6ft CCT Adjustable Microwave LED Batten, 27/52W, 4,170lm/7,520lm, 230V, BATSCWM6
Product Overview & Key Benefits
The 6ft CCT Adjustable Microwave LED Batten is designed to provide high efficiency and flexibility, making it an excellent choice for a variety of lighting needs. This innovative product allows the adjustment of both the colour temperature (CCT) and wattage, ensuring optimum performance whether for domestic or commercial use. With a high lumen output of up to 7,520 lumens at 52 watts, it effectively replaces conventional fluorescent fixtures, providing a long-life solution with minimal maintenance required. This makes it perfect for those looking for reliable, energy-efficient lighting solutions.
Technical Specifications & Product Details
- Wattage:Adjustable between 27W and 52W
- Luminous Flux:4,170 lumens (27W) / 7,520 lumens (52W)
- Colour Temperature:Adjustable settings at 3000K, 4000K, and 5700K
- IP Rating:IP20
- Material:Pressed steel and polycarbonate construction
- Dimensions:1790mm length, 61mm width, 71mm projection
- Driver Type:Constant Current
- Beam Angle:145 degrees
- Energy Rating:Class D
- L70B50 Lifetime:60,000 hours
- Installation:Easy installation with push-fit loop in-loop out connectors
Ideal Uses & Applications
This versatile LED batten is ideal for a variety of settings including domestic environments, commercial buildings, hospitality venues, and office spaces. Its adjustable features allow for different lighting scenarios and preferences, making it a great choice for areas where lighting needs may change frequently or require different atmospheres. The microwave presence detection feature further enhances its practicality in situations where motion-sensing lighting is desired.
Energy Efficiency & Cost Savings
Switching to the 6ft CCT Adjustable Microwave LED Batten can lead to significant energy savings compared to traditional fluorescent fixtures. With its adjustable wattage and high luminous efficacy, users can save up to 50 percent on their electricity bills. This not only reduces energy consumption but also contributes to a more sustainable approach to lighting exploration.