Technical Specification
Mounting variant: Surface, suspended, recessed
Dimensions: 344x344 / 490x660 / 352x352 mm
Power: 50 - 79W LED
Luminous flux: 8122 - 13226 lm
Light distribution: Direct
Optic: 60° / 90° / 120°
LED color temperature: 4000K, 5500K
Color rendering index CRI: >80
Control: ON-OFF, DALI
Design: Rechnio Design
Maximum light, minimum energy
The Pumplight series fixtures have been designed with maximum versatility and easy adaptation to existing infrastructure in mind. A wide range of mounting options allows for seamless integration with different types of structures, both in new installations and during the modernization of existing facilities. Dedicated solutions enable effective and aesthetically pleasing concealment of openings left by removed fixtures, significantly enhancing the visual appeal of fuel canopy areas. The result is a cohesive, modern lighting environment that combines high functionality with refined aesthetics.
Modern lighting for demanding spaces
Advanced modular High Bay fixtures have been designed for demanding spaces such as fuel stations, industrial facilities, and sports arenas. The use of energy-efficient, high-performance LED light sources ensures intense, uniform illumination while significantly reducing energy consumption, making them an ideal choice for modern modernization projects.
The Pumplight series offers three types of optics: Wide (60°), recommended for fixture mounting heights of 7–12 m; Medium-Flood (90°), suitable for heights of 5–8 m; and Flood (120°), designed for projects where fixtures are installed at heights of 3–5 m.
ON-OFF LED drivers
LED power supplies with the ability to program selected parameters, including the output current in the range of 70 mA to 1050 mA, which allows you to set aversion of the power of the luminaire, and consequently the value of the luminous flux emitted by LEDs.
DALI LED drivers
The digital, addressable lighting control system, allowing for regulating the luminous flux emitted by fixtures. The DALI system is characterized by high functionality and exceptionally simple operating. It also allows for creating and configuring light scenes, adjusted to the user’s needs. Each fixture operating in the DALI system is automatically given its own address, which allows both for individual control of fixtures and connecting them into groups.
DALI LED drivers with sensor
An automatic luminaire power reduction system that allows light intensity to be related to the presence or absence of objects in the detection area of the PIR presence sensor installed in the luminaire. The light intensity increases when an object enters the detection area, when it leaves it the light intensity is automatically reduced. The LED power supplies are programmable with six parameters that change the system’s usage characteristics (see graph below).
System usage characteristics are defined by 6 parameters:
A - Level of luminous flux emitted from the luminaire when the object is present
(default: 100%)
B - Level of luminous flux emitted from the luminaire when the object is absent
D0 - Delay time (default: 3 min)
T1 - Time to maintain reduced intensity level (infinitely long, until presence is
detected*)
F1 - Transition time from level B to A (default: 15 sec.)
F2 - Transition time from level A to B (default: 30 sec.)
* factory-programmed “never off” function.
Endless possibilities for customization
Diverse versions of Pumplight series luminaires, complemented by a various options of technical parameters, allow their versatile use and adaptation of the luminaire model to the implemented project.
Colors
Pumplight fixtures, made from durable steel, combine a robust construction with an attractive finish, making them ideal for demanding operating conditions. Carefully selected materials ensure high resistance to damage and a long product lifespan. The series is available in four color options—white, gray, graphite, and black—allowing for easy adaptation of the fixtures to the character of the facility, brand visual identity, or the architecture of modern canopies and functional spaces.