Description The TOP209/210 implements all functions necessary for an off-line switched mode control system: high voltage N-channel power MOSFET with controlled turn-on gate driver, voltage mode PWM controller with integrated oscillator, high voltage start-up bias circuit, bandgap derived reference, bias shunt regulator/error amplifier for loop compensation and fault protection circuitry. Compared to discrete MOSFET and controller or self oscillating (RCC) switching converter solutions, a TOPSwitch integrated circuit can reduce total cost, component count, size, weight and at the same time increase efficiency and system reliability. The TOP209/210 are intended for 100/110/230 VAC off-line Power Supply applications in the 0 to 8 W (0 to 5 W universal) range. Product Highlights Cost Effective Switcher for Low Power Applications • Replaces linear power supplies • Replaces discrete switcher and 20 to 50 components – cuts cost, increases reliability • Stand-by power supplies for Green or energy efficient products such as personal computers, monitors, UPS, copiers, fax machines, etc. • Housekeeping or "keep-alive" power supply applications such as TV, appliances, industrial control and personal computers • Meets Blue Angel low power stand-by specification • Controlled MOSFET turn-on reduces EMI and EMI filter costs • 80% smaller and lighter compared to linear supply • 50% smaller compared to discrete switcher Over 80% Efficiency in Flyback Topology • Built-in start-up and current limit reduce DC losses • Low capacitance 700 V MOSFET cuts AC losses • CMOS controller/gate driver consumes only 6 mW • 70% maximum duty cycle minimizes conduction losses Simplifies Design – Reduces Time to Market • Supported by reference design boards • Integrated PWM Controller and 700 V MOSFET in industry standard eight pin DIP package • Only one external capacitor needed for compensation, bypass and start-up/auto-restart functions • Easily interfaces with both opto and primary feedback System Level Fault Protection Features • Auto-restart and cycle by cycle current limiting functions handle both primary and secondary faults • On-chip thermal shutdown with hysteresis protects the entire system against overload
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