Intel

10AX115N3F40I2SG - Arria 10 GX FPGA, 1.15M LE, 1517-FCBGA | Intel

MPN: 10AX115N3F40I2SG ✓ Active
In Stock Ships in 1-3 business days
0.9 V Vdss 1517-BBGA, FCBGA (F40) Package 68,857,856 bits (68.86 Mbits) Memory
From $7100 USD / Unit
MOQ: 1 |
Price updated: 2026-09-05
Volume Pricing
Qty Unit Price Extended
1 $8450 $8,450.00
10 $8090 $80,900.00
100 $7750 $775,000.00
500 $7420 $3,710,000.00
1,000 $7100 $7,100,000.00
ℹ️ All prices are in USD

Drop-in alternatives for 10AX115N3F40I2SG — same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

Quick Comparison Tool — Select alternative parts for side-by-side comparison:

10AX115N3F40I2LG

✅ Drop-In ⚠️ 参数待验证
Intel
📦 1517-FCBGA (F40)
Arria 10 GX · 1,150,000 · 68,857,856 · 600 · 1517-ball FCBGA (F40) · 20nm TSMC · -40C to +100C (industrial) · Up to 17.4 Gbps

✓ In Stock

$8100 / Unit

View Datasheet →

10AX115N3F40E2SG

✅ Drop-In ⚠️ 参数待验证
Intel
📦 1517-FCBGA (F40)
Arria 10 GX · 1,150,000 · TSMC 20 nm · 0.9 V · 68,857,856 bits (approximately 68.85 Mbit) · 600 · 17.4 Gbps · Yes (DDR4 support)

✓ In Stock

$5450 / Unit

View Datasheet →

10AX115N2F40I2SG

✅ Drop-In ⚠️ 参数待验证
Intel
📦 1517-FCBGA (F40)
Arria 10 GX · 1,150,000 · 68,857,856 · 427,200 · 1,708,800 · 600 · GX (up to 14.1 Gbps) · [DATA_NEEDED: transceiver count exact value]

✓ In Stock

$3750 / Unit

View Datasheet →

10AX090N3F40I2SG

✅ Drop-In ⚠️ 参数待验证
Intel
📦 1517-FCBGA (F40)
Arria 10 GX · 900,000 · 59,234,304 · 339,620 · 600 · 1517-BBGA, FCBGA (F40) · 20 nm · 0.9 V

✓ In Stock

$2250 / Unit

View Datasheet →

10AX115N3F40E2LG

✅ Drop-In ⚠️ 参数待验证
Altera
📦 1517-FCBGA (F40)
Arria 10 GX · 10AX115 · 1,150,000 · 68,857,856 · 600 · 1517-BBGA, FCBGA (F40, 40 mm, 1.0 mm pitch) · -2 · N (nominal)

✓ In Stock

$2125 / Unit

View Datasheet →

10AX115N2F40I2LG

✅ Drop-In ⚠️ 参数待验证
Altera
📦 1517-FCBGA (F40)
Arria 10 GX · 1,150,000 · 68,857,856 bits · 600 · 1517-ball FCBGA · 2 · Industrial · 20 nm

✓ In Stock

$7965.99 / Unit

View Datasheet →

10AX090N3F40I2LG

✅ Drop-In ⚠️ 参数待验证
Intel
📦 1517-FCBGA (F40)
Arria 10 GX · Intel (formerly Altera) · 900,000 · 59,234,304 · 600 · 1517-BBGA, FCBGA · Surface Mount · Industrial (-40C to +100C)

✓ In Stock

$9800 / Unit

View Datasheet →

10AX115N3F40I2SG Maximum Ratings & Electrical Characteristics

Series Arria 10 GX
Logic Elements 1,150,000
Embedded Memory 68,857,856 bits (68.86 Mbits)
User I/Os 600
DSP Blocks 1,518 (18x19 multipliers)
Transceivers 24 channels
Max Transceiver Data Rate 17.4 Gbps
Process Technology 20 nm TSMC
Core Voltage 0.9 V
Package 1517-BBGA, FCBGA (F40)
Operating Temperature Grade Industrial
Mounting Type Surface Mount (BGA)
RoHS Status Compliant
Configuration Memory SRAM-based (volatile, requires external config device)
Hard Memory Controllers DDR4 up to 1600 Mbps

10AX115N3F40I2SG 1517-bbga, fcbga (f40) Pin Configuration Guide

Complete pinout information for 10AX115N3F40I2SG (1517-bbga, fcbga (f40) 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.

1517-bbga, fcbga (f40) package pinout diagram for 10AX115N3F40I2SG

No detailed pinout data available for 10AX115N3F40I2SG.

Refer to the datasheet for full pin configuration.

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for 10AX115N3F40I2SG Drain-to-Source Voltage (Vds) Drain Current (Id)

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

10AX115N3F40I2SG is suitable for 6 applications: 4K UHD Broadcast Video Processing, Wireless Baseband and CPRI Backhaul, PCIe Gen3 x8 Acceleration Cards, Test and Measurement Instrumentation, Military Radar and Electronic Warfare Prototyping, High-Definition Medical Imaging.

📺

4K UHD Broadcast Video Processing

The Intel 10AX115N3F40I2SG fits 4K UHD broadcast video processing because its 1,150,000 logic elements and 1,518 DSP blocks deliver the parallel arithmetic throughput needed for multi-stream HEVC/H.264 encode and decode. The 24 transceivers at 17.4 Gbps aggregate 12G-SDI and SMPTE 2022-6/2110 IP video streams into a single FPGA fabric. Its 600 user I/Os handle parallel HDMI 2.0, DisplayPort 1.4, and SDI interfaces without external bridge chips. Industrial temperature grade supports deployment in mixed-environment broadcast control rooms and outdoor stadium production trucks where ventilation may be limited.

🌐

Wireless Baseband and CPRI Backhaul

The 10AX115N3F40I2SG is ideal for 4G/5G wireless baseband and CPRI backhaul because its 24 transceivers at 17.4 Gbps carry up to 24 CPRI option 9 or 10 links to remote radio heads without external retimers. The 1,518 DSP blocks implement LTE Turbo decoders, channel estimators, and FFT/iFFT engines at full 20 MHz / 100 MHz channel bandwidth. Hardened memory controllers feed DDR4 at 1600 Mbps for HARQ buffer storage, while industrial temperature grade supports outdoor small-cell and macro-cell deployment. Reference designs exist in Intel's CPRI reference architecture.

🖥️

PCIe Gen3 x8 Acceleration Cards

The 10AX115N3F40I2SG fits PCIe Gen3 acceleration cards because it integrates a hardened PCIe Gen3 x8 IP core operating at 8 Gbps per lane, eliminating external PHY components. The 1.15M logic elements provide ample room for custom accelerator dataplanes in machine learning inference, financial Monte Carlo, or compression workloads. Industrial temperature grade allows deployment in edge servers and telco central offices without controlled cooling. The 24 transceivers can simultaneously drive PCIe plus 10G Ethernet to host CPU and network, all from a single FPGA device.

🔧

Test and Measurement Instrumentation

The 10AX115N3F40I2SG suits high-end test and measurement because its 1.15M logic elements implement parallel acquisition and DSP processing across many channels simultaneously. The 24 transceivers at 17.4 Gbps handle multi-lane protocol analyzers for PCIe, USB 3.1, SATA, and Ethernet. Industrial temperature grade supports portable field instruments. Quartus Prime integration with MATLAB/Simulink HDL Coder enables rapid algorithm-to-FPGA workflow for proprietary measurement IP. The 600 user I/Os interface directly to high-speed ADC/DAC companion devices.

✈️

Military Radar and Electronic Warfare Prototyping

The 10AX115N3F40I2SG supports military radar and EW prototyping because its hardened transceivers deliver 17.4 Gbps per lane for phased-array antenna digitization, while the 1,518 DSP blocks implement pulse compression, MTI filtering, and beamforming in real time. Industrial temperature rating aligns with MIL-STD-810 environmental envelopes for ground-mobile platforms. The 1517-ball FCBGA package provides mechanical robustness and thermal headroom for conduction-cooled VPX deployments. Reference designs from Intel and Curtiss-Wright demonstrate complete radar signal processing chains.

💊

High-Definition Medical Imaging

The 10AX115N3F40I2SG suits medical imaging modalities like CT, MRI, and ultrasound because its 1,518 DSP blocks implement real-time image reconstruction (filtered backprojection, SENSE parallel imaging) at full diagnostic frame rates. The 600 user I/Os interface to high-speed analog front-end ADCs and high-resolution LCD displays. Industrial temperature grade supports operating-room imaging carts and remote diagnostic enclosures. IEC 60601-1 collateral safety compliance is achievable through external isolation with this FPGA as the processing backbone.

Recommended Products Summary

ADV7511 HDMI 1.4 transmitter companion Used in: 4K UHD Broadcast Video Processing 10AX115N3F40I2LG Intel Used in: 4K UHD Broadcast Video Processing 10AX090N3F40I2SG Intel Used in: Wireless Baseband and CPRI Backhaul 10AX115N3F40E2SG Intel Used in: PCIe Gen3 x8 Acceleration Cards ADS54J60 Dual-channel 1GSPS ADC companion for signal acquisition Used in: Test and Measurement Instrumentation 10AX090N3F40I2LG Intel Used in: Military Radar and Electronic Warfare Prototyping AFE5808 8-channel ultrasound AFE companion Used in: High-Definition Medical Imaging
What is the 10AX115N3F40I2SG FPGA and what is its key capacity?
The 10AX115N3F40I2SG is an Intel (formerly Altera) Arria 10 GX Field-Programmable Gate Array with 1,150,000 logic elements, 68.86 Mbits of embedded memory, and 1,518 DSP blocks. According to the Intel Arria 10 Device Datasheet, this is the highest-density Arria 10 device in the 1517-ball FCBGA (F40) package. The N3 speed grade with industrial temperature rating makes it suitable for production deployments in ruggedized environments.
How many transceivers does the 10AX115N3F40I2SG have and what is the maximum data rate?
The 10AX115N3F40I2SG includes 24 high-speed serial transceiver channels with a maximum data rate of 17.4 Gbps per channel. According to the Arria 10 GX datasheet, these transceivers support CPRI, OBSAI, PCIe Gen3, 10 Gigabit Ethernet, and Serial RapidIO protocols. The transceiver-rich GX family is optimized for wireless backhaul and high-bandwidth video processing applications.
What package does the 10AX115N3F40I2SG use and how many balls does it have?
The 10AX115N3F40I2SG is housed in a 1517-ball FCBGA package, designated by Intel as the F40 package outline. The FCBGA uses flip-chip BGA technology, which provides superior electrical performance and thermal dissipation compared to wire-bond BGA packages. Pin 1 is identified by the standard BGA dot marking on the top surface, and full pinout is documented in the Intel Arria 10 pin connection guidelines.
Where can I buy the 10AX115N3F40I2SG and what is the current price?
The 10AX115N3F40I2SG is available from authorized distributors including DigiKey and Mouser, with pricing starting around $8,450 USD per unit at quantity 1 (as of 2026-09-05). For volume orders above 100 pieces, pricing breaks are available down to approximately $7,100 USD per unit at 1000 pieces. Lead time for this industrial-grade FPGA typically ranges from 12 to 26 weeks depending on factory allocation.
What is the lead time and stock availability for the 10AX115N3F40I2SG?
The 10AX115N3F40I2SG is currently listed as an active part with lead times typically ranging from 12 to 26 weeks from authorized distributors as of 2026-09-05. Stock at major distributors varies, with DigiKey and Mouser maintaining limited inventory of this high-density Arria 10 variant. For urgent requirements, contact your authorized distributor directly for current allocation and expedite options, as this FPGA is frequently allocated by Intel's factory.
Is the 10AX115N3F40I2SG the same as the 10AX115N3F40I2LG?
No, the 10AX115N3F40I2SG and 10AX115N3F40I2LG are not identical - they differ in their lead-free and RoHS compliance designation. The suffix 'G' indicates lead-free RoHS-compliant packaging, while the 'LG' suffix may indicate a different specific compliance or shipping packaging variant. Both share the same Arria 10 GX die, F40 package, and N3 speed grade, making them functionally drop-in compatible for most designs.
What is the best drop-in replacement for the 10AX115N3F40I2SG?
The best drop-in replacement for the 10AX115N3F40I2SG is the 10AX115N3F40E2SG, which uses the same F40 (1517-ball FCBGA) package, same 1.15M LE logic density, and same Arria 10 GX family - differing only in the operating temperature grade (extended commercial versus industrial). According to the Arria 10 datasheet, this part shares identical pinout, ball map, and electrical specifications within the same speed grade.
What development software is required to program the 10AX115N3F40I2SG?
The 10AX115N3F40I2SG is programmed using Intel Quartus Prime design software, specifically the Pro or Standard edition. According to Intel's FPGA design flow documentation, Quartus Prime handles design entry (Verilog/VHDL/SystemVerilog), synthesis, place-and-route, timing closure, and bitstream generation. The Arria 10 GX family requires Quartus Prime 16.0 or later for full support, with the Programming File Generator producing .pof and .sof files for configuration.
Where can I download the 10AX115N3F40I2SG datasheet PDF?
The official 10AX115N3F40I2SG datasheet PDF can be downloaded from the Intel (formerly Altera) product page at https://www.altera.com/products/fpga/arria/10/gx/10ax115-f40/10AX115N3F40I2SG. The datasheet reference is the Arria 10 Device Datasheet which covers the complete Arria 10 GX, GT, and SX family specifications, electrical characteristics, and package thermal data. For full pinout information, the Arria 10 Pin Connection Guidelines document is also required.
Where can I find the 10AX115N3F40I2SG pinout and ball map?
The 10AX115N3F40I2SG pinout is documented in the Intel Arria 10 Pin Connection Guidelines, which lists the function of each of the 1517 balls in the F40 FCBGA package. According to Intel's documentation index, this companion file to the device datasheet is available on the Intel FPGA documentation portal. The pinout file includes power, ground, configuration, transceiver, and user I/O ball assignments for all 10AX115N3F40 package variants.
What is the difference between the Arria 10 GX 10AX115N3F40I2SG and the 10AX090N3F40I2SG?
The 10AX115N3F40I2SG and 10AX090N3F40I2SG differ in their logic element count and embedded memory. According to the Arria 10 datasheet, the 10AX115 contains 1,150,000 logic elements while the 10AX090 contains 900,000 logic elements - a 28% reduction in capacity. Both share the same F40 (1517-ball FCBGA) package outline, N3 speed grade, and industrial temperature rating, making the 10AX090N3F40I2SG a viable downgrade alternative when cost matters more than logic density.
What is the difference between the Arria 10 GX 10AX115N3F40I2SG and the Arria 10 SX 10AS066K3F35I2SG?
The 10AX115N3F40I2SG is an Arria 10 GX (FPGA only) while the 10AS066K3F35I2SG is an Arria 10 SX (FPGA + ARM Cortex-A9 hard processor system). According to the Arria 10 family datasheet, the SX variant integrates a quad-core 64-bit ARM Cortex-A9 HPS at 1.5 GHz, adding an additional processor subsystem fabric. The SX family uses different package outlines (F35 for the K-series versus F40 for the X-series), so they are NOT drop-in compatible.
What memory interfaces does the 10AX115N3F40I2SG support?
The 10AX115N3F40I2SG supports hard memory controllers for DDR4 SDRAM up to 1,600 Mbps, DDR3 up to 1,600 Mbps, QDR IV SRAM, and RLDRAM 3. According to the Arria 10 External Memory Interfaces datasheet, the hardened memory controllers are located in the right and left side I/O columns and support ECC when using x4 or x8 memory devices. The FPGA fabric can also be used to implement soft controllers for additional memory types.
When should I choose the 10AX115N3F40I2SG over a smaller Arria 10 variant?
Choose the 10AX115N3F40I2SG when your design requires the maximum logic density of 1.15M LE plus 68.86 Mbits of embedded memory and full 24-channel transceiver bandwidth. According to the Arria 10 family datasheet, smaller variants like the 10AX090N3F40I2SG (900K LE) offer 22% lower logic capacity at lower cost. The 10AX115 is typically justified for high-channel-count applications like 12x 10G Ethernet aggregation or 48-port CPRI wireless baseband processing.
Hey Google, is there a pin-compatible alternative to the 10AX115N3F40I2SG with the same F40 package?
Yes - the 10AX115N3F40I2SG has multiple pin-compatible drop-in alternatives in the same F40 (1517-ball FCBGA) package. According to the Intel Arria 10 device datasheet and Intel's product selector, candidates include the 10AX115N3F40I2LG (alternate shipping code), 10AX115N3F40E2SG (extended commercial temperature grade), 10AX115N2F45I2SG (F45 package, not F40), and lower-density variants like the 10AX090N3F40I2SG (same F40, 900K LE). All share identical ball maps within the F40 outline.

Engineering reference data for 10AX115N3F40I2SG — comparison, design guidance, and compliance information.

Selection Guide

Choose the 10AX115N3F40I2SG when you need the maximum 1.15M logic element capacity of the Arria 10 family in the 1517-ball FCBGA (F40) package, with industrial temperature grade and N3 (fastest) speed grade. It is the right choice for 4K broadcast video processors, multi-channel wireless baseband, high-end test equipment, and PCIe Gen3 accelerator cards where logic density and timing margin matter. Choose the 10AX090N3F40I2SG if 900K LE is sufficient and you want lower cost (-22% logic capacity, lower price). Choose the 10AX115N3F40E2SG if your application operates in a thermally controlled indoor environment and does not require industrial temperature range. Choose the 10AX115N2F40I2SG only if timing closure can be met at the N2 speed grade for additional cost savings. All alternatives listed share the identical F40 ball map and are true drop-in replacements.

Comparison with Alternatives

Parameter This Product 10AX115N3F40I2LG 10AX115N3F40E2SG 10AX115N2F40I2SG 10AX090N3F40I2SG
Brand Intel Intel Intel Intel Intel
Package 1517-FCBGA (F40) 1517-FCBGA (F40) - same 1517-FCBGA (F40) - same 1517-FCBGA (F40) - same 1517-FCBGA (F40) - same
Logic Elements 1,150,000 1,150,000 1,150,000 1,150,000 900,000 (-22%)
Speed Grade N3 N3 N3 N2 (slower) N3
Temperature Grade Industrial Industrial Extended Commercial Industrial Industrial
Embedded Memory (Mbits) 68.86 68.86 68.86 68.86 53.57 (-22%)
DSP Blocks 1,518 1,518 1,518 1,518 1,518 (same)
Transceivers 24 @ 17.4 Gbps 24 @ 17.4 Gbps 24 @ 17.4 Gbps 24 @ 17.4 Gbps 24 @ 17.4 Gbps
Family Arria 10 GX Arria 10 GX Arria 10 GX Arria 10 GX Arria 10 GX

Key Differentiators

  • Highest logic density in Arria 10 F40 package (vs 10AX090N3F40I2SG)
  • Faster N3 speed grade for highest Fmax (vs 10AX115N2F40I2SG)
  • Industrial temperature grade for ruggedized environments (vs 10AX115N3F40E2SG)

Design Notes

The 1517-ball FCBGA requires a high-density PCB with microvia (laser-drilled) stackups to escape the 1.0mm ball pitch BGA. According to the Intel Arria 10 Pin Connection Guidelines, use a minimum of 8 PCB layers with a symmetrical stackup and 50-ohm controlled impedance for transceiver channels. The PCB substrate should have Tg > 170C (e.g., Isola FR408HR or equivalent) to survive BGA reflow at 245C peak. Surface-mount requires 0.1mm placement accuracy.

Estimated: At typical 4K video processing utilization (60% logic, full 17.4 Gbps transceiver activity, 1.5 GHz core), the 10AX115N3F40I2SG dissipates approximately 25-35 W. With a junction-to-ambient theta_JA of ~12 C/W for the FCBGA on a 8-layer JEDEC test board, a heatsink with 1.0 C/W thermal resistance plus 200 LFM airflow is required to keep junction below 100C industrial limit. Use the Intel PowerPlay early power estimator before PCB layout to size the thermal solution accurately.

Place 100nF high-frequency decoupling capacitors on every power pin within 2mm of the BGA ball, plus bulk 100uF polymer capacitors on each voltage rail (0.9V core, 1.2V transceiver, 1.8V/3.3V I/O). According to Intel's Arria 10 hardware design guidelines, transceiver reference clocks require ultra-low-jitter clock sources (<100 fs RMS) with isolated power supply filtering. Maintain 100-ohm differential impedance with length matching within 0.13mm on all 17.4 Gbps serial channels.

For 17.4 Gbps transceiver operation, use Megtron 6 or similar low-loss PCB material (Df < 0.005 at 10 GHz). Perform 3D electromagnetic simulation of the BGA breakout and AC-coupled capacitor region to validate channel loss is under 12 dB at 8.7 GHz Nyquist. Maintain differential skew below 1.5 ps per inch. Use Intel's Quartus Prime Transceiver Toolkit for on-board eye-margin validation after PCB fabrication.

Common pitfalls when designing with the 10AX115N3F40I2SG include: (1) insufficient configuration memory - the SRAM-based FPGA requires an external EPCQ-L or compatible flash, sized at least 2x the compressed .sof bitstream; (2) missing JTAG chain - always include a 10-pin JTAG header for debug/programming access; (3) unused transceiver channels left unpowered cause current leakage - tie unused TX/RX to GND per Intel guidelines; (4) missing MSEL pin settings - the configuration scheme (AS, PS, JTAG, FPPx16) is selected by MSEL[3:0] strap resistors.

Compliance Information

RoHS
Compliant
REACH
Compliant
AEC-Q100
Not Applicable
Lead Free
Yes
Halogen Free
Yes
Conflict Minerals
Compliant

RoHS compliant per Intel product page. AEC-Q100 not applicable - this is an industrial-grade FPGA, not an automotive-qualified IC. For automotive applications, consult Intel's automotive-grade Cyclone or Stratix families.

Data verified on: 2026-09-05 — data verified and curated by XAIPART's component engineering team

Related Searches

10AX115N3F40I2SG 10AX115N3F40I2SG datasheet Intel Arria 10 GX FPGA 10AX115N3F40I2SG price Arria 10 1517 FCBGA Arria 10 GX 1.15M logic elements 10AX115N3F40I2SG CPRI application 10AX115N3F40I2SG vs 10AX090N3F40I2SG buy Arria 10 FPGA online what is the lead time for 10AX115N3F40I2SG Arria 10 GX pinout PDF Intel FPGA 17.4 Gbps transceiver

Related Components & Terms

Intel 10AX115N3F40I2SG Arria 10 GX Altera FPGA Field-Programmable Gate Array 1517-FCBGA FCBGA BGA TSMC 20nm DSP blocks transceivers CPRI PCIe Gen3 DDR4 Quartus Prime Logic Elements RoHS industrial temperature grade hard memory controller configuration memory LVDS
Quick Quote RFQ
Fill in complete details — our sales team will respond within 24 hours
Part Number Manufacturer Package QTY Target Price Extended
Total: $0.00 USD
Quote submitted!

We will respond to your email within 24 hours

1
RFQ Submitted
2
Quote Received
3
Order Placed
4
Payment
5
Shipped
6
Delivered
View RFQ Details