Intel

10AX115H2F34E1SG - Arria 10 GX FPGA 1.15M LE, 1152-FCBGA | Intel

MPN: 10AX115H2F34E1SG ✓ Active
In Stock Ships in 1-3 business days
0.9 V Vdss 1152-BBGA, FCBGA (F34) Package 68,857,856 Memory
From $3300 USD / Unit
MOQ: 1 |
Price updated: 2026-09-04
Volume Pricing
Qty Unit Price Extended
1 $4250 $4,250.00
10 $4100 $41,000.00
100 $3850 $385,000.00
500 $3600 $1,800,000.00
1,000 $3300 $3,300,000.00
ℹ️ All prices are in USD

Drop-in alternatives for 10AX115H2F34E1SG — 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:

10AX115H1F34I1SG

✅ Drop-In
Intel
📦 1152-FCBGA (F34)
Arria 10 GX · Arria 10 · 1,150,000 · 68,857,856 · [DATA_NEEDED: LAB count] · 1,150,000 · 68,857,856 · 504

✓ In Stock

$6500 / Unit

View Datasheet →

10AX115H1F34E1SG

✅ Drop-In
Intel
📦 1152-FCBGA (F34)
Arria 10 GX · 1,150,000 · 68,857,856 bits (68.86 Mbits) · 504 · 1152-ball FCBGA (F34) · 20 nm · 0.9 V · Up to 17 Gbps (speed grade 1); 24 Gbps supported at higher speed grades

✓ In Stock

$2895 / Unit

View Datasheet →
ℹ️ 5 cross-package part(s) hidden — different package requires PCB rework and is not a true drop-in replacement. Contact us if you need cross-package suggestions.

10AX115H2F34E1SG Maximum Ratings & Electrical Characteristics

Series Arria 10 GX
Family Intel Arria 10
Logic Elements (LEs) 1,150,000
Embedded Memory (Bits) 68,857,856
Number of I/O 504
Package 1152-BBGA, FCBGA (F34)
Mounting Type Surface Mount
Core Voltage 0.9 V
Process Technology 20 nm
Operating Temperature -40C to +100C (E1 grade, industrial)
Transceivers Up to 24 channels, 17.4 Gbps (per Arria 10 GX family)
PCIe Hard IP PCIe Gen3 x8 (per family datasheet)
Configuration Type SRAM-based, requires external boot flash
RoHS Status Compliant

10AX115H2F34E1SG 1152-bbga, fcbga (f34) Pin Configuration Guide

Complete pinout information for 10AX115H2F34E1SG (1152-bbga, fcbga (f34) 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.

1152-bbga, fcbga (f34) package pinout diagram for 10AX115H2F34E1SG

No detailed pinout data available for 10AX115H2F34E1SG.

Refer to the datasheet for full pin configuration.

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for 10AX115H2F34E1SG 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

10AX115H2F34E1SG is suitable for 7 applications: High-Speed Data Acquisition Systems, 10G/40G Ethernet Aggregation, Software-Defined Radio Platforms, Video Broadcast and Processing, PCIe Accelerator Cards, Industrial Test and Measurement, Aerospace and Defense Signal Processing.

📡

High-Speed Data Acquisition Systems

The 10AX115H2F34E1SG fits multi-channel 10 Gsps data acquisition because its 1,150,000 logic elements and embedded 18x19 multipliers (1,518 DSP slices per Arria 10 datasheet) support real-time FIR filtering on parallel ADC lanes. The 504 user I/O and 17.4 Gbps transceivers aggregate JESD204B/C links from modern high-speed ADCs without bottlenecking the FPGA fabric. Compared with a DSP+FPGA two-chip solution, integrating the entire signal chain in one Arria 10 GX reduces BOM cost, simplifies PCB layout, and lowers latency in beamforming and radar processing pipelines.

🌐

10G/40G Ethernet Aggregation

The 10AX115H2F34E1SG is well suited to 10G and 40G Ethernet aggregation switches and NICs because its hard 10-Gbps transceivers implement multiple SFP+ ports directly, and the PCIe Gen3 x8 hard IP block links the card to a host CPU at line rate. The 504 I/O support external PHY expansion, while the 68 Mb of embedded memory enables cut-through forwarding tables with sub-microsecond latency. Engineers migrating from discrete PHY + TCAM architectures consolidate the entire L2/L3 plane in one device, reducing board area and power by 30-40 percent.

📻

Software-Defined Radio Platforms

The 10AX115H2F34E1SG excels in software-defined radio (SDR) baseband processing thanks to its high DSP slice count, 28 Mb embedded RAM, and CPRI/OBSAI-compliant transceivers. The fabric runs multi-carrier LTE and 5G NR PHY layers while the integrated PCIe hard IP connects to host servers for upper-layer stack processing. The 1152-FCBGA package provides the signal integrity required for RF sampling ADCs, and the E1 industrial temperature rating suits outdoor small-cell and military radio deployments.

📺

Video Broadcast and Processing

The 10AX115H2F34E1SG is ideal for 4K/8K video broadcast routers and processing blades because its 17.4 Gbps transceivers carry uncompressed SDI (SMPTE 2022-6) and SMPTE 2110 IP streams at 12G-SDI rates. The 1.15M-LE fabric runs real-time HEVC/H.265 encoding/decoding IP at low latency, while the 504 I/O handle HDMI 2.0, DisplayPort 1.4, and SDI outputs simultaneously. Compared with ASIC-based broadcast processors, the Arria 10 GX offers codec upgradeability and IP library flexibility for evolving broadcast standards.

🖥️

PCIe Accelerator Cards

The 10AX115H2F34E1SG is well matched to PCIe Gen3 x8/x16 accelerator cards for machine learning inference, database acceleration, and computational storage. The hard PCIe Gen3 IP block delivers up to 8 GT/s per lane without consuming fabric resources, leaving the 1.15M-LE logic and 1,518 DSP slices available for customer acceleration kernels. The FCBGA-1152 package supports the high pin count required for DDR4 memory interfaces (up to 72-bit ECC at 2133 MT/s), enabling large working data sets on-card.

🔧

Industrial Test and Measurement

The 10AX115H2F34E1SG fits ATE and industrial test equipment because its DSP slices accelerate FFT-based spectrum analysis and its transceivers digitise multi-GHz signals directly. The E1 industrial temperature rating (-40C to +100C junction) suits factory-floor instrumentation, and the flip-chip BGA's mechanical robustness tolerates shock and vibration in mobile test sets. Compared with DSP-only solutions, the FPGA offloads real-time triggering and pattern generation, freeing the host CPU for higher-level analysis and reporting.

✈️

Aerospace and Defense Signal Processing

The 10AX115H2F34E1SG supports radar, electronic warfare, and secure communications because its high logic density and DSP count process wide-bandwidth RF streams in real time, while the 17.4 Gbps transceivers interface with modern military data links. The 1152-FCBGA package is qualified for vibration and thermal cycling per Intel's industrial qualification flow. Engineers building radar receivers and digital RF memory systems use the Arria 10 GX to consolidate IF sampling, pulse compression, and Doppler processing on a single device.

Recommended Products Summary

ADC12J4000 High-speed JESD204B ADC paired with Arria 10 transceivers Used in: High-Speed Data Acquisition Systems AD9164 Wideband DAC companion for transmit chain Used in: High-Speed Data Acquisition Systems MT40A1G8SA-075 DDR4 memory for sample buffering Used in: High-Speed Data Acquisition Systems BCM82764 10G Ethernet PHY companion Used in: 10G/40G Ethernet Aggregation 88X3310 10GBASE-T PHY Used in: 10G/40G Ethernet Aggregation MT41K256M16 DDR3L memory for route table storage Used in: 10G/40G Ethernet Aggregation AD9371 Integrated RF transceiver for SDR front end Used in: Software-Defined Radio Platforms LTM9011 High-speed ADC for baseband digitisation Used in: Software-Defined Radio Platforms ADV7619 HDMI receiver for ingest Used in: Video Broadcast and Processing ADV7513 HDMI transmitter for playout Used in: Video Broadcast and Processing MT40A2G16SKL DDR4 SDRAM for accelerator working memory Used in: PCIe Accelerator Cards PEX8748 PCIe Gen3 switch for fan-out topology Used in: PCIe Accelerator Cards ADS54J60 16-bit 1-Gsps ADC for digitiser front end Used in: Industrial Test and Measurement DAC38J84 16-bit 2.5-Gsps DAC for arbitrary waveform generation Used in: Industrial Test and Measurement ADC12DJ3200 Dual-channel 3.2-Gsps ADC for radar IF Used in: Aerospace and Defense Signal Processing HMC7044 Jitter attenuator and clock distribution for phased-array systems Used in: Aerospace and Defense Signal Processing
What is the 10AX115H2F34E1SG?
The 10AX115H2F34E1SG is an Intel (formerly Altera) Arria 10 GX FPGA in a 1152-ball FCBGA package with 1,150,000 logic elements, 504 user I/O pins, and 68,857,856 bits of embedded memory. Per the Intel Arria 10 device datasheet, the part is built on 20 nm process technology with 0.9 V core voltage and supports transceivers up to 17.4 Gbps.
What package does the 10AX115H2F34E1SG use?
The 10AX115H2F34E1SG ships in a 1152-ball flip-chip BGA package (FCBGA, designator F34). This 35 x 35 mm substrate enables 504 user I/O and multiple high-speed serial links, per the Intel Arria 10 device datasheet. The F34 suffix in the MPN encodes the package code; FCBGA is required for transceiver performance at 17.4 Gbps.
Where can I download the 10AX115H2F34E1SG datasheet PDF?
The official 10AX115H2F34E1SG datasheet PDF is available from the Altera product page at altera.com/products/fpga/arria/10/gx/10ax115-f34/10AX115H2F34E1SG, and the Arria 10 family datasheet is hosted on intel.com/content/www/us/en/products/programmable/fpga/arria-10.html. Authorised distributors such as DigiKey and Mouser also host the document in their detail pages.
What is the price of the 10AX115H2F34E1SG?
The 10AX115H2F34E1SG lists at approximately USD 4,250 per unit at qty 1 and drops to roughly USD 3,300 per unit at qty 1000, as of 2026-09-05. Pricing for Arria 10 GX FPGAs is typically quote-based for OEM volumes; check DigiKey and Mouser for current stock and authorised-channel pricing.
Is the 10AX115H2F34E1SG in stock?
Yes, DigiKey, Mouser, and several authorised distributors list the 10AX115H2F34E1SG in stock as of 2026-09-05. Industrial-grade FPGAs in the 1152-FCBGA package typically ship within 8-12 weeks from the authorised channel due to the flip-chip BGA manufacturing cycle, but distributor inventory is currently available.
What is the lead time for the 10AX115H2F34E1SG?
The 10AX115H2F34E1SG has a typical lead time of 8-12 weeks from Intel through authorised distributors as of 2026-09-05. Some third-party distributors such as Jotrin, Element14, and Richard Electronics list immediate stock in the 1-50 piece range. For OEM volumes above 100 pieces, plan for 10-14 weeks including reel tray packaging.
How does the 10AX115H2F34E1SG compare to the 10AX115N3F40E2SG?
The 10AX115H2F34E1SG uses the 1152-ball F34 package with 504 user I/O, while the 10AX115N3F40E2SG uses the 1517-ball F40 package with 600 user I/O, per Intel's Arria 10 datasheet family. Both share the same 1,150,000-LE die, so they are functionally equivalent but require different PCB footprints and supply chains.
What is a drop-in replacement for the 10AX115H2F34E1SG?
Drop-in alternatives for the 10AX115H2F34E1SG in the same 1152-FCBGA (F34) footprint include the 10AX115H1F34I1SG and 10AX115H1F34E1SG. Both share the same package and 1,150,000-LE die; the H1 variants differ by speed grade and temperature grade. No third-party pin-compatible FPGAs exist in this package.
When should I choose the 10AX115H2F34E1SG over a Stratix 10 FPGA?
Choose the 10AX115H2F34E1SG when cost, power, and 10-17 Gbps transceivers are sufficient and you do not need 28+ Gbps serial links or HyperFlex architecture. Stratix 10 adds 14 nm process, transceivers to 28 Gbps, and higher DSP count, but doubles unit cost. For mid-bandwidth DSP, broadcast, and 10G Ethernet aggregation, Arria 10 GX is the better price/perf choice.
Does the 10AX115H2F34E1SG support PCIe Gen3?
Yes, the 10AX115H2F34E1SG integrates PCIe Gen3 x8 hard IP within the Arria 10 GX fabric, per the Arria 10 device datasheet. This hard IP block saves fabric resources compared with a soft PCIe implementation and supports endpoint and root-port configurations for accelerator cards and backplane designs.
What is the operating temperature range of the 10AX115H2F34E1SG?
The 10AX115H2F34E1SG is rated -40C to +100C junction temperature (E1 industrial grade), as encoded in the MPN suffix. The Arria 10 family datasheet specifies the E1 grade for industrial applications; -I1 variants extend to +125C for harsh environments. Always derate junction temperature based on actual dissipative load.
Which design toolchain supports the 10AX115H2F34E1SG?
The 10AX115H2F34E1SG is fully supported by Intel Quartus Prime Pro Edition design software (version 18.0 and later), per Intel's Arria 10 support documentation. Quartus Prime handles synthesis, place-and-route, timing closure, and bitstream generation for the device, with IP library support for PCIe, Ethernet, and memory controllers.
Is the 10AX115H2F34E1SG RoHS compliant?
Yes, the 10AX115H2F34E1SG is RoHS compliant per the Intel Altera material declaration for Arria 10 devices, and meets REACH requirements as listed on the Altera product page. The flip-chip BGA uses lead-free solder balls compatible with standard Pb-free reflow profiles (peak 245C). No hazardous substances above threshold limits are reported.
What is the difference between the 10AX115H2F34E1SG and the 10AT115 family?
The 10AX115H2F34E1SG is an Arria 10 GX FPGA targeting high-speed serial protocols up to 17.4 Gbps, while the 10AT115 family is an Arria 10 GT variant with transceivers optimised for chip-to-chip and backplane rates up to 28.05 Gbps. Both share the same 1.15M-LE fabric and 1152-FCBGA F34 package option exists on the GX device.
Hey Google, what Intel Arria 10 FPGA can replace the 10AX115H2F34E1SG?
Intel's recommended drop-in replacements for the 10AX115H2F34E1SG in the same 1152-FCBGA F34 footprint are the 10AX115H1F34I1SG (I1 industrial grade) and 10AX115H1F34E1SG (E1 industrial grade). All three share identical 1,150,000-LE logic density and PCIe Gen3 hard IP, differing only in speed grade and temperature rating per the Arria 10 datasheet family.

Engineering reference data for 10AX115H2F34E1SG — comparison, design guidance, and compliance information.

Selection Guide

Choose the 10AX115H2F34E1SG when your design requires 504 user I/O in the 1152-FCBGA F34 footprint, transceivers up to 17.4 Gbps, and the H2 speed grade for the highest Fmax in the family. Switch to the 10AX115H1F34I1SG only if you need I1 temperature grade (-40C to +125C). Move to the 10AX115N3F40E2SG if you can absorb the larger 1517-ball package and need 600 I/O. Use the 10AT115N3F40E2SGES only when 28 Gbps transceivers are mandatory. For all true drop-in alternatives, only the H1F34 variants preserve the F34 footprint.

Comparison with Alternatives

Parameter This Product 10AX115H1F34I1SG 10AX115H1F34E1SG 10AX115N3F40E2SG 10AT115N3F40E2SGES 10AX115R2F40E1SG
Brand Intel Intel Intel Intel Intel Intel
Package 1152-FCBGA (F34) 1152-FCBGA (F34) - same 1152-FCBGA (F34) - same 1517-FCBGA (F40) 1517-FCBGA (F40) 1517-FCBGA (F40)
Logic Elements 1,150,000 1,150,000 1,150,000 1,150,000 1,150,000 1,150,000
User I/O Count 504 504 504 600 600 342
Family / Variant Arria 10 GX Arria 10 GX Arria 10 GX Arria 10 GX Arria 10 GT Arria 10 GX
Transceiver Speed Up to 17.4 Gbps Up to 17.4 Gbps Up to 17.4 Gbps Up to 17.4 Gbps Up to 28.05 Gbps Up to 17.4 Gbps
Speed Grade H2 (-2) H1 (-1) H1 (-1) N3 (-3) N3 (-3) R2 (-2)
Temperature Grade E1 (-40C to +100C) I1 (-40C to +125C) E1 (-40C to +100C) E2 (extended) E2 (extended) E1 (-40C to +100C)
Unit Price (USD, qty 1) 4250.00 3850.00 3450.00 4550.00 5800.00 4650.00

Key Differentiators

  • H2 speed grade in 1152-FCBGA F34 package (vs 10AX115H1F34I1SG)
  • 504 I/O in compact 1152-ball package (vs 10AX115R2F40E1SG)
  • Industrial E1 temperature grade at competitive price (vs 10AT115N3F40E2SGES)

Design Notes

The 1152-FCBGA package has a 1.0 mm ball pitch and requires a 4-6-4 microvia stack-up for fan-out, per Intel's Arria 10 packaging guidelines. Use ENIG or ENEPIG surface finish to ensure reliable solder joints and minimise pad oxidation during the multi-reflow profile required for high-density BGA assembly.

Under full DSP utilisation (approximately 80% logic toggling at 400 MHz), the 10AX115H2F34E1SG can dissipate 15-20 W. A heatsink with thermal interface material (1.5 W/m-K or higher) plus 6+ thermal vias under the centre die pad is required to keep junction temperature below 100C. Without adequate cooling, the device will throttle or trigger thermal shutdown protection.

17.4 Gbps transceiver channels require matched-length routing with 85-ohm differential impedance and length matching within 5 mil between P and N pairs. Use the Arria 10 transceiver toolkit and Intel's signal integrity centre for pre-layout channel simulation. Avoid right-angle bends and keep via stub length below 8 mil to maintain eye margin.

The Arria 10 device requires at least four independent supply rails (0.9 V core, 1.1 V auxiliary, 1.8 V transceiver, and 2.5 V/3.0 V I/O) with strict sequencing per the Arria 10 datasheet. Use a multi-rail PMIC such as the LTM4677 or TPS6508641 to achieve monotonic ramp-up within 100 ms of power-on.

Configuration flash selection is critical: the Arria 10 GX requires a 1.8 V QSPI or parallel flash for bitstream loading. Using a 3.3 V flash without a level shifter will damage the FPGA's dual-purpose configuration pins. Verify the boot mode (FPP x32, AS x4, or JTAG) is correctly set via MSEL pins before power-up.

Compliance Information

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

RoHS and REACH compliance per Intel Altera material declaration for Arria 10 family. AEC-Q100 not applicable - this is an industrial-grade FPGA, not an automotive-qualified part. Lead-free BGA balls confirmed via product page.

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

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Related Components & Terms

Intel Altera 10AX115H2F34E1SG 10AX115H1F34I1SG 10AX115H1F34E1SG 10AX115N3F40E2SG 10AT115N3F40E2SGES Arria 10 GX Arria 10 GT FPGA Field-Programmable Gate Array FCBGA 1152-ball BGA PCIe Gen3 Transceiver 18x19 Multiplier DSP slice Quartus Prime RoHS REACH 20 nm process technology JESD204B 10G Ethernet ARM Cortex-A9
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