onsemi FAN7930BMX

FAN7930BMX Series 22 V 3 mA Critical Conduction Mode PFC Controller - SOIC-8
Obsolete

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Baixe as fichas de dados e a documentação do fabricante para onsemi FAN7930BMX.

IHS

Datasheet22 páginas15 anos atrás

onsemi

Fairchild Semiconductor

Augswan

Farnell

Cadeia de suprimentos

Country of OriginPhilippines
Export Control Classification Number (ECCN) CodeEAR99
Harmonized Tariff Schedule (HTS) Code8542.31.00.01
Introduction Date2010-09-30
Lifecycle StatusObsolete (Last Updated: 5 years ago)
Manufacturer Lifecycle StatusOBSOLETE (Last Updated: 5 years ago)

Descrições

Descrições de onsemi FAN7930BMX fornecidas pelos seus distribuidores.

FAN7930BMX Series 22 V 3 mA Critical Conduction Mode PFC Controller - SOIC-8
Tape & Reel (TR) FAN7930 LAST SHIPMENTS (Last Updated: 4days ago) e4 power factor correction device 13V~20V 300kHz 120muA 1.5mm
CONTROLLER, PFC, CCM, 0.5/-0.8A, 8SOP; UVLO:12V; Supply Voltage Range:13V to 20V; Startup Current:120µA; Operating Supply Current:2.5mA; Digital IC Case Style:SOIC; No. of Pins:8; Frequency:300kHz; Operating Temperature Range:-40°C to +125°C; MSL:MSL 1 - Unlimited
The FAN7930B is an active power factor correction (PFC) controller for boost PFC applications that operate in critical conduction mode (CRM). It uses a voltagemode PWM that compares an internal ramp signal with the error amplifier output to generate a MOSFET turn-off signal. Because the voltage-mode CRM PFC controller does not need rectified AC line voltage information, it saves the power loss of an input voltage sensing network necessary for a current-mode CRM PFC controller.FAN7930B provides over-voltage protection, openfeedback protection, over-current protection, inputvoltage- absent detection, and under-voltage lockout protection. The additional OVP pin can be used to shut down the boost power stage when output voltage exceeds OVP level due to the resistors that are connected at INV pin are damaged. The FAN7930B can be disabled if the INV pin voltage is lower than 0.45V and the operating current decreases to a very low level. Using a new variable on-time control method, THD is lower than the conventional CRM boost PFC ICs.

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