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FAN9612M Datasheet (PDF) - Fairchild Semiconductor

FAN9612M Datasheet PDF - Fairchild Semiconductor
Part # FAN9612M
Download  FAN9612M Download

File Size   1103.58 Kbytes
Page   37 Pages
Manufacturer  FAIRCHILD [Fairchild Semiconductor]
Direct Link  http://www.fairchildsemi.com
Logo FAIRCHILD - Fairchild Semiconductor
Description Interleaved Dual BCM PFC Controller

FAN9612M Datasheet (PDF)

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FAN9612M Datasheet PDF - Fairchild Semiconductor

Part # FAN9612M
Download  FAN9612M Click to download

File Size   1103.58 Kbytes
Page   37 Pages
Manufacturer  FAIRCHILD [Fairchild Semiconductor]
Direct Link  http://www.fairchildsemi.com
Logo FAIRCHILD - Fairchild Semiconductor
Description Interleaved Dual BCM PFC Controller

FAN9612M Datasheet (HTML) - Fairchild Semiconductor

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FAN9612M Product details

Description
The FAN9611/12 family of interleaved dual Boundary Conduction-Mode (BCM) Power-Factor-Correction (PFC) controllers operate two parallel-connected boost power trains 180° out of phase. Interleaving extends the maximum practical power level of the control technique from about 300W to greater than 800W. Unlike the continuous conduction mode (CCM) technique often used at higher power levels, BCM offers inherent zero current switching of the boost diodes, which permits the use of less expensive diodes without sacrificing efficiency. Furthermore, the input and output filters can be smaller due to ripple current cancellation and effective doubling of the switching frequency.
The converters operate with variable frequency, which is a function of the load and the instantaneous input / output voltages. The switching frequency is limited between 16.5kHz and 525kHz. The Pulse Width Modulators (PWM) implement voltage-mode control with input voltage feedforward. When configured for PFC applications, the slow voltage regulation loop results in constant on-time operation within a line cycle. This PWM method, combined with the BCM operation of the boost converters, provides automatic power factor correction.
The controllers offers bias UVLO (10V / 7.5V for FAN9611 and 12.5V / 7.5V for FAN9612), input brownout, over-current, open-feedback, output over voltage, and redundant latching over-voltage protections. Furthermore, the converters’ output power is limited independently of the input RMS voltage. Synchronization between the power stages is maintained under all operating conditions.

Features
■ Sync-Lock™ Interleaving Technology for 180° Out-of-Phase Synchronization Under All Conditions
■ Automatic Phase Disable at Light Load
■ Dead-Phase Detect Protection
■ 2.0A Sink, 1.0A Source, High-Current Gate Drivers
■ High Power Factor, Low Total Harmonic Distortion
■ Voltage-Mode Control with (VIN)2 Feedforward
■ Closed-Loop Soft-Start with User-Programmable Soft-Start Time for Reduced Overshoot
■ Minimum Restart Frequency to Avoid Audible Noise
■ Maximum Switching Frequency Clamp
■ Brownout Protection with Soft Recovery
■ Non-Latching OVP on FB Pin and Latching Second Level Protection on OVP Pin
■ Open-Feedback Protection
■ Power-Limit and Current Protection for Each Phase
■ Low Startup Current of 80µA Typical
■ Works with DC and 50Hz to 400Hz AC Inputs

Applications
■ 100-1000W AC-DC Power Supplies
■ Large Screen LCD-TV, PDP-TV, RP-TV Power
■ High-Efficiency Desktop and Server Power Supplies
■ Networking and Telecom Power Supplies
■ Solar Micro Inverters




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About Fairchild Semiconductor


Fairchild Semiconductor was a pioneering semiconductor company that was founded in the late 1950s.
The company was known for its innovation in the development of the first commercial transistor and for its contributions to the advancement of the integrated circuit technology.
Fairchild became a leading supplier of power semiconductors, analog and mixed-signal integrated circuits, and other semiconductor products.
The company was acquired by ON Semiconductor in 2016 and its products and technologies continue to be developed and sold under the ON Semiconductor brand.

*This information is for general informational purposes only, we will not be liable for any loss or damage caused by the above information.




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