NCB SERIES
PHOTOMETRICS
H o r i z o n t a l D i s t r i b u t i o n
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FEET |
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LEFT |
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0 |
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| 1FC | 0.5 | 0.3 | 0.2 |
| LAMP |
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| AXIS |
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FEET |
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RIGHT |
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10 |
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0 | 10 | 20 | 30 | 40 | 50 | 60 | 70 | |||||||||
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| FEET FROM LAMP (Measured on axis) |
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Lamp No. |
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Initial Lumens – |
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Ve r t i c a l D i s t r i b u t i o n
10 |
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FEET |
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LEFT |
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| 1FC | 0.5 | 0.3 | 0.2 | LAMP |
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0 |
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| AXIS |
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FEET |
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RIGHT |
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10 |
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0 | 10 | 20 | 30 | 40 | 50 | 60 | 70 | |||||||
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| FEET FROM LAMP (Measured on axis) |
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Lamp No. |
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TECHNICAL DATA
Heads | main power is permanently | Solid - State Transfer | Serviceable Nickel | |
The lamp housing is constructed | turned on. | The unit incorporates a solid- | Cad mium Battery | |
of | Solid - State Charger | state switching transistor which | The wet cell pocket plate nickel | |
resistant injection molded | eliminates corroded and pitted | cadmium battery remains the | ||
thermoplastic with matching | Supplied with a 120/277 VAC, | contacts or mechanical failures | premier battery for emergency | |
finish. The three dimensional | voltage regulated | associated with relays. The | lighting applications. Designed | |
swivel assembly permits | charger. Immediately upon | switching circuit is designed to | with an extra large electrolyte | |
approximate aiming adjustment | restoration of AC current after | detect a loss of AC voltage and | reservoir, these batteries | |
from 80° vertical and 358° | a power failure, the charger | automatically energizes the | require maintenance every | |
rotation. The placement is | provides a high charge rate. | lamps. Upon restoration of | three to five years under | |
secured with a lockable pivot | The charge circuit reacts to | the AC power, the emergency | normal ambient conditions. | |
mounted on a rotating base ring. | the condition of the battery | lamps will switch off and the | More frequent maintenance is | |
| and alters the rate of charge in | charger will automatically | required when operated at an | |
Lamps | order to maintain peak battery | recharge the battery. | elevated temperature. The | |
Designed specifically for | capacity and maximize battery |
| sintered plate design should | |
emergency lighting applications, | life. | Low | provide up to | |
the PAR 36 sealed beam type | recharges the battery following | When the battery’s terminal | years of service if properly | |
design insures optimum glare- | a power failure in accordance | voltage falls below 80% of the | maintained. | |
free trapezoidal light distribution | with UL 924. | rated voltage, the | Warranty | |
along with horizontal and |
| circuitry disconnects the | ||
Overload and Short | All | |||
vertical adjustment by rotating | lighting load. The disconnect | |||
the lens within the housing. | Circuit Protection | remains in effect until normal | by a firm | |
The | ||||
| utility power is restored, | against defect in material and | ||
Housing | monitoring device in the DC | preventing deep battery | workmanship (excluding | |
The rugged | circuit disconnects the lamp | discharge. | lamps). Serviceable, | |
formed steel housing is finished | load from the battery should |
| nickel cadmium batteries carry | |
excessive wattage demands | Test Switch/Power Indicator | a | ||
with white | ||||
be made and automatically | Lig ht |
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polyester powder coat paint. |
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resets when the overload or | Conveniently located Test |
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Cabinet has keyhole mounting |
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slots and knockouts in top, rear | short circuit is removed. This | Switch allows for manual |
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and side for AC/DC wiring | overload current protective | verification of proper |
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connections. Front cover has | feature eliminates the need | operation of the transfer |
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large viewport to allow visual | for fuses or circuit breakers | circuit and emergency lamps. |
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inspection of electrolyte level | for the DC load. | The Power Indicator Light |
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and removable cover provides | Brownout Circuit | provides visual assurance that |
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easy access to filler caps on | the AC power is on. |
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The brownout circuit in Sure- |
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the battery(s). |
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| Lites’ units monitors the flow |
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Line - Latched | of AC current to the unit and |
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activates the emergency |
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lighting system when a |
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electronic circuitry makes |
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predetermined reduction |
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installation easy and |
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of AC power occurs. This |
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economical. A labor efficient |
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dip in voltage will cause most |
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ballasted fixtures to extinguish |
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prevents the lamps from |
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causing loss of normal lighting |
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turning on during installation |
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even though a total power |
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to a |
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failure has not occurred. |
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need for a contractor’s return |
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to a job site to connect the |
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batteries when the building’s |
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Specifications and Dimensions subject to change without notice. | ADX081386 |
10/02/2008 2:57:26 PM |