MC33FS6502NAE Allicdata Electronics
Allicdata Part #:

MC33FS6502NAE-ND

Manufacturer Part#:

MC33FS6502NAE

Price: $ 3.69
Product Category:

Integrated Circuits (ICs)

Manufacturer: NXP USA Inc
Short Description: SYSTEM BASIS CHIP DCDC 0.8A VCO
More Detail: PMIC 48-LQFP (7x7)
DataSheet: MC33FS6502NAE datasheetMC33FS6502NAE Datasheet/PDF
Quantity: 1000
250 +: $ 3.35223
Stock 1000Can Ship Immediately
$ 3.69
Specifications
Series: *
Packaging: Tray 
Part Status: Active
Mounting Type: Surface Mount
Package / Case: 48-LQFP Exposed Pad
Supplier Device Package: 48-LQFP (7x7)
Description

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MC33FS6502NAE is a high-performance integrated PMIC (power management integrated circuit) created to manage mixed-signal, low-power and digital applications. The Power Management Suite in this 23-pin device features advanced features such as fast start-up sequencing, sequencing of sleep mode, over-temperature and under-voltage protection, and flexibility of pulse width modulation (PWM) and external references. The MC33FS6502NAE is based on a three-stage step-down converter with fast outputs up to 2 MHz, allowing the device to be pushed to its limits while maintaining high efficiency and accuracy.

The MC33FS6502NAE features a wide range of switches, sites, regulators, and control logic. The three-stage step-down converter provides up to 2MHz switching speeds and loading capacities up to 1.2 A with selectable switching frequencies and current limiting. The device also has compatible synchronous rectifiers and adjustable pre-bias tracking for improved efficiency. Furthermore, MC33FS6502NAE also features smart power topologies such as phase-shift full-bridge, phase-shift half-bridge, and self-biasing as well as embedded protection functions such as over-temperature and under-voltage protection.

The MC33FS6502NAE can be used in a variety of applications; It is used to provide intelligent power management in many brands of mobile phones and computers, control stabilized micro-voltages and reduce switch current ripple on the connected load. In addition, its advanced features are suitable for applications in IoT and wearable devices where stability and fast beginning sequence must remain even if the voltage is disrupted. The MC33FS6502NAE also offers the flexibility to meet particular needs such as thermal and supply voltage detections and adjustable interface power. The device is also suitable for driving peripheral components such as LEDs, resistors, and capacitors.

The working principle of MC33FS6502NAE is based on Pulse Width Modulation (PWM), with a minimum duty cycle of 0%. This allows the device to offer frequencies up to 2MHz, and a wide range of operating options from low to high-voltage input power sources. With pulse width modulation, the output voltage of the device is continuously adjusted by modulating the width of the pulses. Through PWM, the MC33FS6502NAE is able to provide a stable and accurate output voltage for different applications. Furthermore, the device also features external output voltage range and predetermined overwind virtual current, allowing voltage and current output settings to be finely adjusted.

In conclusion, MC33FS6502NAE is an integrated PMIC (power management integrated circuit) that offers an advanced suite of features that provide excellent performance in a variety of applications. It is based on a three-stage step-down converter with fast outputs up to 2 MHz, allowing the device to be pushed to its limits while maintaining high efficiency and accuracy. The device also features smart power topologies such as phase-shift full-bridge, phase-shift half-bridge, and self-biasing as well as embedded protection functions such as over-temperature and under-voltage protection. It is suitable for use with mobile phones and computers, as well as for controlling stabilized micro-voltages and reducing switch current ripple on the connected load. The working principle of the MC33FS6502NAE is based on PWM technology, offering a wide range of operating options from low to high-voltage input power sources.

The specific data is subject to PDF, and the above content is for reference

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