Fireray FD2705R Скачать руководство пользователя страница 2

 

 

 

 

 

22318.26.01 

 

 

 

 

 

 

 

1. System Description. 

 

Fireray FD2705R/FD2710R Detector comprises a Transmitter and Receiver contained within one enclosure. 

 

The Detector installs to the building fabric between 0.3 and 0.6 metres from the ceiling. 

 

The Transmitter emits an invisible infrared light beam that is reflected via a prism(s) mounted directly opposite 

and with a clear line of sight. The reflected infrared light is detected by the Receiver and analysed. 

 

The Detector has maximum lateral detection of 7.5 metres either side of the beam. 

 

2. System Operation. 

 

Smoke in the beam path will reduce the received infrared light proportionally to the density of the smoke. The 

Detector analyses this attenuation or obscuration of light and acts accordingly. 

  

Alarm  thresholds  of  25%,  35%,  and  50%  can  be  selected  to  suit  the  environment,  where  25%  is  the  most 

sensitive.  If  the  received  infrared  signal  reduces  to  below  the  selected  threshold,  and  is  present  for 

approximately 10 seconds, a Fire condition is activated. 

 

If  the  infrared  beam  is  obscured  rapidly  to  a  level  of  90%  or  greater  for  approximately  10  seconds  a  Fault 

condition is activated. 

This  condition  can  be  entered  in  a  number  of  ways,  for  example,  an  object  being  placed  in  the  beam  path, 

transmitter failure,  loss of the prism(s), or sudden misalignment of the Detector. The fault condition  will reset 

within 5 seconds of the condition being rectified. 

 

The Detector monitors long term degradation of signal strength caused by component ageing or build up of dirt 

on  optical  surfaces.  This  operates  by  comparing  the  received  infrared  signal  against  a  standard  every  15 

minutes; differences of less than 0.7dB/Hour are corrected automatically. When the detector is showing AGC 

fault, the detector will still operate correctly indicating Alarm and Fault as normal. 

 

3. Detector Positioning. 

 

It  is  important  that  the  Fireray  FD2705R/FD2710R  Detector  is  positioned  correctly  to  minimise  the  detection 

time. 

 

Experiments have shown that smoke from a fire does not rise directly upwards, but fans out or mushrooms due 

to  air  currents  and  heat  layering  effects.  The  time  to  signal  a  fire  condition  depends  on  the  location  of  the 

Detector  within  the  premises,  the  volume  of  smoke  produced,  construction  of  the  roof,  and  ventilation 

arrangements. 

 

The maximum distance either side of the beam axis is found to be typically 7.5 metres for satisfactory detection 

under flat ceilings. 

 

 

 

 

 

 

 

 

 

Smoke layering,  where smoke does not reach the ceiling  level due to  layers of static hot air  is overcome by 

mounting the Detector at the recommended height below the ceiling of between 0.3 and 0.6 metres, bringing 

the infrared beam below the heat layer and into the smoke layer. 

 

However, in all installations the latest national fire standards 

must

 be consulted. If there is any doubt on the 

correct mounting height, positioning may be determined by smoke tests. 

Single Beam 

15 m 

15 m 

0.5 

 7.5 m 

Multiple Beams 

0.3 

 0.6 m 

0.5 

 7.5 m 

www.acornfiresecurity.com

www.acornfiresecurity.com

Содержание FD2705R

Страница 1: ...tres Range 50 100 Metres Unique simple alignment Loop powered Selectable alarm thresholds Low current consumption Automatic contamination compensation 22318 26 01 Loop Powered Analogue Addressable www...

Страница 2: ...Detector monitors long term degradation of signal strength caused by component ageing or build up of dirt on optical surfaces This operates by comparing the received infrared signal against a standard...

Страница 3: ...n be increased from 7 5 metres either side of the beam to 7 5 7 5 x 20 100 metres 9 metres Therefore with a roof pitch of 20 degrees the lateral coverage can be increased from 7 5 metres either side o...

Страница 4: ...lls as these surfaces do and will move Determine the position of the Head Assembly which must be mounted on a solid structure between 0 3 and 0 6 metres below the ceiling and no closer than 0 5 metres...

Страница 5: ...nment Mode Do not remove the detector from the wall during this action Using the mode switch See fig 4 select Alignment Mode Move switch to the middle position At this time there will be a fault condi...

Страница 6: ...nd enter the Operating Mode LED flashing Slowly adjust a thumbwheel in one direction and observe the LED s LED flashing For optimum alignment deflection of the beam in all four planes should cause the...

Страница 7: ...te of the threshold selected during installation default 35 Select obscuration mark on filter to correspond with the Detector alarm threshold see fig 3 Place the filter over the receiver optics Top of...

Страница 8: ...n connector on the left is for future use 8 2 DIP Switch Settings Access to the configuration and address settings is through the back plate of the Detector Head See Fig 4 8 3 Typical Loop Wiring Fire...

Страница 9: ...22318 26 01 9 Detector Interface Assembly Configuration Settings SENSITIVITY X X X X X X X 2 X 1 3 4 B A A B Fig 4 www acornfiresecurity com www acornfiresecurity com...

Страница 10: ...00100101 19 10011000 62 01000110 105 10100101 20 00000100 63 11000110 106 01100101 21 10000100 64 00100110 107 11100101 22 01000100 65 10100110 108 00010101 23 11000100 66 01100110 109 10010101 24 001...

Страница 11: ...880nm Head Maximum Size Width 130mm Height 210mm Depth 120mm Weight 740 gm 12 Service Application Notes For full compliance with BS5839 part 5 use 25 and 35 default thresholds The threshold of 50 is r...

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