Description
Specifications / Additional Information
EPL-HB-50LED-RT-STNCH25 - C1D1 Low Bay LED Light | Ratings/Approvals |
Listing: United States - Canada | Class I, Divisions 1 & 2, Groups C,D |
Lamp Technology: LED | Class II, Divisions 1 & 2, Groups E,F,G |
Dimensions: - | Class III, Divisions 1 & 2 |
Weight: - | Certified to UL 844 Ed. 13 |
Voltage: 100-277V AC, 50/60Hz or 11-25V AC/DC | Certified to UL 1598 |
Total Watts: 50W | Certified to C22.2 No. 137 Rev 2009 |
Total Lumens: 7,000 lms | Certified to C22.2 No. 250.0 |
Luminous Efficacy: 140 Lm/W | Certified to C22.2 No. 30-M-1986 Rev 2012 |
Lamp Life: 60,000+ Hours | T5 Temperature Rating |
Color Temp: 5600K, 4500K, 3000K | Paint Spray Booth Approved |
Color Rendering Index: >75 CRI | IEC 60529 Tested |
Lamp Type: - | IP67 Rated Waterproof |
Lamp Base: - | LEL Approved |
Replacement Lamp: - | Single LED Driver |
Beam Angle: 60° or 125° | 80% Lumen Retention after 60,000 Hours |
Lighting Configuration: Flood Pattern | Factory Sealed Light Fixture |
NEMA Type (Lighting): 6H x 6V (60° Optics); 6H x 6V (125° Optics); 6H x 7V (140° Optics) | |
IES Classification: Type I (60° Optics); Type VS (125° Optics); Type VS (140° Optics) | |
Longitudinal Classification: Very Short (60° Optics); Very Short (125° Optics); Short (140° Optics) | |
Cutoff Classification: Cutoff | |
CIE Type: Direct | |
BUG Rating: B3-U1-G0 (60° Optics); B3-U1-G0 (125° Optics); B3-U1-G1 (140° Optics) | |
Power Efficiency: >95% | Â |
Power Factor: 0.992 | Â |
Ambient Operating Temp Range: -50° C to +65°C |  |
Operating Temp Rating: T5 | Â |
Housing Material: Copper Free Cast Aluminum | |
Housing Finish: Epoxy Powder Coated - Grey | |
Lens Material: Hardened Borosilicate Glass | |
Gasket Material: Silicone | |
Mounting: 25° Stanchion Mount w/ 1 1/4" NPT | |
Wiring: Internal Wiring Junction Box | |
Wiring Hubs: (4) 3/4" NPT Threaded Hubs |
The Larson Electronics EPL-HB-50LED-RT-STNCH25 Explosion Proof Low Bay LED Fixture provides operators with a powerful and energy efficient alternative to traditional hazardous location luminaries. LED technology and compact design makes this lamp an excellent replacement upgrade option for bulky and high maintenance cost older incandescent, metal halide and high pressure sodium lights. This unit is equipped with a 25° stanchion mounting component with 1 1/4" NPT opening.
This Class I Division 1 & 2, Class II Division 1 & 2 explosion proof light fixture provides 7,000 lumens of high quality light while drawing only 50 watts. The copper free aluminum alloy body is powder coated for added durability and an attractive aesthetic appearance. Special heat dissipating design in conjunction with LED technology helps this fixture to achieve an excellent 60,000 hour rated lifespan with 80% lumen retention. Light weight and a low profile make this unit an attractive alternative to larger and heavier older fixtures and requires less hardware to install. The EPL-HB-50LED-RT-STNCH25 explosion proof low bay LED light also offers operators convenience in the form of field serviceability.
This light is universal voltage capable and can be operated with 100-277V AC, 50/60Hz. We also offer a low voltage version of this LED fixture that operates on AC/DC voltages from 11-25 Volts. This explosion proof LED light fixture is IP67 rated, dust-proof, and protected against high pressure jets and temporary submersion. The cast aluminum body and LED lamp give this light excellent durability and resistance to vibration and impacts. The housing is specially designed to dissipate heat which increases the efficiency and lifespan of the LEDs and electronics.
This LED light produces 7,000 lumens with a color temperature of 5600K and a color rendering index of 75 which produces colors and details much more accurately than high pressure sodium or mercury vapor luminaries. We also offer a 3000K warm white and 4500K natural white color temperature options (longer lead times may apply for non-standard temperatures).
LED Benefits: Unlike gas burning and arc type lamps that have glass bulbs, LEDs have no filaments or fragile housings to break during operation and/or transportation. Instead of heating a small filament or using a combination of gases to produce light, light emitting diodes (LEDs) use semi-conductive materials that illuminate when electric current is applied, providing instant illumination with no warm up or cool down time before re-striking. Because there is no warm up period, this light can be cycled on and off with no reduction in lamp life.
LED lights run at significantly cooler temperatures than traditional metal halide and high pressure sodium lights and contain no harmful gases, vapors, or mercury, making them both safer and more energy efficient. No extra energy is wasted in cooling enclosed work areas due to external heat emissions from bulb type lights, and the operator risks associated with traditional lighting methods, such as accidental burns and exposure to hazardous substances contained in the glass bulbs, are eliminated. In addition, LEDs are also safer for the environment as they are 100% recyclable, which eliminates the need for costly special disposal services required with traditional gas burning and arc type lamps.
LED Drivers: Even in LED fixtures, heat is the single largest factor in premature light failure and color shifting. As a result, many manufacturers reduce the output of their LEDs in order to reduce the amount of heat produced. Rather than lower light output or quality, Larson Electronics addresses this problem with the addition of an electronic LED driver. This internal driver provides the ability to automatically monitor and adjust input current to maintain the correct LED voltage levels regardless of input levels across a specific range. This not only reduces the energy dissipation, effectively lowering the operating temperature of the fixture, but also prevents AC over-voltage and short circuit loading making this fixture virtually maintenance free. Because the electronic driver allows the EPL-HB-50LED-RT-STNCH25 to run at a cooler internal temperature and regulates the electrical current, energy efficiency and LED service hours are maximized while at the same time reducing operating costs and downtime incurred from the frequent servicing intervals required with other hotter running lights.
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