FASTITE® 2000™: Secure LED Driver Assembly with Faster Cycles

Lighting sector trends to use lighter and thinner materials that represent a challenge for the assembly of the different components. A clear example is the joining of LED driver to thin sheet metal.

FASTITE® 2000™ screw allows a safer and more efficient assembly process.

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• +40% higher stripping torque resistance

• Boost quality and durability of the final luminaire

• Eliminate material scrap and assembly line rejects

• Significantly reduce production cycle times

•Assembly time decreases by 50%

How FASTITE® 2000™ Optimizes LED Driver Assembly in Seconds

Watch the assembly process live. The FASTITE® 2000™ screws forms its own thread in thin sheet metal, ensuring a secure connection and high stripping torque resistance without pre-tapping.

FASTITE® 2000™ screws can be manufactured with different head designs, recess, material, dimensions and coating configuration to fit your exact application requirements. 

We have a wide range of references in stock. For more information on references available check   FASTITE® 2000™.

Proven Performance in the Field

Download our engineering case studies to see how global lighting manufacturers optimize production lines and cut assembly costs with CELO.

FAQ's

Our application engineering team provides full technical assessment to customers worldwide. Find below the most frequently asked questions in the lighting sector.

In the lighting sector (as in other sectors) the problem of stripping in thin metal sheet is due to the short length of engagement and the difficulty in adjusting the tightening torque.

Our application engineers advise you with the solution that best suits your assembly conditions. 

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Yes, by choosing the suitable screw configuration we can ensure a safe and efficient assembly of your LED driver into thin metal sheet, while increasing the productivity of your assembly line.

Equally important is ensuring that the LED luminaire reaches the point of sale in optimal conditions, to guarantee the expected LED performance.