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Permit File BLD-2021-0917 4507 Queen Ann Way
City of Anacortes 904 6th Street P.O.Box 547 Anacortes, WA 98221-0547 (360) 293-1901 Invoice/Permit #: Applied date: Issue date: Expire date BLD-2021-0917 11 /05/2021 11 /24/2021 05/23/2023 Job Address: 4507 QUEEN ANN WAY Permit Type: Fire Sprinkler Permit ANACORTES WA 98221 Project: APN: P59240 Remarks: INSTALL NFPA 13D MULTI -PURPOSE FIRE SPRINKLER SYSTEM IN A NEW SFR, Owner: BARBARA J SICKLER Contractor: X-FIRE SECURITY Address: 4472 SCOTTS ALY Address: 1511 KENTUCKY ST MOUNT VERNON WA 98274 BELLINGHAM WA 98229-4718 Phone: (360) 899-9905 Phone: (360) 715-8088 License #: General Information: Fees: Building Valuation 12988 Building Permit Fee Plan Review Fee State Building Code Fee Comm Total Calculated: Deposits/Receipts: Total Due: 22325 145.11 25.00 393.36 0.00 393.36 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 within 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 zamin d this application and know the same to be true and correct. SIGNATURE OF OWNER OR AUTHORIZED AGENT ISSU I ✓ L G�Fri@ KR 1NCOMMUNITY, & ECONOMIC DEVELOPMENT DEPARTMENT ( FiRE SPRINKLER PERMIT APPLICATION NOV11,17 o , zoza Mailing Address: P.O. Box 547, Anacortes, WA 98221 tCPP h p Office Location: 904 6��r Street, Anacortes WA 98821 NAQQH 1E Phone: (360) 2934901 PLEASE REFER TO THE FIRE SPRINKLER PERMIT CHECKLIST FOR SUBMITTAL REQUIREMENTS ❑ MODIFY EXISTING SYSTEM( INSTALL NEW SYSTEM ❑ UNDERGROUND FIRE LINE PROJECT ADDRESS (Street, Suite #): PARCEL(S) #: 5� d O 1 y G0 t Cheer\ ��n Wm I I p fVkCoC Vol W N I t ni PROJECT VALUATION: , APPLICANT: Phon . Address (Street, City, State, Zip): �5i1 n��cGc S�c+'et�. �3�11►� \N OWN ` ` Email Addresso rp` .eel S . x �± �v v A . cu�� PROPERTY W S;c l �r Ph e: ya r 0,06 �- Address Street, City, State, Zip): �19L ? k 4 \\ c'\t v tro�n Li Email Address: co' , 'Ro\ I�,PU�n P °fin)-�15 03 0 Address (Street, City, State, Zi : \ 51, � t r� � G� M 1/I(� q b 9'( Email Address: \ %r A cl) W\rA . cc ry N \`CVt�coc�. CONTRACTOR:* w'i A one; 300) �`� .. obb 1 cu Address (Street, City, State, Zip): 1\ AY*VL <4 A24 �� lrvn \JV `l�'�� •) Email Address CKs • �C ,ro cvna, Co►' e\ yr *All Contractors & subcontractors must have a valid Ci o f State S ri er Certificate &License #: ��� Exp. Date: �3,3► `l Anacortes business licenseprior to doing work in the Cif Business License #: Ex Date:6ai�1 Contact the City's Finance Department at (360) 2994968. . Q j� 11 COMMERCIAL ❑ RESIDENTIAL X% OCCUPANCY CLASS: SPRINKLER STANDARD: k9j) HAZARD CLASS: Is this work, associated with another project? Yes ❑ No'A If yes, specify: PROPOSED WORK: N FAR \3� %�AutkAl rye r� "RYL QCjAk V S1,5 �4 rye) 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 City of Anacortes. Aplrl► Print Name: )%fflcr ��11 ` Owner ❑ Agent I (specify): CAL Signature:— Date: PLANNING, COMMUNITY, & ECONOMIC DEVELOPMENT DEPARTMENT FIRE SPRINKLER PERMIT CHECKLIST MailingAddress: P.O. Box 547, Anacortes, WA 98221 Office Location: 904 6rh Street, Anacortes WA 98821 Phone: (360) 2934901 Plans shall be of sufficient clarity to indicate the location, nature, and extent of the work proposed, and conforin to the provisions of the adopted International Codes and City Ordinances. PERMIT TYPE: SUBMITTAL REQUIREMENTS, The number indicates the number of �. n copies for submittal (if applicable). �' p � ►s Fire Sprinkler Permit Application 1 1 Floor Plan (scaled construction drawings showing): 3 3 o Location of sprinkler heads, piping size and layout o Interior, exterior and underground fire sprinkler components o Indicate wet pipe or dry pipe system o System calculations & manufacturer's information on system components o Water flow and control valves o Site Plan (showing FDC & PIV locations) Final inspection & approval from the Fire Marshal and Building Inspector ✓ ✓ is required once work is complete —Requested by the applicant Underground & above ground installation certificate (provided after ✓ ✓ installed) DETECTION &SUPPRESSION 1511 Kentucky Street Bellingham, WA 98229 360J15-8088 Fax 360-75M946 www.13dpex.com License: XFIRE**961 PN Description: NFPA 13D Multipurpose Fire Sprinkler System 1 Application: 1 Application Sickler Residence Fire Sprinkler Design: 3 Sets of Fire Sprinkler designs. Department of Jurisdiction Submitted to Date: Skagit County City of Anacortes 904 611 Street Building Department Anacortes, WA 98221 Job Name: Sickler Residence Job #: L-3860 Job Address: 4507 Queen Ann Way Anacortes WA 98221 System type: NFPA 13D Multipurpose Fire Sprinkler System Fire Sprinkler System Calculations 1511 Kentucky St, Bellingham, WA 98229 Job No: L-3860 Job Name: Sickler Residence Building Type: Single Family Residence Location: 4507 Queen Ann Way,Anacortes WA System Type: NFPA 13D 2019 ■ WASHINGTON STATE ■ � CERTIFICATE OF COMPETENCY � ■ FIRE PROTECTION SPRINKLER SYST71YIS ■ ■ ■ ■ Rodney L Durham ■ i 8511-0705-A Level ■ X-Fire / ■ XFIRE"9 4PN % a ■ G6 i Io Expires ■ ■ Signature t2l31/21 j Designed by - 1511 Kentucky St, Bellingham, WA 98229 - 360.715.8088 L-3860 Sickler Residence - Two Head Calculation - (H.24 H.252 Page 2 of 9 Final Calculations - Summary Tuesdav, November 2, 2021 Location 4507 Queen Ann Way,Anacortes WA Job No L-3860 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) Listed Pressure at Start Point (ps Maximum Listed Spacing (ft) Domestic Flow (gpm) Elevation at Highest Outlet (ft) Calculation Summary Flowing Sprinkler Heads Flow Required (gpm) Pressure Required (psi) At Reference Point Overhead C-Factor Used Underground C-Factor Used Water Supply Water Flow Test: Static Pressur 60.000 Residual Pres 52,500 Flow (gpm) 30,000 Elevation (ft) 97 Manifold &Water Flow Switch 13.000 System Type Wet 9.100 Sprinkler Make Reliable 16 Sprinkler Model RFC43 0.000 Sprinkler Size (in) 0,50 121 Sprinkler K-Factor 4.3 Temp. Rating (OF) 165 Coverage Area (ftz) 256 Listed Flow (gpm) 13,000 H.24 H.25 26.000 31.853 METER 150 150 Additional Pressure Loss (psi) 4.60 L-3860 Sickler Residence - Two Head Calculation - (H.24 H.251 Page 3 of 9 Final Calculations = Water Supply Curve Tuesday, November 2, 2021 00 �o �o o io �o to ;o �o to Z51 0 15 20 25 30 35 4 Flow (N 1.85) (gpm) *—� Demand Curve Required Pressure: 31.853 psi @ 26.000 gpm Required Flow: 26.000 gpm C�----© Supply Curve Static Pressure: 60.000 psi @ 0.000 gpm Residual Pressure: 52.500 psi @ 30.000 gpm Available Flow: 30.000 gpm � a � im as Pressure Cushion Available Pressure: 54.244 psi no 26.000 gpm Pressure Cushion: 22.391 psi ■ WASHINGTON STATE ■ � CERTIFICATE OF COMPETENCY � ■ FIRE PROTECTION SPRINKLER SYStIVAS ■ ■ Rodney L Durham ■ 8511-6705-A Level ■ X-Fire ■ XFIRE"061PN//� «i lam ■ Signature ■, L-3860 Sickler Residence -Two Head Calculation - (H.24 H.25) Page 4 of 9 Final Calculations - Nodes Tuesday, November 2, 2021 Actual Actual Elev, Press, Flow Node No. (ft) (psi) (gpm) Model-Coverage(DxW)-Temperature S.0 102.0 23.351 0.000 SOURCE H.1 111.0 19.176 0.000 RFC43-1616-165 D.T.1 111.0 19.245 0.000 Rehau PEX 1,00in Dom Tee T.1 111.0 19.276 0.000 CPVC 1.598x1.598x0.875in Tee L.1 111.0 19.369 0.000 CPVC 1.50in 90 Ell R.1.A 111.0 19.190 0.000 H.2 111.0 19.080 0.000 RFC43-1616-165 D.T.2 121.0 13.827 0.000 Rehau PEX 1.00in Dom Tee R.2.A 121.0 14.770 0.000 L.2 111.0 19.230 0.000 CPVC 1.50in 90 Ell T.2 111.0 19.277 0.000 Rehau PEX 0.8754.8754.875in Tee H.3 111.0 19.263 0.000 RFC43A212-165 D.T.3 121.0 14.454 0.000 Rehau PEX 1,00in Dom Tee L.3 121.0 14.763 0.000 CPVC 1.50in 90 Ell R.3.B 111.0 18.468 0.000 T.3 111.0 18.631 0.000 Rehau PEX 0.875x0.875x0.875in Tee HA 111.0 19.187 0.000 RFC43A212-165 R.43 121.0 13.734 0.000 TA 111.0 18.940 0.000 Rehau PEX 0.875x0.875x0.875in Tee H.5 111.0 19.116 0.000 RFC43-1616-165 T.5 121.0 14.690 0.000 Rehau PEX 0.875x0.875x1.598in Tee H.6 111.0 19.041 0.000 RFC43A212-165 T.6 121.0 13.582 0.000 Rehau PEX 0.875x0.875x0.875in Tee H.7 111.0 18.688 0.000 RFC43-1212-165 H.8 111.0 18.760 0.000 RFC43-1616-165 H.9 111.0 18.810 0.000 RFC43-1616A 65 H.10 111.0 18.988 0.000 RFC43A616-165 H.11 111.0 18.645 0.000 RFC43-1616-165 1-1.12 111.0 18.714 0.000 RFC43-1212-165 1-1.13 111.0 19.227 0.000 RFC43-1616-165 H.14 111.0 19.175 0.000 RFC43-1616-165 H.15 111.0 19.011 0.000 RFC43-1616-165 H.16 111.0 19.048 0.000 RFC43A616-165 H.17 111.0 18.892 0.000 RFC43-1 616-1 65 H.18 111.0 18.947 0.000 RFC43-1 616-1 65 H.19 121.0 14.336 0.000 RFC43-1818-165 H.20 121.0 14.650 0.000 RFC43-1 61&165 H.21 121.0 13.348 0.000 RFC43-1 616-1 65 H.22 121.0 11.740 0.000 RFC43A 616-165 H.23 121.0 12.312 0.000 RFC43A 616-165 H.24 121.0 9.120 13.000 RFC43-1616-165 H.25 121.0 9.100 13.000 RFC43-1616-165 H.26 121.0 13.636 0.000 RFC43-1616-165 H27 121.0 14.059 0.000 RFC43-1616-165 H.28 121.0 13.905 0.000 RFC43A616-165 H.29 121.0 13.770 0.000 RFC43A 616-165 H.30 121.0 11.221 0.000 RFC43-1616-165 L-3860 Sickler Residence -Two Head Calculation - (H.24 H.25) Page 5 of 9 Final Calculations- Nodes Tuesday, November 2, 2021 Actual Actual Elev, Press, Flow Node No. A (psi) (gpm) Mod ekCoverage(DxW)-Temperature H.31 121.0 14.183 0.000 RFC43-1212-165 H.32 121.0 14.524 0.000 RFC43-1616-165 H.33 111.0 19.125 0.000 F1 R44A6-1616-155 FT.24 121.0 10.153 0.000 Rehau PEX 1.00in Sprinkler Tee FT.25 121.0 10.133 0.000 Rehau PEX 1,00in Sprinkler Tee L-3860 Sickler Residence - Two Head Calculation - (H.24 HI Page 6 of 9 Final Calculations - Pipes Tuesday, November 2, 2021 Pipe# Hyd. Qa Dia. Fitting Pipe Pt Notes Ref. C-Factor Fittings Pe Point Qt Pf/UL +PrLoss. Total Pf p36 T.1-37.783 0.875 5.555 19.227 to 150 1 B1 H 8.000 0.000 Vel = 1.2 H.13 2.235 0.0036 0.00 13.555 0.049 sup0 METE 0.000 1.610 1004000 23.351 to 150 MNF 0.000 2.166 Vel = 4.1 S.0 26.000 0.0174 4.60 100.000 1.737 p9 H.13 0.000 0.875 13.504 19.175 to 150 2H 1.000 0.000 Vel = 1.2 H.14 2.235 0.0036 0.00 14.504 0.052 p44 H.14 0.000 0.875 12.649 19.125 to 150 2H 1.000 0.000 Vel = 1.2 H.33 2.235 0.0036 0.00 13.649 0.049 p46 H.33 0.000 0.875 20.341 19.048 to 150 2H 1.000 0.000 Vel = 1.2 H.16 2.235 0.0036 0.00 21.341 0.077 p7 H.16 0.000 0.875 9.431 19.011 to 150 2H 1.000 0.000 Vel = 1.2 H.15 2.235 0.0036 0.00 10.431 0.038 p8 H.15 0.000 0.875 16.493 18.947 to 150 2H 1.000 0.000 Vel = 1.2 H.18 2.235 0.0036 0.00 17.493 0.063 p6 H.18 0.000 0.875 14.372 18.892 to 150 2H 1.000 0.000 Vel = 1.2 H.17 2.235 0.0036 0.00 15.372 0.056 p10 H.17 0.000 0.875 21.569 18.810 to 150 2H 1.000 0.000 Vel = 1.2 H.9 2.235 0.0036 0.00 22.569 0.082 p2 H.9 0.000 0.875 12.964 18.760 to 150 2H 1.000 0.000 Vel = 1.2 H.8 2.235 0.0036 0.00 13.964 0.050 p4 H.8 0.000 0.875 11.797 18.714 to 150 2H 1.000 0.000 Vel = 1.2 H.12 2.235 0.0036 0.00 12.797 0.046 p3 H.12 0.000 0.875 6.128 18.688 to 150 2H 1.000 0.000 Vel = 1.2 H.7 2.235 0.0036 0.00 7.128 0.026 p5 H.7 0.000 0.875 10.802 18.645 to 150 2H 1.000 0.000 Vel = 1.2 HA 1 2.235 0.0036 0.00 11.802 0.043 p38 H.11 0.000 0.875 2.679 18.631 to 150 1 R1 H 1.200 0.000 Vel = 1.2 T.3 2.235 0.0036 0.00 3.879 0.014 p39 T.4 -8.841 0.875 5.860 18.988 to 150 1 R1 H 1.200 0.000 Vel = -1.7 H.10 -3.140 0.0068 0.00 7.060 0.048 p12 H.10 0.000 0.875 12.541 19.080 to 150 2H 1.000 0.000 Vel = -1.7 H.2 -3.140 0.0068 0.00 11541 0.092 L-3860 Sickler Residence - Two Head Calculation - (H.24 H.25) Page 7 of 9 Final Calculations - Pipes Tuesday, November 2, 2021 Pipe# Hyd. Qa Dia. Fitting Pipe Pt Notes Ref. C-Factor Fittings Pe Point Qt Pf/UL +PrLoss. Total Pf n11 H2 0.000 0.875 13.162 19.176 to 150 2H 1.000 0.000 Vel = -1.7 H.1 -3.140 0.0068 0.00 14.162 0.096 p14 H.1 0.000 0.875 9.096 19.245 to 150 1 R1 H 1.200 0.000 Vel = -1.7 D.T.1 -3.140 0.0068 0.00 10.296 0.070 p13 D.T.1 0.000 0.875 1.338 19.263 to 150 1 R1 H 1.200 0.000 Vel = .1.7 H.3 -3.140 0.0068 0.00 2.538 0.017 p47 H.3 0.000 0.875 0.974 19.277 to 150 1 H1 R 1200 0.000 Vel = -1.7 T.2 -3.140 0.0068 0.00 2.174 0.015 p41 T.6-19.869 0.875 5.652 13.636 to 150 1 R1 H 1.200 0.000 Vel = -1.8 H.26 -3.417 0.0079 0.00 6.852 0.054 p15 H26 0.000 0.875 15.812 13.770 to 150 2H 1.000 0.000 Vel = -1.8 H.29 -3.417 0.0079 0.00 16.812 0.133 p16 H.29 0.000 0.875 6.073 13.827 to 150 1 H1 R 1.200 0.000 Vel = -1.8 D.T.2 -3.417 0.0079 0.00 7.273 0.058 p17 D.T.2 0.000 0.875 8.633 13.905 to 150 1 R1 H 1.200 0.000 Vel = .1.8 H.28 -3.417 0.0079 0.00 9.833 0.078 p26 H.28 0.000 0.875 18.393 14.059 to 150 2H 1.000 0.000 Vel = -1.8 H.27 -3.417 0.0079 0.00 19.393 0.154 p27 H.27 0.000 0.875 14.666 14.183 to 150 2H 1.000 0.000 Vel = .1.8 H.31 -3.417 0.0079 0.00 15.666 0.124 p25 H.31 0.000 0.875 18.362 14.336 to 150 2H 1.000 0.000 Vel = -1.8 H.19 =3.417 0.0079 0.00 19.362 0.153 p24 H.19 0.000 0.875 13.648 14.454 to 150 1 R1 H 1.200 0.000 Vel = -1.8 D.T.3 -3.417 0.0079 0.00 14.848 0.118 p23 D.T.3 0.000 0.875 7.597 14.524 to 150 1 R1 H 1.200 0.000 Vel = -1.8 H.32 -3.417 0.0079 0.00 8.797 0.070 p19 H.32 0.000 0.875 14.926 14.650 to 150 2H 1.000 0.000 Vel = .1.8 H.20 -3.417 0.0079 0.00 15.926 0.126 p30 H.20 0.000 0.875 3.797 14.690 to 150 1 R1 H 1.200 0.000 Vel = -1.8 T.5 -3.417 0.0079 0.00 4.997 0.040 p21 FT.24 11.643 0.875 13.066 11.740 to 150 1 H1 R 1.000 0.000 Vel = -7.7 H.22-14.357 0.1128 0.00 14.066 1.587 L-3860 Sickler Residence -Two Head Calculation - (H.24 H.252 Page 8 of 9 Final Calculations - Pipes Tuesday, November 2, 2021 Pipe# Hyd. Qa Dia. Fitting Pipe Pt Notes Ref. C-Factor Fittings Pe Point Qt Pf/UL +PrLoss. Total Pf p18 H.22 0.000 0.875 13.254 13.348 to 150 2H 1.000 0.000 Vel = .7.7 H.21-14.357 0.1128 0.00 14.254 1.608 p31 H.21 0.000 0.875 10.690 14.690 to 150 1 H1 R 1.200 0.000 Vel = .7.7 T.5-14.357 0.1128 0.00 11.890 1.341 p33 T.1-22.245 1.598 0.987 19.230 to 150 1 R1 L 4.200 0.000 Vel = 2.8 L.2 17.774 0.0089 0.00 5.187 0.046 p32 L.2 0.000 1.598 0.945 19.190 to 150 1 L 3.500 0.000 Vel = 2.8 R.1.A 17.774 0.0089 0.00 4.445 0.040 i0 R.1.A 0.000 1.598 10.000 14.770 to 150 0.000 4.331 Vel = 2.8 R2.A 17.774 0.0089 0.00 10.000 0.089 p28 R.2.A 0.000 1.598 0.799 14.763 to 150 1 L 0.000 0.000 Vel = 2.8 L.3 17.774 0.0089 0.00 0.799 0.007 p29 L.3 0.000 1.598 0.756 14.690 to 150 1 B1 L 7.500 0.000 Vel = 2.8 T.5 17.774 0.0089 0.00 8.256 0.074 p35 S.0 -5.991 1.598 4.058 19.369 to 150 1 L 3.500 3.898 Vel = 3.2 L.1 20.009 0.0111 0.00 7.558 0.084 p34 L.1 0.000 1.598 4.140 19.276 to 150 1 L1 R 4.200 0.000 Vel = 3.2 Tel 20.009 0.0111 0.00 8.340 0.093 p42 T.6-15.060 0.875 3.075 13.734 to 150 1 R 0.700 0.000 Vel = 4.4 R.4.B -8.226 0.0403 0.00 3.775 0.152 it R.4.B 0.000 0.875 10.000 18.468 to 150 0.000 4.331 Vel = 4A R.3.B =8.226 0.0403 0.00 10.000 0.403 p40 R.3.B 0.000 0.875 3.356 18.631 to 150 1 R 0.700 0.000 Vel = -4.4 T.3 -8.226 0.0403 0.00 4.056 0.163 p49 T.2 -9.131 0.875 7.887 19.187 to 150 1 B1 H 8.000 0.000 Vel = 1.5 HA 2.851 0.0057 0.00 15.887 0.090 p50 HA 0.000 0.875 11.552 19.116 to 150 2H 1.000 0.000 Vel = 1.5 H.5 2.851 0.0057 0.00 12.552 0.071 p45 H.5 0.000 0.875 12.276 19.041 to 150 2H 1.000 0.000 Vel = 1.5 H.6 2.851 0.0057 0.00 13.276 0.075 p52 H.6 0.000 0.875 9.804 18.940 to 150 1 B1 H 8.000 0.000 Vel = 1.5 TA 2.851 0.0057 0.00 17.804 0.101 L-3860 Sickler Residence -Two Head Calculation - (H.24 H.252 Page 9 of 9 Final Calculations - Pipes Tuesday, November 2, 2021 Pipe# Hyd. Qa Dia. Fitting Pipe Of Notes Ref. C-Factor Fittings Pe Point Qt Pf/UL +PrLoss. Total Pf p51 T.3-10.461 0.875 5.596 18.940 to 150 1 B1 R 8.200 0.000 Vel = -3.2 T.4 -5.991 0.0224 0.00 13.796 0.309 p48 1.2 -5.991 0.875 7.124 23.351 to 150 1 R 0.700 3.898 Vel = .3.2 S.0 -5.991 0.0224 0.00 7.824 0.175 p20 FT.25 1.357 0.875 13.254 10.153 to 150 2R 1.000 0.000 Vel = -0.7 FT.24 -1.357 0.0014 0.00 14.254 0.020 p43 T.6-11.643 0.875 8.587 12.312 to 150 161 H 8.000 0.000 Vel = 6.2 H.23 11.643 0.0766 0.00 16.587 1.270 p22 H.23 0.000 0.875 13.254 11.221 to 150 2H 1.000 0.000 Vel = 6.2 1-1.30 11.643 0.0766 0.00 14.254 1.091 p37 H.30 0.000 0.875 13.214 10.133 to 150 1 H1 R 1.000 0.000 Vel = 6.2 FT.25 11.643 0.0766 0.00 14.214 1.088 hp24 H.24 0.000 0.875 0.000 10.153 to 150 1 H1 B 11.000 0.000 Vel = 6.9 FT.24 13.000 0.0939 0.00 11.000 0.000 hp25 1-1.25 0.000 0.875 0.000 10.133 to 150 1 H 1 B 11.000 0.000 Vel = 6.9 FT.25 13.000 0.0939 0.00 11.000 0.000 LE CO[ Bulletin 006 Rev. K February 2017 Reliable Model RFC Series Residential Sprinklers Flat Cover Plate, Concealed Pendent Sprinkler Product Features • cULus Listed as Residential Sprinklers • Push -On cover plate installation • Low water flow requirements Product Description Model RFC Series residential sprinklers are flat cover plate, concealed pendent sprinklers intended for installation in accordance with NFPA 13, NFPA 13R, or NFPA 13D. The sprinklers are cULus Listed as Residential Sprinklers in ac- cordance with UL 1626. Model RFC30, RFC43, and RFC49 sprinklers have a 165°F (74°C) temperature rated fusible -fink operating element. 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 be used with a 135°F (57°C) temperature rated cover plate. 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 aHow 3/4" (19 mm) of cover plate adjustment. Model RFC cover plates are available in a variety of finishes as listed in Table H. In addition, Model RFC cover plates may be ordered as either traditional solid cover plates or perforated cover plates. ModeIRFC30 Model RFC49 Model RFC Cover Plate cULus Listed Model RFC43 Model RFC58 Perforated Nominal K-Faetor12 Max. Coverage Area Sprinkler Sprinkler Model gpm/psi (Umin/bar } ft x ft (m x m) Identification 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 www. reliablesprinkler.com Technical Spec cations Style: Flat Concealed Pendent Threads: 1/2" NPT or ISO 7-1 RI/2 Nominal K-Factor: 4.3 (62 metric) Max. Working Pressure: 175 psi (12 bar) Min. Spacing: 8 ft. (2.4 m) Material Specifications Thermal Sensor: Nickel Alloy Solder Link Sprinkler Body: Brass Alloy Levers: Bronze Alloy Yoke: Brass Alloy Sealing Assembly: Nickel Alloy with PTFE Load Screw: Bronze Alloy Towers: Copper Alloy Pins: Stainless Steel Deflector: Bronze Alloy Cup: Steel Cover Plate Finishes (See Table H) Sensitivity Fast -response Temperature Rating 16YF (74°C) sprinkler 13YF (57°C) cover plate Cover Ptate Model RFC cover plate Sprinkler Wrench Model FC Listings and Approvals cULus Listed Model RFC43 Sprinkler Components and Dimensions Threads — Body Cup — Tower Fusible Link — Deflector (retracted) Pin (extended) Deflector (extended) - 114" (6 mm) Nominal face of fitting to ceiling Model RFC Cover Plate Model RFC43 Sprinkler Hydraulic Design Criteria r 2-5i16" (58 mm) 3-5/16" (84 mm) Dia. rrrrrrr �3/16"(SmmJ rrrrrrr rrrr rrr Ceiling Minimum Flow and Residual Pressure Max, Coverage Area Flow Pressure ft. x fL gpm psi (m x m) (1/min) (bar) -- - ----7.8 - 12 x 12 — 12 (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 9A (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 23A (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 fow required to achieve a minimum design density of 0.1 gpmisq 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 �i��'� Page 3 of e17 February 2017 wavw.reliablesprinkler.com n Bulletin 033 February 2019 Model F1 RES LL Residential Sprinklers Specifically Listed for use in Multipurpose Systems that serve both domestic water and fire protection. Types: 1. F1 Res 30 LL Pendent 2. F1 Res 30 LL Recessed Pendent/F2 3. F1 Res 30 LL Recessed Pendent/FP 4. F1 Res 49 LL Pendent 50 F1 Res 49 LL Recessed Pendent/F1 6. F1 Res 49 LL Recessed Pendent/FP 7. F1 Res 58 LL Pendent 8. F1 Res 58 LL Recessed Pendent/F1 9. F1 Res 58 LL Recessed Pendent/FP 10. F1 Res 30 LL CCP Pendent 11. F1 Res 49 LL CCP Pendent 12. F1 Res 58 LL CCP Pendent 13, F1 Res 44 LL HSW 14, F1 Res 44 LL Recessed HSW/F2 15, F1 Res 58 LL HSW 16. F1 Res 58 LL HSW Recessed HSVV/F2 17, F1 Res 44 LL SWC Nenaent/ f 1, t-1 Hes 3i) LL Recessed Pendent!F2 Listings &Approvals I- 1. Listed by Underwriters Laboratories Inc. and UL Certified for Canada (cULus) for Safety to ANSI/ UL1626. 2. Certified by Underwriters Laboratories, Inc. and Under- writers Laboratories of Canada for Health Effects to NSFI ANSI Standard 61 Annex G (Less than 0.25% Lead Con - ten 3. WaterMark certified. WaterMark Certificate Number 2.3347 t.) Additional Bulletins applicable to all F1 RES LL Sprinklers • Wall Wetting - Bulletin 007 • Design and Installation - Bulletin 140 ry UL Listing Catego Residential Automatic Sprinkler UL Guide Number VKKW Patents US Patent No. 6,516,893 applies to the Model F1 Res 49 LL & 58 LL Pendent Sprinklers Other patents pending. ISW LL Hecessea Nenaenurr Recessed HSW!F2 Pendent ccr Henaent YYi SV'JC Product Description Model F1 Res LL Pendent sprinklers (Rgs. 1, 2; 3, & 4) are fast response sprinklers combining excellent durability, high sensitivity glass -bulb and low profile decorative design. The F1 Res LL Horizontal Sidewall sprinklers (Figs. 5, & 6) are equ ally attractive when above ceiling piping cannot be used. The 3mm glass -bulb pendent sprinklers permit the efficient use of residential water supplies for sprinkler coverage in resi- dential fire protection design. The low flow F1 Res LL sprinklers are specially engineered for fast thermal response to meet the sensitive fire protection application needs of the latest residential market standards (UL 1626 Standard). Upon fire conditions, rising heat causes a sprinkler's heat -sensitive glass -bulb to shatter, releasing the waterway for water flow onto the deflector, evenly distributing the discharged water to control a fire. Technical Data: • Thermal Sensor: Nominal 3mm glass -bulb • Sprinkler Frame : Brass • Sprinklers' Pressure Rating : 175 psi Factory Hydrostatically Tested to 500 psi • Thread Size: 1/2" NPT (R1/2) • 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 58 LL Pendent & HSW Sprinkler 4A (Actual) - F1 Res 44 LL HSW Sprinkler Reliable Automatic Sprinkler Co., Inc., 103 Fairview Park Drive, Elmsford, New York 10523 SV'JC Product Description Model F1 Res LL Pendent sprinklers (Rgs. 1, 2; 3, & 4) are fast response sprinklers combining excellent durability, high sensitivity glass -bulb and low profile decorative design. The F1 Res LL Horizontal Sidewall sprinklers (Figs. 5, & 6) are equ ally attractive when above ceiling piping cannot be used. The 3mm glass -bulb pendent sprinklers permit the efficient use of residential water supplies for sprinkler coverage in resi- dential fire protection design. The low flow F1 Res LL sprinklers are specially engineered for fast thermal response to meet the sensitive fire protection application needs of the latest residential market standards (UL 1626 Standard). Upon fire conditions, rising heat causes a sprinkler's heat -sensitive glass -bulb to shatter, releasing the waterway for water flow onto the deflector, evenly distributing the discharged water to control a fire. Technical Data: • Thermal Sensor: Nominal 3mm glass -bulb • Sprinkler Frame : Brass • Sprinklers' Pressure Rating : 175 psi Factory Hydrostatically Tested to 500 psi • Thread Size: 1/2" NPT (R1/2) • 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 58 LL Pendent & HSW Sprinkler 4A (Actual) - F1 Res 44 LL HSW Sprinkler Reliable Automatic Sprinkler Co., Inc., 103 Fairview Park Drive, Elmsford, New York 10523 a 6Node1 F1 Res 44 SWC 1 f/a' (31.75mmJ � xmom Fxe DI FYfing T Wa71 Dim4nsTan i" X 7/2" Neducer WoH Hele 2 5/f6^ (SS.SEmmJ Dig. Die. � , TU.4N C(HLAR UNTIL TIGHT AfiAiNST SPRlNKLfR WRENCH 8O5S. I zslco7 Technical Data: F1 Res 44 SWC —� 4" to fT` (fO t,SOmm To' 3O4.EOmm] PUSH ok "OVER, THEN URN TO ALLUST uNDL r a TIGHT AG41NST WAt 1.. 3 5/16" jNa. fammJ Dio, r 2f/32' (42.D'Jnvrj — r/z^ (fa7ommJ Adjustment F1 RES 44 SWC Fick. 5 Nominal C�.T �. � Spri�lder � �� � ArnbentTemp4 Sine ch Ratt7 psi Favor t`�t °C � °C `� `� {mm} -- 11f„ N?T —.{mm).._T_......_...._`_F �;/" (10) 155 68 135 5? __{har}.........._ 175 (1?_) _ 100 38 4.4 ...... 2.45 (62) _._�Rlz) _...------- _ - _....._. �..._........ - _ _ � A ` ------------ i ----------- Max.Sprinkler �t3eflecg ' Fiow � Pressure Sprinkler Spacing too- rpm ' �� {fir} identification ft {m} Inch �mm� {Lpm} Number {SIN) 12 x 12 3.6x3,6 _-r- 4 - 6 ,101-fi,�2) 13'49.2 14 17 `- �19 � 8.7 0.60 53.0 10,2 0.71)_ �...— - )- --i --- fi4-3) 15.0 t 1.1 - 71.8) 18.7 (1,13) - 14 x 14 4.3x4,3 --- -� ---- �_ 16 x 16. 4 9x4.9 _ t6 x 1$ 4.9x5 �} 23 (37.1) ' 27.4 (1.89 (�3531 16 x 20 4,9x6.1) 12 x_1?_ 3_6x3.t� _ 1�_{52.9) �_10_2 0.71 15 (56. r' 11 7 n 81 6 � 12 --- �....._�.................._%.�— (i52-305) 18 (68,11 ' 1 b.8 !1.16 14 x 14 4.3x4.3 _._.....-- 16 x 16 4.9x4.9 16 x 18 (4 ax5.5) s___20 (75.6)_ _._ 20.7 {1.43) _--- _ __ lee REHRU N%n, n%, r Nell, NI IN kN Unlimited Polymer Solutions lee NN EIREPEV REST Design aIt�tion Gig 2. DESIGN & APPLICATIONS 2.1 Applications The FlRCP' X residential fire sprinkler system serves the requirements for fire sprinkler systr;ms as defined by National Fire Protection Wociation (NFPA) Statidujaf 13D Instar'atiotl of SRrir icier Srsterns in One- and Two-f`a!ti,'!y DieAxI=iiings ago -of Mantitaci? t-ed Horses acid the tnteiratic tr i RssOeP&W Code Section 1R1 j P2 ; 04) i h: purpose of I.FPA t3D and IIiG F'2'i;C?� is tc provide a 5pr€�kler systerl that aids in the detection and control of residential fires, thus offering improved protection against injury and loss of life: A spri€ ikler s°✓stern that is desioned and installed in accordance vvith this standard is expected to prevent flashover (total invoivernent of the fire; in the roam of fire origin, There sprinklered, and to improve the chance for occupants to escape or be evacuated, RAtJF';=.K 4�.hite Uti shield pipe ar�d F u FI�I..O = fittir;gs are at;r�rc,red for use in residential fire sprinkler systems as defined by NI FA 3IJ and IRIC P21904 for a variety of resic idal applications including single- crr two-family homes, town homes, modular homes and manufa ct.urr d housing. 2.2 Types of Fire Sprinkler Systems The NFPA 13D standar;i categorizes all fire sprinkler systems within into general ty es; wet. pipe systerns and dry pipe systemsm trJet pipe systerns are filler; with water and installed in areas r€ot subject to fre::zing. -Dry pipe systems are not filled with touter, and can be located in unheated areas sub ect to freezing, The F(REPEX system is for wet pipe systems only. �RYIt in the vuret pipe systems, NFPA 13D defines the layout of systems urxer the foilr;;n:ing typr.s, for yvhich tht, FIREPEX, s;+st: rr :non be installel: - ?v1ultipurpose Sprinkler System Passive Purge Sprinkler bystem Stand-alone Sprinkler System 2.2.1 Multipurpose Sprinkler Systems hY9ultiput pose systems are defined in hJFPA 1 a and IR i P2` U, as a ng system intended to serve both tine sprinklers and domestic plu€nbing needs. A multipurpose syste€n integrates the piping connected to a :eater supply with sprinklers that automatically discharge water over a fire area. All piping in a multipurpose system supplying sprig€klers must be listed or conform to the piling s iecifica- Lions In `JFPA 131) ti€" IfiC ='2�ti4. � fire Syrir,Rler 1 r o:uasl:c Umneetio i Flre SplinNer, Cu Femur on Ga.•n_:.c :oN.later T!P Ref f Valve Ydater Mx!er Gds Water Mnin Water Heater 3. SYSTEM uvth ltvv 3.1 Application TI1e FIREPEX residential fire sprinkler system includes RAUPEX twhite lJV shield tPF.Xaj pipe, EVERLOC+ Polymer and lead: fr;e brass fithrins, PEXa cornpressior sleeves and EVERLOC r" compression- 1 va tools, The E`J".Ftl..Qi,+ carrrPrr,usiarr.�Ilru„ rating ;ysti;m ;s a ccld- expansion PEXa fitting systern available in polyrner and lead-free {LF) brass, assembled with a specially designed PEXa compressit.;;1 sleep+e. The fittings are designed specifically for use with RnUPEX pipe and must only be assembled with EVERLOC+ compression -sleeve tools. rig. �,. %. rvrt; H^iYe U .,r et , c,'✓ss e � ary '.:MeAr� P'A : ?'lt� �.!'.: t�r�t:rt'f t.):if. Ct)n';:, ..,Sfnrt_�.ui;V� Ti1i17(jg?,P,d pG�s2 �fi)rtBSStf}fi SIBc VcS 3.2 Standards and Certifications Rr^ 1PF..X v�rhite t.JV Mieii pipes are certified for use in res dential lire sprinkler systems as defined by NFPA 13D or IRC P?.9041 Ri~�t!rEX red and blue t1V shield are; not certified far faro sprinkler systems. The FIREPEX system is third -Party certified by N5F International {;RVJt^�.11"f.orgi to the fia[lev^ring stand rtis: l.A..1821 Standard for Thermoplastic Sprinkler Pipe and Fittings for Fite Protection Servir e �1STM l=£377 Standard Specification for Crosslinked Polyethylene :PEX) Iiot- and Card Water Distribution Systems CSA B137.5 Crosslinked P oly;`thylene ;PEX) Tubing Systems for Pressure Ap€ilicatior;s NSFAANSI `4 `Plastic Piping Systeei Components and Related tvlaterials NSF/ANSI 61 drinking Water System Components acid Related frlat `dals IJSF/r1NSI 372 Drinking kNater System Components —Lead Content {complies with the lead-free requ!remen, of the U.S. Safe Drinking .riater A 3.3 Warranty Rr1UPEX UV shield Pipe and Ey%ERLuC+ compression-sleva fittr�iis aYid sleeves are backed by a 2:i-year limited warranty. LVLJILOt,+ oonpression-sleeve tools are hacked by a 2-year Hmited warranty, IiERAU offers this warranty when the installation is carried out in accorda tce with the requirements outlined in the REHAU PEXa t�=?r [nty855,0 18, which is available as a separate document at r�;ra.Fa.na.relia!r. earn/.roarranties, 4.1 Pipe Properties Cn sslinked polyethylene is polyethylene (PE) which 1as undergone a change in molecular structure; whereby the tlolymcr ; rwailis are chin it;ally linked, crosslinketl 'X), with each other tr.; fornl a three- ttirrensionai network. The result is a flexible thermoset polymer with i nl)r;,v ;r r-it chanical, thermal and chemical properties. i here are three rr)etllods o marluf;lGturing FEX: The peroxide method (PEX..), AS I tv1 requires a minim m of 70% .rosslinking The silane method (PEXR ASTNr requires a minimum of 65% :;rrsslirrkir)g -The radiation method (PEXcj, ASTM requires a minimum of 05% crosslinking RAUPEX pipe is nlanufa:;tured using the peroxide method (PEXa), which ylelds the highest, most consistent level of crosslirlking. PEXa technology enhances flexibility and thermal memory, providing ease of handling and kink repair compared to PEXb any: PEXc. FEXa has distinct afirantages over other p;;lyrner and n)etal pipes: -Resists pitting and stress cerrasicn Resists scatiEg and deposit build-up when used with both hard and softt:r)ttl i'�tatt;r - hrAinirnizes noise that. is transmitted through pipes Resists notching and abrasion damage R�itJPEX is mantrfactured by REIt/'�U fir) a fat;ility �rrhose gt:ality management system is ISM 9001 r;ertitiert, In a(Jditiorr, RAUPEX production is independently monitored annually by NSF International, CSA Group and Undernriters Laboratories Inc. (UL). Table 4.1: RAUPEX Properties rti4inimrnn 581bft° 926 kgln�� ASTA` F87r Density Minimum 70% 10`;�� ASTMF87a Degree of Crosslinking Max'rhorm:r 2.84 Btu in;O "F.hr) 0.41 Wi mIQ DIN 16892 Conductivity CoeFicient or 9.33 x 10-4 inift IF 0.14 mmr(IX) Mnar! 4� Linear @68"F @20' ; 20-7( C per Dlkl 'xparsion 1.33 x 1C-3 in'ftOF 0.2 mn'(n'G) 16892 'P212�F ri• -t 0WC Modulus of 87,000-130,50G psi 600-900 Nlmni N inirnunr I Fla ticitt @ 68 F r 20`C 20"t; per DIN UI500- 8,OOG psi 300 4oO Nlm7)' 16892 Ei}17F)'r 08000 Tensile 41a,t-4355 psi 26-30 N.'mm Sfiength68'F.2GC 2610-2900 psi 18-20 N;inm' 176'F @8G'C nr t A.STIVi D638 per ASTM 06300 1Z0D Impact No Beak No Break Resistance RnughnrIss e,_.0.00028 in. e = !.O(7 ninl Temperature 1r0 to 200-F -40 to 93`C iVo[king Range Maximr!0 150rsig @ 210'F 103`F kPa Ua 99'c ASTIti1 F876 "abort=rena? +48 h6 (48 h ) rV Resistance See TB218 AST".126a1 4.2 Pipe Dimensions and Weights RAUFEX wl-�ite ! rV shield pipe for residential fare sprinkler systems IS available in nominal sizes ranging from 3r''!# to 2 in., and is in accor- dance to the cir nsional Standards defined in ASTM F876 and (SA t3131.5, RAUPEX is copper fuba size (CTS) outside diameter to[)), which means that tt)e actual 1) of the pipe is 1r8 in (3:18 Grin) larger than the nominal size. `hall ttrickriess is defire(.1 ty tl1e starldariJ dimensional ratio SDrti. IiAUPEX U`J shield pipe is S[)13(), i�.hit;h equates t(:r the at.ltside diameter being approximately rill le times the wall thickness. Since PEX pipe has a the ken wall than coppef tube, the inside diameter (ID) is sliol fitly smaller. How ver, since PEX tripe is not susceptiHe to the erosion and .0, tosi()r) issues of copper tube, systems can he designed at higher velocities which allow for comparable sizing of a system. Tattle 4.2: RAUPEX White UV Shield Pipe Dimensions and Weights 3!4 in 0.875 (22.22) 0.097 '2.47 - G.10 (0.15) -- 1 in 7.12.5 (28,58) 0.12',3.18) 0,17 r0.26) 1 1A in 1,175 (34,92) i�.15s (3.88) 0.25 (0.37) 1 tl2 in 1.625 (41.28) 0.181 (4.59j 0.3510.52) 2 in _'.1�5 53 �381 0.236 (6.Ot)1 G.�O i!J.90) 4.3 Pipe Markings rs,llFEX pipe markings are repeated every 3 ft {0.t) mi, list all c irfifications and approvals, and include an incremental footage Gnarl<.ing to assist with installation. 5. EVERLOC+ COMPRESSION -SLEEVE FITTINGS 5.1 Fitting Scope The F` ;.RL0C� romoression-sleeve system is a cold -expansion PEXa fitting syseent that is available in polynier and lead -,free (I..F) bras%% and is assembler with a specially designed PFXa cornpressior sleeve. Tlae fitting is designed specifically for use with RAUPEX pipe and must only be assembled with the EVERLuCcompression ,sleeve tools. EVERt_CC r fif.tings f;;r residential fire sprinkler applications are available in 3/4 to 2 rr. sizes an;i are listed for use with RAUPEX white li v' shield pipe (3,1111 to > in.i manr tactured in accordance with AST1A F86. For a retailed rescription of the RLHkU system components, refer to the EHAU Builffiq Solutions Product Catalog (855.342). 5.1.1 Fitting Features EVERLUC+ polymerand lead -flee ;LF brass fittings have the tollo4:ving featurt•:s. Four sealing edges 2 Pipe stop 3. Fitting collar . Tool jaw body 5.1.2 Fitting and Sleeve Markings kll polymer fittings include the following marks for identification AMN EINU OR f.4w t'�li LF grass fittings are r�t<irlted "REhi�atP' %ail sleeves rrt,lude-the-tollo�:�irtg. narks for identification -Sleeve size (e.g., 3r�"} - E3atch code for prcdu�ton sate t` 5.1.3 Polymer Fittings EVERLOC+poly+7ier fiffings are available in ccrp(ngs, tees, elkc?4vs: multi -pert tees and plugs. All polymer fittings are produced from a po yphenylsulfcne (PPS€.i) material. See also REHAU Tecttriical B"uIletin i:P3265 ? VDRLOC r Po/Yrjie?, Fi? frog Mateliar - L'FSU, 5.1.4 Lead Free (LF) Brass Fittings EVERLOC+ LF grass fittings are available as couplings, tees, elbows, plugs and transition fittings to NPT thread and copper solder connections. All metal fittings are produced from ECO EAR! SS' t;NS G93100 or CW 72411. See also REHAU Tecttr?ieaiTiutletin. IB264 E1,T>;LOC-f. Lea&ft ee Btass f itm%G mater?ai. rig. 6.5: �JrRiL%Gc tzDts'mG"lr'ind=i-h:i?SS;7tnP,C7g 5.1.5 PEXa Compression Sleeves E`•� ERLOC-r cornpressicrt sleeves are produced using a specially formulated PEXa material and are desicned specifically for use with EVERLOC+ fittings aril RAUPEX plt;e. EVERLOC+ compression sleeves have the f,llr ;ping fezrtares: - vo-extruded platinurn-colored PE coeating - Squarely cut ends that can be slid over the pipe in either direction Grooved and roughened inside surface for locking the sleeve into plaoe once slid over the pipe anri fitting 5.1.6 Certifications Tht, i'JERt.00+ r,ornirr�asinn-slr,evt; fatting slsteni is certified to ttr f:�llc vinrg standards: UL 1821 Standard for Thermoplastic Sprinkler Pipe angel Fittings for Fire Protection Service ASTM F877, Standard Specification for Crosslink d Polyethylene tPEX) Hot- and Cold -Water Distribution Systems - hS'Y/ANS3 14, Plastic Piping System Components and Related R atenals t SF/APJSI Cif ,Drinking Water System Components — health Effects - =it:PJSI 31&21 Drinking Water System Components --]_earl Content I:s137,;, Crosslinked polyethylene (PE XI l ut�ing Systems for PrA&He Applications t� "the fan:,+ring se�uence is recammer�ded to instal! the FIttEPEX five sprinkler system: Deter -nine fire sprinkler location Install sprinkler fitting, Route and connect pipe Install pkinnbing fittings Install piurnbing pipe Install fire sprinklers Perform pressure test Perform flow test 7.1. Ensuring Design Meets Installation Guidelines RAUPEX t°dhite UV shield pipe in 3t4 to 2 in. si :.s is listed to supply the FIREPEX syst.i rr. RAUPEX .pipe in all sizes is listew for plumbing applications and can be connected to the sprinkler system as allowed lay the fecal code, The f;,lla4ving are guic`elines for using Rt',UF'EX ,^rhite U`J shield iipe an EVERLCu T. carnpression-sleeve fittings in fire sprinkler systems: Pratectien must be provided for RAUPEX pipe and EUERLOC+ fittings. The minimum protection imst consist of either: - One layer of 318 in. (9,5 r rn) gypsum wallboard, - A suspended merribrarne ceiling with lay -in panels or tiles having a weight of not less than 0.35- ibs per sq ft { ,; kq per sq mj when installed faith metallic support grids, 1i2 in. (13 nim) Plywood soffits, i?rre layer of 112 in. 03 rim, plywood, or - t Cher material having a i3 minute fire rating, - During remodeling or ceiling repair, use appropriate precautions to properly protect the pipe. De not use RAi JPEX pipe or EVEI ;I..DC+ fittings for sprinkler systems in combustible concealed spaces where sprinklersarerequired, - RF,UPEX pipe and _VERLDC I. fittings are intended for use on areas where the maximum ambient temperature does not exceed ' 2t)`F (,49°Cle It the ambient ternperature, is expected to exceed this limitation, the system mast he properly protected. Piping must be installed at least 24 in. (61 cm) from air return grilles or other openings in the ceiling. 7.2 Mounting FIREPEX Sprinkler Fittings Detemnin e location of sprinklers haled on design. Be sure to verify that Uni;re are no ohstructior s or deviations from design. If nio ifica.. tiaras are necessary, consult with the designer to ensure >,roper coverage of sprinklered area. The FIREPEX sprinkler fittings are available in 3'4 arrd 1 in, si%c;s. Eactr fitting has a 112 iri, NP I `c.Ynale, adapter for mounting of the fir sprinkler with integrated maunting moles for both horizontal and var icai installation. Fittings should be mounted using ##10 x 1 112 in, tr�ood screws. I=IRI�PEX sprinkler Fittings are specially designed to afifix the fire sprinkler in place sa that during act nation, the reaction forces caused by the flow of water through the sprinkler will not displaoe the sprinkler. FIREPEX sprinkler fittings may be mounted to a wood: hiccking structure. 7.2.1 Determining Mounting Height Tine fclio.�iing gridellneS mar be used to COrreCtly peSITIOn t'ne FIREPEX sprinkler fittings. These; guidelines apply to both the FIREPEX tee and elbmu fit:tingst WI.tin installing, blocking imay be necessary in order to position the fitting and sprinkler correctly. rJfounting heighi of sprinkl;r must be .''<�itl�in sprinkler mamufactr,rrc;r guidelines. Failure to prop rly l.�r;sitian the sprinkler can caul:; disruption in discF arge or clela; in sprinkler activation: resultng in property dannage and 1 ess0 loss of life, 7.2.1.1 Flat Plate Pendent Concealed Sprinkler Mounting For aflat-plate pendi,rrt con, ;aleii sprinkl�;r, tfri; bottom of the FIREFEX sprinkler fitting bracket r;an be locat�.;d using: �- S—i:?th�- (1,35 �inehest (1j - i is the distance bebween the bottom, of the jiAst and the hottorn of the FIREF'=X sprinkler fitting bracket is the distance from the top of the threads of the fire sprinkler to the face of the drtyvvall (provided by the sprinkler manufacturer) DW is the thickness of the r ,+gall, !�. I, l: ���.f;7kl!w' J78!ii18!i1 � �;il;euiiit; :=t'7i1t71SN;; !7'rJU;R@j0 diuj:"ii77 Product Submittal Product: RAUPEX Non -Barrier Pipe Category: RAUPEX Pipes Date: 19-August-05 Submittal #: 100RAUPEXNB Page: 1 of: 1 C REHAU RAUPEX Mon -Barrier Pipe t Article No. Nominal Diameter A ODf in. (mm} BID' in. (mm) C Wall t2 %mm) in. Weight Ib/ ft (kgim) Capacity Gal*/foot (Ifm} 261683 318" 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 0,681 17.3) 0.097 2.5 0.10 0.16 0,0189 (0,2356 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 1 from ASTM F 876 3- ID is calculated based on OD (i) and Wall 2 (2) TECHNICAL DESCRIPTION Specification English SI Standard Minimum 58 Vita 926 kg/ma ASTM F 876 Density DIN 53479 Degree of 70 - 89% 70 - 89 % ASTM F 876 Cross -Linking DIN 16892 Thermal 0.24 0,41 DIN 52612 Conductivity BTU/(hrft°F) wi(m'K) Linear Exp. 9.33 x 10-4 inlft°F @ 68°F 0.14 mm/(m°C) @ 20°C DIN 42328 1.33 x 10-3 in/ft°F @ 212°F 0.2 mm/(m°C) @ 100°C 87,000-130,500 psi 600 - 900 N!mm2 Modulus of @ 68°F @ 20°C Elasticity DIN 53457 43,500 - 58,000 psi 300 - 400 Nlmm2 @176°F @ 80°C 'US Gallon Specification English SI Standard 4194-4355 psi 26-30 N/mm2 Tensile @ 68"F @ 20°C DIN 53455 Strength 2610"2900 psi 18-20 N/mm2 @ 17WF @ 80°C IZOD Impact No Break No Break DIN 53453 Res. Temperature -40°F to 200'F -40"C to 93°C N/A Working Range Roughness e=0.00028 in a=0.007 mm NIA Max. Short- 150 psig @ 1111 kPa @ ASTM F 876 term Exposure 210°F (48 hr) 99'C (48 hr) UV Resistance 15 days 15 days PP1 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 14l61. 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 We @ 93.30G). 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 LIIdITED TO ANY IMPLIED WARRANTIES OF MERCHANTABILITY OR OF FITNESS FOR A PARTICULAR PURPOSE. 'US Gallon Specification English SI Standard 4194-4355 psi 26-30 N/mm2 Tensile @ 68"F @ 20°C DIN 53455 Strength 2610"2900 psi 18-20 N/mm2 @ 17WF @ 80°C IZOD Impact No Break No Break DIN 53453 Res. Temperature -40°F to 200'F -40"C to 93°C N/A Working Range Roughness e=0.00028 in a=0.007 mm NIA Max. Short- 150 psig @ 1111 kPa @ ASTM F 876 term Exposure 210°F (48 hr) 99'C (48 hr) UV Resistance 15 days 15 days PP1 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 14l61. 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 We @ 93.30G). 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 LIIdITED TO ANY IMPLIED WARRANTIES OF MERCHANTABILITY OR OF FITNESS FOR A PARTICULAR PURPOSE. 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 14l61. 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 We @ 93.30G). 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 LIIdITED TO ANY IMPLIED WARRANTIES OF MERCHANTABILITY OR OF FITNESS FOR A PARTICULAR PURPOSE. POLYLI MTLLNL CTS PIPE FASTENER 555 series Tube Talorf SPECIFICATION Sioux Chief 555 Series Tube Talon" CTS pipe fasteners shall be used where necessary to secure CTS tube in piping systems. Fastener shall be 100% corrosion proof and UN. resistant. Fastener shall be impact resistant to 00F, and be able to withstand continuous temperatures up to 1600 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 5551: 3 lbs. 555-2: 5 lbs. 555-3: 8 lbs. 555-4: 12 lbs. APPROVED USES Manufacturer has approved tl1e Tube Talon for use with: copper tube, GPVC 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 described in local plumbing code for the type of pipe or tube being fastened. To install IPS tube, use the next larger size fastener, e.g. if you are fastening 1/z IPS tube, use a 3/4" fastener. DIMENSIONS: A: width B: height C: depth D: nail length E: hook height F: width to center of tube Greate Item Number 555-1 555-2 555-3 555-4 0.848" 1.125" 1.375" 1.6875" 0.735" 0.875" 1.1875" 1.4375" 0.375" 0.375" 0.4375" 0.5" 1.625" 1.625" 2.125" 2.375" 0.468" 0.5625" 0.75" 0.9063" 0.5" 0.6563" 0.75" 0.9375" 555-A e.g. 555-3 =Tube Talon for %a" CTS piping A TUBE SIZE ❑ 1 3/s' CTS ❑ 2 1/2' GTS ❑ 3 3/a' CTS Item #Submitted Contractor TAG 555-2 01 1 ❑ 4 1" CTS SI0l1XCilil� Sioux Chief Manufacturing Company • tel: 1-80U-821-3944 • www.siouxchief.com •fax: 1-800-758-5950 11-08 APPROVED USES Manufacturer has approved tl1e Tube Talon for use with: copper tube, GPVC 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 described in local plumbing code for the type of pipe or tube being fastened. To install IPS tube, use the next larger size fastener, e.g. if you are fastening 1/z IPS tube, use a 3/4" fastener. DIMENSIONS: A: width B: height C: depth D: nail length E: hook height F: width to center of tube Greate Item Number 555-1 555-2 555-3 555-4 0.848" 1.125" 1.375" 1.6875" 0.735" 0.875" 1.1875" 1.4375" 0.375" 0.375" 0.4375" 0.5" 1.625" 1.625" 2.125" 2.375" 0.468" 0.5625" 0.75" 0.9063" 0.5" 0.6563" 0.75" 0.9375" 555-A e.g. 555-3 =Tube Talon for %a" CTS piping A TUBE SIZE ❑ 1 3/s' CTS ❑ 2 1/2' GTS ❑ 3 3/a' CTS Item #Submitted Contractor TAG 555-2 01 1 ❑ 4 1" CTS SI0l1XCilil� Sioux Chief Manufacturing Company • tel: 1-80U-821-3944 • www.siouxchief.com •fax: 1-800-758-5950 11-08 555-A e.g. 555-3 =Tube Talon for %a" CTS piping A TUBE SIZE ❑ 1 3/s' CTS ❑ 2 1/2' GTS ❑ 3 3/a' CTS Item #Submitted Contractor TAG 555-2 01 1 ❑ 4 1" CTS SI0l1XCilil� Sioux Chief Manufacturing Company • tel: 1-80U-821-3944 • www.siouxchief.com •fax: 1-800-758-5950 11-08 TU2000-2-0408 Qne of the Most Versatile, Compact Valve Designs Available Spears' True Union 2d00 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-Iine 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 Vito n ' O-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 2UUU Industrial 3-Way Valve • Industrial Grade, Multiport, Diverter, 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 • ISO Pattern Actuation Mounting Option • Spearsl Dual O-ring Safe 'I=Shear" Stem • Self Adjusting PTFE Floating Seat Design • Sizes 1/2" - 2" pressure rated to 235 psi @ 73°F, sizes 2-1/2" - 4" and all flanged to 150 psi Ca), 73'F • NSF Certified for Potable Water Use • Produced in IPS sizes 1/2" - 4" with Socket, Flanged, Spigot or SR Threaded End Connectors True Union 200U Industrial Ball Valve • Multi -featured Industrial Grade • Built-in Handle Lockout • Fully Serviceable, Replaceable Components • Safe-T-Blockedk' Seal Carrier - Full Rated Pressure • ISO Pattern Actuation Mounting Option • Spears' Dual O-ring Safe-T Sbear* Stem • Self Adjusting PTFE Floating Seat Design • Sizes 1/2" - 4" pressure rated to 235 psi @ 737, sizes 6" - 8" and all flanged to 150 psi C 73°F • NSF Certified for Potable Water Use • Also Available in SPEARS® LXT Im High Purity, Low Extractable PVC Material • Produced in IPS sizes 1/2" - 6" with Socket. Flanged. Spigot or SR Threaded End Connectors • 8" with Socket and Flanged End Connectors PROGRESS.IV.E'PRDD�IC7'S�RDMSI'.EARS® INNOUATION� TECHNOLOGY ON • 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. SpearsO FlameGuard" CPVC Fire Sprinkler Products are approved for use in low pressure dry pipe or pre -action systems by Underwriters Laboratories Inc. Spears FlameGuardO 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 Spearso 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 ortube 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 If 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 Fig."Stand-Off" Hanger &Restrainer for CPVC Plastic Pipe Size Range — 3/n" through 2" 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. • Unique twist and lock design holds pipe firmly in place and allows retrofit type of installation. • The "Stand -Off" design eliminates the need for wood block extension. • 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 furnished with product. • Installs easily using rechargeable electrical driver with 5/16" extension socket eliminating impact tool damage to pipe. • Attaches easily to steel, minimum 18 gauge with (2) 1/4" x 1 " tek type self drilling tapping screws. • UL Listed as a hanger and a restrainer for fire sprinkler piping. Approvals —Underwriters' Laboratory Listed in the USA (UL) and Canada (cUL) to 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- fies the UL vertical restraint requirement where needed. UL Listed as a hanger and ver- tical restraint when installed on 3/8" composite wood material. Use two Fig. 27B Speed 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. # 7,455,2ti8, Pat. # ?,832,248 FfG.^.;3 (1) REQUIRED MIvn SIDE-- \ OF MAIiGEft HANGER APPLICATION FIG.27B (2? R[UUIREO FIG2B HANLUER & RE51"RAINY APPLICATION C UL US LISTED Dimensions •Weights Pipe Approx. Size A B G Wt. 3/4 31/S2 2 31/z .180 1 35/16 23/i s 31/2 .210 11/4 V8 23/4 31/z .225 11/2 4 21/2 31h .310 2 41/2 211/16 35/8 340 0 OFFlCE/MANUFACTURIN6 FACILITY • 1375 SAM SON AVE. • CvFOfV.A, CA 92879 + FH: 951.737,5599 •FAX: 951.737.03's9 CUSTOMER SERVICE • 880.785.5286 ' www.tolca.cam FOR SMALL (OPOTTER VANE TYPE WATERFLOVI-' ALARM SWITCH The Symbol of Protection WITH RETARD AND GLUE4N UNION CUL, UL and CSFM Listed, CE Marked, NYMEAACCEPTED - Service Pressure: Up to 175 PSI (12,07 BAR) US Patent No. 6,471,255 Stock No. 1113555 1113600 W/TSK IViinimum Flory Rate for Alarm: 8-10 GPM (30-38 LPM) A4ax1mum Surge: 18 FPS (5,5 m/s) Enclosure: Die-cast, red powdercoat finish No. 1113555: Cover held in place with tamper resistant screws No. 1113600 - Tamper: Cover incorporates micro -switch. Cover'[amper: Activated by cover removal. Cover Tamper Switch Contacts: One set SPDT, Rated at 250VAC. Cover Tamper Switch Terminations: 8" 22AWG wire leads. Contact Ratings: Two sets of SPDT (Form C) 15.0 Amps at 125/250 VAC 2.0 Amps at 30 VDC Conduit Entrances: Two knockouts provided for 1(2" conduit. Usage: Listed CPVC plastic piping systems manufactured by Central Sprinkler Corp., Grinnell Sprinkler Corp., Spears Manufacturing Co., and IPEX (Scepter). Fits pipe sizes - 1", 1-1/4", 1-1/2" and 2" Environmental Specifications: • Suitable for indoor or outdoor use with factory installed gasket and die-cast housing. • For NEMA 419P55 rated enclosure - use with appropriate conduit Service Use: fitting and/or plugs. Automatic Sprinkler NPPA-13 • Temperature range: 401 F to 1201 F (4,5° C to 490 C) One or two family dwelling NPPA-1313 Caution: This device is not intended for applications in explosive Residential occupancy up to four stories NFPA-13R environments. National Fire Alarm Code NFPA-72 The. Model VSR-SFG is avane type waterflow switch for use onwetsprinkler systems using CPVC plastic fittings manufachued by Central Sprinkler Carp., Grinnell Sprinkler Corp., Spears Manufacturing Co., and IPEX (Scepter) that use 1", 1-1/41, 1-1/2" or 2" pipe sizes. It is equipped with a union to accommodate installation in confined spaces. The unit contains two single pole double throw snap action switches and an adjustable, instantly recycling pneumatic retard. The switches are actuated when a flow of 8-10 gallons per minute (30-38 liters per minute) or more ocents downstream of the device. The flow condition must exist for a period of time necessary to overcome the selected retard period. INSTALLATION: These devices maybe mounted on horizontal or vertical pipe. On horizontal pipe they should be installed on the top side of the pipe where they will be accessible. The units should not be installed within 6" (15 ein) of a valve, drain or fitting which changes the direction of the waterflow. The unit has a 1" male fitting for gluing into a CPVC plastic TEE. 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 manufacturers instructions for preparation and gluing of CPVC piping systems. (NOTE: The I" male fitting must bottom out on the stop of the TEE- for proper operation of the VSR-SFG. See Fig. 1.) Wait 2 to 4 hours to allow the glue to dry before attaching the VSR-SPG to the 1" male fitting. Select the proper paddle for the pipe size and type of TEE used. See Fig. 3 and Fig. 5 for instructions on how to change paddle. Verify that the o-ring is properly positioned in its groove. Hand tighten the nut on the union after orienting the device in the appropriate direction to detect waterflow as shown in Fig. 2. CAUTION: Do not over -tighten the union nut, hand tighten only! The vane must not rub the inside of the TEE or bind in any way. The stem shouId move freely when -operated-by-hand- iNSPECTIONAND TESTING: Checkthe operation of the ttnitby opening the inspector's test valve at the end of the sprinkler line or the drain and test connectionI if an inspector's test valve is not provided. If there are no provisions for testing the operation of the flow detection device on the system, application of the VSR-SFG is not recommended or advisable. The frequency of the inspection and testing and its associated protective monitoring system should be in accordance with file applicable NFYA Codes and Standards and:'or authority having jurisdiction (manufacturer recommends quarterly or more frequently). Potter Electric Signal Company 2081 Craig Road, St. Louis, b10, G314(i-4161 Phoue: 800-325-3936!Canada 8&8-882-1833 www.pottersignal.com PRINTED IN tSA MKT. #3800009 - REV P PAGE 1 OF 2 MFG. #5401062 - 11/05 F rDX 4" 41 1 tet't t FIG.1 RF<i!tl?FO FOR 'rAI.E FIT':NG INSTAL:, .ION OR MJST 301`70h? OUT RE?.dCVAL OF [i.=VIOF.': ON STOP NO 3USHI:VGS. I. �— INSEF.TS CR J AG4�'EF.'S. -VJG. F106�—. AR:_ ?ERtAF:LU Gltte the i"male sitting into the TEE following the TEE manufacturer's instructions for preparation and gluing of CPVC piping systems. R'ait 2 to 4 hours to allow the glue to dry before attaching the VSR-SFG to the I" male fitting. FIG. 2 FOR SMALL PIPE VSR=S � _ 31 VANE TYPE R'ATERFLOW ALARM SWITCH WITH RETARD AND GLUE -IN UNION Retard Adjustment: To change time, turn knob (either direction) for desired time delay. Use the. minimum amount of retard necessary to prevent false alarms. A "B" setting is usually adequate for this. Factory set at `B". FIG.3 01W.CTION OF WATERFlAW 0 Ow portant: rf063-3 Im 7 paddles are furnished with each unit to accommodate the various sizes and manufacturers of TEES. The paddles have raised lettering that show the pipe size and the TEE manufacturer they are to be used with. The proper paddle must be used. The paddle must be properly attached (see Fig. 3) and the screw that holds the paddle must be securely tightened. FIG. 4 TYPICAL ELECTRICAL CONNECTIONS 'SINS UI' %7A(7Li\' r titil--: ();..iL\i:\i\i:\i l)\'1lItL P.1Ml. I�IRCYAM1LI. 0 I nm"nc. nXn r. n. al.nRr;l%:rc,ry Insl?nl: oc J TIiI: Sw'ITC:I AIEe FOR :.:V Ai.ARM SVl11i,TAr- CU\nl'flUl._ Pi?LL \IXF1.711AT UN TI[EL IHEDEVRI. Is M- it \Fi:TI:AI AC w11\0RJ% 09n'\D ISIN. FIGS GRINNELLTEE TEE's mannractulad prior TEE's mannfacmred to 5/99 after Si99 NOTICE: owe, Gloss-4 As of 5/99 Grinnell has changed the desi},m of their TEE fittings. The new fittings will require the use of the standard paddle, while yeu will still be required to use the paddle marked Grinnell on all fittings manufactured prior to this date. Failure to install the correct paddle could cause the device to malfunction or operate improperly. APPROX. RF..T.4RD SF,TTINGS (IN SF..CJ 0 A B C D E 0 10-25 2040 35-55 50-70 60-90 DO NOT LEAVE COVER O.TF FOR EXTENDED PERIOD OF TIME ADJUSTING — � '� iNOE (WHITE] OObi. \\ t__ i •iRED) N.O. \ '.ELACK) N.C. / A�e:� MOUNT Si. OAUTIOPI: INSUR" 1\,J AARO'N OIJ THAT O-?:PIG :S BASE POTION IN 0-RING GROCVE IN DIRECTION i EEFORE INS'.ALLING OF ;VA: FLO'.Y WI -CH. RUF OF THE = / FITTINGON `: EE NVi' EE ALL SIZES 1 4 `4J. �,T 1 GR 2" o:RE TI,ON OF DING. to62-2 NtATERFL.eY� \ �� shorn with optional Corner ��\••/// Tamper switch Kit. NOTES: COVER TAMPER 1. The model VSR-SFG has two SWITCH switches, one can be.usedtooperate a (SHOWN WITH central station, proprietary or remote COVER IN PLACE) signaling unit, while the other is used to operate a local audible or visual annunciator. b Ib 2. For supervised circuits see "Switch Terminal Connections' drawing and N o' N'c (WHTI (RED) (DLK) caution note (Fig. 6). „u,w ,,,_•. FIG. ( SWITCH TERMINAL CONNECTIONS CLAMPING PLATE TERMINAL CAUTION: An nninsulated section of a single conductor should not be looped around the terminal and setveastwo separate connections. Thewire mustbe severed, thereby providing supervision of the connection in the event that the wire becomes dislodged from under the terminal. APPLICATION WARNING! 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 AFF'F, deluge, or chemical suppression systems. 0111111111 e• • t,utdoor Selectable - Output Horns, Strobes, and Horn Strobes for Wall Applications SpectrAlert Advance outdoor audible visible products are rich with features that cut installation times and maximize profits. Features •Uleatherproof per NEIV�A 4X, IP56 Usted to UL 1638 (strobe) and UL46(horn) Compatible with System Sensor synchronization protocol and legacy SpectrAlert products •Field -selectable candela settings: 15, 5/75, 3C, 75, ?5, 11 C, 1 15, 135, 150, 177,and 185 • Automatic selection of 12- or Z4-volt operation at 15 and 15/75 candela Rotary switch for horn tone and three volume selection Horn rated at 88+ dBA at 16 volts SpectrAlert Advance cff rs the broadest line of outdoor horns, strobes, and horn strobes in the industry: VJitn white or red plastic housings, wall or ceiling mounting options, and plain or FIRE -printed devices, SpectrAlert Advance can meet virtually any application requirement, including indoor, outdoor, whet, and dry applications in temperatures from —40°F to 151OF. Uke the entire SpectrAlert Advance line, outdoor horns, strobes, and horn strobes for wall applications include a variety of features that 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 installers to easily adapt devices to meet requirements. • Rated from —41]°F to 151 °F •Universal mousing plate with an onboard shorir:.g spring that Next, SpectAlert Advance devices use a universal mousing plate tens wiring continuity before devices are installed for both wall and ceiling application.This mounting plate includes Plug-in design with minimal intrusion into the back box an onboard shorting spring that ensures -wiring continuity before-- devices are installed, so a stallers can verify proper wiring wahout •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 with a single captured screw to speed installation and virtually eliminate costly ground faults. Outdoor devices snip with weatherproof plastic back boxes (metal back boxes are ava.lable 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 corrosion. Knock -outs located on the back eliminate the need to drill J-4holes for screw -in mounting. Plastic and metal weatherproof back UL " boxes corne with j%r-inch top and bottom conduit entries and %+-inch FM MEA , LISTED ; APPROVED approved "25111d'""r`'°""'r°`'-' knock -outs at the back. A screw -in NPT plug with an 0-ring gasket s oianrn eF,es,hUr: S359!�utmwr,ndaleAit,Lc-si aoz:, < W:cPAS-0S._ :115-1v53199 homs,dinies) for a watertight seal is included with each back box. 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. PED AIR SPACE GATT INSULATION TENTED OVER PIPING TENTING TENTING LOWN-IN INSULATION ••••••••• ••••••••• TRAPPED AIR SPACE IL PLASTIC TENTED 10 M OVER PIPING (STAPLE BATTS INSULATION OR PLASTIC "TENT") TENTING�Fiq.1 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.