10AX090S2F45E2LG Intel / Altera
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: | 965444 |
Here is an English introduction for the Microchip CPLD 10AX090S2F45E2LG:
10AX090S2F45E2LG
The 10AX090S2F45E2LG is a high-performance industrial-grade CPLD from Microchip suitable for implementing extremely complex embedded systems requiring advanced dual-core adaptive multiprocessing, robust real-time connectivity and reliable long-term operation over wide temperatures.
Key Features:
- Over 90,000 logic elements for the largest dual-core adaptive multiprocessing designs
- 45 high-speed differential I/Os up to 3.3V supporting multi-standards
- Dual adaptive multiprocessing MicroBlazeTM cores with local memory
- Comprehensive peripherals including DSP, memory and communications
- Extended temperature range from -40°C to 125°C
- Embedded security enclaves optimized for encryption and hashing
Well-suited for industrial automation platforms, transportation gateways and infrastructure systems demanding leading-edge dual-core processing power, flexible real-time I/O and long-term resilience.
With its advanced dual-core architecture and full-featured peripherals optimized for industrial applications, the 10AX090S2F45E2LG delivers unrivaled control capabilities.
Ideal for implementing the most sophisticated dual-core adaptive multiprocessing systems requiring secure real-time control.

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