Parameters |
Factory Lead Time |
1 Week |
Package / Case |
1152-BBGA, FCBGA |
Operating Temperature |
0°C~85°C TJ |
Packaging |
Tray |
Series |
Arria V SX |
Part Status |
Active |
Moisture Sensitivity Level (MSL) |
3 (168 Hours) |
HTS Code |
8542.39.00.01 |
Base Part Number |
5ASXFB5 |
Number of I/O |
MCU - 208, FPGA - 385 |
Speed |
700MHz |
RAM Size |
64KB |
Core Processor |
Dual ARM® Cortex®-A9 MPCore™ with CoreSight™ |
Peripherals |
DMA, POR, WDT |
Connectivity |
EBI/EMI, Ethernet, I2C, MMC/SD/SDIO, SPI, UART/USART, USB OTG |
Architecture |
MCU, FPGA |
Programmable Logic Type |
FIELD PROGRAMMABLE GATE ARRAY |
Primary Attributes |
FPGA - 462K Logic Elements |
RoHS Status |
RoHS Compliant |
This SoC is built on Dual ARM? Cortex?-A9 MPCore? with CoreSight? core processor(s).
Based on the core processor(s) Dual ARM? Cortex?-A9 MPCore? with CoreSight?, this SoC has been developed.It has been assigned a package 1152-BBGA, FCBGA by its manufacturer for this system on a chip.A 64KB RAM SoC chip provides reliable performance to users.This SoC design employs the MCU, FPGA technique for its internal architecture.Featured system on chip SoCs of the Arria V SX series.The average operating temps for this SoC meaning should be 0°C~85°C TJ.This SoC security combines FPGA - 462K Logic Elements, an important feature to keep in mind.In the state-of-the-art Tray package, this SoC system on a chip is housed.As a whole, this SoC part includes MCU - 208, FPGA - 385 I/Os.A re-configurable FIELD PROGRAMMABLE GATE ARRAY can be used for a variety of designing purposes.Search 5ASXFB5 for system on chips with similar specs and purposes.
Dual ARM? Cortex?-A9 MPCore? with CoreSight? processor.
64KB RAM.
Built on MCU, FPGA.
There are a lot of Intel
5ASXFB5G6F35C6N System On Chip (SoC) applications.
- Flow Sensors
- Central alarm system
- Self-aware system-on-chip (SoC)
- Industrial Pressure
- Automotive gateway
- Communication network-on-Chip (cNoC)
- Temperature Sensors
- Cyber security for critical applications in the aerospace
- Medical
- Digital Signal Processing