MAX14746BEWA+T Allicdata Electronics
Allicdata Part #:

MAX14746BEWA+T-ND

Manufacturer Part#:

MAX14746BEWA+T

Price: $ 1.13
Product Category:

Integrated Circuits (ICs)

Manufacturer: Maxim Integrated
Short Description: USB DETECTION WITH SMART POWER S
More Detail: Charger IC Lithium-Ion 25-WLP
DataSheet: MAX14746BEWA+T datasheetMAX14746BEWA+T Datasheet/PDF
Quantity: 1000
2500 +: $ 1.02752
Stock 1000Can Ship Immediately
$ 1.13
Specifications
Series: Smart Power Selector™
Packaging: Tape & Reel (TR) 
Part Status: Active
Battery Chemistry: Lithium-Ion
Number of Cells: 1
Current - Charging: --
Programmable Features: --
Fault Protection: Over Temperature, Over Voltage, Reverse Current
Charge Current - Max: --
Battery Pack Voltage: --
Voltage - Supply (Max): 5.5V
Interface: I²C, USB
Operating Temperature: -40°C ~ 85°C (TA)
Package / Case: 25-WFBGA, WLBGA
Supplier Device Package: 25-WLP
Description

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The MAX14746BEWA+T chip is a power management integrated circuit belonging to the category of PMIC - Battery Chargers. This device was developed to help extend the autonomy of battery-powered devices. Increasing the autonomy of a battery-powered device has numerous advantages, such as helping extend its overall lifespan, allowing the device to be used much more efficiently, and helping it achieve a higher level of performance. Thus, the MAX14746BEWA+T chip has become an increasingly popular choice among power management professionals.

The MAX14746BEWA+T chip is designed to be used in a variety of applications, including portable electronics, home appliances, vehicles, and medical equipment. This device is designed to provide efficient charging rate that is optimized for the specific battery pack being used. It also boasts scalability, allowing it to support different types of battery packs and applications. The chip also features power path management which helps to provide a regulated charging current with adequate current sensing, efficient voltage step-down, and fast response time. Finally, the MAX14746BEWA+T chip provides a small form factor and thermal performance due to its embedded MOSFETs.

The MAX14746BEWA+T chip includes two distinct modes that are optimized for different types of applications. First, the Mode Pin mode puts control of charge termination in the hands of the user, allowing for easy use in applications involving medium or large size battery packs. In this mode, the chip senses the charge termination point and stops charging when reached. Second, the MAX14746BEWA+T chip uses a Cycle Detector mode in which charging of the battery pack is controlled using a timeout routine. This allows for better accuracy in charging and helps reduce battery pack temperature.

The MAX14746BEWA+T chip\'s working principle is based on two main concepts, the battery fuel gauge and the power path management. The first concept focuses on providing an accurate reading of the remaining energy stored in the battery pack. This is done by incorporating advanced algorithms that take a variety of factors into account, such as the current battery state, battery temperature, and the number of charge cycles. With this information, the chip can accurately read the level of energy stored in the battery and adjust the charge rate accordingly.

The second concept focuses on managing the flow of current between the battery and the input power source. Through power path management, the chip can regulate the voltage and current going into and out of the battery, helping to provide an efficient and safe charging process. Additionally, the chip can provide protection against over-voltage and over-current to ensure the safety of the device being charged. Finally, the device also incorporates an advanced monitoring algorithm to provide an accurate estimation of battery health throughout the charging process.

In summary, the MAX14746BEWA+T chip is a power management integrated circuit that belongs to the category of PMIC - Battery Chargers. This device has been designed to extend the autonomy of battery-powered devices and supports a variety of applications. It boasts features such as scalability, power path management, two distinct modes of operation, and advanced algorithms. By incorporating these features and working principles, the MAX14746BEWA+T chip is able to provide efficient and safe charging of battery packs that is tailored to the specific application.

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

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