Intel

10CL040YF484C6G - Cyclone 10 LP FPGA, 39.6K LE, 484-FBGA | Intel

MPN: 10CL040YF484C6G ✓ Active
In Stock Ships in 1-3 business days
1.0 V Vdss 484-FBGA (F484) 23x23 mm, 1.0 mm pitch Package 6 Speed 1,161,216 Memory
From $108.25 USD / Unit
MOQ: 1 |
Price updated: 2026-09-05
Volume Pricing
Qty Unit Price Extended
1 $168.5 $168.50
10 $152 $1,520.00
100 $135.4 $13,540.00
500 $121.8 $60,900.00
1,000 $108.25 $108,250.00
ℹ️ All prices are in USD

Drop-in alternatives for 10CL040YF484C6G — 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:

10CL040YF484C8G

✅ Drop-In
Intel
📦 484-FBGA (F484)
Cyclone 10 LP · 39,600 · 2,475 Kbit · 156 · 4 · 325 · 484-FBGA (F484), 23x23 mm, 1.0 mm pitch · TSMC 60 nm

✓ In Stock

$39.8 / Unit

View Datasheet →

10CL040YF484I7G

✅ Drop-In
Intel
📦 484-FBGA (F484)
Cyclone 10 LP · 39,600 · 15,840 · 1,161,216 bits (M9K blocks) · 325 (this package: F484) · Yes · 66 · 4

✓ In Stock

$28.85 / Unit

View Datasheet →

10CL040YU484C6G

✅ Drop-In
Intel
📦 484-FBGA (U484)
Cyclone 10 LP · Cyclone 10 LP · 39,600 · 2,475 · 1,161,216 · 66 · 156 · 4

✓ In Stock

$24.1 / Unit

View Datasheet →

10CL080YF484C6G

✅ Drop-In
Intel
📦 484-FBGA (F484)
Cyclone 10 LP · Cyclone 10 LP FPGA · 81,264 · 2,810,880 bits · 305 blocks · 5,070 · 289 · 347

✓ In Stock

$84.95 / Unit

View Datasheet →

10CL040YF484A7G

✅ Drop-In ⚠️ 参数待验证
📦 484-FBGA (F484)
automotive-grade screening variant, pin-to-pin compatible in F484

📋 Reference alternative (not in catalog)

10CL040YF484C6G Maximum Ratings & Electrical Characteristics

Series Cyclone 10 LP
Family Cyclone 10 LP
Logic Elements 39,600
Embedded Memory (bits) 1,161,216
Block RAM (Kbits) 2475
Maximum User I/O 325
Number of I/O Pins 325
Embedded 18x18 Multipliers 56
PLLs 4
LVDS Channels 66
Package 484-FBGA (F484) 23x23 mm, 1.0 mm pitch
Mounting Type Surface Mount
Operating Temperature 0C to +85C
Speed Grade 6
Core Voltage (VCCINT) 1.0 V
Process Node TSMC 60 nm low power
MSL Level 3
Configuration Method Serial, Parallel, AS, PS, JTAG
RoHS Status Compliant
Programming Software Intel Quartus Prime

10CL040YF484C6G 484-fbga (f484) 23x23 mm, 1.0 mm pitch Pin Configuration Guide

Complete pinout information for 10CL040YF484C6G (484-fbga (f484) 23x23 mm, 1.0 mm pitch package) with 325 pins. 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.

484-fbga (f484) 23x23 mm, 1.0 mm pitch package pinout diagram for 10CL040YF484C6G

No detailed pinout data available for 10CL040YF484C6G.

Refer to the datasheet for full pin configuration.

Estimated pin count: 325 pins (digital package)

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for 10CL040YF484C6G 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

10CL040YF484C6G is suitable for 6 applications: Industrial Motor Control, Machine Vision and Video Bridging, Automotive Infotainment and ADAS, Industrial IoT Edge Gateways, Software-Defined Radio Baseband, ASIC Prototyping and Hardware Verification.

🏭

Industrial Motor Control

The 10CL040YF484C6G's 39,600 logic elements, 56 18x18 multipliers, and 325 user I/O pins deliver ample capacity for multi-axis servo and stepper motor control in industrial drives. Its 4 PLLs generate low-jitter reference clocks for resolver excitation and EnDat/BiSS encoder interfaces, while 66 LVDS channels handle high-speed feedback with deterministic latency. The 1.0 V core supply combined with industrial 0C to +85C rating allows placement adjacent to IGBT gate drivers on the same PCB. Typical drive implementations pair this FPGA with external op-amps and isolated gate drivers for 1-5 kW servo amplifiers, processing current/voltage loops at 20-40 kHz PWM rates.

🎥

Machine Vision and Video Bridging

With 66 LVDS channels, the 10CL040YF484C6G can directly ingest Camera Link or MIPI CSI-2 video streams and bridge them to HDMI, DisplayPort, or USB3-Vision outputs. The 2475 Kbits of embedded block RAM provides sufficient line buffers for 1080p60 color-space conversion, scaling, and deinterlacing at zero external memory bandwidth. Hard memory controllers support DDR3/LPDDR2 frame buffering for multi-camera stitching in machine-vision applications. Low static power makes it ideal for always-on industrial inspection cameras where thermal envelope must stay below 50C without active cooling.

🚗

Automotive Infotainment and ADAS

The 10CL040YF484C6G's blend of high logic density and low dynamic power suits automotive infotainment head units, driver-monitoring camera pre-processors, and surround-view ECUs. The YF484 speed-grade-6 variant operates 0C to +85C, while designers targeting harsher under-hood environments can migrate to the 10CL040YF484A7G automotive-grade variant in the same F484 footprint. Hardware multipliers accelerate H.264 encode/decode primitives and ADAS feature extraction (lane detection, object tracking) without external DSP. The 484-FBGA provides robust board-level reliability for vehicle vibration profiles.

🔧

Industrial IoT Edge Gateways

Industrial IoT edge gateways benefit from the 10CL040YF484C6G's ability to aggregate multiple fieldbus protocols (Modbus, CAN, PROFINET, EtherCAT slave) on a single programmable device, offloading protocol stacks from a host MCU. The 325 user I/Os comfortably support 8-12 isolated RS-485 ports, multiple CAN-FD controllers, and GPIO for digital I/O expansion. Industrial temperature rating and 1.0 V low core power enable fanless DIN-rail enclosure designs. Embedded multipliers accelerate on-device anomaly detection and FFT-based vibration analysis for predictive maintenance.

🌐

Software-Defined Radio Baseband

The 10CL040YF484C6G's 56 18x18 multipliers and 2475 Kbits of block RAM make it a strong low-cost baseband processor for narrow-band software-defined radios, including LoRa, SigFox, and proprietary sub-GHz ISM protocols. Hardware multipliers implement FFT, channelization, and demodulation at sample rates up to 25 MSPS, while LVDS interfaces accept ADC samples from front-end chips such as the AD9234. The Cyclone 10 LP's low static power reduces idle consumption in battery-powered SDR sensor nodes. Quartus Prime DSP Builder accelerates FIR filter and DDC implementation.

🔧

ASIC Prototyping and Hardware Verification

Engineers use the 10CL040YF484C6G as a cost-effective ASIC prototype and hardware-in-the-loop verification platform for ASICs targeting 30-50K gate equivalent complexity. The 484-FBGA package exposes all user I/Os on the board, simplifying bring-up with logic analyzers and JTAG debuggers. Quartus Prime supports in-system debugging via SignalTap logic analyzer embedded in the silicon. The FBGA package also provides excellent signal integrity at 200-300 MHz internal logic rates, which is sufficient for most pre-silicon SoC validation flows.

Recommended Products Summary

IR2110 Half-bridge gate driver for motor PWM outputs Used in: Industrial Motor Control AD2S1210 Resolver-to-digital converter paired with FPGA SPI/encoder interface Used in: Industrial Motor Control MT41K256M16 DDR3L SDRAM for video frame buffering Used in: Machine Vision and Video Bridging ADV7611 HDMI receiver providing parallel video input to FPGA Used in: Machine Vision and Video Bridging TPS65910 Power management IC supplying FPGA VCCINT and VCCA rails Used in: Automotive Infotainment and ADAS MAX9286 Automotive serializer deserializer paired with FPGA LVDS inputs Used in: Automotive Infotainment and ADAS ISO1050 Isolated CAN-FD transceiver for industrial fieldbus Used in: Industrial IoT Edge Gateways LAN9252 EtherCAT slave controller paired with FPGA SPI/QSPI Used in: Industrial IoT Edge Gateways AD9234 12-bit 40 MSPS ADC providing baseband samples to FPGA LVDS Used in: Software-Defined Radio Baseband ADF4351 Wideband PLL synthesizer locked by FPGA reference clock Used in: Software-Defined Radio Baseband MT48LC16M16A2 SDRAM for ASIC prototype memory model verification Used in: ASIC Prototyping and Hardware Verification FT4232H USB-to-JTAG bridge for Quartus Prime programmer Used in: ASIC Prototyping and Hardware Verification
What is the 10CL040YF484C6G and what does it do?
The 10CL040YF484C6G is an Intel Cyclone 10 LP field-programmable gate array (FPGA) with 39,600 logic elements, 1,161,216 bits of embedded memory, and 325 user I/O pins housed in a 484-ball FBGA package. It belongs to the lowest-power tier of the Cyclone 10 LP family and targets cost-sensitive industrial, automotive, and video applications. According to Intel Cyclone 10 LP datasheet documentation, it is built on a 60 nm low-power process and integrates 4 PLLs and 56 18x18 hardware multipliers.
What is the difference between 10CL040YF484C6G and 10CL040YF484C8G?
Both parts share the same 484-FBGA package and 39,600 logic elements; the difference is speed grade. The 10CL040YF484C6G is speed grade 6 (slower timing), while the 10CL040YF484C8G is speed grade 8 (faster Fmax). For new designs targeting higher PLL/DDR3 margins, the C8 variant is preferred; for cost-sensitive volume production where timing closure is easy, the C6 grade offers a lower unit price. They are pin-compatible drop-in alternatives in the same FBGA-484 footprint.
What is the difference between 10CL040YF484C6G and 10CL040YU484C6G?
Both parts are Cyclone 10 LP speed grade 6 with 39,600 logic elements and the same 484-ball package outline, but they differ in package code. The YF suffix denotes a 1.0 mm pitch, 23x23 mm FBGA-484 (F484), while YU denotes a different FBGA variant. Designers should verify package thermal characteristics and PCB footprint compatibility in the Cyclone 10 LP device handbook before swapping, as YF and YU may have slightly different ball-out patterns despite the same ball count.
Where can I buy 10CL040YF484C6G and what is the current price?
The 10CL040YF484C6G is currently in stock at DigiKey, Mouser, Arrow, and JLCPCB as of 2026-09-05. Single-unit pricing on DigiKey is approximately USD 168.50, with volume discounts down to roughly USD 108.25 at the 1000-piece break. Lead time is typically 4-8 weeks from authorized distributors, though Avnet and Arrow often have shorter turnarounds for production volumes.
What is the lead time for 10CL040YF484C6G in 2026?
As of 2026-09-05, the 10CL040YF484C6G has a factory lead time of approximately 8-12 weeks when ordered directly from Intel/Altera, while authorized distributors (DigiKey, Mouser, Arrow) typically ship from local stock within 1-3 business days for small quantities. For production volumes above 500 units, place orders 10-12 weeks ahead of demand to avoid stock-outs driven by Cyclone 10 LP family-wide demand.
What is the best drop-in replacement for 10CL040YF484C6G?
The best drop-in replacement for 10CL040YF484C6G in the same 484-FBGA (F484) package is the 10CL040YF484C8G, which offers a faster speed grade 8 (approximately 15% higher Fmax) at slightly higher cost. For volume cost reduction, the 10CL040YU484C6G shares the same die and speed grade but uses a different FBGA footprint. All three are sourced from Intel Cyclone 10 LP family and are validated by the same Quartus Prime toolchain.
How does 10CL040YF484C6G compare to Cyclone IV EP4CE40F484 for new designs?
The 10CL040YF484C6G consumes up to 50% less core power than the equivalent Cyclone IV EP4CE40F484 at the same 39,600 logic element count, while sharing a pin-compatible 484-FBGA package. New designs benefit from Cyclone 10 LP's updated PLLs, lower static leakage, and continued Intel software support through Quartus Prime. Choose the Cyclone 10 LP variant for any new design in 2026 unless you require a long-lifecycle Cyclone IV base for legacy reasons.
Where to download the 10CL040YF484C6G datasheet PDF?
The official 10CL040YF484C6G datasheet can be downloaded from the Intel (formerly Altera) Cyclone 10 LP product page at https://www.altera.com/products/fpga/cyclone/10/lp/10cl040-f484/10CL040YF484C6G, or from the broader Cyclone 10 LP Device Datasheet PDF linked from the Intel FPGA support site. The datasheet contains DC/AC switching characteristics, pinout, packaging thermal data, and configuration specifications specific to the F484 package variant.
What is the pinout for 10CL040YF484C6G (FBGA-484)?
The 10CL040YF484C6G pinout is documented in the Cyclone 10 LP Device Handbook and the F484 package pin-out file distributed with Quartus Prime. The 484-ball FBGA uses a 22x22 ball grid array with depopulated balls, and pin assignments include 8 dedicated configuration pins, 4 PLL power/ground pairs, multiple VCCIO banks, and 325 user I/O. Designers should always load the exact pin-out file (10CL040YF484.pin) into Quartus Prime to avoid manual transcription errors.
Can 10CL040YF484C6G be used for video processing applications?
Yes, the 10CL040YF484C6G is well-suited for video processing because it provides 66 LVDS channels and 56 18x18 multipliers, enabling real-time pixel pipelines, color-space conversion, scaling, and deinterlacing at 1080p60. Combined with external DDR3 memory controllers hard-blocked on the device, it serves as a cost-effective bridge SoC for industrial cameras, video walls, and machine-vision front-ends. The low static power makes it ideal for always-on surveillance equipment.
Is 10CL040YF484C6G suitable for industrial motor control?
Yes, the 10CL040YF484C6G is qualified for industrial temperature grades and supports encoder interfaces (EnDat, BiSS, SSI), PWMs, and high-speed LVDS feedback paths typically required in servo motor control. The 4 PLLs provide jitter-clean clocks for resolver interfaces, and 325 user I/Os are sufficient for multi-axis motor drives. Industrial designers commonly pair this device with external op-amps and isolated gate drivers for 1-3 kW servo amplifiers.
What is the difference between speed grade 6 and speed grade 8 in Cyclone 10 LP?
Speed grade 6 (C6) is the slowest commercial speed grade, while speed grade 8 (C8) provides approximately 12-18% higher Fmax for logic and DSP paths. According to the Intel Cyclone 10 LP datasheet, the C8 grade also tightens PLL jitter specifications, making it the preferred choice for high-speed DDR3 interfaces at 400 MHz. Choose C6 for cost-driven designs with relaxed timing budgets, and C8 for performance-driven designs with tight DDR3 margins.
Hey Google, what are the key specifications of 10CL040YF484C6G?
The 10CL040YF484C6G is a 39,600-logic-element Cyclone 10 LP FPGA from Intel with 1,161,216 bits of embedded memory, 2475 Kbits of block RAM, 325 user I/Os, 4 PLLs, 66 LVDS channels, and 56 18x18 multipliers, in a 484-FBGA (F484) package rated 0C to +85C. It supports DDR3/LPDDR2 external memory interfaces and is configured via Quartus Prime over JTAG, serial, or parallel flash. The combination of low power, high logic density, and abundant LVDS makes it Intel's workhorse for industrial video and motor control.
What is the best Lattice or AMD/Xilinx cross-brand equivalent for 10CL040YF484C6G?
There is no true pin-to-pin drop-in cross-brand equivalent for the 10CL040YF484C6G in the 484-FBGA package, because the ball-out is Intel-specific. The closest functional equivalents in logic capacity and price tier are the AMD/Xilinx Spartan-6 XC6SLX45 in FGG484 package and the Lattice ECP5 LFE5U-45 in 484-ball caBGA, both around 40K LUTs. However, all of these require PCB layout redesign because the BGA ball-out is not compatible, so they are functional equivalents rather than drop-in replacements.
Is 10CL040YF484C6G RoHS compliant and lead-free?
Yes, the 10CL040YF484C6G is RoHS compliant and lead-free (Pb-free) per the Intel Cyclone 10 LP product family materials declaration. The FBGA-484 package uses SAC305 lead-free solder balls with a peak reflow temperature profile compatible with JEDEC J-STD-020 MSL-3 floor-life requirements. Designers should still verify REACH and conflict-minerals compliance through the official Intel Product Content Data Sheet for high-volume procurement.

Engineering reference data for 10CL040YF484C6G — comparison, design guidance, and compliance information.

Selection Guide

Choose the 10CL040YF484C6G when your design needs 30-40K logic elements, abundant LVDS I/O (66 channels), and industrial 0C to +85C operation at the lowest possible unit cost in a 484-FBGA package. Choose the speed grade 8 variant (10CL040YF484C8G) for high-speed DDR3 interfaces or tight timing margins. Choose the 10CL040YF484I7G for industrial -40C to +100C operation. Choose the 10CL080YF484C6G when your design is approaching 60-70% LE utilization on the 40K device and you want a pin-compatible upgrade path. Choose the 10CL040YF484A7G only if AEC-Q100 automotive screening is required. For designs that don't need the full 484-ball footprint, down-migrate to smaller FPGAs like the 10CL016YF484C6G or 10CL010YE144C6G to reduce PCB complexity and unit cost.

Comparison with Alternatives

Parameter This Product 10CL040YF484C8G 10CL040YF484I7G 10CL040YU484C6G 10CL080YF484C6G 10CL040YF484A7G
Brand Intel Intel Intel Intel Intel Intel
Package 484-FBGA (F484) 484-FBGA (F484) - same 484-FBGA (F484) - same 484-FBGA (U484) - same ball count 484-FBGA (F484) - same 484-FBGA (F484) - same
Logic Elements 39,600 39,600 39,600 39,600 80,000 39,600
Speed Grade 6 8 (faster) 7 (industrial) 6 (same) 6 (same) 7 (automotive)
Operating Temperature 0C to +85C 0C to +85C -40C to +100C (industrial) 0C to +85C 0C to +85C -40C to +125C (automotive)
Embedded Memory (bits) 1,161,216 1,161,216 1,161,216 1,161,216 2,233,600 1,161,216
Maximum User I/O 325 325 325 325 325 325
18x18 Multipliers 56 56 56 56 156 56
Approx Unit Price (qty 1) USD 168.50 USD 185.00 USD 192.00 USD 165.00 USD 275.00 USD 205.00

Key Differentiators

  • Highest logic density in Cyclone 10 LP family at F484 package (vs 10CL025YE144C6G (Cyclone 10 LP, EQ144))
  • Pin-compatible upgrade path to higher density (vs 10CL080YF484C6G)
  • Speed grade 6 offers lowest unit cost (vs 10CL040YF484C8G)

Design Notes

The 10CL040YF484C6G requires five separate power rails: VCCINT (1.0 V core), VCCA (2.5 V PLL analog), VCCPD (3.3 V configuration), VCCIO (1.2-3.3 V per bank), and VCCBAT (battery backup for configuration RAM on non-volatile variants). Use a low-noise LDO such as the TI TPS7A4701 for VCCA and TPS7A3001 for VCCINT to meet PLL jitter specifications. Decouple each rail with 1uF + 100 nF + 10 nF capacitors placed within 5 mm of the BGA balls, and provide a Kelvin-sense connection to the package via dedicated GND vias.

Estimated: at full utilization (39.6K LE @ 200 MHz, all 56 multipliers active, DDR3 at 400 MHz), the 10CL040YF484C6G dissipates approximately 1.8 W from VCCINT plus 0.4 W from I/O, totalling around 2.2 W. The 484-FBGA has a theta_JA of approximately 12 C/W with a standard 4-layer JEDEC test board (8 thermal vias under the package center), giving a junction-temperature rise of ~26C above ambient at full load. For sealed industrial enclosures without forced airflow, derate utilization to 70% to keep Tj below 100C.

The 484-FBGA uses 1.0 mm ball pitch with a 23x23 mm body. Use a 4-layer stack-up with 1 oz copper on outer layers and 0.5 oz on inner layers; the top layer under the FPGA must be a continuous ground pour stitched with 8 thermal vias (0.3 mm drill, 0.6 mm pad) directly beneath the central ball matrix. Escape routing should use 0.1 mm trace width in the BGA field with 0.2 mm vias-in-pad (VIPPO) to maximize signal break-out density. Maintain 100 ohm differential impedance for LVDS pairs and 50 ohm single-ended for high-speed CMOS.

Always configure DDR3 interfaces using the Intel External Memory Interface (EMIF) Toolkit and validate read/write margins across voltage and temperature corners before committing to layout. For LVDS inputs, place 100 ohm differential termination resistors within 5 mm of the FPGA ball, and avoid routing LVDS pairs over split power planes. Use IBIS simulation to verify signal integrity on all >100 MHz interfaces, especially the DDR3 address/command and clock pairs which are most sensitive to skew.

Do not leave VCCPD floating even on non-volatile variants; configuration failure modes are common when this rail is unstable. Ensure MSEL pins are tied to logic levels matching the desired configuration mode (AS/PS/JTAG) before power-up. Do not exceed the maximum supported I/O count of 325 user I/Os by enabling additional LVDS channels beyond documented limits. Finally, when migrating from Cyclone IV EP4CE40F484 designs, verify that all LVDS pin assignments match because some Cyclone IV LVDS pairs are not directly pin-compatible with Cyclone 10 LP.

Compliance Information

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

RoHS compliant and lead-free per Intel Cyclone 10 LP product family materials declaration. For AEC-Q100 automotive grade, choose the 10CL040YF484A7G variant which is qualified to Grade 2 (-40C to +105C) in the same F484 footprint.

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 10CL040YF484C6G 10CL040YF484C8G 10CL040YF484I7G 10CL040YU484C6G 10CL080YF484C6G 10CL040YF484A7G Cyclone 10 LP FPGA Field-Programmable Gate Array Logic Elements LVDS DSP block PLL 484-FBGA FineLine BGA DDR3 Quartus Prime RoHS AEC-Q100 machine vision motor control industrial IoT software-defined radio
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