AT97SC3205T-G3M4C-00 Secure Microcontroller – 32K EEPROM, TQFP Package

  • The AT97SC3205T-G3M4C-00 offers secure authentication for sensitive applications.
  • It features advanced cryptographic capabilities, enhancing data security in transactions.
  • This model comes in a compact package, allowing efficient use of board space.
  • Ideal for secure payment systems, it helps protect user information during transactions.
  • Designed for reliability, it ensures consistent performance in various environments.
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产品上方询盘

AT97SC3205T-G3M4C-00 Overview

The AT97SC3205T-G3M4C-00 is a versatile secure microcontroller designed for embedded applications requiring high levels of security and reliability. It supports advanced cryptographic algorithms, making it suitable for applications in secure transactions and identity verification. With its robust architecture, the device ensures efficient performance and integration into various electronic systems, enhancing security without compromising on processing speed. For more details, visit IC Manufacturer.

AT97SC3205T-G3M4C-00 Key Features

  • Secure microcontroller architecture that enhances system integrity and protects against unauthorized access.
  • Support for advanced cryptographic algorithms, enabling secure communication and data storage.
  • Efficient power management that optimizes performance while minimizing energy consumption.
  • Robust design for reliability in various environmental conditions, ensuring long-term operational stability.

AT97SC3205T-G3M4C-00 Technical Specifications

ParameterValue
Processor TypeSecure Microcontroller
Memory Size32 KB
Flash Memory16 KB
EEPROM4 KB
Operating Voltage1.8V to 5.5V
Communication InterfacesI2C, SPI, UART
Temperature Range-40??C to +85??C
Package TypeQFN

AT97SC3205T-G3M4C-00 Advantages vs Typical Alternatives

This secure microcontroller offers superior performance compared to typical alternatives, particularly in terms of security features and energy efficiency. Its robust architecture and advanced cryptographic support provide enhanced protection for sensitive data, making it a reliable choice for secure applications.

Typical Applications

  • Secure payment systems where data integrity and encryption are critical for transaction security. This microcontroller ensures that payment information is safeguarded against unauthorized access and fraud.
  • Identity verification systems that require secure storage of biometric data and credentials.
  • Access control systems for secure entry to facilities, utilizing cryptographic methods to authenticate users.
  • Smart cards and electronic passports, where high security and reliability are paramount for personal identification.

AT97SC3205T-G3M4C-00 Brand Info

The AT97SC3205T-G3M4C-00 is part of a renowned line of secure microcontrollers designed for applications that demand high levels of security and performance. This product is recognized for its robust design and advanced features, which cater to the growing need for secure electronic solutions in various industries.

FAQ

What is the operating voltage range of the AT97SC3205T-G3M4C-00?

The operating voltage range for the microcontroller is between 1.8V to 5.5V, allowing for flexibility in different application environments.

What communication interfaces does this microcontroller support?

This device supports several communication interfaces, including I2C, SPI, and UART, enabling seamless integration into various electronic systems.

What is the temperature range of the AT97SC3205T-G3M4C-00?

The microcontroller operates effectively within a temperature range of -40??C to +85??C, making it suitable for harsh environments.

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产品中间询盘

How much memory does the AT97SC3205T-G3M4C-00 have?

This model features a total memory size of 32 KB, including 16 KB of flash memory and 4 KB of EEPROM, providing ample storage for secure applications.

In what applications can the AT97SC3205T-G3M4C-00 be used?

It is ideal for secure payment systems, identity verification, access control systems, and smart cards, where security and reliability are critical.

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