10AS057K3F35E2SG 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 SX 570 | |
570000 LE | |
217080 ALM | |
36000 kbit | |
696 I/O | |
870 mV | |
980 mV | |
0 C | |
+ 100 C | |
17.4 Gb/s | |
36 Transceiver | |
SMD/SMT | |
FBGA-1152 | |
Tray | |
Brand: | Intel / Altera |
Maximum Operating Frequency: | 1.5 GHz |
Moisture Sensitive: | Yes |
Operating Supply Voltage: | 950 mV |
Product Type: | SoC FPGA |
24 | |
Subcategory: | Programmable Logic ICs |
Tradename: | Arria 10 SoC |
Part # Aliases: | 965375 |
Here is an English introduction for the Microchip CPLD 10AS057K3F35E2SG:
10AS057K3F35E2SG
The 10AS057K3F35E2SG is a high-performance industrial CPLD from Microchip suitable for implementing sophisticated embedded systems requiring advanced secure triple-core multiprocessing, robust connectivity and reliable operation in harsh industrial environments.
Key Features:
- Over 5,700 Adaptive Logic Modules (ALMs) for large triple-core designs
- 35 high-speed differential I/Os up to 3.3V supporting multi-standards
- Triple integrated PiccoloTM processor cores with local memory
- Integrated DSP, memory and communication peripherals
- Extended temperature range from -40°C to 150°C
- Hardened security enclaves optimized for advanced encryption
Well-suited for factory automation, oil/gas control systems and other applications requiring leading-edge secure triple-core processing power, reliable high-speed I/O and certification to stringent safety and environmental standards.
With its powerful triple-core architecture and comprehensive security feature set, the 10AS057K3F35E2SG delivers unparalleled control capabilities under the harshest conditions with the highest levels of functional safety and cybersecurity assurance.
Ideal for developing and deploying the most sophisticated safety-certified embedded systems with demanding connectivity needs.

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