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MZX, installation manual, doc. version 1,1, 120.415.963
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1. frequency of flashing Pass 0 5Hz and 1Hz arking and data Pass Synchronization Pass Durability Temperature resistance Pass Humidity resistance Pass Shock and vibration resistance Pass Corrosion resistance Pass Electrical stability Pass Fig 7 CPR Information Product Order Code EN54 23 FC410LPBS R 516 800 970 Beacon Sounder indoor use red housing EN54 23 FC410LPBS W 516 800 971 Beacon Sounder indoor use white housing EN54 23 FC410LPBS LP Beacon 516 800 972 Table 15 Order Information FIRECLASS Hillcrest Business Park Dudley West Midlands DY2 9AP UK www fireclass co uk FI R EC LASS FC D SYMOC PI doc version 3 18 November 2014 Subject to change without notice
2. 80 79 Table 10 Temporal 3 880 Hz Operational Performance Maximum Volume dB A Angle 40 V 20 V 15 84 83 45 94 93 75 96 95 105 96 94 135 93 92 165 83 83 Angle 40 V 20 V 15 88 87 45 92 92 75 97 95 105 99 97 135 95 94 165 87 86 Table 8 Dutch Slow Whoop 500Hz to 1200 Hz Table 11 DIN 1 Hz Sweep High Volume Operational Performance Maximum Volume dB A Operational Performance Maximum Volume dB A Angle 40V 20V 15 83 82 45 93 92 75 96 95 105 95 94 135 92 92 165 83 82 Table 9 7 Hz Fast Sweep Product Information Doc Version 3 Angle 40 V 20 V 15 78 77 45 83 82 75 88 87 105 90 89 135 86 85 165 77 76 Table 12 DIN 1Hz Sweep Low Volume 5 10 Technical Specification FIRECLASS Fire Detection System Beacon Information Category O open class device see Table 13 and Fig 3 The data applies to both the Slow Flash 1 2 Hz and the Fast Flash 1 Hz The light distribution is cylindrically symmetrical about an axis at a right angle Alpha of 90 to the surface on which the device is mounted i e when the device is mounted on a vertical wall the light distribution is sym metrical about an axis extending horizontally through the centre of the device s domed lens The light distri bution
3. Sounder Tones on page 3 define if the sounder is monitored as a function of volume set ting and system configuration Sounder Monitoring is also referred to as Reflective Sound Monitoring RSM For further details on the application of this function refer to the Technical Publications of the relevant Con trol and Indicating equipment 7 10 Technical Specification FIRECLASS Fire Detection System isolator Operation VE VE LOOP LOOP IN MONITOR MONITOR OUT a es ae VE VE Fig 5 Simplified Isolator Diagram The built in isolator serves as a protection device against short circuits It operates by isolating the section of line containing the short circuit from devices on the line and from the rest of the line refer to Fig 5 Opti mum operation requires the line to be wired as a loop so that a section of line with a short circuit can be iso lated between a pair of isolator devices including Sym phoni devices In order to enable the isolator s use in a looped circuit it is capable of passing current in both directions Loop IN to Loop OUT or Loop OUT to Loop IN 8 10 In the event of a line short circuit the line isolator con tinues to power its associated Beacon Sounder provid ing that either Loop IN or Loop OUT remains intact When a short circuit develops the adjacent isolator devices will isolate both sides of the loop from the faulty device cable The operation of the
4. loop driver means that there are effectively 2 operational modes for the built in isolator When the loop is first powered if a section of the line appears as a low impedance with an equivalent resistance of lt 400 Q the isolator will restrict the power to that section of line until the fault is cleared If a short circuit is introduced onto the line when the loop is already powered up in most instances the controller s internal protection will switch in before the line isolator The voltage is then removed from the line by the controller on restoration the isolator devices will isolate the low impedance section of the line Product Information Doc Version 3 FIRECLASS Fire Detection System Cabling Cabling Cables should be selected in accordance with local standards Cabling should be connected as shown in Fig 6 ensuring correct polarity Each terminal connection will accept wire size up to 2 5 mm MICC or similar FIRECLASS CONTROLLER REMOTE INDICATOR Fig 6 Simplified Wiring Diagram Product Information Doc Version 3 NOTICE Cabling Requirement Couplers are to be used with MICC cable Suitable glands must be used with the outdoor device to keep the IP65 rating DETECTOR R BASE 4B LOOP LOOP VE VE SYMPHONI 9 10 CPR Information CPR Information FIRECLASS Fire Detection System Order Information CE 0832 Control Equipment
5. m Indoor Beacon Sounder 216g m Outdoor Beacon Sounder 298 g Materials m Housing ABS FR or ABS PC FR Housing Colour White 21 0302 Red 21 0301 Mounting Requirements 50 mm or 60 mm Besa box or surface mount Table 1 Technical Specification The indoor back box has two drill positions on the bottom for gland holes The outdoor back box has 3 drill positions top and bot tom for gland holes The indoor beacon sounder body clips onto the backbox and can only be removed by the use of a special key The outdoor beacon sounder is secured to the backbox by four Allen key screws 1 10 Technical Specification FIRECLASS Fire Detection System INDOOR BEACON SOUNDER OUTDOOR BEACON SOUNDER O DRILL POSITION FOR GLANDS gs 60 FIXING CENTRES 100 62 Fig 2 Overall Fixing Dimensions FC410LPBS Symphoni Series Environmental Characteristics J DRILL POSITIONS FOR GLANDS S TOP AND BOTTOM eu 4 ZI Performance Characteristics Parameter Value Parameter Value Temperature Sound Operating Performance Indoor 10 C to 55 C SPL at 90 at a Outdoor 20 C to 70 C distance of 1m High 103 dB 3 Storage Low 90 dB 3 Indoor 25 C to 70 C a ae o o Or oes Outdoor 25 C to 70 C not Test ALS idi O Humidity to se
6. FIRECLASS Fire Detection System EN54 23 Open Class Symphoni Series of Loop Powered Beacon Sounders EN54 23 Open Class Symphoni Series of ppop Powered Beacon Sounders INDOOR BEACON SOUNDER OUTDOOR BEACON SOUNDER Fig 1 General View of EN54 23 Open Class FC410LPBS Symphoni Series Introduction The EN54 23 Open Class FC410LPBS Symphoni Series of Loop Powered Beacon Sounders are designed to be driven from a FIRECLASS controller via the addressable loop The EN54 23 Open Class Symphoni Series of Loop Powered Beacon Sounders consist of m FC410LPBS R Beacon Sounder indoor red hous ing m FC410LPBS W Beacon Sounder indoor white housing m FC410LPBS LP Beacon Sounder IP65 outdoor red housing The sounder has two volume settings m High 103dB 3 or m Low 90dB 3 The beacon emits a white flashing light and it has two flash rates m Slow Flash 4 Hz or m Fast Flash 1 Hz The EN54 23 Open Class FC410LPBS Symphoni devices are synchronised but not synchronous with other sounders FC430SB FC410SNM and beacons FC430SAB The first flash of the beacon is synchronised with the start of the tone The EN54 23 Open Class FC410LPBS Symphoni devices have a built in two port isolator Product Information Doc Version 3 Technical Specification Mechanical Characteristics The overall dimensions are shown in Fig 2 All dimen sions are in mm Parameter Value Weight
7. Limited Hillcrest Business Park Cinderbank Dudley West Midlands DY2 9AP United Kingdom 14 Fire alarm device Sounder and Visual alarm device VAD with short circuit isolator for use in fire detection and fire alarm systems installed in and around buildings 516 800 970 FC410LPBS R Type A DoP 2014 2006 516 800 971 FC410LPBS W Type A DoP 2014 2007 516 800 972 FC410LPBS LP Type B DoP 2014 2008 Sounder IP65 outdoor use red housing Essential Characteristics EN54 3 2001 A1 2002 A2 2006 Performance under fire condition Pass Operational reliability Pass Durability Temperature resistance Pass Humidity resistance Pass Corrosion resistance Pass Shock and vibration resistance Pass Electrical stability Pass Resistance to ingress Pass EN54 17 2005 Performance under fire conditions Pass Operational reliability Pass Durability Temperature resistance Pass Vibration resistance Pass Humidity resistance Pass Corrosion resistance Pass Electrical stability Pass EN54 23 2010 Duration of operation Pass Provision for external conductors Pass Flammability of materials Pass Enclosure protection Pass Access Pass anufacturer s adjustments Pass On site adjustment of behaviour Pass Requirements for software controlled devices Pass Coverage volume Pass Variation of light output Pass inimum and maximum light intensity Pass Light colour White Light temporal pattern
8. a RH Light Sk A Performance EN54 23 Category O Pressure Sounder output is quoted for Light Colour White flashing light atmospheric pressure of 1000 mBar Flash Rate Fast flash 1 Hz or Vibration Meets the requirements of slow flash Hz A an Table 3 Performance Characteristics Shock Meets the requirements of EN 54 3 and EN 54 23 EMC Corrosion Passes the SO corrosion test The EN54 23 Open Class Symphoni devices comply from EN 54 3 and EN 54 23 with the following P famil dard EN50130 4 i t of IP Rating IP code to EN 60529 in wall AR edad al ia mounted orientation Conducted Disturbances Radiated Immunity ladder IP21C Type A Electrostatic Discharge Fast Transients and Outdoor IP65 EN54 3 and EN54 23 Slow High Energy approved to IP33C Type B Table 2 Environmental Characteristics 2 10 EN61000 6 3 for Emissions Product Information Doc Version 3 FIRECLASS Fire Detection System Technical Specification Electrical Characteristics Alarm Current Parameter Low High Unit Sound Output 90 103 dB Sounder Only 3 15 8 65 mA Sounder and 8 73 14 2 mA Beacon 0 5 Hz Sounder and 9 8 15 3 mA Beacon 1 Hz Current s c Parameter Value Addressable Loop Voltage 20 40 Vdc DC Loop Loading Quiescent 320uA Alarm See Table 5 Alarm Current Isolator Maximum Loop Voltage 40 Vdc Minimum Loop Voltage 20 Vdc Maximum Rated Conti
9. ep 4 2 Tone Alternating 660 880 500 ms per tone Yes No Temporal 4 Intermittent 880 500 ms on 500 ms Yes No off x 4 followed by 1 5 s silence 6 Temporal 3 Intermittent 880 500 ms on 500 ms Yes No off x 3 followed by 1 5 s silence 7 March Time Intermittent 880 500 ms on Yes No Beep 500 ms off 8 Continuous Continuous 970 Steady Yes No 970 9 Continuous Continuous 850 Steady Yes No 850 10 DIN1 Hz Sweep 1200 to 500 1200 Hz falling to Yes No Sweep 500 Hz over 1s and repeat 11 Banshee LF Sweep 800 to 950 120 Hz Yes No Buzzer 12 3 Hz Banshee Sweep 800 to 950 3 Hz Yes No Fast Sweep 13 9 Hz Banshee Sweep 800 to 950 9 Hz Yes No Fast Sweep 14 Alternating Alternating 554 440 554 Hz for 100 ms Yes No and 440 Hz for 400 ms 15 Yodalarm Alternating 800 1000 250 ms for each Yes No frequency 16 Conventional Continuous 1450 Steady Yes No Bell Note1 Table 6 Sounder Tones 4 10 Product Information Doc Version 3 FIRECLASS Fire Detection System Technical Specification Operational Performance Maximum Volume dB A Operational Performance Maximum Volume dB A Table 7 Continuous 850 Hz Maximum Volume dB A Angle 40 V 20 V 15 83 82 45 92 91 75 95 94 105 95 93 135 92 91 165 81 80 Operational Performance Angle 40 V 20 V 15 80 78 45 91 90 75 94 93 105 93 92 135 91 89 165
10. in Fig 3 represents a cross section through the volumetric shape using the values as indicated in Table 13 o ALPHA DEGREES DISTANCE METRES Alpha Distance degrees metres 90 3 75 3 1 60 3 15 45 2 15 30 1 95 15 0 75 0 0 Table 13 FC410LPBS Symphoni Series 0 4 Im m Illumination Distance LOCATION OF DEVICE Fig 3 FC410LPBS Symphoni Series Graphical Illustration of Wall Mount Light Distribution 6 10 Product Information Doc Version 3 FIRECLASS Fire Detection System Technical Specification Address Programming i Lew owe amp 4 028 SR ti n o y IN OUT IN OUT LOOP LOOP SCREEN VE VE o N OUT 0000000 Fig 4 EN54 23 Open Class Symphoni Programming Port 1 Programming Port The default factory address is set to 255 The device should be programmed with its loop address before installation using an FC490ST with an ancillary lead that plugs into the device s programming port see Fig 4 The EN54 23 Open Class FC410LPBS Symphoni Series Beacon Sounder uses 2 consecutive addresses on the addressable loop starting from the chosen pro grammed address number These addresses are auto matically generated when a Symphoni Beacon Sounder is selected in FIRECLASS Express The address configuration is as follows Address Type n Sounder Device n 1 Beacon Device Table 14 Address Configuration S
11. nuous 2A Current Isolator Closed Maximum Rated Switching 2A Maximum Leakage Current Isolator Open 6 mA into zone 10 mA into Isolator Maximum Series Impedance Isolator Closed 0 25 Q Isolator Switching Threshold Isolator Closed to Open 20 V or below Isolator Switching Threshold Isolator Open to Closed 2 9 V to 3 5 V from s c Table 4 Electrical Characteristics Product Information Doc Version 3 Table 5 Alarm Current Sounder Tones Table 6 details the tones available for selection in FIRE CLASS Express NOTICE Bell Tone This is a simulated bell tone with a limited bandwidth It is not advisable to mix conventional bells and electronic sounders producing a simulated bell tone Approved Tones Tables 7 to 12 detail the tones approved by LPCB to the specification shown The data applies to both horizontal and vertical planes 3 10 Technical Specification FIRECLASS Fire Detection System Monitored Monitored with o High 103 dB Pulse Pattern El Er Ea and Low 90 dB Assigned in 33 ame Senp No pulsing in FIRECLASS a FIRECLASS Express Express Pattern Frequency Rate Hz 1 Dutch Slow Sweep 500 to 1200 500 Hz rising to Yes No Whoop 1200 Hz over 3 5 s silence 0 5 s repeat 2 7 Hz Fast Sweep 800 to 970 0 1428 s ramp 7 Hz Yes No Sweep 3 BS 1 Hz Sweep 800 to 970 1Hz Yes No Swe
12. ymphoni Configuration The Sounder tone Device Mode sounder volume out put Sensitivity and beacon flash rate Device Mode are configured in FIRECLASS Express Product Information Doc Version 3 NOTICE Tone Setting It is not possible to select different tones for different Symphoni devices connected to the FIRECLASS panel For system loading refer to Publication FC D LOOP PI System Loading Guidelines Bell Mapping If it is required for the sounder to operate as a Bell Map output then the Group to which the device belongs must be put into the Bell Map Outputs Supergroup To achieve this select group 50 Bell Map Output SG and then select Edit Members Use Add member to include the Points group into the Bell Map Output SG If the sounder base needs including in any sounder Walk Test then super group number 51 Sounders to walktest SG will have to be edited to add the point s group to the list of supergroup members For the beacon to be included as a visual output con trolled by the Bell Map the points group needs to be included in Bell Map Visuals SG 58 Output Pulse Pattern Output pulse patterns are restricted such that the period between every High to Low transition and the following Low to High transition is a multiple of 2 sec onds Pulse patterns are also restricted to continuous tone patterns only Fault Monitoring Both the sounder and beacon are monitored The last 2 columns of Table 6
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