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FL7730MY

Fairchild Semiconductor

Single-Stage Primary-Side-Regulation PWM Controller - Fairchild Semiconductor


FL7730MY
FL7730MY

PDF File FL7730MY PDF File



Description
FL7730MY — Single-Stage Primary-Side-Regulation PWM Controller for PFC and LED Dimmable Driving February 2012 FL7730MY Single-Stage Primary-Side-Regulation PWM Controller for PFC and LED Dimmable Driving Features  Compatible with Traditional TRIAC Control (No need to change existing lamp infrastructure: wall switch & wire)  Compatible with Non-Dimming Lamp Designs  Cost-Effective Solution without Input Bulk Capacitor and Feedback Circuitry  Power Factor Correction (PFC)  Accurate Constant-Current (CC) Control, Independent Online Voltage, Output Voltage, Magnetizing Inductance Variation  Line Voltage Compensation for CC Control  Linear Frequency Control for Better Efficiency and Simple Design  Open-LED Protection  Short-LED Protection  Cycle-by-Cycle Current Limiting  Over-Temperature Protection with Auto Restart  Low Startup Current: 20μA  Low Operating Current: 5mA  Frequency Hopping for Better EMI Performance  SOP-8 Package Available  Application Voltage Range: 80VAC ~ 308VAC Description This highly integrated PWM controller, FL7730MY, provides several features to enhance the performance of single-stage flyback converters.
The proprietary topology, TRUECURRENT™, enables the simplified circuit design for LED lighting applications.
TRIAC dimming is smoothly managed by dimming brightness control without flicker.
By using single-stage topology with primary-side regulation, an LED lighting board can be implemented with few external components and minimized cost.
It does not require an input bulk capacitor or feedback circuitry.
To implement good power factor and low total harmonic distortion, constant on-time control is utilized with an external capacitor connected to the COMI pin.
Precise constant-current control regulates accurate output current versus changes in input voltage and output voltage.
The operating frequency is proportionally changed by the output voltage to guarantee Discontinuous Conduction Mode (DCM) operation with higher efficiency...



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