IXA611M6 Allicdata Electronics
Allicdata Part #:

IXA611M6-ND

Manufacturer Part#:

IXA611M6

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: IXYS
Short Description: IC DRIVER HALF BRDG 600MA 16-MLP
More Detail: Half-Bridge Gate Driver IC Non-Inverting 16-MLP (7...
DataSheet: IXA611M6 datasheetIXA611M6 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Current - Peak Output (Source, Sink): 600mA, 600mA
Base Part Number: IX*611
Supplier Device Package: 16-MLP (7x6)
Package / Case: 16-VDFN Exposed Pad
Mounting Type: Surface Mount
Operating Temperature: -40°C ~ 150°C (TJ)
Rise / Fall Time (Typ): 23ns, 22ns
High Side Voltage - Max (Bootstrap): 650V
Input Type: Non-Inverting
Series: --
Logic Voltage - VIL, VIH: 6V, 7V
Voltage - Supply: 10 V ~ 35 V
Gate Type: IGBT, N-Channel MOSFET
Number of Drivers: 2
Channel Type: Independent
Driven Configuration: Half-Bridge
Part Status: Obsolete
Packaging: Tape & Reel (TR) 
Description

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Power management integrated circuits (PMICs) are used to supply power from certain sources to different components of a system. Gate drivers are one type of PMICs which are used to control the power switches used in a system. And the IXA611M6 is a new type of gate driver which plays a very important role in power management.

The IXA611M6 is a genetic level gate driver for FETs and IGBTs, specifically designed for high-frequency applications. It is capable of driving up to 6 FETs channels, with a 350 mA max drive current and a maximum operating frequency of 80 MHz. By utilizing intelligent power management techniques, it offers a thorough power-saving solution.

In terms of connectivity, the IXA611M6 has a 20-pin SSOP package and can be cabled with any 20-pin connector. It also features an integrated drive current monitor, and is compliant with the latest I2C-bus standard. It is a highly flexible and efficient solution and can be applied in many different applications.

The IXA611M6 is especially suitable for high speed and large power applications, including the control of inverse duty cycle, and the PFC controllers of solar inverters and switching power supplies for three-phase motors and servomotors. This gate driver can also be used in various communication systems, such as FET-oriented power amplifier for digital radio communication, wireless base stations and wireless infrastructure systems, wireless networks and communications equipment. In all these applications, the IXA611M6 ensures stable and reliable performance.

The working principle of the IXA611M6 is quite simple. The design of the gate driver includes an input module, a switch control module and a current monitoring module. The input module consists of an analog signal conditioning circuit, an output counter and a multiplexer. The switch control module comprises FETs, IGBTs and opto-couplers, which are used for generating outputs of various frequencies and levels. The current monitoring module monitors the voltage across the switched output and provides feedback to the control module.

The power switch, FET or IGBT, is controlled by an external logic circuit, which is implemented by the input module. When an external logic circuit is activated, the input module generates an output pulse, which is then sent to the switch control module. The switch control module then drives the power switch, triggering it to switch on or off. The current monitoring module monitors the voltage across the switch output, and sends feedback to the control module. This feedback is used to control the power switch, and if any current abnormality is detected, it will be sent to the external logic circuit, thus ensuring safe and efficient operation.

In conclusion, the IXA611M6 gate driver is a useful and efficient power management tool. It offers a reliable and efficient solution for controlling FETs and IGBTs in high-frequency applications. It can be used in a wide range of applications, including solar inverters, switching power supplies, communication systems and wireless base stations. The working principle is fairly straightforward and provides excellent feedback from the power switches.

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

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