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HomeMy WebLinkAboutPermit File BLD-2020-0811 2802 Oakes Avenue Y. 6 Cityof Anacortes Invoice/Permit #: BLD-2020-0811 904 6th Street Applied date: 12/30/2020 P.O.Box 547 Issue date: 01/12/2021 :„co Anacortes, WA 98221-0547 Expire07 / 2 «�' _� (360) 293-1901 date: /11 20 2 o " Job Address: 2802 OAKES AVE Permit Type: Fire Sprinkler Permit ANACORTES WA 98221 Project: APN: Remarks: INSTALL NFPA 13D MULTIPURPOSE FIRE SPRINKLER SYSTEM IN A NEW SFR. Owner: DAVID & MONIKA BRUNER Contractor: X-FIRE SECURITY Address: 1808 7TH ST Address: 1511 KENTUCKY ST ANACORTES WA 98221-1402 BELLINGHAM WA 98229-4718 Phone: Phone: (360) 715-8088 License #: General Information: Fees: Building Valuation 8124 Building Permit Fee 167.25 Plan Review Fee 108.71 State Building Code Fee Comm 25.00 Total Calculated: 300.96 Deposits/Receipts: 0.00 Total Due: 300.96 The issuance or granting of this permit shall not be construed to be a permit for, or approval of, any violation of this Code or any other ordinance or order of the City, of any state or federal law, or of any order, proclamation, guidance advice or decision of the Governor of this State. To the extent the issuance or granting of this permit is interpreted to allow construction activity during any period of time when such construction is prohibited or restricted by any state or federal law, or order, proclamation, guidance advice or decision of the Governor of this State, this permit shall not authorize such work and shall not be valid. The building official is authorized to prevent occupancy or use of a structure where in violation of this Code, any other City ordinances of this jurisdiction or any other ordinance or executive order of the City, or of any state or federal law, or of any order, proclamation, guidance advice or decision of the Governor. The building official is authorized to suspend or revoke this permit if it is determined to be issued in error or on the basis of incorrect, inaccurate or incomplete information, or in violation of any City ordinance, regulation or order, state or federal law, or any order, proclamation, guidance or decision of the Governor. This permit becomes null and void if work or construction authorized is not commen ithin 180 days or if construction work is suspended or abandoned for a period of 180 days at any time after work is commenced. I have read an xamine this application and know the same to be true and correct. SIGNATURE OF OWNER OR AUTHORIZED AGENT ISSUE L AREA MAP I - - HOUSE CROSS BUILDING SECTION (3) MOST HYDRAUUCALLY REMOTE HEAD BULDNGSECTION DETAILS • , PRESSURE REO'DAT STREET Li 0111114V WIC.CA* a 2 HEAD # HE .24 GPM 26 SDPSI 60 ��� City of` NI Idl► ' = - AD I GPM a�te 23 Hirld Seethe Rock wlldCatChlin Ewa... 5le, © aaa� '1'g�_ • yjww� ' HD SYMBOL MODEL I K FACTOR MAX SPACING x.;,,, I" q Seafood Products Ha i -------c31 ■�111111111111111111I© J1 �_ US 111 S s` 1 © RFC43-12 SIN-RFC43-RA0612 4.3 12X12 _ "IF RFC43-14 SIN-RFC43-RA0612 4.3 14X14 x itz 0th St > m- y +- �p Q RFC43 16 SIN-RFC43-RA0612 4.3 16X16 �-- ru- mPaB CO D 8 i I L4 I.�.I i \ = =Is NI �I�I� o II a I I �� Q RFC43 18 SIN-RFC43-RA0612 4.3 18X18 e. nh St ®�f+ = a I�� "' "' I� Q° RFC43-20 SIN-RFC43-RA0612 4.3 20X20 m la.1..' I 1�� Minimum Required Sprinkler Discharge !! _ Ma! -g- r ' Nwnina, Tamp 'K' Sprinkler Mot Single Sprinkler Two or More Sprinklers 20 �1.+ 6R.Re.o -- 1 __...--__. 'w- -e -_ Model Orllince "he ( rig Factor S(k.)ulg D(t N)dl (Flow Pro Fl(w E) Pressure Ea. Classifdes co 0 ,.,..._ , �;i30 n ) psi (Pa9 p 0 aLrovric sJSe C�aft•��' �St Kiwanis Meadows 9 all y I j 12 x ,z s ,z 7.e ,z 7.8 Y7 ZP lapl I 1 14 z 14 iJ 7..8 9.7 14th St D IJi I' I-__ a� LUNG ® SIN RFC4J 1/2' 165 4.J 16 z 16 81970 13 9.1 9.1 i ® 18 x 18 18 17.5 17.5 95 -�St m II) -. I i z : t 20 x 20 21 238 218331 23.8 p 11 ark Y` - (]�� NUMBER OF SPRINKLER HEADS: 31 1s Samish Longhouse® � 1 ( ❑w i I Preschool - - -_ - _ _ ..,. 'Jails B y Kenna Q ID �iiiiiiiii2 V N11-cd6; �3t�p, nmst 18th St ®HSYMBOL F1R44A6-12SW FiMODEL RES 4I4 SWS FACTOR MAX4.4 i SPACING / num Map data Z2020 2802 OAKES AVE. ANACORTES, WA 98221 ® F1R44A6-14SW F1 RES 44 SWC 4.4 14X14 .� l� F1R44A6-16SW El RES 44 SWC 4.4 16X16 .1,AIIT - HOUSE CROSS BUILDING SECTION (4) I HD SYMBOL MODEL I K FACTOR MAX SPACINQ II ® F1R44Al2-12SW F1 RES 44 SWS 4.4 12X12 ,+a-I _ A F1R44Al2-14SW F1 RES 44 SWC 4.4 14X14 I FILE NAME: i A F1R44Al2-16SW El RES 44 SWC 4.4 16X16 Hi 0 -� U(j ee L-3530 Mininum Required Sprinkler Discharge _ I I r ; 1„I,I I I ' I I I� r"' Made Norrnhal Temp •K Sprinkler Max BRUNER SITE PLAN 114 / E F, RES 44 SIN," Orifice Size Rating Factor Spacing Distance Single Sprinkler Two or Ma a Sprinkkn j Y• ® ESE To ,max �_ / . . .O m,,. �- F,Raans ( ) CO ( ) ( ) ( ) (w) ( ) (w) a RESIDENCE M R. To Wall Flow Pressure Flow Ea Pressure E • / r k = 1 � G � O Top of Deflector ft. I i • ,// a /h - * c t y I i 1 = L • ./ SLIMS - Inch le 12 x 12 6 1J 8.7 13 8.7 ( K ��- r. i ,I g) SHEET NO. 1 / �._..„7. . � '`, ` $ Nil * 1 .� B U J/B' 1s5 +4 14 x ,a 7 1a ,D.z 1a 1D.z 35 F a `` w4s�1-.c A _G•�l m m i 4 to 6 16 x 16 8 17 15.0 17 15.0 Ili\ ;/ � GATaRS/AN= . . . �$ U' Mlnlmum Required Sprinkler Discharge 1 OF 3 i r is' . , L_____, ., ., j '= •- wae,urinwa. x• � � i,r a- ,,.. "�"'�' © I m - F! NamMal Tem 'K Sprinkler Max. Single Sprinkler Two or More Sprinklers proem;PARE fl RES 44 SWC Orifice Size Rot Factor tide" Distance t. �,,; �,. r,,' .�.. \\ \\��\\ ;. ` �/ SFR / /\�'``' FYI -al _- i ' F1Ra4a,z (le) CO ( ) 00 ( ) 090 ( ) (w0 -� ,.s... \ ,\N. 1� - /� m�m 4 __ (ft.) To Wall Flew Pressure Flow Ea Pressure Eo. di .--'',, .' '" ,�' r• / y. -3 1 ,a",.v..,, nueEx COME l� ate..r j •', CD /WIFLA30R xaeAsorr. i ot0efiedor UJ :,R , r %i' / II m - -1. +, G }'^,p er -,•ut - 1,eea WfT. to Cep +tom ��;�� ' � � � V lit I = �Vdi' � ai4 I = - BASEMENT ( ) 12xi2 6 14 10.2 14 10.2 2 „w t r t l : r.2 Inch mm • .. ..t_>.• `�. 0.- ' a• w , \ „ \\ �/ ( r ' '/ �oo. I } 1A _ L-_•_. u`,aAGB waisorr. 8 to 12 14 x 14 7 15 11.7 15 11.7 i \ . or t ` ' • ` \�� 1 , ' ( < 2 m I. I I l "„-__ - _ 16 x 18 B 18 1G8 18 16.8 `- � a at \ \ r � ; !'� '- s - ENTRY Tor sort 700 to 152 - O N M .\ /' A< jst m3 - --- COVERED teat fr CO a- I �_ LI 7.---- �\ y \\ �` ,/ ` .T� aaarr NUMBER OF SPRINKLER HEADS: 2 W r S� .m 99 ores+teat at sort • - - -• /�' 1 a►s' • �� 1 , .• 1'_+� f � ¢ 4• COveMDNaq aisorR Q 01 M \. ,� � +< r;,i tk �, �^ " \o . , `I., oarvlaemno mwr* VU' 4.1 i N ,,*0 !^'� ��'.. o. \�. , `-;+�S '' ,-.�i. i , : - ' `,�i �i � ,,��, .Irt,�� \��, WATER SUPPLY nRegWro lKNetlm tammep /Wyk `W M \ 'V� J r • `1' , . �•..' 3 1 ` l i iT �•� I _ \ ., �♦ °P,WR°NR,PUtion emov I- W T / \.. • Y 15 ', 'y F • \ allow the condemned SUPPLY 314" METER °^o`°°" `mthecodemned AS Z .... Q O W \ �' ', .M. , sclRCAwMce `' '�,, HOUSE CROSS BUILDING SECTION (1) wm`°"`°°°'"°m° ansfer into the elepA d1e__ \ tb ♦ s� ya831 \ '', STATIC PRESSURE 60.000 Z a m Q uj Ot JCS PPe �tip\ jam_ ' i es__� ; • RESIDUAL PRESSURE 52.500 //^ PLrir ® C?RN \��,\ ti. a,. Tr,: n ,� �e T ee (GPM) tl� O HOoZ2 \ ` AVAILABLE FLOW GPM 40.000 cO to a a a a \ �!• \ "` �. ��\ di �� I ' A mI• ; TOTAL PRESSURE REQUIRED 37.289 , W e a- . . . . TOTAL REQUIRED FLOW (GPM) 26.000 TRAPPEDAIR8PACE if a o w 5P • \ r� ' a. 111 m=N' a r- w SAFETY MARGIN (PSI) 18.383 TRAP EOMR INSULATION TENTED ,OVER PIPING I- - I.0 A Z U < ja . •,�. \ � _ yt • ✓ 1� a =--- ❑❑ SAFETY MARGIN (GPM) 9.000 TENTING CC o O - . a O ii t, • i o n E.. d F- ', �,.a� J . ww . w .wr w .` } + j •� L. c. G. _ LLa-.f JJ LL dw. DE sv.. vif II I THIS SYSTEM UTILIZES A 3/4" METER & 1.5" SERVICE LINE V LL - F - W CA Z W �� ` M 4. •sy S1 I.ElElunnEluuEn EI i -- CAPABLE OF PROVIDING 26 GPM @ 60 PSI. OW a Y `�O '' $ rat a�wlnwp urw u.nwluwl■ mt. .� ,� NpZ ; . Z Z • El - 1. SYSTEM TYPE: MULTI-PURPOSE FIRE PROTECTION SYSTEM. c 0 u. i ' 1pML11ANO f1E >1,Man - ..in sari. tgt • . � � }t ` < x. . - �11Inn M `• Z W r =` �_ �_ ox6acrr. wAaa'°� 1 ( ' :oe, t 3 x srare oo.rA-aMOL - RI i • ❑ �� 2. PIPE: RAUPEX NON-BARRIER - U.L. LISTED FOR MULTI-PURPOSE = a o > H > O yw �'� '' ' i "' FIRE PROTECTION SYSTEM. a 4 W 9 O t`'nsorc s ! r a. _. „-_ ♦ $�• e�[A Cr I l'ilanmill Ctl( peD7T. 1 P 4 wK� O � ia< � 4 8F OF ,._, - t �� 17 -- ct _ I-LI I ��� � COPY 3 ,_ w N N1f°FT ooanw. gip, A t Si % eE Rf VED _- r---' . SPEARS FLAMEGUARD PIPE - U.L. LISTED AND APPROVED FOR 5 o -1 4 2 IM110 seSQFTSCIPT. s, � _ \':'1'nw'"'"La'•�tee FULL$riE LAYOUT :�:14r „s, >c AtObEp �Rt LEhyA>' �II --- I -. _... : ••� 3 WET PIPE FIRESPRINKLERS SYSTEM. I� :x W. "' W Q W many >aann. i I- ;wMwaorwlnc, VW.T• •, .., '•• ".: r s9 - . _. - - a BRUNER RESIDENCE = CITY OF ANACO DES �; a u U 4. FITTINGS: EVERLOC- U.L. LISTED FOR MULTI-PURPOSE 2802 PARCEL ID: ANACORTES, WA 98221 FIRE PROTECTION SYSTEM. CC ID: P134590 FIRE MARSHAL: w in 5. FITTINGS: SPEARS CPVC - U.L. LISTED FOR NFPA 13, 13R & 13D SYSTEMS APPROVED PLANS Cl a o 3 HOUSE CROSS BUILDING SECTION (1) I PERMIT#: B LD - ZOZO-" a R I ') w o Z N - - - - • TO SPRINKLERS ADDRESS: Z B d 2 �^ 5 V N Q Q E (ALSO TOILET SUPPLY) _iAPPROVED BY: Z _i 11 e. _ I s°""""p° SUBJECT TO FIEL NSPECTION. APPROVED PLANS r I�� I _ ' a• -, ' _ _ ,....3__=1 x,,,,T. SHALL NOT BE ALTERED WITHOUT AUTHORIZATION. 1111 m I e1 1111 Iwo in CC I l : 01.. ' ac. EMERIAI BELLOR HORN / CI I I i INIe III_r r:a �. ., ' ' ••1 j I .:,a' �. ■ <tl PROOF BOX I Co CO Cali I a r % 0 g y 0 W W W ew w..,° ■ "nal"•a, - ---- al ��I♦ime ���IA■ ■ inelo- MOST PPM in •i cs, :1 `i: x eexwu I cc B. _ 1 as ` j `T i L.2 Ii. a Y I = 1n I a13aa emmos, Z 1.1 mt i. i 71411,4 am- M».D'C'' J W P in SPARE -- - = PLACED a W MANIFOLD EXAMPLE MAIN FLOOR MANIFOLD IN WALL EXAMPLE Z 2 LTo co Y 7. co GI co a? HANGERS AND SUPPORT-CPVC FLAMEGUARD PIPE HANGERS AND SUPPORT - PEX PIPE GENERAL NOTES CONTRACTOR OWNER STANDARD SYMBOL KEY HYDRAULIC CALCULATION SYMBOL KEYCla is 1" FLAMEGUARD(CPVC) PIPE SPRINKLER HEAD WITH HEAD S.0 SOURCE Dia INSIDE DIAMETER OF PIPE Y ti e00 PIPE SIZE MAXIMUM SUPPORT NFPA I30 PERMITS'SUPPORT METHODS COMPARABLE TO THOSE REQUIRED BY LOCAL PLUMBING CODES." NOMINAL TUBING DIAMETER(in.) SPACING (In.) 1. TILL INTERIOR PIPING C.ALGTO BE'RENSANOSYSTEMSNLES H9Qo NUMBER, SPRINKLER TYPE (INCHES) SPACING (FEET) HEHANGAm6UPPORTREOUIREMEN 3MUSTASLOBEFOLLOWEDONNFPA1305YS EMS. ARE DESIGNED INCOMPLMNCEWITHNEPA130 $TRANDBERG CUSTOM HOMES BRUNER MONIKA D 1.5' FLAMEGUARD (CPVC) PIPE H.1 HEAD NUMBER C-Fedor INSIDE OF PIPE SMOOTHNESS C N ^ .M. TOLCO CPVC HANGER 3/8",1/2",3/4",1" 32" TUBE TALON 3.ALL IN ERIORPIPINGTOBE REHAU PIPE UNLESS BRUNER DAVID L - RFC43-16 NUMBER&COVERAGE O _ O 3/q" 5-1/2 FT OTHERWISE NOTED. PO BOX 319 DOMESTIC PIPING R.30.A RISER NUMBER FT FLOWING TEE d .. reiO R 1.PLASTIC HANGERS AND STRAPS ARE RECOMMENDED,BUT 3. PERMINI NFPA 13D•REF BETWEEN ACING CHARTS ERS IS FO 1808 7TH ST wn 1.HORIZONTAL RUNS MUST BE BRACED SO THAT THE STRESS 5.RISERS MUST BE SUPPORTED BY PIPE CLAMPS METAL SUPPORTBNRICH ARE DESIGNED FOR USE,, PER NFM SPACIREFETWEEN SPRINKLI FOR 2018 R AVENUE r W N w X 1" 6 FT LOADS ACEDONAFT FITTING JOINT. OR GERSAHANGERS AND BEUSE .VERTICA PLASTIC NBINGCANBEUSED. R MAXIMUM SPAGNOBE WEENSPRINKLERS AND ANACORTES, WA 98221 ANACORTES, WA 98221 III- 3/4" REHAU PEX PIPE T.30 TEE 1B 1 BRANCH OF A TEE SUPPORT SPACING NOT BE SLACED IN THETINGOR A J TABLE CONNECTIONCLOSETOTHERISER.ONLYLISTED FROM WALLS. ' I I On a HANGERS AND CLAMPS CAN BE USED.VERTICAL 4.THE ROUTING OF THE TUBING SHOWN ON THIS W 1-1/4" 6-1/2 FT 3.REACTIEORC SPRINKLER NHEAD EEXERTEDONThPIPE T LINESMWTBESUCESSIDATINTERVALSTO ---- VERTICAI TUBING DRAWNGISINTENDEDTOBESCHEMATIC.THIS 1" REHAUPEXPIPE © HORN STROBE P.1 PIPE NUMBER 1R 1RUNOFATEE REACTIVE HEAD, CAN BE EXERTEDFORCE CAN USE TH AT THE LAWR ED.THIS CAN BE D BY .IINII', BEEET TWEEN FLOORS. HEK31rt)ANDAT THE MID-FLOOR GUIDE DRAWING SHOWS SUGGESTED ROUTING ONLY. 1-1/2" 7 FT A PENDE HEAD,THIS 0.EAC IS FORCE AT RISER LOWER END. UB CAN DONEUSINGBETCLAMPS BETWEEN ALTERNATEROUTNGMAYSEUSED.SOLONGA6 PHONE: (360)-293-7431 L.1 90 DEGREE ELBOW PT PSI TOTAL 1H 1 SPRINKLER HEAD PIPE TO? LIFT IF THE S LLY IF IT IS ROT SECURED PROPERLY, R19ER CLAMPS OR DOUBLE-BOLT PIPE DAMPS 3.WHEN PENETRATING METAL 6ND5,UTILIZE A PROPERLV-0ESKiNED THE SPRINKLERS ARE CONNECTED IN THE M EIAMETELLYIF THE SPRINKLER DROP IS FROM SMALL LISTED FOR THI6 SERVICE. • BUSHING OR 9LEEVIN EMATERIAL ON ALL PENETRATIONS TO PROTECT a �® ARRANGEMENT SHOWN. D.T DOMESTIC TEE PF PIPE FRICTION 1L 90 DEGREE ELBOW 2" 8 FT DIAME ERPPE HEPIPEM 5 BEBRACEO AGNNST THE TUBING 5.ALL PIPING TO BE SUPPORTED ACCORDING TO VERTICAL LIFT-UP WTH THE CLOSEST HANGER. B.THE RISER SHALL BE SUPPORTED BOTTOMTICALLY NFPA 13D AND MANUFACTURER'S RECOMMENDATIONS, T.30 • NODE(TEE) NUMBER PE PSI ELEVATION MNF MANIFOLD I mi A re 2-1/2" 9 FT OFTHEJ JOIST. OF HE CEILING OR , Air ® 6. THE PIPING ARRANGEMENT AND HYDRAULIC • O RISER FLOOR CONNECTER OF THE JOIST. ..PIPING WDON OPEN JOISTS OR RAFTERS SHALL BE SUPPORTEDIN ci ® CALCULATIONS AND PROPRIETARY PROPERTY 3.ALL INTERIOR PIPINGS N 1.5`SPEARS CPVC. A MANNER THAT P0.EVENB LATERAL MOVEMENT. J 3" 10 FT SCHEDULE RISER NGSANDPIPE. 7 ALIGNMENT TICALPPIN01NASTRNGHT OF%FIREANDXFIRERESER REPRODUCTION EXCLNmVERIGIS 5 P11 PIPE NUMBER AND RISER NUMBER QA GPM L.2 90 DEGREE ELBOW ALIGNMENT WTH SUPPORTS AT EACH FLOOR 5.SPRINKLER PIPING SHALL BE SUPPORTED IN A MANNER TO PREVENT THE TO THEM. UNAUTHORIZED REPRODUCTION OR USE IS R.30A ♦.SPRINKLER RISER DIAMETER TO BE IS LEVEL,OR AT 10 FEET INTERVALS. MOVEMENT OF PIPING UPON SPRINKLER OPERATION. FORBIDDEN. - QT GPM QUANITY D.T DOMESTIC TEE - °.s . 991-9' -33-B" 28'-9`- 37 8 iiitert C+Maurt:te ISC:gaae.t.140S 00g. `4,Ncs._2:x1+.eC. •.-2'-0"r{. -5' -1D'•8" 15'-0" - 4'-8" 13'4" 15'�• « id 4- / : woos / //////1////////////// , •2:Meadar..fr rat*irtalt E*ttatier rsAg tlat*P 4a•!rk t thr*`L'conSgGr urs J- 8 •Dt2T!FIF'EX • .1 .tis { / w ' ( R T4tflfR tS'D;9':1.;2xatudes z 1Lt4Ct� Uger:9achend - - LY Jr _' - j BEDROOM #1 .,- '.0.41hK3ng.`.al�i. 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Z (A ,.-2-0' 'N'374-0tl^H I 3-0.. q,,U. 3.-0,. -q'-0•.-.. t 7-0" 21H Ise' i�' ----_...__ -.- I • • _GAS FIRED PROPANE, -_.�._...__._ r / HO' �j'OBE 74P ts6e,il,•�.:!"-slkuFs}. re Ce Y13.`t0t8 RC OFS: LYS2 4015 FIC CB:::'. jK- '-5-7 D Cl et I 4'4r 1 1 41-0 l f1° J 4'-11' N 1 417 O'J' ` a d in 52'-8' 1�� 4// cl 5 9B,-sr JJ -^- MAIN FLOOR PLAN Z z D 1- CITY OF ANACORTES = T 7 aco FIRE MARSHAL: � o /�/� r E Co u•, 0 CD APPROVED PLANS 1 W w E PERMIT a: g L - O Y „ 1- _ N -- 2 gO °' CM 4O CO ADDRESS: /�/� 'r M °t LL APPROVED BY: 5 ♦� Ill I yUB1ECTO TO BE FI CTANS A filial SNALL NT TEREDINSPE WITION.HOUT AUAPPROVEDTHORIZPLATI� I u. 1-r-r r" 7 9 W/ ri4 Ili 11 DEC 3 0 2020 II t Q-7L0 - 2_62_ 0 - 00 ;..1 Y Q IMMUNITY, & ECONOMIC DEVELOPMENT DEPARTMENT FIRE SPRINKLER PERMIT APPLICATION ‘1111411V' Mailing Address:P.O. Box 547, Anacortes, WA 98221 .� Office Location: 904 6th Street, Anacortes WA 98821 Phone: (360) 293-1901 PLEASE REFER TO THE FIRE SPRINKLER PERMIT CHECKLIST FOR SUBMITTAL REQUIREMENTS II ❑ MODIFY EXISTING SYSTEM ❑ INSTALL NEW SYSTEM ❑ UNDERGROUND FIRE LINE PROJECT AD!I RESS(Street,Suite#): PARCEL(S)#: ?I,9u Sc :6Oa- 0 oRL S it'NatZ. Nnm(orSl\NN 1$a2A • PROJECT VALUATION: APPLICANT: Pho e: A(tire_ Sec()c%-Y (36o) 75-bobs Address(Street,City, State,Zip): 1 Ema Address: \5\1 kzn ,c1A & Pae.\ i n 1cnrn �H V� d,'lc� am ,r@ j MOM 1° t.�n� PROPERTY OWNER: l J Phone: Sru(l e r Do u;& 'L t grin e,r' IU-Iik� V) Address(Street,City,State,Zip): Email Address: t$OS ` t-h Strtzk P(No..co rkt.s \f\f `1 b a-" -‘ CONTACT PERSON: Phone: )(—dire, ce c,v cr-\-1 "-RD u rho i\ (366) —4 6.st025b(3608 IS-o Address(Street City, State,Zip): mail Address: t51\ Kt(\k x <1 ',,.ec /Q,z,�,n \1a re\W1 B aac) f(9 , �C � (nom\ co+vl CONTRACTOR( on X-Fee_Sic j ft riAils_ 3C) g Address(Street,City, State,Zip): Email.Address, 1S1\ \Ge ni ck < \ c N rD •XV%re@ rc\ok,k\-c®M 1 y o State Sprinkler Certificate&license#: Exp.D te: *All Contractors&subcontractors must have a valid City of _ p Anacortes business license prior to doing work in the City. �R� �,1 t���t Contact the City's Finance Department at(360)299-1968. Business License ft:.., O Exp.Date: COMMERCIAL ❑ RESIDENTIAL X �(9 OCCUPANCY CLASS: SPRINKLER STANDARD: 30 HAZARD CLASS: Is this work,associated with another project? Yes ❑ No If yes,specify: PROPOSED WORK: \\ f \SO H\u\ c cV CPO ©St? 1i rtr\k\�.r SiSr.'rn f\Sko\\4 1O r in c�. nt.�J C its kden'r rnk kO►nt . I declare under penalty of perjury that the information I have provided on this form/application is true,correct, and complete,and that I am the property owner or duly authorized agent of the property owner to submit a permit application to the C ity of Anacortes. nn� 11 Print Name: I e_ 1 tY r Owner ❑ Agent (specify): l!A D-tcntlty- Signature: 4,61.ii+ Date: 1 a 1 161 O X-FIRE SECURITY DETECTION & SUr[ LESSION 1511 Kentucky Street Bellingham,WA 98229 360-715-8088 Fax 360-756-6946 www.13dpex.com License: XFIRE**961PN Description: NFPA 13D Multipurpose Fire Sprinkler System 1 Application: 1 Application for the Bruner ResNonce Fire Sprinkler Design: 3 Sets of Fire SprliaNeU do sicgns. Department of Jurisdiction: Skagit County Submitted to: City of Anacortes Building Department 904 6th Street Anacortes, WA 98221 Date: 12-17-20 Job Name: Bruner Residence Job#: L-3530 Job Address: 2802 Oakes Ave,Anacortes WA 98221 Parcel #P134590 System type: NFPA 13D Multipurpose Fire Sprinkler System WASHINGTON STATE .• CERTIFICATE OF COMPETENCY II FIRE PROTECTION SPRINKLER SYSTEMS i, Rodney L.Durham a t4� Ei i 8511.0705-A Level 1 X Fire e� ° XFIRE**961 P J 1(/ : DEC 3 0 2020 •/ Expires • Y��6 1 C/l A Y/�/+ LAY cam+ ••Signature Date 12312020 A ! O /1,NACOR l E� taatsaa ss,r�r Are Sprinkler System Calculations X-Fire Security 1511 Kentucky St, Bellingham,WA 98229 Job No: L-3530 Job Name: Bruner Residence Building Type Single Family Residence Location: 2802 Oakes Ave,Anacortes WA System Type: NFPA 13D 2019 (J00000 - o00000 WASHINGTON STATE p CERTIFICATE OF COMPETENCY e FIRE PROTECTION SPRINKLER FILE ® Copy ® Rodney L.Durham 0 705-A Level 1 © X-Fire —l %L o FIRE**961PN o a � Expires O 12 31 2020 o Signature ®ate - oomomoo®©noo0®•■rmearaaoo❑oa000❑ Designed by X-Fire Security- 1511 Kentucky St, Bellingham, WA 98229- 360.715.8088 MiEgVIWNM DEC 3 0 2020 lTY OF ANACOHIES L-3530 Bruner Residence-Two Head Calculation-(H.23 H.24) Page 2 of 9 Final Calculations-Summary Wednesday, December 16,2020 Hydraulic Design Information Sheet Job Name Bruner Residence Opened Date 12/16/2020 Location 2802 Oakes Ave,Anacortes WA Job No L-3530 Building Type Single Family Residence Ceiling Height(ft) 9 Calculated By Rod Durham Construction Combustible Occupancy Residential System Design Type of Calculation NFPA 13D 2019 Listed Flow at Start Point(gpm) 13.000 System Type Wet Listed Pressure at Start Point (ps 9.100 Sprinkler Make Reliable Maximum Listed Spacing (ft) 16 Sprinkler Model RFC43 Domestic Flow(gpm) 0.000 Sprinkler Size (in) 0.50 Elevation at Highest Outlet(ft) 116 Sprinkler K-Factor 4.3 Temp. Rating (°F) 165 Coverage Area(ft2) 256 Listed Flow(gpm) 13.000 Calculation Summary Flowing Sprinkler Heads H.23 H.24 Flow Required (gpm) 26.000 Pressure Required (psi) 37.289 At Reference Point METER Overhead C-Factor Used 150 Underground C-Factor Used 150 Water Supply Water Flow Test: Static Pressur 60.000 Residual Pres 52.500 Flow(gpm) 35.000 Elevation(ft) 97 Manifold&Water Flow Switch Additional Pressure Loss (psi) 4.60 L-3530 Bruner Residence-Two Head Calculation-(H.23 H.24) Page 3 of 9 Final Calculations-Water Supply Curve Wednesday, December 16, 2020 100 90 80 70 CD a 60 2 50 N N N 0- 40 • 30 20 10 0 10 202530 35 40 45 50 55 60 65 70 75 80 85 90 95 100 Flow(N A 1.85)GPM eo Demand Curve Required Pressure: 37.289 psi @ 26.000 gpm Required Flow: 26.000 gpm 0 0 Supply Curve Static Pressure: 60.000 psi @ 0.000 gpm Residual Pressure: 52.500 psi @ 35.000 gpm Available Flow: 35.000 gpm X + Pressure Cushion Available Pressure: 55.673 psi @ 26.000 gpm Pressure Cushion: 18.383 psi WASHINGTON STATE CERTIFICATE OF COMPETENCY FIRE PROTECTION SPRINKLER SYSTEMS Rodney L.Durham X-Fire 8511-0705-A LevelZ� �� X-Fire XFIRE**961� Expires L i 2 31 20201 •▪ Signature Date L-3530 Bruner Residence-Two Head Calculation-(H.23 H.24) Page 4 of 9 Final Calculations-Nodes Wednesday, December 16,2020 Actual Actual Elevation Pressure Flow Node No. (ft) (psi) (gpm) Model-Coverage(DxW)-Temperature S.0 90.0 32.594 0.000 SOURCE H.1 99.0 25.973 0.000 RFC43-1616-165 T.1 99.0 28.479 0.000 CPVC 1.598x1.598x0.681 in Tee L.1 99.0 28.561 0.000 CPVC 1.50in 90 ElI R.1.A 99.0 28.439 0.000 D.T.1 99.0 28.536 0.000 Rehau PEX 0.75in Dom Tee H.2 99.0 26.212 0.000 RFC43-1616-165 D.T.2 99.0 28.248 0.000 Rehau PEX 0.75in Dom Tee R.2.A 111.0 23.113 0.000 T.2 99.0 25.874 0.000 Rehau PEX 0.681x0.681x0.875in Tee L.2 111.0 23.065 0.000 CPVC 1.50in 90 ElI H.3 99.0 26.637 0.000 RFC43-1616-165 D.T.3 99.0 25.979 0.000 Rehau PEX 0.75in Dom Tee R.3.B 99.0 25.580 0.000 T.3 111.0 22.939 0.000 CPVC 0.875x0.875x1.598in Tee H.4 99.0 26.792 0.000 RFC43-1616-165 R.4.B 111.0 20.082 0.000 T.4 111.0 19.938 0.000 Rehau PEX 0.875x0.875x0.875in Tee D.T.4 111.0 21.022 0.000 Rehau PEX 1.00in Dom Tee H.5 99.0 27.195 0.000 F1R44A6-1212-155 H.6 99.0 27.335 0.000 RFC43-1616-165 H.7 99.0 27.109 0.000 RFC43-1616-165 H.8 99.0 26.698 0.000 RFC43-1616-165 H.9 99.0 27.395 0.000 RFC43-1616-165 H.10 99.0 27.542 0.000 RFC43-1616-165 H.11 99.0 28.293 0.000 RFC43-2020-165 H.12 99.0 28.216 0.000 RFC43-1818-165 H.13 111.0 22.364 0.000 RFC43-1616-165 H.14 111.0 20.055 0.000 RFC43-1616-165 H.15 111.0 21.277 0.000 RFC43-1616-165 H.16 111.0 22.249 0.000 F1R44A6-1616-155 H.17 116.0 14.315 0.000 RFC43-1616-165 H.18 116.0 13.264 0.000 RFC43-1616-165 H.19 115.0 12.775 0.000 RFC43-1616-165 H.20 115.0 15.670 0.000 RFC43-1616-165 H.21 115.0 11.487 0.000 RFC43-1616-165 H.22 115.0 12.005 0.000 RFC43-1616-165 H.23 116.0 9.100 13.000 RFC43-1616-165 H.24 116.0 9.125 13.000 RFC43-1616-165 H.25 111.0 20.444 0.000 RFC43-1616-165 H.26 111.0 19.633 0.000 RFC43-1616-165 H.27 111.0 15.471 0.000 RFC43-1616-165 H.28 111.0 17.724 0.000 RFC43-1818-165 H.29 115.0 19.742 0.000 RFC43-1818-165 H.30 99.0 26.388 0.000 RFC43-1616-165 H.31 99.0 26.239 0.000 RFC43-1616-165 H.32 99.0 27.921 0.000 RFC43-1616-165 L-3530 Bruner Residence-Two Head Calculation-(H.23 H.24) Page 5 of 9 Final Calculations-Nodes Wednesday, December 16,2020 Actual Actual Elevation Pressure Flow Node No. (ft) (psi) (gpm) Model-Coverage(DxW)-Temperature H.33 99.0 28.062 0.000 RFC43-1616-165 FT.23 116.0 10.133 0.000 Rehau PEX 1.00in Sprinkler Tee FT.24 116.0 10.157 0.000 Rehau PEX 1.00in Sprinkler Tee L-3530 Bruner Residence-Two Head Calculation-(H.23 H.24) Page 6 of 9 Final Calculations-Pipes Wednesday, December 16,2020 Pipe# Hyd. Qa Dia. Fitting Pipe Pt Notes Ref. C-Factor Fittings Pe Point Qt Pf/UL +PrLoss. Total Pf p19 T.2 -10.244 0.681 5.477 25.973 to 150 1 R1 H 1.200 0.000 Vel=-2.2 H.1 -2.480 0.0148 0.00 6.677 0.099 sup() METE 0.000 1.610 180.000 32.594 to 150 MNF 0.000 -3.032 Vel=4.1 S.0 26.000 0.0174 4.60 180.000 3.127 p4 H.1 0.000 0.681 16.941 26.239 to 150 2H 1.000 0.000 Vel=-2.2 H.31 -2.480 0.0148 0.00 17.941 0.266 p0 H.31 0.000 0.681 9.021 26.388 to 150 2H 1.000 0.000 Vel=-2.2 H.30 -2.480 0.0148 0.00 10.021 0.149 p2 H.30 0.000 0.681 15.783 26.637 to 150 2H 1.000 0.000 Vel=-2.2 H.3 -2.480 0.0148 0.00 16.783 0.249 p3 H.3 0.000 0.681 9.417 26.792 to 150 2H 1.000 0.000 Vel=-2.2 H.4 -2.480 0.0148 0.00 10.417 0.155 p7 H.4 0.000 0.681 20.383 27.109 to 150 2H 1.000 0.000 Vel=-2.2 H.7 -2.480 0.0148 0.00 21.383 0.317 p6 H.7 0.000 0.681 14.210 27.335 to 150 2H 1.000 0.000 Vel=-2.2 H.6 -2.480 0.0148 0.00 15.210 0.226 p10 H.6 0.000 0.681 12.917 27.542 to 150 2H 1.000 0.000 Vel=-2.2 H.10 -2.480 0.0148 0.00 13.917 0.207 p11 H.10 0.000 0.681 24.559 27.921 to 150 2H 1.000 0.000 Vel=-2.2 H.32 -2.480 0.0148 0.00 25.559 0.379 p8 H.32 0.000 0.681 8.468 28.062 to 150 2H 1.000 0.000 Vel=-2.2 H.33 -2.480 0.0148 0.00 9.468 0.141 p9 H.33 0.000 0.681 9.397 28.216 to 150 2H 1.000 0.000 Vel=-2.2 H.12 -2.480 0.0148 0.00 10.397 0.154 p12 H.12 0.000 0.681 1.138 28.248 to 150 1 H 1 R 1.000 0.000 Vel=-2.2 D.T.2 -2.480 0.0148 0.00 2.138 0.032 p13 D.T.2 0.000 0.681 7.595 28.479 to 150 1 B1 R 8.000 0.000 Vel=-2.2 T.1 -2.480 0.0148 0.00 15.595 0.232 p43 S.0 -22.118 0.681 4.225 28.536 to 150 1R 0.500 3.898 Vel=3.4 D.T.1 3.882 0.0340 0.00 4.725 0.161 p44 D.T.1 0.000 0.681 6.126 28.293 to 150 1 R1 H 1.000 0.000 Vel=3.4 H.11 3.882 0.0340 0.00 7.126 0.242 L-3530 Bruner Residence-Two Head Calculation-(H.23 H.24) Page 7 of 9 Final Calculations-Pipes Wednesday, December 16, 2020 Pipe# Hyd. Qa Dia. Fitting Pipe Pt Notes Ref. C-Factor Fittings Pe Point Qt Pf/UL +PrLoss. Total Pf p17 H.11 0.000 0.681 25.426 27.395 to 150 2H 1.000 0.000 Vel=3.4 H.9 3.882 0.0340 0.00 26.426 0.899 p46 H.9 0.000 0.681 4.865 27.195 to 150 2H 1.000 0.000 Vel=3.4 H.5 3.882 0.0340 0.00 5.865 0.200 p47 H.5 0.000 0.681 13.609 26.698 to 150 2H 1.000 0.000 Vel=3.4 H.8 3.882 0.0340 0.00 14.609 0.497 p5 H.8 0.000 0.681 13.298 26.212 to 150 2H 1.000 0.000 Vel=3.4 H.2 3.882 0.0340 0.00 14.298 0.486 p1 H.2 0.000 0.681 5.839 25.979 to 150 1H1R 1.000 0.000 Vel=3.4 D.T.3 3.882 0.0340 0.00 6.839 0.233 p18 D.T.3 0.000 0.681 1.895 25.874 to 150 2R 1.200 0.000 Vel=3.4 T.2 3.882 0.0340 0.00 3.095 0.105 p28 T.3 -19.638 1.598 0.790 23.065 to 150 1 B 1 L 11.000 0.000 Vel=-3.1 L.2 -19.638 0.0107 0.00 11.790 0.126 p27 L.2 0.000 1.598 1.001 23.113 to 150 1L 3.500 0.000 Vel=-3.1 R.2.A -19.638 0.0107 0.00 4.501 0.048 i0 R.2.A 0.000 1.598 12.000 28.439 to 150 0.000 5.197 Vel=-3.1 R.1.A -19.638 0.0107 0.00 12.000 0.129 p14 R.1.A 0.000 1.598 3.244 28.479 to 150 1R 0.500 0.000 Vel=-3.1 T.1 -19.638 0.0107 0.00 3.744 0.040 p20 T.2 -6.362 0.875 4.240 25.580 to 150 1 B 7.500 0.000 Vel=3.4 R.3.B 6.362 0.0250 0.00 11.740 0.294 i 1 R.3.B 0.000 0.875 12.000 20.082 to 150 0.000 5.197 Vel=3.4 R.4.B 6.362 0.0250 0.00 12.000 0.300 p32 R.4.B 0.000 0.875 5.077 19.938 to 150 1R 0.700 0.000 Vel=3.4 T.4 6.362 0.0250 0.00 5.777 0.145 p22 FT.23 11.502 0.875 11.311 11.487 to 150 1H1R 1.000 0.433 Vel=-6.1 H.21 -11.502 0.0749 0.00 12.311 0.921 p35 H.21 0.000 0.875 16.206 12.775 to 150 2H 1.000 0.000 Vel=-6.1 H.19 -11.502 0.0749 0.00 17.206 1.288 p24 H.19 0.000 0.875 11.311 13.264 to 150 2H 1.000 0.433 Vel=-6.1 H.18 -11.502 0.0749 0.00 12.311 0.921 L-3530 Bruner Residence-Two Head Calculation-(H.23 H.24) Page 8 of 9 Final Calculations-Pipes Wednesday, December 16,2020 Pipe# Hyd. Qa Dia. Fitting Pipe Pt Notes Ref. C-Factor Fittings Pe Point Qt Pf/UL +PrLoss. Total Pf p26 H.18 0.000 0.875 13.053 14.315 to 150 2H 1.000 0.000 Vel=-6.1 H.17 -11.502 0.0749 0.00 14.053 1.052 p25 H.17 0.000 0.875 11.311 15.670 to 150 2H 1.000 0.433 Vel=-6.1 H.20 -11.502 0.0749 0.00 12.311 0.921 p42 H.20 0.000 0.875 34.440 20.055 to 150 2H 1.000 1.732 Vel=-6.1 H.14 -11.502 0.0749 0.00 35.440 2.653 p39 H.14 0.000 0.875 15.319 21.277 to 150 2H 1.000 0.000 Vel=-6.1 H.15 -11.502 0.0749 0.00 16.319 1.222 p41 H.15 0.000 0.875 11.995 22.249 to 150 2H 1.000 0.000 Vel=-6.1 H.16 -11.502 0.0749 0.00 12.995 0.973 p40 H.16 0.000 0.875 8.009 22.939 to 150 1R1H 1.200 0.000 Vel=-6.1 T.3 -11.502 0.0749 0.00 9.209 0.689 p33 T.4 -20.860 0.875 4.816 20.444 to 150 1 B1 H 8.000 0.000 Vel=-4.3 H.25 -8.137 0.0395 0.00 12.816 0.506 p36 H.25 0.000 0.875 13.461 21.022 to 150 1R1H 1.200 0.000 Vel=-4.3 D.T.4 -8.137 0.0395 0.00 14.661 0.578 p37 D.T.4 0.000 0.875 10.265 19.742 to 150 1 H 1 R 1.200 1.732 Vel=-4.3 H.29 -8.137 0.0395 0.00 11.465 0.452 p38 H.29 0.000 0.875 21.535 22.364 to 150 2H 1.000 1.732 Vel=-4.3 H.13 -8.137 0.0395 0.00 22.535 0.889 p45 H.13 0.000 0.875 13.379 22.939 to 150 1R1H 1.200 0.000 Vel=-4.3 T.3 -8.137 0.0395 0.00 14.579 0.575 p15 T.1 -22.118 1.598 2.139 28.561 to 150 1 L1 R 4.000 0.000 Vel=-3.5 L.1 -22.118 0.0134 0.00 6.139 0.082 p16 L.1 0.000 1.598 6.600 32.594 to 150 1L 3.500 3.898 Vel=-3.5 S.0 -22.118 0.0134 0.00 10.100 0.135 p23 FT.24 -1.498 0.875 13.260 10.133 to 150 2R 1.000 0.000 Vel=0.8 FT.23 1.498 0.0017 0.00 14.260 0.025 p31 T.4 -14.498 0.875 1.452 19.633 to 150 1 H 1 R 1.200 0.000 Vel=7.7 H.26 14.498 0.1149 0.00 2.652 0.305 p34 H.26 0.000 0.875 15.620 17.724 to 150 2H 1.000 0.000 Vel=7.7 H.28 14.498 0.1149 0.00 16.620 1.909 L-3530 Bruner Residence-Two Head Calculation-(H.23 H.24) Page 9 of 9 Final Calculations-Pipes Wednesday, December 16,2020 Pipe# Hyd. Qa Dia. Fitting Pipe Pt Notes Ref. C-Factor Fittings Pe Point Qt Pf/UL +PrLoss. Total Pf p29 H.28 0.000 0.875 18.611 15.471 to 150 2H 1.000 0.000 Vel=7.7 H.27 14.498 0.1149 0.00 19.611 2.253 p30 H.27 0.000 0.875 14.097 12.005 to 150 2H 1.000 1.732 Vel=7.7 H.22 14.498 0.1149 0.00 15.097 1.734 p21 H.22 0.000 0.875 11.311 10.157 to 150 1 H 1 R 1.000 0.433 Vel=7.7 FT.24 14.498 0.1149 0.00 12.311 1.414 hp23 H.23 0.000 0.875 0.000 10.133 to 150 1H1B 11.000 0.000 Vel=6.9 FT.23 13.000 0.0939 0.00 11.000 0.000 hp24 H.24 0.000 0.875 0.000 10.157 to 150 1H1B 11.000 0.000 Vel=6.9 FT.24 13.000 0.0939 0.00 11.000 0.000 Bulletin 006 Rev. K February 2017 Reliable Model RFC Series Residential Sprinklers Flat Cover Plate, Concealed Pendent Sprinkler cULus Listed Product Features z �, .« Y f$ ;.„..4 • cULus Listed as Residential Sprinklers M se . • Push-On cover plate installation l . ,- ,fI s Fes;' • Low water flow requirements Product Description Model RFC30 Mooel RFC43 Model RFC Series residential sprinklers are flat cover plate, concealed pendent sprinklers intended for installation in 4-, .., accordance with NFPA 13, NFPA 13R, or NFPA 13D. The t� sprinklers are cULus Listed as Residential Sprinklers in ac- ( cordance with UL 1626. , M. , x Model RFC30, RFC43, and RFC49 sprinklers have a 165°F a;; fs� (74°C) temperature rated fusible-link operating element. Model RFC49 Model RFC58 Model RFC58 sprinklers are offered with either a 165°F (74°C) or 212°F (100°C) temperature rated fusible-link op- erating element. Sprinklers with a 165°F (74°C) temperature rating are ordinary temperature classification and should s ` be used with a 135°F (57°C) temperature rated cover plate. `n Sprinklers with a 212°F (100°C) temperature rating are inter- ,.- mediate temperature classification and should be used with a 165°F (74°C) temperature rated cover plate. Model RFC Series sprinklers are installed with a Model RFC cover plate. Model RFC cover plates may be installed by either pushing or threading the cover plate into the sprinkler cup. Model RFC30, RFC43, and RFC49 sprinklers allow 1/2" (13 mm) of cover plate adjustment. Model RFC58 sprinklers allow 3/4" (19 mm) of cover plate adjustment, Model RFC cover plates are available in a variety of finishes Solid Perforated as listed in Table H. in addition, Model RFC cover plates may be ordered as either traditional solid cover plates or Model RFC Cover P ate perforated cover plates. Table A Nominal K-Factor Max. Coverage Area Sprinkler Sprinkler Model Identification gpm/psi12(I/min/bar"2) ft x ft (m x m) Number (SIN) RFC30 3,0 (43.2) 14 x 14 (4.3 x 4.3) RA0611 RFC43 4.3 (62) 20 x 20 (6.1 x 6.1) RA0612 RFC49 4.9 (70.6) 20 x 20 (6.1 x 6,1) RA0616 RFC58 5.8 (84) 20 x 20 (6.1 x 6.1) RA0613 IN g MOW ii-r-;, - ',‘ ----F-11-LE—Grkwv,, reliablesprinkler.com pDEC30 202$ , 0 ,), HTY OF A.NACORTF° Model RFC43 Residential Sprinkler SIN RA0612 Technical Specifications Cover Plate Finishes Style: Flat Concealed Pendent (See Table H) s,, Threads: 1/2" NPT or ISO 7-1 R1/2 �` ' Nominal K-Factor 4.3 (62 metric) Sensitivity ''. ' Max, Working Pressure: 175 psi (12 bar) Fast-response �` i ` ;7:14141Z4 Min. Spacing: 8 ft. (2.4 m) , Temperature Rating • Material Specifications 165°F (74°C) sprinkler F _ `# Thermal Sensor Nickel Alloy Solder Link 135°F (57°C) cover plate Sprinkler Body: Brass Alloy ' Levers: Bronze Alloy Cover Plate Yoke: Brass Alloy Model RFC cover plate Sealing Assembly: Nickel Alloy with PTFE , x' Load Screw: Bronze Alloy Sprinkler Wrench Towers: Copper Alloy Model FC Pins: Stainless Steel � �` _�z Deflector: Bronze Alloy Listings and Approvals Bottom View , Aa�t >'�. Cup: Steel cULus Listed £4 ,, Model RFC43 Sprinkler Components and Dimensions Figure 2 2-5/16"(58 mm) Threads Dia. Body — _ `. Cup >� I Tower 1-314" (44 mm) +/- 1/4" (6 mm) IIIIMIllat Fusible Link Nominal face of fitting to ceiling �i� �1 Deflector{retracted) r' ..41.4.0 _ _ _ ........ ////.// 3116 (5 mm) Pin (extended) i.li-x Deflector(extended) i Model RFC Cover Plate — 3-5/16"(84 mm)Dia.—..- Ceiling Model RFC43 Sprinkler Hydraulic Design Criteria Table C Minimum Flow and Residual Pressure Max. Coverage Area Flow Pressure ft. x ft. gpm psi (m x m) (I/min) (bar) 12x 12 12 7,8 (3.6 x 3.6) (45) (0.54) 14 x 14 13 9.1 (4.3 x 4.3) (49) (0.63) 16 x 16 13 9.1 (4.9 x 4.9) (49) (0.63) 18 x 18 18 17.5 (5.5 x 5.5) (68) (1.21) 20 x 20 21 23.8 (6.1 x 6,1) (79) (1.64) Notes: 1. For NFPA 13 installations the flow per sprinkler must be the greater of: ("1) the flow listed in Table C above and (2) the flow required to achieve a minimum design density of 0,1 gpm/sq ft over the design area of the sprinkler. 2. For coverage area dimensions less than those listed above, use the minimum required flow for the next larger max. coverage area listed. Bulletin 006 Rev, K Rellabld Page 3 of 7 February 2017 !7 www.reliablesprinkler.com Bulletin 033 February 2019 co Reliable() Model Fl RES LL 0 Ca Residential Sprinklers ro CI a Specifically Listed for use in Multipurpose Systems that serve both ; 1 CO domestic water and fire protection. Types: ti 1. F1 Res 30 LL Pendent `. 2. F1 Res 30 LL Recessed Pendent/F2 "' 3. F1 Res 30 LL Recessed Pendent/FP Fi Res 30 LL,49 LL&5s LL 4. F1 Res 49 LL Pendent Pendent 5. F1 Res 49 LL Recessed Pendent/F1 ;; 6. F1 Res 49 LL Recessed Pendent/FP . �' ' 7. F1 Res 58 LL Pendent t 8. F1 Res 58 LL Recessed Pendent/F1 ` 9. F1 Res 58 LL Recessed Pendent/FP , 10. F1 Res 30 LL CCP Pendent 11. Fl Res 49 LL CCP Pendent 1 es es F1 Res 30 LL,49 LL&58 LL Pendent/F1,F1 Res 30 LL LL Recessed Pendent/FP CCP Pendent 12. F1 Res 58 LL CCP Pendent Recessed Pendent/F2 13. F1 Res 44 LL HSW , 14. Fl Res 44 LL Recessed HSW/F2 15. F1 Res 58 LL HSW I 16. F1 Res 58 LL HSW Recessed HSW/F2 = ' «: 17. Fl Res 44 LL SWC I F1 Res 44 LL&58 LL I-1 Rest LL&58 LL es Listings&Approvals HSW Recessed HSWIF2 swc 1. Listed by Underwriters Laboratories Inc.and Product Description UL Certified for Canada (cULus)for Safety to ANSI/ Model F1 Res LL Pendent sprinklers(Figs. 1,2,3,&4)are UL1626. fast response sprinklers combining excellent durability, high 2. Certified by Underwriters Laboratories, Inc. and Under- sensitivity glass-bulb and low profile decorative design. The writers Laboratories of Canada for Health Effects to NSF/ F1 Res LL Horizontal Sidewall sprinklers (Figs. 5, & 6) are ANSI Standard 61 Annex G(Less than 0.25%Lead Con- equally attractive when above ceiling piping cannot be used. tent.) The 3mm glass-bulb pendent sprinklers permit the efficient 3. WaterMark certified. WaterMark Certificate Number use of residential water supplies for sprinkler coverage in resi- 23347 dential fire protection design. Additional Bulletins applicable to all The low flow F1 Res LL sprinklers are specially engineered Fl RES LL Sprinklers for fast thermal response to meet the sensitive fire protection • Wall Wetting Bulletin 007 application needs of the latest residential market standards • Design and Installation Bulletin 140 (UL 1626 Standard). Upon fire conditions,rising heat causes a sprinkler's heat-sensitive glass-bulb to shatter,releasing the UL Listing Category waterway for water flow onto the deflector,evenly distributing Residential Automatic Sprinkler the discharged water to control a fire. UL Guide Number Technical Data: VKKW • Thermal Sensor: Nominal 3mm glass-bulb Patents • • Sprinkler Frame: Brass Sprinklers' Pressure Rating : 175 psi US Patent No.6,516,893 applies to the Factory Hydrostatically Tested to 500 psi Model Fl Res 49 LL&58 LL Pendent Sprinklers • Thread Size: 1/" NPT(RY) Other patents pending. • K-Factor:3,0(Actual)-F1 Res 30 LL Pendent Sprinkler 4.9(Actual)-F1 Res 49 LL Pendent Sprinkler 5.8 (Actual)-F1 Res 58LLPendent&HSW Sprinkler 4.4(Actual)-F1 Res 44 LL HSW Sprinkler Reliable Automatic Sprinkler Co., Inc., 103 Fairview Park Drive, Elmsford, New York 10523 . Modell Pi Res 44 SVC t .4" to 12" • (101.60mm To 309,80rnmJ 1 1/4"j31.75mm� Vtcximrm 0 a. s` Pace Of fitting —PUSH ON COVER, THEN TURN TO ADJUST UNTIL i F TIGHT AGAINST WALL. }'. i"X lf2"Reducer ---r•• y� lit I -i _ ,ail `1 4ecommended ,1 i ▪, Wall Hale 2 5f 4 2 5/8" 158'7dmm' `"—}-•-- '„_' —h — I 6fi 68mmT Dio. la j 1 � -1 r 3 b, 16" I f i ie A: s i j84.1dfrmJ 4i - '.....----• " ' ---- rn I ir TURN COLLAR UNTIL .,1 TIGHT AGAINST SPRINKLER ' ,,," ",,, 1 21/32" WRENCH 8055. j42.07mm I s rrer •r-1 •—1/2"j1270rnm] Adjustment F'1 RES 44 SWC __... ..._. Fig 5 ethnical D to =e .t ciWt- Faukor Inch Nominali t3rifi€ Tom. C Via € , Max.i t K " Inch _ p A,�nbrTemp �rnrn� GF C GC (bar) (mm) Thread 'i2'r NPT le" (10j 155 68 135 5f 17� (12} 10() 3 3 4.4 2.45(62) (R 2) 1 i 6t�$J9 Max.Sprinkler� �°4 Flow Sprinklerbiting ;ree Spacing Deflector gpr (��i(baurr) Identification , ft(m) InchOm) «rn) Number(SIN) • 12x12(3.6x3.6). 1354 ,2} �3.7 {C.6C) 14x14{4.3x4.3) 14(53.4) _ 10.2(C.71) 16 x 16(4.9x4.9) (101_ 2) 17 (64.3) 15.0 (1.'1) 16x18 (r.9x5.5}J 1yr71:�i 18.I (1.13i) 16 x 20 (4.9x6.1) 23(87.1) 27.4(1.89) R3531 12 x 12(3.6x3.6) 14 (52.9) 10.2 (0.71) 14x14 {4.3x4.3) 6_ .t2 15�56.7) 11.7(0.81)_ 16 x 16(4.9x4.9) (152-305) 18�68.1) 16.8(1.18) 16 x 18(4,9x5.5) -_...__._20(75 6) 20.7 (1,43) 1 • • 8. • • "::'>:C';l- •Y,rCr•^ ' , ,5.� %':"t J '! 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' :. �a'i>7, '•, ',•.,,n`�':<' • i<S'> £ ' .:},�v. : la'.... >.'.2+;: t • • d ' : •' '!i'','>i(Yr4 �SSCEN,'&'4?S .;-- G' = 12({i� ' "\ ` ,+ / ..• �fr ii$ : ""5 Zftii; y' r if „ ..}as,,,k> •. S p: .--A^ifjst!y}ijis 2<':' ', ••• sw. , . Y '`K'' r `4,,.h• `• \\, ikiv t nY • : a•l • • • ; • • ▪ feet*W • .:.,>r,S ,•�.:',:,!:?i,�4' \ '>:,a.: "t ` % y'3 �f/ 4ji,.,. Yj;i:• :,x � } i:Y > p`;; ; • .... . \�c }),4 , •. .. • h#EEEE£EE 'E-Ei?:'2\ ' „ , G, {. • i 4 •• r ,...,.. „ , { „ to , � ,aA,. •:..„, - 4 Lx:. -.. . .... . re 7.2 -Th 1----,s\ r--I 0- " rim ESIGN ` j k 3� �� -)) L) 1J� ff 3 `1 1 2,1 Applications 2 .2 Types of Fire Sprinkler Systems �j•'`j� eq•, s •}� /� •r\ r. �s /+i' <Li h [Rrt r. r. • •R t ;'t f': A •-)T, ? Y •')r r ♦� t t ? f-: s e r i CPE siden i l fir Apr , alder system ser•� e• me f e t. •irernent �' Th F 1 stanch d caa,{`,� of iiz;s all ire sprinkler y ref :3 within ,/ • Fn \i \ \+ tr \J C, \! .r \? is :.r . 1. L \ s li 'L� I E�a J is ., \r , c, c) c, 7 ) •,.+ .) .� r iNational • C ;R r ).rs Protection -•• Y�•. -, • wet r< �t r. •t •, •� 7 S �,1^ ) fo f e rinkl f syste s a fi h; f j� wrote e t wo ge e a' type f s f� r � f r f e sy • : ti ,, is ; \r I. 7, L, ! . U {! �r!',t:� J l' �i :iJa :{. t .: : l`' Zi i + 1 lLtJ7l 1 �lf1L)f•`.♦t L1J •✓tom. , r .: `il.'tLr 'n,) and Z i• )` i e,/ L! i.:1 :�71 . r _ M M r yt��� f�•l � /y .. f ! + , f n , f, f L 6 n ' K we /+ rn t o r •, _ r�, n. 4. Assoc atrt�n , r ICJ Tf to f� fa t )` c1 insta atIo Sof Sprinkler- S stems in - �,J`fe( t pipe systems a; f lied with water and fr st i � IIIe: eas nog L�7 3 f� 'Tf r i�) 1 ,stI l J: 141 ji ♦i c anLl �Yfantif t t ur L •rmes and the subj •reef i S a t1 ' r . r , ' _ ' � feet to � fr / r ^ . > ) r, < y'•t/ ,�f / t +'t -fi ,y, i t \ w Y+ , ♦� systems 2 y^/� +\ { 4 ) P'; L / (+ ; ' < L' • ' \ ' el z t •()€�t , f l ec i �I ') C I f; ryanot el f t ,�t L . Le log 'ated . ; ti) lia • i rfti7 f d /_ ide tia, u E , ) ! /, ' : J ( t.: ( Di : i are e n JE. €e . vv .e " , IL,. r; �/i , ! (:. unheated C .s... tt.t subject to freezing . a: put :osc L. f lFPA 1 ,� C and RC . J tJ( i\z to provide a \:pr . alp\l .r fr= `''•'rl tl-irtt a d ire the ec iof• and control of re de. al firesr •thin The FIREPEX system is for wet pipe systems only, 2/ t/ t!: ! r •,y y , , rt l• :yi•'):• ` { C: n y,:! rs L , g, •, <'+ ••, „••L tr r o f f if i ii ;3a r ` d protect on apt; a. a 1n,ua ?{ an to , of lifer spf tiler x Within the vv p 1 e t}lstems, '�NFPA I )� C efin ••- the lay ut Lo syst r s i ,'\) C ' r2 rtn 4r ^v +•�h L tithe's!\:'\ w •:•-) : Ti•� r rtr r (+ r yi-; h +'L i ; +' y+, Li lam- -. . nY •ii � � \( htf 4'^\ : rtn /c sy�stem thlrat is designed anaJ installed in actcor�dance wi , • , L, : ifs stand art unlit! the : Ili ia. :'� tt p' s fo; hich the F RE- i system L an h' (.,. )'\ y .}.,.\,+•� {rt �y> p ta- JCS �• .fir a•n- C { `yy f!^ f!` �••�-y�" ,•�{. }� L S•: Y;�s L'\ •^•Y' ,-\, i • s ?~'iipec ed lL% reve t : 1 (ic>hL�Ld . : :lttal •f! voLai it1en ? of the 1rre) • :; •et \3i. le . K Y!\ r\L�' .. ♦ \ •\ •r , ( Y; / to K + /+ n \ :•.... ♦ ♦ y ♦ /� \ ♦\ !•L L/. y ,\d♦\ r rr on a of fi•• e ,:a iginf vfyft er"e spr^fr klered , an im row t o :,l"i��r ce ur Mule la . �l se S rrr� le Syst ; _ jt! ( �-•• ..n ..a ]] ] :nit, }.i ,L1 Purge f eS +•.aJrin ` l+ J ' t • � : lJ ll+.,i.f ,it C1t�- to ll+ f., . .L.( or •ijii •L,:r a.l t.,l+i;rltL.rL , r1. ,�rlr •• r.3rg C/ c.:). . , 1. vst- !: L:• antl aloe s is ...e Y1/414;r•fr Pad.+ lP , t41E ifit; shi ;l: pipe �xr d E L :l € tt :ON s r r eapproved : t fr use re rt. tf✓ : :ti l . : r e spr rnkl r , •.:ter ; �s as caw i: 'e d• by N PA •13D and lAi P2904- for a variety of residential :�.ppl cations including singIe - 2.2 .1 Multipurpose Sprinkler Systems or tib+o� e r�l liltl y Ln� \�: 1} L rcL 4 t err+ Li � { .i• L r ^yf< +� f y'y 3 teat EY t, t. t rt ,� r{n t ! lSg, { J e 1 in � � � f re.,.y JJ `Jr 3 E i ifi ;r•�e � n 0 • ll r FED f ,� min r:10.n�fak,t. irL'L `� ull•r� silipo V V erifV ale L1L : ir Ll it � �dl" 1" s< + � � E � i C ,J'v '' Slv t : ♦., nil L J :`rf r �'`� -sir r t', ':t �\ j 2 -, ty :• f\ n, y �i r) +•\ h ..;r,rc n g . p ping system is atrnded to sear . both •f re sp: inklers and C omest A i., t„ i ;� a , needs , n i.rltpurposesystem integrates the piping .. _were... r <.. . ;u)'•ti Jti•' ti tits +!, -/+! r\ Lt��/: .� t.t, S.. �l Lpy'Oj h > r !' t\ • \ �.. s \! Lf �, } > , air • �; + m. . � con r�r/L/iL/i t\i atc: r .:� \� E�l f Wa:n •spr•finl ,lt, rs tha: autos: : ticall ;, .>P - { >�" < < atT r i v T -9t$'> a f) �'. } + ,• ♦ � , • ♦ s r ♦ + ,.y. . .> 1t ? > £ t i< .i: ' 1 ; :, ,)i•t : tT f, y,:f• . r'� ! 't ^��/t f�. f.. • + f r. •� .j ,t .•; )r ;3 t s t �t t r c� \ /: tarry) tat. o� r -t rrt-• <: r .(1 t LA r, �rrig in a rifiu t )= i: p s ,_, b•Jz) t rrr <e +r 3> . / 7j l' \i: \. ♦ i / a. a, S. J Jt ♦! ♦ 1r , ! :fti � } supplyirit s+l r•inkler•r r tust be listed t r conform to the piping 8l ecrfica.- s t t ,.A)....:..'.‘:. -TlVT .. + '•T \ <\ IT: 1 +.5 �, <> + * <t r {* Ce \ : f'^'+'<: lion:( in NFPA 13D of, I tk, P2. 904. RC - T • 3 . - < `>T }t 2'-><S 4 ? G ^ �'\' ` • r53\Z\�, V4'i♦. <t `• •}�Y n ,Y ,} n�Y9c 'ti. .> . . .-•).. ><'i : . . ,... �+ < > tr y ;ttl+\ �; -� > 2 , 34 r {�•f • \ % % t` `„......, .:.....„4.,.,".... .... „ ;rt i •,r�}C� \ >� L is ; �> r �\' y` ir i {{, . if + :2 * t'S` • �tf`,itSTk� \ r i't cr _ f`�2< *:', i ` ` tl� � 7c" C �- rr • • yv/� S 2• • .rrt� �� -\ \ tsY✓ Tl, r [.1 <� } ��fi? V \. Fire Spr:nkker 2 r : ° < ;aT �'rCSf•`MT:.<�' .>> r v. 33`2i-c—i:2` ` t } �� > >< „< Lv ..> . `• €' + • \� 1 .h"Frc ': <`F2 . f ,y • . .. TIP :�F:Ilef Valve i L. • t IA/Etter HE3ter2CP ' ,. < i • y > »i~ f \C�� lAic � `sr..... > !'v! > itr � i N. � ; w A 2 �x ;k < > � \ , ; „ L Fite Sprinkler - .. .. ..2 Domestic`f � Fi>Iur� � • • fct, ' ; a. •a QJ Fblu:C • % .L+ .. . t Urr"Ru fi v6" < ti«Y. rt {, T> T > i a.r. , . � . . • {... �,r . . Wi ?# r 2 i / . i} rr. Y }rr :rfr. rr Arr r i-i f• /• f. i'•;f` �ir) !rivi fl0f '.C;(I tc v , - : e::::ne":c• HI:: V&ter r °' lAratr:r Meier Do m s f•^r Cckt \ft%iter ..• Fi>1utes City V.tater Main • • • 4 i i7g .) , 1' AIt f'iivlf it1,f1:� ♦+y.,,-.,,y, r, lr:rt t• , . fNi%,,., i.ivv t1) a.L: ,3 • (.- \t (Th , r: A 4.-- , TT, fif---‘? \ , _____,,, . J) 1-4 ..)) IIV 1-= {i - f 1.- I \\/111 { `` = l 3 .1 Application . 1 I�e FIRE"P %� resldentia . I e sprinklerincludes AUPEX white, �� Shield PE • '.4 l�. •I. : . C tERL C± '�olvmer andlea; ..flee brass � x � . )Tf� {t E `/y�, t/h !Y{J��{`N. ^- ri i•;, rn . h sleeves and ,[ !{{ {( * ' tp '1(' t! 1 (y n,h\ham tt �j^'t� w <' t% fittings . PE ♦a ssion and � Y ERLO� C••i • ✓oni essionw E } > G f )£Y ?� . t >,t � . 3 sleep e tools, wsE$ t > � The EVE •11...ry;. .. compression-sleeve fitting system s a cold- t ` ,! \ . ° r„'l PE : `it it �u s;stem fitvai ,. % a ' f , and lead-free rLF �Y < r\ ; /�j l„[�.• :.'(• f.. k} ••••• ♦1j� r t{ t(�j � CI •({/� • ! a fa�/•�}{y Y PEXa 1♦! Y j..1j (a h,'t FEJ / :✓ : �r .�. s , •r,..t 4L.rrl F 7 ,.,i i )f •Ct E :.f. L/ .iecia `J:..)`♦ • nea 1 �f,:.•L S1 Sa'. prey /io : sleeve. y9ljNLbE i t , N >t ! i ,'. f � a". > t3Sh b The fittings designed specifically toruse with i~ AU : "A pipe and Y t Y. . must only be assembled ; vit: :4. E E1'<: �.O : . + compression-sleeve tools . Fin C› yf-ijj r�j OG( • co i}•.fir ♦t^sion- coe <e tools !..J• O. t • L 'v t..t L:../ • r' Li ... 4'�-I. L•0$.1.=J• t , `J riYV . •f1<J .. ... . . . .... . . , . . .q . .f 3 ,2 Standards and Certifications 5� ! � htet. d ». i i.r . ti re % er ,ef , : N.. : , ! •: es! 1... ei iU Pi oldolec fled : rC • r t7nt ( l ire ` f t P C 29€l systems d ned by . 1f" A 13Cor IR . f : } ; . / RAUFLX red and clue by y shield are not certified for fire sprinkler . . ` \ :. .•"t"'>. . "` .•-• E:'t ... s e • • is) , J X The FHREPEX systOm is third' party certified by NSF Interndiio zal 11 'C.i>5 ?) l; t y.., 'aM:< < f - . . :tw } % \ <' i ¢ \ / , C\qt r•:r • 1 • t!`d e�€W. nsf. org; to the following s a :d rids . - IL 182 . 3anocti d for• . .her:�nopl4 stir Sp Inkl I P and Itt;: l t� f,ne �: it } c.f.- i�.!�n (; •Mf , tt(�ci .. .. • II ✓ ( ej�4t.s_=o: : ``.J ;aI b�=v:s C; 7 r 7 r• ; ipfir` whi ,� < ` J ♦» j r1 1CI • s: j al r Jw j"t�!-` ping ` \\ i ! t•\ !� r+ {•� •1.1 c e J-, t j'� 11 f'. 1 }1 r4 ..J!'t j` t p F j ?. . i. :: r�?•�?tJf t !� >r�tj:r. fl! jtri t v• f�JalF;?}t�+�•% j1�.�i� v:j?jrifi (: f'h. J jJ:, )" - :` lit F87 f St and i r d :gyp.... i ethic)!° io! fat 1 o kil . P(. . tiIvtathilone f .... , Hot- and \.•r= l\.t >< 1t :.L .er I......„t1 iLec t t�.-;n Sv cc:tom0 � ' !\ r\ } r;= • \ ttr dt•-t .iretot .M.•.\- Y tY / _\ r\ .. GSA a 1 ;7• 0 C",r �;ssl nked Pol; e .: ale' :e (: < :- Tubing Systems f; r' Pressure Ap Cn pli :ation s tn al ? ea a 14. • :.3 t♦,: 1) skn n • W. et NSF/ANSI14 stpiny r r o. .Matcnrin a � , � 9, � - •I;x'SE:•1fANSI 6 - "•inking tVatel System Comp=onents en=. Related r . Materials'n � t .$ > ' 3 , ♦t yt �' :S - . ., . a :t4 t. „t 3C...;.:".''. ,. t' y[�t • jj water System a • 't \ t t jW a! ) : ; > .t• . / W Y. lg YY :. y\„t :dad` S✓:-% \ } ia .7- . �.. . . w .. - irYA ,,. :<t 4 ! (•/♦!: Y :Y ir\ ♦ wit r, ♦ \ of S . \ � t tt Y.' > 'In ,1.,% >' >'+ �!<' . . . .. . \t•t / :-r:}.f l`S.t t.: Yi � :. the re the A. t � • fe Fir :. i • :� \l F lead- free requirements U S r�;ifo V)>. {S ,fit , ;+ Ft.. .�...1 !♦ ti G?)aYt ♦Ss •.� '•r ! \ v {r{., .•.'. t« � .. VOILrr t ,t.f� i a 1 . ..: V• > p. ' ... 3 .3 Warranty 4YAUP E X UV sly old • pipe and E f FJJ LOC compression -sleeveit€ n s Lulu sieei' es e t : 'k R' ie p' i p • ed E r t t.... ) L ..t j rUla I.. OUT ♦eel UT :. . <...� .; ./cm E t : , ,, ...i t ... : ... . : yt. .... 1; [Y. .._4.j ;.. .. Ft/ a7. 9' j.. / .y .j 7r1 ♦r,j. nea 'roil ij ',.' a ftiti s ld j j.. -.• compression ♦t.r♦�ry/ sleeves {, '\ } !'�:'r1, t .. i\ I113a r tools are backed 3 1 �} a 2-year t` <, 6 }! TI -•/: } t j:) . , < E .. ,1- .¢• crJ j ) Os.• jj •_< :.. s jji • • . .. i ,' , ,,,. <:jj..�,J,.� �. or:�prt `sion 1 t `rr tot l5 bf t { j[ by �-y ear lily :It=�:c1 j � ] tt . iJ • ...- t.. [j{ S ,•♦ f •fJj . .. .. . lr • t..1,•=J•. r f• fr.f tf j j t. f is�r < j<Z/. =�a.,� < � L.tv v } }. ,/\f S. / l� ifJ Y f \• \i ♦ 7J l.�S•}�(/�,j w.. � ,t { }t�i : �<j: ; t.�f a !. f [ ! r\ 1'Y =\ rr Y; { t tt3j': \}'a the instal f } =l r\ n !a a • REH 1.1 o ers lis \�sjarr : ci 3= when : atiw is cared out in accordance with the euIIIe e nts out' eE in the • L a Warranty �. '.• i } 1I nil . ; P.=� rY < 1 } f: r� f\ n r ) !�/. i <1 y� r ��ilar/r n y 655. tlt4 cit O! : ICU 's av a Iable do a sepatrat J d:licume _t w'�t i ljtvlJ �twjt= atrehau . cortiiiarrant-ies . • ..7 ii In) iii C.i� l II El A .1 . DC . EXa _ _ P F 4.1 Pipe Properties :, , 4 :. . c En glish 'F fan rd :. - >>a�ir�.., • r•rr• .r�,.:i».•u.r:.. , .:, .:. : . :.+, ... . ;. . r> a-'.,.).v»+.rrr,��A> wcrosslinked polyeh len + ia polyethylene � _) hic has undergone ay Tensile 4 19 - 3 5 psi f-:6, 3 2 - 0 wain change in molecular structure wnereoy the polymer cha ns are Str� n itil °Ofi°l �?;2 ?cc 2610)-2900 psi 18-20 Rime --- item rally i I wed r•1 {/•♦� '\ e1'>{ /f�\/rt I• J; with `�S each other �•ltY 'lc rtfF to form three- ..; /> (�'''• �/Y )( ((' cl iern tally . •: ‘ed , c %.•Li { 11 Y4•>. t Iry f 1 � c : for a : r J J � �5)141 @8otic dimensional network . the - result is a ilex )lethermoset polymer with per ASTM . 638 rCsi ^ r > . . T �t D.) S r w Y J .. /� \Y;/ Y; • y! ,' '� and �\ /� \ ' 'j!\ / '\ n ♦}- r� l" l, .\ t % y ii t r roved mechanical, thermal a: td chert cal properties , 170D impact No Brea t�U it , a t Resistance three methods , manufacturing P Roughness e ••0.0 )028 In, e =0.007 Mir:- .. .. There are r) €etl i ,� / . ... --.. - Mne peroxide method PE ,a) , A"TM r•egu res a minimum of 70'34 Temperature -. 0 to 2 ,0 f- - 4 °.0 -- - Cr' ;}sslir ; Working.. Range -..- .. The Mane r -�.. i ♦ e (` ` of F;- :�( maximum�iiF 17 150 r�s i.1 5 i 10 ^ L% :S:) i a f.—?-: :%�.3..() AS' Ni 1 8 ! 6 - ane ripe:.• od c PEXbf , Ao� Iti>i� requires a minimum r:�a Short-term (48 h 'i (4 NI cr 'o sslir Exposure sr; r pia : i }n method Xc i A \Ttvl requ res of6 ;s tiv Resistance( SeTB218 ,\ , fy��+ • :�f CIt\ 7.. • \/ % •F : C.. t / , �J 7 a minimum '+.% i f J Si�J�>�iY=fiLl/ bee i•� Tr� = `'i} f cr o slim y o W RAUPEXpipe is manufactured r ,r using the :feroxiae method E :a) , 42 Pipe Dimensions and Weights which '>}' yields fn the rt ,n.� ,\: consistent fir •aV ,'\ j�C1\ t ,• `/n '� _✓ ` , White if shield r 1 ) for Y•�•j:\ i f.t re \ • / }a�• systems.�+ I•• �1tfa iic i yields �€ .,.: highest, most ,onsister level O u-TOSSlii1l�ing . PE;�c RAUPEX EX � hik : 0 shield l :)ate o: i`e iuential t re sprinkler ms is T i ♦r n O Nib ,P memory: -1 ♦ I ♦ ease n.^ available >• f•' t^ nominal } Pt •' i I and is ••1 /•, ;no o 'e. ' ' providing ease of .Jail able in nominal ranging l' m r o 2 in . , in a r r- tect . . :� lo....: enhances lex l)il t ,j andtl ern al : i� r �=�i i L= ' ling :< , u sizes ��: 3 t } =.f:�Ll M Y �-y Yl Y: /ti Y\ 1 • /'• `\ ! / and \ y r` '•./•. r1 +•\ ♦♦ •`fir . r • • , ; '! A (: / ''' CSA Idling and k r k repair compared to PE an PE �J , clanc e °o the dingy ens anal stan =dards defined in AS•1•• t` Fat 6 and CSA k} 3 . 3 . RAUPEX is copper tube s ze 0 Si outside diameter (OD) : • r3 l%! has /a; nct r ♦ !• t \�\ 4 ,• Y / '} � ♦ ! 1 =• /S , actua ttt r� ^ Ya s t"} ,•es. q �n ,- 3 , t ` /' EXa . :� .;� c.�is ii;,t advantage over other noltyirier andmetal al P pes : �Yh .�h means thatthe .tc, : a D ., of the ;� in ,� . l :, ri m) la ger •• Res sts p ttina and stress corrosion : an the nominal size . .. �..i. . \1f and •'tl♦ Y J> ... as 'S ! 1 when used i CP— arm /♦ •• R ;sist � :scaling ° i � deposit k u d••.up 1 : ;n used m , both harts anr. 'so ;enec water i r all thickness is defined -} t • i '\ DZ •rl e •sd ° a mensronal ratio , J , �Fc . , ... i r DR which :oaf s to theoutside 3:• '> 7PR j^ L•> • ,•,i• a� �f aL�.�t,.� t>;r• t• � h �•> shield r a > � `> t 1!f +'t � •-�, r �"') .L -> •ri �- KAinimi7:,\.: i�oieP the; : is transmitted h: ouoh es RAUPEX �}l iwli . )3� , i� i •�, �v : J Ott f 4✓ t ' } •1 ^lb.^l tt •Y"•• j1 n , damage /• I+ �,1 Y(\ !♦ nine .•: I r,; / ,\:-1 !•� , n - Hes sts notching and aor"asion ci ameter }sing app' cx mately s times the wall thrtc= cn Jss, 3irlcS • ' Et p pe has a thicker wall than copper tube, the ins de d ameter (ID) AF F• E> i� rri rii.r a;., s.i.1i d bv 'iEHAl.l in � cili �r��fr: :�: ; ( < lit is Sh h*/ Srilaiiert FIn e'y er, s • ce . : f, r I.t: b nrht cr.ISUeridble t; the w system;jr s E� LF 1 , a , addition , j ) =i i• r;, �\/ ps i\ �� : :; w� ♦ ,\(! \ ji'\ p tit '\3:`: _� '\/S 3 f '\ r} t management; :iti ;iit tf tft:,= il i l �tC� \/ Cj() i L\IYti �lec , In ct; c iti ,;ri , RAUPEX�, eros n an CONOS:\;ri ISsileS cif ;:1.�.f 3 ./ \rr ube, \.ysix, :ii\/ an ;De ; :;�r ,.jii ♦ 6 tt.3i �i,i \ :f��: ..` <o-�!••o-' t s`s?•=' > , ' i•: i annually � velocities ti r'4 /> allow for comparable n of a o, ct o. : ir7i~j.,�:\,ri ,l\. : : kl� r~ i\:ri ��rr/cl <tnnuall by : J:�F l: :tei'ir t oral : at. higher wni::lr r..:irrl: gable sizing system . L•0f i Group and Ur (=. er tir• L4.eto ._.aborator ies l: ac, (UL; . Table 4.2: RAUPEX White UV Shield Pipe Dimensions and Weights r,. , v+ �,h C, C . , l . Table 4. 1 : RAUPEX Properties � �i� f,zYi<, J < �Y ' .. . . < _ t a , . `„"r : +� . . .s : .. . < ; . . • r ;,,: y .c • \u , \ r >., •i s;i ?r ,.gotxt r : ,.. .• < .` •• a < < b , s„ R'• . ti 'ti 2% tower : , 4 „\ s Y.. \ < <.-�• ,{{ 'v +, -•f Zi?: e r f. ,`�\ ZA'sF�';h,+, � < p . �{. Z i; � �.,�C; \lit 2 � r•... :•: �•} ','���`"}� } ` . & : �� • `k t � . •4 r r r •'ct 1 . ' Y • `<q� < sG��W. u,\; r •r \ � v ;22 \ \ {. in E\ R . \+\v, 'i\ )/•sC ' 6 p {35 / vv C \ ),YK Ise • ! t & a ff 1vow*, lAl '>. g •\ s ' r <, `3>r V �c Kra >}t O " v v 0 J < :?:: r J-:w } :4 f,II I': . .}..:V cr , �.. ..:r7.�J., a` :;•". it<A:• ffW?.:( F3 ) rStPi la .S .... nave 7 .f : . 97 0.10 Minimum 58 ii�:t - I?t i : -►� ASiT€<< F876 . E. � :._..._ •r .151 _�.- i.):'tt;;ita� ` I . 1 ,125128 . 58 ) 0.125 (3.18) 0.1 r (0. 26) minimum ri ! r f ;,j sf> AST M 87 6 114 4 I: : 1 .375 •iin `✓ -'. . t_ i 0.15:J ,+J . 4}{.�� 0. 2V (0.3 t Degree of _ / , ; J� •g 1 ; 2 : r1 1 ,62 -1 . ;28) f)1181 (4, 5 jJ 0. `-lis {(). 2' Urosslinkin ; • .... in 2 .125 (53 ,9 ) 0 7),P It-:: f)1 ki. .:)i; io . ::;0 Max Thermal 2. 8'1 Btu inAft� F4hr) 0.41 °�.1(n : ill DIN 1f;�'c;2 • Conoucti €1,, Coefficient of 9.33 x 10-4 :raft "1" 0.14 n�mt ni`c) Mean @ inear i)8 : ::© L e;'/ • 20-lo i/ Per FM 4.3 Pipe Markings Expansion [ .33 x c 0J-3 :: t• ft 0. 2 mmi (m ) 16892 ^, /� • '1 i\ ♦ y pt , it t i ;i hi all 1 1 `�f�F t 1r;r1��' 1"5 .� 1 � pipe markings.. are repeated €/iJ:, ` / .� , \ , > certifications arid appio�ra i and include an ineremerr afootage • T , ' t Modulus of s-- � � < nrt r- r� i00 0: �c; ps 600- 310 J/rr.r l` Minimum marking; to ass ` : Yi . rsa/altk ,! i �> f: ((eft �� Jl y/(( per sticIty Li \/\Y}::r• :`�^i'20t 20 •�.: per DIN 43:5 n-58 ,0;J0 psi 300-400 lt nini- 16892 , 7; t - / t / RIM - L - ((-.-_C9. (r...1/4—--..,.);, . E- SnS fr: ,t\,\ 6 in -:-_-_„, ir1ir_.„..,, i11v1_..--__-_1', \\\.ii i i EJT {LL \f1IIJ iK 7- i1i1 C [3 i-\, /1f ct i ri-.).i 1.,A- 1 7 t \,;-.__._-__1_-))-,_- __ { ,_ (,te rij Its 5 .1 Fitting Scope 5 .1 .2 Fitting and Sleeve Markings L The EVERLOC + ce o essio sleeve system is a cold -expansion nld -ex an ion P a > <• ttnC y gsc I n • e ;j114ollcl i�ng marks for i e ti is ion fittinri g system that s a,rail«l ;l: n pc31, � : :e►• !: C� i e �_! liras (e. Ind i 'mg‘ sassembled withspec a ly des ed PEXr2 colmpresr sleeve- The I. VVSJ : t ✓ �i J�Ilth a Jf>eL• .r ✓lam 4-jnVt ! tt t�L: f 1 ✓: ,..• :.)ion tit/ J . the \ (40.4141114 fitting is designed specifically for use x�t{ith RALIPE i.. e and must OR only be ler.amb:led with the FVF >•�1... :►;.1- - compression -sleeve. tools , ...... •••• r •', . •iCa-. EVERLOC+ f• i gs forresident 1 al =ire sprinkler applications ire, Pa s E i_ y p n o IN available in It 314 to tsi eadare lited fusewithU ; w : . 1 sh eld pipe /4 to n . mran^ufactured in accordance With AST .. . i ♦ 8 1 6 rCC>tt� z > . o? a detailed : scr p.pt on of the REHAU system�2 components, ref e •t to ; - «SS thr' p t} J '3!Y 1I +1'f ` � "\• f !x f r.'. ! Y Yjre- /? ! C� :::� rE. e ,KFI-1 t.l I t.:II AI11 �.>�ticliff;I I. f ,t:l: LW Gataloc t' ?,?;��, J r. ,trt,, rri <f . -C> 5.111 Fitting Features F;, .,, witting t 1� 1"1!'tingf : v F; :., f I ! . C/. f. t l.[t l..I \st.. It 1.A . - ce ��i. • },} \. >..VERL O /- - polymerp nd lead-free (IF) brass fittinas have the • ._. .• tollo sin► features : r . `our sealing edges ;, :'. §'i ;c. ?=f . `� ,\ ; `C\� 4 >. � �.„ ,..�V > y.t = e> `.. t .. ,•• y.i Yil.+i e / Y) \ T, 3h is• t:‘ ,': t S< • > \ t tang c+ llar, . Tool atlt1 . 1 body ,.... \:. i .. { .. . .. :3: ' 0 • .. . . • { , C�.0. l al„if :A.e: C. (Ei,�i.< pr. Vt fete 1:1.. . Utio.}i , ,.y - ;z .. < fit= ,. E• ,\ f� ' t} z a t _ }• All LF" brass It in are r � e • • Rol > ,L E y j "< x< < < < t z< u t .r % f £ < ';,f< \b < x S< > Y i ' • All sleeves include the following Y, marks for identification . £ : 1 , ro f <c ? • .1<;>1\).. ,‘ .,.\k).kW %.> %%WakkSk‘ %"‘v .•% (' 5.‘ REHR !" z.-` s > >. >:e > f9' j> > r - 3 - rr \• \\\zlzi � \\C`'t • ,,. . ... . .... ' „) :>„).)„.v....s.„..,1,.,. ... . W. w. .....v..„...<:t:igAsNt '....v. % l � � ` - ,� \, e a : . _ MINN 31).ki\ - Batch code for production Matti I rig. f?. ?. Sleeve ri'.%11Yi11gs •.r r Frig, '3 1 • `V,-r'I nit_ 1p;:(},v IP tii'I.0 • C. \,. i• I.- = ...I ft.0 J ♦ IC. . IV tG,.. A.I%:v 1-1 5 .1 . 3 Polymer Fittings - V 1, :r }. i 9 •' f ever ale available in coup ings : tees . ell 'c:,�ls x , l tees find plugs A lmuti-Put .. a , .. �t , i r producedrr L rl�S { . 4 > . Vf{ :% l •. F `4spy.. c> c C r N `vt' v \ •\ I 'i E\ ! J ) }� mater ! See .� ♦ �f ... ) ; >J'>S' \: J ! =• rInt J'1 v >v > rr r>t >!s} >� zJ3 cz ,' v \> { polyphe iylsuifone { P SuI al , See also FIEHAi.1 Tec! t! nica Bul,,.1ti ; t f e� i�'f �\,{,�.• L-€i pt-��`-'(�1 µ3 "�..� •JJ)S€ [f ti t' ,'ill�r� Material .. }«'`d�''S 3\` ,< \ = Q v>a2Y v � ' v . • r- 7 1... Y L JI Pohl(�• ! of �\ \'�!•` 03 1 1 f �.. �c. ,... r ♦s r < .!, fit r. Ls f :3•.. . Z,. s T v� v .\\ v\' .,' \\ 5 .1 .4 Lead Free (LF) Brass Fittings . 3 ` 11 .t f•!r. �� a r r; rn nq r !"' /\ .". coup r r :� 'yi!j"a ' '``si L � F }iL iii" ' LF sass ,ulnas a; e :. . C. ,of; as i � ,a , tees , ell �.; YtS » r nio .1 it �•� t ; - - d 'Oar • ✓l ositi i • c P lot op s \f•.. s A. i •c.i : t::a i c�€ ce f f ieti � • All ltll fittings are .l� i. . C „ B 1 c• i ``> ... Y r r : r i. r •,k/! .; 'r• •..s 2 �ri !t ... , , n:j = s r �. /r. r .. } /',. r• ,.i �asr f .•. S Ci(iYar .i♦ ,u . 1 L . . ;L. t . :lS, j )` k ! T! o�•,C-• L nervi.. TYY ! r 9i\,�eL: R lin. ; Maiel ras: lft::t l_ ✓ • r L..tt s+ ! C? r.-Jf as„):..; r c,. fv! Y 4tf , A.• 5,1 .6 Certifications E 'JtRLuu • com •recs'r"'ir -lat3\ e tits nr s fete .? `s r et to the . . ... The ! ... ..I .i ' •' rt.t Ju_ L 4 %J .J •✓ is :t. 0 ei : �f.: .Jeri 4i..t i..� following sinnt ins s, tJL. 182 1 Standard for Th ,• H •'�.!lab C. •fprin 1,i� Pipe • and F ► t € ii' c ; or • F re Protection :service f-.. • ASTMi FB.17, Standard =or,% cation for Crossl nked Polyethylene .; f l.., t \.• !!tJ - \! t•t,r nked c >,::k { if< c _n rr , ! • �'-. F ct � SPL, i - • .t f. • \ \t♦ •.�� l•\4, •. /! ?)j,{� FJ '! :. '+.4 . • S ( PEX) t :t ... �Fn CoC.!\i a ... 1� t1 to ':../ �` :r� .,i �fft i�• a) :.1- .• • ;r f� _ t k t4`\ F � . •• NISF/ANS114 . Plastic P fling •System Components aid Re at d :":, rr.1 � L !r'rS. ' v ... > ` t: v . ial:,� -''r1. > - _ � Mater als , - c yy; { >vrUtr3c r ? -e: • "t.t.Tr wItl . � 1 16i1 f . inic lei System Components Health 1ec1s y . 3! > rcF�yr (IE ` {i tf[e ... NSF/ANSI \., f 1. r :1 t: l J3 at er System !.!{�('1 ;S i f= " la;": ..... .. i�.t '>..i'..•in L r > / ` r sz>9 /•i .•'\ 2 1 .� /^!� "' yf •• i . . !a !♦ �tI •Tub Y•l: • t,{ • ( for 'c : 4" i . K# < .` ; r� • a^'G J v ♦ • t� his tS ♦ :i.t Sys e s >� F» . >r . � . ?. 5 , c: ' eclinke l rithv lens (PFX • t ... rr S .�. ,'��i. �,}� err r• / •t - • a^39' `h`5•.-:.: E (�`^ '?.' llj Yll€�. { tgE fjY.S.� wo -' c�, y �-:;:. h ; €•�ICll.'7A, . e i `_.lF n •cant/: :3J ., • a v' a .\; } -, -' v.\ sip- 'Z _ . !' , F !i ✓ Ja /!L fr n•i YJ'v1. ♦ ariaLL. yv !si Miklos i Yi�i. r . . . � •r : J ,, • , • •• • • 5 .1 .5 PEXa Compression Sleeves t t t �l ... C\ ' C i '.i1 .''4 t'... 1. • �\ , \ r• Et F : : LOC+ r/c rr fire A� icc >lee es a pr c r; ;:1 using 4 spec a y tA:: r: � ul Ste PE a :carte• ial a : nd are de si ned s>3eciE ca �J : or Use. , th E ;I LOC+ fittings and I�AUPLX pipe . •L V ERLOC+ compression s eaves have tile ollowing features: Co-extruded platinum- colored PE coating i i3 t : s aca /`S Squarely cut e \ t it : / sl d \ �f\r i: • pipee \ theta ircrt o n Grooved and roughened insidesurf -r� e •for ockin; sleeve into i la e one slit (Wei tl ie p oe and t ts g - . . • 19 . . • • .•'• n e. f y %4 e. CJ} (y,) Cl) •ram' `a'.' s 1 � '„4. 4 a • an: co >.Vsitp. wr f • ""C y +}:+ e. r rear"-, '•'• >1 al C«) •;../ Ky '�Zfi3yf .s._. ~ ;.... es r ..., „_., ,,,,� i c a r:v C C7 r . J'•.r... - t C: rN �. M�' , :/� CD ,1 �"•. (,+,} �.:+ •.t.i w./ .1(l.+'•'�.^•i� 4 � .. i�v ,•b�• ti' .. ••r'.' ^ t'•"J •./}�.(.•�.�.i Y•,, f+..- I ... . ,.1::. •�+•� 'v..: . wE .•••J ^, '1 '.�, • •7'^r 1..1i ,r+. 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'Gt�liL� ink!., j j'fL f �i r!y 1 ��3t �'� Ml� 4�' ! spunkier troll/ibis�i:ii7i7/, 'l.�i-Foie •r ';fi f 3t t :r3ii1 rr: iiii r �r' g: r ` C3 PCJ� t '�, .} G� X • • • "h to REHR 0 Product Submittal Product: RAUPEX' Non-Barrier Pipe Date: 19-August-05 Submittal #: 100RAUPEXNB Category: RAUPEX Pipes Page: 1 of: 1 ;C '{ 1 7( \ i 6 REI...IAU RAUPEX Non-Barrier Pipe A I ! '.\ I \ ,,„) _., \_ ___,./ _....._ Nominal A OD' in. (mm) B ID3 in, (mm) C Wall t2 in. Weight Capacity Article No. Diameter (mm) lb/ft(kg/m) Gal*/foot(Um) 261683 3/8" 0.500 (12.7) 0.360 (9.1) 0.070 (1.8) 0.04 (0.06) 0.0050 (0.0624) 261026 1/2" 0.625 (15.9) 0.485 (12.3) 0.070 (1.8) 0.05 (0.08) 0.0098 (0.1222) 261046" _ 3/4' __._.__..._.... 0.875 (22.2)..__.. 0.681117.3) ..--- _0.097 (2.5) 0.10 (0.16) 0.0189 (0.2356Z 261066* 1" 1.125 (28.6) 0.875 (22.2) 0.125 (3.2) 0.17 (0.26) 0.0316 (0.3939) 261086 1 1/4" 1.375 (34.9) 1.069 (27.2) 0.153 (3.9) 0.25 (0.37) 0.0467 (0.5827) 261106 1 1/2" 1.625 (41.3) 1.263 (32.1) 0.181 (4.6) 0.35 (0.52) 0.0650 (0.8118) 138331 2' 2.125 (54.0) 1.653 (42.0) 0.236 (6.0) 0.60 (0.90) 0.1114 (1.3906) 1-Average OD from ASTM F 876 2-Minimum Wall t from ASTM F 876 3-ID is calculated based on OD(1) and Wall t(2) *US Gallon TECHNICAL DESCRIPTION Specification English SI Standard Specification English SI Standard Minimum 58 Ib/ft3 926 kg/m' ASTM F 876 4194-4355 psi 26-30 N/mm2 Density DIN 53479 Tensile @ 68°F @ 20°C DIN 53455 Degree of 70-89% 70-89% ASTM F 876 Strength 2610-2900 psi 18-20 N/mm2 Cross-Linking DIN 16892 @ 176°F @ 80 C Thermal 0.24 0.41 DIN 52612 IZOD Impact No Break No Break DIN 53453 Conductivity BTU/(hr ft°F) w/(m°K) Res. Linear Exp. 9.33 x 10-4 in/ft°F @ 68°F 0.14 mm/(m'C)@ 20°C DIN 42328 Temperature ..40°F to 200°F -40°C to 93°C N/A 1.33 x 10-3 in/ft°F @ 212°F 0.2 mrn/(m°C)@ 100"C Working Range 87,000-130,500 psi 600-900 N/ntrn2 Roughness e=0.00028 in e=0.007 mm N/A Modulus of @ 68°F @ 20°C 1035 kPa psig Max. Short- 150@Elasticity DIN 53457 term Exposure 210°F (48 hr) 99°C(48 hr) ASTM F 876 43,500-58,000 psi 300-400 N/mm2 @176°F @ 80°C; UV Resistance 15 days 15 days PP!TN-33 FUNCTIONAL DESCRIPTION RAUPEX Non-Barrier pipe is manufactured using REHAU's high-pressure peroxide method for cross-linked polyethylene (Engel method, PEXa).All RAUPEX Non-Barrier pipe meets or exceeds the requirements of ASTM F 876, F 877, CSA B 137.5 and PPI TR-3, and is certified to NSF Standards 14/61. RAUPEX Non-Barrier pipe also meets the requirements of NSF P 171 and ASTM F 2023 for chlorine resistance. RAUPEX Non-Barrier pipe is produced in REHAU's ISO 9001 certified manufacturing facilities. *These pipes are certified by UL to UL 1821 and by ULC to ULC-ORD C199P for NFPA 13D fire protection applications. RAUPEX Non-Barrier pipe is rated for continuous operation of 160 psi @ 73.4°F (1105 kPa @ 23°C), 130 psi @ 120`F (900 kPa @ 49°C), 100 psi @ 180°F (690 kPa @ 82.2°C) and 80 psi @ 200°F (550 kPa @ 93.3°C). It is compatible with brass crimp ring fittings certified to ASTM F 1807, RAUPEX compression nut fittings, and EVERLOC compression-sleeve fittings certified to ASTM F 2080 and CSA B 137.5. Use of RAUPEX Non-Barrier pipe in heating systems requires corrosion protection and/or isolation by using a heat exchanger or non-ferrous components throughout the system. • The information contained herein is believed to be reliable,but no representations, guarantees,or warranties of any kind are made as to its accuracy.suitability for particular applications or the results to be attained therefrom. Before using,the user shall determine suitability of the information for user's intended use and shall assume all risk and liability in connection therewith. Installation shall comply with local codes where applicable. To the extent permitted by law, REHAU DISCLAIMS ALL WARRANTIES, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO ANY IMPLIED WARRANTIES OF MERCHANTABILITY OR OF FITNESS FOR A PARTICULAR PURPOSE. POLYETHYLENE CTS PIPE FASTENER Item # Submitted 555 series Tube Talonr" -Job Name Location SPECIFICATION Sioux Chief 555 Series Tube Talon CTS pipe fasteners shall be used where Engineer necessary to secure CTS tube in piping systems. Fastener shall be 100% Contractor corrosion proof and U.V. resistant. Fastener shall be impact resistant to 0°F, Po# TAG and be able to withstand continuous temperatures up to 160°F. Fastener shall have a preloaded nail, which shall be rust resistant, zinc plated yellow irradite. Preloaded nail shall have a continuous ring shank to provide a more permanent installation. Fastener shall snap onto CTS tube for easy installation, and shall allow for expansion and contraction of tube with less noise. Fastener shall be designed to avoid tube damage if nail is over driven. MATERIALS fastener body: High density black polyethylene; 100% corrosion proof; U.V. resistant; impact resistant to 0°F; max temp: 160°F continuous. nail: Rust resistant; zinc-plated yellow irradite; continuous ring shank. MAXIMUM LOAD RATING 555-1: 3 lbs. 555-2 555-2: 5 lbs. 555-3: 8 lbs. 555-4: 12 lbs. APPROVED USES Manufacturer has approved the Tube Talon for use with: copper tube, CPVC tube, PEX/PB tube, CSST lines, flexible gas tubing, plastic/steel conduit, low voltage DataCom cable. INSTALLATION Manufacturer suggests the Tube Talon be installed in alternating directions (so that the fastener's nail is on alternating sides of the tube being fastened) to ensure secure installation. Install fasteners at intervals J _ 11 described in local plumbing code for the type of pipe or tube being fastened. E D To install IPS tube, use the next larger size fastener, e.g. if you are fastening 1" IPS tube, use a 3/4" fastener. lam; DIMENSIONS: 5551 555-2 555-3 555-4A _ A: width 0.848" 1.125" 1.375" 1.6875" F B: height 0.735" 0.875" 1.1875" 1.4375" C: depth 0.375" 0.375" 0.4375" 0.5" D: nail length 1.625" 1.625" 2.125" 2.375" 0 C E: hook height 0.468" 0.5625" 0.75" 0.9063" 1 F: width to center of tube 0.5" 0.6563" 0.75" 0.9375" Create Item Number 555-A e.g. 555-3=Tube Talon for 3/4" CTS piping A TUBE SIZE o 1 3/s" CTS ❑ 2 1" CTS ❑ 3 3/4" CTS ❑ 4 1" CTS Sioux Chief Sioux Chief Manufacturing Company • tel: 1-800-821-3944 • www.siouxchief.com • fax: 1-800-758-5950 11-08 6 i. SPEARS [!VC_& CPVC TRUE UNIUILS .�.t.2te .. .. .. .. . _. . , i U12000-2.0400 One of the Most Versatile, Compact Valve Designs Available Spears' True Union 2000 Ball Valves, 3-Way Ball Valves and Ball Check Valves provide maximum versatility with fully interchangeable valve cartridges. Provides for easier system design modifications and upgrades in. multiphase projects, or anywhere changes in valve types are desired. Simply exchange any True Union 2000 valve in-Line using existing union nuts. Also mates with Spears® new Schedule 80 Unions and Diaphragm Valves. All True Union 2000 valves feature a low profile, compact design for minimal space requirements. Available in PVC or CPVC with choice of EPDM or Dupont Dow Viton® 0-ring seals and socket, flanged, spigot or optional Spears® patented Special Reinforced (SR) threaded end connectors. Additionally, Spears® offers valve Retrofit Kits for easy in-line replacement of other valves and factory installed Actuation Packages. Assembled with silicone-free lubricant. True Union 2000 Industrial Ball Valve • Multi-featured Industrial Grade • Built-in Handle Lockout • Fully Serviceable, Replaceable Components ' �ftf s • `" '' {�Jrr Safe-T Blocked`® Seal Carrier - Full Rated Pressure i,,-„;,,,,,{ryr s sr, • ISO Pattern Actuation Mounting Option • Spear? Dual 0-ring Safe-T Shear® Stem • Self Adjusting PTFE Floating Seat Design , • Sizes [ 2" - 4" pressure rated to 235 si u� 73°F '� � E / P �1 sizes 6" - 8" and all flanged to 150 psi (_) 73°F • NSF Certified for Potable Water Use • Also Available in SPEARS® LTTM High Purity, Low Extractable PVC Material • Produced in IPS sizes 1/2" - 6" with Socket, Flanged, Spigot or SR Threaded End Connectors True Union 2000 Industrial 3WayValve • 8" with Socket and Flanged End Connectors • Industrial Grade, Multiport, D.iverter, L-Pattern & T Pattern configurations Vertical 3-Way or Horizontal Diverter (shown) • Built-in Handle Lockout • Fully Serviceable, Replaceable Components , • Safe-T Blocked® Seal Carrier - Full Rated Pressure u' n= r • ISO Pattern Actuation Mounting Option ,, ' • Spears® Dual 0-ring Safe-T Sh.ear® Stenl ,� :t}:�ear • Self Adjusting PTFE Floating Seat Design `4' ,, , • Sizes 1/2" - 2" pressure rated to 235 psi @ 73°F, f= sizes 2-1/2" - 4" and all flanged to 150 psi @ 73°I=, '� ` £` • NSF Certified for Potable Water Use i:; • Produced in IPS sizes 1/2" - 4" with Socket, Flanged, Spigot or SR Threaded End Connectors f.BR7 ../ ftjT}rJ/y�Jf]T /T '''(���E(((yJF/+ 7 �///may/7 !/5,}�('p� TECHNOLOGY �}7 jT f/7N� �' s `C : I Y�Y Y TI A C`= e T C I`✓ LO rj�, ll/ Ma N�A�U lM a x l Z Cot Pioi afa,#....Islip.SYlm or.ZCA 4 f d saaaot: xoaa f2 Visitour web-site. y. www.spearsmfg.com • Avoid contact with eyes. Splash-proof chemical goggles are recommended. • Review the Material Safety Data Sheet (MSDS) and the important product information provided on the label for Spears FS-5 One-Step Low VOC Solvent Cement. Failure to follow the above recommendations could result in death or serious personal injury. Listings,Approvals,Application&Use Spears° FlameGuard® CPVC Fire Sprinkler Products are fully tested and approved for use in wet pipe fire sprinkler systems by Underwriters Laboratories Inc., FM Global, and the Loss Prevention Certification Board. Spears® FlameGuard® CPVC Fire Sprinkler Products are approved for use in low pressure dry pipe or pre-action systems by Underwriters Laboratories Inc. Spears°FlameGuard®CPVC Fire Sprinkler Products are listed by NSF® International for use in potable water systems. For specific listing information not covered in this manual concerning Factory Mutual,The Loss Prevention Certification Board or NSF® International, please contact your nearest Spears°Regional Distribution Center. NOTICE: National Fire Protection Association (NFPA) Standards 13, 13R, and 13D must be referenced for design and installation requirements in conjunction with this manual and all local codes. CAUTION: Spears° FlameGuard® CPVC Fire Sprinkler Products are NOT listed for outdoor applications. Outdoor installation could result in product failure and property damage and will not be covered under the Spears° FlameGuard°CPVC Fire Sprinkler Products warranty. CAUTION: Spears® FlameGuard° CPVC Fire Sprinkler Products are to be used in wet pipe systems only, except as provided for dry pipe or pre-action systems in this manual. A wet pipe system is one that contains water and is connected to a water supply system so that the water will discharge immediately when the sprinkler is opened. A low pressure dry pipe or pre- action system is a piping system containing air or nitrogen under pressure that is release with the opening of a sprinkler which activates a special dry pipe valve allowing water to flow into the piping system and to the open sprinkler. WARNING:Spears°FlameGuard®CPVC Fire Sprinkler Products must never be used for distribution of compressed air or other gases except as provided for under Low Pressure Dry Pipe and Pre-action Systems specified in this manual. Failure to follow this warning could result in product failure, property damage and severe personal injury or death. Light Hazard Occupancies Spears°FlameGuard°CPVC Fire Sprinkler Products are UL Listed for use in Light Hazard Occupancies,as defined in the NFPA 13. In accordance with NFPA 13,2002 Edition paragraph 6.3.6.2,"Pipe or tube listed for light hazard occupancies shall be permitted to be installed in ordinary hazard rooms of otherwise light hazard occupancies where the room does not exceed 400 square feet". NOTICE: Local jurisdictions must approve of this exception. Residential Occupancies Spears® FlameGuard°CPVC Fire Sprinkler Products are UL Listed for use in: Residential occupancies up to and including four stories in height,as defined in NFPA 13R. Residential occupancies, as defined in the Standard for the Installation of Sprinkler Systems in One and Two Family Dwellings and Manufactured Homes, NFPA 13D. FG-3-1010 ©2010 Spears®Manufacturing Company Page 7 (i) TOLco. www.tolco.com „:(:I :,:NIBCO Revision 1/21/2011 Fig. 28 - "Stand-off" Hanger & Restrainer for CPVC Plastic Pipe G O US LISTED Size Range — 3/4" through 211 :`�, Material — Carbon Steel, Pre-Galvanized - Function — Designed to be used as a hanger and restrainer for CPVC piping where •the "stand-off" design will ease installation by eliminating the need for wood blocking. ; ;� '.- Features: .. ‘ • Flared edge design protects CPVC pipe from any rough or abrasive surfaces. A • Unique twist and lock design holds pipe firmly in place and allows retrofit type . B of installation. . - '_' • The "Stand-Off" design eliminates the need for wood block extension. C - I. • Can be installed on horizontal or vertical piping regardless of mounting surface orientation. • Attaches easily to wood structure with two hex head self-threading screws f'...., furnished with product. ,,'-_ Installs easilyusingrechargeable electrical driver with 5/16" extension socket , • g 7. eliminating impact tool damage to pipe. f. • Attaches easily to steel, minimum 18 gauge with (2) 1/4" x 1 " tek type self drilling . ;` ,2-. ' _:�. >. tapping screws. p` ,, • UL Listed as a hanger and a restrainer for fire sprinkler piping. Approvals — Underwriters' Laboratory Listed in the USA (UL) and Canada (cUL) to z support automatic fire sprinkler systems. May be installed into wood using fasteners \. -- supplied with product, or into minimum 18 gauge steel using (2) 1/4" x 1 " tek type \ screws. Meets and exceeds the requirements of NFPA 13, 13R and 13D. Fig. 28 satis- !,C', °-�, fies the UL vertical restraint requirement where needed. UL Listed as a hanger and ver- ;';' E`• tical restraint when installed on 3/8 composite wood material. Use two Fig. 27B Speed � ,., I� 9� p , Nuts when used as a hanger and restraint. Use one Fig. 27B Speed Nut on the upper ''--- `'',_-. installed screw when used as a hanger only. Order by — Figure number and pipe size. Pat. # 7,455,268, Pat. # 7832,248 ( f 4, �,` //t'\ FIG.278 -,,'i -1% !i .> i (9)REQUIRED _ FIG.27B !! i HIGH SIDE \ ....., (2)REQUIRED - :;';w..,..,ti __ t�- i OF HANG F2 � .� ti,/ "-^ q \, , ;5 H a .: ::1 Dimensions • Weights HANGER APPLICATION HANGER&RESTRAINT Pipe Approx. APPLICATION Size �J►�g �_..FRG28 Size A B YY L. ,.-_.f. :,.I I 3/4 3 V32 2 31/2 .180 . _.____ -...7 1 35/6 23,s 3/ .210 l; - -1-1/4 35/8 2% 31/2 .225 1 1 1 1,. 31/2 ... 310 r J 1 /2 4 2,2 . F10.28 "t ; 1 2 41 211%1s 35/8 .340 ° FIG.28 FI0.2e j .`i L_— PG28 ... . . y 1-. Iv ) 12 OFFICE/MANUFACTURING FACILITY• 1:375 SAMPSON AVE.•CORONA,CA 92879•PH: 951.737.5599 a FAX: 951.737.0330 CUSTOMER SERVICE•800.786.5266 42 www.toico.com at,, FOR SMALL PIPE I � 1/ E VANE TYPE WATERFLOW ALARM SWITCH The Symbol of Protection WITH RETARD AND GLUE-IN UNION CUL, UL and CSFM Listed, CE Marked, NYMEA ACCEPTED Service Pressure: Up to 175 PSI(12,07 BAR) Minimum Flow Rate for Alarm: 8-10 GPM(30-38 LPM) Maximum Surge: 18 FPS (5,5 m/s) Enclosure: Die-cast,red powdcrcoat finish No. 11.13555: Cover held in place with tamper resistant screws No. 1113600- Tamper: Cover incorporates micro-switch. Mw•,: Cover Tamper: Activated by cover removal. Cover Tamper Switch Contacts: One set SPDT, Rated at 250VAC. Cover Tamper Switch Terminations: 8" 22AWG wire .�fj y.�js' 2 . leads. 3i'i 3 Contact Ratings: Two sets of SPDT(Form C) 15,0 Amps at. 125/250 VAC • < 2.0 Amps at 30 VDC pa , ' 2" Conduit Entrances: Two knockouts provided for 1/� conduit. Usage: Listed CPVC plastic piping systems manufactured by Central Sprinkler Corp., Grinnell Sprinkler Corp.,Spears Manufacturing Co,, and 1PEX (Scepter). Fits pipe sizes- 1", 1-1/4", 1-1/2" and 2" US Patent No. 6,471,255 Environmental Specifications: • Suitable for indoor or outdoor use with factory installed gasket Stock No. 1113555 and die-cast housing. 1113600 W/TSK • For NEMA 4/1P55 rated enclosure-use with appropriate conduit Service Use: fitting and/or plugs. Automatic Sprinkler NFPA-13 • Temperature range: 40' F to 120°F(4,5° C to 49°C) One or two family dwelling NFPA-13D Caution: This device is not intended for applications in explosive Residential occupancy up to four stories NFPA-I 3R environments. National Fire Alarm Code NFPA-72 �amaa Ya�nN:mxuurrmxero+». H The Model VSR-SFGisa vane type waterfiow switch for use on wet sprinkler operation of the VSR-SFG. See Fig. I.) Wait 2 to 4 hours to allow the systems using CPVC plastic fittings manufactured by Central Sprinkler glue to dry before attaching the VSR-SFG to the 1" male fitting. Select the Corp., Grinnell Sprinkler Corp., Spears Manufacturing Co., and IPEX proper paddle for the pipe size and type of TEE used. Sec Fig. 3 and Fig. 5 (Scepter) that use 1", 1-1/4", 1.-1/2" or 2" pipe sizes. It is equipped with a for instructions on how to change paddle. Verify that the o-ring is properly union to accommodate installation in confined spaces. positioned in its groove.Hand tighten the nut on the union after orienting the The unit contains two single pole double throw snap action switches and an device in the appropriate direction to detect waterflow as shown in Fig. 2. adjustable, instantly recycling pneumatic retard. The switches are actuated CAUTION: Do not over-tighten the union nut,hand tighten only! when a flow of 8-10 gallons per minute (30-38 liters per minute) or more The vane must not rub the inside of the TEE or bind in any way. The stem occurs downstream of the device.The flow condition must exist for a period should move freely when operated by hand. of time necessary to overcome the selected retard period. INSPECTION AND TESTING:Check the operation of the unit by opening LNSTALLATION: These devices may be mounted on horizontal or vertical the inspector's test valve at the end of the sprinkler line or the drain and test pipe. On horizontal pipe they should be installed on the top side of the pipe connection, ifan inspector's test valve is not provided. where they will be accessible.The units should not be installed within 6"(15 cm)of a valve,drain or fitting which changes the direction of the waterflow. If there are no provisions for testing the operation of the flow detection The unit has a 1" male fitting for gluing into a CPVC plastic TEE. device on the system, application of the VSR-SFG is not recommended or advisable. Loosen the union nut and separate the 1" male fitting from the VSR-SFG. Glue the 1" male fitting into the TEE following the TEE manufacturer's The frequency of the inspection and testing and its associated protective instructions for preparation and gluing of CPVC piping systems. (NOTE: monitoring system should be in accordance with the applicable NFPA The }" male fitting must bottom out on the stop of the TEE for proper Codes and Standards and/or authority having jurisdiction (manufacturer recommends quarterly or more frequently). Potter Electric Signal Company • 2081 Craig Road, St. Louis, MO, 631 46-4 16 1 • Phone: 800-325-3936/Canada 888-882-1833 • www.pottersignal.com PRINTED 1N USA MKT.0800009-REV P PAGE I OF 2 M FG.#5401062- 11/05 , szk,. FOR SMALL PIPE NTSR STU i L.: . -,.., . . _If k La ) poTTER fi VANE TYPE WATERFLOW ALARM SWITCH \v-'`s The Symbol of Protection WITH RETARD AND CLUE-IN UNION FIG. 1 FIG. 2 APPROX. RETARD SETTINGS (IN SEC.) Retard Adjustment: 0 A B C D E n' 0 10-25 20-40 35-55 50-70 60-90 M:NIM)M ctl.AzAN►cE To change time, turn knob (either direction) :N;:-EAE.L.A-r'":J OP I ',•'IJ 1 BOITOri OW for desired time delay. Use the minimum DC, NOT LEAVE COVER R F(NA:._ r;= EVI 7 i ON .-C;F OFF FOP EXTENDED �. amount of retard necessary to prevent falseOD E '' 3`�`' alarms. A "B" setting is usually adequate for - <'Z /-' this. Factory set at "I ". uft \ `c; `✓ � RETARD Cc_ .--Rn.. 314-' 11 '''' .. \Vil'IrY.71 ) ) ) - ...../•- ...1 I FIG. ADJU5 i iNC, •,.- '=„1. ``T � T .:: � �1�1 I-.I Ti..) �..�✓Ell•. isNo '----i.,5„...-.,. .',..iip,,'-(RED') N.O. Ii .. �n l y1 • Si DIRECTION OF ,t} 1; t \� 11..��.�, 1vaT£RFLOW �, '' ,r�: :.'-':°.,s-Lit:-.1'‘;12):°: O, � 1.� \ '�I.1TI';1�:: Ill:;): ;.� :.. �:�'• TI--AT o rJJG 15 `INI Q--RING GROOVE . ra DIRECTION 1 • C i EEF t:�F�E IIJ`� l;LLII I OFr.�,CEF'F LC�i",r • DWG, #1063-3 6e: /-- ,_-_' .c^_\\ -- • 'G. fl1,i(: ... Important t- '} 4 FDA?Tl-t ... .. r: �; \ s�.�-mac '?� '.N,. F .:kts/I. i :.; 7 paddles are furnished with each unit '�5, '' to accommodate the v� L ‘•,;':-7 = ``.... _� F.I`.T I�'.. r_�I. various S17,CS and RIJt. ,F THE `----•==...� �. �- .-- -�_ \ AU. SI 1.E / manufacturers of "PEES. The paddles have TEE MAY BE %, Glue the 1" male fitting into the TEE follow inv i 1 I /a", ; / - raised lettering that show the pipe size and l 1 1/2n of. -, .., l the TEE manufacturer's instructions for i �,, the TEE manufacturer they are to be used ;<_ and gluing of CPVC piping 1 ( ,-- with.The proper paddle must be used. The u DIRK-. 07 \, ;�, ,,,•''''' ..--- preparation �,,l,c; 1 cc, systems. Wait 2 to 4 hours to allot- the glue1 WATERFLOW , , „,..- 1 paddle must beproperly attached (see Figs = - '.}- to dry before attaching the VSR.-Sl�G to the l g 3) l _ I `' ,.. and the screw that holds the paddle must be „,, Shown with optional Cover 1" male fitting. securely tightened. Tamper Switch Kit. FIG. 4 TYPICAL ELECTRICAL CONNECTIONS NOTES: COVER TAMPER 2 SETS 4.)F NORMALLY OPEN CONTACTS 'A'ATL•RFI.OW7,C3Nr. 1:(:.1:FROM I. 'File model VSR-SFG has two SWITCH CLOSE v;.ALARM i iN LIRE PANIEI, FIEF PANE1 i iliiiiswitches,one can be used to operate a (SHOWN WITH ,,,,, t (U iga �al central station, proprietary or remote COVER IN PLACE) (� ' signaling unit, while the other is used IMI El —I 1— • • Cr," :., 1 N, , ,:,,,,1 .;. 1 ,t. to operate a local audible or visual © n F. In annunciator. • Tr1'N.C.ANDN.O.MARKINGS ON POSiTivrr: 2. For supervised circuits see "Switch TIIE SWITCi1ARE FORA`ALARM OR HOT AC , C N.O. N.C. co`;r)i-ItoN I3r:i.:. Terminal Connections drawing and (WJi1) (Ri-I)) tx1K) NF(IATIYF DC OR TIIF.CONTACTS ARE REVER WD NE(Jim:.AC caution note (.Fig. 6). np:.,,, ;i,a:,. WHEN THE.DEVICE 1S IN THE. :),:C:;01-2 NORM Al,CONDITION. I+`IG. 5 GRINNELL TEE FIG. 6 SWITCH TERMINAL CONNECTIONS TEE's manufactured prior TEE's manufactured CLAMPING PLATE TERMINAL to 5/99 after 5/99 _, 1 .......----i L_______ , ,,,, ‘,..4,..„.. .„-z 0 LI . Ll ...- `�{)'� MVO! `,7, NOTICE: awr, t 067._4 o`'' As of 5/99 Grinnell has changed the design of their TEE fittings. The new fittings CAUTION: will require the use of the standard paddle, while you will still be required to An uninsulated section of a single conductor should not be looped around the use the paddle marked Grinnell on all fittings manufactured prior (o this date. terminal and serve as two separate connections.The wire must be severed,thereby Failure to install the correct paddle could cause the device to malfunction or providing supervision of they connection in the event that the wire becomes operate improperly. dislodged from under the terminal. APPLICATION %%ARNING! Due to the possibility of unintended discharges caused by pressure surges, trapped air, or short retard times, waterflow switches that are monitoring wet pipe sprinkler systems should not be used as the sole initiating device to discharge AFFF, deluge, or chemical suppression systems. PRINTED IN USA MKT. 0800009 - REV P PAGE 2 OF 2 MFG. #5401062 - 11/05 . d� I ( t8 617'4\ SYSTEM SENSOR outdoor Selectable- Output ['Iort: s, Strobes, • .,4000 and horn strobes fog Wall Applications SpectrAlert Advance outdoor audible visible products SPECTR ...#• ^ are rich with features that cut installation times and r rt. S $`t am s ll s maximize profits. Features SpectiAlert Advance offers the broadest line of outdoor horns, •Weatherproof per NEMA 4X,IP56 strobes,and horn strobes in the industry.With white or red plastic housings,wall or ceiling mounting options,and plain or FIRE-printed • Listed to UL 1638(strobe) and UL 464(horn) devices,SpectrAlert Advance can meet virtually any application •Compatible with System Sensor synchronization protocol and requirement,including indoor,outdoor,wet,and dry applications in legacy SpectrAlert products temperatures from—40°F to 151°F. • Field-selectable candela settings: 15, 15/75,30,75,95, 110, 115, 135, 150, 177,and 185 Like the entire SpectrAlert Advance line,outdoor horns,strobes,and •Automatic selection of 12-or 24-volt operation at 15 and 15/75 horn strobes for wall applications include a variety of features that candela increase application flexibility and simplify installation.First,field- selectable settings,including candela,automatic selection of 12-or 24-volt operation,horn tones,and three volume options enable • Horn rated at 88+dBA at 16 volts installers to easily adapt devices to meet requirements. • Rated from —40°F to 151°F • Universal mounting plate with an onboard shorting spring that Next,SpectrAlert Advance devices use a universal mounting plate tests wiring continuity before devices are installed for both wall and ceiling applications.This mounting plate includes an onboard shorting spring that ensures wiring continuity before • Plug-in design with minimal intrusion into the back box devices are installed,so installers can verify proper wiring without •Tamper-resistant construction mounting the devices and exposing them to potential construction damage.Once the plates are mounted,all SpectrAlert Advance devices utilize a plug-in design w th a single captured screw to speed installation and virtually eliminate costly ground faults. Outdoor devices ship with weatherproof plastic back boxes(metal back boxes are available separately) that accommodate in-and- Agency Listings out wiring for daisy chaining devices. Plastic back boxes feature removable side flanges and improved resistance to saltwater SIGNALING 10\1 corrosion, Knock-outs located on the back eliminate the need to drill holes for screw-in mounting.Plastic and metal weatherproof back Lek ri---' boxes come with N-inch top and bottom conduit entries and N-inch U llSil� MEA ;'i;3'tl!f":':� nAc,xisErot:.fi LISTEQ>r, s :`itI" a APPROVED approved '1J)-1„53.E tetlwn:srta l>; knock-outs at the back.A screw-in NPT plug with an 0-ring gasket st e .•i,i: 3593{th:tdc:•,:ra:xia ntstc.bes: 3023'i12 9',-I 7135-1653.'89ih°ms.ci;irn,n: for a watertight seal is included with each back box. LOWN-IN INSULATION It Requires insulation be moved up above the sprinkler pipe to 0 0 0 0 allow heat from the conditioned O O 0 O O O space below to transfer into the O O O O O O O O O O • attic space and keep the pipe 0-0 0HO 0 OHO — _ _ �O�O�OO warm. 00000000 0000000 0000000 0000000• 0000000 000000 a :/// ,, .7,,,: /// T0 MPPPD SIRC TENTED OVER PIPING —TRAPPED AIR SPACE OR(STAPLEPLASTIC BAITS"TENT")INSULATION BAIT INSULATION TENTED OVER PIPING TENTING TENTING(Fig.1) Fz � bask � uRy � ,. e ,- yr a —„ iw� z F r�t TENTING A common method used for insulating sprinkler piping sections that are run within any unconditioned space, such as an attic or an exterior wall. It Requires insulation be moved up above the sprinkler pipe to allow heat from the conditioned space below to transfer into the attic space and keep the pipe warm. For it to be effective the insulation must be continuous over the pipe, with the assumption that any heat lost through the insulation will be replaced by the conditioned space. Even in moderate climates, the sprinkler system needs to be protected from freezing. This is done by keeping the sprinkler pipe inside the insulation envelope. Figure 1 shows tenting over residential sprinkler pipes to prevent blown insulation from getting between the pipe and building's warmth.