Manufacturer Part Number
AGL1000V5-FG484I
Manufacturer
Microchip Technology
Introduction
The AGL1000V5-FG484I is an advanced FPGA from Microchip Technology's IGLOO series tailored for high-performance and power-efficient applications.
Product Features and Performance
Contains 24,576 logic elements/cells
Features 147,456 total RAM bits
Provides 300 I/O ports
Supports 1 million gates capacity
Surface mount technology
Optimal operating temperature range from -40°C to 85°C
Supplied in a 484-pin BGA package
Product Advantages
High logic density for complex functions
Abundant RAM for efficient data handling
Ample I/O ports for versatile connectivity
Low-voltage operation minimizes power consumption
Robust thermal performance for reliability in varied environments
Key Technical Parameters
Number of Logic Elements/Cells: 24,576
Total RAM Bits: 147,456
Number of I/O: 300
Number of Gates: 1,000,000
Voltage Supply: 1.425V to 1.575V
Quality and Safety Features
Built under strict compliance with industry standards for quality and reliability
Features over/under-voltage protection
Temperature safeguarding with operational bounds at -40°C to 85°C
Compatibility
Compatible with various design and development tools provided by Microchip Technology
FPGA programmability enables adaptation to multiple applications and platforms.
Application Areas
Telecommunications
Automotive systems
Data processing
Industrial controls and automation
Consumer electronics
Product Lifecycle
Currently active product status
No near-future discontinuation anticipated
Options available for upgrades or replacements with newer models within the IGLOO series or alternative Microchip FPGA families
Several Key Reasons to Choose This Product
High capacity and functionality optimize performance for demanding applications
Power-efficient operation reduces energy costs and environmental impact
Extensive support and documentation available from Microchip Technology
Strong compatibility and programmability cater to a broad range of uses
Reliable operation under extreme conditions assures longevity and durability in critical deployments