L9963E-TR

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L9963E-TR

+BOM

AUTOMOTIVE CHIP FOR BATTERY MANA

  • 제조업체ST마이크로일렉트로닉스(주)

  • 제조업체 부품 #L9963E-TR

  • 재고6850

365 1일 품질 보증

7*24 영업 시간 서비스 보증

90-판매 후 1일 보증

정품 보증

사양

속성 가치
PartStatus Active
Function Battery Monitor
BatteryChemistry Lithium Ion
NumberofCells 4 ~ 14
FaultProtection Over Current
Interface SPI
Grade Automotive
Qualification AEC-Q100
MountingType Surface Mount
Package/Case 64-TQFP Exposed Pad
SupplierDevicePackage 64-TQFP-EP (10x10)
BaseProductNumber L9963

개요

Description

The L9963E-TR is an advanced battery management system (BMS) integrated circuit designed by STMicroelectronics. It is primarily used in automotive and industrial applications to manage lithium-ion battery packs, ensuring efficient, safe, and reliable operation. The chip supports various battery configurations and chemistries, making it versatile for electric vehicles and energy storage systems.
Key features include high-precision cell voltage measurement, cell balancing, and temperature monitoring, which are essential for maintaining battery health and performance. The L9963E-TR also provides robust communication interfaces, such as SPI and ISO26262 ASIL-D compliance, to ensure secure and reliable data transmission within battery management systems. Its low power consumption and high integration level make it suitable for both high and low-voltage battery systems.
With the L9963E-TR, manufacturers can extend battery life, improve safety, and enhance the overall efficiency of energy storage solutions. It is a vital component for developing next-generation electric mobility and renewable energy applications.

Equivalent

The L9963E-TR chip is a battery management system (BMS) IC. Equivalent products include the LTC6811 from Analog Devices, and the MAX17853 from Maxim Integrated, which also serve similar functions in multicell battery stack monitoring and management. It's crucial to compare specifications like cell count, voltage ranges, and communication interfaces to ensure compatibility with your application. Always check the datasheets to confirm these alternatives meet your specific requirements.

Features

The L9963E-TR is a battery management system (BMS) IC designed for automotive applications, particularly in electric and hybrid vehicles. Key features include:
1. Cell Monitoring: Supports up to 14 battery cells with high accuracy in voltage measurement, ensuring optimal battery performance and safety.

2. Balancing: Provides cell balancing capabilities to maintain uniform cell voltage levels across the battery pack, enhancing longevity and efficiency.
3. Temperature Sensing: Includes multiple temperature sensing inputs for monitoring battery temperature, critical for preventing overheating and ensuring operational safety.
4. Diagnostics: Offers advanced diagnostic features to detect and report faults, aiding in maintenance and troubleshooting.
5. Communication Interface: Equipped with an SPI interface for seamless integration and communication with other vehicle systems, facilitating efficient data exchange.
6. Robust Design: Built to withstand the challenging conditions of automotive environments, ensuring reliable operation over a wide temperature range.
7. Low Power Consumption: Designed for minimal power usage, contributing to overall vehicle efficiency and extended battery life.
These features collectively make the L9963E-TR a comprehensive solution for managing battery systems in modern automotive applications.

Pinout

The L9963E-TR is a battery management system (BMS) IC designed by STMicroelectronics for automotive applications. It comes in a VFQFPN (Very Thin Quad Flat Package, No Lead) package with 64 pins. The IC is primarily used for monitoring and balancing battery cells in electric vehicles and other energy storage systems.
Key functions of the L9963E-TR include:
1. Cell Monitoring: It can monitor up to 14 series-connected battery cells, providing precise voltage measurements.
2. Cell Balancing: Supports passive cell balancing to ensure all cells are charged equally, extending battery life and performance.
3. Temperature Sensing: Interfaces with external temperature sensors to monitor battery temperature.
4. Communication: Equipped with an SPI (Serial Peripheral Interface) for communication with a microcontroller.
5. Fault Detection: Includes features for fault diagnosis and protection, such as overvoltage, undervoltage, and overtemperature protection.
The L9963E-TR is designed to enhance the safety, efficiency, and reliability of battery management in electric vehicles and other high-performance applications.

Manufacturer

The L9963E-TR is manufactured by STMicroelectronics. STMicroelectronics is a global semiconductor company that designs, develops, manufactures, and markets a wide range of semiconductor products. The company serves a variety of sectors, including automotive, industrial, personal electronics, and communications equipment. STMicroelectronics is known for its expertise in analog and mixed-signal circuits, microcontrollers, sensors, power management, and other semiconductor technologies. The company operates research and development facilities and manufacturing plants worldwide, positioning itself as a key player in the semiconductor industry.

Application

The L9963E-TR is a battery management system (BMS) IC designed for automotive and industrial applications. It is used in electric and hybrid vehicles to monitor and manage battery packs, ensuring their safe operation and enhancing their performance. The device can measure cell voltages, temperatures, and currents, and it provides balancing and protection functionalities. It is suitable for high-voltage battery stacks and can be used in applications like electric cars, trucks, buses, and energy storage systems. Additionally, it supports communication protocols such as SPI and ISO 26262, making it reliable for safety-critical applications.

Package

The L9963E-TR is typically housed in a TQFP (Thin Quad Flat Pack) package, which is a type of surface-mount integrated circuit package. This packaging is known for its compact form and is commonly used in automotive and industrial applications. For the most accurate information, refer to the manufacturer's datasheet.