FAN9611MX
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onsemi FAN9611MX

Manufacturer No:
FAN9611MX
Manufacturer:
onsemi
Package:
Tape & Reel (TR)
Description:
IC PFC CTRLR BCM 525KHZ 16SOIC
Delivery:
Payment:
iso14001
iso45001
iso9001
iso13485

Product Introduction

Overview

The FAN9611MX is a power factor correction (PFC) controller produced by onsemi, formerly known as Fairchild Semiconductor. This component is part of the FAN9611/12 family and is designed to operate in Boundary Conduction Mode (BCM). It controls two parallel-connected boost power stages, making it suitable for high-power applications that require efficient power factor correction. The FAN9611MX is housed in a 16-pin SOIC package and is surface mountable, facilitating easy integration into various power management systems.

Key Specifications

Mode BCM (Boundary Conduction Mode)
Switching Frequency - Max 630 kHz
Supply Current - Max 5.2 mA
Supply Voltage - Max 18 V
Power Dissipation 400 W
Operating Temperature Range -40°C to +125°C
Thermal Resistance 120°C/W
Storage Temperature Range -65°C to +150°C
Package Style SOIC-16
Mounting Method Surface Mount

Key Features

  • Interleaved dual BCM PFC control, enhancing efficiency and reducing harmonics.
  • Wide switching frequency range from 12.5 kHz to 630 kHz, allowing for flexible design options.
  • Low supply current of 5.2 mA, contributing to overall system power efficiency.
  • High operating temperature range of -40°C to +125°C, making it suitable for a variety of environments.
  • Compliance with EU RoHS regulations, ensuring environmental sustainability.

Applications

The FAN9611MX is ideal for high-power applications requiring efficient power factor correction, such as:

  • Power supplies for industrial and commercial equipment.
  • LED lighting systems.
  • Motor drives and control systems.
  • Renewable energy systems, including solar and wind power inverters.

Q & A

  1. What is the primary function of the FAN9611MX?

    The FAN9611MX is a power factor correction (PFC) controller designed to operate in Boundary Conduction Mode (BCM) for efficient power management.

  2. What is the maximum switching frequency of the FAN9611MX?

    The maximum switching frequency of the FAN9611MX is 630 kHz.

  3. What is the package type and mounting method of the FAN9611MX?

    The FAN9611MX is packaged in a 16-pin SOIC and is surface mountable.

  4. What is the operating temperature range of the FAN9611MX?

    The operating temperature range of the FAN9611MX is -40°C to +125°C.

  5. Is the FAN9611MX compliant with EU RoHS regulations?

    Yes, the FAN9611MX is compliant with EU RoHS regulations.

  6. What are some typical applications of the FAN9611MX?

    The FAN9611MX is used in power supplies, LED lighting systems, motor drives, and renewable energy systems.

  7. What is the maximum supply voltage for the FAN9611MX?

    The maximum supply voltage for the FAN9611MX is 18 V.

  8. What is the thermal resistance of the FAN9611MX?

    The thermal resistance of the FAN9611MX is 120°C/W.

  9. What is the storage temperature range for the FAN9611MX?

    The storage temperature range for the FAN9611MX is -65°C to +150°C.

  10. How many units are typically available in a reel for the FAN9611MX?

    A reel typically contains 2500 units of the FAN9611MX.

Product Attributes

Mode:Boundary Conduction (BCM)
Frequency - Switching:16.5kHz ~ 525kHz
Current - Startup:80 µA
Voltage - Supply:9V ~ 18V
Operating Temperature:-40°C ~ 125°C
Mounting Type:Surface Mount
Package / Case:16-SOIC (0.154", 3.90mm Width)
Supplier Device Package:16-SOIC
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In Stock

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Similar Products

Part Number FAN9611MX FAN9612MX
Manufacturer onsemi Fairchild Semiconductor
Product Status Active Obsolete
Mode Boundary Conduction (BCM) Boundary Conduction (BCM)
Frequency - Switching 16.5kHz ~ 525kHz 16.5kHz ~ 525kHz
Current - Startup 80 µA 80 µA
Voltage - Supply 9V ~ 18V 9V ~ 18V
Operating Temperature -40°C ~ 125°C -40°C ~ 125°C
Mounting Type Surface Mount Surface Mount
Package / Case 16-SOIC (0.154", 3.90mm Width) 16-SOIC (0.154", 3.90mm Width)
Supplier Device Package 16-SOIC 16-SOIC

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