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IW1692:IIC 2007 Paper - Final

Features
Introduction
A new digital control methodology has resulted in greater simplicity and design flexibility in low power SMPS topologies which conventional analog methods would find difficult if not impossible to achieve. By combining this new control scheme into an off-line type of adapter or charger application, it could greatly reduce the number of external components as well as enhance supply performance in many respects.

The controller has built-in digital control algorithms to quickly and smoothly transition between different operating modes for reduced switching losses during no-load operation. The full-load efficiency is enhanced by the use of so-called “emulated primary current mode control” to eliminate the need for a primary sensing resistor. The full-load efficiency is also enhanced in cellular charger applications by the elimination of secondary-side constant current sense circuitry. Its unique digital control algorithm allows fast pulse-by-pulse analysis of the switching waveform and provides accurate voltage & constant-current regulation from the primary-side without the need for an opto-coupler, secondary feedback and reference circuits required by traditional analog solutions.

This innovative technology is ideal for balancing new regulatory requirements for green-mode operation with more practical design considerations such as lowest possible cost, smallest size and highest efficiency.

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IW1692:Flyer - Digital Power'07

Features
. Allows cycle by cycle signal analysis and processing
. Enables best in class primary feedback regulation
. Adapts in real time
. Automatically increases controller gain when transient detected
. Automatically decreases controller gain at light load
. Identifies faults and reacts appropriately
. Enables low cost solutions
. Reduces BOM by eliminating secondary feedback components

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IW1689:iW1689 MK-4005-NR, Product Data Sheet

Features
Primary-side feedback eliminates Opto-isolators and simplifies design
Multi-mode operation for highest overall efficiency
±4%output voltage regulation
No external compensation components required
Complies with CEC/EPA/IEC no load power consumption and average efficiency regulations
Built-in secondary constant –current control with primary-side feedback
Low start-up current(8 μA typical)
Built-in soft start
Built –in short circuit protection
AC line under/over voltage and output over voltage protection
Fixed 40 kHz switching frequency
Available in a space-saving SOT-23 package

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