Manufacturer Part Number
AT25320B-XPDGV-T
Manufacturer
microchip-technology
Introduction
The AT25320B-XPDGV-T is a high-performance, low-power, serial-interface EEPROM memory chip from Microchip Technology. It offers 32Kbit of non-volatile memory organized as 4K x 8 bits, accessible via an SPI interface. This device is designed to meet the demanding requirements of automotive and industrial applications.
Product Features and Performance
32Kbit of non-volatile EEPROM memory
4K x 8 bit memory organization
SPI serial interface with up to 5 MHz clock frequency
5ms typical write cycle time for word and page
5V to 5.5V supply voltage range
Wide operating temperature range of -40°C to 125°C
Automotive-grade qualification to AEC-Q100
Product Advantages
High-reliability and long data retention for automotive and industrial applications
Low-power operation for energy-efficient designs
Fast serial interface for efficient data transfer
Small 8-TSSOP package for space-constrained applications
Key Reasons to Choose This Product
Proven reliability and performance for mission-critical applications
Comprehensive automotive-grade qualification ensures robust operation
Flexible voltage range and temperature support for versatile design
Small footprint enables compact product integration
Quality and Safety Features
Automotive-grade qualification to AEC-Q100
Robust design for high reliability and data retention
Built-in protection mechanisms for safe operation
Compatibility
The AT25320B-XPDGV-T is pin-compatible with other members of the Microchip AT25320 EEPROM family, allowing for easy design migration and interchangeability.
Application Areas
Automotive electronics
Industrial control systems
Embedded systems
Metering and monitoring devices
Consumer electronics
Product Lifecycle
The AT25320B-XPDGV-T is an active product in Microchip's portfolio. There are no plans for discontinuation at this time. Customers are advised to contact our website's sales team for the latest product availability and any potential equivalent or alternative models.