BJB Launches New Multi-lens Optics for 3×11 LED Modules

BJB PR Image 10.11.17.jpg

BJB has launched their new 3×11 multi-lens optics (31.930 Series) extending their range of LED lighting solutions. The 31.930 Series optics are designed specifically for indoor LED lighting systems, to be used in supermarkets, offices, warehouses and other commercial and industrial spaces. The optics are compatible with the Zhaga Book 7 interface specifications (for Linear and Square LED Modules) for the rectangular L28W6 form-factor.

Available in four different light distribution characteristics, these optics are perfect for a wide range of applications. For luminaires used in these indoor areas, BJB supplies the multi-lens optics with wide, medium and narrow beam light distribution (90, 68 and 30 degrees), as well as a double asymmetric version. Various application scenarios, mounting heights and other lighting design requirements were taken into account when selecting these values as the standard series production models.

The high-precision components are made of clear PMMA and achieve optical efficiency values up to 96%. The 31.930 Series optics are easy to install quickly by means of M4 screws. Individual lens arrays can be connected in sequence, with a separation of only 2.5 mm, to form strip lighting systems.

With BJB’s expanding line of optics, the German lighting technology company now offers more LED solutions than ever to OEM lighting manufacturers. BJB is already well known for their industry leading electro-mechanical components (e.g. P2F fixing elements, COB holders and SMD terminal blocks) and now lighting manufacturers can rely on BJB for premium quality optics. This “single-source supply” capability helps ensure that individual components will harmonize well into the final design and materials of the lighting system.

Compatible LED modules are also included in the product range

BJB supplies other components from the tried-and-tested BJB///OEM-Line modular system which are compatible with the 3×11 multi-lens system (e.g. off-the-shelf or customized LED boards). Combined with the 3×11 multi-lens arrays, for example, the LED module 92.333.-192, measuring 55 x 280 mm and also based on Zhaga Book 7, is suitable for many retail and industrial lighting applications. The power consumption of this light source is 11.5 Watts with an efficiency of 175 lm/W and a service life of 50,000 hours. The color temperature is 4,000 K, the color consistency ≤ 3 SDCM and the color rendering index CRI > 80. Up to six of these LED modules can be connected in parallel. As a result, the new 3 x 11 multi-lens arrays from BJB, combined with compatible LED modules, comprise another user-friendly component assembly which luminaire manufacturers can quickly and easily implement into professional lighting applications.

31.930 Optic Series Highlights:

–       Optical efficiency up to 96%
–       Dimensions: 286mm (length) x 61mm (width) x 8.5mm (height)
–       Available in 4 different light distributions: wide (90°), medium (68°), narrow (30°), double-asymmetric
–       High-precision components made of clear PMMA
–       Compatible with Zhaga Book 7 interface specification (L28W6)
–       Quick and easy installation (M4 screws)
–       Suitable for wide range of indoor lighting applications (IP20)

 

Visit www.bjb.com or click the image above for more product information.

And contact one of our LED sales experts today for samples!

 

About BJB:

BJB is a world-renowned, lighting technology solution provider with a longstanding reputation for quality and German engineering. Since 1867, BJB has been a leader in the lighting industry and now pioneers solid-state lighting technology world-wide. BJB manufactures LED lighting solutions for components, optics and automation to meet the needs of today’s lighting OEMs. This year, BJB celebrates 150 years of growth, innovation and leadership in lighting!

BJB USA Contact:

BJB Electric, L.P.

6375 Alabama Highway

Ringgold, GA 30736 USA

Tel: +1 (706) 965-2526

E-mail: [email protected]

Web: www.BJB.com