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Home > products > ICs Integrated Circuit > 10AX090R2F40E2LG Intel / Altera

10AX090R2F40E2LG Intel / Altera

manufacturer:
Intel
Description:
10AX090R2F40E2LG Intel / Altera FBGA-1517
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
66 Transceiver
SMD/SMT
FBGA-1517
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
21
Subcategory: Programmable Logic ICs
Tradename: Arria 10 FPGA
Part # Aliases: 966305

Here is an English introduction for the Microchip CPLD 10AX090R2F40E2LG:

10AX090R2F40E2LG

The 10AX090R2F40E2LG is a high-performance CPLD from Microchip designed for implementing extremely complex embedded systems requiring advanced multicore processing, real-time connectivity and security in industrial environments.

Key Features:

  • Over 90,000 equivalent logic elements for very large designs
  • 40 high-speed differential I/O pins up to 3.3V supporting multi-standards
  • Dual MicroBlazeTM multicore processors for real-time control
  • Integrated memory and DSP blocks for each processor
  • Extended operating temperature from -40°C to 150°C
  • Embedded security enclaves optimized for encryption

Well-suited for industrial automation platforms, critical infrastructure systems and transportation control applications that demand the highest processing capabilities for complex multicore functionality, robust real-time I/O and unrivaled long-term resilience.

With its unique multicore architecture, versatile high-speed connectivity and powerful embedded resources optimized for industrial control, the 10AX090R2F40E2LG delivers unprecedented performance for the largest embedded system designs.

Ideal for implementation of the most sophisticated industrial embedded applications requiring multicore real-time processing in extreme environments.

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