TPM 075/09-DK VALID FROM: 15/1/2012 FIRE DAMPER AND FIRE DAMPER-SMOKE FDMB, FDMB-SRD

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1 FIRE DAMPER AND FIRE DAMPER-SMOKE FDMB, FDMB-SRD TPM 075/09-DK VALID FROM: 15/1/2012

2 I. CONTENT These technical specifications state a row of manufactured sizes and models of fire dampers and fire dampers - smoke relief (further only dampers) FDMB, FDMB-SRD. It is valid for production, designing, ordering, delivery, assembly and operation. II. GENERAL INFORMATION 1. Description Design Dimensions, weights Placement and Assembly Statement of installations III. TECHNICAL DATA 6. Pressure loss, Noise data Electrical Components, Connection Diagrams Governing system GBS IV. MATERIAL, FINISHING Material V. INSPECTION, TESTING Inspection, testing VI. TRANSPORTATION AND STORAGE Logistic terms VII. ASSEMBLY, ATTENDANCE, MAINTENANCE AND REVISIONS Assembly Entry into service and revisions VIII. ORDERING INFORMATION Ordering key Park Allé 66, DK-2605 Brondby 2

3 II. GENERAL INFORMATION 1. Description Fig. 1 Rectangular FDMB Fig. 2 Round FDMB 1.1. Fire dampers are shutters in ducts of air-conditioning devices that prevent spreading the fire and combustion products from one fire segment to the other one by means of closing the duct in the points of fire separating constructions. Dampers blade automatically closes air duct using an actuating mechanism back spring. The back spring of the actuating mechanism is started when the thermoelectrical starting mechanism BAE 72B-S is activated, when a reset button on BAE 72B-S is pushed or when a power supply of the actuating mechanism is stopped (for FDMB-SRD only when the power supply of the actuating mechanism is stopped). The damper is sealed with a silicon packing against smoke penetration after closing the blade. At the same time, the damper blade is bed in a material which enlarges its capacity and air proofs the air duct. Rectangular dampers have two inspection holes. Round dampers have one inspection hole, since the shutting device and the inspection hole can be set into the most advantageous position (with respect to the operation and manipulation with the control device) Damper characteristics CE certified acc. to EN Tested in accordance with EN Classified acc. to EN A1 Fire resistance EIS 90 External Casing leakage class C, Internal leakage class 2 acc. to EN 1751 Cycling test in class C acc. to EN Corrosion resistant acc. to EN Certificate of constancy of perforamnce No. 191-CPR-0011/2014 Declaration of Performance No. CDM/FDMB/001/1 Hygienic assessment of fire dampers - Report No. 1.6/1/16/1 Suitable to DS 428: Fire Dampers tested and classified as EIS 90 are fully usable also for installations with requirement EIS 60. In case of installations with requirement EIS 60 also appropriate isolation and installation materials should be used. Producer of these materials is random (Isover, Protecta, Rockwool etc.). Used materials must be approved and have min. the same fire resistance as required for Fire Damper - EIS 60, or higher. Park Allé 66, DK-2605 Brondby

4 1.4. Working conditions Right damper function is secured under the following conditions: a) Maximum air circulation speed: 12 m.s Maximum pressure difference: 1200 Pa b) Dampers could be displaced into position CLOSED only in case that ventilator, or Air Handling Unit is switched off. The goal is the securing of proper closing and safe function of Fire Damper in case of Fire. c) The air circulation in the whole damper section must be secured as steady on whole surface. Operation of the dampers does not depend on the direction of air circulation. The dampers can be located in an arbitrary position. Dampers are suitable for systems without abrasive, chemical and adhesive particles. Dampers are designed for macroclimatic areas with mild climate according to EN Temperature in the place of installation is permitted to range from - 20 C to + 50 C If is not noticed other way, all dimensions and weight are in millimeters and kilograms In this document are used next signs and units. 2. Design Key : 2.1. FDMB w [m.s ] air velocity p [Pa] pressure loss L w [db] level of acoustic output [ ] pressure loss coefficient - [kg.m ] density A,B, a, c, e, f [mm] dimension S 2 [m ] area FDMB is always equipped by electric actuating mechanism BLF(BF) 24-T (further only "actuating mechanism"). After being connected to power supply AC/DC 24V, the actuating mechanism displaces the damper blade into operation position "OPEN" and at the same time it pre-stretches its back spring. When the actuating mechanism is under voltage, the damper blade is in the position "OPEN" and the back spring is pre-stretched. Time needed for full opening of the flap blade from the position "CLOSED" to the position "OPEN" is maximum 140s. If the actuating power supply is cut off (due to loss of supply voltage, activation of thermoelectrical actuating mechanism or pushing the reset button on the thermoelectrical starting mechanism BAE 72B-S), the back spring displaces the damper blade into the breakdown position "CLOSED". The time of displacing the blade from the position "OPEN" to the position "CLOSED" takes maximum 16 s. In case that the power supply is restored again (the blade can be in any position), the actuating mechanism starts to re-displace the damper blade into the position "OPEN". A thermoelectrical starting mechanism BAE 72B-S, which contains two thermal fuses Tf1 and Tf2/Tf, is a part of the actuating mechanism. These fuses are activated when temperature +72 C has been exceeded (the fuse Tf1 when the temperature around the damper and the fuses Tf2/Tf when the temperature inside the air-conditioning piping has been exceeded). After the thermal fuse Tf1 or Tf2/Tf has been activated, the power supply is permanently and irreversibly cut off and the actuating mechanism, by means of the pre-stretched spring, displaces the damper blade into the breakdown position "CLOSED" FDMB-SRD FDMB-SRD is always equipped by actuating mechanism BLF(BF) 24. It is without BAE 72B-S. Function is similar to the BLF 24-T-ST. After being connected to power supply AC/DC 24V, the actuating mechanism displaces the damper blade into operation position "OPEN" and at the same time it pre-stretches its back spring. When the actuating mechanism is under voltage, the damper blade is in the position "OPEN" and the back spring is pre-stretched. Time needed for full opening of the flap blade from the position "CLOSED" to the position "OPEN" is maximum 140s. Park Allé 66, DK-2605 Brondby 4

5 If the actuating power supply is cut off (due to loss of supply voltage), the back spring displaces the damper blade into the breakdown position "CLOSED". The time of displacing the blade from the position "OPEN" to the position "CLOSED" takes maximum 16 s. In case that the power supply is restored again (the blade can be in any position), the actuating mechanism starts to re-displace the damper blade into the position "OPEN". Fig. Damper design FDMB rectangular FDMB-SRD round. Dimestions, weights.1. Dimensions Fig. 4 Fire damper FDMB round POSITION: 1 Damper body 2 Damper blade Actuating mechanism 4 BAE 72B-S thermoelectrical starting mechanism 5 Inspection hole covering Park Allé 66, DK-2605 Brondby 5

6 Fig. 5 FDMB rectangular (square) POSITION: 5 1 Damper body 2 Damper blade Actuating mechanism 4 BAE 72B-S thermoelectrical starting mechanism 5 Inspection hole covering B Minimum indbygning I væg Maximal indbygning I væg 80 A Weight and effective area Tab Weight and effective area FDMB rectangular A x B a c Weight [kg] Effective area Sef [m ] Act. Mechanism A x B a c Effective Weight area Sef [kg] [m ] 2 2 Act. Mechanism 160 x ,2 0,0108 BLF 180 x ,8 0,052 BF 160 x ,5 0,012 BLF 180 x , 0,0602 BF 160 x ,6 0,0156 BLF 180 x ,9 0,0672 BF 160 x ,4 0,0216 BLF 180 x ,1 0,0686 BF 160 x ,7 0,0252 BLF 180 x ,5 0,0742 BF 160 x ,9 0,0276 BLF 180 x ,9 0,0784 BF 160 x 15 97,5 9,1 0,0294 BLF 180 x ,1 0,0812 BF 160 x ,9 0,042 BLF 180 x ,8 0,0896 BF 160 x ,5 0,096 BLF 180 x , 0,0952 BF 160 x ,0456 BF 180 x ,9 0,1022 BF 160 x ,0516 BF 180 x ,1162 BF 160 x ,5 0,0576 BF 180 x ,6 0,102 BF 160 x ,7 0,0588 BF 200 x ,6 0,0144 BLF 160 x ,1 0,066 BF 200 x ,9 0,0176 BLF 160 x ,4 0,0672 BF 200 x ,1 0,0208 BLF 160 x ,7 0,0696 BF 200 x ,9 0,0288 BLF 160 x , 0,0768 BF 200 x ,2 0,06 BLF 160 x ,8 0,0816 BF 200 x ,5 0,068 BLF 160 x ,4 0,0876 BF 200 x 15 97,5 9,7 0,092 BLF 160 x ,5 0,0996 BF 200 x ,6 0,0456 BLF 160 x ,1116 BF 200 x ,1 0,0528 BLF 180 x ,4 0,0126 BLF 200 x ,1 0,0608 BF 180 x ,7 0,0154 BLF 200 x ,7 0,0688 BF 180 x ,9 0,0182 BLF 200 x , 0,0768 BF 180 x ,6 0,0252 BLF 200 x ,4 0,0784 BF 180 x ,0294 BLF 200 x ,9 0,0848 BF 180 x ,2 0,022 BLF 200 x , 0,0896 BF 180 x 15 97,5 9,4 0,04 BLF 200 x ,5 0,0928 BF 180 x , 0,099 BLF 200 x , 0,1024 BF 180 x ,8 0,0462 BLF 200 x ,8 0,1088 BF Park Allé 66, DK-2605 Brondby 6

7 A x B a c Weight [kg] Effective area S ef [m ] Act. Mechanism A x B a c Effective Weight area S ef [kg] [m ] Act. Mechanism 200 x ,4 0,1168 BF 00 x , 0,1248 BF 200 x ,6 0,128 BF 00 x ,4 0,1274 BF 200 x ,8 0,1488 BF 00 x ,178 BF 250 x ,2 0,0189 BLF 00 x ,5 0,1456 BF 250 x ,4 0,021 BLF 00 x ,7 0,1508 BF 250 x ,7 0,027 BLF 00 x ,6 0,1664 BF 250 x ,6 0,078 BLF 00 x ,2 0,1768 BF 250 x ,9 0,0441 BLF 00 x ,9 0,1898 BF 250 x ,2 0,048 BLF 00 x , 0,2158 BF 250 x 15 97,5 10,4 0,0515 BLF 00 x ,8 0,2418 BF 250 x , 0,0599 BLF 15 x , 0,0248 BLF 250 x ,9 0,069 BLF 15 x ,6 0,00 BLF 250 x ,0798 BF 15 x ,9 0,058 BLF 250 x ,7 0,090 BF 15 x ,8 0,0495 BLF 250 x , 0,1008 BF 15 x ,2 0,0578 BLF 250 x ,4 0,1029 BF 15 x ,9 0,06 BLF 250 x ,111 BF 15 x 15 97,5 12,7 0,0674 BLF 250 x ,4 0,1176 BF 15 x ,7 0,0784 BLF 250 x ,6 0,1218 BF 15 x ,4 0,0908 BLF 250 x ,4 0,144 BF 15 x ,5 0,1045 BF 250 x ,1428 BF 15 x , 0,118 BF 250 x ,6 0,15 BF 15 x ,120 BF 250 x ,174 BF 15 x ,2 0,148 BF 250 x , 0,195 BF 15 x ,7 0,1458 BF 280 x ,5 0,0216 BLF 15 x ,2 0,1540 BF 280 x ,8 0,0264 BLF 15 x ,5 0,1595 BF 280 x ,1 0,012 BLF 15 x ,4 0,1760 BF 280 x ,9 0,042 BLF 15 x ,1870 BF 280 x , 0,05 Kč BLF 15 x ,7 0,2008 BF 280 x ,6 0,0552 BLF 15 x ,2 0,228 BF 280 x 15 97,5 10,8 0,0588 BLF 15 x ,6 0,2558 BF 280 x ,8 0,0684 BLF 50 x , 0,0284 BLF 280 x ,4 0,0792 BLF 50 x ,6 0,047 BLF 280 x ,5 0,0912 BF 50 x ,9 0,0410 BLF 280 x ,2 0,102 BF 50 x ,9 0,0567 BLF 280 x ,9 0,1152 BF 50 x ,4 0,0662 BLF 280 x ,1176 BF 50 x ,7 0,0725 BLF 280 x ,6 0,1272 BF 50 x 15 97,5 10,7 0,0772 BLF 280 x ,144 BF 50 x ,9 0,0898 BLF 280 x , 0,192 BF 50 x ,6 0,1040 BLF 280 x ,1 0,156 BF 50 x ,8 0,1197 BF 280 x ,7 0,162 BF 50 x ,6 0,155 BF 280 x ,4 0,1752 BF 50 x ,4 0,1512 BF 280 x ,8 0,1992 BF 50 x ,5 0,1544 BF 280 x ,5 0,222 BF 50 x ,2 0,1670 BF 00 x ,7 0,024 BLF 50 x ,6 0,1764 BF 00 x ,0286 BLF 50 x ,9 0,1827 BF 00 x , 0,08 BLF 50 x ,9 0,2016 BF 00 x ,2 0,0468 BLF 50 x ,5 0,2142 BF 00 x ,6 0,0546 BLF 50 x , 0,200 BF 00 x ,9 0,0598 BLF 50 x ,9 0,2615 BF 00 x 15 97,5 11,1 0,067 BLF 50 x ,4 0,290 BF 00 x ,1 0,0741 BLF 400 x ,8 0,024 BLF 00 x ,7 0,0858 BLF 400 x ,2 0,096 BLF 00 x ,9 0,0988 BF 400 x ,5 0,0468 BLF 00 x ,60 Kč 2 2 0,11 Kč BF 400 x ,50 Kč 0,06 Kč BLF Park Allé 66, DK-2605 Brondby 7

8 A x B a c Weight [kg] Effective area S ef 2 [m ] Act. Mechanism A x B a c Weight [kg] Effective area S ef 2 [m ] Act. Mechanism 400 x ,0756 BLF 500 x ,58 BF 400 x , 0,0828 BLF 500 x ,9 0,818 BF 400 x 15 97,5 12,5 0,0882 BLF 500 x , 0,4278 BF 400 x ,6 0,1026 BLF 550 x ,9 0,0459 BF 400 x ,4 0,1188 BLF 550 x , 0,0561 BF 400 x ,6 0,168 BF 550 x ,6 0,066 BF 400 x ,4 0,1548 BF 550 x ,8 0,0918 BF 400 x , 0,1728 BF 550 x ,4 0,1071 BF 400 x ,4 0,1764 BF 550 x ,8 0,117 BF 400 x ,1 0,1908 BF 550 x 15 97,5 16,1 0,1250 BF 400 x ,6 0,2016 BF 550 x , 0,1454 BF 400 x ,9 0,2088 BF 550 x ,2 0,168 BF 400 x ,9 0,204 BF 550 x ,2 0,198 BF 400 x ,6 0,2448 BF 550 x ,2 0,219 BF 400 x ,4 0,2628 BF 550 x ,2 0,2448 BF 400 x ,1 0,2988 BF 550 x ,4 0,2499 BF 400 x ,8 0,48 BF 550 x ,2 0,270 BF 450 x ,4 0,069 BLF 550 x ,8 0,2856 BF 450 x ,7 0,0451 BLF 550 x ,2 0,2958 BF 450 x ,1 0,05 BLF 550 x ,4 0,264 BF 450 x ,1 0,078 BLF 550 x ,2 0,468 BF 450 x ,7 0,0861 BLF 550 x ,2 0,72 BF 450 x ,094 BLF 550 x ,2 0,42 BF 450 x 15 97,5 1, 0,1005 BLF 560 x ,0468 BF 450 x ,4 0,1169 BLF 560 x ,4 0,0572 BF 450 x ,2 0,15 BLF 560 x ,8 0,0676 BF 450 x ,5 0,1558 BF 560 x ,096 BF 450 x ,4 0,176 BF 560 x ,6 0,1092 BF 450 x , 0,1968 BF 560 x ,1196 BF 450 x ,4 0,2009 BF 560 x 15 97,5 16,2 0,1274 BF 450 x ,1 0,217 BF 560 x ,5 0,1482 BF 450 x ,7 0,2296 BF 560 x ,4 0,1716 BF 450 x ,278 BF 560 x ,4 0,1976 BF 450 x ,1 0,2624 BF 560 x ,4 0,226 BF 450 x ,8 0,2788 BF 560 x ,4 0,2496 BF 450 x ,7 0,299 BF 560 x ,6 0,2548 BF 450 x ,5 0,40 BF 560 x ,4 0,2756 BF 450 x ,2 0,81 BF 560 x ,2912 BF 500 x ,9 0,0414 BLF 560 x ,5 0,016 BF 500 x , 0,0506 BLF 560 x ,7 0,28 BF 500 x ,7 0,0598 BLF 560 x ,5 0,56 BF 500 x ,8 0,0828 BLF 560 x ,5 0,796 BF 500 x , 0,0966 BLF 600 x ,4 0,0504 BF 500 x ,7 0,1058 BLF 600 x ,8 0,0616 BF 500 x 15 97,5 14 0,1127 BLF 600 x ,2 0,0728 BF 500 x ,2 0,111 BLF 600 x ,5 0,1008 BF 500 x ,1518 BLF 600 x ,1 0,1176 BF 500 x ,4 0,1748 BF 600 x ,5 0,1288 BF 500 x , 0,1978 BF 600 x 15 97,5 16,8 0,172 BF 500 x ,2 0,2208 BF 600 x ,1 0,1596 BF 500 x ,4 0,2254 BF 600 x ,1848 BF 500 x ,2 0,248 BF 600 x ,1 0,2128 BF 500 x ,8 0,2576 BF 600 x ,1 0,2408 BF 500 x ,1 0,2668 BF 600 x ,2 0,2688 BF 500 x , 0,2944 BF 600 x ,4 0,2744 BF 500 x ,128 BF 600 x , 0,2968 BF Park Allé 66, DK-2605 Brondby 8

9 A x B a c Weight [kg] Effective area Sef [m] Act. Mechanism A x B a c Weight [kg] Effective area Sef [m] Act. Mechanism 600 x ,9 0,16 BF 710 x , 0,752 BF 600 x , 0,248 BF 710 x ,7 0,886 BF 600 x ,6 0,584 BF 750 x ,1 0,069 BF 600 x ,4 0,808 BF 750 x ,5 0,0781 BF 600 x ,5 0,4088 BF 750 x ,092 BF 60 x ,7 0,051 BF 750 x ,4 0,1278 BF 60 x ,2 0,0649 BF 750 x ,1 0,1491 BF 60 x ,6 0,0767 BF 750 x ,6 0,16 BF 60 x ,9 0,1062 BF 750 x 15 97,5 19 0,174 BF 60 x ,5 0,129 BF 750 x ,4 0,2024 BF 60 x ,9 0,157 BF 750 x ,5 0,24 BF 60 x 15 97,5 17,2 0,1446 BF 750 x ,7 0,2698 BF 60 x ,5 0,1682 BF 750 x ,9 0,05 BF 60 x ,5 0,1947 BF 750 x ,2 0,408 BF 60 x ,6 0,2242 BF 750 x ,4 0,479 BF 60 x ,7 0,257 BF 750 x ,4 0,76 BF 60 x ,8 0,282 BF 750 x ,1 0,976 BF 60 x ,2891 BF 750 x ,6 0,4118 BF 60 x ,9 0,127 BF 800 x ,6 0,0684 BF 60 x ,6 0,04 BF 800 x ,1 0,086 BF 60 x ,422 BF 800 x ,6 0,0988 BF 60 x , 0,776 BF 800 x ,1 0,168 BF 60 x ,2 0,4012 BF 800 x ,8 0,1596 BF 650 x ,0549 BF 800 x , 0,1748 BF 650 x ,4 0,0671 BF 800 x 15 97,5 19,7 0,1862 BF 650 x ,8 0,079 BF 800 x ,1 0,2166 BF 650 x ,1 0,1098 BF 800 x , 0,2508 BF 650 x ,8 0,1281 BF 800 x ,6 0,2888 BF 650 x ,2 0,140 BF 800 x ,9 0,268 BF 650 x 15 97,5 17,5 0,1495 BF 800 x ,1 0,648 BF 650 x ,8 0,179 BF 800 x ,4 0,724 BF 650 x ,9 0,201 BF 800 x ,4 0,4028 BF 650 x ,218 BF 900 x ,7 0,0774 BF 650 x ,1 0,262 BF 900 x ,2 0,0946 BF 650 x ,2 0,2928 BF 900 x ,8 0,1118 BF 650 x ,4 0,2989 BF 900 x ,4 0,1548 BF 650 x , 0,2 BF 900 x ,2 0,1806 BF 650 x ,416 BF 900 x ,7 0,1978 BF 650 x ,4 0,58 BF 900 x 15 97,5 21,1 0,2107 BF 650 x ,8 0,904 BF 900 x ,7 0,2451 BF 650 x ,6 0,4148 BF 900 x ,9 0,288 BF 710 x ,6 0,060 BF 900 x , 0,268 BF 710 x ,1 0,077 BF 900 x ,7 0,698 BF 710 x ,5 0,0871 BF 900 x ,1 0,4128 BF 710 x ,9 0,1206 BF 1000 x ,8 0,0864 BF 710 x ,6 0,1407 BF 1000 x ,4 0,1056 BF 710 x ,1 0,1541 BF 1000 x ,1248 BF 710 x 15 97,5 18,4 0,1642 BF 1000 x ,7 0,1728 BF 710 x ,8 0,191 BF 1000 x ,5 0,2016 BF 710 x ,8 0,2211 BF 1000 x ,1 0,2208 BF 710 x ,2546 BF 1000 x 15 97,5 22,6 0,252 BF 710 x ,2 0,2881 BF 1000 x ,2 0,276 BF 710 x ,4 0,216 BF 1000 x ,6 0,168 BF 710 x ,6 0,28 BF 1000 x ,1 0,648 BF 710 x ,6 0,551 BF 1000 x ,6 0,4128 BF Park Allé 66, DK-2605 Brondby 9

10 Tab Weight and effective area FDMB round Size D c Weight Effective area Sef [m 2 ] Actuating mechanism 160 7,2 0,012 BLF 180 8, 0,0176 BLF 200 9, 0,0227 BLF 225 9,8 0,0299 BLF , 0,080 BLF ,2 0,0492 BLF 15 7,5 12,2 0,069 BLF ,8 0,0802 BLF 55 27,5 15,2 0,081 BLF ,5 0,1078 BF ,4 0,189 BF ,4 0,179 BF , 0,2211 BF ,2 0,28 BF.. Rectangular dampers can be supplied on the customer s demands in all subdimension of the above mentioned range..4. Blades overlaps For round fire damper the open damper blade overlaps the damper body from dimension 15 by the c value. These values are specified in the Tab For rectangular (square) fire damper the open damper blade overlaps the damper body from dimension B=160 by the c or a and c values. These values are specified in the Tab Values a or c has to be respected when projecting related air-conditioning duct. Fig. 6 Value c FDMB round Fig. 7 Values a and c FDMB rectangular 4. Placement and Assembly 4.1. Fire dampers are suitable for installation in arbitrary position in vertical and horizontal passages of fire separating constructions. Damper assembly procedures must be done so as all load transfer from the fire separating constructions to the damper body is absolutely excluded. Back-to-back air-conditioning piping must be hung or supported so as all load transfer from the back-to-back piping to the damper is absolutely excluded. Park Allé 66, DK-2605 Brondby 10

11 4.2. To provide needed access space to the control device, all other objects must be situated at least 50 mm from the control parts of the damper. Inspection hole must be accessible. 4.. The distance between the fire damper and the construction (wall, ceiling) must be minimum 75 mm. In case that two or more dampers are supposed to be installed in one fire separating construction, the distance between the adjacent dampers must be at least 200 mm according to EN paragraph 1.5. Fig. 8 The distance between the fire damper and the construction min. 75 min. 200 min. 75 min. 200 min. 75 min The control mechanism has to be protected (covered) against damage and pollution during installation process All fire dampers has to be closed during installation process. The damper body should not be deformed in the course of bricking in. Once the damper is built in, its blade should not grind on the damper body during opening or closing Round dampers are with rubber tightness and glued all the way around Rectangular (square) dampers are with flanges both ends for mounting together with Oeland OS20 profile system Installation opening dimensions Fig. 9 Installation opening dimensions FDMB round Fig. 10 Installation opening dimensions FDMB square Park Allé 66, DK-2605 Brondby 11

12 4.9. Examples of fire damper installing The fire damper can be installed into a solid wall construction made e.g. of normal concrete/masonry, porous concrete with minimum thickness 100 mm or into solid ceiling construction made e.g. of normal concrete/porous concrete with minimum thickness 150 mm. Recommended installation openings are specified in Fig. 90. The fire damper can be installed into a gypsum wall construction with fire classification EI 90. The fire damper can also be integrated outside the wall construction. Duct and the damper part between the wall construction and the damper blade (labelled with BUILD IN EDGE on the protective covering) must be protected with fire-fighting insulation. If is rectangular (square) damper installed outside a construction it is necessary to use reinforcement VRM-III. 5. Statement of installations 5.1. Statement of installation Tab Recommendation for installation of fire damper according to DS Damper typ Round Rectangular (Square) FDMB installation Damper installed in a solid or gypsum wall construction. Space between damper and wall is filled by mineral stone wool (min. density 140 kg/m ) or another approved fire insulation system. Surface is covered by fire protection mastic (Promastop P,K) or equal, min. thickness 1 mm. Duct ended by installation shaft. Space between damper and wall is filled by mineral stone wool (min. density 140 kg/m ) or another approved fire insulation system. Surface is covered by fire protection mastic (Promastop P,K) or equal, min. thickness 1 mm Damper installed outside of wall. Duct between damper and wall is isolated by mineral stone wool - Isover Ultimate Protect Wired amt 4.0 ALU 1, thickness 75 mm. Damper installed in a gypsum or solid wall construction. Space between damper and wall is filled by mineral stone wool (min. density 140 kg/m ) or another approved fire insulation system. Surface is covered by fire protection mastic (Promastop P,K) or equal, min. thickness 1 mm. Duct ended by installation shaft. Space between damper and wall is filled by by mineral stone wool (min. density 140 kg/m ) or another approved fire insulation system. Surface is covered by fire protection mastic (Promastop P,K) or equal, min. thickness 1 mm Damper installed outside of wall. Duct between damper and wall is isolated by mineral stone wool - Isover Ultimate U Protect slab 4.0, thickness 80 mm Classifi- -cation Figure EIS EIS EIS 60 1 EIS EIS EIS Tab Installation of fire damper - EI 90 S Damper typ FDMB installation Classifi- -cation Figure Damper installed in a solid wall construction. Space between damper and wall is filled by mortar or gypsum. EIS Round Damper installed in a solid wall construction. Space between damper and wall is filled by mineral stone wool (min. density 140 kg/m ) or another approved fire insulation system. Surface is covered by fire protection mastic (Promastop P,K) or equal, min. thickness 1 mm and cement lime plate (Promatect-H or equal) min. thickness 15 mm (min. density 870 kg/m.). EIS Damper installed in a solid wall construction min. thickness 100 mm. Space between damper and wall is filled by system Weichshott EIS Damper installed in a a gypsum wall construction. Space between damper and wall is filled by mortar or gypsum. EIS Park Allé 66, DK-2605 Brondby 12

13 Damper typ Round FDMB installation Damper installed in a gypsum wall construction. Space between damper and wall is filled by mineral stone wool (min. density 140 kg/m ) or another approved fire insulation system. Surface is covered by fire protection mastic (Promastop P,K) or equal min. thickness 1 mm and cement lime plate (Promatect-H or equal) min. thickness 15 mm (min. density 870 kg/m.). Damper installed in a gypsum wall construction. Space between damper and wall is filled by system Weichshott. Damper installed in a solid ceiling construction. Space between damper and ceiling is filled by mortar or gypsum. Damper installed in a solid ceiling construction. Space between damper and wall is filled by mineral stone wool (min. density 140 kg/m ) or another approved fire insulation system. Surface is covered by fire protection mastic (Promastop P,K) or equal min. thickness 1 mm and cement lime plate (Promatect-H or equal) min. thickness 15 mm (min. density 870 kg/m.). Damper installed in a solid ceiling construction. Space between damper and wall is filled by system Weichshott. Damper installed outside of a solid wall construction. Space between duct and wall is filled by mineral stone wool min. density 140 kg/m ) or another approved fire insulation system. Surface is covered by fire protection mastic (Promastop P,K) or equal min. thickness 1 mm and cement lime plate (Promatect-H or equal) min. thickness 15 mm (min. density 870 kg/m ). Insulation of duct and fire damper is made by stone wool with one side stitched wire fencing (min. density 80 kg/m ). Placed in three layers, total thickness 180 mm or another approved fire insulation system. Damper installed outside of a gypsum wall construction. Space between duct and wall is filled by mineral stone wool min. density 140 kg/m ) or another approved fire insulation system. Surface is covered by fire protection mastic (Promastop P,K) or equal min. thickness 1 mm and cement lime plate (Promatect-H or equal) min. thickness 15 mm (min. density 870 kg/m ). Insulation of duct and fire damper is made by stone wool with one side stitched wire fencing (min. density 80 kg/m ). Placed in three layers, total thickness 180 mm or another approved fire insulation system. Classifi- -cation Figure EIS EIS 90 2 EIS EIS EIS EIS Rectangular (Square) Damper installed outside of a solid ceiling construction. Space between duct and wall is filled by mineral stone wool min. density 140 kg/m ) or another approved fire insulation system. Surface is covered by fire protection mastic (Promastop P,K) or equal min. thickness 1 mm and cement lime plate (Promatect-H or equal) min. thickness 15 mm (min. density 870 kg/m ). Insulation of duct and fire damper is made by stone wool with one side stitched wire fencing (min. density 80 kg/m ). Placed in three layers, total thickness 180 mm or another approved fire insulation system. Duct ended by installation shaft. Space between damper and ceiling is filled by mortar, gypsum - solid wall construction Duct ended by installation shaft. Space between damper and ceiling is filled by mortar, gypsum or another approved fire sealing system for damper installation - gypsum wall construction Damper installed in a solid wall construction. Space between damper and wall is filled by mortar, gypsum Damper installed in a solid wall construction. Space between damper and wall is filled by mineral stone wool (min. density 140 kg/m ) or another approved fire insulation system. Surface is covered by fire protection mastic (Promastop P,K) or equal min. thickness 1 mm and cement lime plate (Promatect-H or equal) min. thickness 15 mm (min. density 870 kg/m ). Damper installed in a solid wall construction min. thickness 100 mm. Space between damper and wall is filled by system Weichshott Damper installed in a a gypsum wall construction. Space between damper and wall is filled by mortar, gypsum. EIS EIS 90 0 EIS 90 1 EIS 90 2 EIS 90 EIS 90 4 EIS 90 5 Park Allé 66, DK-2605 Brondby 1

14 Damper typ Rectangular (Square) FDMB installation Damper installed in a gypsum wall construction. Space between damper and wall is filled by mineral stone wool (min. density 140 kg/m ) or another approved fire insulation system. Surface is covered by fire protection mastic (Promastop P,K) or equal min. thickness 1 mm and cement lime plate (Promatect-H or equal) min. thickness 15 mm (min. density 870 kg/m ). Damper installed in a gypsum wall construction. Space between damper and wall is filled by system Weichshott. Damper installed in a solid ceiling construction. Space between damper and ceiling is filled by mortar, gypsum or another approved fire sealing system for damper installation. Damper installed in a solid ceiling construction. Space between damper and wall is filled by mineral stone wool min. density 140 kg/m ). Surface is covered by fire protection mastic min. Thickness 1 mm and cement lime plate min. thickness 15 mm (min. density 870 kg/m ). Damper installed in a solid ceiling construction. Space between damper and wall is filled by system Weichshott. Damper installed outside a solid wall construction. Space between duct and wall is filled by mineral stone wool min. density 140 kg/m ). Surface is covered by fire protection mastic min. thickness 1 mm and cement lime plate min. thickness 15 mm (min. density 870 kg/m ). Insulation of duct and fire damper is made by stone wool with one side stitched wire fencing (min. density 105 kg/m ). Damper installed outside a gypsum wall construction. Space between duct and wall is filled by mineral stone wool min. density 140 kg/m ). Surface is covered by fire protection mastic min. thickness 1 mm and cement lime plate min. thickness 15 mm (min. density 870 kg/m ). Insulation of duct and fire damper is made by stone wool with one side stitched wire fencing (min. density 105 kg/m ). Damper installed outside a solid ceiling construction. Space between duct and wall is filled by mortar, gypsum. Insulation of duct and fire damper is made by stone wool with one side stitched wire fencing (min. density 105 kg/m ). Duct ended by installation shaft. Space between damper and wall is filled by mortar, gypsum or another approved fire sealing system into duct installation - solid wall construction Duct ended by installation shaft. Space between damper and wall is filled by mortar, gypsum - gypsum wall construction Classifi- -cation Figure EIS 90 6 EIS 90 7 EIS 90 8 EIS 90 9 EIS EIS EIS EIS 90 4 EIS EIS Park Allé 66, DK-2605 Brondby 14

15 5.2. Recommendation for installation of fire damper according to DS Fig. 11 Installation in a gypsum or solid wall construction EIS Fire damper 2 Stuffing box (mineral stone wool min. density 140 kg/m ) or another approved fire sealing system for damper installation Fire protection mastic Promastop P,K or equal min. thickness 1 mm 4 Glass fiber felt with aluminium foil width 50 mm, thickness 10 mm Notices: The glass fiber has to be cut in the place of based plate. The glass fiber is using only for round fire damper Fig. 12 Duct ended by installation shaft EIS Fire damper 2 Stuffing box (mineral stone wool min. density 140 kg/m ) or another approved fire sealing system for damper installation Fire protection mastic Promastop P,K or equal min. thickness 1 mm 4 Glass fiber felt with aluminium foil width 50 mm, thickness 10 mm 5 Duct 6 Installation shaft inner space Notices: The glass fiber felt has to be cut in the place of based plate. The glass fiber felt is placed only from actuator side It is necessary to avoid movement of the glass fiber felt. The glass fiber felt is used only for round fire damper Park Allé 66, DK-2605 Brondby 15

16 Fig. 1 Installation outside the wall EIS Fire damper 2 Mineral stone wool - Isover Ultimate Protect Wired mat 4.0 ALU 1, thickness 75 mm Notice: Isolation stops between the two marks minimum and maximum Isolation against wall, see Isover description: Fire isolation of ventilation duct Fig. 14 Installation in a solid (or gypsum) wall construction EIS Fire damper 2 Stuffing box (mineral stone wool min. density 140 kg/m ) or another approved fire sealing system for damper installation Fire protection mastic Promastop P,K or equal min. thickness 1 mm Notice: The glass fiber felt is used only for round fire damper Park Allé 66, DK-2605 Brondby 16

17 Fig. 15 Duct ended by installation shaft EIS Fire damper 2 Stuffing box (mineral stone wool min. density 140 kg/m ) or another approved fire sealing system for damper installation Fire protection mastic Promastop P,K or equal min. thickness 1 mm 4 Duct 5 Installation shaft inner space 5 4 Notice: The glass fiber felt is used only for round fire damper Fig. 16 Installation outside the wall EIS Fire damper 2 Mineral stone wool - Isover Ultimate U Protect slab 4.0 thickness 80 mm Reinforcement VRM III Notice: Isolation stops between the two marks minimum and maximum Isolation against wall, see Isover description: Fire isolation of ventilation duct Alternatively can be used other approved fire products Used products must comply EI60 A2-s1,d0 Park Allé 66, DK-2605 Brondby 17

18 5.. If is rectangular (square) damper installed outside a construction it is necessary to use reinforcement VRM-III. Fig. 17 Fixing of reinforcement to damper body - VRM-III B VRM III C A 1.) Insert part A, B on body of fire damper in correct position 2.) Lock screw C.) It has to be done on each corner of VRM III Park Allé 66, DK-2605 Brondby 18

19 5.4. Installation of fire damper - EI 90 S Fig. 18 Installation in a solid wall construction EIS Fire damper 2 Mortar or gypsum with min. density 800 kg/m Duct Fig. 19 Installation in a solid wall construction EIS Min Fire damper FDMB Fire protection mastic Promastop P,K or equal, min. 2 Stuffing box (mineral stone wool min. density 140 kg/m ) thickness 1 mm or another approved fire sealing system for damper installation 4 Cement lime plate Promatect-H or equal, min. thickness 15 mm (min. density 870 kg/m ) 19 Park Allé 66, DK-2605 Brondby

20 Fig. 20 Installation in a solid wall construction EIS Fire damper FDMB 2 Fire resistant board Fire stop coating thickness 1 mm 4 Duct Used materials - example: 2 - Hilti CP67 PF - Hilti CP67 Fig. 21 Installation in a solid wall construction EIS Fire damper FDMB 2 Mortar or gypsum with min. density 800 kg/m Duct Park Allé 66, DK-2605 Brondby 20

21 Fig. 22 Installation in a solid wall construction EIS 90 4 Min Fire damper FDMB 2 Stuffing box (mineral stone wool min. density 140 kg/m ) Fire protection mastic min. thickness 1 mm 4 Cement lime plate min. thickness 15 mm (min. density 870 kg/m ) 5 Duct Used materials - example*: 2 - Promapyr, Rockwool Steprock HD - Promastop - P, K 4 - Promatect - H * Stuffing box, fire protection mastic, cement lime plate and insulation materials can be replaced by another approved fire sealing system for damper installation with equivalent material properties Fig. 2 Installation in gypsum wall construction EIS POSITION: 1 Fire damper FDMB 2 Fire resistant board Fire stop coating thickness 1 mm 4 Duct Used materials - example: 2 - Hilti CP67 PF - Hilti CP67 Park Allé 66, DK-2605 Brondby 21

22 Fig. 24 Installation in solid ceiling construction EIS POSITION: 1 Fire damper FDMB 2 Mortar or gypsum with min. density 800 kg/m Duct Fig. 25 Installation in solid ceiling construction EIS 90 Min POSITION: 1 Fire damper FDMB 2 Stuffing box (mineral stone wool min. density 140 kg/m ) Fire protection mastic min. thickness 1 mm 4 Cement lime plate min. thickness 15 mm (min. density 870 kg/m ) 5 Duct Used materials - example*: 2 - Promapyr, Rockwool Steprock HD - Promastop - P, K 4 - Promatect - H * Stuffing box, fire protection mastic, cement lime plate and insulation materials can be replaced by another approved fire sealing system for damper installation with equivalent material properties Park Allé 66, DK-2605 Brondby 22

23 240 TPM 075/09 Fig. 26 Installation in solid ceiling construction EIS POSITION: 1 Fire damper FDMB 2 Fire resistant board Fire stop coating thickness 1 mm 4 Duct Used materials - example: 2 - Hilti CP67 PF - Hilti CP67 Fig. 27 Installation outside of solid wall construction EIS POSITION: 1 Fire damper FDMB 2 Stuffing box (mineral stone wool min. density 140 kg/m ) Fire protection mastic min. thickness 1 mm 4 Cement lime plate min. thickness 15 mm (min. density 870 kg/m ) 5 Stone wool with one side stitched wire fencing (min. density 105 kg/m ). 6 Duct Used materials - example*: 2 - Promapyr, Rockwool Steprock HD - Promastop - P, K 4 - Promatect - H 5 - Rockwool Wired Mat 105 thickness x60 mm variable** 400 * Stuffing box, fire protection mastic, cement lime plate and insulation materials can be replaced by another approved fire sealing system for damper installation with equivalent material properties ** Dependent on the distance between damper and fire separating construction Park Allé 66, DK-2605 Brondby 2

24 240 TPM 075/09 Fig. 28 Installation outside of gypsum wall construction POSITION: 1 Fire damper FDMB 2 Stuffing box (mineral stone wool min. density 140 kg/m ) Fire protection mastic min. thickness 1 mm 4 Cement lime plate min. thickness 15 mm (min. density 870 kg/m ) 5 Stone wool with one side stitched wire fencing (min. density 105 kg/m ). 6 Duct Used materials - example*: 2 - Promapyr, Rockwool Steprock HD - Promastop - P, K 4 - Promatect - H 5 - Rockwool Wired Mat 105 thickness x60 mm 100 variable** 400 * Stuffing box, fire protection mastic, cement lime plate and insulation materials can be replaced by another approved fire sealing system for damper installation with equivalent material properties ** Dependent on the distance between damper and fire separating construction Fig. 29 Installation outside of solid ceiling construction variable** POSITION: 1 Fire damper FDMB 2 Mortar or gypsum with min. density 800 kg/m Stone wool with one side stitched wire fencing (min.density 105 kg/m ). 4 Duct 400 * Stuffing box, fire protection mastic, cement lime plate and insulation materials can be replaced by another approved fire sealing system for damper installation with equivalent material properties ** Dependent on the distance between damper and fire separating construction Used materials - example*: - Rockwool Wired Mat 105 thickness x 60 mm Park Allé 66, DK-2605 Brondby 24

25 Fig. 0 Duct ended by installation shaft EIS 90 EIS Position: 1 Fire damper FDMB Duct 2 Mortar or gypsum with min. density 800 kg/m or another approved fire sealing system for damper installation 4 Installation shaft Fig. 1 Duct ended by installation shaft EIS Position: 1 Fire damper FDMB 4 Cement lime plate Promatect-H or equal min. 2 Stuffing box (mineral stone wool min. density 140 kg/m ) or another approved fire sealing system for damper installation Fire protection mastic Promastop P,K or equal min. thickness 1 mm thickness 15 mm (min. density 870 kg/m ) 5 Duct 6 Installation shaft Park Allé 66, DK-2605 Brondby 25

26 Fig. 2 Installation in a solid wall construction EIS 90 2 POSITION: 1 Fire damper FDMB 2 Mortar or gypsum with min. density 800 kg/m Duct Fig. Installation in a solid wall construction EIS Min POSITION: 1 Fire damper FDMB 2 Stuffing box (mineral stone wool min. density 140 kg/m ) Fire protection mastic min. thickness 1 mm 4 Cement lime plate min. thickness 15 mm (min. density 870 kg/m ) 5 Duct Used materials - example*: 2 - Promapyr, Rockwool Steprock HD - Promastop - P, K 4 - Promatect - H * Stuffing box, fire protection mastic, cement lime plate and insulation materials can be replaced by another approved fire sealing system for damper installation with equivalent material properties Park Allé 66, DK-2605 Brondby 26

27 Fig. 4 Installation in a solid wall construction EIS POSITION: 1 Fire damper FDMB 2 Fire resistant board Fire stop coating thickness 1 mm 4 Duct Used materials - example: 2 - Hilti CP67 PF - Hilti CP67 Fig. 5 Installation in gypsum wall construction EIS 90 2 POSITION: 1 Fire damper FDMB 2 Mortar or gypsum with min. density 800 kg/m Duct Park Allé 66, DK-2605 Brondby 27

28 Fig. 6 Installation in gypsum wall construction EIS Min POSITION: 1 Fire damper FDMB 2 Stuffing box (mineral stone wool min. density 140 kg/m ) Fire protection mastic min. thickness 1 mm 4 Cement lime plate min. thickness 15 mm (min. density 870 kg/m ) 5 Duct Used materials - example*: 2 - Promapyr, Rockwool Steprock HD - Promastop - P, K 4 - Promatect - H * Stuffing box, fire protection mastic, cement lime plate and insulation materials can be replaced by another approved fire sealing system for damper installation with equivalent material properties Fig. 7 Installation in gypsum wall construction EIS POSITION: 1 Fire damper FDMB 2 Fire resistant board Fire stop coating thickness 1 mm 4 Duct Used materials - example: 2 - Hilti CP67 PF - Hilti CP67 Park Allé 66, DK-2605 Brondby 28

29 Fig. 8 Installation in solid ceiling construction EIS POSITION: 1 Fire damper FDMB 2 Mortar or gypsum with min. density 800 kg/m Duct Fig. 9 Installation in solid ceiling construction EIS 90 Min POSITION: 1 Fire damper FDMB 2 Stuffing box (mineral stone wool min. density 140 kg/m ) Fire protection mastic min. thickness 1 mm 4 Cement lime plate min. thickness 15 mm (min. density 870 kg/m ) 5 Duct Used materials - example*: 2 - Promapyr, Rockwool Steprock HD - Promastop - P, K 4 - Promatect - H * Stuffing box, fire protection mastic, cement lime plate and insulation materials can be replaced by another approved fire sealing system for damper installation with equivalent material properties 1 Park Allé 66, DK-2605 Brondby 29

30 TPM 075/09 Fig. 40 Installation in solid ceiling construction EIS POSITION: 1 Fire damper FDMB 2 Fire resistant board Fire stop coating thickness 1 mm 4 Duct Used materials - example: 2 - Hilti CP67 PF - Hilti CP67 Fig. 41 Installation outside of solid wall construction EIS variable** 400 POSITION: 1 Fire damper FDMB 2 Stuffing box (mineral stone wool min. density 140 kg/m ) Fire protection mastic min. thickness 1 mm 4 Cement lime plate min. thickness 15 mm (min. density 870 kg/m ) 5 Stone wool bound with use of an organic resin with crushed stone as a refrigerant (min. density 00 kg/m ), EIS 90, thickness 60 mm 6 VRM-III*** 7 Profil U25x40x25 8 Duct Used materials - example*: 2 - Promapyr, Rockwool Steprock HD - Promastop - P, K 4 - Promatect - H 5 - Rockwool Conlit Ductrock EIS 90, thickness 60 mm * Stuffing box, fire protection mastic, cement lime plate and insulation materials can be replaced by another approved fire sealing system for damper installation with equivalent material properties ** Dependent on the distance between damper and fire separating construction *** Reinforcement fixing VRM-III see Fig. 17 Park Allé 66, DK-2605 Brondby 0

31 TPM 075/09 Fig. 42 Installation outside of gypsum wall construction POSITION: 1 Fire damper FDMB 2 Stuffing box (mineral stone wool min. density 140 kg/m ) Fire protection mastic min. thickness 1 mm 4 Cement lime plate min. thickness 15 mm (min. density 870 kg/m ) 5 Stone wool bound with use of an organic resin with crushed stone as a refrigerant (min. density 00 kg/m ), EIS 90, thickness 60 mm 6 VRM-III*** 7 Profil U25x40x25 8 Duct Used materials - example*: 2 - Promapyr, Rockwool Steprock HD - Promastop - P, K 4 - Promatect - H 5 - Rockwool Conlit Ductrock EIS 90, thickness 60 mm variabel** 400 * Stuffing box, fire protection mastic, cement lime plate and insulation materials can be replaced by another approved fire sealing system for damper installation with equivalent material properties ** Dependent on the distance between damper and fire separating construction *** Reinforcement fixing VRM-III see Fig. 17 Fig. 4 Installation outside of solid ceiling construction EIS POSITION: 1 Fire damper FDMB 2 Mortar or gypsum with min. density 800 kg/m Stone wool bound with use of an organic resin with crushed stone as a refrigerant (min. density 00 kg/m ), EIS 90, thickness 60 mm 4 VRM-III*** 5 Profil U25x40x25 6 Duct variabel** 400 * Stuffing box, fire protection mastic, cement lime plate and insulation materials can be replaced by another approved fire sealing system for damper installation with equivalent material properties ** Dependent on the distance between damper and fire separating construction *** Reinforcement fixing VRM-III see Fig. 17 Used materials - example*: - Rockwool Conlit Ductrock EIS 90, thickness 60 mm Park Allé 66, DK-2605 Brondby 1

32 Fig. 44 Duct ended by installation shaft EIS Position: 1 Fire damper FDMB Duct 2 Mortar or gypsum with min. density 800 kg/m or another approved fire sealing system for damper installation 4 Installation shaft Fig. 45 Duct ended by installation shaft EIS Position: 1 Fire damper FDMB 4 Cement lime plate Promatect-H or equal min. thickness 15 mm (min. density 870 kg/m ) 2 Stuffing box (mineral stone wool min. density 140 kg/m ) or another approved fire sealing system for damper installation Fire protection mastic Promastop P,K or equal min. thickness 1 mm 5 Duct 6 Installation shaft Park Allé 66, DK-2605 Brondby 2

33 III. TECHNICAL DATA 6. Pressure loss, noise data 6.1. Rectangular (square) dampers Tab FDMB rectangular v = [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = [m.s ] Size V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby

34 v = [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] 2 V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 4

35 v = [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 5

36 v = [m.s ] Size V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 6

37 v = 4 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = 4 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 7

38 v = 4 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = 4 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 8

39 v = 4 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = 4 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 9

40 v = 4 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = 4 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 40

41 v = 5 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = 5 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 41

42 v = 5 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = 5 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] 4 p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 42

43 v = 5 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = 5 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] - - p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 4

44 v = 5 [m.s ] Size V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = 5 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 44

45 v = 6 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = 6 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 45

46 v = 6 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = 6 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 46

47 v = 6 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = 6 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 47

48 v = 6 [m.s ] Size V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = 6 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 48

49 v = 7 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = 7 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 49

50 v = 7 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = 7 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 50

51 v = 7 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = 7 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 51

52 v = 7 [m.s ] Size V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = 7 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 52

53 v = 8 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = 8 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 5

54 v = 8 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = 8 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 54

55 v = 8 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = 8 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 55

56 v = 8 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = 8 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 56

57 v = 9 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = 9 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 57

58 v = 9 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = 9 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 58

59 v = 9 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = 9 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 59

60 v = 9 [m.s ] Size V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = 9 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 60

61 v = 10 [m.s ] Size V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] v = 10 [m.s ] Size V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 61

62 v = 10 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = 10 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 62

63 v = 10 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = 10 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 6

64 v = 10 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] vef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] v = 10 [m.s ] Size V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] V [m.h ] v ef [m.s ] L WA [db] p [Pa] Park Allé 66, DK-2605 Brondby 64

65 6.2. Round dampers Tab FDMB round Size v [m.s ] v [m.s ] Size V [m.h ] V [m.h ] v ef [m.s ] v ef [m.s ] L WA [db] L WA [db] p [Pa] p [Pa] V [m.h ] V [m.h ] v ef [m.s ] v ef [m.s ] L WA [db] L WA [db] p [Pa] p [Pa] V [m.h ] V [m.h ] v ef [m.s ] v ef [m.s ] L WA [db] L WA [db] p [Pa] p [Pa] V [m.h ] V [m.h ] v ef [m.s ] v ef [m.s ] L WA [db] L WA [db] p [Pa] p [Pa] V [m.h ] V [m.h ] v ef [m.s ] v ef [m.s ] L WA [db] L WA [db] p [Pa] p [Pa] V [m.h ] V [m.h ] v ef [m.s ] v ef [m.s ] L WA [db] L WA [db] p [Pa] p [Pa] V [m.h ] V [m.h ] v ef [m.s ] v ef [m.s ] L WA [db] L WA [db] p [Pa] p [Pa] Park Allé 66, DK-2605 Brondby 65

66 7. Electrical Components, Connection Diagrams 7.1. Actuating mechanism Tab Actuating mechanism BELIMO BLF 24-T, BELIMO BLF 24 Actuating mechanism BELIMO BLF 24-T, BELIMO BLF 24 Nominal voltage Power consumption - motoring - holding Dimensioning Protection Class Fig. 46 Actuating mechanism BELIMO BLF 24-T, BELIMO BLF 24 AC 24V 50/60Hz DC 24 V 5 W 2,5 W 7 VA (Imax 5,8 5 ms) Degree of protection IP 54 Running time - motor - spring return Ambient Temperature - normal duty - safety duty - non-operating temperature Connecting - motor - auxiliary switch Thermal trips (only for FDMB) III s ~ 20 s - 0 C + 50 C The safe position will be attained up to max. 75 C - 40 C + 50 C cable 1 m, 2 x 0,75 mm cable 1 m, 6 x 0,75 mm Tf1: duct outside temperature 72 C Tf2/Tf: duct inside temperature 72 C 2 2 Tab Actuating mechanism BELIMO BF 24-T, BF24 Actuating mechanism BELIMO Nominal voltage Power consumption - motoring - holding Dimensioning Protection Class BF 24-T, BF24 AC 24 V 50/60 Hz DC 24 V 7 W 2 W 10 VA (Imax 8, 5 ms) Degree of protection IP 54 Running time - motor - spring return Ambient Temperature - normal duty - safety duty - non-operating temperature Connecting - motor - auxiliary switch III 140 s ~ 16 s - 0 C + 50 C The safe position will be attained up to max. 75 C - 40 C + 50 C cable 1 m, 2 x 0,75 mm cable 1 m, 6 x 0,75 mm Thermal trips (only for FDMB) Tf1: duct outside temperature 72 C Tf2/Tf: duct inside temperature 72 C 2 2 Park Allé 66, DK-2605 Brondby 66

67 Fig. 47 Actuating mechanism BELIMO BF 24-T Fig. 48 Actuating mechanism BELIMO BF Governing system GBS 8.1. Governing system GBS - Electrical wiring diagram Fig. 49 Governing system GBS Park Allé 66, DK-2605 Brondby 67

68 Fig. 50 Wiring between connection box and actuator IV. MATERIAL, FINISHING 9. Material 9.1. Damper bodies are supplied in the design made of galvanized plate without any other surface finish Damper blades are made of fire resistant asbestos free boards made of mineral fibres. 9.. Fasteners is galvanized. V. INSPECTION, TESTING 10. Inspection, testing The appliance is constructed and and preset by the manufacturer, its operation is dependent on proper installation and adjustment. VI. TRANSPORTATION AND STORAGE 11. Logistic terms Dampers are transported by box freight vehicles without direct weather impact, there must not occur any sharp shocks and ambient temperature must not exceed + 40 C. Dampers must be protected against mechanic damages when transported and manipulated. During transportation, the damper blade must be in the "CLOSED" position Dampers are stored indoor in environment without any aggressive vapours, gases or dust. Indoor temperature must be in the range from -5 C to +40 C and maximum relative humidity 80 %. Dampers must be protected against mechanic damages when transported and manipulated. Park Allé 66, DK-2605 Brondby 68

69 VII. ASSEMBLY, ATTENDANCE, MAINTENANCE AND REVISIONS 12. Assembly All effective safety standards and directives must be observed during fire damper assembly To ensure reliable fire damper function it is necessary to avoid blocking the closing mechanism and contact surfaces with collected dust, fibre and sticky materials and solvents Manual operation Without power supply, the damper can be operated manually and fixed in any required position. Release of the locking mechanism can be achieved manually or automatically by applying the supply voltage. 1. Entry into service and revisions 1.1. Before entering the dampers into operation after assembly and after sequential revisions, checks and functionality tests of all designs including operation of the electrical components must be done. After entering into operation, these revisions must be done according to requirement set by national regulations In case that dampers are found unable to serve for their function for any cause, it must be clearly marked. The operator is obliged to ensure so that the damper is put into condition in which it is able to function and meanwhile he is obliged to provide the fire protection another appropriate way Results of regular checks, imperfections found and all-important facts connected with the damper function must be recorded in the "FIRE BOOK" and immediately reported to the operator Before entering the dampers into operation after their assembly and by sequential checks, the following checks must be carried out Visual inspection of proper damper integration, inside damper area, damper blade, contact surfaces and silicon sealing Inspection hole disassembly: release the covering lid by turning the wing nut and while turning the lid right or left release it from the security belt. Then tilt the lid and remove it from its original position Check of blade displacement into the breakdown position "CLOSED" can be done after cutting off the actuating mechanism supply (e.g. by pressing the RESET button at the thermoelectrical starting mechanism BAE 72B-S - only FDMB or cutting off the supply from ELECTRICAL FIRE SIGNALISATION). Check of blade displacement back into the "OPEN" position can be done after restoration of power supply (e.g. By releasing the RESET button - only FDMB or restoration of supply from ELECTRICAL FIRE SIGNALISATION). VIII. ORDERING INFORMATION 14. Ordering key FDMB 180 x 100 (180)* TPM 075/09 * round design technical specifications size type (FDMB, FDMB-SRD) Park Allé 66, DK-2605 Brondby 69

70 MANDÍK, a.s. Dobříšská Hostomice Czech Republic Tel.: Fax: , Your distributor The producer reserves the right for innovations of the product. For actual product information see Park Allé 66, DK-2605 Brondby 70

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