onsemi FAN4802MY

Power Factor Controller With Post Regulator, Voltage-Mode, 268kHz Switching Freq-Max, PDSO16
$ 0.863
Obsolete
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onsemi

Augswan

Fairchild Semiconductor

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Chaîne d'approvisionnement

Country of OriginTaiwan
Export Control Classification Number (ECCN) CodeEAR99
Harmonized Tariff Schedule (HTS) Code8542.39.00.60
Introduction Date2009-01-20
Lifecycle StatusObsolete (Last Updated: 4 months ago)

Pièces détachées

Buck Regulator, Switching, Adjustable Output Voltage, 0.5 A Adjustable 1.23 V to 37 V
Power Factor Correction Controller 0.02mA 65kHz 16-Pin SOIC T/R
Buck Regulator, Switching, Adjustable Output Voltage, 0.5 A
Texas InstrumentsLM3524DMX/NOPB
Voltage Mode PWM Controller 60V 200mA 350kHz 16-Pin SOIC
Texas InstrumentsUC3842ADW
30-V, 1A, 500KHz current mode PWM controller with 16V/10V UVLO 100% duty cycle, 0°C to 70°C 16-SOIC 0 to 70
Texas InstrumentsUC2842ADW
Boost,Buck,Flyback,Forward No Up~500KHz Transistor Driver 1 SOIC-16

Descriptions

Descriptions de onsemi FAN4802MY fournies par ses distributeurs.

Power Factor Controller With Post Regulator, Voltage-Mode, 268kHz Switching Freq-Max, PDSO16
CCM PFC + PWM Combination Controller
Tape & Reel (TR) FAN4802 8542.31.00.01 SINGLE power factor correction device 11V~22V 64kHz 30muA 1.75mm
IC PFC CTR AV CURR 64KHZ 16SOIC
POWER FACTOR CONTROLLER W/POST R
IC PFC CTRLR AVERAGE CURR 16SOP
The highly integrated FAN4800A/C and FAN4801/02/02L are specially designed for power supplies that consist of boost PFC and PWM. They require very few external components to achieve versatile protections / compensation. They are available in 16-pin DIP and SOP packages. The PWM can be used in either current or voltage mode. In voltage mode, feed-forward from the PFC output bus can reduce the secondary output ripple. Compared with older productions, ML4800 and FAN4800, FAN4800A/C and FAN4801/02/02L have lower operation current that save power consumption in external devices. FAN4800A/C and FAN4801/02/2L have accurate 49.9% maximum duty of PWM that makes the hold-up time longer. Brownout protection and PFC soft-start functions are not in ML4800 and FAN4800. To evaluate FAN4800A/C, FAN4801/02/02L for replacing existing FAN4800 and ML4800 boards, five things must be done before the fine-tuning procedure: 1. Change RAC resister from the old value to a higher resister: between 6MΩto 8MΩ. 2. Change RT/CT pin from the existing values to RT=6.8KΩand CT=1000pF to have fPFC=64KHz, fPWM=64KHz. 3. VRMS pin needs to be 1.224V at VIN=85 VAC for universal input application from line input from 85VAC to 270 VAC. Both poles for the Vrms of FAN4801/02/02L don’t need to substantially slower than FAN4800; about 5 to 10 times. 4. At full load, the average VEA needs to ~4.5V and the ripple on the VEA needs to be less than 400mV. 5. Soft-Start pin, the soft-start current has been reduced to half from the FAN4800 capacitor.

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