIL ACTIN S INSTALLATION INSTRLCTION,,� OR 2.A MANUAL VOLLME DAMPER INSTALLED AND SETTO MEETTFE MEASI RED FLOW WEB SPEGFIED IN TABLE M-5 0 7.3.3 ( � BY FIELD TESTING VUTH A FLOW HDOD ORA FLOW MEASLRNG STATION; OR 3. AN AUFOMATIC FLOW - REGLLATING DEVICE SIZED TO THE SPECIFIED FLOW FATES IN TABLE M-50 7.3.3(� VV-ICH PRDMDES CONSTANT FLOW OVERA Pf;ESSfE R4NCE OF 0 .20 TO 0.60 INCH WATT R GAUXE FOR3ED - ARSYSTEM DUCTS INTECR�JED FOFCED - ARV[3�TTILATION SYSTEMS Sl-PLL FAVEAN OlUTDOORARINLET M'607.3.6.5 OUTDOORAR INLETS INLETS SHOLL BE SCREENED OROTH3:1/MSE PRDTE= FFOM ENTR(BY DUCT CONNECTING A TIERMINAL R-B\AB\IT ON THE OLJTSIDE OF TI-E BULDING TO THE RERYN AR FLENLM OF THE LEAVES OROTI-ER MAJEFIAL. OUTDOORAR INLETS SI-ALL BE LOCATED SC) AS NOT TO TAIIF- AR FRDM THE FORCED - ARSYSTEM, AT A POINT \NTHN 4 FEET UDSTREPM OF THE AR WNDLER THE OLJrDOORAJR INLEF DUCT FOLLOWNG AREAS CONNE37ON TO CLOSERTHON 1D FEET MOM AN APPLIANCE: OLJTLEF, LNLESSS-ICH VWT•FEET: • AND SI-PLL NOT BE CONNECTED DIRECTLY INTO A FUq\lACE CABINEF TO FFEVENT THERMAL SHDG< TO THE FEAT TF-EOUTDOORARINLEF. DO*NGER THE SYSTEM \NLL BE EQUPPED \NTH A MOTORIZED DAMPER OCINNIECTED TO THE AJF0MAJIC 2. V+EFF- IT \NLL PICK LP OBJ 137ONABLE ODOMFLMEB OR FLAIVIABLE VAPOFS VENTILATION CONTRDL AS -cfEaRBD IN SECTION M5 0 7.3.2. THE FEDURED FLOW RATE Sl-PLL BE VERFIED BY 3. A HV-ARDOLS OR LINSIANITARY LOCATION. FIELD TEMING WTH A FLOW HDOD ORA FLOW MEAaRNG STATION. 4. A R�)OM ORSRACE HMANG ANY FLEL - BLRNING APFLIANCIES TH3:43N. 5. CLOSERTHON 1D FEET FRDM A VENT OPENING OF A PLUMBING DFAINAGE SYSTB\A LNLESS THE VENT M'5 0 7.3.5.2 VENTILATION DUCT INSLLATION. A-L SLPI:l-Y DUCTS IN THE CONDITIONED SPACE S--PLL BE OPENING ISATLIEAST3 FEEFABOVETI-EARINLEF. LEAVES ORCITHERMATERAL. OLJTDOORAR INLETS -q-PLL BE LOCATED SO AS NOT TO TAIIF- AR FRDM THE FOLLOWNG • •`:- 1 FEEF FRDM-- • : OLJTLEF, LNLESSSUCH VENT•LJR-EF IS 3 FEEFPBOVE TFEOUrDOORPJRINLEF. 3. 1 . AFD• ► • - LNSANITAR(LOCATION. 5. CLOSERTHAN V FEEF FRDM A VENT OPENING OF A PLUMBING DFANAGE SYSTEM LNLESS THE VENT 6. ATTIC, CF;AVV- SPACES ORGAI:;A� RECCIVERYVENTILATION SYSTB\4. M150 7.3.7.1HEAT FE WVER'VENTILATION SYSTEMS. ALL DUDTV\,OR<IN FEATRE]MVBR'SYSfBV1SSHALL BE SIZED AND INSTALL® A3RT1-E MANIFACTLFU:s INSTFLL70NS. SYSTBM MINIMUM FLOW FETING SHALL BE NOT LESS THAN TIAT SPECIFIED IN TABLE M 5 0 7.3.3 ( � . I -EAT FEOOVERY VENTILATION SYSTEMS SHALL HAVE A FILTIRON THE UPSTFEAM SIDE OF THE I -FAT D6HANCERIN BOTHTI--E INTAIf-:AND E)0- TAJFSTFEAIMS VUTHA MINIMUM EFRaBNGY RATING VALLE ( MW OF 6 . M15 0 7.3.7.2 VENTILATION DUCT INSULATION. ALL SUPPLY DUCTS IN 71-E CONDITIONED SPACE INSTALLED UPSTREAM OF TI-E FEAT D(C *K3ERSHaLL BE INSl1ATED TO A MINIMUM ORR4 M'b 0 7.3.7.3 OUTDOORAR INLETS INLETS SI-PLL BE SCREENED OROTH3:A/MSE PFID-TECTED FROM ENTRY BY FOLLOVMNG • ••:- 1 FEET MOM AN APPLW\JCE-: OLJTLEF, LNLESSSUCH VENTOLJTLEF IS 3 FEETABOVE TI-EOUTDOORARINLEF. 5. CLOSERTHON 1D FEET FRDM A VENT OPENING OF A PLUMBING DRINNAGE SYSTB\A LNLESS THE VENT • ATTIC, CRNAL SPACES, •- ':l TABLEE*ALST TI-E MINIMLM AR FLOW R!\TE DETBWINBD IN ACCORDANCE V\ATH TABLE M*b 0 7.4 • 1 7.4 MINIMLM REDURIED LOCA- EXH4J5T '' ES AREA TO BE BWSM EXH4 -6T FATES KTCHN 1) 0 CFM INTBdvIf ENTOR25 CFM CONTINUOUS BAT-FOOMS- TOILETRDOMS MBJ-PNICALBMfaT0NDACI Y0F50 MAINTERAMENTOR LgbDWRDOMS; 20 CFM CONTINU XB INDOORSIMMMING -FCICIU� AND s:P8 FOR 1 CUBIC FOOT PER MINUlE = 0.000471) W/ S MT 0 7.4.1 LOCAL EXH4 Hr FANS. EXH4 T FANS ARDVIDING LOCAL EXH41 E7 SHALL HAVE A MINIML.M FAN FLOW Fd4TING NOT LESS TH4N 50 CFM AT0 .25 INCHES VVATERGQLXE FORBATH`IJOMS, LAL.NDRES. ORSIMILAR F3OOMS AND 1) 0 CFM AT 0 .2 5 I NCHEj WATER GqJ E FOR NTa-ENS. MANUFACRJUS FAN FLOW F?4TI NGS Sl-PLL BE DETERMINED AS PBRFM 9'B (APRL 1995) ORAIVICA 21T . B<CB�IIOk VIES€ A RVJCE FDOD ORDOV\N DRAFT BOKET FAN IS LJSED TO S4TISFYTFE LOCAL B4Fmb7F€IXJFHVIBJIS KTQ- J TFE WKE FOOD ORDOM DRAFT Do-- B -q-pLL NOT BE LESS TFfN 'DO CFM ATO .1) NOfS VATER GLkE M13 0 7.3.2 LOCALB4*lHr CONTROLS. LOCAL DH4.ST SYSTEMS Sl-PLL BE CONTROLLED BY MANUAL S1E MTM-S DB-LMIDISTATS, TIMEZS, OROTHRAPPFDVED MEANS. LOCAL DH bTSYSTEM CONTFDLS SI-PLL BE FEADILYAOCEDSIBLE N 0 � � S