10AS048E2F29E2SG - Arria 10 SX 480K FPGA | Intel | Embedded Systems
MPN: 10AS048E2F29E2SG ✓ Active| Qty | Unit Price | Extended |
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| 1 | $0 | $0.00 |
| 10 | $0 | $0.00 |
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| 500 | $0 | $0.00 |
| 1,000 | $0 | $0.00 |
Drop-in alternatives for 10AS048E2F29E2SG — same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.
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Request Alternatives10AS048E2F29E2SG Maximum Ratings & Electrical Characteristics
| Product Type | SoC FPGA |
| Device Family | Arria 10 SX |
| Logic Elements | 480,000 |
| Listing Frequency | 1.5 GHz |
| Processor Cores | 2 |
| Processor | ARM Cortex-A9 MPCore |
| Debug and Trace Technology | CoreSight |
| Package | 780-FBGA, FC |
| Package Dimensions | 29 mm x 29 mm |
| Terminal Count | 780 |
| Terminal Form | Ball |
| Package Code | BGA |
| Package Shape | Square |
10AS048E2F29E2SG square Pin Configuration Guide
Complete pinout information for 10AS048E2F29E2SG (square package). This digital IC includes GPIO, communication interfaces (UART, SPI, I2C), and power pins. Refer to the manufacturer datasheet for alternate pin functions and configuration options. Essential for embedded system design and PCB layout.
No detailed pinout data available for 10AS048E2F29E2SG.
Refer to the datasheet for full pin configuration.
Safe Operating Area (SOA) & Thermal Characteristics
No official SOA curve available for this digital IC. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.
Typical Applications
10AS048E2F29E2SG is suitable for 6 applications: Industrial Automation Controllers, Communications Infrastructure, Medical Imaging and Diagnostics, Test and Measurement Equipment, Aerospace and Defense Electronics, High-Performance Embedded Processing.
Industrial Automation Controllers
10AS048E2F29E2SG fits industrial automation controllers that need both deterministic programmable logic and an embedded software processor. Its verified 480,000 logic elements can support parallel motion-control sequencing, sensor-data acquisition, protocol conversion, and machine-state logic. The dual ARM Cortex-A9 MPCore can manage communication stacks, diagnostics, HMI interfaces, and supervisory control. CoreSight technology supports embedded debug and trace workflows. Designers should use the device only after confirming industrial temperature, I/O, memory-interface, and transceiver requirements from Intel documentation; the supplied data does not state those values.
Recommended
Communications Infrastructure
10AS048E2F29E2SG is relevant to communications equipment that combines high-throughput hardware datapaths with embedded control. The verified 480,000 logic elements can implement framing, packet filtering, traffic shaping, protocol bridges, and deterministic line-card functions. The dual ARM Cortex-A9 subsystem can handle networking software, management tasks, and telemetry. The 1.5 GHz listing frequency describes the product listing, not a universal guarantee for every design. Confirm supported transceiver count, I/O standards, memory interfaces, and power limits from the manufacturer datasheet before selecting this FPGA for a specific communications standard.
Recommended
Medical Imaging and Diagnostics
10AS048E2F29E2SG can support medical imaging and diagnostic systems that process several data channels in parallel while requiring a processor for application control. Its verified 480,000 logic elements provide a resource base for acquisition pipelines, image preprocessing, buffering control, and deterministic interfaces. The dual ARM Cortex-A9 MPCore can run device-management software and coordinate data movement. Medical designs additionally require validated operating temperature, reliability documentation, safety analysis, and controlled component sourcing; none of those qualifications is established by the supplied distributor snippets. Engineers must confirm all regulatory and electrical requirements independently.
Recommended
Test and Measurement Equipment
10AS048E2F29E2SG suits test and measurement platforms where acquisition, timing, triggering, and signal conditioning benefit from parallel hardware execution. The verified 480,000 logic elements can be used to implement channel control, digital filtering, waveform analysis, and deterministic capture paths. The dual ARM Cortex-A9 processor subsystem can manage calibration, user interfaces, communications, and data export. CoreSight technology is useful for tracing software-controlled acquisition tasks. The supplied data does not identify supported I/O standards, analog interfaces, memory capacity, or transceiver resources, so interface selection must rely on the complete Intel device documentation.
Recommended
Aerospace and Defense Electronics
10AS048E2F29E2SG may be evaluated for aerospace and defense electronics that need parallel processing, reconfigurable hardware, and an embedded ARM processor. The verified 480,000 logic elements support sensor aggregation, signal conditioning, communications interfaces, and deterministic control, while the dual ARM Cortex-A9 subsystem can run system-management software. The 780-ball FC package supports a high-density board implementation. The supplied data does not establish radiation tolerance, military qualification, temperature grade, or export-control status. Those requirements must be verified with Intel and the relevant program authority before any aerospace or defense design commitment.
Recommended
High-Performance Embedded Processing
10AS048E2F29E2SG is a strong candidate for embedded systems that partition work between FPGA logic and an ARM operating environment. The verified 480,000 logic elements can accelerate repetitive data processing, interfaces, and control algorithms, while the dual ARM Cortex-A9 MPCore can run application software, protocol stacks, and diagnostics. CoreSight technology supports embedded software observability. The 1.5 GHz listing frequency and 780-ball FC package provide a starting point for architecture selection, but not a complete power or performance budget. Validate configuration mode, memory interface, I/O, thermal design, and board-level signal integrity against official documentation.
Recommended
Recommended Products Summary
Engineering reference data for 10AS048E2F29E2SG — comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product |
|---|---|
| Brand | Intel |
| Package | 780-FBGA, FC, 29 mm x 29 mm |
| Logic Elements | 480,000 |
| Listing Frequency | 1.5 GHz |
| Processor | Dual ARM Cortex-A9 MPCore |
| CoreSight Technology | Yes |
| Terminal Count | 780 |
| Product Type | Arria 10 SX SoC FPGA |
| Verified Drop-In Alternatives | Not available in supplied data |
Key Differentiators
- Verified SoC FPGA architecture (vs 10AS048E2F29E2LG)
- Large verified programmable-logic resource (vs 10AS048E2F29E1HG)
- High-density package context (vs 10AS048E2F29E2LG)
Design Notes
The verified package is a 780-ball FC BGA measuring 29 mm by 29 mm. Before layout, obtain the official Intel land-pattern and pin-assignment documentation. Use the manufacturer-recommended via and escape strategy rather than extrapolating from package dimensions. Plan power-plane continuity, ground-return paths, differential-pair geometry, and test access around the complete ball map. Because the supplied data contains no individual ball assignments, a 780-entry pinout must not be synthesized from distributor text.
Power-rail limits, sequencing, current, and decoupling requirements for 10AS048E2F29E2SG are not present in the supplied data. Use the official Arria 10 SX hardware documentation to identify every required rail, regulator tolerance, transient limit, and startup relationship. Estimate board power only after selecting the actual logic utilization, clock rates, I/O activity, transceiver configuration, and processor workload; no thermal or regulator calculation should be presented as a verified device rating.
For high-speed clock, memory, and transceiver interfaces, preserve continuous reference planes and follow the Intel board-design guidelines. Confirm supported I/O standards, differential-pair routing rules, impedance targets, via transitions, and receiver equalization from the manufacturer documentation. The 1.5 GHz value in the verified listing is a device listing frequency, not a substitute for interface-specific timing analysis. Complete IBIS or device-model simulation with the final FPGA configuration and PCB stack-up.
Do not treat the 10AS048E2F29E2SG search snippets as a complete datasheet. The supplied data confirms the product family, 480,000 logic elements, dual ARM Cortex-A9 MPCore, CoreSight, 1.5 GHz listing frequency, and 780-FBGA FC package, but omits electrical limits, temperature, I/O count, transceivers, memory, and pin assignments. Validate those fields and the exact ordering-code suffix with Intel before schematic release, procurement approval, or lifecycle planning.
Compliance Information
Compliance declarations, qualification status, and material attributes are not present in the supplied verified data. Confirm them from Intel's current product documentation and declarations.