10AS016E3F29I2LG

10AS016E3F29I2LG

$1,197.18
  • Description:IC SOC CORTEX-A9 1.5GHZ 780FBGA
  • Series:Arria 10 SX

SKU:4a389eb4fcd6 Category: Brand:

  
  • Quantity
    • -
    • +
  •    
ChipApex WhatsApp

Consult the customer manager about the wholesale price.

consultation hotline:86-132-6715-2157

email:chipapexlimited@gmail.com
Contact the product manager for consultation. One-stop consultation is available.


Do you want a lower wholesale price? Please send us your inquiry and we will reply immediately.

*
*
*
*
Submitting!
Submission successful!
Submission failed!
Email error!
Phone number error!

Product Detailed Parameters

  • Description:IC SOC CORTEX-A9 1.5GHZ 780FBGA
  • Series:Arria 10 SX
  • Mfr:Altera
  • Package:Tray
  • Architecture:MCU, FPGA
  • Core Processor:Dual ARM® Cortex®-A9 MPCore™ with CoreSight™
  • Flash Size:-
  • RAM Size:256KB
  • Peripherals:DMA, POR, WDT
  • Connectivity:EBI/EMI, Ethernet, I2C, MMC/SD/SDIO, SPI, UART/USART, USB OTG
  • Speed:1.5GHz
  • Primary Attributes:FPGA - 160K Logic Elements
  • Operating Temperature:-40°C ~ 100°C (TJ)
  • Grade:-
  • Qualification:-
  • Package / Case:780-BBGA, FCBGA
  • Supplier Device Package:780-FBGA, FC (29x29)

Download product information

10AS016E3F29I2LG

Buying Guide
Summary

Altera 10AS016E3F29I2LG is a component in System On Chip (SoC) category typically evaluated for fit, operating limits, and supportability in production. Key specs include Description (IC SOC CORTEX-A9 1.5GHZ 780FBGA), Series (Arria 10 SX), Packaging (Tray), Temperature (-40°C ~ 100°C (TJ)), and Package/case (780-BBGA, FCBGA).

Selection Notes
  • For 10AS016E3F29I2LG, confirm the operating temperature range (-40°C ~ 100°C (TJ)) meets your deployment conditions.
  • Confirm Architecture (MCU, FPGA) is suitable for your use case and operating conditions.
  • Confirm the package/case (780-BBGA, FCBGA) and any exposed-pad requirements for your assembly process.
Alternates & Substitutions
  • In System On Chip (SoC), confirm that alternates preserve startup states and fault behavior so system behavior does not change quietly.
  • If substitutions are likely, write down the non-negotiables and re-check them when the supply chain changes, not after field failures.
  • Then confirm the operating envelope (temperature -40°C ~ 100°C (TJ)) with margin for transients and derating.
  • Confirm compliance/qualification needs (for example RoHS/REACH or grade) before approving a second source for production.
FAQ

What operating temperature range is listed for 10AS016E3F29I2LG?
-40°C ~ 100°C (TJ)

What Architecture is listed for 10AS016E3F29I2LG?
MCU, FPGA

What packaging is listed for 10AS016E3F29I2LG?
Tray

What package/case is listed for 10AS016E3F29I2LG?
780-BBGA, FCBGA

Application Scenarios

When sourcing Altera 10AS016E3F29I2LG for System On Chip (SoC), engineers typically focus on de-risking integration and keeping validation repeatable. Well-matched compute devices reduce software complexity by providing the right hardware acceleration and I/O integration. In real deployments, they execute firmware or algorithms and coordinate peripherals, communications, and security features that define product capabilities. In automotive gateways, compute devices survive thermal cycling and support diagnostics and safety monitoring. In real deployments, across IoT devices, secure boot and low-power modes enable years-long deployments in outdoor enclosures exposed to humidity and temperature swings. In medical devices, deterministic processing and audit logging support regulated workflows and long-term maintainability. At scale, the winner is often the option that is easiest to qualify and least sensitive to small layout and process differences. Across production builds, repeatability is what protects you from lot variation and environmental stress.

Compatibility Advice
  • In practice, verify clocking and startup behavior so the system does not enter undefined states during cold start and power cycling with the final enclosure and cabling.
  • To avoid late surprises, confirm boot strapping, reset sequencing, and programming access so bring-up and recovery are deterministic across builds. This keeps acceptance criteria measurable and repeatable.
Project Fit
  • Usually not a good fit when integrating Altera 10AS016E3F29I2LG for System On Chip (SoC), boot and recovery behavior depends on sequencing or strapping that cannot be controlled across builds, because validation would rely on assumptions that cannot be re-tested later.
10AS016E3F29I2LG10AS016E3F29I2LG
$1,197.18
Buy Now