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Breakthrough Solution Targets Energy-saving Fluorescent Lighting

(Product News, 19 May 2011 )

STMicroelectronics (ST) has unveiled a new ballast controller capable of reducing design time and costs. The new IC will fulfill the requirements of energy-saving regulations such as ENERGY STAR and will significantly contribute to optimization usage of available energy, dramatically reducing the CO2 emission.

Lighting accounts for up to 19 percent of the overall electricity consumption in the world, according to figures from Energy Information Administration (EIA) - Official Energy Statistics from the U.S. Government. Private and public organizations are looking towards incentives, standards and regulations for improved energy efficiency. In this scenario, high-frequency electronic ballasts are rapidly replacing electromagnetic ballasts due to higher efficiency, no visible flickering, and low weight due to the use of electronic components.

ST’s L6520 controller is the first device to give the choice of using low-cost bipolar power switches without compromising reliability, ensuring high-energy efficiency and integrating important features on-chip to save design time and cost, while reducing Bill-of-Materials costs.

The IC can be used with a wide range of lamp topologies, power ratings and has an extended temperature range from -25°C up to 85°C. Hence manufacturers can reduce design and procurement costs for products covering a range of performance and price points.

The L6520 embeds a digital control core, integrating all functions and protection, saving as much as 30 percent of the external components required with alternative controllers. Integrated features include lamp end-of-life, and due to ST’s proprietary current control circuit, the IC is protected against over-current and over-voltage, choke saturation and hard switching. Accurate and programmable pre-heating improves lamp life, while BJTs storage time compensation avoids the risk of cross-conduction and makes the application more robust.

STMicroelectronics

 
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