Loading...
The URL can be used to link to this page
Your browser does not support the video tag.
Home
My WebLink
About
MIS96-00883 Automatic Fire Alarm - MIS Application - 5/6/1997
MASON P� COUNTY Mason County Bldg. III 426 W. Cedar �( P.O. Box 186 Shelton, Washington 98584 f], it._ L.._ L. A Ito t— C?L) r ° i.._ # 1 0.01 , r OR i N'•1't:.+, : t i:N I_` i r 0 MI S96--0883 PARCEL :419240000000 PLAT : D 1 V a BL.K : LOT : JOB ADDRESS : W 780 STATE ROUTE 108 SHEL_TON APPLICANT : SKOOKUM LUMBER COMPANY 352-7633 (lWNCR : SKOOKUM t t#MBER COMPANY 352--7633 LEGAL : SECT101 t AA All EX tE114 St114 PROJECT DESCR I PT i ON : AUTOMATIC FIRF ALARM 4 PROJECT LOCATION - PAST L_I TTI:E CREEK CASINO ABOUT 1 MILE , TURN LEFT AT SIGN PROJECT NOTES : TYPE AMOUNT BY DATE RECEIPT w�:-:ate::six:•�•::•�•,�.-� � a-s- =, .� PRI•A1 `A 50 .00 KS 12/ 19/96 184 LT(�)TAt., , 50 .00 OwN UR N DATE .w�:xa�-,:-r.�:.�rz,a—..-.., .:a.:..rc.-.sas�ms7:-z�cx��.�.ce.:.z Ii1S 9141, rev; 04/91191 CONCRETE MECHANICAL- MOBILE HOME Footings-Setback date by Ribbons date by Gas Piping date b Foundation Walls date by Set Up date by INSULATION date by BG/SLAB Insulation Floors Final date FRAMING by date by date by Walls FIRE DEPT. date PLUMBING by date by date by Attic OTHER Groundwork �j�s*i¢-�- date b date by �� M D.W.V. WALLBOARD NAILING J S 6 S, p l— 9 7 date by date by Water Line FINAL INSPECTION data by date 6_ C� b ��- date by I 12/03/96 TUE 09:00 FAX 3604277798 MASON COUNTY BLD 3 IjP 002 MASON COUNTY FIRE MARSHAL F IL E C -Mason County Bldg. III 426 W.Cedar �- P.O.Box 186 Shelton,Washington 98584 (206)427-9670 " ig CODE ENFORCEMENT FIRE INSPECTIONS FIRE INVESTIGATION PUBLIC EDUCATION PERMIT NO. rn T596'o%'33 MASON COUNTY FIRE PROTECTION SYSTEM PERMIT APPLICATION NOTE: This application must be completed and accompanied by a minimum of three (3) copies of plans, specifications and applicable calculations .per Mason County Fire Protection Standards and brought to the office of the Mason County Fire Marshal. This is not a permit, and failure to submit all necessary information will cause a delay and/or rejection of your submittal. When a permit has been issued, you will be notified. PLEASE PRINT #1 OWNER �000,�a*07 1,eeas2cp Ce. PHONE 360- 352- 7G 33 SITE ADDRESS_7,g Js/, zip.... log FIRE DIST. CITY Shaleo.v STATE lcJt ZIP 98; ' DIRECTIONS TO JOB SITE �d�.► L�rr/c G"ra61c G��-ri.✓a a L�.�.r' /psi/c _ OWNER MAILING ADDRESS CITY STATE ZIP LIEN/TITLE HOLDER ADDRESS CITY #2 CONTRACTOR CONTRACTOR REG # 6-QJNA1 FA 13 7 L 8 ADDRESS1Z/S .S. Gc,.i /Z v P. DATE /Z /7 CITY ,�,.. ,� �. —� STATE kf„, ZIP yYpx z #3 PARCEL # LEGAL DESCRIPTION #4 BLDG. SQ. FT (EXISTING/PROPOSED) 1ST FL /21?'V�O / 2ND / 3RD / BASEMENT / DECK �— #BR #BATH GARAGE / CARPORT / ENCL ATTIC: Y N OTHER SQ FT USE OF BUILDING �°�4.✓�✓�r /.� g4 oe #5 DESCRIPTION OF WORK: SPRINKLER: WET DRY STANDPIPE: WET DRY AUTOMATIC FIRE ALARM` CORRIDOR 9R0-K 3S__y/,f HOOD & DUCT DRY CHEMICAL WET CHEMICAL HALON NEW SYSTEM v MODIFICATION NUMBER OF NEW DEVICES ,3J MONITORING STATION -,14,� PHONL 1-100- 752,ZV?O DEC 03 196 09: 10 3604277798 PAGE.02 12/03/96 TUE 09: 00 FAX 3604277798 MASON COUNTY BLD 3 ljj003 #6 DOES YOUR SUBMITTAL INCLUDE: 1. DIMENSIONS, SCALE, NORTH ARROW? YES - NO 2 . FLOOR PLAN AND CROSS SECTIONAL ELEVATION? YES ., 'NO_ 3 . ALL CONCEALED SPACES (LABELED COMBUSTIBLE AND NON-COMBUSTIBLE) ? YES NO r =a iq 4. ALL AREAS ON OPPOSITE SIDE OF NEW WALLS? YES=NO_ 5. CUT SHEETS OR REFERENCES FOR ALL NEW DEVICES? YES__v[_NO_ 6. LOCATION/DESCRIPTION OF ANY EXISTING DEVICES YES NO 7 . BATTERY CALCULATIONS FOR FIRE ALARM SYSTEMS? YES__V/ NO_ 8. RISER/WIRING DIAGRAM FOR FIRE ALARM SYSTEMS? YES ✓ NO 9 . HYDRAULIC CALCULATIONS FOR SPRINKLER SYSTEMS? YES NO-Z 1''4} NOTE: WORK MAY PROCEED ONLY IN ACCORDANCE WITH A VALID FIRE PROTECTION SYSTEM PERMIT ISSUED BY THE MASON COUNTY FIRE MARSHAL. A VALID PERMIT AND AN APPROVED SET OF PLANS MUST BE ON THE JOB SITE DURING CONSTRUCTION AND MUST REMAIN THERE UNTIL A FINAL INSPECTION IS DONE BY THE MASON COUNTY FIRE MARSHAL. FAILURE TO OBTAIN A VALID PERMIT PRIOR TO WORKING ON A FIRE PROTECTION SYSTEM AND/OR FAILURE TO PROVIDE THESE PLANS AND PERMIT FOR THE MASON COUNTY FIRE MARSHAL MAY RESULT IN A CITATION AND FINE. OWNERS AFFIDAVIT I certify that I am exempt from the requirements of the Contrac- tors Registration Law RCW 18.27, and am aware of the Mason County ordinance requirements for which this permit is issued and that all work will be done in conformance therewith. No changes will be made without first obtaining approval from the Mason County Fire Marshal. OWNER DATE CONTRACTORS AFFIDAVIT I certify that I am a currently registered contractor in the State of Washington and I am aware of the ordinance requirements regulating the work for which the permit is issued and all work done will be in conformance therewith. No changes will be made without first obtaining approval from the Mason County Fire Marshal. BY DATE r DEC 03 196 09: 11 3604277798 PAGE.03 � 4 �S GRINNh�i� E PRtJ'i'E r,�p ION LwAd � .� 1215 CENTRAL AVENUE S - SUITE 128 3 "US LAY �;w KENT, WA 98032 S HYDRAULIC CALCULATIONS FOR SKOOKUM LUMBER - PLANERMILL REBUILD - SOUTH END CALL. 780 W.HWY 108 SHELTON,WA FILE NUMBER: 41 .3086356 DATE: 11-12-96 -DESIGN DATA- OCCUPANCY CLASSIFICATION: EXTRA HAZARD GRP. I DENSITY: . 30 gpm/sq. ft . AREA OF APPLICATION: 2438 sq. ft . COVERAGE PER SPRINKLER: 100 sq. ft . MAXIMUM NUMBER OF SPRINKLERS CALCULATED: 26 sprinklers TOTAL SPRINKLER WATER FLOW REQUIRED: 892 . 0 gpm TOTAL WATER REQUIRED (including hose) : 1392 . 0 gpm FLOW AND PRESSURE (@ BOR) : 892 . 0 gpm @ 86 . 2 psi SPRINKLER ORIFICE SIZE: 17/32 inch NAME OF CONTRACTOR: GRINNELL FIRE PROTECTION DESIGN/LAYOUT BY: A. CHANG AUTHORITY HAVING JURISDICTION: MASON COUNTY FI RE MARSHAL CONTRACTOR CERTIFICATION NUMBER: GRINNFP137LE CALCULATIONS BY HASS COMPUTER PROGRAM (LICENSE # 4 C1324J ) HRS SYSTEMS, INC. ATLANTA, GA r SPRINKLER SYSTEM HYDRAULIC ANALYSIS Page 1 Date : 12/09/1996 SKOOLMBR.SDF JOB TITLE: SKOOKUM LUMBER - PLANER MILL REBUILT WATER SUPPLY DATA SOURCE STATIC RESID. FLOW AVAIL. TOTAL REQ'D NODE PRESS . PRESS . @ PRESS . @ DEMAND PRESS . TAG (PSI) (PSI) (GPM) (PSI) (GPM) (PSI) SRC (N/A) 75 . 0 (N/A) 75 .0 1392 . 0 65 . 9 AGGREGATE FLOW ANALYSIS : TOTAL FLOW AT SOURCE 1392 . 0 GPM TOTAL HOSE STREAM ALLOWANCE AT SOURCE 400 .0 GPM OTHER HOSE STREAM ALLOWANCES 100 . 0 GPM TOTAL DISCHARGE FROM ACTIVE SPRINKLERS 892 .0 GPM NODE ANALYSIS DATA NODE TAG ELEVATION NODE TYPE PRESSURE DISCHARGE (FT) (PSI) (GPM) 1 15 .2 K= 8 . 00 14 .1 30 .0 2 14 . 0 K= 8 . 00 14 . 9 30 . 9 3 12 .5 K= 8 . 00 16 .6 32 .6 4 11 .5 K= 8 . 00 19 . 5 35 . 3 5 10 .2 K= 8 . 00 24 .4 39 . 5 6 15 .2 K= 8 . 00 14 . 1 30 . 1 7 14 . 0 K= 8 . 00 15 .0 30 . 9 8 12 . 5 K= 8 . 00 16 .7 32 . 7 9 11 .5 K= 8 . 00 19 . 6 35 .4 10 10 .2 K= 8 . 00 24 .5 39 . 6 11 15 . 2 K= 8 . 00 12 . 8 28 . 6 12 14 . 0 K= 8 . 00 13 .6 29 .5 13 12 .5 K= 8 . 00 15 .3 31 .3 14 11 . 5 K= 8 . 00 17 . 9 33 . 9 15 10 .2 K= 8 . 00 26 .6 41 .2 16 15 . 2 K= 8 . 00 13 .2 29 . 1 17 14 . 0 K= 8 . 00 14 . 1 30 . 0 18 12 . 5 K= 8 . 00 15 . 8 31 . 8 19 11 .5 K= 8 . 00 18 .5 34 .4 20 10 .2 K= 8 . 00 27 .3 41 . 8 21 15 . 2 K= 8 . 00 15 . 7 31 . 7 22 14 . 0 K= 8 . 00 16 . 6 32 . 5 23 12 . 5 K= 8 . 00 18 .4 34 .3 24 11 . 5 K= 8 . 00 21 .5 37 . 1 25 10 .2 K= 8 .00 26 .9 41 .5 26 10 .2 K= 8 . 00 33 .4 46 .2 27 8 . 8 - - - - 29 .3 - - - 28 8 . 8 - - - - 29 .4 - - - 29 8 . 8 - - - - 29 . 8 - - - 30 8 . 8 - - - - 30 . 7 - - - 31 8 . 8 - - - - 32 .1 - - - 32 8 .8 - - - - 34 .4 - - - 33 21 . 8 - - - - 66 .0 - - - 34 21 . 8 - - - - 68 . 1 - - SPRINKLER SYSTEM HYDRAULIC ANALYSIS Page 2 Date : 12/09/1996 SKOOLMBR. SDF JOB TITLE : SKOOKUM LUMBER - PLANER MILL REBUILT NODE TAG ELEVATION NODE TYPE PRESSURE DISCHARGE (FT) (PSI) (GPM) 35 21 . 8 - - - - 72 . 6 - - - TR 20 . 0 - - - - 74 . 7 - - - BR 0 . 0 HOSE STREAM 86 .2 100 . 0 POC 0 . 0 - - - - 86 . 8 - - - SRC 50 . 0 SOURCE 65 .9 992 . 0 Y } SPRINKLER SYSTEM HYDRAULIC ANALYSIS Page 3 Date : 12/09/1996 SKOOLMBR.SDF JOB TITLE: SKOOKUM LUMBER - PLANER MILL REBUILT PIPE DATA PIPE TAG Q (GPM) DIA(IN) LENGTH PRESS . END ELEV. NOZ . PT DISC. VEL(FPS) HW(C) (FT) SUM. NODES (FT) (K) (PSI) (GPM) F.L./FT (PSI) Pipe: 1 -30 .0 1 . 682 PL 7 . 62 PF 0 .3 1 15 .2 8 . 0 14 . 1 30 . 0 4 . 3 100 FTG ---- PE 0 .5 2 14 . 0 8 . 0 14 .9 30 . 9 0 . 039 TL 7 . 62 PV 0 . 1 Pipe: 2 -60 .9 1. 682 PL 7 .62 PF 1 .1 2 14 . 0 8 . 0 14 . 9 30 .9 8 . 8 100 FTG ---- PE 0 . 6 3 12 . 5 8 . 0 16 . 6 32 . 6 0 .143 TL 7 . 62 PV 0 .5 Pipe: 3 -93 .5 1 .682 PL 7 . 62 PF 2 .4 3 12 . 5 8 .0 16 . 6 32 . 6 13 .5 100 FTG ---- PE 0 .4 4 11 .5 8 . 0 19 .5 35 . 3 0 .317 TL 7 .62 PV 1 .2 Pipe : 4 -128 . 8 1 . 682 PL 7 .62 PF 4 .4 4 11 . 5 8 . 0 19 . 5 35 .3 18 . 6 100 FTG ---- PE 0 . 5 5 10 .2 8 . 0 24 .4 39 .5 0 .574 TL 7 .62 PV 2 .3 Pipe: 5 -168 .4 2 . 154 PL 1 . 83 PF 4 .2 5 10 .2 8 .0 24 .4 39 .5 14 .8 100 FTG ET PE 0 . 6 27 8 . 8 0 .0 29 . 3 0 . 0 0 .282 TL 14 . 92 PV 1 .5 Pipe: 6 -30 . 1 1 . 682 PL 7 . 62 PF 0 .3 6 15 .2 8 . 0 14 . 1 30 . 1 4 .3 100 FTG ---- PE 0 . 5 7 14 . 0 8 . 0 15 .0 30 . 9 0 .039 TL 7 . 62 PV 0 . 1 Pipe: 7 -61 . 0 1 . 682 PL 7 . 62 PF 1 . 1 7 14 .0 8 . 0 15 . 0 30 .9 8 .8 100 FTG ---- PE 0 . 6 8 12 .5 8 . 0 16 . 7 32 .7 0 . 144 TL 7 .62 PV 0 .5 Pipe: 8 -93 . 7 1 . 682 PL 7 . 62 PF 2 .4 8 12 .5 8 . 0 16 . 7 32 . 7 13 . 5 100 FTG ---- PE 0 .4 9 11 .5 8 . 0 19 .6 35 .4 0 .319 TL 7 .62 PV 1 .2 Pipe : 9 -129 . 1 1 .682 PL 7 . 62 PF 4 .4 9 11 . 5 8 .0 19 . 6 35 .4 18 . 6 100 FTG ---- PE 0 . 5 10 10 . 2 8 .0 24 . 5 39 . 6 0 . 576 TL 7 . 62 PV 2 . 3 Pipe : 10 -168 . 7 2 . 154 PL 1 . 83 PF 4 .2 10 10 . 2 8 . 0 24 . 5 39 . 6 14 . 9 100 FTG ET PE 0 . 6 28 8 . 8 0 . 0 29 .4 0 . 0 0 . 283 TL 14 . 92 PV 1 .5 Pipe : 11 -28 . 6 1 . 682 PL 7 . 62 PF 0 . 3 11 15 .2 8 . 0 12 . 8 28 . 6 4 . 1 100 FTG ---- PE 0 . 5 12 14 . 0 8 .0 13 . 6 29 . 5 0 .036 TL 7 . 62 PV 0 . 1 Pipe: 12 -58 .2 1 . 682 PL 7 . 62 PF 1 . 0 12 14 .0 8 . 0 13 . 6 29 . 5 8 .4 100 FTG ---- PE 0 . 6 13 12 .5 8 . 0 15 .3 31 .3 0 . 132 TL 7 . 62 PV 0 .5 Pipe: 13 -89 .4 1 . 682 PL 7 . 62 PF 2 .2 13 12 .5 8 . 0 15 .3 31 .3 12 . 9 100 FTG ---- PE 0 .4 14 11 .5 8 .0 17 . 9 33 . 9 0 .292 TL 7 . 62 PV 1 . 1 SPRINKLER SYSTEM HYDRAULIC ANALYSIS Page 4 Date : 12/09/1996 SKOOLMBR.SDF JOB TITLE: SKOOKUM LUMBER - PLANER MILL REBUILT PIPE DATA (cont . ) PIPE TAG Q(GPM) DIA(IN) LENGTH PRESS . END ELEV. NOZ . PT DISC. VEL (FPS) HW(C) (FT) SUM. NODES (FT) (K) (PSI) (GPM) F.L. /FT (PSI) Pipe: 14 -123 .3 1 . 682 PL 8 .20 PF 8 . 1 14 11 .5 8 . 0 17 . 9 33 .9 17 . 8 100 FTG 2E PE 0 . 5 15 10 .2 8 . 0 26 . 6 41 . 2 0 . 529 TL 15 .27 PV 2 . 1 Pipe: 15 -164 .5 2 .154 PL 0 . 87 PF 2 . 6 15 10 .2 8 . 0 26 . 6 41 . 2 14 . 5 100 FTG T PE 0 . 6 29 8 . 8 0 . 0 29 . 8 0 . 0 0 .270 TL 9 . 59 PV 1 .4 Pipe: 16 -29 .1 1 . 682 PL 7 . 62 PF 0 .3 16 15 .2 8 .0 13 .2 29 .1 4 .2 100 FTG ---- PE 0 . 5 17 14 . 0 8 . 0 14 . 1 30 .0 0 . 037 TL 7 .62 PV 0 . 1 Pipe : 17 - . 1 1 .6 2 PL 7 2 p 59 8 . 6 PF 1 . 0 17 14 .0 8 . 0 14 . 1 30 . 0 8 .5 100 FTG ---- PE 0 . 6 18 12 .5 8 . 0 15 . 8 31 . 8 0 . 136 TL 7 . 62 PV 0 .5 Pipe: 18 - 1 . PL 7 . 2 PF 2 P 90 . 9 682 6 . 3 18 12 .5 8 . 0 15 . 8 31 . 8 13 . 1 100 FTG ---- PE 0 .4 19 11 .5 8 . 0 18 . 5 34 .4 0 . 301 TL 7 . 62 PV 1 .2 Pipe : 19 -125 .3 1 . 682 PL 8 .20 PF 8 .3 19 11 .5 8 . 0 18 . 5 34 .4 18 . 1 100 FTG 2E PE 0 . 5 20 10 .2 8 .0 27 .3 41 . 8 0 . 545 TL 15 . 27 PV 2 .2 Pipe : 20 -167 . 1 2 . 154 PL 0 . 87 PF 2 . 7 20 10 .2 8 . 0 27 . 3 41 . 8 14 .7 100 FTG T PE 0 . 6 30 8 . 8 0 . 0 30 . 7 0 . 0 0 .278 TL 9 . 59 PV 1 . 5 Pipe: 21 -31 .7 1 . 682 PL 7 . 62 PF 0 .3 21 15 .2 8 .0 15 . 7 31 . 7 4 . 6 100 FTG ---- PE 0 . 5 22 14 . 0 8 . 0 16 . 6 32 . 5 0 . 043 TL 7 . 62 PV 0 . 1 Pipe: 22 -64 .2 1 .682 PL 7 . 62 PF 1 . 2 22 14 . 0 8 .0 16 . 6 32 . 5 9 .3 100 FTG ---- PE 0 . 6 23 12 .5 8 . 0 18 .4 34 . 3 0 . 158 TL 7 . 62 PV 0 . 6 Pipe : 23 -98 . 6 1 . 682 PL 7 .62 PF 2 . 7 23 12 .5 8 . 0 18 .4 34 .3 14 .2 100 FTG ---- PE 0 .4 24 11 .5 8 . 0 21 .5 37 . 1 0 . 350 TL 7 . 62 PV 1 .4 Pipe : 24 -135 .7 1 . 682 PL 7 . 62 PF 4 . 8 24 11 .5 8 .0 21 .5 37 . 1 19 . 6 100 FTG ---- PE 0 . 5 25 10 . 2 8 . 0 26 .9 41 . 5 0 . 631 TL 7 . 62 PV 2 . 6 Pipe: 25 -177 . 1 2 . 154 PL 1 . 83 PF 4 . 6 25 10 .2 8 . 0 26 . 9 41 . 5 15 . 6 100 FTG ET PE 0 . 6 31 8 .8 0 .0 32 .1 0 . 0 0 .310 TL 14 . 92 PV 1 . 6 Pipe: 26 -46 . 2 2 . 154 PL 1 . 83 PF 0 .4 26 10 .2 8 . 0 33 .4 46 .2 4 .1 100 FTG ET PE 0 .6 32 8 . 8 0 . 0 34 .4 0 . 0 0 . 026 TL 14 . 92 PV 0 . 1 f SPRINKLER SYSTEM HYDRAULIC ANALYSIS Page 5 Date : 12/09/1996 SKOOLMBR. SDF JOB TITLE: SKOOKUM LUMBER - PLANER MILL REBUILT PIPE DATA (cont . ) PIPE TAG Q(GPM) DIA(IN) LENGTH PRESS . END ELEV. NOZ . PT DISC. VEL (FPS) HW(C) (FT) SUM. NODES (FT) (K) (PSI) (GPM) F.L. /FT (PSI) Pipe: 28 -168 .4 4 .357 PL 12 .50 PF 0 . 1 27 8 . 8 0 .0 29 .3 0 . 0 3 . 6 100 FTG ---- PE 0 .0 28 8 . 8 0 . 0 29 .4 0 . 0 0 . 009 TL 12 .50 PV 0 . 1 Pipe : 29 -337 . 1 4 . 357 PL 12 .50 PF 0 .4 28 8 . 8 0 .0 29 .4 0 . 0 7 .3 100 FTG ---- PE 0 . 0 29 8 . 8 0 . 0 29 . 8 0 . 0 0 .033 TL 12 . 50 PV 0 .4 Pipe: 30 -501 .6 4 .352 PL 12 . 50 PF 0 . 9 29 8 . 8 0 . 0 29 .8 0 . 0 10 .8 100 FTG ---- PE 0 . 0 30 8 . 8 0 . 0 30 . 7 0 . 0 0 . 069 TL 12 . 50 PV 0 . 8 Pipe : 31 -668 . 7 4 .352 PL 12 .50 PF 1 .5 30 8 .8 0 .0 30 . 7 0 . 0 14 .4 100 FTG ---- PE 0 . 0 31 8 .8 0 .0 32 . 1 0 . 0 0 . 118 TL 12 .50 PV 1 .4 Pipe : 32 -845 . 8 4 . 352 PL 12 . 50 PF 2 . 3 31 8 .8 0 .0 32 .1 0 .0 18 .2 100 FTG ---- PE 0 . 0 32 8 . 8 0 .0 34 .4 0 . 0 0 .182 TL 12 . 50 PV 2 . 2 Pipe: 33 -892 . 0 4 .352 PL 133 .00 PF 37 .2 32 8 . 8 0 .0 34 .4 0 . 0 19 . 2 100 FTG 3ET PE -5 . 6 33 21 . 8 0 . 0 66 . 0 0 . 0 0 .201 TL 185 . 14 PV 2 . 5 Pipe: 34 -892 . 0 6 . 357 PL 40 .00 PF 2 . 1 33 21 .8 0 . 0 66 .0 0 . 0 9 . 0 100 FTG T PE 0 . 0 34 21 . 8 0 . 0 68 . 1 0 . 0 0 .032 TL 66 . 92 PV 0 . 5 Pipe: 35 -892 . 0 6 .357 PL 102 . 16 PF 4 . 5 34 21 .8 0 . 0 68 . 1 0 . 0 9 . 0 100 FTG ET PE 0 . 0 35 21 . 8 0 . 0 72 .6 0 . 0 0 . 032 TL 141 . 64 PV 0 . 5 Pipe: 36 -892 . 0 6 . 357 PL 2 .16 PF 1 . 3 35 21 . 8 0 . 0 72 .6 0 . 0 9 . 0 100 FTG ET PE 0 . 8 TR 20 . 0 0 . 0 74 . 7 0 . 0 0 . 032 TL 41 . 64 PV 0 . 5 Pipe: 37 -892 . 0 6 . 357 PL 24 . 00 PF 2 . 9 TR 20 . 0 0 . 0 74 . 7 0 . 0 9 . 0 100 FTG ECBD PE 8 . 7 BR 0 . 0 H.S . 86 .2 100 . 0 0 . 032 TL 91 .30 PV 0 . 5 Pipe: 38 -992 . 0 8 . 510 PL 50 . 00 PF 0 . 6 BR 0 .0 H.S . 86 .2 100 . 0 5 . 6 140 FTG TG PE 0 . 0 POC 0 .0 0 . 0 86 .8 0 . 0 0 . 005 TL 117 . 13 PV 0 .2 Pipe: 39 -992 .0 12 .580 PL 865 . 00 PF 0 . 8 POC 0 . 0 0 . 0 86 . 8 0 . 0 2 . 6 140 FTG ETG PE -21 . 7 SRC 50 . 0 SRCE 65 .9 (N/A) 0 . 001 TL1015 . 09 PV 0 . 0 SPRINKLER SYSTEM HYDRAULIC ANALYSIS Page 6 Date : 12/09/1996 SKOOLMBR.SDF JOB TITLE: SKOOKUM LUMBER - PLANER MILL REBUILT NOTES : (1) Calculations were performed by the HASS 6 .1 .0 computer program under license no. 4 C1324J granted by HRS Systems, Inc . 2193 Ranchwood Dr. , N.E. Atlanta, GA 30345 (2) The system has been balanced to provide an average imbalance at each node of 0 .001 gpm and a maximum imbalance at any node of 0 .053 gpm. (3) Velocity pressures are printed for information only, and are not used in balancing the system. Maximum water velocity is 19 . 6 ft/sec at pipe 24 . (4) PIPE FITTINGS TABLE Pipe Table Name: STANDARD.PIP PAGE: * MATERIAL: S40 HWC: 120 Diameter Equivalent Fitting Lengths in Feet (in) E T L C B G A D Ell Tee LngEll ChkVly BfyVly GatVly A1mChk DPVly 1 . 682 4 . 95 9 . 90 2 .47 11 . 14 7 .42 1 . 24 12 .37 12 .37 2 . 154 6 . 11 12 .22 3 . 67 13 .45 7 .33 1 .22 12 .22 12 .22 4 . 352 14 . 61 29 .22 8 .77 32 . 14 17 . 53 2 . 92 29 .22 14 . 61 4 . 357 14 . 69 29 .39 8 . 82 32 .32 17 . 63 2 . 94 29 .39 14 .69 6 .357 17 . 60 37 .72 11 . 32 40 .23 12 .57 3 . 77 35 .21 23 .89 8 . 510 23 .30 45 .30 16 . 83 58 . 24 15 .53 5 . 18 45 .30 34 .94 12 . 580 32 . 76 72 . 81 21 . 84 78 . 88 25 .48 7 .28 59 .46 42 .47 r SPRINKLER SYSTEM HYDRAULIC ANALYSIS Page 7 Date: 12/09/1996 SKOOLMBR.SDF JOB TITLE : SKOOKUM LUMBER - PLANER MILL REBUILT WATER SUPPLY CURVE 84+ 77+ 70+ X 63+ P 56+ R E S S 49+ U R E 42+ P S I 35+ 28+ 21+ 14+ LEGEND " X = Required Water Supply " 65 . 90 psi @ 1392 . 0 gpm If 7+ " 0 = Available Water Supply " 75 . 00 psi @ 1392 . 0 gpm " if 0++-+---+----+-----+------+--------+--------+---------+-----------+ 400 600 800 1000 1200 1400 1600 1800 2000 FLOW (GPM) GRINNELL FIRE PROTECTION 1215 CENTRAL AVENUE S - SUITE 128 KENT, WA 98032 HYDRAULIC CALCULATIONS „ FOR SKOOKUM LUMBER - EXISTING BUILDING SPRINKLER ADDITIONG 780 W.HWY 108 SHELTON,WA FILE NUMBER: 41 .3086356 DATE: 11-12-96 -DESIGN DATA- OCCUPANCY CLASSIFICATION: EXTRA HAZARD GRP. I DENSITY: . 30 gpm/sq. ft . AREA OF APPLICATION: 2385 sq. ft . COVERAGE PER SPRINKLER: 100 sq. ft . MAXIMUM NUMBER OF SPRINKLERS CALCULATED: 27 sprinklers TOTAL SPRINKLER WATER FLOW REQUIRED: 1122 .3 gpm TOTAL WATER REQUIRED (including hose) : 1622 .3 gpm FLOW AND PRESSURE (@ BOR) : 1122 .3 gpm @ 83 .7 psi SPRINKLER ORIFICE SIZE: 17/32 inch NAME OF CONTRACTOR: GRINNELL FIRE PROTECTION DESIGN/LAYOUT BY: A. CHANG AUTHORITY HAVING JURISDICTION: MASON COUNTY FIRE MARSHAL CONTRACTOR CERTIFICATION NUMBER: GRINNFP137LE CALCULATIONS BY HASS COMPUTER PROGRAM (LICENSE # 4 C1324J ) HRS SYSTEMS, INC. ATLANTA, GA SPRINKLER SYSTEM HYDRAULIC ANALYSIS Page 1 Date : 12/09/1996 SKOLMBR2 .SDF JOB TITLE: SKOOKUM LUMBER - EXISTING BUILDING SPRINKLER ADDITION WATER SUPPLY DATA SOURCE STATIC RESID. FLOW AVAIL. TOTAL REQ'D NODE PRESS . PRESS . @ PRESS . @ DEMAND PRESS . TAG (PSI) (PSI) (GPM) (PSI) (GPM) (PSI) SRC (N/A) 75 . 0 (N/A) 75 .0 1622 . 3 64 .0 AGGREGATE FLOW ANALYSIS : TOTAL FLOW AT SOURCE 1622 . 3 GPM TOTAL HOSE STREAM ALLOWANCE AT SOURCE 400 .0 GPM OTHER HOSE STREAM ALLOWANCES 100 .0 GPM TOTAL DISCHARGE FROM ACTIVE SPRINKLERS 1122 .3 GPM NODE ANALYSIS DATA NODE TAG ELEVATION NODE TYPE PRESSURE DISCHARGE (FT) (PSI) (GPM) 41 19 . 5 K= 8 .00 46 .8 54 .7 SPRINKLER SYSTEM HYDRAULIC ANALYSIS Page 2 Date : 12/09/1996 SKOLMBR2 .SDF JOB TITLE: SKOOKUM LUMBER - EXISTING BUILDING SPRINKLER ADDITION NODE TAG ELEVATION NODE TYPE PRESSURE DISCHARGE (FT) (PSI) (GPM) 42 20 .3 K= 8 . 00 39 .6 50 .3 43 21 .2 K= 8 . 00 37 .4 48 .9 44 21 .3 K= 8 . 00 11 .3 26 . 9 45 20 . 8 K= 8 . 00 12 .1 27 . 8 46 20 .3 K= 8 . 00 14 .4 30 .4 47 19 .8 K= 8 . 00 19 .4 35 .2 48 19 .3 K= 8 . 00 28 . 7 42 .9 49 18 . 8 K= 8 . 00 38 .5 49 .7 50 19 . 5 K= 8 . 00 46 .9 54 . 8 51 20 .3 K= 8 . 00 39 . 7 50 .4 52 21 . 2 K= 8 . 00 37 .4 49 . 0 53 21 .3 K= 8 . 00 13 . 3 29 .2 54 20 . 8 K= 8 .00 14 .2 30 .2 55 20 .3 K= 8 .00 16 . 9 32 .9 56 19 .8 K= 8 .00 22 . 6 38 . 1 57 19 .3 K= 8 .00 33 .4 46 . 2 58 18 . 8 K= 8 . 00 41 . 5 51 . 6 59 19 . 5 K= 8 . 00 49 . 6 56 .4 60 20 .3 K= 8 . 00 42 . 0 51 . 8 61 21 .2 K= 8 . 00 39 .7 50 .4 62 21 .3 K= 8 . 00 11 . 5 27 . 1 63 20 . 8 K= 8 . 00 12 . 3 28 . 1 64 20 . 3 K= 8 . 00 14 . 7 30 . 6 65 19 . 8 K= 8 . 00 19 . 7 35 .5 66 19 . 3 K= 8 . 00 29 . 1 43 . 2 67 18 . 8 K= 8 . 00 39 . 1 50 . 0 68 19 . 3 - - - - 51 . 3 - - - 69 19 .3 - - - - 51 .4 - - - 70 19 . 3 - - - - 51 .4 - - - 71 18 . 8 - - - - 42 .4 - - - 72 18 . 8 - - - - 42 . 0 - - - 73 18 . 8 - - - - 43 . 1 - - - 74 18 . 8 - - - - 58 . 1 - - - 75 18 . 8 - - - - 58 .2 - - - 76 18 . 8 - - - - 58 .5 - - - 77 16 .7 - - - - 48 . 0 - - - 78 16 .7 - - - - 48 . 1 - - - 79 16 . 7 - - - - 48 . 7 - - - 33 21 . 8 - - - - 67 .4 - - - 34 21 . 8 - - - - 68 . 1 - - - 35 21 . 8 - - - - 69 .4 - - - TR 20 . 0 - - - - 70 . 6 - - - BR 0 . 0 HOSE STREAM 83 . 7 100 . 0 POC 0 . 0 - - - - 84 . 5 - - - SRC 50 . 0 SOURCE 64 . 0 1222 . 3 SPRINKLER SYSTEM HYDRAULIC ANALYSIS Page 3 Date : 12/09/1996 SKOLMBR2 .SDF JOB TITLE: SKOOKUM LUMBER - EXISTING BUILDING SPRINKLER ADDITION PIPE DATA PIPE TAG Q(GPM) DIA(IN) LENGTH PRESS . END ELEV. NOZ . PT DISC. VEL(FPS) HW (C) (FT) SUM. NODES (FT) (K) (PSI) (GPM) F.L./FT (PSI) Pipe : 41 154 . 0 1 .687 PL 2 .00 PF 4 .4 68 19 .3 0 . 0 51 .3 0 . 0 22 . 1 100 FTG E PE -0 . 1 41 19 .5 8 .0 46 . 8 54 . 7 0 .787 TL 5 . 58 PV 3 .3 Pipe : 42 99 .2 1 .452 PL 9 .50 PF 6 .9 41 19 .5 8 .0 46 . 8 54 . 7 19 . 2 100 FTG ---- PE -0 .4 42 20 .3 8 .0 39 . 6 50 . 3 0 . 725 TL 9 . 50 PV 2 .5 Pipe: 43 48 . 9 1 .452 PL 9 . 50 PF 1 .9 42 20 .3 8 . 0 39 . 6 50 . 3 9 . 5 100 FTG ---- PE -0 .4 43 21 .2 8 . 0 37 .4 48 . 9 0 .196 TL 9 .50 PV 0 . 6 Pipe : 44 -26 . 9 1 .452 PL 8 . 75 PF 0 .6 44 21 .3 8 . 0 11 . 3 26 . 9 5 .2 100 FTG ---- PE 0 .2 45 20 . 8 8 .0 12 .1 27 . 8 0 . 065 TL 8 .75 PV 0 .2 Pipe : 45 -54 . 7 1 .452 PL 8 .75 PF 2 . 1 45 20 . 8 8 . 0 12 .1 27 . 8 10 .6 100 FTG ---- PE 0 . 2 46 20 .3 8 .0 14 .4 30 .4 0 .241 TL 8 . 75 PV 0 . 8 Pipe : 46 -85 . 1 1 .452 PL 8 . 75 PF 4 . 8 46 20 .3 8 . 0 14 .4 30 .4 16 .5 100 FTG ---- PE 0 . 2 47 19 . 8 8 . 0 19 .4 35 .2 0 .546 TL 8 . 75 PV 1 . 8 Pipe : 47 -120 .4 1 .452 PL 8 . 75 PF 9 . 1 47 19 .8 8 . 0 19 .4 35 .2 23 . 3 100 FTG ---- PE 0 .2 48 19 . 3 8 . 0 28 . 7 42 . 9 1 . 036 TL 8 . 75 PV 3 . 7 Pipe: 48 -163 .2 1 . 687 PL 8 .25 PF 13 . 5 48 19 . 3 8 . 0 28 . 7 42 . 9 23 .4 100 FTG T PE 0 .2 71 18 . 8 0 . 0 42 .4 0 . 0 0 . 876 TL 15 .42 PV 3 . 7 Pipe : 49 49 . 7 1 . 104 PL 0 . 50 PF 3 . 9 71 18 . 8 0 .0 42 .4 0 . 0 16 . 6 100 FTG T PE 0 .0 49 18 . 8 8 .0 38 .5 49 . 7 0 . 765 TL 5 .08 PV 1 . 9 Pipe : 50 154 . 2 1 . 687 PL 2 . 00 PF 4 .4 69 19 . 3 0 . 0 51 .4 0 . 0 22 . 1 100 FTG E PE -0 . 1 50 19 .5 8 .0 46 .9 54 . 8 0 . 788 TL 5 .58 PV 3 . 3 Pipe : 51 99 . 3 1 .452 PL 9 . 50 PF 6 . 9 50 19 .5 8 .0 46 . 9 54 . 8 19 . 2 100 FTG ---- PE -0 .4 51 20 . 3 8 .0 39 . 7 50 .4 0 . 726 TL 9 . 50 PV 2 . 5 Pipe : 52 49 . 0 1 .452 PL 9 . 50 PF 1 .9 51 20 .3 8 . 0 39 .7 50 .4 9 . 5 100 FTG ---- PE -0 .4 52 21 .2 8 . 0 37 .4 49 . 0 0 . 196 TL 9 . 50 PV 0 . 6 Pipe : 53 -29 . 2 1 .452 PL 8 . 75 PF 0 . 7 53 21 .3 8 . 0 13 .3 29 .2 5 . 7 100 FTG ---- PE 0 .2 54 20 . 8 8 . 0 14 .2 30 . 2 0 .075 TL 8 . 75 PV 0 .2 SPRINKLER SYSTEM HYDRAULIC ANALYSIS Page 4 Date : 12/09/1996 SKOLMBR2 .SDF JOB TITLE: SKOOKUM LUMBER - EXISTING BUILDING SPRINKLER ADDITION PIPE DATA (cont . ) PIPE TAG Q(GPM) DIA(IN) LENGTH PRESS . END ELEV. NOZ . PT DISC. VEL (FPS) HW(C) (FT) SUM. NODES (FT) (K) (PSI) (GPM) F.L./FT (PSI) Pipe : 54 -59 .4 1 .452 PL 8 . 75 PF 2 . 5 54 20 .8 8 .0 14 .2 30 .2 11 . 5 100 FTG ---- PE 0 .2 55 20 .3 8 . 0 16 . 9 32 . 9 0 .280 TL 8 . 75 PV 0 . 9 Pipe : 55 -92 .3 1 .452 PL 8 .75 PF 5 .5 55 20 .3 8 . 0 16 .9 32 . 9 17 . 9 100 FTG - --- PE 0 . 2 56 19 . 8 8 . 0 22 .6 38 . 1 0 .633 TL 8 .75 PV 2 .2 Pipe: 56 -130 .3 1 .452 PL 8 . 75 PF 10 . 5 56 19 . 8 8 .0 22 . 6 38 . 1 25 .3 100 FTG ---- PE 0 .2 57 19 .3 8 .0 33 .4 46 .2 1.200 TL 8 .75 PV 4 . 3 Pipe: 57 -176 . 6 1 . 687 PL 8 .25 PF 8 .4 57 19 . 3 8 . 0 33 .4 46 .2 25 . 3 100 FTG ---- PE 0 .2 72 18 .8 0 . 0 42 . 0 0 . 0 1 . 013 TL 8 . 25 PV 4 .3 Pipe : 58 51 . 6 1 . 104 PL 0 .50 PF 0 .4 72 18 . 8 0 .0 42 .0 0 .0 17 . 3 100 FTG ---- PE 0 . 0 58 18 . 8 8 . 0 41 . 5 51 . 6 0 . 820 TL 0 . 50 PV 2 . 0 Pipe: 59 158 . 6 1 .687 PL 2 . 00 PF 1 .7 70 19 . 3 0 . 0 51 .4 0 .0 22 . 8 100 FTG ---- PE -0 . 1 59 19 .5 8 . 0 49 .6 56 .4 0 .831 TL 2 . 00 PV 3 .5 Pipe : 60 102 .2 1 .452 PL 9 . 50 PF 7 .3 59 19 .5 8 . 0 49 . 6 56 .4 19 . 8 100 FTG ---- PE -0 .4 60 20 . 3 8 . 0 42 . 0 51 . 8 0 . 766 TL 9 . 50 PV 2 .6 Pipe: 61 50 .4 1 .452 PL 9 . 50 PF 2 . 0 60 20 .3 8 . 0 42 . 0 51 . 8 9 . 8 100 FTG ---- PE -0 .4 61 21 .2 8 . 0 39 .7 50 .4 0 .207 TL 9 . 50 PV 0 . 6 Pipe: 62 -27 . 1 1 .452 PL 8 . 75 PF 0 . 6 62 21 . 3 8 .0 11 .5 27 . 1 5 . 3 100 FTG ---- PE 0 .2 63 20 .8 8 . 0 12 . 3 28 . 1 0 . 066 TL 8 . 75 PV 0 . 2 Pipe : 63 -55 .2 1 .452 PL 8 . 75 PF 2 . 1 63 20 . 8 8 . 0 12 .3 28 . 1 10 . 7 100 FTG ---- PE 0 .2 64 20 . 3 8 .0 14 .7 30 . 6 0 .245 TL 8 . 75 PV 0 . 8 Pipe : 64 -85 . 8 1 .452 PL 8 . 75 PF 4 . 8 64 20 . 3 8 .0 14 . 7 30 .6 16 . 6 100 FTG ---- PE 0 .2 65 19 . 8 8 .0 19 .7 35 . 5 0 . 554 TL 8 . 75 PV 1 . 9 Pipe : 65 -121 . 3 1 .452 PL 8 . 75 PF 9 .2 65 19 . 8 8 . 0 19 . 7 35 . 5 23 . 5 100 FTG ---- PE 0 . 2 66 19 .3 8 . 0 29 .1 43 .2 1 . 051 TL 8 . 75 PV 3 . 7 Pipe : 66 -164 . 5 1 . 687 PL 8 .25 PF 13 . 7 66 19 . 3 8 . 0 29 . 1 43 . 2 23 .6 100 FTG T PE 0 .2 73 18 . 8 0 . 0 43 . 1 0 . 0 0 . 889 TL 15 .42 PV 3 . 8 SPRINKLER SYSTEM HYDRAULIC ANALYSIS Page 5 Date : 12/09/1996 SKOLMBR2 .SDF JOB TITLE : SKOOKUM LUMBER - EXISTING BUILDING SPRINKLER ADDITION PIPE DATA (cont . ) PIPE TAG Q(GPM) DIA(IN) LENGTH PRESS . END ELEV. NOZ . PT DISC. VEL (FPS) HW(C) (FT) SUM. NODES (FT) (K) (PSI) (GPM) F.L./FT (PSI) Pipe : 67 50 . 0 1 . 104 PL 0 . 50 PF 3 . 9 73 18 .8 0 .0 43 .1 0 .0 16 . 8 100 FTG T PE 0 .0 67 18 .8 8 . 0 39 . 1 50 .0 0 .775 TL 5 .08 PV 1 . 9 Pipe : 68 -154 . 0 1 . 687 PL 1 . 16 PF 6 . 6 68 19 . 3 0 . 0 51 . 3 0 . 0 22 . 1 100 FTG T PE 0 . 2 74 18 . 8 0 . 0 58 .1 0 . 0 0 .787 TL 8 .33 PV 3 .3 Pipe: 69 -154 . 2 1 .687 PL 1 . 10 PF 6 .5 69 19 .3 0 .0 51 .4 0 . 0 22 . 1 100 FTG T PE 0 .2 7 75 18 . 8 0 . 0 58 . 2 0 . 0 0 . 788 TL 8 .27 PV 3 . 3 Pipe : 70 -158 .6 1 .687 PL 1 .08 PF 6 .9 70 19 . 3 0 .0 51 .4 0 .0 22 . 8 100 FTG T PE 0 .2 76 18 . 8 0 .0 58 .5 0 . 0 0 .831 TL 8 .25 PV 3 .5 Pipe: 71 -212 . 9 2 . 154 PL 1 .83 PF 4 . 6 71 18 . 8 0 . 0 42 .4 0 . 0 18 . 7 100 FTG T PE 0 .9 77 16 . 7 0 . 0 48 . 0 0 . 0 0 .436 TL 10 .55 PV 2 .4 Pipe: 72 -228 . 1 2 . 154 PL 1 . 83 PF 5 .2 72 18 . 8 0 . 0 42 . 0 0 . 0 20 . 1 100 FTG T PE 0 . 9 78 16 . 7 0 .0 48 .1 0 . 0 0 .495 TL 10 . 55 PV 2 .7 Pipe : 73 -214 . 6 2 . 154 PL 1 . 83 PF 4 . 7 73 18 . 8 0 . 0 43 .1 0 .0 18 .9 100 FTG T PE 0 . 9 79 16 . 7 0 .0 48 . 7 0 . 0 0 .442 TL 10 . 55 PV 2 .4 Pipe: 74 -154 . 0 4 . 352 PL 10 .25 PF 0 . 1 74 18 . 8 0 . 0 58 . 1 0 . 0 3 . 3 100 FTG ---- PE 0 . 0 75 18 .8 0 . 0 58 .2 0 . 0 0 . 008 TL 10 .25 PV 0 .1 Pipe : 75 -308 . 1 4 . 352 PL 10 . 25 PF 0 . 3 75 18 . 8 0 . 0 58 .2 0 . 0 6 . 6 100 FTG ---- PE 0 . 0 76 18 . 8 0 . 0 58 . 5 0 . 0 0 . 028 TL 10 . 25 PV 0 . 3 Pipe : 76 -466 . 7 4 .352 PL 86 .50 PF 10 . 3 76 18 . 8 0 . 0 58 . 5 0 . 0 10 . 1 100 FTG 4E2T PE -1 . 3 33 21 . 8 0 . 0 67 .4 0 . 0 0 . 061 TL 169 . 92 PV 0 .7 Pipe: 77 -212 . 9 4 .352 PL 10 .25 PF 0 . 1 77 16 . 7 0 . 0 48 .0 0 . 0 4 . 6 100 FTG ---- PE 0 . 0 78 16 . 7 0 . 0 48 . 1 0 . 0 0 . 014 TL 10 . 25 PV 0 . 1 Pipe : 78 -441 . 0 4 .352 PL 10 .25 PF 0 . 6 78 16 . 7 0 . 0 48 . 1 0 . 0 9 . 5 100 FTG ---- PE 0 . 0 79 16 . 7 0 . 0 48 . 7 0 . 0 0 . 055 TL 10 .25 PV 0 .6 Pipe : 79 -655 . 6 4 . 352 PL 101 . 83 PF 23 .4 79 16 .7 0 .0 48 .7 0 .0 14 . 1 100 FTG 4E3T PE -1 .4 TR 20 . 0 0 . 0 70 . 6 0 . 0 0 . 114 TL 206 .11 PV 1 . 3 SPRINKLER SYSTEM HYDRAULIC ANALYSIS Page 6 Date : 12/09/1996 SKOLMBR2 . SDF JOB TITLE: SKOOKUM LUMBER - EXISTING BUILDING SPRINKLER ADDITION PIPE DATA (cont . ) PIPE TAG Q (GPM) DIA(IN) LENGTH PRESS . END ELEV. NOZ . PT DISC. VEL (FPS) HW(C) (FT) SUM. NODES (FT) (K) (PSI) (GPM) F.L./FT (PSI) Pipe: 34 -466 .7 6 .357 PL 38 .50 PF 0 . 6 33 21 . 8 0 .0 67 .4 0 .0 4 .7 100 FTG T PE 0 .0 34 21 . 8 0 .0 68 . 1 0 . 0 0 . 010 TL 65 .42 PV 0 . 1 Pipe: 35 -466 .7 6 .357 PL 103 .00 PF 1 .4 34 21 . 8 0 .0 68 .1 0 . 0 4 . 7 100 FTG ET PE 0 . 0 35 21 . 8 0 . 0 69 .4 0 . 0 0 .010 TL 142 .48 PV 0 . 1 Pipe: 36 -466 . 7 6 . 357 PL 2 .80 PF 0 .4 35 21 . 8 0 .0 69 .4 0 . 0 4 . 7 100 FTG ET PE 0 . 8 TR 20 .0 0 .0 70 .6 0 . 0 0 . 010 TL 42 .28 PV 0 . 1 Pipe: 37 -1122 . 3 6 .357 PL 23 .00 PF 4 .4 TR 20 . 0 0 . 0 70 . 6 0 . 0 11 . 3 100 FTG ECBD PE 8 .7 BR 0 .0 H.S . 83 .7 100 . 0 0 .049 TL 90 .30 PV 0 . 9 Pipe : 38 -1222 . 3 8 . 510 PL 50 . 00 PF 0 . 9 BR 0 .0 H.S . 83 .7 100 . 0 6 . 9 140 FTG TG PE 0 . 0 POC 0 . 0 0 . 0 84 . 5 0 . 0 0 . 007 TL 117 . 13 PV 0 . 3 Pipe: 39 -1222 . 3 12 . 580 PL 865 . 00 PF 1 .1 POC 0 . 0 0 . 0 84 .5 0 . 0 3 .2 140 FTG ETG PE -21 . 7 SRC 50 .0 SRCE 64 . 0 (N/A) 0 .001 TL1015 .09 PV 0 . 1 NOTES : (1) Calculations were performed by the HASS 6 .1 . 0 computer program under license no. 4 C1324J granted by HRS Systems, Inc . 2193 Ranchwood Dr. , N.E . Atlanta, GA 30345 (2) The system has been balanced to provide an average imbalance at each node of 0 .002 gpm and a maximum imbalance at any node of 0 . 090 gpm. (3) Velocity pressures are printed for information only, and are not used in balancing the system. Maximum water velocity is 25 . 3 ft/sec at pipe 57 . SPRINKLER SYSTEM HYDRAULIC ANALYSIS Page 7 Date: 12/09/1996 SKOLMBR2 .SDF JOB TITLE: SKOOKUM LUMBER - EXISTING BUILDING SPRINKLER ADDITION (4) PIPE FITTINGS TABLE Pipe Table Name: STANDARD.PIP PAGE: * MATERIAL: S40 HWC: 120 Diameter Equivalent Fitting Lengths in Feet (in) E T L C B G A D Ell Tee LngEll ChkVly BfyVly GatVly AlmChk DPVly 1 . 104 2 . 57 6 .41 2 . 57 6 .41 7 .70 1 .28 12 . 83 12 .83 1 .452 3 . 84 7 . 69 2 .56 8 .97 7 .69 1 .28 12 . 81 12 .81 1 . 687 5 . 02 10 . 04 2 .51 11 . 30 7 . 53 1 . 26 12 .55 12 .55 2 . 154 6 .11 12 .22 3 .67 13 .45 7 .33 1 .22 12 .22 12 .22 4 . 352 14 . 61 29 .22 8 .77 32 . 14 17 .53 2 . 92 29 .22 14 . 61 6 .357 17 . 60 37 .72 11 .32 40 .23 12 .57 3 .77 35 .21 23 .89 8 . 510 23 .30 45 .30 16 . 83 58 .24 15 .53 5 . 18 45 .30 34 .94 12 .580 32 .76 72 .81 21 . 84 78 . 88 25 .48 7 .28 59 .46 42 .47 1 • SPRINKLER SYSTEM HYDRAULIC ANALYSIS Page 8 Date : 12/09/1996 SKOLMBR2 .SDF JOB TITLE: SKOOKUM LUMBER - EXISTING BUILDING SPRINKLER ADDITION WATER SUPPLY CURVE 84+ 77+ I 70+ X 63+ P 56+ R E S S 49+ U R E 42+ P S I 35+ 28+ 21+ 14+ LEGEND " X = Required Water Supply " 63 . 98 psi @ 1622 . 3 gpm " 7+ " 0 = Available Water Supply " 75 . 00 psi @ 1622 .3 gpm " n 0++-+---+----+-----+------+--------+--------+---------+-----------+ 400 600 800 1000 1200 1400 1600 1800 2000 FLOW (GPM) r _ � TFX500M.XLS BC-pgl FILE COPY THORN Autocall TFX-500M/800M Skookum Lumber Battery Calculation Worksheets New Planner Bldg. Publication Number 19700368 Issue 2,January, 1995 Standby Battery Capaciity 1. Battery Standby current(total of all standby (normal)loads). 1. 0.337060 A 2. Battery duty multiplier (a) Enter 26.4 for 24 hour standby(local protective signalling requirement) (b) Enter 66 for 60 hours standby(remote station protective signalling requirement) 2. X 26.4 hr 3. Multiply Line 1 by line 2. 3. 8.898384 Ah 4. Battery Alarm Current 4. 0.488635 A 5. Battery duty multiplier (a)Enter 0.084 for 5 minutes alarm(local protective signalling requirement) (b) Enter 0.167 for 10 minutes alarm (c) Enter 0.25 for 15 minutes alarm(requried if audio voice amplification is used) 5. X .084 hr 6. Multiply Line 4 by line 5. 6. 0.041045 Ah 7. Total (add Line 3 to Line 6). 7. 8.939429 Ah 8. Form Factor-Allowance for not totally charging batteries to capacity 8. X 1.10 9. Minimum nominal battery capacity required. Multiply Line 7 by Line 8. g. 9.833372 Ah \ Maximum standby battery capacity not to exceed 85 Ah. Be sure to include the 100mA current draw fo the RPS-424 in alarm and standby current draw calculations Page 1 Creation Date 12/4/96 10:55 AM r t TFX50OM.XLS Battery Calculation Worksheets The following current draw values have been adjusted for power supply charging efficiency and other system variables. They are all expressed as equivalent current draw from the 24 VDC supply. Suggestion: Duplicate this sheet and use one sheet for each panel enclosure. Control Panel: # 1 Control Panel Module Loads Modules Normal Condition Alarm Condition Load = Total Load T= Total Number x 1(mA) I Number x (mA) RPS-424 Power Supply 1 1Q0.00 100.00 1 100.00 100.00 Main Processor Board 1 98.00 98.00 1 175.00 175.00 MPIM Multi-Purpose VF Module 1 19.00 19.00 1 24.00 24.00 FCM Fire Control Module(without MPIM) 1 10.00 10.00 1 10.00 10.00 ODM Operator Display Module 1 1 1 32.00 32.00 1 32.00 1 32.00 16 Indicator Module 1 9.00 9.00 1 34.00 34.00 80 Indicator Module - 9.00 0.00 - 234.00 0.00 40 x 2 Indicator Module(without MPIM) - 8.00 0.00 - 96.00 0.00 40 Status Module(without MPIM) 1 7.00 7.00 1 51.00 51.001 Expansion Motherboard 22.00 0.00 - 20.00 0.00 LXM Loop Expansion Module 50.00 0.00 50.00 0.00 IOM Expansion 110 Module - 4.00 0.00 4.00 0.00 ARM-500 Auxiliary Relay Module 1 5.00 5.00 1 5.00 5.00 ARM-500 Auxiliary Relay Module, each energized relay in above 2 27.00 54.00 2 27.00 54.00 PIM-550 Printer Interface Module - 28.00 0.00 - 28.00 0.00 TLI-530 Network Interface Board 150.00 0.00 150.00 0.00 I XA Interface Board 20.00 0.00 20.00 0.00 TLB-530 ThornNet Baseboard 0.00 0.00 0.00 0.00 TLA-530 ThornNet Adapter 0.00 0.00 0.00 0.00 LO-530 Fiber Optic Modem 125.00 0.00 - 125.00 0.00 CEB-500 City Box Transmitter 1.90 0.00 - 16.00 0.00 CVB-500 Reverse Polarity Transmitter 5.70 0.00 21,00 0.00 SRA-550 DACT Interface Module 10.00 0.00 - 30.00 0.00 SK-5128 Digital Alarm Communicator 143.00 0.00 227.00 0.00 Other 0.00 0.00 0.00 0.00 Other 0.00 0.00 0.00 0.00 Totals for Control Panel#1 334.00 485,00 Page 2 of 5 Creation Date 12/4/96 10:55 AM TFX500M.XLS Battery Calculation Worksheets The following current draw values have been adjusted for power supply charging efficiency and other system variables. They are all expressed as equivalent current draw from the 24 VDC supply. Suggestion: Duplicate this sheet and use one sheet for each 2-way circuit. 2-Way Data Circuit Loop#A 2-Way Data Circuit Module Loads Modules Normal Condition Alarm Condition (Detectors Include base) Load = Total Load = Total Number x 1(mA) I Number I x 1(mA) IBN-512A Analog/Addressable Detector Base - 0.23 0.00 0.23 0.00 ISA-412P Addressable Photoelectronic Detector - 0.22 0.00 0.22 0.00 ISA-4121 Addressable Ion Chamber Detector - 0.18 0.00 0.18 0.00 ISN-512P Analog/Addr. Photoelectric Sensor - 0.22 0.00 0.22 0.00 ISN-5121 Analog/Addy. Ion Chamber Sensor - 0.18 0.00 0.18 0.00 ISN-550P Analog/Addy. Photoelectronic Detector - 0.30 0.00 - 4.20 0.00 ISN-5501 Analog/Addr. Ionization Detector - 0.20 0.00 4.00 (x10%) 0.00 IHN-135 Analog/Addy. Heat Sensor - 0.25 0.00 - 3.90 0.00 IHN-200 Analog/Addy. Heat Sensor - 0.30 0.00 4.50 (xl0%) 0.00 IXA-500CM Contact Module 0.18 0.00 - 0.181 0.00 IXA-500CMA Contact Module 14 0.18 2.52 14 0.18 2.52 IXA-501 CM Mini-Contact Module - 0.18 0.00 - 0.18 0.00 IXA-500DM Conventional Detector Module 0.18 aw - 0.70 0.00 IXA-500DMA Conventional Detector Module - 18.00 0.00 - 74.00 0.00 CAA-500LI Line Isolator Module - 2.70 0.00 - 2.70 0.00 OXA-500RM Relay Module 3 0.18 0.54 3 1 0.18 0.54 OXA-500SD Signal Driver Module - 8.20 0.00 - 45.00 0.00 OXA-504SDA Signal Driver Module#1 10.00 1 0.00 - 150.00 0.00 load on SDA Module#1 0.00 0.00 - 0.97 0.00 OXA-504SDA Signal Driver Module#2 10.00 0.00 - 150.00 0.00 load on SDA Module#2 0.00 0.00 - 0.23 0.00 OXA-504SDA Signal Driver Module#3 10.00 0.00 - 150.00 0.00 load on SDA Module#3 0.00 0.00 - 0.67 0.00 OXA-504SDA Signal Driver Module#4 10.00 0.00 - 150.00 0.00 Load on SDA Module#4 - 0.00 0.00 - 0.58 0.58 OXA-500SB Signal Expander Module - 86.00 0.00 - 91.00 0.00 Load on OXA-500SB Module - 0.00 0.00 - 0.00 0.00 ISC-350P Photo Smoke Det. - 0.11 0.00 - 0.00 0.00 Other - 0.00 0.00 - 0.00 0.00 Other - 0.00 0.00 - 0.00 0. Totals for Loop A 3.06 3. 'Maximum additional alarm current of 50 mA per loop to activate maximum of 5 device LED's (after 5 alarms on the loop, the system does not light any more LED's on the loop) Page 3 of 5 Creation Date 12/4/96 10:55 AM TFX500M.XLS Battery Calculation Worksheets The following current draw values have been adjusted for power supply charging efficiency and other system variables. They are all expressed as equivalent current draw from the 24 VDC supply. Suggestion: Duplicate this sheet and use one sheet for each 2-way circuit. 2-Way Data Circuit Loop#B 2-Way Data Circuit Module Loads Modules Normal Condition Alarm Condition (Detectors Include base) Load = Total Load = Total Number x 1(mA) Number x 1(mA) IBN-512A Analog/Addressable Detector Base 0.23 0.00 0.23 O.DO ISA-412P Addressable Photoelectronic Detector 0.22 0.00 - 0.22 0.Do ISA-4121 Addressable Ion Chamber Detector 0.18 0.00 - 0.18 0.00 ISN-512P Analog/Addy. Photoelectric Sensor 0.22 0.00 - 0.22 0.00 ISN-5121 Analog/Addr.Ion Chamber Sensor 0.18 0.00 - 0.18 0.00 ISN-550P Analog/Addr. Photoelectronic Detector 0.30 0.00 4.20 0.00 ISN-5501 Analog/Addr. Ionization Detector 0.20 0.00 4.00 0.00 IHN-135 Analog/Addr, Heat Sensor 0.25 0.00 3.90 0.00 IHN-200 Analog/Addr, Heat Sensor 0.30 0.00 - 4.501 0. IXA-500CM Contact Module 0.18 0.00 0.18 0.00 IXA-500CMA Contact Module - 0.18 0.00 0.18 0.00 IXA-501 CM Mini-Contact Module - 0.18 0.00 0.18 0.00 IXA-500DM Conventional Detector Module - 20.00 0.00 - 0.12 0.00 IXA-500DMA Conventional Detector Module - 18.00 0.00 - 74.00 1 0. CAA-500L1 Line Isolator Module - 2.70 0.00 - 2.70 0. OXA-500RM Relay Module - 0.18 0.00 - 0.18 0. OXA-500SD Signal Driver Module - 8.20 0.00 - 45.00 0.00 OXA-504SDA Signal Driver Module#1 - 10.00 0.00 - 150.00 0.Go load on SDA Module#1 - 0.00 0.00 0.531 0.00 OXA-504SDA Signal Driver Module#2 - 10.00 0.00 150.00 0.00 load on SDA Module#2 - 0.00 0.00 - 0.81 0.00 OXA-504SDA Signal Driver Module#3 - 10.00 0.00 - 150.00 0.00 load on SDA Module#3 - 0.00 0.00 - 1.18 0.00 OXA-504SDA Signal Driver Module#4 - 10.00 0.00 - 150.00 0.00 Load on SDA Module#4 - 0.00 0.00 - 0.46 0. OXA-500SB Signal Expander Module - 86.00 0.00 - 91.00 0. Load on OXA-500SB Module - 0.00 0.00 - 0.00 0. Other - 0.00 0.00 - 1 0.00 0. Other - 0.00 0.00 - 0.00 0AOOO Other - 0.00 0.00 - 0.00 Totals for Loop B 0.00 'Maximum additional alarm current of 50 mA per loop to activate maximum of 5 device LED's (after 5 alarms on the loop, the system does not light any more LED's on the loop) Page 4 of 5 Creation Date 12/4/96 10:55 AM TFX500MXLS Sheetl Worksheet for calculation of totals from loops A & B plus Control panel load Standby Current Alarm Current Loop A 3.060 3.635 Loop B .000 .000 Ctl Panel 334.000 485.000 Total Standby 337.060 Total Alarm 488.635 (Milliamps) (Milliamps) Total Amps= 0.337060 Total Amps= 0.488635 (to line 1 BC-pgl) (to line 4 BC-pgl) Page 5 Revision Date 12/4/96 10:55 AM n Grinnell m FILE COPY C� "Div'may FIRE PROTECTION SYSTEMS COMPANY 1215 Central Avenue So., Suite 128 Kent, Washington 98032-7425 Tel: (206) 859-5066 Fax: (206) 859-5255 Contractor's License No. GRINNFP137LE DATA SUBMITTAL : SKOOKUM LUMBER CO. NEW PLANNER BUILDING FIRE ALARM SYSTEM JOB NO. : 152-3086399-R1 DATE : 12-2-96 ADDRESSABLE FIRE ALARM CONTROL PANEL TFX-500M ADDRESSABLE RELAY MODULE ARM-500 DELUGE RELEASE PANBL 442D AUDIBLE SIGNAL EXPANDER PANEL 5395 ALARM HORN-HORN/ STROBE MT4-24/MT4-LSM ALAI M STROBE LIGHT MAX-24-R ADDRESSABLE RELAY MODULE OXA-50ORM ADDRESSABLE C614fACT MONITOR MODULE IXA-506tMA ADDRESSABLE PULL STATION D A-4050 WEATHERPROOF��A&ECTIVE COVER STI-3150 CENTRAL STATION MONITORING PANEL D7212-BB DIVISION OF GRINNELL CORPORATION FIDE ALARM AND VOICE ALARM SYSTEMS E AUTOCALL TFX-500MV/800MV ■ Conventional and in Degrade Mode in TFX-800M/ General Information Analog Addressable MV Operates Evacuation Sig- Two versions, the AUTOCALL TFX-500M/ Fire Detection nals if CPU Failure Occurs Be- 800M and -500MV/800MV comprise the AU- ■ 198 Analog or Ad- fore or During an Alarm TOCALL TFX family of self-contained con- dressable Initiating ■ Smoke Detector Condition trols for fire alarm and detection from Thorn and Output Devices Monitoring with Automatic Automated Systems. AUTOCALL TFX-500M Plus 1600 Discrete Environmental Compensation Provides up to 198 analog/addressable initi- ating and output devices, while the AUTO- Inputs or Outputs ■ Historical Event Log for View CALL TFX-800M expands the capacity to (TFX-500M/MV) or Print 990 devices. The basic system hardware ■ 990 Analog or Ad- ■ Fully Site Programmable and software is common for both AUTO- dressable Initiating CALL TFX-500M and TFX-800M, therefore and Output Devices ■ Solo Test and Alarm Verifica- the 500M can be expanded to an 800M Plus 1100 Discrete tion Per Group or Point on-site. Inputs or Outputs ■ Six Access Levels with The AUTOCALL TFX-500MV/800MV pro- (TFX-80OM/MV) Unique 0911 Fire Department vide voice alarm (audio) capability and two- ■ TFX-50OM/MV May Access way Firefighter's Telephone communications. Be Expanded to In Automatic and Manual Detec- AUTOCALL TFX controls are designed to TFX-800M/MV On- for Sensitivity Adjustment be used with conventional or analog-addres- sable fire detection devices, in any combina- ■ Alarm Resound by Zone or tion. Engineered with advanced micropro- ■ 80 Character LCD Device cessor technology, these fire control panels Display; 40 User De- ■ Modular, Expandable provide a dynamic level of applications flex- fined Message ■ Integral Voice Alarm and ibility. Thorn's exclusive CONSYS software Characters g configuration tool for site-specific user pro- Two-Way Firefighter's Tele. gramming easily guides the trained installer ■ Power Limited, All phone Option (TFX-500MV/ through a menu-prompted decision process. Circuits 800MV) ■ Integral LED Zonal ■ UL 864 Listed for Local, Aux- System Features or Group Annuncia- iliary, Remote Station and With state-of-the-art technologies, com- tor Proprietary Receiving Station plexity is eliminated. The AUTOCALL Service (File S2561) TFX-500M/MV and TFX-800M/MV share a common power supply, main processor board and enclosures. The AUTOCALL TFX- 500M/MV includes two (2) analog-address- able signaling line circuits, 99 points each. The AUTOCALL TFX-800M/MV adds an ex- pansion motherboard and 2-loop expander boards. This allows a maximum capacity of Please note that UL Listings and other regulatory 10 signaling line circuits, 99 points each, 990 affairs information maybe found under Thorn or total points. Autocall,Inc.which are now doing business as a single entity-Thorn Automated Systems,Inc. All approvals are subject to re-examination,re- visions and possible cancellation. 835 Sharon Drive,Westlake,Ohio 44145 ---- TL 1OT�1�T Phone:(216)871-8320 11 AUTOMATED SYSTEMS FAX(216)871 8320 230/0495 The AUTOCALL TFX-800M/MV fea- Thorn AUTOCALL TFX-500M Operator Interface tures a unique multi-processor design with degrade mode operation. In the event that an alarm occurs during a CPU failure, visual and audible evacua- tion signals will be activated through the intelligence of the addressable loop expansion modules. AUTOCALL TFX panels provide flex- ible operator displays including a back- lit LCD and field-configurable LED an- K © © F H o E nunciators. The LED annunciators serve as simple, quick identifiers of fire, X0 ROWER trouble and supervisory events by ❑ FIRE O PANEL SILENC 23 JAi 9i 22s1?e©2RW zone, group or device, while the LCD B TROUBLE ALARM 9ILENC provides user-defined text messages of © OSUPERVISOR SYSTEM RESE f DELETE ENTER event type and precise location. DRILL Up to seven (7) remote operation and ENABLE FAST display panels may be connected to a °DI7"CCES TFX-800M/MV panel, and up to four (4) remote panels may be connected to a TFX-500M/MV. These remote panels may be configured to duplicate the LED and LCD displays, control switch func- tions and voice alarm microphone and firefighter's telephone. The AUTOCALL TFX panels provide continuous detector sensitivity monitor- ing, with automatic compensation for environmental influences (when used with Thorn 550 series analog type smoke sensors). Alarm and pre-alarm threshold smoke levels may be defined per device and may be automatically or manually switched between multiple sensitivities based on time-of-day, day- of-week, or date. Exclusive CONSYS configuration soft- ware provides user defined control logic which combines input signals with appropriate response outputs for a A. FIRE ALARM LED—red K. POWER LED—green wide range of simple to complex sys- B. TROUBLE LED—yellow L. QUIT touch-button C. SUPERVISORY LED—yellow M. FAST ACCESS touch-button tems. D. ZONE ALARM LED—red N. NUMERIC touch-pad Up to 1600 discrete contact inputs E. ZONE TROUBLE LED—yellow 0. KEYSWITCH F. ALPHANUMERIC DISPLAY P. PANEL SILENCE touch-button and voltage outputs In any combina- G. NO/DELETE touch-button Q. ALARM SILENCE touch-button tlon, may be configured into the TFX H. SCROLL UP touch-button R. SYSTEM RESET touch-button system. These are typically used for L SCROLL DOWN touch-button S. DRILL touch-button audio evacuation and HVAC control J. YES/ENTER touch-button T. LAMP TEST switches and annunciation LED's at the main or remote control panels. Use with new and existing circuits of conventional 2- or 4-wire smoke detec- tors, interfaced via IXA-50ODMA Ad- dressable Detector Monitor placed at any location along an analog-address- able communications loop. Each con- ventional circuit is completely super- vised by the AUTOCALL TFX control for 2- or 4-wire applications. 2 P © F H I POWER A NPE O ruNL rinc 23 aatu 99 Tw_ 7-62 MY NLENL © 6UIERNSON BKTEY NESE 8 PFLFiE EH ENABLE LL T Frr.O ® DUt ACCE66 R 0 S N G L M J E ®®®®®®®®®® O468TATUS CONTROL MODULE F V A. FIRE ALARM LED—red H. SCROLL UP touch-button O. KEYSWITCH B. TROUBLE LED—yellow I. SCROLL DOWN touch-button P. PANEL SILENCE toucri-button C. SUPERVISORY LED—yellow J. YES/ENTER touch-button O. ALARM SILENCE touch-button D. ZONE ALARM LED—red K. POWER LED—green R. SYSTEM RESET touch-button E. ZONE TROUBLE LED—yellow L. QUIT touch-button S. DRILL touch-button F. ALPHANUMERIC DISPLAY M. FAST ACCESS touch-button T. LAMP TEST G. NO/DELETE touch-button N. NUMERIC touch-pad U. Control Switch/Status ILndicator V. Microphone and Fire-Fighter's Telephone Thorn AUTOCALL TFX-800MV Operator Interface 3 I i The AUTOCALL TFX offers a UL Other options include redundant -The test reminder alerts the owner I Listed Alarm Verification feature for use (backup) audio amplifiers which auto- that the system is due for scheduled with connected circuits of conventional matically switch over in the event of a maintenance and testing. -500DMA) or any primary amp smoke detection (IXAlifier failure, distributed am- The AUTOCALL TFX features an 550 series Thorn analog-addressable plifiers for large systems, and multiple RS-485 Remote Bus for connection to smoke or heat detector. Fire Command Stations when control of various functions including remote op- The AUTOCALL TFX system logs any the system from multiple locations is eration and display panels. Remote op- e all of alarm, trouble or supervisory events desired. eration and display panels provid into electronic memory with time and The TFX-500MV and -800MV are the functions available at the main date stamp. These events may be dis- completely field-configurable. Due to panel, including LED annunciator, LCD played or printed for review and analy- their flexibility, these systems can pro- display and control switches. sis. vide a wide variety of operating se- Other remote bus functions include Coincidence alarm grouping (cross- quences, to meet virtually any site re- remote printers (up to 16) for hard copy zoning) relates multiple device actua- quirements. log of system events, and discrete in- tions before confirmation of "alarm" oc- Commissioning and Service puts and outputs for annunciation and curs. Select the number (2, 3 or 4) of controls. Remote bus functions may be Features up to 4000 feet away from the main successive device actuations required A full complement of features are panel. to trigger an output response. The user may define different coded available in the AUTOCALL TFX system System Components patterns to audible and visual signal which facilitate commissioning and ser- circuits. These patterns are typically vice. The system components are identical used to differentiate between "alert" -The solo test function allows testing for the AUTOCALL TFX-500M and t for the TFX-800's and "evacuate" conditions. They may of all initiating devices (detectors, pull -800M versions, except also be used as auxiliary signals, such stations, etc.) and indicating appliances Addressable Loop Expansion Module as tornado warnings. (bells, horns, strobes, speakers) by one and Motherboard. Each panel consists technician. of backbox(es), backbox electronic AUTOCALL TFX-500M and -800M are -The commissioning mode may be assembly(ies) and door assembly(ies). modular by design. One or more an- selected during commissioning and Backboxes - The AUTOCALL nunciation modules can be configured service to provide quicker response to TFX-500M and -800M control panel ver- into the system for status indication of fault conditions introduced to test su- sions share a common family of points, zones, type of alarm or other pervision. This reduces service time backboxes in various sizes. Backboxes user-selected functions. Switch mod- and saves on system life cycle cost. may be ordered separately to allow for ules may be configured for control of -The AUTOCALL TFX has 350 series electrical "rough-in" during construc- HVAC fans, dampers, door holders, tion. System electronics are mounted alarm signaling circuits or other control and 550 series detectors that are on removable rails (for installation in the points as required. unique in their capability to provide ser- backbox) or on the door for user inter- Enclosures are available in three dif- vice-from-the-floor. Almost any testing face and annunciation. ferent sizes to accommodate systems or maintenance function, including re- Since the AUTOCALL TFX-500M and of all sizes. re- moval and installation of the detector head, may be performed without the -800M are modular, backboxes are fur- Audio Alarm and Evacuation need for ladders and the disruption of nished in 3- and 7-module sizes. (5- The AUTOCALL TFX-500MV and moving furniture or other objects out of module boxes are available by special MV provide single channel voice the way. The address of the 550 series order.) date specific size is selected to ac- - g analo detectors' may be determined commodate specific system require- (audio) alarm and evacuation systems. g ments, including multiple power sup- Tone,Tone, recorded voice messages and from the floor by simply viewing the g t p p- X ert addressing card. plies, input and output modules, and live voice instructions may be broad- p g batteries. cast automatically and manually to se- -The 550 series analog detectors lected zones for controlled evacuation have their addresses in the base. De- purposes. Auxiliary tones may also be tector heads may be removed, serviced broadcast to signal emergencies such and replaced without the need for ye- as tornado warnings. programming the system or dealing In a typical configuration, messages with rotary or DIP addressing switches. are broadcast to those areas which are The possibility of duplicate addressing intimate with the detected fire emer- is virtually eliminated. gency, usually to the floor of incidence, -Detailed diagnostics are displayed the floor above and the floor below. The on the LCD display during alarm, su- message typically begins with a brief pervisory and trouble events. These alert tone, followed by recorded voice diagnostics reduce troubleshooting and evacuation instructions. response time. 4 Door Assemblies - Door assem- jle The IIB-800 Loop Expansion Board blies are available in various sizes to -" enables two (2) analog-addressable match backboxes. The door assem- signaling line circuits. The IIB-800 blies consist of a main door which processes signals received from all holds operator interface modules, and devices on each circuit. Each IIB-800 is an optional transparent outer door. A interfaced via the motherboard to the special dual-key lock accommodates r TFX panel main processor. an operator's key and a maintenance key. The operator's key opens an op- tional transparent outer door for access to system controls. The maintenance key opens the outer and inner doors for •FIRE• access to system electronics as well as the controls. If the transparent outer ■ �„ ,,, door is not used, a keyswitch is avail- able to prevent unauthorized access to system controls. a (MPIM) - The MPIM serves as the Backbox Electronic Assemblies communications interface between the Power Supply - The AUTOCALL TFX main processor and various system pe Fire- system's power supply provides fully ripherals not on the addressable loops The F M 500 Control M uleommoM 5 00) supervised operation, and batter (ie. front door displays, switches, and provides p y zonal LEDs, printers, auxiliary relays, trouble and supervisory annunciation monitoring and charging functions. LED's, as well as control switches for Power supply outputs include 5 and etc) Each MPIM is user defined for the 12VDC for system electronics, as well specific, functional personality, based SILENCE, RESET, DRILL and LAMP as 24VDC power for field devices. upon type of peripherals to be inter- TEST. Labels for each control switch Three (3) output circuits provide 24VDC faced. The MPIM and associated pe- may be field-customized in languages power, rated at 2 amps, (two circuits) ripherals may be used in local or re- other than English, or to meet other site and 4 amps (one circuit). The com- mote mode at distances up to 4000 requirements. bined total of these three circuits is feet (RS485 Remote Bus) rated at 5 amps, 24VDC. All output cir- cuits are power limited. Multi-Purpose Interface Module "s Operator Display Module IIB-800 (ODM-500) - The ODM-500 provides Expansion Motherboard and an 80-character backlit LCD for display Loop Expansion Board - The of detailed alarm and trouble mes- sages.IAM-800 Expansion Motherboard and An operator's eventkeypa a the user to acknowledge events, make in- IIB-800 Loop Expansion Boards are quiries and view system status. The .............................. used only for AUTOCALL TFX-800 pan- real-time clock and date settings are _. els and provide the expansion flexibility set and changed from the keypad as for 1 5) IIB- points ( nsi loops). Up to well. All functions are password pro- five (5) IIB-800 expansion boards may tected. IAM-800 mount to the IAM-800 motherboard, two (2) loops each. Alarm indicating circuits on each loop operate indepen- dently if the main processor fails for a degraded system operation. 5 Functions available at the ODM-500 �® include: i - Per point annunciation of alarm and trouble events -View and acknowledge events - which have not restored to normal. 16 Status Control Module 8 Amp Power Supply -Force outputs on. -View smoke detector analog values and perform sensitivity checks, per 16 and 40 Status Control Mod- Power Supplies are used with the NFPA 72 requirements. ules - These modules provide field- Amplifier Modules. The P/N 5290-027 -View event history log. configurable switches for control of provides 8 amps of power at 24VDC. -Isolate zones and points. dampers, fans, zone or point discon- The P/N 5200-459 provides 12 amps of -Enable Solo Test Mode nects, and other functions to meet sys- power at 24VDC. The 5200-516 pro- tem requirements. Switches are the vides 3.5 amps of power at 24VDC and -Enable Maintenance Mode membrane type. A field-configurable also charges and supervises standby -Print status and maintenance re- LED is located adjacent to each switch, batteries. ports. and may be assigned to indicate the status of any configurable control point. (The LED need not be controlled di- rectly by the adjacent switch.) LED's are removable; colors may be selected for specific system requirements. Label spaces are provided for each switch/ LED for custom identification. O Signal Generator Module con- tains solid state tone voice generated 16 Indicator Module 150 Watt Amplifier modules. Plug-in slots are provided for one fire tone, one backup fire tone, and two auxiliary tone generators. The fire tone generator is continuously super- Amplifier Modules provides two vised for tone output. If the main tone 25VRMS or 70VRMS supervised audio generator fails, the system has the ca- output circuits to drive fire alarm speak- pability to switch over to an optional ers. Total power output of each ampli- backup tone generator. The Signal Gen- fier is 150 watts when used with P/N erator Module also incorporates voice 5290-026/027 power supplies or 120 communication inputs for the micro- 80 Indicator Module watts when used with P/N 5200-459 phone and digitized message module. power supplies. 16- and 80-Indicator Modules Amplifiers contain only solid state components for reliable operation. If These modules provide field- necessary, the amplifiers may be wired configurable LED's for annunciation by for redundant operation, where one am- zone, group, device type or point. plifier may back up from 1 to 5 main Since LED's are bi-colored (red and amplifiers. During battery standby, am- yellow), each LED may be configured to plifiers may be shut down automatically annunciate alarm and trouble. Label to conserve power until needed by the space is provided with each LED for system for tone or voice communication. custom identification. 40x2 Indicator Module - This module provides 80 indicating LED's in red and yellow "pairs" for alarm and trouble annunciation by point, zone or group. A single label space is provided for each pair of LEDs, for custom identi- fication. 6 Tone Generator Modules The tone generator modules plug into the signal generator module and pro- vide a variety of alarm signaling tones: •WAIL (TM1)ascends from 600 Hz to 1250 Hz in 7.5 seconds (Conven- tional siren). •YELP (TM2)ascends from 600 Hz to 1250 Hz in .25 seconds. •HI-LO (TM3)alternates from 560 Hz to 760 Hz in 1.2 second cycles. Fire Communications Module - OW (TM5)descends from 1200 This module provides a microphone with *YE OW 600 Hz in 1.5 second cycles. Push-to-talk switch, for broadcasting live instructions to selected zones. •HORN (TM6)is a steady 470 Hz tone which may be pulsed by the sys- tem to provide a coded signal. •BEEP (TM7) is a slow .5 second on, .5 second off tone at 470 Hz. •STUTTER (TMS) is a rapid .1 sec- ond on, .1 second off tone at 470 Hz. •SLOW WHOOP (TM9)ascends Mod- from 500 Hz to 1200 Hz in 3.7 sec- Master Communications Mod- onds with a .4 second pause between ule (MCM-500) - This module pro- cycles. vides a microphone with push-to-talk switch, for broadcasting live instruc- •FIRE ALARM WHOOP (TM11*A) tions to selected zones. A master tele- is the Uniform Code 3 Temporal Pat- phone for two-way firefighter's tele- tern as recommended by NFPA 72. It phone communications is provided as ascends from 500 Hz to 1200 Hz in 1 an option. When provided, the master second with a .5 second pause be- telephone occupies the same module tween cycles. Cycles sound three slot on the door assembly as the micro- times and then pause for 3 seconds phone. Using switches on the Status before sounding again. Control Modules, the operator may se- lect speaker circuits for broadcast of live voice instructions, connect to in- coming calls on the firefighter's tele- phone circuit, and connect any fire- fighter's telephone directly to any speaker circuit, allowing broadcast of live voice instructions from the fire- fighter's telephone system. Digital Message Module - This module provides a digitally recorded custom voice message up to 40 sec- onds in duration. The message may be configured to play immediately upon receipt of an alarm, or after a brief alert tone. The message may be repeated for a preset number of intervals, or may be configured to repeat continuously. 7 FIDE ALARM AND VOICE ALARM SYSTEMS • so Specifications AUTOCALL TFX-500M/MV and-800M/MV are intended for use within a building interior, free from exposure to moisture, condensation and excessive dust. Temperature Range: 32°F(0°C)to 1220F(49°C) Relative Humidity: 85% (non-condensing) Analog-Addressable Signaling Lines Loop Styles: NFPA 72 Style 4 and 6. Line isolators optional for short circuit isolation. Maximum Addresses per Loop: 99 Maximum Loops per System: Two(2)for the AUTOCALL TFX-500M/MV, ten (10)for the AUTOCALL TFX-800M/MV Compatible Devices: Thorn Series ISA-412, 550 Series, Series ISN-512,APS-500, CAA-500LI, IXA-500CMA, IXA-500DMA, OXA-500RM, and OXA-500SDA. Voltage: 26VDC, 300mA Supervisory Current: 20mA per loop (plus load) Alarm Current: 24mA per loop (plus load) Resistance: Maximum 75 Ohms Capacitance: Maximum 0.5 microfarad (mutual) Inductance: Maximum 1.5 millihenry(total) Maximum Continuous Distance: 6500 feet Please reference both the model and part numbers when ordering. These instructions do not purport to cover all the details or variations in the equipment described, nor do they provide for every possible contingency to be met in connection with installation,operation and maintenance.All specifications subject to change without notice.Should further information be desired or should particular problems arise which are not covered sufficiently for the purchaser's purposes,the matter should be referred to Thorn,Westlake,Ohio 44145.©1995 Thorn Automated Systems,Inc. 835 Sharon Drive,Westlake,Ohio 44145 TT TO^_ _ bi• H ��l�Vl Phone:(216)871-9900 l AUTOMATED SYSTEMS FAX(216)871-8320 230/0495 r, AUXILIARY (BELAY MODULE 1 F t1� it lag li Ft f ■ Provides 8 Individ- General Information Installation and Wiring ually Programmable Thorn Automated Systems' ARM-500 relay The ARM-500 mounts in either the Relay Contacts module provides field programmable relays AUTOCALL TFX panel enclosure, a local or ■ Normally Open or for auxiliary control functions. The contacts remote AUTOCALL TFX display panel Normally Closed may be configured for normally open or nor- enclosure, or a suitable listed enclosure. It Contact Configura- mally closed operation via programming connects to the expansion bus of a multi- tion jumpers. Each relay contact can be inde- purpose interface module. Up to five (5) D's Indicate Indi- pendently programmed to operate in co'- modules may be connected to a single ■ LE vi Relay Opera- e designed unction with any single or group of input MPIM exan bus. The modules are tion mount "piggy-back" on each Eight (8) status LED's on the module indi- other to conserve space. ■ UL File No. S2561 cate operation of each relay contact, anc a Testing and Maintenance ■ FM ID No. ninth LED indicates the presence of ope,at Routine functional tests may be per JI OX2A8.AY g power.The ARM-500 module may be mounter formed by providing the appropriate input fy ■ NY MEA No. 415-92-E either inside the AUTOCALL TFX control to the AUTOCALL TFX system and verifying ■ CSFM No. panel, or up to 4000 feet remote from the relay operation. 7165-0062:161 panel through the system's RS-485 remote communication bus. A Multi-Purpose Inte•- face Module (MPIM) is required for come--- nications interface with the remote bus. L z to five (5) ARM-500 modules may be cor- nected to a single MPIM in one location. The ARM-500 requires external 24VDC power from a listed supply for relay operat- ing power, usually from the AUTOCALL T=X system's Addressable Power Supply or AC Power Module. The module supervises try presence of this power. Rease note Ma!LIL Listings and other regulatory m m affairs Inforatior may be found under m Tho or Aulocall,Jim whon are now doing business as a single entity-Thom Automated 5yslams.Inc Ali apprcvWs are sublecl to rce�ramnehon.re- visrons anc Mssrble cancellat 835 Sharon Drive,Westlake,Ohio 44145 THORN- Phone:(216)871-9900 AUTOMATED SYSTEMS FAX(216)871 8320fill 214/1294 AUXILIARY (BELAY MODULE a d 1"NOMMA 1 • LEDs (i PER OUTPUT) NOTE 4 COMMON TB YO NOTE 6 � \ PM 97ARM500 JACK FOR CONNECTION fi01� TO MPIM EXPANSION 2,v GO BUS NOTE LO io gON.C.1% K1 EXPANSION BUS N.O. LAST BOARD JUMPER POWER LED PO LAST D NOTE 2 NOTE a c N c. K2 CONO�` - T , oO N.C. 'r 13 1 O Ot n N.O.�y Q C,p� JACK FOR CONNECTION TO/FROM ADDITIONAL 2 O 01D N.O.�' K+ ARM500 NOTE 3 3 O O N.CC. O O,m N.O. - OUTPUT O ra.,�. N.C. K6 CONTACTS ` 4 N O. NOTE 1.5 5< O SEE NOTE 7 6< O W°O N.O U�l O 07 O O COM NZ a O oe O coM N.O. N C. FOR JP1 THRU JPe. (NORMALLY (NORMALLY INDIVIDUALLY SELECT WORMALLY OPEN' Notes: OPEN) CLOSED) OR WORMALLY CLOSED'OUTPUT CONTACTS DETAIL'A' SEE DETAIL'A�NOTE 5 1. Relay contacts rated 24VDC®1 amp maximum. Auxiliary Relay Module Wiring Diagram (ARM-500) 2. Jumper JP9 is installed only on the last board of the expansion bus. Specifications 3. Up to four(4)additional ARM-500 mod- Contact Rating, Each Relay: 1 amp at 24VDC ules may be connected"piggy-back"to the first.Connect expansion bus from one Operating Temperature: 320F- 120OF to expansion bus of the other.A maximum Operating Humidity: 85% (non-condensing) of five(5)ARM-500s may be connected to Operating Voltage: one(1)MPIM.When making the connec- Internal (From MPIM) +5VDC tion,connect pin 1 of first ARM-500 to pin External +24VDC (20.4 to 28.OVDC) 16 of the next,follow this sequence throughall additional ARM's. Operating Current: 4. The status of each relay is visually indi- External Power 15mA per operated relay cated by the red LEDs DS1 through DS8. Internal (From MPIM) 1.7mA The green LED,DS9,"ON"indicates Dimensions: 6.6"L x 3.6"W x 0.75"D power is applied. 5. Jumpers are used to select contacts as Ordering Information either normally-open(NO)or normally- Model Part No. Description closed(NC).Jumpers JP1 through JPS correspond to contacts 1 through 8. ARM-500 976014 Programmable auxiliary relay module. Provides(8) 6. Typically connects to 24VDC output of AC volt-free relay contacts, form A or B. power module or addressable power sup- ARM-50OR 976013 Same as P/N 976014, except includes MPIM module ply for remote applications, up to 4000 feet from the AUTOCALL TFX control unit. Please reference both the model and part numcr s when ordering These instructions do not purport to cover all the details or variations in the equipment described, nor do t-e>provide for every possible contingency to be met in connection with installation.operation and maintenance.All specifications subject 10 change without notice Should further-4ormation be desired or should particular problems arise which are not covered sufficiently for trie purchaser's purposes,the matter should be referred to Thom,Westlake,Ohio e 45 ©1994 Thorn Automated Systems.Inc. �. 835 Sharon Drive,Westlake,Ohio 44145 _..._ 1;N _■.■_ Phone:(216)871-9900 TH0 1I I I I AUTOMATED SYSTEMS FAX(216)871 6320 214/1294 ANSUL® DETECTION AND AUTOPULSE® 442D CONTROL DELUGE/ EQUIPMENT PREACTION DATA SHEET CONTROL UNIT FEATURES Optional Volt/amp Meter Module (4XMM) Trim Ring For Flush Mount Between 16 in. • Complies with: Optional Supervised Remote Annunciator Center Studs (TR-4XR) NFPA 71 Central Station Signaling (RZA-4X). Requires LED Interface Module DESCRIPTION Systems (4XLM) NFPA 72 Local, Auxiliary, Remote • Optional Digital Communicator The AUTOPULSE D is a cost effective Station, and Proprietary Protective (NOTI•FIRE 911) detection and releasing control unit utilizing conventional wiring methods for protection of Signaling Systems • Disable/Enable Controls Per Initiating Zone a single hazard area. Various detection con- NFPA 13 Installation of Sprinkler . Battery/Earth Fault Supervision cepts with a programmable discharge timer, Systems manual actuation, supervisory circuit,two NFPA 15 Water Spray Fixed Systems • Last Event Recall Feature To Identify alarm circuits, two release circuits, alarm and Intermittent Trouble Conditions trouble relays, and auxiliary 24 VDC make NFPA 16 Deluge Foam-Water, and . Fuse Protection On All Indicating/Release this a very flexible control unit capable of Foam-Water Spray Systems Circuits releasing deluge or pre-action water or foam • Microprocessor-Controlled fire suppression systems. • RMS Regulated 24 VDC Output Power, • Power-Limited on All Circuits Except 2.25 Amperes Circuits Municipal Box Output • 7.0 AH to 15 AH Battery Options, Up To 90 INPUT CIRCUITS: • Alarm And Trouble Resound Hours Standby 1. Detector Circuit 1/Manual Release • 2 Initiating Device Circuits(Style B/D) • 230 VAC, 50 Hz International Option (Style B/D) • Waterflow Input Circuit(Style B/D) • 4-Wire Detector Resettable Power Output 2 Detector Circuit 2(Style B/D) • Supervisory Input Circuit(Style(B/D) • Non-Resettable Regulated 24 VDC Power 3. Waterflow(Style B/D) • 2 (indicating Appliance Circuits(Style Y/Z) Output 4. Supervisory(Style B/D) • 2 Release Circuits(Style Y) • Extensive Transient Protection OUTPUT CIRCUITS (Optional auxiliary • Watchdog Timer To Supervise relays track these four circuits): • Discharge Timer:0, 10, or 15 Minutes Microprocessor 1. Alarm/Waterflow Bell (Style Y/Z) • Cross Zone Option • Output Circuits Protected Against False 2. Waterflow/Supervisory Bell (Style Y/Z) • Dual Hazard Option (Combined or Split Activations By 2-step Command Sequence 3. Releasing Circuit 1 (Style Y) Release) . Slide-In Labels For Zone Identification • Optional Module For 4 Zone/Function 4. Supervisory Bell/Release Circuit 2 Relays(4XZM) • Steel Cabinet 14.5 in.Wide By 16 in. High (Style Y) By 5 in. Deep • Optional Transmitter Module(4XTM) . Dead-Front Dress Panel Option AutoPulse.442D ■ ■ ■ ■ ©0 8� �0 8 �o e� r»RGw,�PANEL CONTROL SWITCHES: Non-rpell:11able 24 VDC Power Output Cabinet Dimensions: 1. Switch 1 Tone Silence Terminsis: Door. 16 1/8 in.High x 14 5/8 in.Wide 2. Switch 2 Alarm Silence Total DC current available from this output is (40.9 cm x 37.2 cm) 3. Switch 3 Alarm Activate up to 200 mA(subtracted from four-wire smoke power) High Backb 16 in. Hi h x 14 1/2 in.Wide x 0.6 witch 4 System Reset Fleld Program Selections in. Deep ns (40.6 cm x 36.8 cm x 12.1 cm) ional Boards 6-position dip-switch to select: Cabinet:5 3/8 in. Deep(13.7 cm) The RP-1001 has mounting slots for two • Two-zone,single hazard operation option boards.Any two of the three option modules may be installed: Transmitter • Two-zone,single hazard operation (cross Module(4XTM); LED Interface Module zoned) (4XLM);and Zone Relay Module(4XZM). • Two-zone,dual hazard operation (com- A Remote Annunciator(RZA-4X) mounts on bined release) a standard single-gang box and connects to • Two-zone,dual hazard operation (split the LED Interface Module(4XLM). release) An optional Voltage and Current Meter • Discharge times:0, 10,or 15 minutes (4XMM) monitors battery voltage and charg- ing current. SPECIFICATIONS 1 IN. 14 112 IN. AC Power (2.5 cm) • (36.8 cr„) • VAC, 60 Hz, 1.2 amps 112 (1.3I cm) (3t.8 cm) Initiating IN, • Wirit e size: 14 AWG with 600 V insulation Initiating Circuits: • Power-limited circuitry • Operation: Style B(Class B)/Style D t b (Class A) 9 1/2 IN. • Standby voltage: 24 VDC(ripple= 10 mV (24.1 cm) peak-to-peak) 16 IN. • Alarm current: 15 mA minimum (40.6 cm) I t • Short circuit current:40 mA maximum • Maximum detector current in standby:2 t t milliamps (peak)per zone iximum loop resistance=200 ohms (` _.,d-of-line resistor:4.7 Kohms, 1/2 watt • Detector loop current is sufficient to ensure operation of one alarmed detector per zone • Supervisory current: 5 mA ORDERING INFORMATION Indicating/Releasing Circuits: Approximate Shipping • Power-limited circuitry Component Weight • Maximum voltage drop due to wiring:2 Part No. Sheet Description LL 11W VDC 417698 - AUTOPULSE 442D, 25 (11.3) • Voltage: 24 VDC RIMS regulated(not fil- Del uge/Preaction Control tered) Unit, Red, 120 VAC • Total current to all external devices: 2.25 417885 - AUTOPULSE 442D 25 (11.3) amps maximum DeIuge/Preaction Control • Fuses:2 AG,4 amps Unit, Red,230 VAC 417692 F-95122 Battery Pack, 15 (6.8) • Maximum signaling current per circuit:2.25 7 AH,24 VDC amps • End-of-Line Resistor=4.7 Kohms, 1/2 watt 417693 F-95122 Battery Pack, 22 (9.9)12 AH,24 VDC Alarm and Trouble Relays: 417475 - TR-4XR,Trim Ring for 2 (0.9) • Dry Form-C contacts rated for: Semi-Flush 2.0 amps @ 30 VDC(resistive) Mounting, Red 0.5 amps @ 30 VAC(resistive) 417472 F-9580 4XMM,Ammeter- 2 (0.9) Four-wire Smoke Detector Power Output Voltmeter Module Terminals: 417881 F-9579 4XZM,Zone 2 (0.9) Up to 200 mA of current is available for Relay Module 4-wire smoke detectors 417882 F-95117 4XLM,LED 2 (0.9) RMS Regulated 24 VDC Power Output Interface Module Terminals: 417883 F-95117 RZA-4X, Remote 2 (0.9) DC current available for powering Annunciator ....-mal devices is 0.5 amp(subtracted from 417470 F-9578 4XTM, Plug In Transmitter 2 (0,9) indicating appliance power dedicated to all Module, Municipal Box output circuits) and Remote Station Connection ANSUL and AUTOPULSE are registered trademarks. ANSUL INCORPORATED,MA W*_rTE,W 54143-2542 715-735-741 1 Form No.F-94125.1 01995 Ansul Incorporated Lt fq in U.S.A. FIRE SYSTEM ACCESSORY Firepower 5395 Distributed Power Module c In an emergency, try you need maximum power. The Firepower 5395 Distributed Power Module by Silent Knight is the most-powerful and cost-effective power supply available today. It delivers 6 amps of notification appliance circuit power—what you need to drive power-hungry components like ADA notification appliances. The 5395's advanced microprocessor design is years ahead of the competition. Its switch mode power supply design is up to 50% more efficient than competitive linear mode power supplies. And, ADA retrofits are easier and less expensive with Firepower 5395 because it integrates into current systems without the costly investment in new components. For the most sophisticated and cost-effective notification power supply available, you need Firepower 5395. Call Silent Knight today for more information, 1-800-446-6444. Firepower 5395 •Additional continuous auxiliary output. Distributed Power Module •Three amps per output circuit. The Firepower 5395 is a notification •Two inputs;2 Class B or 2 Class A. 0 power expander that provides its own • Ground fault detector/indicator. AC power connection, battery charging • Independent trouble relay. circuit, and backup battery for use with •AC loss delay option shuts off power fire and security controls such as the to non-essential high-current acces- Silent Knight Model 5207 Fire Control/ sories like magnetic door holders. Communicator. The 5395 is the • Stand alone operation. cost-effective solution for powering • Lightweight design adds to ease of notification appliances required by the installation and reduces shipping Americans with Disabilities Act (ADA). costs. With 6 amps of notification power, • Operates with most polarized, Firepower 5395 drives the additional UL-Listed notification devices. sounders and brighter strobes required. • UL864 & 1481 listed. Meeting ADA requirements is easily accomplished in a retrofit or new Connection to Local Fire Control installation. Firepower 5395 may be connected to a local fire control which utilizes Class A Features or Class B type notification circuits • UL Listed for 6 amps of notification operating between 9 and 32 VDC. power. The control panel's notification circuit Firepower 5395 • Power supply's advanced switch is connected to one of the inputs on Distributed Power Module mode design reduces damaging heat Firepower 5395. The control panel's and manages power up to 50% more notification circuit end-of-line resistor is from the local control, it is possible to efficient) than others stems. also connected across two terminals Y Y connect one Firepower 5395 to each • Integrates with existing systems for on Firepower 5395, which provides 9 9 Y notification circuit on the control panel supervision simple, cost-effective ADA retrofits. pervision between Firepower 5395 P and still provide full supervision of the • Di switches allow for easyand fire control panel. Polarized audible p and/or visual notification devices are notification circuits all the way back to reconfiguration. the control panel. •24VDC regulated output voltage. then connected to Firepower 5395 • Four power-limited notification signal circuits using the 4.7K ohm outputs;2 Class A or 4 Class B, end-of-line resistors provided. Since SILENT or 1 Class A and 2 Class B. Firepower 5395 draws very little power 134 KNIGHT 'a- , 'R. Series MT and MT Strobe Multitone Electronic Signals eelock's MT and MT Strobe Series Multitone electronic signals offer a choice of eight (8) nationally and internationally w,.ognized alerting sounds: Horn, Bell, March Time Horn, Code-3 Tone, Code-3 Horn, Slow Whoop, Siren or Hi/Lo Tone. Our Code-3 horn and tone patterns are engineered to comply with NFPA'ANSI Temporal Pattern specifications without requiring additional coding means. With MT and MT Strobe Signals, one alarm appliance meets most of your signaling needs. Features • One alarm appliance with (8) eight selective signals to pro- vide superior sound penetration for various ambient and wall conditions with two field selectable sound output levels. • Code-3 Horn and Tone meet ANSI/NFPA/ISO temporal pat- tern for standard emergency evacuation signaling. • Audible and strobe can operate from a single signaling cir- cuit with any of the (8) audible signals. • Designed to meet or exceed NFPA ANSI Standards and ADA Accessibility Guidelines. • Low current draw with low temperature compensation to re- Series MT duce power consumption and wiring costs. • MT Strobe models available with 15, 15175, 30 and 75 can- dela ratings for independent or single input activations. • Wheelock's patented LS, LSM, MS. IS and HSW Series strobe designs (with additional patents pending) offer fire F alarm system designers, specifiers and installers the indus- try's widest selection of UL 1971 Listed strobe products. R 1 • 12 VDC and 24 VDC models with wide Listed voltage range, filtered (DC)and FWR. (MT Strobe versions factory set.) • Polarized inputs for compatibility with standard reverse po- 110 larity type supervision of circuit wiring by an alarm panel. • Low cost installation via standard electrical boxes. Attractive Series Series "ush or surface mounting options. MT(10B) MT4 to additional trimplate required for flush mounting. Fast in- stallation with In/Out screw terminals using #12 to#18 AWG. • Compliance with RFI limits in FCC Part 15, Class B for compatibility with sensitive detection and communication circuits. • Listed under UL Standard 1971 for Emergency Devices for the Hearing Impaired and UL 464 for Audible Appliances. • MT & MT-WM Strobe model available for outdoor installation requiring weatheroroof devices. In private mode location where UL 1971 strobes are not required the MT-WM strobe model is UL 1638 Listed at 117 cd and is designed for surface mounting indoors or outdoor. Alarm Tones Tone Pattern Description i Tone Pattern Description Horn Broadband Horn Continuous Code-3 Tone 500 Hz ANSI S3.41 Temporal Pattern Bell 1560 Hz Modulated 0.7 sec.ON/Repeat) Slow Whoop 500-1200 Hz Sweep 4.0 sec.ON/0.5 sec.OFF/Repeat) March Time Horn Horn 0.25 sec.ON/0.25 sec.OFF/Repeat) Siren 600-1200 Hz Sweep 1.0 sec.ON/Repeat) Code-3 Horn Horn ANSI S3.41 Temporal Pattern Hi/Lo 1000/800 Hz 0.25 sec.ON/Alternate MT Strobe motels are UL 1971 Listed for indoor use with a temperature range of 32`F to 120°F(0`C to W C)ar: —aximum humidit% of 85%RH.All MT and MT strobe models for outdoor use are Listed to,31`G to 1501 F(-351 C to 66`C)and maximum humidity of 95%RH. Specifications Table 1:dBA and Current Ratings for Multitone Signals Without Strobes Typical Anechoic1 Rated Reverberant dBA' Input Current' Input Current' dBA at 10 Feet at 10 Feet Per UL 464 Tone AMPS @ 24 VDC AMPS @ 12 VDC At Nominal At Minimal At Nominal Input Voltage Input Volta a Input Voltage HI STD HI STD HI STD HI STD HI STD Horn 0.040 0.023 0.100 0.020 101 95 88 82 91 85 Bell 0,014 0.012 0.031 0.010 94 89 82 75 85 79 March Time Horn 0.040 0.023 0.100 0.020 101 95 85 79 88 82 Code-3 Horn 0.040 0.023 0.100 0.020 101 95 85 75 85 79 rode-3 Tone 0.028 0.017 0.060 0.015 97 92 79 75 82 75 dow Whoop M48 0.026 0.100 0.025 101 96 88 82 88 82 siren 0.036 0.023 1 0.082 0.020 100 95 85 82 88 82 Hi/Lo 0.020 0.014 0.044 0.012 95 90 1 82 79 85 79 For NOTES see page 9 8 wheekxk Table 2 dBA and Current Ratings for Audible Portion of Multitone Signals Without Strobes Typical Anechoic' Rated Reverberant dBA' Input Current' Input Current' dBA at 10 Feet at 10 Feet Per UL 464 Tone AMPS s 24 VDC AMPS @ 12 VDC At Nominal At Minimal At Nominal Input Volta a Input Voltage Input Volta e HI STD HI STD HI STD HI STD HI STD Horn 0.040 0.023 0.100 0.020 99 93 85 79 88 82 Bell 0.014 0.012 0.031 0.010 92 87 79 75 82 75 March Time Horn 0.040 0.023 0.100 0.020 99 93 1 82 75 85 79 Code-3 Horn 0.040 0.023 0.100 0.020 99 93 19 75 82 75 Code-3 Tone 0.028 0.017 0.060 0.015 95 90 75 70 ' 79 73 Slow Whoop 0.048 0.026 1 0.100 0.025 99 94 82 75 85 79 Siren 0.036 0.023 0.082 0.020 1 98 93 1 82 75 85 79 Hi/Lo 0.020 0.014 0.044 0.012 93 88 79 75 82 75 NOTES 1. Add 250o more input current than shown in-ages 1 and 2 when operating the unit at maximum input vo'_ a Rated Input Voltage ieither filtered DC or unfiltered full-wave-rectified(FWR)): Strobes are aesigned to flash at 1 flash per se:bnd minimum from 20-31 VDC(for 24 VDC models)or 1_- 6 VDC(for 12 VDC models).Note that ADA guidelines presently specify a flash rate of 1 to 3'lashes per second.Check the"--mum and maximum output of the power supply and star_:. battery and subtract the voltage drop from the circuit wiring resistance to deter- mine the apDj;ea voltage to the strobes. 2. Anechoic dBA s measured on axis in a non-2*ective(free field)test oom using fast rne:er response.For cea,1BA(measured with peak meter response).add 5 dBA to typical anechoic values shown in T aoie 1 and 2. 3. Reverberant:BA is a minimum UL rating base-on sound power measurements in a reverberant test room 4. MulLtone Signais with and without strobes ra.e 3 brief in-rush current during start-up.See separate"Insta a.:n Instructions"for further details. 'A WARNING:MULTITONE STROBE MODELS SET ON"CODE-3 TONE"WITH"STANDARD dBA"DO NOT MEET THE 75 dBA MINIMUM UL REVERBERANT SOUND LEVEL REQUIRED FOR PUBLIC MODE FIRE PROTECTION SERVICE(NOTED BY•IN TABLE 2).MODELS WITH SETTINGS WHICH PRODUCE LESS THAN 75 dBA MAY NOT BE HEARD.THIS SETTING IS ACCEPTABLE ONLY FOR GENERAL SIGNALING(NON-FIRE ALARM)USE.USE THE-HIGH"dBA SETTING WITH THIS TONE OR USE A DIFFERENT TONE FOR PUBLIC MODE SERVICE. Make sure that toe average,peak and inrush cure-as do not exceed system power supplies or fusing limits.If:-e strobe and audible operate on the same circuit,add the strobe current from Table 3 to the proper audible current from Table 1 or 2 See separate"Installation Instructions"for further details. Strobe Current Requirement AMPS)_ Rated vera a Current Rated Peak Current Rated Inrush Current Voltage LS MS LSM IS HSW LS MS I LSM IS HSW LS MS LSM IS HSW 20 VDC .080 .135 .115 .240 .280 .160 .288 .250 .500 .680 .210 .280 .225 .650 .550 24 VDC .080 .135 .115 .225 .230 .190 .296 .260 .450 .570 .250 .280 .270 .660 .660 31 VDC 080 .135 .115 1 .195 .190 .210 i .296 260 .370 .520 .320 .300 1 .360 i .880 .850 20 VFWR .080 1 .135 .125 ' .253 .280 .210 1 .390 .350 .700 .960 .320 .390 1 1 .920 .780 24 VFWR .081 l .135 .125 .233 .230 .216 1 .390 365 .640 .830 .380 .390 .380 1 .930 .930 31 VFWR .091 I .135 .125 .196 .190 .240 1 .390 1 365 .520 .750 1 .450 .420 .500 1 1.25 1.20 10.5 VDC ! .160 .230 .220 --- -- 340 ! 560 170 -- .300 .500 .440 --- --- 12 VDC 160 .230 .220 -- 340 560 t70 -- 300 .500 .440 i 15.6 VDC .160 1 .230 .220 --- --- .340 .560 -170 --- .390 .650 .470 ! i 10.5 VFWR .175 I .238 I .230 --- --- .475 730 660 --- .420 .700 .620 --- --- 12 VFWR l .175 1 .238 .230 --- --- .475 .730 660 --- i .420 .700 .620 --- --- 15.6VFWR .175 .245 .240 .475 1 .730 660 545 .910 .660 Ordering Information MT and MT4 models can be used:, -Wheelock's HSW-24-HFR strobe/plate assembly for 110 candela strobe signals Model Order Input Rated Mounting Approvals Number Code Voltage Candela 0 tions UL CFM FM MEA BFP MT-1 2/24-Ft 3: �53�08 - 12124 --- A-G J X X X X Dec MT4-12/24-R?W=; y > 12/24 --- H I X X X X - Dec MT-24-LS-VFR 1 24 15 A-G X X X X Dec 5182 24 15/75 A-G X I X X X Sept MT-24-MS-VFR 5321 24 30 A G X X X X Dec MT-24-IS-VFR 5355 1 24 75 A-G X X X X Dec MT4-24-LS-VFR 5315 24 15 H X X X X Dec MT4-24-LSM-VFR 5374 24 15/75 ! H X X X j X Dec MT4-24-MS-VFR 5375 24 30 H X X X X Dec MT4-24-IS-VFR 5370 24 75 I H X XE' d X Dec MT-24-WM-VFR' 5025 24 117 C,D,J X X X Dec 2 �` f '+15 r.A`9 ~X`. NOV` Nov w Dec 3� 30,fix ' �" ' Nov;` -,Nov ' Dec 15 11 Nov c- .,' ;X Nov' .�:X �,' .NOV:r Dec - , f NoV Dec'.J.'f Novlt,;,. Dec: MT4 2- 2`�" ;*3 15 5 }` " " `"' Nov X Nov Dec iSr 5306 F,G X 106-R 5046 ... --- C.D X --- X RP-R 5042 E X --- NOTE: SEE PAGE d FOR GENERAL AND TECHNICAL INFORMATION. ' UL 1638 only wh � 9 whepJock SERIES MAX INDUSTRIAL I L"a-�w,�+t±�c FOR MAXIMUM VERSATILITY AND O U S � ECONOMY IN HIGH PERFORMANCE UL WARNING LIGHTS WHEELOCK'S Series MAX INDUSTRIAL ■ Compact size to fit all applications STROBES are the most versatile warning ■ One model covers all standard battery (5-inch high by 5-inch diameter) lights available for any VEHICULAR or voltages (12, 24. 36, 48 and 72 VDC). ■ Durable,high impact LexanI construction STATIONARY application. ■ One model covers all popular mounting ■ Standard lens colors per SAE Each MAX-DC model operates on ALL methods (pipe, surface,flange. electrical specifications STANDARD BATTERY VOLTAGES from box) ■ UL listed for indoor or outdoor use 12 to 90 VDC. MAX-AC models operate ■ High visibility double flash operation ■ Patents pending for unique design consistently from 110 to 120 VAC. (60 times per minute; 7�joules per And all MAX models provide HIGH flash) features EFFICIENCY DOUBLE FLASH operation ■ High efficiency for longer battery life(1.0 and include ALL POPULAR MOUNTING amp at 12 VDC to 0.17 amp at 72 VDC). OPTIONS supplied with each unit. As the leading supplier of strobes for life safety signaling and fire protection systems, VEHICLES Wheelock has designed the Series MAX CONSTRUCTION; MAINTENANCE: Industrial Strobes with the EXCEPTIONAL _ MATERIALS HANDLING QUALITY and DEPENDABILITY required for critical life safety applications. ;. -' - EQUIPMENT CRANES;CONVEYORS;OVERHEAD DOORS SYSTEMS SAFETY; NOTIFICATION: INTRUSION �� II M1 ` • 7 At.'. f ADDRESSABLE RELAY MODULE + r ■ Provides One Form General Information Installation and Wiring C Programmable Thorn Automated Systems' OXA-500RM The OXA-50ORM mounts on a standard Relay Contact module provides a form C relay contact for surface 2-gang electrical box or a recessed ■ Monitored and Con- annunciation and auxiliary contro purposes 4' square box with 2-gang adaptor. trolled from a with the AUTOCALL TFX-500 and y Signal-ing Line AUTOCALL TFX-800 systems. It is moni- Testing and Maintenance Circuit (Addressable tored and controlled as an addressable de- Routine functional tests may be per- Loop) vice on an AUTOCALL TFX system signaling formed by providing the appropriate input line circuit. The relay contact can be pro- to the AUTOCALL TFX system and verifying ■ Powered By Signal- grammed to operate in conjunctio- with any relay operation. ing Line Circuit. No single or group of input events. External Power Each relay monitor module uses one of ■ LED Indicates Relay 126 available addresses on an ALTOCALL _ Operation TFX signaling circuit It responds :o regular is High EMF/RFI Noise polls from the control panel and reports its Immunity type and status. A flashing LED ir'dicates that the module is in communicat o:l� with the ■ UL File No. S374 control panel. Up to 99 modules can be ■ FM ID No. placed on an individual circuit. JI 0X2A8.AY The OXA-50ORM mounts on a standard electrical box. An attractive plastic cover ■ NY MEA No. 415-92-E with eggshell finish is included. The status ■ CSFM No. LED is visible through the plastic cover. 7300.0062:166 i Please note that UL LrsUnfls and other regulatory attars Nomletpn may De found under Thom.a Autonal,tnc weven are now Bang business as a srgk army-Thom Automated Systems Inc - - AI&WMaJs are sublecl to reErdminalior.re- _s and possible C-11.1— _ 835 Sharon Drive,Westlake,Ohio 44145 ___...__ THOrzN Phone:(216)671-9900 1III�AUTOMATED SYSTEMS FAX(216)871-8320 212/1294 ADDRESSABLE RELAY MODULE . U.L LISTED UL USTED POWER EXTERNAL DEVK;EI S SWITCHABLE UL LISTED DEVICE (NOTE 6) CIRCUIT ELECTRONIC FOR CONTROLSWITCHING CIRCUIT CONTROL SPUR ON,I THORN AUTOCALL FOR UMT THORN AUTOCALL CIRCUIT TF%50111600 spUR TFX 5001J00 SIGNALLING CIRCUIT SIGNALLNG LINE CIRCUIT LINE CIRCUIT _ 70 NEXT TO NEXT DEVICE DEVICE T82 $160006 XTBI T82 I O 0 0 TBt 'S'JoERVISE D' T I I • ; -SUPE>VISED' UNE i NOT USED VP S NOT USED C C w LED LEO I (BEHIND) (BEHIND) (NOTE 2) (NOTE 21 ADDRESS RELAY MODULE ADDRESS RELAYMODULE SWITCHES SWITCHES (NOTE•) OXA-50ORM (NOTE 4I OXA-500RM °" dry contact °N powered relay circuit Notes: 1. When installed to comply with N.E.0 Article 760,Part A and Part B,these Addressable Relay Module Wiring Diagram (OXA-500RM) circuits are classified as non-power limited.When installed to comply with N.E.C.Article 760,Part A and Part C, these circuits are classified as power limited. 2. The red LED(seen from front)indicates Specifications the following when addressed by the Operating Temperature: 32OF- 120OF control panel: Operating Humidity: 85% (non-condensing) - When scanning normally(relay deactivated),the LED will illuminate Operating Voltage: 26VDC' once every two seconds when the Relay Contact Rating: 1 amp at 24VDC module address is scanned. Signaling Circuit Current: When the relay is initially activated,the Normal 0.18mA LED will illuminate for a short period, Alarm 0.18mA then illuminate once every two seconds when the address of the module is Cover Material: Polycarbonate ABS Alloy scanned. Contact Surge Protection: 250V MOV 3. Terminals marked"spare"are not used. Shipping Weight: 3.6 ounces 4. Set address according to site plan.Switch Dimensions: 4.9'W x 4.9'H x 1.3"D ON Values: Sw.Pos. Value Sw.Pos. Value •Voltage on signaling line circuit wa normally measure 15- 18 VDC due to communication 1 1 5 16 signals. 2 2 6 32 3 4 7 64 4 8 Ordering Information 5. Break wire run to provide supervision. Model Part No. Description 6. Use only UL listed power supply suitable OXA-50ORM 976025 Addressable relay monitor module for fire protective signaling service. Please reference both the model and part number when ordering These instrocuons do not purport to cover all the details or variations in the equipment described, nor do PXey provide for every possible contingency to be met in connection with Xnstallatior operation and maintenance.All specifications subject to change without notice Should further information be desired or should particular problems arise which are not covered sufficiently for the purchaser's purposes,the matter should be referred to Thorn.Westlake,Ohio 44t45.®1994 Thorn Automated Systems,Inc. _ T�O 835 Sharon Drive,Westlake,Ohio 44145 �•••� Phone:(216)871-9900 • FAX(216)871-8320 �IlII AUTOMATED SYSTEMS 212/1294 ADDRESSABLE CONTACT MONITOR MODULES „ , y,, z IXA-500CMA IXA-501CM ■ Supervises and Monitors Dry Con- tact Devices ■ Normally Open and Normally Closed General Information IXA-500CMA Programmable Thorr Automated S,stems' contact The IXA-500CMA provides a St, Options(IXA-500CMA) monitor modules IXA-500CMA (Style B and initiating circuit and mounts on a ■ IXA-501CM Fits D) and IXA-501CM (r•-,-ii module) provide an 2-gang electrical box. An attracti\ initiating zone suitable for contact devices cover with eggshell finish is incluc Inside Standard such as pull stations .:aterflow switches and LED which is visible through the F Electrical Box sprinkle- supervisory devices. Each module cover illuminates steady during a ■ IXA-500CMA Mounts reports an input from any contact device in The IXA-500CMA may be progi on Standard 2-Gang its zone as a single a::dress to the AUTO- monitor normally open or normally Electrical Box CALL TFX-500M/MV and AUTOCALL TFX- contact devices. ■ High EMF/RFI Noise 800M/MV systems. IXA-501CM Immunity Each contact monitor module uses one of 126 available addresses on an AUTOCALL The IXA-501CM mini module pri ■ Powered Directly By TFX signaling circuit. responds to regular Style B initiating circuit. Its compe Signaling Circuit (No polls from the contro, panel and reports its makes it ideal for "stuffing" in a sl Additional Power type and the status c= :s initiating circuit. electrical box behind the monitor( Required) The LED latches steady on alarm. device, such as a pull station. ■ Programmable for These modules ma., be programmed to _ Normal or Fast report inputs as either a'a-rn or supervisory (Polling Interrupt) conditions. Another p-cgramming option Alarm Reporting invokes a special po' -g interrupt routine, resultirc in quicker a a•^. response than • FM ID At. systems which rely or simple polling JI technic_jes to detect alarm. ■ NY MEA No. 415.92-E Vol. 11 ■ CSFM No. 7300-0062:166 ■ UL File No. S374 THo _ _ 835 Sharon Drive,Westlake Ph 1>\lf\VI one: �IIII AUTOMATED SYSTEMS FAX( r ADDRESSABLE CONTACT MONITOR MODULES WIRE NUT(NOT SUPPUEP, Tl E`AUTO(JxL,L ca,/rnOL Tsxaoaeoo un rrxsoowsoou UL LISTED _ 2-wAT DATA axuT MONITORED DEVICE TOraT W/'NORMALLy OPEN CONTACTS BLACK WIRE CIRCUIT STYLE D 'SUPERVISED' aTc Pr_o xs~ UL LISTED EOL CONTROL 1 K EOLR RED WIRE wN U C E uL usTEp UNIT THORN AUTOCALL UL LIST E)D DEVICE TFX-500 M w11+OR Lr OPEN SIGNALUNG UNE CIRCUIT a TO NEXT CONTACT DEVICE CIRCUT Sr LE e SUPERISED -� 22K OHM su"ERvism POWER LIu TED'CLAss 2 =0 RESISTOR POWER JWTEDCLA5S 2 YELLOW WIRE PWP F WIRE 1 J J 1 f 'SUPERVISED' ¢ ¢ g POWER LIMITED LED (BEHIND) 1® (NOTE 2) I CONTACT MONITORING ® -'OfFSS MODULE ADDRESS ® s'"TC' IXA-5011CM SWITCHES CONTACT MONITOR MODULE oN FM 0573 ® ON IXA-500CMA ® All circuits and connections are power Iimaecl,Class2 IXA-500CMA IXA-501 CM Installation and Wiring Specifications The IXA-500CMA mounts on a IXA-500CMA IXA-501CM standard surface 2-gang electrical box Operating Temperature. 32cF- 120F 320F- 120OF or a recessed 4-inch square box with 2-gang adaptor. The IXA-501CM mini Operating Humidity: 85% (non-condensing) 85%(non-condensing) module is designed to be "stuffed" Operating Voltage: 28VDC 28VDC inside a standard electrical box, Signaling Circuit Current: typically behind the monitored contact Normal 0.18mA Maximum 0.18mA Maximum device. Alarm 0.18mA Maximum 0.18mA Maximum Testing and Maintenance Cover Material: Polycarbonate ABS Alloy Not available Routine functional tests may be Initiating Circuit Wiring performed by activation of devices on Resistance: 10 Ohms Maximum 10 Ohms Maximum the module's initiating device circuit. Shipping Weight: 3.6 Ounces 1.2 Ounces Dimensions: 4.9'W x 4.9"H x 1'D 1.4"W x 1.5"H x 0.5"D Ordering Information Model Part No. Description IXA-500CMA 976092 Addressable contact monitor module IXA-501CM 976081 Addressable mini contact monitoring module 976090 End of line resistors, Pkg of 10. For use with P/N 976081 Please reference both the model and pan numbers w-we ordering These Instructions do not purport to cover all the details or variations in the equipment described,nor do they prov de for every possible contingency to be met In connection with Installation operation and maintenance All specifications subject to change without notice Should further Information be des.•ed or should particular problems arise which are not covered sufficiently for the purchaser s purposes,the matter should be referred to Thorn,Westlake.Ohio 44145.©1995 Thorn A.:artnated Systems.Inc THOU 835 Sharon Drive Westlake.Ohio -9 05 � Phone:(216)871-9900 �IIII AUTOMATED SYSTEMS FAX(216)87t-8320 198/0296 ADDRESSABLE ALARM STATION ■ Easy Operation JPULL DOWNI ■ Semi-Flush or PULL VER OOWN Surface Mounting ■ Powered Directly by Signaling Circuit (No ALARM ALARM Additional Power Required) ■ Programmable for Semi-Flush Mounted Surface Mounted Normal or Fast Alarm Reporting ■ Simple to Reset General Information Specifications ■ Optional Break- Thorn Automated Systems' addressable Operating Voltage: 28VDC Away Shield for Dual alarm station (model IXA-4050 Action ( ) connects Signaling Circuit directly to the THORN AUTOCALL TFX-500 Current(max.): 0.27mA (normal) ■ High EMF/RFI Noise and TFX-800, and uses one of 126 available 0.27mA (alarm) Immunity addresses on the loop. It responds to regu- Initiating Circuit ■ Terminals for Field lar polls from the control panel and reports its type and status. Wiring Resistance: 10 Ohm max Wiring The station is finished in black with a red Dimensions(LWD): 5 1/8'x 3 3/8'x 1 3/4" faceplate and raised lettering. Mounting Requirements: IXA-501 CM: The station may be surface mounted to a SemiFlush: Single gang, double gang,or ■ UL File No. S374 backbox or semiflush mounted to a standard standard 4'square electrical 4' square by 2 1/8' deep box fitted with a outlet box ■ FM ID No. plaster ring. Surface Mount: Use P/N 9090-006-009 or JI OX2A8.AY Operation 9090-006-101 Surface back box ■ NY MEA No 415-92-E When a station is activated, it mechani- Vol II cally locks into position to provide a positive ■ CSFM No. indication of operation. To reset the station, 7300-0062.166 loosen the retaining screw in the faceplate, TO open the station, and reset the switch. INITIATE TFX-500/800 programming with CONSYS ALARM 4050: allows an addressable alarm station to be gr ■ UL File No. S165 programmed for "fast response" that in- � v vokes a special polling interrupt routine. This lift& ■ FM ID No. results in quicker alarm response than sys- break JI OX2A8.AY tems which rely on simple polling techniques,1 plastic ■ BSA No. 1044-79-SA to detect an alarm. shield: ■ CSFM No. Installation 7150-0077:035 Set the address on the 7 position address pull lever switch. Connect Terminals 1 (+) and 2 (-) to down: the TFX-500/800 signaling line circuit(break wire run to provide supervision). Install the Reads note that UL Listings and other regulatory unit on the electrical box. aflate etormaton may be found under Thom of Autocall,Inc.which are now doing business as a uVio entity-Thom Automated Systems,Inc. All approvals are subject to reezaminaaon,re- visions and possible cancellation THORN 835 Sharon Drive,Westlake,Ohio 44145 Phone:(216)871-9900 -9900 AUTOMATED SYSTEMS FAX(216)871-8320 222/1294 FLUSH-MOUNTED - PART NO. STI 1250 SURFACE-MOUNTED - PART NO. STI 3150 I DESCRIPTION FEATURES STI's Weather Stopper extends the life and reliability • Serves as an inexpensive weather cover and of weather-exposed manual pull stations...or units in- also guards against physical damage as well as stalled inside severe environments such as carwashes. reduces false fire alarms. In addition,experience has shown that this protective cover can dramatically extend the lifespan of stations • Protects manual pull station from dust and grime mounted in salt air locations. Weather Stopper II is available in two versions--STI 1250 for flush-mounted UL tested and listed. stations (mounted directly on wall) and STI 3150 for surface-mounted units(on an electrical box as shown When used outside. can pay for itself many above). Basic design is the same as STI's Stopper II times over. with tough polycarbonate construction but it does not contain an electrical warning system. (Alarm can be Is widely used to protect pull stations located on added if desired.) ocean-going ships, oil rigs, beach-front condos and similar applications. Safety Technology International , Inc. 2306 Airport Road, Waterford, MI 48327 Phone: (313) 673-9898 Toll-Free 1 -800-888-4784 FAX: (313) 673-1246 TECHNICAL DATA FOR WEATHER STOPPER 11 This UL-listed cover helps protect PULL STATION PROTECTOR manual stations mounted outside or FLUSH-MOUNTED - PART NO. STI 1250 to severe conditions inside, such as SURFACE-MOUNTED - PART NO. STI 3150 areas that require hosing down or have a wet environment such as a carwash. sro' • Serves as an inexpensive weather 1.59 cm 17.711 cm I cover for manual pull stations. 2 314' 2 - - 1 • Also protects pull stations and other 8."Cm 5.08 em 5 3/4' 14.e0 cm --1 units against dust, grime and physi- cal damage. --*—T— • Ideal for salt-water environments. • Can pay for itself many times over. 10 CAIIIII OF /I![ Lilt C01R1 'ULL r1RR ALARM MOUNTING INFORMATION ------ Two types of mounting are available. Flush-mounted means the pull sta- E E tion is mounted directly on the wall. V Surface-mounted means the pull am "I �ry station is mounted on an electrical n box away from the wall. SIZE OF PULL STATION -- ACCOMMODATED Weather Stopper II can be installed LIFT HERE 1 over a flush-mounted station up to 5 1/2"wide x 6 3/4" high. However, the PART NO..3 3100 P SPACER AL pull station's maximum dimensions 100 will decrease as its depth (distance from the wall) increases. i.e. 3/4"deep pull station may be 5 1 2"wide x 6"high. 1 5/8"deep pull station may be 5-wide x 6"high. 2 IF deep pull station may be 4"wide x 5 3/4"high. 214-deep pull station may be 3"wide x 5 1/2"high. Note: If additional depth is needed, use the Conduit Spacer (Part No. STI 3100) which adds 2" to the depth. STI 1250 includes a weather gasket NEOPRENE CONDUIT GASKET (STI 3002). USED TO SEAL AROUND MANUAL PULL STATION CONDUIT TO WEATHERPROOF PART NO.3003' PLASTIC INSERT COVER MATERIAL CLEAR For Surface Mounted: STI 3150 is 0 MOLDEDPOLYCARBONATE used when the pull station is mounted (ULTRA-VIOLET STABILIZED) on an electrical box fastened to the wall. It includes two weather gaskets (STI 3002), a conduit spacer(STI 3100) and conduit gasket (STI 3003) which s has knockouts top and bottom to ac- commodate the conduit pipe: Spe- cial order for 3/4" rigid pipe gasket RETAINING CABLE (STI 3004). NEOPRENE GASKET I � 4001b.STRENGTH I PART NO. 3002 FRAME SPACER(RED POLYCARBONATE) 1 POLYCARBONATE USED ONLY WHEN MANUAL FIRE ALARM STATION IS SURFACE MOUNTED PART NO 3100 i NEOPRENE GASKET PART NO. 3002 1 SCREWS AND ANCHORS PROVIDED WITH SPACER STI 1250 / 3150 REV. 4/93 PRINTED IN U.S.A. RADIO NI C S D7212B Control/Communicator Control Features • Eight programmable areas • Eight on-board points • Up to 40 off-board points for a total of 48 points • Built-in digital communicator • Real time clock and test timer • Battery charging circuit and voltage supervision • Automatic reset circuit protectors • On-board warning buzzer for : CPU watchdog feature • Four diagnostic LEDs - � • Lightning and EMI protection • Power limited external circuits • Programmable AC Supervision • 500 Event Log Communicator System Response and User Interface Features Reporting Features • Supervise up to eight • Four telephone numbers for • Central station reporting command centers event reporting • 31 point indexes for custom • Custom command center text • Programmable phone line point response • Programmable "Custom monitor • Fire Alarm verification Functions" • Monitors 2 phone lines with • Programmable loop response • Full function command menu optional D128 Dual Phone time • 75 user passcodes Line Switcher • Fire alarm inspector's local • 14 authority levels • Programmable for loop start or test mode • Programmable user authority ground start phone systems . Watch mode to change, add, and/or delete • Programmable answering . Automatic test and/or status passcodes from the command machine work-around for reports center remote programming access Point bypassing b • Scheduled events (Skeds) YP 9 Y user Programmable including: arm, disarm, bypass • Adjustable brightness for Outputs and unbypass points, set and command center display • 12 VDC, 2 Amp Alarm Power reset relays • Windows for auto arming, fail • Alarm output selections: to open/close, late to close Steady, Pulsed, California tone, open/close report Standard, Temporal Code 3 suppression and more. • Automatic bell test • Bell shut-off timer • 48 programmable relays 75-06912-000-B 3/96 D7212B Specifications Sheet m 1993-1996 Radionics Accessories (Continued) D7212B Specifications Skeds, by system events, manually from a D1255 Voltage Input Command Center, or remotely using the D5300 Re- Primary: 16.5 VAC 40 VA class 2 plug-in transformer / mote Account Manager II.You can connect sox D8129 Secondary: 12 VDC 7Ah rechargeable battery f\ OctoRelays on the D7212B. Current Requirements D9131 Parallel Printer Interface Module Panel: 250 - 500 mA Provides a parallel printer output in an eighty character Auxiliary Power Output format. D5200 Programmer 1.4 Amp @ 10.0 to 13.9 VDC (continuous supply) The D5200 provides on-site programming for D7212B Switched Aux Power: Current drawn from auxiliary and other Radionics products. voltage supply, may be interrupted (switched off) mo- D5300 Remote Account Manager II mentarily from the command center or during alarm verification. D136 Plug-in Relay required. The D5300 provides Remote Programming capability Alarm Power Outputs for D7212B and other Radionics products.Also used to retrieve events stored in D7212's event log. Steady or Pulsed: 2 Amps at 10.0 to 13.9 VDC on D122 Dual Battery Harness alarm. Output may be steady, pulsed, Ca. Standard D125B Powered Loop Interface Module and/or Temporal Code 3. Programmed by area. D126 12V, 7 Ah Rechargeable Battery Alternate Alarm: Current drawn from alarm power D127 Reversing Relay output (2 Amps at 10.0 to 13.9 VDC). D136 Plug-in D928 Dual Phone Line Switcher Relay required. D129 Dual Class A Initiation Circuit Module Fire and Fire/Burglary Systems D130 Relay Module To comply with UL 985 and 864 listing standards for fire D136 Plug-in Relay alarm systems (effective March 1, 1989), the total D161 8' Phone Cord combined continuous and alarm current draw for the D162 2' Phone Cord system during alarm conditions must be limited to D192A Indicating Circuit Supervision Module 1.4A(1400 mA) provided by the primary power supply �- D268/ (rectified AC). D269 Independent Zone Control Telephone Connections D279 Independent Zone Control One RJ31 X or RJ38X jack required for each phone line D720 LED Command Center connected to the D7212B. D1255 Alphanumeric Command Center Two Phone Lines: Install Radionics D128 Dual Phone D1640 16.5 VAC 40 VA Transformer Line Switcher. Supervision supplied. D5200 Programmer D5300 Remote Account Manager II Listings and Approvals D8004 Enclosure for D1640 Transformer Fire Alarm D6103 Enclosure Underwriters' Laboratories lists the D7212B as a Sig- D8103 Universal Enclosure nal System Control Unit for : Central Station, Local, D8109 Fire Enclosure Auxiliary Remote Station,and Household Fire Warning D8108A Attack Resistant Enclosure in compliance with NFPA 72 (1993 edition). D8121A/ FM and NYC-MEA (formerly NYC-BSA) are pending. D8122 Derived Channel S.T.U. Burglary D8125 POPEX Module Underwriters' Laboratories: D8127 POPIT Module D8128A OctoPOPIT Module Central Station,Local,Police Connect,and Household D8129 OctoRelay Module systems. D8130 Release Module DOD D8132 Battery Charger Module D8620A Briefcase Demonstration Kit l D9131 Parallel Printer Interface Module 01993-1996 Radionics, Inc., Salinas, CA, U.S.A. All rights reserved. rM The Radionics logo is a registered trademark of Radionics, Inc., Salinas, CA. Radionics, Radionics, Inc., 1800 Abbott Street, Salinas, CA, 93901, U.S.A.