NCP81080DR2G Allicdata Electronics
Allicdata Part #:

NCP81080DR2GOSTR-ND

Manufacturer Part#:

NCP81080DR2G

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: ON Semiconductor
Short Description: LOW-COST HIGH VOLTAGE DUA
More Detail: Gate Driver IC 8-SOIC
DataSheet: NCP81080DR2G datasheetNCP81080DR2G Datasheet/PDF
Quantity: 1000
Stock 1000Can Ship Immediately
Specifications
Series: *
Packaging: Tape & Reel (TR) 
Part Status: Active
Mounting Type: Surface Mount
Package / Case: 8-SOIC (0.154", 3.90mm Width)
Supplier Device Package: 8-SOIC
Description

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The NCP81080DR2G is a dedicated gate driver for power management integrated circuits (PMICs). It is part of the family of advanced gate drivers developed by ON Semiconductor to provide a more efficient and cost effective solution for driving high current gate drivers.NCP81080DR2G gate drivers are specifically designed to drive up to 20A of gate current. They integrate many of the features required in PMICs including embedded adjustable deadtime, fault protection features, and the ability to manage multiple shunt devices. The NCP81080DR2G delivers an industry-leading solution for powering PMICs.The NCP81080DR2G gate drivers utilize a wide input voltage range of 2.7-18V for running high current loads. This makes them ideal for use in a variety of devices such as Power Control Units (PCUs), FET drivers, and Gate Drivers. Additionally, these gate drivers integrate features such as inrush current limiting, variable deadtimes, over-temperature protection, current limiting and temperature compensation, allowing for optimal performance of the driver. The NCP81080DR2G gate drivers also offer advanced fault protection and diagnostics to ensure resilient operation in the event of a fault.The NCP81080DR2G gate driver is designed to provide a bridge between the high current required to drive PMICs and the low voltage signals required to control them. The NCP81080DR2G has a high side low side lowside/highside mode. Lowside mode is used when the load requires high current in both directions, while high side mode is used when only one direction of current flow is needed. The NCP81080DR2G also has adjustable dead time and integrated shunt device support for efficient power control.The NCP81080DR2G gate drivers provide an excellent solution for powering PMIC-based applications. This gate driver series is ideal for applications such as motor control, power supplies, and general power management. The features of the NCP81080DR2G enable highly efficient and reliable operation, making them an ideal choice for driving high current levels and powering PMICs.The NCP81080DR2G gate drivers employ advanced gate driver core technologies for improved system performance. The NCP81080DR2G is a high voltage gate driver designed with low impedance and low parasitic inductance to enable maximum efficiency in PMIC-based applications. The NCP81080DR2G also incorporates adaptive circuitry, which allows the power MOSFETs to be driven at lower voltages while providing the same current drive capability. This feature helps to reduce power consumption and increase system efficiency.The NCP81080DR2G offers a comprehensive set of features to improve the reliability and performance of PMIC-based designs. The adjustable dead time and fault protection features, coupled with the low voltage support, are key to ensuring a robust operation. Additionally, the NCP81080DR2G includes an intelligent routing and layout structure to reduce EMI, making it an ideal choice for applications requiring EMI shielding.Overall, the NCP81080DR2G is an excellent solution for powering PMIC-based applications. The exceptional features and performance capabilities of this gate driver make it an ideal choice for designers looking for a reliable and efficient power management solution. This advanced gate driver technology provides increased system efficiency, improved reliability, and greater protection from EMI, making it an ideal choice for PMIC designs.

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

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