10CX220YF780E6G - Cyclone 10 GX 220K LE FPGA | Intel | 780-FCBGA
MPN: 10CX220YF780E6G ✓ Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $2450 | $2,450.00 |
| 10 | $2280 | $22,800.00 |
| 100 | $2050 | $205,000.00 |
| 250 | $1880 | $470,000.00 |
| 500 | $1720 | $860,000.00 |
Drop-in alternatives for 10CX220YF780E6G — same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.
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10CX220YF780E5G
✅ Drop-In✓ In Stock
$615 / Unit
View Datasheet →10CX220YF780I6G
✅ Drop-In ⚠️ 参数待验证✓ In Stock
$121.83 / Unit
View Datasheet →10CX220YF780I5G
✅ Drop-In ⚠️ 参数待验证✓ In Stock
$1995 / Unit
View Datasheet →10CX150YF780E6G
✅ Drop-In✓ In Stock
$575 / Unit
View Datasheet →10CX150YF780I6G
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$325 / Unit
View Datasheet →10CX105YF780E6G
✅ Drop-In✓ In Stock
$580 / Unit
View Datasheet →10CX220YF780E6G Maximum Ratings & Electrical Characteristics
| Family | Cyclone 10 GX |
| Process Technology | 20 nm |
| Logic Elements (LE) | 220,000 |
| Embedded Memory (M20K) | 13,752,320 bits (~1.64 MBytes) |
| DSP Blocks (18x18 Multipliers) | 284 |
| Transceivers | Up to 12 channels, up to 12.5 Gbps |
| Hard PCIe Controller | PCIe Gen2 x4 (hard IP) |
| Package | 780-ball FCBGA (F780), 29 mm x 29 mm, 1.0 mm pitch |
| Operating Temperature Grade | Industrial (-40C to +100C junction) |
| Core Voltage (VCC) | 0.9 V |
| Auxiliary Voltage (VCCPT) | 1.1 V |
| I/O Voltage Standards | LVDS, LVCMOS, SSTL, HSTL (per pin) |
| Mounting Type | Surface Mount (BGA) |
| RoHS / Lead-Free | Yes (lead-free finish) |
| Design Software | Intel Quartus Prime |
10CX220YF780E6G 780-ball fcbga (f780), 29 mm x 29 mm, 1.0 mm pitch Pin Configuration Guide
Complete pinout information for 10CX220YF780E6G (780-ball fcbga (f780), 29 mm x 29 mm, 1.0 mm pitch 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 10CX220YF780E6G.
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
10CX220YF780E6G is suitable for 7 applications: Industrial Machine Vision over CoaXPress / GigE Vision, Video Broadcast Processing up to 4K60, Wireline Telecom Line Cards (CPRI / OBSAI Backhaul), Industrial Motor Control and Drive Systems, PCIe Gen2 Endpoint Test & Measurement Cards, Software-Defined Radio (SDR) Front Ends, Medical Imaging Acquisition Boards.
Industrial Machine Vision over CoaXPress / GigE Vision
The 10CX220YF780E6G is well suited to multi-channel industrial machine vision frames where 6.25 Gbps CoaXPress or 1 Gbps GigE Vision streams must be aggregated and preprocessed in real time. Its 12 transceiver channels provide ample headroom for four CoaXPress links plus dual Gigabit Ethernet control paths, while the 220K logic elements and 284 DSP blocks sustain Bayer demosaic, color correction, and edge detection at full frame rate. The 13.75 Mbits of M20K memory acts as line buffers, eliminating external SRAM and shrinking the BOM. Industrial temperature grade (-40C to +100C junction) lets the board sit in factory cabinets with no airflow.
Recommended
Video Broadcast Processing up to 4K60
Broadcast studios moving 4K60 video between SDI, HDMI 2.0, and IP networks use the 10CX220YF780E6G as a protocol bridge and frame-store. The 12.5 Gbps transceivers handle 12G-SDI (SMPTE 2082) directly, while 220K logic elements plus 284 DSP blocks run scaling, deinterlacing, and HDR tone-mapping in a single device. The 13.75 Mbits of M20K memory holds three full 4K frames for picture-in-picture and logo insertion. Hard PCIe Gen2 x4 controller streams encoded video to a host CPU or capture card at full line rate. Industrial temperature grade ensures stable operation in 24/7 broadcast racks.
Recommended
Wireline Telecom Line Cards (CPRI / OBSAI Backhaul)
In LTE/5G fronthaul designs, the 10CX220YF780E6G terminates CPRI (Common Public Radio Interface) or OBSAI links from remote radio heads at up to 9.83 Gbps per lane. Twelve transceiver channels carry enough fronthaul streams to aggregate three sectors of a 4T4R radio, with the remaining channels reserved for backhaul Ethernet or synchronization distribution. The DSP blocks handle IQ sample rate conversion and crest-factor reduction, while the hard PCIe Gen2 x4 controller bridges to the baseband card. Industrial temperature grade and the 780-FCBGA's robust power/ground balls make the device telecom-grade for central-office deployments.
Recommended
Industrial Motor Control and Drive Systems
Variable-frequency drives (VFDs) and servo controllers use the 10CX220YF780E6G to run field-oriented control (FOC) loops at 50-100 kHz with deterministic latency. The 284 (18x18) DSP blocks sustain Clarke/Park transforms, space-vector PWM, and SINC filtering; the 12 transceiver channels drive multi-axis daisy-chained feedback (BiSS, EnDat, SSI over RS-485 transceivers); and the hard PCIe Gen2 controller links to an industrial PC for HMI (human-machine interface) data. Industrial temperature grade (-40C to +100C junction) is critical for drive cabinets at 60C ambient. The 780-FCBGA provides ample ground pins for the high dI/dt switching nodes.
Recommended
PCIe Gen2 Endpoint Test & Measurement Cards
Test and measurement cards - protocol analyzers, logic analyzers, and high-speed digitizers - use the 10CX220YF780E6G as the capture-and-stream engine. The hard PCIe Gen2 x4 controller pushes 2 GB/s to the host CPU without consuming fabric resources. The 12 transceiver channels feed in serialized ADC data at up to 12.5 Gbps, while the 284 DSP blocks perform on-FPGA FFTs, decimation, and trigger detection. The 13.75 Mbits of M20K memory serves as deep capture memory between triggers. Quartus Prime's PCIe hard IP reduces design time and guarantees compliance with PCI-SIG Gen2 specs.
Recommended
Software-Defined Radio (SDR) Front Ends
Software-defined radio platforms benefit from the 10CX220YF780E6G's combination of 12.5 Gbps transceivers (for ADC/DAC sample streams at up to 6 GSPS), 220K logic elements for digital down/up-conversion, and 284 DSP blocks for channelization and pulse shaping. The hard PCIe Gen2 x4 controller streams IQ samples to a host CPU running GNU Radio or MATLAB. Industrial temperature grade lets the SDR operate in field-deployed enclosures. The 780-FCBGA's 1.0 mm pitch keeps the board form factor under 100 mm x 100 mm for portable manpack radios.
Recommended
Medical Imaging Acquisition Boards
Medical imaging modalities - ultrasound, endoscopy, and intra-operative imaging - use the 10CX220YF780E6G to handle multi-channel data acquisition with low latency. The 12 transceiver channels carry serialized LVDS from analog-front-end ADCs at up to 12.5 Gbps, while the 284 DSP blocks execute beamforming (ultrasound) or color-space conversion (endoscopy) in real time. The hard PCIe Gen2 x4 controller streams processed frames to the host workstation for display. Industrial temperature grade and Intel's long-life commitment to Cyclone 10 GX make the device attractive for IEC 60601-1 medical designs requiring multi-year production stability.
Recommended
Recommended Products Summary
Engineering reference data for 10CX220YF780E6G — comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | 10CX220YF780E5G | 10CX220YF780I6G | 10CX220YF780I5G | 10CX150YF780E6G | 10CX150YF780I6G | 10CX105YF780E6G |
|---|---|---|---|---|---|---|---|
| Brand | Intel (Altera) | Intel (Altera) | Intel (Altera) | Intel (Altera) | Intel (Altera) | Intel (Altera) | Intel (Altera) |
| Package | 780-FCBGA (F780) | 780-FCBGA (F780) | 780-FCBGA (F780) | 780-FCBGA (F780) | 780-FCBGA (F780) | 780-FCBGA (F780) | 780-FCBGA (F780) |
| Logic Elements | 220,000 | 220,000 | 220,000 | 220,000 | 150,000 | 150,000 | 105,000 |
| Embedded Memory | 13,752,320 bits | 13,752,320 bits | 13,752,320 bits | 13,752,320 bits | 8,475,840 bits | 8,475,840 bits | 5,662,720 bits |
| DSP Blocks (18x18) | 284 | 284 | 284 | 284 | 156 | 156 | 125 |
| Transceivers (max) | 12 ch @ 12.5 Gbps | 12 ch @ 12.5 Gbps | 12 ch @ 12.5 Gbps | 12 ch @ 12.5 Gbps | 12 ch @ 12.5 Gbps | 12 ch @ 12.5 Gbps | 12 ch @ 12.5 Gbps |
| Speed Grade | -6 (fastest) | -5 | -6 | -5 | -6 | -6 | -6 |
| Temperature Grade | Industrial (-40C to +100C) | Industrial | Industrial | Industrial | Industrial | Industrial | Industrial |
| Unit Price (USD, qty 1) | ~$2,450 | [DATA_NEEDED] | [DATA_NEEDED] | [DATA_NEEDED] | ~$1,650 | [DATA_NEEDED] | ~$1,200 |
Key Differentiators
- Highest transceiver-per-watt value in the Cyclone 10 GX family (vs 10CX150YF780E6G)
- Same F780 footprint across speed grades enables design reuse (vs 10CX220YF780E5G)
- Hard PCIe Gen2 x4 IP saves 15-25K logic elements (vs Cyclone 10 LP (10CL120YF780I7G))
- 12.5 Gbps transceivers at Intel Cyclone price point (vs Xilinx Kintex-7 (XC7K160T-1FFG676C))
Design Notes
The 780-FCBGA uses a 1.0 mm ball pitch on a 29 mm x 29 mm body. PCB escape routing needs a 12-layer stack-up with at least 4 layers dedicated to GND planes to control impedance on the 12.5 Gbps transceiver channels. Use Intel's Cyclone 10 GX pin connection guidelines to assign VCC (0.9 V), VCCPT (1.1 V), VCCR (transceiver analog 1.1 V), and VCCT (transceiver digital 1.1 V) rails, each with the recommended per-pin decoupling schedule (typically 0.1 uF and 1 uF ceramic + bulk polymer). Route each transceiver pair with 100 ohm differential impedance and intra-pair skew < 2 ps. Failure to follow these guidelines is the #1 cause of intermittent link-up failures at 10+ Gbps.
At full transceiver utilization (12 channels at 10.3125 Gbps) the 10CX220YF780E6G can dissipate 9-12 W. The 780-FCBGA's thermal pad (or center ball array) should be soldered to a 6 mm x 6 mm copper pour on the top layer and stitched with thermal vias (0.3 mm drill, 0.5 mm pitch) to internal ground planes. A 1.0 mm thick aluminum heatsink with thermal interface material rated for 3 W/mK is recommended for convection-cooled industrial enclosures. Estimated: with theta_JA around 12 C/W (still air, no heatsink), full-load power of 10 W yields 120 C junction temperature rise above 25 C ambient, exceeding the 100 C industrial limit - active cooling or derating is required.
Do not assume the 10CX220YF780E6G and 10CX220YF780E5G have the same timing margin - the -6 grade is the fastest in the family and the -5 grade has reduced fMAX on fabric paths. A design that compiles on -6 may not meet timing on -5. Conversely, do not mix -6 and -5 parts in the same multi-FPGA board unless your design has been timing-closed against the slower grade. Quartus Prime's design assistant will catch this if you enable 'multi-corner timing analysis' before compilation.
The 12 transceiver channels share a common PLL (phase-locked loop) reference clock; if you operate them at different data rates, ensure the PLL's VCO frequency covers all desired rates (the Cyclone 10 GX ATX PLL supports 6.0-12.5 Gbps). Use Intel's Transceiver Toolkit during bring-up to verify eye height/width at the receiver pins - the tool's bathtub curve plot will reveal whether channel loss, crosstalk, or reflection is degrading your link margin.
Compliance Information
RoHS/lead-free confirmed by 'E' suffix and 'G' lead-free finish designation in the MPN. Industrial temperature grade (-40C to +100C junction) per Cyclone 10 GX family datasheet. Halogen-free status not explicitly stated in distributor snippets - left as 'unknown' rather than assumed. AEC-Q100 is not applicable for FPGAs.