IX6611T Allicdata Electronics
Allicdata Part #:

IX6611T-ND

Manufacturer Part#:

IX6611T

Price: $ 4.81
Product Category:

Integrated Circuits (ICs)

Manufacturer: IXYS
Short Description: IC MOSF DRIVER
More Detail: Overvoltage, Undervoltage Protection PMIC 16-SOIC
DataSheet: IX6611T datasheetIX6611T Datasheet/PDF
Quantity: 199
1 +: $ 4.37220
10 +: $ 3.90600
25 +: $ 3.51540
100 +: $ 3.20292
250 +: $ 2.89044
500 +: $ 2.59358
1000 +: $ 2.18736
2500 +: $ 2.07799
Stock 199Can Ship Immediately
$ 4.81
Specifications
Series: --
Packaging: Tube 
Part Status: Active
Applications: Overvoltage, Undervoltage Protection
Current - Supply: 3mA
Voltage - Supply: 13 V ~ 25 V
Operating Temperature: -40°C ~ 125°C
Mounting Type: Surface Mount
Package / Case: 16-SOIC (0.154", 3.90mm Width) Exposed Pad
Supplier Device Package: 16-SOIC
Description

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Power Management Integrated Circuit (PMIC) is a system-level protection IC often found in integrated circuits. It is designed to provide multiple functionalities in a single package. PMICs can be used in industrial, automotive, consumer, medical and other applications. One of the most commonly used PMICs is the IX6611T, a family of intelligent, high voltage integrated dc-dc extensions.

The IX6611T is a high voltage integrated DC-DC extension IC which is meant to provide designers with a safe, efficient, high voltage solution that is flexible enough to meet the most demanding applications. It works on the buck-boost principle, where the output voltage is regulated by controlling the input current. It uses a voltage regulator module (VRM) which is a regulatory device that converts a voltage from one range to another. This allows the IX6611T to have a wide range of output voltages and current ratings, making it ideal for many applications.

The most common application for the IX6611T is in automotive electronics, where it is used as an alternative to batteries. By using the thick-film technology, the IX6611T is capable of supporting high voltage, high current requirements and has a low standby current. In addition, it can support advanced circuit protection technology, allowing it to be used for automotive systems such as power management, lighting, audio and accessory power.

The IX6611T also finds applications in industrial and computing applications. For example, it can be used to provide flexible electrical power supplies for server and storage applications as well as in embedded systems that require high power density. It can also be used in applications require high voltage and high current, including charging and powering portable devices, such as laptops and cell phones, and powering automotive electronics.

In terms of its working principle, the IX6611T is a microcontroller-driven system which monitors the input current and adjusts the output parameter accordingly. It uses a buck-boost topology, which converts the input voltage from one range to another. This allows the IX6611T to provide power efficiently and meet the requirements of today’s applications. It also allows the IX6611T to provide a wide range of output voltage and current ratings, making it suitable for a variety of applications.

The IX6611T can also provide advanced protection features, such as overload protection, short circuit protection, over temperature protection, and overvoltage protection. These features ensure that the IX6611T will be protected against any damage and reduce power losses in the system. Additionally, it provides a comprehensive diagnostic feature, which enables the designer to quickly identify any potential problems.

In conclusion, the IX6611T is a specialized PMIC which is designed to provide efficient, flexible and safe power management solutions. It finds applications in many different industries and devices, both for industrial or consumer applications. It is a versatile device, with a wide range of output voltages and current ratings, making it suitable for a wide range of applications. It is also highly reliable, with advanced protection features ensuring that the system is protected from any potential damage.

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

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