Description
Item Description:
Open-area Smoke Imaging Detection (OSID) provides projected beam smoke detection technology. By using advanced dual wavelength projected beams and optical imaging technology for early warning smoke detection, OSID provides a low-cost, reliable and easy-to-install solution that overcomes typical beam detection issues such as false alarm incidents and alignment difficulties.
Product Specs:
Brand | Honeywell |
MPN | OSE-SP-L8 |
Model | OSID-DE L8 |
Alarm Thresholds (Configurable) | Level 1 – 20% (0.97 dB Highest Sensitivity) Level 2 – 35% (1.87 dB) Medium Sensitivity Level 3 – 50% (3.01 dB) Low Sensitivity Level 4 – 65% (4.56 dB) Lowest Sensitivity, Industrial Mode |
Alarm Latching (Configurable) | Latching / Non-latching configured via DIP switch |
Status LEDs (Imager) | Red: Fire Alarm Bi-color Yellow/Green: Trouble or Normal |
IP Rating | IP 40 for Electronics; IP 66 for Optics Enclosure |
DIP Switch Configuration (Termination Card) | Configuration for alarm thresholds, number of Emitters and alarm latching/non latching |
Imager Supply Voltage | 20-30 VDC (24 VDC nominal) |
Emitter Supply Voltage | Wired versions: 20-30 VDC (24 VDC nominal) Battery versions: 1.9 – 3.2 VDC |
Emitter Current Consumption | Externally-powered Emitter (at 24 VDC): Standard Power: 350μA High Power: 800μA Battery-powered Emitter (3 VDC)1,2: Built-in 5 Year Replaceable Alkaline Battery (3 Year for OSE-HP-01) Note: Battery life time only valid for use at room temperature. |
Cable Gauge | 0.2 – 4 mm2 (26-12 AWG) |
Trouble/Fault Relay | 2 A @ 30 VDC, NO-C-NC Dry Relay Contacts |
Fire Alarm Relay | 2 A @ 30 VDC, NO-C-NC Dry Relay Contacts |
Heater Input Power | 24 VDC, 16 mA (400 mW) |
Operating Temperature | -10ºC to 55ºC (14ºF to 131ºF)3 |
Humidity | 10 to 95% RH Non-condensing |
Dimensions (WHD) | 208 mm x 136 mm x 96 mm (8.2 in x 5.4 in x 3.8 in) |
Weight | Imager: 610 g; Emitter (battery powered): 1.2 kg Emitter (wired): 535 g |
Adjustment Angle | Horizontal: ±60º; Vertical: ±15º |
Maximum Misalignment Angle | ±2º |