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6300 INSTALLATION MANUAL

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1. ISSUE ALTERATIONS DRAWN APP D MOD No DATE 1 MINOR MODS CLW JW A5164 15 8 00 DIL SWITCH SETTINGS L 2 MINOR MODS ud A6025 10 7 01 Bates 3 LED DESCRIPTIONS ADDED LMc RPO A7106 25 9 02 98 SWITC X UEBER 52345678 u A SWITCH 8 OFF NETWORK CARD LEDS SWITCHES 5 1 ADDRESS EH 5200 6200 6300 ND MSB LSB MENOR S ARR GND CHI MON OK WELB 015 D 1 CH1 LIT WHEN RECEIVING ON ON RS485 1 OR WHEN SENDING NEW EVENT a TO THE HOST 12345678 ie CH2 WHEN RECEIVING ON 1 o RS485 CH2 E c 5200 6200 6300 NETWORK CARD CN MD WHE THIS CARD IS WELB 015 TRANSMITTING OR WAITING TRANSMIT ON THE ETWORK PANEL 3 MON LIT WHEN THIS CARD 15 ON ONITORING BOTH RS485 CHANNELS 12 3 w1 OK FLASHING 0 5 SECONDS ON ques 0 5 SECONDS OFF 123 EID NOTE W2 NETWORK CARD Eso WELB 015 1 GND EARTH NOT OV 2 A COMMO OV IS NOT REQUIRED SCALE DESIGNED uM DRAWN G INGHAM 27 6 00 lt N T S CHECKED P STRICKLAND 2
2. r BANK BANK A BANK B BANK BANK 216 1215 214 713 zte Zi 240 79 z8 27 26 25 24 BER 22 a LSM LOOP _ BOARD FIGURATI SWe FU CT TABLE EARTH EARTH FUNCTI N PEN Cl SED BOARD MONITORING DISABLED ENABLED 2 N C Z SELECT 9 BANK B FIRE CONDITION NUN LATCHING LATCHING LKL 4 BANK FIRE CONDITION NON LATCHING LATCHING 5 Pe FIT LKL FOR NON 7 FSIZLUCAL SUPPL ISUCATED LOUP 24 Ute BLO BANK A SPRINKLER DELAY ON 5A QUICK BLOW FS FS 0 ovl 24 NOTES ety e IF LOOP ISOLATION FUNCTION IS REQUIRED OVA FIT LK1 24 5 1 202 ee e THE EARTH TERMINALS MUST BE CONNECTED sv TO A CONVENIENT SYSTEM EARTH POINT REE MA 5190 e CONNECTION TYPE DEPENDS ON INPUT BOARD TYPE OF COMMUNICATION MODULE FITTED Swe Je J3 SEE TABLE FOR LSM INPUT IS NORMALLY CLOSED OPEN FOR FAULT ON me E SPRINKLER DELAY TIME 14 SECONDS LIN 10 CLOSED EXTERNAL sv BOARD 2 45 67 8 E e NC NORMALLY CLOSED NCF NORMALLY CLOSED WITH O C FAULT MONITORING
3. ISSUE ALTERATIONS DRAWN APP D DATE LOCAL SUPPLY MONITOR VES LOOP INPUT 1 5600 NO 16 WAY BOARD NOTE ADDED P Garnett 5260 7 6 00 BANK A je j zie ZI 4 zia zie zit zo ze 274546 zs za 2 LSM DATA LOOP a l Hl EARTH EARTH BOARD CONFIGURATION SWe FUNCTION TABLE I FUNCTILIN PEN CLOSED Jl BOARD MONITORING DISABLED ENABLED BU Rr FIERE die 3 BANK B FIRE CONDITION NON LATCHING LATCHING 4 BANK FIRE CONDITION NON LATCHING LATCHING dE FSe FS S BANK B MONITORING RESISTIVE CAPACITIVE 9v 6 BANK B SPRINKLER DELAY ON OFF 0 7 BANK A MONITORING RESISTIVE CAPACITIVE olo 8 BANK A SPRINKLER DELAY UN OFF 24 0VA OTES 5 1 ivi as LA e F NO LOOP ISOLATION FUNCTION IS REQUIRED 5 FIT LK1 WEF A273 ur ISSUE n EARTH TERMINALS MUST BE CONNECTED INPUT BOARD TO A CONVENIENT SYSTEM EARTH POINT Je 4 pac e DATA CONNECTION TYPE DEPENDS ON J3 SWITCH FUNC TNS TYPE OF COMMUNICATION MODULE FITTED t LINK TD sv LJ LSM INPUT IS NORMALLY CLOSED OPEN FOR FAULT B coca asc ET 2 Ipae st Potts cr SPRINKLER DELAY TIME 14 SECONDS NO NORMALLY OPEN ONE DEVICES RESISTIVE T Ix sce
4. CLOSED circuit M 56000 amp NCI 1 6 MONITORED ZONE INPUT CLOSED SWITCH UT WAY BOARD SW2 2 OPEN NORMAL 1K SCALE DESIGNED s e prawn 5 BISCOMB 19 8 00 OPEN CIRCUIT NTS CHECKED P Garnett 25 9 00 FAULT INPUT 2K2 2K2 APPROVED N HARLING 25 9 00 TITLE 56000 16 WAY 21 DETAILS WEFA273 ISSUE ALARM 1 54 2 2 CLOSED OR eom Protec Fire Detection plc FAULT 20 Nelson GRE ne 68 Tel 01282 692621 Fox 01282 602570 DRAWING No _ JOB No ZONE CONNECTION DETAILS IL 1 Q ISSUE 0 ISSUE ALTERATIONS DRAWN APP D MOD DATE NOT USED IF NETWORK 10k 10k 10k 10k 1 MINOR MODS JH 6025 0 7 01 EOL EOL EOL EOL CARD 15 FITTED REPEAT 1 PANEL SEE PID 202 7 4 COMMS EOL N M jer 2 OZ CO IN Ssi 0
5. 4 ISSUE ALTERATIONS DRAWN APP D MOD No DATE 1 MINOR MODS JH RPO 6025 110 7 01 HEAVY DUTY PLANT SHUTDOWN 21 SIGNAL RATED 240V 5 PLANT SHUTDOWN INTERFACE 6000 MICCO za p 09 5 60 LOOP 1 Rx BEAM TX LOOP 2 SPRINKLER DELAY KEY IS INTERFACE 6000 MICCO IONISATION SMOKE SENSOR L EOL k 60 OPTICAL SMOKE SENSOR PLANT SHUTDOWN OUTPUT m SI H OPTICAL SMOKE SENSOR 50 RATED AT 240V 5 WITH DUAL ISOLATOR BASE 60 IONISATION SMOKE SENSOR 6000 ZAI A WITH DUAL ISOLATOR BASE MONITORED L L INPUT OUTPUT SI TEMP SENSOR WITH DUAL ISOLATOR BASE INTERFACE 6b DUCT PROBE UNIT C W SMOKE SENSOR TEMP SENSOR WITH L LOOP SOUNDER BASE SI e SI 59 IONISATION SMOKE SENSOR 24V SUPPLY 4C SINGLE 2 WIRE LOOP CABLE BCI 2 8 a WIT LOOP SOUNDER POWER SUPPLY UNIT D OPTICAL SMOKE SENSOR 230V WITH LOOP SOUNDER BASE 6200 6300 NETWORK OPTIONS SPRINKLER FLOW SWITCH 6300 6300 Ly 4 procramasce a ZONAL REPEAT f MONITORED ALARM OUTPUTS MANUAL CALL POINT MIMIC PANEL 4 CORE SERIAL 6200 6300 MONITORED FIRE STATION OUTPUT COMMUNICATIONS LINK NTERFACE UP TO 4 REPEATERS 32 AUXILIARY FIRE C O CONTACTS OR CONTROL BEAM DETECTOR CON
6. SEPARATE si SUPPLIES s SUPPLY 24V 2E ov R V 5485 24 im OV ALARM OUTPUTS CHARGER SUPPLY INHIBIT FAULT FSO J pav 0 OV m NETWORK CARD MOUNTING HOLES BE PEN PUPPLY 6204 6300 DUAL SUPPLY BOARD FS5 AUX SUPPLY 1A Q WEFA277 WEFA285 FITTED WHEN USING REMOTE CHARGER PSU CONNECTOR NETWORK CARD UPGRADE SCALE DESIGNED FIT THE 4 STANDOFFS TO THE FIXING HOLES prawn 1 HACKING 28 4 01 MOUNT THE NETWORK CARD ONTO THE STANDOFFS S CHECKED R P OLDLAND APPROV FIT POWER LEAD SUPPLIED FROM J3 TO NETWORK CARD Jl TT poe FIT 232 LEAD SUPPLIED FROM J4 TO NETWORK CARD J4 3 USE THE RS485 TERMINALS ON THE NETWORK CARD AND THOSE ON THE TERMINAL BOARD Protec Fire Detection plc 6204 6300 REPEAT TERMINAL Protec House Churchill Way Lomeshaye Ind Est BOARD CO NECTIO S Nelson Lancashire U K BB9 6RT Tel 01282 717171 Fox 01282 717273 DRAWING No D D 2 O 2 JOB No ISSUE 1
7. 6000 ASB4 6000 ASBEA4 SOUNDER BASE Protec Fire Detection Protec House Churchill Way Lomeshaye Ind Est ISSUE ALTERATIONS DRAWN APP D MOD No DATE 2 1 FIGURE 1 ADDED SB A4828 15 3 00 LOOP VE 2 PRODUCT VARIANTS ADDED SB lt eo A512027 7 00 LOOP 3 l OUT amp IW REMOVED FROM VE LINE SB eee 45215 5 9 00 LOOP Figure 1 Delay time versus C Pd T nearest R48 value LOOP MONITORED INPUT LOOP PROTOCOL E OUTPUT BOARD ime s RAR MONITORED INTPUT MONITORED DEVICE REQUIRES 330 OHM XXX X SERIES RESISTOR AND 47K E O L RESISTOR VE Ps 47K Nispa Bi RELAY o Zero link 1 CONTACT RATING Y m 8 E 2 10 t ssl O wee we 289 S 6 47 LK2 TIMING RESISTOR 82 R48 PROTEC FIRE DETECTION PLC 4 1 20 factory fitted _ 7 150 o 20 180 NTERFACE _ 2 e 25 220 CLEAN CONTACT CHANGEOVER 30 270 PRODUCT VARIANTS 6000 MI
8. S6000 NO 1 6 WAY MONITORE 8K2 ZONE INPUT EOL Ld ALARM lt 900R SCALE DESIGNED E DRAWN D R REEVES 5 6 00 ON D VIC 5 CHECKED N HARLING 7 6 00 CAPACITIVE APPROVED P Gamett 7 6 00 2 E Ds 4 TITLE 56000 r WAY INPUT DETAILS 275 ISSUE 00 uF Protec Fire Detection 2 2 R House Churchill Way Lomeshaye Ind Est 1 50R gt ALARM 9OOR O L mel 1785 650601 Eos iaa 602570 A4 DRAWI JOB ISSUE ISSUE ALTERATIONS DRAWN APP D MOD No DATE Poo e BASE JW SB A5180 24 8 00 SB 22 45378 9 11 00 2 CHART MODIFIED JH A6884 4 7 02 SUPPLIED OPTION SUPPLIED OPTION 2 1 tve loop 1 ve loop 2 ve loop 9 ve loop Rpt LED 3 Rpt LED XE DETECTOR LED 4 pt LED T 525129 ALIGNMENT M
9. OQOOO WEFASO9 ISSUE ALTERATIONS DRAWN APP D MOD DATE INSTALLATION PROCEDURE ADDED LJH NH A7088 18 9 02 Installation procedure for Commissioni mportant T as part of the product panel The he Interface serial no in booklet been placed ng instructions Protec 6000 MIP Variant products This document pertains to Protec 6000 MIP Variant products only has a unique serial no which will be used he commissioning of the fire alarm system necessary to remove one of the peelable bar code labels that has bar code format and place it on the commissioning booklet supplied with each 6400 or 6200 control bar code sticker should be placed on the commissioning in the loop and address position in which the sounder has t is important that the serial no s are not mixed otherwise th It is addressing of the interface will be wrong at commissioning Example A CCO placed in Loop 1 Address 54 Commissioning Booklet Loop Add Place peelable label here 1 52 Loop Addrese 94 1 55 1 54 In 1 55 WOO INPUT INDICATING L E D e MONITORED P VALUES 2100K OPEN CICUIT
10. has a unique serial no which will be used It is bar code format and place it on the booklet supplied with each 6400 or 6200 control bar code sticker should be placed he loop and address position in which the sounder has on the commissioning addressing of the interface will be wrong at commissioning Example placed Loop 1 Address 54 Commissioning Booklet Loop Add Place peelable label here 1 5221 e a Loop Address 54 55 1 54 UI A 1 55 OUTPUT ELAY IS 1A 24V DC MAX CONTACT ATINGS SCALE DESIGNED DRAWN L J HOLT 16 9 02 NTS C WHITAKER 18 9 02 APPROVED N HARLING 18 9 02 TILE 56000 CLEAN CONTACT OUTPUT WEFA311 Protec Fire Detection Protec House Churchill Way Lomeshoye Ind Est CLIENT Nelson Lancashire U K BB9 6R Tel 01282 717171 Fax 01282 717273 JOB No DRAWING No 3 ID22 1 M ISSUE 0 ISSUE ALTERATIONS DRAWN APP D MOD No DATE iw 00 097 25 EAT LED PTIONAL TERMINA
11. BARCODES LOOP 24VDC Z OOOO0 WEFA272 _ NOTES 1 ENSURE BARCODE 6000 IS REMOVED AND PLACED ON THE COMMISSIONING O 6000 MICCO ADDRESS BOOKLET TO DENOTE DEVICE ADDRESS 2 SEE FIRERAY 2000 INSTRUCTIONS FOR DETAILS ON BEAM DETECTOR 3 TRANSMITTER AND RECEIVER DO NOT HAVE TO BE ON SAME LOOP 4 CONNECT TRANSMITTER AND RECEIVER BRAIDS TO EARTH 5 MAXIMUM OF 1 LOOP POWERED UNIT BETWEEN LOOP ISOLATORS 6 ENSURE FIRE RAY 2000 IS SET TO NON E LATCHING FIRE 6000 MICCO WILL LATCH THE FIRE p TRANSMITTER ONTO THE 6200 OR 6400 SYSTEM LOOP SCALE DESIGNED N DRAWN 5 BISCOMB 4 4 2000 LOOP 24VDC NTS CHECKED R OLDLAND 5 4 2000 RED APPROVED S BROWN 5 4 2000 4 BEAM TITLE 6200 6400 SERIES TRANSMITTER WIRING DIAGRAM FOR LOOP BLUE Protec Fire Detection pl _ hec a duci lb POWERED BEAM DETECTOR LOOP BRAID Tet 0122 170 Fox 01282 717273 USING FIRERAY 2000 l DRAWING No P S 6 JOB No WEFA272 2 ISSUE 1
12. PID 212 6300 Loop LCD Connector Data Sheet PID 213 6300 Loop LCD Connection Data Sheet PID 214 6300 Loop LCD Configuration Data Sheet PID 218 6300 Loop RPT Wiring Details PID 219 6000 Monitored I P Interface PID 221 6000 Clean Contact O P PID 222 6000 RBNO 6000 RBNC 93 509 09 Issue 2a Page 17 of 17 Copyright Protec Fire Detection PLC 4 LOOP OV LOOP OV DETECTOR LED ALIGNMENT MARK LOOP VE ISSUE ALTERATIONS DRAWN APP D MOD No DATE 1 0UT amp N REMOVED FROM VE LINE SB A521 5 5 9 00 LOOP VE REMOTE INDICATOR IF FITTED Nelson Protec Fire Detection Protec House Churchill Way Lomeshaye Ind Est Lancashire U i Tel 01282 717171 DESIGNED DRWN 5 BISCOMB 20 5 99 CHECKED D R REEVES 29 999 APPROVED N HARLINC 25 5 99 6000 DIB ISOLATOR BASE DETAILS Fax 01282 717275 DRAWI G No FID OS JOB No ISSUE 1 Nelson Lancashire U K Tel 01282 717171 01282 717273 DRAWING No PIDI 66 JOB No A4 ISSUE 412 LOOP OV LOOP OV DETECTOR LED ALIGNMENT MARK LOOP VE ISSUE ALTERATIONS DRAWN APP D
13. 10 6000 CCO MONITORED INPUT BOARD 0 65 4 6000 MIP LOOP BEAM DETECTOR 15 25 6000 BEAM TALKING SOUNDER BASE 0 7 10 6000 ATSB2 SYSTEM SOUNDER 0 65 5 6000 SSR2 93 509 09 Issue 2a Copyright Protec Fire Detection PLC Page 9 of 17 os lo y YA 3 3 27 16 6300 INSTALLATION MANUAL 6300 INSTALLATION MANUAL TABLE 3 ADDRESSABLE LOOP EQUIPMENT WITH AUXILIARY SUPPLY CURRENT DETAILS ADDRESSABLE DEVICES QUIESCENT mA ALARM mA LOOP 24V LOOP 24V LOOP ADDRESSED SOUNDER BASE 0 58 1 5 8 WITH AUXILIARY SUPPLY 6000 ASB4 LOOP ADDRESSED SOUNDER BASE 0 58 1 5 25 average WITH FLASHING BEACON AUXILIARY 80 peak SUPPLY 6000 ASBEA4 LOOP ADDRESSED SOUNDER WITH 0 5 2 20 AUXILIARY SUPPLY 6000 SRZ4 LOOP ADDRESSED BEACON WITH 0 5 2 45 AUXILIARY SUPPLY 6000 PVR4 LOOP ADDRESSED SOUNDER BEACON 0 5 2 75 WITH AUXILIARY SUPPLY 6000 SRZ4 PVR ZONE ALARM INTERFACE 0 6 4 zone load 4 35 alarm load 6000 ZA 1A max 16 WAY INTERFACE 7 18 zone load 7 18 zone load 6000 16WA Y output board output board load load 5A max 5A max TABLE 4 NON ADDRESSABLE LOOP EQUIPMENT CURRENT DETAILS NON ADDRESSABLE DEVICE QUIESCENT mA ALARM mA LOOP 24V LOOP 24V 24V SOUNDER BASE 7 6000 SB 24V SOUNDER BASE WITH BEACON 25 average 6000 SBEA 80 peak FLUSH ISOLATOR UNIT 0 12 0 12 6000 FIU BOXED ISOLATOR UNIT 0 12 0 12 6000
14. E a xe OOP 4 DRAWING STATUS DATE INFORMATION 1 11 02 SCALE DESIGNED DRAWN L McLAUCHLAN 6 6 02 N T S RP OLDLAND 7 6 02 APPROVED K NEWBY 7 6 02 ThE 6300 LOOP LCD CONNECTION DATA SHT CLIENT VERSION 1 DRAWI G No ISSUE WaR JOB No pid213 55 ALTERATIONS DRAWN APP D MOD No DATE ON Rx ALL BUZZER ACTIVE 12345 6 7 8 ON BU DISABLED RX ES ONLY 1234353678 wx FAULTS ONLY Rx DISABLE x ENTS ONLY w FIRES amp FAULTS ONLY amp DISABLE lt ENTS ONLY DRAWING STATUS INFORMATION 19 11 02 E DESIGNED Rx GENERAL ALARM ONLY LMcLAUCHLAN 6 6 02 N T S CHECKED RP OLDLAND 7 6 02 APPROVED K NEWBY 7 6 02 MLE 6300 LOOP LCD CONFIGURATION DATA SHEE Protec House Churchill Way Lomeshaye Ind Est R X C B 3 N LY Te 01289 PR on 01282 CLIENT VERSION 1 DRAWING No Ld 1 298 Pid2
15. IU DUAL ISOLATOR BASE 0 12 0 12 6000 DIB STANDARD BASE 6000 BASE RELAY BASE 0 05 15 6000 RBNC or 6000 RBNO The peak values occur when the beacon is at its on stage during flashing There are variants of this product depending upon the monitoring requirements 93 509 09 Issue 2a Page 10 of 17 Copyright Protec Fire Detection PLC p Pr tec LIAL LA 7 6300 INSTALLATION MANUAL 6300 INSTALLATION MANUAL INSTALLATION PROCEDURE 4 1 CONTROL PANEL The 6300 is supplied complete and fully assembled in one box The box also contains an installation template showing mounting hole amp cable entry positions with spirit level and plumb bob references 1 Unpacking Remove the installation template from the packaging leaving the 6300 unit in the box for protection 2 Preparing the Mounting Position Use the installation template together with a spirit level etc to mark drill and plug the 3 mounting holes in the desired position 3 Removal of the Plastic Door Remove the 6300 unit from the packaging Use the key supplied to unlock the outer plastic door remove the plastic door by extracting the hinge pins and place the door back in the box for protection 4 Removal of the Inner Door Unscrew the 3 fixings on the metal inner door at the lock side of the door Open the inner door and disconnect the earthing point on the door and the wide ribbon cable that connects the main board
16. fitting the Plastic Door Re fit the outer plastic door by offering the door up to the hinges and inserting the 2 hinge pins 93 509 09 Issue 2a Page 11 of 17 Copyright Protec Fire Detection PLC p PE t k LA 772 6300 INSTALLATION MANUAL 6300 INSTALLATION MANUAL 4 2 FIELD EQUIPMENT All metal termination boxes and detector bases should be securely fastened to the mounting surface and earth bonded FIELD EQUIPMENT MUST NOT BE CONNECTED AT THIS STAGE 93 509 09 Issue 2a Page 12 of 17 Copyright Protec Fire Detection PLC p PE t AC MLB 6300 INSTALLATION MANUAL Before connecting external cables to any field device tests must be carried out using a 500V DC insulation tester Megger The readings between each cable core and each core and earth must be greater than 10M ohms record the readings Equipment connected to the cabling during insulation tests could be damaged with the high voltages produced Great care must be taken during insulation tests to discharge the cables since charged cable may damage the control equipment upon connection 93 509 09 Issue 2a Page 13 of 17 Copyright Protec Fire Detection PLC p iA PEL r AEN 6300 INSTALLATION MANUAL For general wiring details see Product Information Drawings see REFERENCES section 6 1 CONTROL EQUIPMENT Wiring details are supplied for reference only DO NOT MAKE ANY CONNECTIONS TO THE CONTROL PANEL 6 2 FIELD EQUIPMENT In ord
17. loop refer to PID 194 If networking is not used then a 4 core communication link 2 data 2 power can be used to provide an RS485 serial link to a maximum of 4 repeat panels 1 2 6000 SERIES LOOP Each 6300 has the capability to communicate with Protec 6000 Series loops Each addressable loop device has a unique Serial Number The 6300 panel communicates with each device by this Serial Number and the device replies with an analogue value This analogue value is interpreted by the panel to determine the state of the device The panel is therefore able to track accurately any changes in device reply values and initiate any necessary actions The installer must mark up on the as fit drawings the panel number if more than one loop number and address of each device This information will be required in section 6 2 93 509 09 Issue 2a Page 3 of 17 Copyright Protec Fire Detection PLC p Pr tec LIAL LA 7 6300 INSTALLATION MANUAL 6300 INSTALLATION MANUAL 1 2 1 LOOP SHORT CIRCUIT OR LOOP INTERRUPTION 54 part 2 clause 12 5 2 states that it must not be possible to have a short circuit or interruption in a loop that prevents the indication of a fire alarm from more than 32 fire detectors and or manual call points To comply with this instruction the installer must fit at least one isolator per 32 detectors and or manual call points The 6000 series loop has been designed with this in mind and so all addressable s
18. 14 ISSUE 0 REPEAT DISPLAY DOOR ISSUE ALTERATIONS DRAWN APP D MOD DATE 1 TITLE BLOCK UPDATED LMc A7289 20 11 02 li A4 ISSUE 1 04 820 44 ER 41 703 48 8 1 5 8 Z 5 POWER CONNECTOR I il 5 B 5 En T lt z 100 41 989 76 LED A connector e A e Loop WEFA 508 iss 5 T O L00P 41 347 48B 9 9j vwor 51 271 40 DRAWING STATUS DATE INFORMA ION 22 11 02 SCALE DESIGNED DRAWN CGJ 19 6 02 N T S P Garnett 24 6 02 Say ee qm om APPROVED N HARLING 24 6 02 Protec Fire Detection plc MLE 6300 LOOP RPT CONNECTION DETAIL Protec House Churchill Way Lomeshaye Ind Est N UK RT re AAN 01289 7 773 CLIENT JOB No DRAWING No P 1 e 218 LOOP R29 LK1 REMOVE LK1 TO OBTAIN 14SEC SPRINKLER DELAY MODE 4 LOOP LOOP LOOP
19. 282 717273 DRAWING No PIDI 67 ISSUE 412 JOB No ISSUE ALTERATIONS DRAWN APP D MOD No DATE 1 amp IN REMOVED FROM VE LINE SB 9 45215 5 9 00 OV LOOP _ REPEAT LED OV LOOP REMOTE INDICATOR IF FITTED LINE VE LINE SCALE DESIGNED DETECTOR LED DRAWN 5 BISCOMB 23 23 99 1 CHECKED D R REEVES 25 5 99 ALIGNMENT MARK APPROVED N HARLING 25 3 99 TITLE 6000 BASE LOW PROFILE BASE WIRING DETAILS Protec House Churchill Way Lomeshaye Ind Est Nelson Lancashire U K B Tel 01282 717171 Fax 01282 717273 JOB No DRAWING No 5 A4 ISSUE Lo 1 Dae 4 ISSUE ALTERATIONS DRAWN APP D MOD No DATE 1 lOUTPUT amp INPUT REMOVED FROM VE LINE SB sw A5215 5 9 00 ONITORING 8K2 OR LOOP AUX 24V SWITCH TO CHANGE ZONE NNNM 4 7 E O L MONITORING LOOP V 24V DEM IDEAL E O 1 LOOP V OV ZONE ALARM MONITO
20. 300 INSTALLATION MANUAL INTRODUCTION This document describes the methods to be employed when installing and connecting equipment associated with the PROTEC 6300 FIRE ALARM CONTROL PANEL The 6300 panel is produced with 1 2 or 4 loops and this manual is suitable for all versions 1 1 THE 6300 SYSTEM REFER TO PID 203 6300 Example System Diagram Each addressable loop device has a unique Serial Number The 6300 panel communicates with each device by this Serial Number and the device replies with an analogue value This analogue value is interpreted by the panel to determine the state of the device The panel is therefore able to track accurately any changes in device reply values and initiate any necessary actions The 6300 panel can drive up to 4 loops each containing a maximum of 191 devices No more than 512 detectors and manual call points spread across all four loops may be fitted in order to comply with En54 Each device can actuate an on site programmable set of outputs 8 internal outputs are available 4 monitored 2 non monitored changeover contacts a monitored 24V fire station output and a non monitored fault changeover contact It is also possible to have an output on any address point using ZONE ALARM interface units and 16 Way I O Boards It is possible to network up to 31 panels repeaters Networked panels repeaters use a separate network card mounted on top of the terminal board They are connected together using an RS485
21. 5 15 15 15 15 15 25 25 600 10 10 15 15 15 15 15 25 25 25 25 Alarm Loop Length metres 1000 1050 1100 1150 1200 1250 1300 1350 1400 1450 1500 50 15 15 15 1 5 15 25 25 25 25 25 25 Total 100 15 15 15 15 l5 25 25 25 25 25 25 150 15 15 15 15 15 25 25 25 25 25 25 Loop 200 15 15 15 15 15 25 25 25 25 25 25 250 115 15 15 15 15 25 25 25 25 25 25 Load 300 15 1 5 1 5 1 5 15 25 25 25 25 25 25 350 15 15 15 115 15 25 25 25 25 25 25 400 15 15 15 15 15 25 25 25 25 25 25 450 15 182 15 15 125 35 25 25 25 35 25 500 25 25 25 25 25 25 25 25 25 25 N A mA 50 25 25 25 25 25 25 25 25 25 25 600 25 25 25 25 25 25 25 25 N A N A N A Alarm 93 509 09 Issue 2a Page 6 of 17 Copyright Protec Fire Detection PLC p Pr tee TALI 7727 6300 INSTALLATION MANUAL 6300 INSTALLATION MANUAL 2 4 ALARM CABLING The main consideration for the alarm cable is the length This length must include all spurs For example an alarm circuit of 800m with three spurs of 150m must be considered as being 1250m in length Notes 1 The alarm cabling must be wired a minimum standard of 2 5mm fire rated cable 2 If however the total alarm cabling length is less th
22. 9 6 00 APPROVED P DEW 29 6 00 JJADDRESSES UST BE CONSECUTIVE AROUND THE LOOP IILE 4 ADDRESSES US BE THE SAME AS THOSE Protec Fire Detection Protec House Churchill Lomeshaye Ind Est ASSIGNED ON EACH PANEL M 280 ITI 01282 717213 DRAWING No P D 1 Q 4 JOB No A4 ISSUE 5 ISSUE ALTERATIONS DRAWN APP D MOD No DATE OOP OF BREAKGLASS LOOP A se000 LOOP LOOP LOOP BARCODE TERMINAL 2 ki 2 Ej BLOCK SCALE DESICNED DRAWN P STRICKLAND 15 9 00 N T S CHECKED JR GLDLAND 15 9 00 APPROVED N HARLING 15 9 00 TILE SERIES 6000 BREAKGLASS WIRING DIAGRAM Protec Fire Detection plc Protec House Churchill Way Lomeshaye Ind Est CLIENT Nelson Lancashire UK 889 6RT Tel 01282 717171 Fax 01282 717273 JOB No DRAWING No DID 96 ISSUE O LOCAL SUPPLY MONIIOR ISSUE ALTERATIONS DRAWN APP D MOD No DATE LOOP INPUT
23. ARK 5 OV Loop 5 OV Loop x OV Loop OV Loop Terminal Block Usage Base Connection 6 M Unused 6 Unused connection 7 m Unused 7 Unused 7 ve loop Y 2 ve loop Y TERMINAL BLOCK TERMINAL BLOCK 3 Rpt LED Y IN IN NR 4 RPT LED 2 7 x DUCT HOUSING DUCT HOUSING 5 OV Loop W X or space OV Loop W 6 Unused 7 Unused FINAL CHECKS A Ensure the arrow on the clear perspex cover of the STA D5 duct is pointing in SCALE DESIGNED the same direction as the air flow in the duct DRAN 5 BISCOMB 12 6 00 N S CHECKED S BROWN 16 6 00 B Check the rubber gasket between the base of the STA D5 and the ducting and APPROVED P GARNETT 19 6 00 ensure the seal between them is airtight TITLE C Check the fl indicator i illati th i irfl th h the detect SOOO OF ANALOGUE ec e flow indicator is oscillating thus ensuring airflow throug e detector Protec Fire Detecti 1 ue Cure Wo nene a BASE WIRING DETAILS DJ It is recommended that smoke from a smoke generator or smoke pellets is M maed PUL a 01282 717273 introduced directly into the duct to check correct function of the detector via Venturi JOB N DRAWING No pipe PID192 A4 ISSUE
24. CCO WIRE CHANGE OVER CONTACTS AS REQ D SCALE DESIGNED DRAWN S BISCOMB 23 11 99 6000 MICCO 240 WIRE CHANGE OVER NTS 0 R REEVES 23 11 99 CONIACIS AS REQD APPROVED S BROWN 23 11 99 TITLE 6000 MICCO WIRING DIAGRAM FOR INTERFACE 6000 MICCO SDU CUT LK2 FOR Protec Fire Detection SPRINKLER DELAY ALTER ian TIMING RESISTER R48 Tel 01282 717171 Fax 01282 717273 IF REQUIRED DRAWING No gt JOB No D132 ISSUE 3 9 9 9 9 ISSUE ALTERATIONS DRAWN APP D MOD No DATE R RED nsi We N O 1 WIRING CORRECTED SB DRR A4891 10 4 00 BLUE T SIG RECEIVER ALARM N C 5500 1 OV COM 4 BRAID N O EO DENOTES INTERNAL WIRING E FAULT N C ptus 4 LLLA FIRERAY 2000 DENOTES CONTRACTORS WIRING RECEIVER E
25. DATE x OUT amp IN REMOVED FROM VE LINE SB A5215 5 9 00 2 6000 5 2 ADDED TO TITLE SB seo A5292 5 10 00 IF FITTED LOOP VE REMOTE INDICATOR SCALE DESIGNED DRAWN 5 BISCOMB 25 5 99 1 A CHECKED D REEVES 25 5 99 APPROVED N HARLING 2525299 Protec Fire Detection Protec House Churchill Way Lomeshaye Ind Est WITH ISOLATOR B9 6RT I 2 WIRE 6000 ASB2 amp 6000 ASBEA2 ANALOGUE SOUNDER BASE ISSUE ALTERATIONS DRAWN APP D IMOD DATE 1 TITLE DETAILS MODIFIED SB DRR A4688 5 1 00 2 OUT amp N REMOVED FROM VE LINE SB seo A5215 5 9 00 LOOP OV LOOP OV REMOTE INDICATOR IF FITTED DETECTOR LED ALIGNMENT MARK LOOP VE LOOP VE 24V SOUNDER SUPPLY OV SOUNDER SUPPLY SCALE DESIGNED DRAWN 5 BISCOMB 25 5 99 121 eo D R REEVES 25 3 99 APPROVED HARLING 25 5 99 6000 SB AND 6000 SBEA CONVENTIONAL SOUNDER BASE WITH ANALOGUE Protec Fire Detection plc DETECTOR Protec House Churchill Way Lomeshaye Ind Est Nelson Lancashire U K 9 6RT Tel 01282 717171 Fax 01
26. EE S an Qe Qr ge ia TT ea T SEPARATE 1 xs SUPPLIES SUPPLY 24V A A B44 B A A B B A A B B A A B B AUX 2 AUX 1 ov C N O FIRE R V ALT AL2 ALS AL4 L1 L1 L2 L2 L3 L3 14 L4 RS485 24 OOODOOOO 9 OV ALARM OUTPUTS OOOOOO zu OV N C C N O CHARGER SUPPLY FAULT RELAY i FAULT FSSIIFSTII FS2 FS3 FS4 NETWORK CARD MOUNTING HOLES peer Et FS6 HH 6204 6300 E DUAL SUPPLY FS1 4 ALARM 1A A S 5 BYARD M O FS5 AUX SUPPLY 1A Q B FS6 PRINTER SUPPLY 1A Q B J6 J4 J5 WEFA277 UET AADS FITTED WHEN USING NETWORK CARD UPGRADE FIT THE 4 STANDOFFS TO THE FIXING HOLES SAE AN T HRCKINGI 26 301 MOUNT THE NETWORK CARD ONTO THE STANDOFFS nts 28 3 01 FIT POWER LEAD SUPPLIED FROM J3 NETWORK CARD J1 THLE FIT 252 LEAD SUPPLIED FROM J4 IO NETWORK CARD Protec Fire Detection plc CONNECTIONS USE THE RS485 TERMINALS ON THE NETWORK CARD AND NOT THOSE ON THE TERMINAL BOARD Por T MN DRAWING No D JOB No D201 ISSUE 1 SR ISSUE ALTERATIONS DRAWN APP D MOD No DATE REPEAT 1 MINOR MODS JH RPO A6025 1 12 7 01 PANEL COMMS E NOT USED IF NETWORK 4 CARD IS FITTED
27. FAULT 47K NORMAL 22K ALARM 1K FULL ALARM 190 0 SHORT CIRCUIT FAULT DRAWING STATUS DATE ORIGINAL DESIGNED SCALE 18 9 02 DRAWN I BULCOCK 5 7 02 NTS CHECKED D REEVES 5 7 02 APPROVED HARLING 5 7 02 Protec Fire Detection plc Protec House Churchill Way Lomeshaye Ind Est Nelson Lancashire U K 9 6RT Tel 01282 717171 Fax 01282 717273 TILE S6000 MONITORED P INTERFACE 509 CLIENT DRAWI ISSUE 210219 JOB LOOP LOOP LOOP LOOP LOOP LOOP OQ OOO LE ES 511 10500 1 24 DC 4 Z O NOININOO 2 C 97 NO Installation p rocedure for Protec 6000 CCO Variant products ISSUE ALTERATIONS DRAWN APP D MOD No DATE This document Commissioni as part of panel booklet mportant T ng he necessary to re the product commissioni in t been placed t is important that the serial no s are not mixed otherwise the ng nterface serial no in commissioning of the fire alarm system move one of the peelable bar code labels that has pertains to Protec 6000 CCO Variant products only instructions
28. LI 4 ISSUE MOD DATE MUTE SWITCH CONNECTOR MUTE BUTTON 1111111 LCD LIGHT CONN ESP eae pee BL 27 738 75 DATE 6 65 02 6 6 02 7 6 02 7 6 02 Protec Fire Detection R DATA SHEET Protec House Churchill Way Lomeshaye Ind Est Nelson Lancashire U K 9 6RT Tel 01282 717171 JOB No DRAWING PID 212 ISSUE PID 212 4 Tel 01282 Protec Fire Detection Protec House Churchill Way Lomeshaye Ind Est Nelson Lancashire U K BB9 Fox 01282 717273 717171 ISSUE ALTERATIONS DRAWN APP D No DATE WEFA 300 iss B MUTE SW 41 447 48 B H 115mm W 165mm Ca co POWER CONNECTOR BL o D e e Ea LOOP 1 87 100 LED A connector
29. LS A amp ARE THE CLEAN CONTACT TERMINALS NORMALLY OPEN OR NORMALLY CLOSED CLEAN CONTACTS 1 24vDC MAX DG SCIT 26 N RA gt Protec House Churchill Way Lomeshaye Ind Est Nelson Lancashire U K 889 6RT Tel 01282 717171 Fax 01282 717273 DRAWING No D D 2 p 2 JOB No ISSUE DESIGNED DRAWN L J HOLT 18 9 02 CHECKED C WHITAKER 18 9 02 APPROVED N HARLINC 18 9 02 RBNO 6000 RBNC
30. OUNTING KNOCKOUT 10mm KNOCKOUT 2 x 10mm KNOCKOUT FOR CABLE ENTRY CIRCULAR KNOCKOUT FOR LOCKING SCREW IF REQ D LOW PROFILE GLAND BOX DETAILS CARE SHOULD BE TAKEN NOT TO TRAP WIRES ESPECIALLY ON LOW PROFILE BASES A4 CURRENT CONSUMPTION SOUND OUTPUT MATERIAL iss een ete tuu OPERATING TEMPERATURE ENVIRONMENT NOTE For ather proofing all cable entries and screw fixing points must be sealed at installation we TYP 4 5mA gt 100dB A 1M RED WHITE ABS BAe 20 C TO 60 WEATHERPROOF LOOP WIRING CONNECTION DETAILS REMOVEABLE SERIAL No LABELS REAR VIEW GLAND BOX REMOVED Protec Fire Detection plc Nelson Lancashire U K 9 6R Tel 01282 717171 Fox 01282 717273 SCALE DESIGNED DRAWN LBULCOCK 18 5 02 S CHECKED R OLDLAND 18 3 02 APPROVED S BROWN 18 5 02 Protec House Churchill Way Lomeshaye Ind Est 9 6RT TITLE 6000 SYSTEM SOUNDER WIRING DETAILS DRAWING No PID20 JOB No ISSUE O 2 005 19 8 CONNECTOR 2 WAY CONNECTOR LED CONTROL CONNECTOR 11111
31. RING t re EOL RL2 94 ee VE VE OV 24V EEMES DETECTION ZONE LDUP AUX 84V ZONE ve ee ee e e e V ALARM ZUNE ALARM INTERFACE e 1 QUICK BLOW FUSE ONE ALARM INTERFACE 10K 100uF SCALE DESIGNED DRAWN S BISCOMB 4 5 99 NTS CHECKED S BROWN 4 5 99 APPROVED REEVES 4 5 99 TITLE 6000 ZAI WIRING DIAGRAM FOR ZONE ALARM INTERFACE Protec Fire Detection plc Protec House Churchill Way Lomeshaye Ind Est CLIENT Nelson Lancashire U K 889 6RT Tel 01282 717171 Fax 01282 717273 DRAWING No B 1 E 1 JOB No ISSUE 1 Nelson Lancas hire U K BBS 6RT Tel 01282 717171 Fax 01282 717273 DRAWING No PIDI BO JOB No A4 ISSUE 2 OV AUGMENTED SUPPLY LOOP OV LOOP OV DETECTOR LED ALIGNMENT MARK LOOP VE ISSUE ALTERATIONS DRAWN APP D No DATE 1 OUT amp IN REMOVED FROM VE LINE SB s BO A5215 5 9 00 2 REMOTE INDICATOR NOW B X NOT B Y P S s s o 6500 16 11 01 V AUGMENTED SUPPLY LOOP VE REMOTE INDICATOR IF FITTED SCALE DESIGNED DRAWN S BISCOMB 2 9 99 1 il CHECKED D R REEVES 9 99 i APPROVED S BROWN 7 9 99
32. TROL UNIT 6200 6200 6200 PAN EL FAULT C O CONTACTS BEAM DETECTOR RECEIVER UNIT 6300 LL X AM R TRANSMITTER UN ZONAL CONTROL CONTROL 24V AUX OUTPUT T BE DETECTOR T SMITTER UNIT SCORE BOMB ALERT CLASS CHANGE INPUT lt gt LOOP ISOLATOR RS485 NETWORK USING 6200 6300 NETCARD IN EACH PANEL REPEATER UP TO 32 PANELS L LOOP SOUNDER 230V AC SUPPLY 6200 6200 6200 STANDARD SOUNDER 6500 6500 6300 CONTROL REPEAT CONTROL PANEL PANEL PANEL SCALE DESIGNED DRAWN J HACKING 28 3 01 NIS CHECKED R P OLDLAND 30 3 01 APPROVED P DEW 30 3 01 TITLE 6204 6300 EXAMPLE SYSTEM DIAGRAM SHOWING 2 LOOPS Protec Fire Detection plc Protec House Churchill Way Lomeshaye Ind Est Nelson Lancashire U K 9 6RT Tel 01282 717171 Fox 01282 717273 DRAWING No 2 O b JOB No ISSUE 1 ISSUE ALTERATIONS DRAWN APP D MOD DATE INSTALLATION DETAILS SPECIFICATION OPERATING VOLTAGE RANGE PROTOCOL 16 30V D C 2 X ALIGNMENT MAR 6 IF REQ D _ STANDARD GLAND BOX DETAILS NOTE MOUNTING KNOCKOUT CIRCULAR KNOCKOUT VIR FOR LOCKING SCREW ALIGNMENT MARKER 20mm GLANDS FOR CABLE ENTRY 6 x 20mm 20mm GLAND FOR CABLE ENTRY x 20mm FOR CABLE ENTRY 1x 20mm GLAND FOR CABLE ENTRY M
33. an 1km then the alarm circuit may be wired a minimum standard of 1 5mm fire rated cable In countries where local standards permit the alarm circuit can be wired in Twin Figure 8 cable but the cable length and load will have to be reduced in accordance with the lower conductor size 3 The maximum permissible alarm circuit length is limited by volt drop EACH OF THE ALARM CIRCUITS MUST BE WIRED IN A SEPARATE PAIR WHEN THE CABLE HAS A SCREEN THEN THE SCREEN MUST BE EARTHED AND CONTINUOUS OVER THE CABLE RUN TABLE 1 CABLING NUMBER OF CORES CABLE Number of Cores Supply 230 volts 50Hz Network Data Repeat Panel Data Loop Circuit 2 per loop Alarm Circuit 2 per circuit Power Pair For Zone Alarm Interface Units I O Interface Units Repeat Panel Power Supply Remote Chargers Only 5 24 Supply circuit 1 24V Supply circuit 2 SF amp CI Signals 93 509 09 Issue 2a Page 7 of 17 Copyright Protec Fire Detection PLC LATA 6300 INSTALLATION MANUAL 6300 INSTALLATION MANUAL CURRENT CONSUMPTION It is necessary to calculate current consumption figures for the system in standby mains fail and alarm conditions in order to select the correct battery capacity 3 1 PANEL CURRENT Details of panel currents for standby and alarm are shown in the 6300 specification later in this manual 3 2 LOOP CURRENT Figures for the loop device current for battery capacity calculations are contained in tables 2 3 a
34. ection PLC p f 6 Ja 252 22555 6300 INSTALLATION MANUAL 6300 INSTALLATION MANUAL 6300 SPECIFICATION POWER SUPPLY MAINS WORKING VOLTAGE CURRENT CONSUMPTION MAXIMUM LOOP CURRENT ANALOGUE ADDRESSES ZONES ALARM OUTPUTS MAXIMUM ALARM LOAD FIRE STATION OUTPUT FAULT OUTPUT SERIAL COMMUNICATIONS NETWORK INTEGRAL CHARGER INTEGRAL BATTERIES Lynteck OL Models AUXILIARY 24V OUTPUT INTERNAL PRINTER SUPPLY TEMPERATURE RANGE HUMIDITY LIMIT ENVIRONMENT DIMENSIONS ENCLOSURE MOUNTING 93 509 09 Issue 2a 230V AC Nominal 10 250V HBC Fuse 21 5 30V DC 180mA WITHOUT LOOP LOAD 24V DC MAINS FAILED PRINTER STATIONARY 600 per loop 4 LOOPS 191 ADDRESSES PER LOOP Maximum of 512 Detectors and Manual Call Points to comply with En54 32 i 4 MONITORED 24V DC T1A 250V FUSES H 2NON MONITORED CONTACTS 1A RATED 24V DC Hi LOOP ADDRESSABLE OUTPUT DEVICES SUBJECT TO THE FOLLOWING PARAMETERS NOT BEING EXCEEDED THE MAXIMUM NUMBER OF DEVICES PER LOOP THE MAXIMUM LOOP LENGTH THE MAXIMUM LOOP CURRENT 3A WITH INTEGRAL POWER UNIT INCLUDING LOOP CURRENT AND INTERNAL PANEL CONSUMPTION MONITORED 24V DC OUTPUT RATED 20mA max SINGLE POLE CHANGEOVER CONTACTS 1 RATED 24V DC 2 WIRE RS485 COMMS 2 WIRE POWER 2 WIRE RS485 LOOP 3A SWITCH MODE Protec series 9000 PSU 4 6V 10Ah Sealed lead acid 2 x 12 26Ah Sealed lead acid when using the externa
35. er to perform the commissioning of devices correctly the following procedure needs to be carried out upon installation of each addressable loop device e Remove one of the unique Serial Number bar code labels e Place this label at the chosen Node Loop and Address position in the Commissioning Booklet provided The address position was defined in section 1 With reference to the relevant connection diagrams connect the remaining field equipment Note Insulation tests MUST NOT be carried out after this point and the mains or standby supply MUST NOT be connected 6 3 ALARM CIRCUITS Each of the four alarm circuits requires a 10K end of line resistor for open and short circuit monitoring 6 4 FIRE STATION OUTPUT This output is the Output to Fire Alarm Routing Equipment defined by En54 It is designed to drive 24V into an 11000 load This output is open and short circuit monitored by the use of a 0 5W end of line resistor 93 509 09 Issue 2a Page 14 of 17 Copyright Protec Fire Detection PLC p PE t UF TALK A 7 1 6300 INSTALLATION MANUAL 6300 INSTALLATION MANUAL OMMISSIONING REQUIREMENTS Refer to the supplied copy of COMMISSIONING STANDARD TERMS for details of requirements before commissioning can take place Note The Fire Alarm Commissioning Application form must be completed and returned 14 days before a commissioning engineer can attend 93 509 09 Issue 2a Page 15 of 17 Copyright Protec Fire Det
36. l battery box mounted beneath the panel 24V DC 250V FUSE 24V DC 250V FUSE 0 40 C 85 NON CONDENSING The 6300 meets IP30 It must be mounted in a dry position that does not exceed the temperature or humidity limits specified above 385 H x 440 W x 145 D Storm grey textured enclosure smooth inner door with molded v rated polycarbonate lockable front door 3 points surface mount Page 16 of 17 Copyright Protec Fire Detection PLC p J A te A IT 6300 INSTALLATION MANUAL 6300 INSTALLATION MANUAL APPENDIX A The following Product Information Drawings PIDs are attached PID 165 6000 DIB Isolator Base Details PID 166 2 Wire 6000 ASB2 Analogue sounder Base with Isolator PID 167 6000 SB Conventional sounder Base with Analogue Detector PID 168 6000 BASE Low Profile Base Wiring Details PID 171 6000 ZAI Wiring diagram for Zone Alarm Interface PID 180 6000 ASB4 6000 ASBEA4 Sounder Base PID 182 6000 MICCO Wiring Diagram PID 186 6200 6300 Loop Powered Beam Detector Wiring Diagram PID 189 6000 Series 16 Way input pcb details PID 192 6000DP Analogue base wiring diagram PID 194 6300 Network connections PID 196 Series 6000 Breakglass Wiring Diagram PID 197 56000 16 Way Input pcb details PID 201 6300 Terminal Board Connections PID 202 6300 Repeat Terminal Board Connections PID 203 6300 Example System Diagram PID 207 6000 System Sounder Wiring Details
37. nd 4 These provide details of the quiescent and alarm currents of both the addressable and non addressable loop devices Note 1 Loop isolators devices that isolate sections of the loop if short circuit wiring faults occur are available as separate units Some 6000 series devices contain an isolator Check device literature 2 When using Zone interfaces the current per detector sounder must be added to the current requirement of the Interface Units refer to note 2 of table 3 93 509 09 Issue 2a Page 8 of 17 Copyright Protec Fire Detection PLC p gt p amp A AA LAIR AT 6300 INSTALLATION MANUAL 6300 INSTALLATION MANUAL TABLE 2 ADDRESSABLE LOOP EQUIPMENT CURRENT DETAILS ADDRESSABLE DEVICES QUIESCENT ALARM LOOP CURRENT LOOP CURRENT mA mA LOOP ADDRESSED SOUNDER BASE 0 55 5 6000 ASB2 LOOP ADDRESSED SOUNDER BASE 0 6 10 WITH FLASHING BEACON 6000 ASBEA2 BREAK GLASS 0 5 0 8 6000 BGK IONISATION SMOKE DETECTOR 0 52 0 82 6000 ION OPTICAL SMOKE DETECTOR 0 55 0 85 6000 OPTICAL HEAT SMOKE DETECTOR 0 58 0 88 6000 OPHT TEMPERATURE DETECTOR 0 48 0 78 6000 TEMP RED SYMPHONY SOUNDER 0 5 8 6000 SYM2R LOOP ADDRESSED SOUNDER 0 5 20 6000 SRZ2 LOOP ADDRESSED BEACON 0 5 45 6000 PVR2 LOOP ADDRESSED SOUNDER BEACON 0 5 75 6000 SRZ2 PVR MONITORED INPUT CLEAN CONTACT 1 3 5 OUTPUT BOARD 6000 MICCO CLEAN CONTACT OUTPUT BOARD 0 6
38. on the door to the back of the enclosure Close the door and extract the 2 remaining hinge pins Carefully remove the inner door from the unit including all circuit boards fitted to it and place it back in the box for protection 5 Removal of the battery clamp and gear tray Remove the two screws holding the battery clamp if supplied and carefully withdraw the clamp ensuring that it cannot short out the battery terminals Remove the 2 screws from the bottom of the gear tray in the back of the enclosure and loosen the two at the top key hole fixings Disconnect the earth connection from the gear tray to the enclosure Remove the gear tray from the enclosure including the attached circuit boards 6 Preparing and Fixing The Unit Using the installation template mark out suitable positions for cable entry on the back of the enclosure i e not behind the gear tray Cut out the cable entry positions and mount the enclosure at the position prepared in 2 feeding cables through into the box 7 Re fitting the gear tray and battery clamp Re fit the gear tray re fit is reversal of 5 Ensure that the earth removed in 5 is re connected DO NOT CONNECT ANY NON EARTH TERMINALS Refit the battery clamp refit is reversal of 5 ensuring that the clamp cannot touch the battery terminals DO NOT CONNECT THE BATTERIES 8 Re fitting the Inner Door Re fit the inner door re fit is reversal of 4 ENSURE THAT ALL EARTHING POINTS ARE RE CONNECTED 9 Re
39. ounder bases 6000 MICCO and 6000 MCP devices have a built in isolator If further isolators are required then loop isolator bases and loop isolation units are available see table 4 1 2 2 DELAYS TO OUTPUTS The 6300 panel can be programmed to delay the outputs En54 part 2 clause 7 11d states that it must be possible to override the delays and immediately action the delayed outputs at access level one Since access level one occurs when the outer panel door is locked then if delays are to be used this clause can be met in several ways The installer must check with the system designer how this is to be implemented because option 3 will affect the installation 1 No delays are programmed for manual call points 2 System programming permits a second activation to cancel delays and immediately activate outputs thus allowing any manual call point to be pressed upon confirmation of a fire 3 Programming at least one manual call point to activate all delayed outputs This should be placed adjacent to each panel and its purpose clearly labelled 1 2 3 DOUBLE ADDRESSING Double Addressing where a detection device and a sounder are assigned to the same address is not supported by the 6300 panel 93 509 09 Issue 2a Page 4 of 17 Copyright Protec Fire Detection PLC p Z Y 242 55 5 6300 INSTALLATION MANUAL All external wiring associated with the system must conform to the current Regulations and cabling must confo
40. p PLE a AA TAL KL A7 1 6300 INSTALLATION MANUAL 6300 INSTALLATION MANUAL ISSUE DATE DETAILS OF CHANGE 04 07 01 ORIGINAL ISSUE 21 11 02 REVISED TABLES 17 12 03 ENVIRONMENT INFORMATION BATTERY TYPE FUSE RATINGS amp CABLE TYPE 93 509 09 Issue 2a Page 1 of 17 Copyright Protec Fire Detection PLC p J A 2 A LAL IOLA 6300 INSTALLATION MANUAL 6300 INSTALLATION MANUAL INTRODUCTION 1 1 THE 6300 SYSTEM 1 2 6000 SERIES LOOP 1 2 1 LOOP SHORT CIRCUIT OR LOOP INTERRUPTION 1 2 2 DELAYS TO OUTPUTS 1 2 3 DOUBLE ADDRESSING CABLING 2 1 POWER SUPPLY CABLING REMOTE CHARGER ONLY 2 2 NETWORK SERIAL CABLING RS485 2 3 LOOP CABLING 2 3 1 GUIDE TO LOOP CABLE CONDUCTOR SIZES 2 4 ALARM CABLING TABLE 1 CABLING NUMBER OF CORES CURRENT CONSUMPTION 3 1 PANEL CURRENT 3 2 LOOP CURRENT TABLE 2 ADDRESSABLE LOOP EQUIPMENT CURRENT DETAILS TABLE 3 ADDRESSABLE LOOP EQUIPMENT WITH AUXILIARY SUPPLY CURRENT DETAILS TABLE 4 NON ADDRESSABLE LOOP EQUIPMENT CURRENT DETAILS INSTALLATION PROCEDURE 4 1 CONTROL PANEL 4 2 FIELD EQUIPMENT CABLE TEST CONNECTION 6 1 CONTROL EQUIPMENT 6 2 FIELD EQUIPMENT 6 3 ALARM CIRCUITS 6 4 FIRE STATION OUTPUT COMMISSIONING REQUIREMENTS 6300 SPECIFICATION APPENDIX A 93 509 09 Issue 2a Page 2 of 17 Copyright Protec Fire Detection PLC NANNDDUNH Un U p Pr tec LIAL LA 7 6300 INSTALLATION MANUAL 6
41. p This is because the RS485 network is wired as a loop in order to continue to indicate a fire alarm from any device on the system should a single break or short circuit occur in one of the RS485 circuits The maximum length of cable between any two 6300 panels the RS485 network 15 1km using a minimum standard of 1 5mm fire rated cable The maximum length of the whole RS485 network loop is 5km The maximum length of cable from the 6300 panel to all of the RS485 serial repeat panels is 1km using a minimum standard of 1 5mm fire rated cable In countries where local standards permit the network can be wired in Twin Figure 8 cable but the cable length will have to be reduced in accordance with the lower conductor size EACH OF THE RS485 CIRCUITS MUST BE WIRED IN A SEPARATE PAIR WHEN THE CABLE HAS A SCREEN THEN THE SCREEN MUST BE EARTHED AND CONTINUOUS OVER THE CABLE RUN 93 509 09 Issue 2a Page 5 of 17 Copyright Protec Fire Detection PLC p J A A ITI 6300 INSTALLATION MANUAL 6300 INSTALLATION MANUAL 2 3 LOOP CABLING The main consideration for the loop cable is the loop length This length must include all sub loops and spurs For example a loop of 800m with three spurs of 150m must be considered as being 1250m in length Notes 1 The loop cabling must be wired in fire rated cable The minimum conductor size is shown in the tables of section 2 3 1 In countries where local standards permit the loo
42. ps can be wired in Twin Figure 8 cable but the loop length and load will have to be reduced in accordance with the lower conductor size 2 Maximum loop resistance 160 per conductor 3 Itis assumed that devices are evenly spread on the loop If a large load eg a number of sounders is located at the end of the loop then the volt drop along the cable must be calculated to ensure that the input voltage to the loop devices remains within the range of 16 to 30V peak Each address point must be numbered Sequential address allocation of devices on the loops is not necessary with a 6300 system but it may prove advantageous for fault finding EACH OF THE LOOPS MUST BE WIRED IN A SEPARATE PAIR WHEN THE CABLE HAS A SCREEN THEN THE SCREEN MUST BE EARTHED AND CONTINUOUS OVER THE CABLE RUN 2 3 1 GUIDE TO LOOP CABLE CONDUCTOR SIZES mm Loop Length metres 500 550 600 650 700 750 800 850 900 950 1000 50 10 10 10 10 10 10 10 15 15 15 15 Total 100 10 10 10 10 10 10 10 15 15 15 15 150 10 10 10 10 10 10 10 15 15 15 15 Loop 200 10 1 0 110 10 10 10 10 15 15 15 15 250 10 10 10 10 10 10 10 15 15 15 15 Load 300 10 10 10 10 10 10 10 15 1 5 1 5 1 5 350 10 10 10 10 10 10 10 15 15 15 15 400 10 10 10 10 10 10 10 15 15 15 15 450 10 1 0 10 10 10 15 15 15 15 15 15 500 10 10 10 10 15 15 15 15 15 15 25 ma 550 110 0
43. rm to the relevant BS specifications ECA recommended Cable Separation for Electromagnetic Compatibility in Buildings must be followed All cabling must be fully phased Identify and mark ends of cables Although no connections are to be made to the 6300 panel until the commissioning stage it is important that cables are left long enough to connect directly to the relevant terminals To ensure that cable tails are left with sufficient length all cable tails must be a minimum of 500mm Locate the termination positions using Product Information Drawings PID 201 6300 TERMINAL BOARD CONNECTIONS PID 202 6300 REPEAT TERMINAL BOARD CONNECTIONS 2 1 POWER SUPPLY CABLING REMOTE CHARGER ONLY If the 6300 panel has an external charger then it will require two separate 24V supplies This is a requirement of En54 part 4 clause 6 4 These two supplies must not be wired in the same fire rated cable In addition there is a fault signal SF from the charger to the panel and a charger inhibit signal from the panel to the charger These two signals can be combined with one of the 24V supplies into a 4 core fire rated cable The maximum length of cable between the charger and the 6300 panel will depend upon the volt drop along the cable No more than 3A must be supplied to a panel and no more than two panels must be fed from the same charger 2 2 NETWORK SERIAL CABLING RS485 A 6300 panel requires the RS485 network to be wired as a loo

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