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10AX090S4F45E3LG Intel / Altera

manufacturer:
Intel
Description:
10AX090S4F45E3LG Intel / Altera FBGA-1932
Category:
ICs Integrated Circuit
Specifications
Introduction
Product Attribute Attribute Value
Intel
Product Category: FPGA - Field Programmable Gate Array
Shipping Restrictions:
This product may require additional documentation to export from the United States.
RoHS: Details
Arria 10 GX 900
900000 LE
339620 ALM
47.32 Mbit
768 I/O
870 mV
980 mV
0 C
+ 100 C
17.4 Gb/s
72 Transceiver
SMD/SMT
FBGA-1932
Tray
Brand: Intel / Altera
Maximum Operating Frequency: 1.5 GHz
Moisture Sensitive: Yes
Operating Supply Voltage: 950 mV
Product Type: FPGA - Field Programmable Gate Array
12
Subcategory: Programmable Logic ICs
Tradename: Arria 10 FPGA
Part # Aliases: 966662

Here is an English introduction for the Microchip CPLD 10AX090S4F45E3LG:

10AX090S4F45E3LG

The 10AX090S4F45E3LG is a high-performance industrial-grade CPLD from Microchip suitable for implementing the most complex embedded systems requiring advanced quadruple-core adaptive multiprocessing, flexible high-speed connectivity and reliable long-term operation over a wide temperature range.

Key Features:

  • Over 90,000 logic elements for the largest quad-core adaptive multiprocessing designs
  • 45 high-speed differential I/Os up to 3.3V supporting multi-standards
  • Quadruple adaptive multiprocessing MicroBlazeTM cores with local memory
  • Comprehensive integrated peripherals including DSP, memory and communications
  • Extended temperature range from -40°C to 125°C
  • Embedded security modules for encryption, hashing and authentication

Well-suited for industrial automation platforms, transportation systems and critical infrastructure where the highest quad-core processing power, robust real-time I/O and security are imperative.

With its cutting-edge quad-core architecture and full-featured resources optimized for industrial control, the 10AX090S4F45E3LG delivers unprecedented performance and reliability.

Ideal for implementing the most sophisticated quad-core adaptive multiprocessing systems requiring secure real-time connectivity.

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