IXS839BQ2T/R Allicdata Electronics
Allicdata Part #:

IXS839BQ2T/R-ND

Manufacturer Part#:

IXS839BQ2T/R

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: IXYS
Short Description: IC MOSFET DRIVER SYNC BUCK 10QFN
More Detail: Half-Bridge Gate Driver IC Non-Inverting 10-QFN (3...
DataSheet: IXS839BQ2T/R datasheetIXS839BQ2T/R Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Current - Peak Output (Source, Sink): 2A, 4A
Base Part Number: IXS839
Supplier Device Package: 10-QFN (3x3)
Package / Case: 10-VFDFN Exposed Pad
Mounting Type: Surface Mount
Operating Temperature: -40°C ~ 125°C (TJ)
Rise / Fall Time (Typ): 20ns, 15ns
High Side Voltage - Max (Bootstrap): 24V
Input Type: Non-Inverting
Series: --
Logic Voltage - VIL, VIH: 0.8V, 2V
Voltage - Supply: 4.5 V ~ 5.5 V
Gate Type: N-Channel MOSFET
Number of Drivers: 2
Channel Type: Synchronous
Driven Configuration: Half-Bridge
Part Status: Obsolete
Packaging: Tape & Reel (TR) 
Description

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The PMIC - Gate Drivers catagory comprises of electronic components that act as an interface between logic level controllers and higher current power switching devices. Generally, they can regulate the voltage that is provided to the power switch, and also offer protection against reverse current, ensure high parallel currents be accessed, and more. IXYS839BQ2T/R gate driver is one such PMIC element. It specifically deals with low side power MOSFETs and IGBTs.

The IXYS839BQ2T/R gate driver is designed for a number of applications. This includes motor controls, battery chargers and converters, white goods, industrial motor drives, high power battery-powered appliances, as well as other high power AC/DC power supplies. The drivers features an 8-pin DIP package and drives up to 8 Amps of peak current in low side applications with two output channels and two enable control inputs, which can be used to inverter two MOSFETs or IGBTs in half bridge configuration. The on and off times of the outputs are very short for strong driving of the MOSFETs. In addition, the outputs are isolated and avoid cross talk, preventing any mixed logic levels that may lead to malfunctions. The on-resistance offered by the IXYS839BQ2T/R gate driver is also very low, meaning that less power and fewer components are needed to drive a given load.

The IXYS839BQ2T/R gate driver offers a number of attractive features, including an adjustable output voltage range of 8V to 16V. This allows the users to easily adjust the output voltage output to suit their respective applications. This allows the user to adjust the behavior of the circuit to match the required speed, load and regulation requirements. In addition, it is equipped with an adjustable charge/discharge current that allows the user to protect the battery from overcurrent, ensuring safe operation and long life of the battery. This wide range of features makes the IXYS839BQ2T/R Gate Driver a great choice for applications requiring effective power switch management.

In terms of its working principle, the IXYS839BQ2T/R gate driver works by amplifying the input signal from the digital controller. In order to perform its power switch managing task, the gate driver receives an input signal, amplifies it and passes it onto the power switch. The output voltage of the gate driver is set to match the drain to source voltage of the power switch. The output is then used to control the turn-on and turn-off times of the power switch, thus ensuring maximum efficiency of the circuit.

To sum up, the IXYS839BQ2T/R gate driver is a versatile and robust PMIC element that can be used in a variety of applications such as motor controls, battery chargers and converters, white goods, industrial motor drives, high power battery-powered appliances and other high-power AC/DC power supplies. It offers adjustable output voltage range from 8V to16 V, adjustable charge/discharge current and isolation between output channels to prevent cross talk. Additionally, its short on and off times combined with a low on-resistance result in it consuming less power and requiring fewer components to drive a given load.

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

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