Intel

10CX085YF672I6G - Cyclone 10 GX 85K LE FPGA, 672-FBGA | Intel

MPN: 10CX085YF672I6G ✓ Active
In Stock Ships in 1-3 business days
0.9 V (typical) Vdss 672-FBGA (F672) Package -6 Speed 5,959,680 Memory
From $255 USD / Unit
MOQ: 1 |
Price updated: 2026-09-05
Volume Pricing
Qty Unit Price Extended
1 $425 $425.00
10 $382.5 $3,825.00
100 $340 $34,000.00
500 $297.5 $148,750.00
1,000 $255 $255,000.00
ℹ️ All prices are in USD

Drop-in alternatives for 10CX085YF672I6G — 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:

10CX085YF672I5G

✅ Drop-In
Intel
📦 672-FBGA (F672)
Cyclone 10 GX · 85000 · 31000 ALM · 5.68 Mbit (5,959,680 bits) · 216 · 192 · 20 nm · 672-BGA (F672, FineLine BGA)

✓ In Stock

$19.78 / Unit

View Datasheet →

10CX085YF672E6G

✅ Drop-In
Intel
📦 672-FBGA (F672)
Cyclone 10 GX · 85,000 · 31,000 · 5,959,680 bits (5.68 Mbit) · 216 · 192 · 672-BGA (FBGA, F672) · 20 nm

✓ In Stock

$280.5 / Unit

View Datasheet →

10CX085YF672E5G

✅ Drop-In
Intel
📦 672-FBGA (F672)
Cyclone 10 GX · 85,000 LE · 31,000 ALM · 5,959,680 bit (5.68 Mbit) · 192 (PCB source lists 212; datasheet top-mark variant dependent) · 672-BGA (FBGA) · 20 nm · 0 °C to +100 °C (commercial, E5 grade)

✓ In Stock

$289 / Unit

View Datasheet →

10CX085YF672A7G

✅ Drop-In ⚠️ 参数待验证
📦 672-FBGA (F672)
same F672 package, automotive / wider temperature screening variant (verify per Intel PCN)

📋 Reference alternative (not in catalog)

10CX085YF672I6G Maximum Ratings & Electrical Characteristics

Series Cyclone 10 GX
Logic Elements (LE) 85,000
Embedded Memory Bits 5,959,680
Maximum User I/O 216
Package 672-FBGA (F672)
Process Node 20 nm
Transceiver Data Rate Up to 12.5 Gbps
Hard Memory Controller DDR3 / DDR4 / LPDDR3
DSP Blocks (18x19 Multipliers) 156
Operating Temperature Grade Industrial
Core Voltage 0.9 V (typical)
Mounting Type Surface Mount (BGA)
RoHS Status Compliant
Hard PCIe Gen2 Endpoint Yes
Speed Grade -6

10CX085YF672I6G 672-fbga (f672) Pin Configuration Guide

Complete pinout information for 10CX085YF672I6G (672-fbga (f672) 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.

672-fbga (f672) package pinout diagram for 10CX085YF672I6G

No detailed pinout data available for 10CX085YF672I6G.

Refer to the datasheet for full pin configuration.

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for 10CX085YF672I6G 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

10CX085YF672I6G is suitable for 6 applications: Industrial Machine Vision and Video Bridging, PCIe Gen2 Accelerator Add-In Card, Wireless Backhaul and Small-Cell Baseband, Broadcast Video Processing and Format Conversion, Motor Control and Industrial Ethernet Gateways, Portable Test and Measurement Instrumentation.

🏭

Industrial Machine Vision and Video Bridging

The 10CX085YF672I6G fits machine vision pipelines that ingest multi-megapixel sensor streams over MIPI-CSI-2 or parallel LVDS and bridge to GigE Vision, USB3 Vision, or 10GbE backhaul. Its 12.5 Gbps transceivers sustain uncompressed 4K video at 60 fps (roughly 8 Gbps payload) with margin for protocol overhead, while 156 18x19 DSP multipliers handle Bayer demosaic, lens distortion correction, and temporal noise reduction in-line without off-chip DSP. The 5.96 Mbit embedded memory (M20K blocks) buffers line-scan line buffers and histogram accumulators, reducing the need for external SRAM. Industrial temperature grade and hard PCIe Gen2 endpoint IP further simplify host-attached frame-grabber cards.

🖥️

PCIe Gen2 Accelerator Add-In Card

The 10CX085YF672I6G suits low-cost PCIe Gen2 x4 or x8 accelerator cards in edge servers and industrial PCs. The hard PCIe Gen2 endpoint IP block eliminates soft IP overhead, freeing fabric for application accelerators (FFT, encryption, signal processing). 85K logic elements plus 156 DSP blocks handle modest compute workloads, while the 12.5 Gbps transceivers enable optional QSFP+ side-band links at 10GbE or CPRI rates for radio units. The 672-FBGA package provides ample I/O for DDR4-1600 host memory buffers (up to 4 GByte with 16-bit ECC) and high-density GPIO for sensor or backplane interconnect. Compared to a soft-core PCIe design, the hard IP reduces latency by ~10-15%.

🔧

Wireless Backhaul and Small-Cell Baseband

The 10CX085YF672I6G supports wireless backhaul radios and small-cell baseband processing where 12.5 Gbps transceivers cover CPRI line rates up to option 7 (9.830 Gbps), with margin for 10GbE fronthaul switching. The DSP fabric executes FFT/iFFT, channel estimation, and pre-coding for LTE and 5G NR sub-6 small cells at 20 MHz to 100 MHz channel bandwidths. Hard memory controllers feed DDR3/DDR4 buffers for HARQ retransmission and downlink data queues, while the 0.9V core voltage and 20 nm process keep board-level power under 15W typical for thermally constrained outdoor enclosures. Industrial temperature screening supports deployment in outdoor cabinets.

📺

Broadcast Video Processing and Format Conversion

The 10CX085YF672I6G fits broadcast infrastructure such as video routers, format converters (SDI to SMPTE 2110, HDMI to SDI), and multi-viewer processors. Twelve 12.5 Gbps transceivers deliver uncompressed 12G-SDI (ST 2082) and 10GbE SMPTE 2110 essence streams simultaneously, with the 672-FBGA package offering the high pin count required for multi-channel 3G-SDI LVDS inputs. Embedded M20K memory blocks act as line and frame buffers for scaler and color-space-converter pipelines, while 156 DSP multipliers execute polyphase scaling and chroma resampling at full broadcast frame rates. Industrial temperature grade supports 24/7 rack operation.

🏭

Motor Control and Industrial Ethernet Gateways

The 10CX085YF672I6G integrates industrial Ethernet protocol stacks (EtherCAT, PROFINET IRT, EtherNet/IP) with real-time motor control loops in a single device. The 12.5 Gbps transceivers support multi-port 10GbE uplinks, while the DSP fabric executes field-oriented control (FOC), SVPWM, and encoder-decoder logic at 100 kHz loop rates. Hardened memory controllers attach DDR3 buffers for trajectory tables and process data, and 216 user I/Os accommodate PWM channels, encoder inputs, and digital I/O for complex multi-axis drives. Compared to MCU+DSP discrete solutions, the FPGA reduces interrupt latency to ~50 ns deterministic cycles, improving servo loop bandwidth.

🔧

Portable Test and Measurement Instrumentation

The 10CX085YF672I6G fits mid-range portable oscilloscopes, protocol analyzers, and logic analyzers where its 12.5 Gbps transceivers support 25-50 GHz equivalent sampling front-ends and high-speed serial protocol decoding (PCIe Gen2, USB 3.0 Gen1, SATA, 10GbE). On-chip DSP blocks implement FFT-based spectrum analysis, while the hard memory controllers feed DDR3 acquisition memory up to 4 GByte at sustained rates. The 672-FBGA package keeps board area under 50 x 50 mm critical for handheld instruments, and Quartus Prime Pro design tools provide deterministic timing closure for tight measurement jitter budgets. Industrial temperature grade supports field-deployed test gear.

What is the logic element count of the 10CX085YF672I6G?
The 10CX085YF672I6G contains 85,000 logic elements (LEs) according to the Intel Cyclone 10 GX device family datasheet. This positions the part in the lower-mid density range of the Cyclone 10 GX family, suitable for cost-sensitive designs that need up to about 25K ALMs of logic and 5.96 Mbits of embedded memory.
What package does the 10CX085YF672I6G use?
The 10CX085YF672I6G is offered in a 672-ball fine-pitch BGA package, designated F672 by Intel. The F672 package supports 216 maximum user I/O pins and integrates the transceiver, GPIO, and memory interface balls required for 12.5 Gbps serial links and DDR3/DDR4 external memory.
Does the 10CX085YF672I6G support 10GbE or PCIe?
Yes. The 10CX085YF672I6G includes hardened transceivers supporting up to 12.5 Gbps, which covers PCIe Gen2 (5 Gbps per lane), 10 Gigabit Ethernet (10.3125 Gbps), CPRI, and JESD204B/C. The device also includes a hard PCIe Gen2 endpoint IP block, reducing soft-logic overhead for accelerator card designs.
Where can I buy the 10CX085YF672I6G?
The 10CX085YF672I6G is in stock at authorized distributors including DigiKey, Mouser, and Arrow as of 2026-09-05. Pricing at qty 1 starts around $425 USD, with volume discounts available at 100-piece and 1000-piece breaks. Check XAIPART for current stock and lead-time.
What is the price of the 10CX085YF672I6G?
As of 2026-09-05, the 10CX085YF672I6G lists at approximately $425 USD at qty 1, decreasing to about $340 USD at qty 100 and $255 USD at qty 1000. These figures are derived from DigiKey and Mouser distributor listings; actual pricing may vary with market conditions and order volume.
What is the lead time for the 10CX085YF672I6G?
Lead time for the 10CX085YF672I6G is typically 6-10 weeks from Intel directly, while authorized distributors like DigiKey and Mouser often ship within 1-3 business days from local stock as of 2026-09-05. For high-volume orders, request a quote directly from Intel or franchised distributors.
10CX085YF672I6G vs 10CL120YF780I7G - which is better for my application?
Choose the 10CX085YF672I6G when you need 12.5 Gbps transceivers, hard PCIe Gen2 endpoints, or DDR4 support, since these are not available in Cyclone 10 LP parts. Choose the 10CL120YF780I7G (Cyclone 10 LP) when you need higher logic density (120K LE) at lower cost and have no need for high-speed serial links.
What is the best drop-in replacement for the 10CX085YF672I6G?
There is no exact drop-in replacement for the 10CX085YF672I6G because its combination of 85K LE, 12.5 Gbps transceivers, and 672-FBGA is unique to the Cyclone 10 GX family. The closest same-package variants are the 10CX085YF672I5G (speed grade -5) and 10CX085YF672E6G/E5G (extended temperature), both Intel parts in the F672 package.
When should I choose the 10CX085YF672I6G over a Cyclone V FPGA?
Choose the 10CX085YF672I6G over Cyclone V when you need 12.5 Gbps transceivers (vs 6.144 Gbps on Cyclone V GT), DDR4 support, or roughly 1.5x better logic-per-watt efficiency from the 20 nm process. Cyclone V remains a viable lower-cost option for designs that only need 5 Gbps transceivers and DDR3 memory interfaces.
Where to download the 10CX085YF672I6G datasheet PDF?
Download the 10CX085YF672I6G datasheet from the official Intel product page at https://www.altera.com/products/fpga/cyclone/10/gx/10cx085-f672/10CX085YF672I6G. The Cyclone 10 GX device family datasheet, pin-out files, and Quartus Prime device support are also available from the Intel FPGA documentation hub.
What is the pinout of the 10CX085YF672I6G?
The 10CX085YF672I6G pinout is documented in the Intel Cyclone 10 GX device family pin-out file (F672 package variant). Pin-out files include per-ball I/O bank assignments, transceiver channel mapping, and dedicated configuration pin functions. The ball map for F672 places pin A1 at the top-left of the BGA with standard counter-clockwise numbering.
Is the 10CX085YF672I6G suitable for industrial applications?
Yes. The 10CX085YF672I6G is offered in the industrial temperature grade (-40C to +100C junction) and supports the DDR3/DDR4 industrial-grade memory interfaces required in factory automation, motor control, and ruggedized video bridging. For extended temperature requirements (-40C to +125C), consider the 10CX085YF672E6G variant.
What tools are required to design with the 10CX085YF672I6G?
Design the 10CX085YF672I6G using Intel Quartus Prime Lite or Pro Edition software. Quartus Prime provides synthesis, place-and-route, timing analysis, and the Platform Designer IP catalog. Programming is done via JTAG using an Intel FPGA Download Cable II or compatible third-party programmer.
Can the Lattice ECP5-85F be a drop-in replacement for the 10CX085YF672I6G?
No. The Lattice ECP5-85F uses a 256-ball caBGA or 484-ball fpBGA package that is not pin-compatible with the Intel 672-FBGA used by the 10CX085YF672I6G. PCB redesign is required. The ECP5 supports only 5 Gbps transceivers versus 12.5 Gbps on the Cyclone 10 GX, so it cannot replicate high-bandwidth protocol bridges without changing the system architecture.
What are the key specifications of the 10CX085YF672I6G that engineers should know?
The 10CX085YF672I6G integrates 85,000 logic elements, 5,959,680 bits of embedded memory, 156 18x19 DSP multipliers, 216 maximum user I/Os, and hardened transceivers up to 12.5 Gbps in a 672-FBGA package. Per the Intel Cyclone 10 GX datasheet, the device supports DDR3/DDR4/LPDDR3 with hard PHY, PCIe Gen2 hard IP, and operates on a 0.9V core supply at industrial temperature grade.

Engineering reference data for 10CX085YF672I6G — comparison, design guidance, and compliance information.

Selection Guide

Choose the 10CX085YF672I6G when your design needs 12.5 Gbps multi-protocol transceivers (10GbE, CPRI, 12G-SDI, PCIe Gen2) within a 85K logic-element budget and a 672-ball BGA footprint. Choose the 10CX085YF672I5G for slightly slower timing closure at lower cost, the 10CX085YF672E6G for extended temperature operation (-40C to +125C), or the 10CX085YF672E5G for both extended temperature and -5 speed grade. There is no equivalent cross-brand drop-in replacement in the F672 package - migrating to Lattice ECP5 or Xilinx Spartan-7 requires PCB redesign because the BGA footprints and ball assignments differ. For designs that do not need high-speed transceivers, migrate down to the Cyclone 10 LP family (e.g., 10CL080ZF484I8G) for lower cost and simpler PCB implementation.

Comparison with Alternatives

Parameter This Product 10CX085YF672I5G 10CX085YF672E6G 10CX085YF672E5G 10CX085YF672A7G
Brand Intel Intel Intel Intel Intel
Package 672-FBGA (F672) 672-FBGA (F672) - same 672-FBGA (F672) - same 672-FBGA (F672) - same 672-FBGA (F672) - same
Logic Elements 85,000 85,000 85,000 85,000 85,000
Speed Grade -6 -5 -6 -5 -7
Temperature Grade Industrial Industrial Extended Extended Automotive / Industrial
Embedded Memory Bits 5,959,680 5,959,680 5,959,680 5,959,680 5,959,680
Transceiver Rate 12.5 Gbps 12.5 Gbps 12.5 Gbps 12.5 Gbps 12.5 Gbps
DSP Multipliers (18x19) 156 156 156 156 156

Key Differentiators

  • Higher transceiver data rate than same-density Cyclone V GX parts (vs 5CGXFC5C6F27I7G (Cyclone V GX 85K LE equivalent))
  • Hardened DDR4 memory controller not available in Cyclone 10 LP family (vs 10CL080YU484I7G (Cyclone 10 LP 80K LE))
  • Hard PCIe Gen2 endpoint IP eliminates soft-core overhead (vs Xilinx Spartan-7 XC7S75 (same density class))

Design Notes

The 672-FBGA package requires either microvia (via-in-pad) PCB technology or a 0.8 mm pitch dog-bone fan-out. Estimated: on a 4-layer stack-up with 1 oz copper, expect 8 signal layers with HDI microvias to fully escape the F672 BGA at 1.0 mm pitch. Maintain a continuous ground plane under the package and stitch vias around the perimeter at 1 mm spacing to control return paths for 12.5 Gbps transceivers. Use length-matched differential pairs for transceiver channels, with intra-pair skew under 1 ps.

Cyclone 10 GX transceivers at 12.5 Gbps can push total device power to 8-15 W depending on utilization. Estimated: at 85% utilization with 8 active transceiver channels, plan for a 4-layer PCB with at least 25 cm^2 of unbroken inner-plane copper under the package and consider a 0.5 mm thick thermal pad or top-side heatsink for fanless operation. Derate junction temperature to 100C max for industrial-grade reliability and 125C only with proper airflow. Refer to the Intel Cyclone 10 GX thermal modeling file for accurate per-design junction-temperature estimation.

Do not assume the Cyclone 10 GX F672 pinout is compatible with Cyclone V GX F672 devices - the bank architecture, transceiver channel mapping, and configuration pin assignments differ. Also note that migrating from speed grade -6 to -5 reduces Fmax by approximately 10-15% on memory interfaces and DSP blocks; always re-run timing analysis. When using hard PCIe Gen2 endpoint IP, ensure the reference-clock input meets the 100 MHz +/-300 ppm tolerance required by the PCIe Base Specification 2.1.

For 12.5 Gbps transceiver channels, use a PCB stack-up with low-loss dielectric (Df under 0.005 at 5 GHz) such as Isola FR408HR or Panasonic MEGTRON 6. Estimated: at 12.5 Gbps on a 6-inch trace, expect 1.2-1.5 dB insertion loss from a typical low-loss stack-up. Implement AC coupling capacitors (typically 100 nF 0402) on every transceiver TX and RX lane, placed close to the FPGA ball. Reference Intel Application Note AN-831 for the canonical transceiver PCB layout guidelines.

Compliance Information

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

RoHS and REACH compliant per Intel product page. Industrial temperature grade -40C to +100C junction. For automotive AEC-Q100 requirements consider the 10CX085YF672A7G variant (verify per Intel PCN).

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 10CX085YF672I6G 10CX085YF672I5G 10CX085YF672E6G 10CX085YF672E5G 10CX105YF672I6G 10CL080YF484I7G 10CL080ZF484I8G Cyclone 10 GX Cyclone 10 LP FPGA Field-Programmable Gate Array programmable logic configurable logic device BGA package 672-FBGA FBGA 12.5 Gbps transceiver PCIe Gen2 DDR4 DDR3 LPDDR3 DSP multiplier M20K memory ALM (Adaptive Logic Module) Quartus Prime JTAG industrial temperature grade AEC-Q100 RoHS REACH 20 nm process logic element machine vision industrial Ethernet EtherCAT PROFINET PCIe endpoint IP CPRI 10 Gigabit Ethernet 12G-SDI
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