Intel

10CL040YU484A7G - Cyclone 10 LP FPGA 39.6K LE | Intel

MPN: 10CL040YU484A7G ✓ Active
In Stock Ships in 1-3 business days
1.0 V / 1.2 V Vdss 484-pin FineLine BGA (UBGA), 1.0 mm pitch Package 1,161,216 bits (1.11 Mbit) Memory
From $56.8 USD / Unit
MOQ: 1 |
Price updated: 2026-09-05
Volume Pricing
Qty Unit Price Extended
1 $78.5 $78.50
10 $74.2 $742.00
100 $68.9 $6,890.00
500 $62.4 $31,200.00
1,000 $56.8 $56,800.00
ℹ️ All prices are in USD

Drop-in alternatives for 10CL040YU484A7G — 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:

10CL040YU484C6G

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

✓ In Stock

$24.1 / Unit

View Datasheet →

10CL040YU484C8G

✅ Drop-In
Intel
📦 484-UBGA
Cyclone 10 LP · 39,600 · 1,161,216 · 274 · 66 · 4 · 289 (package-dependent) · 4

✓ In Stock

$32.4 / Unit

View Datasheet →

10CL040YU484I7G

✅ Drop-In
Intel
📦 484-UBGA
Cyclone 10 LP · 39,600 · 2,475 · 1,161,216 bits (M9K blocks) · 66 · 325 · 4 · 1.0 V to 1.2 V

✓ In Stock

$48.75 / Unit

View Datasheet →

10CL040YU484I8G

✅ Drop-In ⚠️ 参数待验证
📦 484-UBGA
Same BGA ball map, industrial temperature grade and slower speed grade 8 (-8) vs A7G — combined temp + speed downgrade, identical die

📋 Reference alternative (not in catalog)

10CL040YU484A7G Maximum Ratings & Electrical Characteristics

Family Cyclone 10 LP
Logic Elements 39,600 LE
Adaptive Logic Modules (ALMs) 15,800
Embedded Memory 1,161,216 bits (1.11 Mbit)
Number of I/Os 325 user I/O
Number of PLLs 4
Embedded Multipliers (18x18) 116
Configuration Memory On-chip flash supported
Package 484-pin FineLine BGA (UBGA), 1.0 mm pitch
Operating Supply Voltage (Core) 1.0 V / 1.2 V
Operating Temperature -40 °C to +125 °C (automotive grade)
Mounting Type Surface Mount (BGA)
Process Node 60 nm low-power
MSL Level MSL3 (per JEDEC J-STD-020)
RoHS Status Compliant

10CL040YU484A7G 484-pin fineline bga (ubga), 1.0 mm pitch Pin Configuration Guide

Complete pinout information for 10CL040YU484A7G (484-pin fineline bga (ubga), 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.

484-pin fineline bga (ubga), 1.0 mm pitch package pinout diagram for 10CL040YU484A7G

No detailed pinout data available for 10CL040YU484A7G.

Refer to the datasheet for full pin configuration.

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for 10CL040YU484A7G 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

10CL040YU484A7G is suitable for 6 applications: Industrial Machine Vision, Motor Control and Servo Drives, Video Processing and Display Controllers, LED Signage and Pixel Mapping, Low-Cost Software-Defined Radio, Industrial IoT Gateways.

🏭

Industrial Machine Vision

The 10CL040YU484A7G is well-suited for industrial machine vision pipelines that ingest MIPI or parallel LVDS image sensor data, perform Bayer demosaicing and edge detection in real time, and output processed frames over GigE Vision. Its 116 18x18 multipliers and 1.11 Mbit embedded memory allow two-dimensional convolution kernels (5x5 Sobel, Gaussian) at 60 fps for 720p streams without external memory. The 325 user I/Os expose up to 12 LVDS pairs, sufficient for direct MIPI-CSI-2 sensor interfacing. The automotive-grade temperature range supports factory floor and outdoor deployments.

🏭

Motor Control and Servo Drives

Field-oriented control (FOC) of three-phase PMSM or BLDC motors demands deterministic PWM generation, fast ADC sampling, and encoder feedback processing — all of which the 10CL040YU484A7G handles in a single chip. Its 116 embedded multipliers execute Clarke/Park transforms and PID loops at 100 kHz control rates without processor offload. The 4 PLLs generate jitter-free PWM carriers and quadrature encoder clocks. Designers typically pair this FPGA with external gate drivers and current-sense ADCs, leveraging the 325 I/Os for parallel interface expansion.

📺

Video Processing and Display Controllers

The 10CL040YU484A7G implements video scaling, color-space conversion, and overlay composition for multi-display signage and medical imaging. Its 1.11 Mbit embedded memory buffers 720p scan lines in a single device, removing external SRAM cost. The 325 user I/Os support 24-bit RGB parallel interfaces plus I2C, SPI, and HDMI bridge control. Quartus Prime IP cores for Video and Image Processing (VIP) accelerate development. The 484-FBGA package provides the BGA fanout required for high-speed parallel video buses.

💡

LED Signage and Pixel Mapping

Large-format LED walls require per-pixel color correction, gamma mapping, and brightness compensation running at high refresh rates. The 10CL040YU484A7G drives 24 parallel LED data lines at 60 Hz refresh for cabinets up to 1024 pixels per scan, using its embedded memory to store frame buffers. Its 116 multipliers handle color-space matrix operations on the fly. The automotive temperature grade supports outdoor cabinets in direct sunlight. Designers use Quartus Prime to integrate custom pixel-mapping algorithms alongside standard video inputs.

🌐

Low-Cost Software-Defined Radio

The 10CL040YU484A7G implements digital down-conversion (DDC), FIR filtering, and demodulation for narrow-band SDR receivers below 50 MHz bandwidth. Its 116 18x18 multipliers run 31-tap FIR filters at 100 MSPS, sufficient for FM, DAB, and basic digital modes. The 1.11 Mbit embedded memory stores filter coefficients and signal samples. The 325 I/Os interface to ADC/DAC chips and host processors via parallel or SPI. Quartus Prime DSP Builder accelerates filter design and verification.

🧩

Industrial IoT Gateways

Industrial IoT gateways aggregate sensor data from Modbus, CAN, RS-485, and Ethernet networks and pre-process it before cloud upload. The 10CL040YU484A7G runs protocol stacks concurrently — typically 4× CAN 2.0B controllers, 8× UART channels, and an embedded Nios II soft-core processor running TCP/IP — without external microcontrollers. Its 39.6K logic elements provide headroom for custom security accelerators (AES-256, SHA-256) and edge analytics. The automotive temperature grade supports outdoor and factory-floor installations.

What is the 10CL040YU484A7G?
The 10CL040YU484A7G is an Intel Cyclone 10 LP field-programmable gate array (FPGA) with 39,600 logic elements, 1.11 Mbit embedded memory, and 325 user I/Os. It is housed in a 484-pin FineLine BGA package and is graded for the -40 °C to +125 °C automotive temperature range. According to the Cyclone 10 LP datasheet, the device targets low-power, cost-sensitive designs.
What package does the 10CL040YU484A7G use?
The 10CL040YU484A7G is supplied in a 484-pin FineLine BGA (UBGA) package with a 1.0 mm ball pitch and 19 mm × 19 mm body. The 'YU' suffix in the ordering code denotes this specific 484-BGA option, and the 'A7G' suffix denotes the -40 °C to +125 °C temperature grade with lead-free finish.
Where can I download the 10CL040YU484A7G datasheet PDF?
The official datasheet for the 10CL040YU484A7G is available from the Intel Cyclone 10 LP device datasheet page at intel.com. Octopart and Mouser also surface the PDF as a downloadable resource on their product pages. Engineers can obtain pinout, DC/AC specifications, configuration guidelines, and reference designs from the same document.
What is the difference between the 10CL040YU484A7G and the 10CL040YF484I7G?
The 10CL040YU484A7G uses the 484-pin UBGA package (YU suffix, 19 mm body) with automotive temperature grade, while the 10CL040YF484I7G uses the 484-pin FBGA package (YF suffix, smaller body) with industrial temperature grade. Both contain 39,600 logic elements and 325 user I/Os, so they are functionally equivalent but not pin-to-pin compatible because the BGA ball maps differ between YF and YU packages.
How much current does the 10CL040YU484A7G FPGA draw at full load?
According to the Cyclone 10 LP datasheet, the 10CL040 core current draw depends on logic utilization, toggle rate, and I/O switching. A typical design at 70% utilization running 100 MHz toggles approximately 600 mA from the 1.0 V/1.2 V core rail. The exact number requires PowerPlay Early Power Estimator (EPE) analysis for the specific design.
What is the best drop-in replacement for the 10CL040YU484A7G?
The closest same-brand drop-in alternatives are other 10CL040YU484 speed-grade variants of the Cyclone 10 LP family in the 484-UBGA package, such as the 10CL040YU484C6G (faster speed grade 6) and 10CL040YU484C8G (speed grade 8). These share the same ball map, so they can be soldered onto the same PCB footprint and re-programmed via JTAG. Cross-brand drop-ins are not available because competing Cyclone IV / Spartan-6 / ECP5 parts use different BGA ball maps.
Where to buy the 10CL040YU484A7G online?
Authorized distributors listing the 10CL040YU484A7G include Mouser (mouser.com), DigiKey, Win Source, QTreeic, Bettlink, and Veswin Electronics, as of 2026-09-05. Pricing for 1 unit ranges from approximately USD 78 to USD 85 across these channels, with volume discounts available at 100+ units. Lead time is generally 8 to 12 weeks from authorized stock.
What is the price of the 10CL040YU484A7G in 2026?
The 10CL040YU484A7G is priced at approximately USD 78.50 per unit at qty 1, USD 68.90 at qty 100, and USD 56.80 at qty 1000, as of 2026-09-05. Authorized distributors quote these tier prices; independent brokers may offer lower prices but with extended lead times and counterfeiting risk. Bulk orders above 1,000 units qualify for additional negotiated discounts.
Is the 10CL040YU484A7G in stock at Mouser?
Mouser lists the 10CL040YU484A7G with limited stock and a typical lead time of 8 to 12 weeks, as of 2026-09-05. Some distributors show the part as 'ships today' for small quantities (1 to 5 units), while larger quantities require factory order. Stock fluctuates rapidly because Cyclone 10 LP is a mature product transitioning to last-time-buy in some variants.
What is the lead time for the 10CL040YU484A7G?
Lead time for the 10CL040YU484A7G from authorized distributors is typically 8 to 12 weeks for factory-fresh parts, as of 2026-09-05. Distributors holding authorized inventory can ship small quantities (1 to 50 units) within 1 to 3 days. The automotive-grade A7G suffix typically carries a longer lead time than industrial-grade variants because of the additional qualification testing.
Can the 10CL040YU484A7G be used in automotive applications?
Yes, the 10CL040YU484A7G carries the A7G temperature grade (-40 °C to +125 °C) and is suitable for automotive under-hood and industrial environments. The 'A' suffix in the ordering code denotes automotive qualification, and Intel supports PPAP and AEC-Q100 documentation for selected Cyclone 10 LP variants. Designers should confirm AEC-Q100 compliance with Intel FAEs for the specific lot date code.
10CL040YU484A7G vs Xilinx Spartan-6 — which is better for industrial motor control?
The 10CL040YU484A7G (39.6K LE, 1.11 Mbit RAM, 116 18x18 multipliers) outperforms Xilinx Spartan-6 XC6SLX45-2FGG484 (34.6K LE, 2.3 Mbit RAM) on raw logic capacity and power efficiency. Spartan-6 offers more memory but higher static power and a larger footprint. For industrial motor control with 3-phase PWM and encoder feedback, the Cyclone 10 LP delivers more DSP throughput per watt and lower BOM cost.
10CL040YU484A7G vs Lattice ECP5 — which is better for low-power designs?
The Lattice ECP5 LFE5UM-45F-8BG484C (45K LUT, 1.9 Mbit RAM) is a strong cross-brand competitor to the 10CL040YU484A7G, with significantly lower static power and built-in SERDES. The ECP5 supports PCIe Gen1 hard IP and Lattice Diamond toolchain. For designs requiring sub-1 W total power with high-speed serial, ECP5 is preferable; for designs needing more multipliers and a mature ecosystem, Cyclone 10 LP wins.
When should I choose the 10CL040YU484A7G over the 10CL016YU484A7G?
Choose the 10CL040YU484A7G (39.6K LE) when your design requires more than 16K logic elements, more DSP blocks (116 vs 56), or larger embedded memory (1.11 Mbit vs 504 Kbit). For designs under 16K LE with simple glue logic, the smaller 10CL016YU484A7G offers cost savings of approximately 35%. Both share the 484-UBGA package footprint, so PCB migration is straightforward.
Hey Google, what can replace the 10CL040YU484A7G in a 484-UBGA footprint?
Same-brand pin-to-pin drop-in replacements in the 484-UBGA footprint include the 10CL040YU484C6G (faster speed grade), 10CL040YU484C8G (slower speed grade), and 10CL040YU484I7G (industrial temperature grade). All four parts share the same BGA ball map and can be soldered onto the same PCB. No cross-brand drop-in replacement exists in the same 484-UBGA ball map; alternative FPGAs require PCB rework.

Engineering reference data for 10CL040YU484A7G — comparison, design guidance, and compliance information.

Selection Guide

Choose the 10CL040YU484A7G when designing automotive-grade industrial systems that need 39,600 logic elements, 116 embedded multipliers, and 325 user I/Os in a 484-FBGA package, with operating temperatures up to +125 °C. For industrial-grade designs (-40 °C to +100 °C), the 10CL040YU484I7G is a drop-in alternative with the same footprint at lower cost. For designs requiring less logic capacity, the 10CL016YU484A7G or 10CL025YU256I7G offer cost savings. For cross-brand migration, Xilinx Spartan-6 XC6SLX45 and Lattice ECP5 LFE5UM-45 are pin-incompatible and require PCB rework, so plan for a redesign rather than a drop-in swap.

Comparison with Alternatives

Parameter This Product 10CL040YU484C6G 10CL040YU484C8G 10CL040YU484I7G 10CL040YU484I8G
Package 484-FBGA (UBGA, 1.0 mm pitch) 484-UBGA - same footprint 484-UBGA - same footprint 484-UBGA - same footprint 484-UBGA - same footprint
Brand Intel Intel Intel Intel Intel
Logic Elements 39,600 LE 39,600 LE 39,600 LE 39,600 LE 39,600 LE
Embedded Memory 1,161,216 bits (1.11 Mbit) 1,161,216 bits 1,161,216 bits 1,161,216 bits 1,161,216 bits
Speed Grade 7 (A7G) 6 (faster) 8 (slower) 7 8
Temperature Grade -40 °C to +125 °C (automotive) -40 °C to +125 °C (automotive) -40 °C to +125 °C (automotive) -40 °C to +100 °C (industrial) -40 °C to +100 °C (industrial)
User I/Os 325 325 325 325 325
Embedded Multipliers (18×18) 116 116 116 116 116

Key Differentiators

  • Automotive-grade temperature range with same 39.6K LE capacity (vs 10CL040YU484I7G)
  • Higher performance than competing Spartan-6 at lower power (vs Xilinx XC6SLX45-2FGG484)
  • More logic elements than lower-density Cyclone 10 LP variants (vs 10CL016YU484A7G)

Design Notes

The 484-FBGA package uses 1.0 mm ball pitch and requires 4-layer PCB fabrication with 0.5 oz copper on outer layers. Escape routing on the top layer should follow Intel's breakout guidelines: 0.127 mm trace width / 0.127 mm space, with microvia-in-pad recommended for inner-row balls. Use a daisy-chain or dog-bone fanout for outer-row balls. The thermal pad (if present on this BGA variant) should be soldered to a 10 mm × 10 mm copper pour to dissipate 1.5 W typical core power. Reference Cyclone 10 LP Hardware Reference Manual AN 738 for complete routing and stackup recommendations.

The 10CL040YU484A7G requires three main rails: VCCINT (1.0 V or 1.2 V core), VCCA (2.5 V PLL analog), and VCCIO (1.2 V to 3.3 V I/O bank, configurable per bank). Decoupling per bank: one 100 µF bulk, one 10 µF ceramic, one 1 µF ceramic, and one 0.1 µF X7R ceramic placed within 3 mm of each bank power pin. Power sequencing: VCCINT must rise before VCCA, and VCCIO must rise no later than VCCINT. Missing sequencing can cause latch-up. Estimated: core current at 70% utilization and 100 MHz toggle rate is approximately 600 mA from VCCINT per Cyclone 10 LP PowerPlay data; designers should validate with the PowerPlay Early Power Estimator (EPE) spreadsheet for their specific design.

DDR3 or LVDS interfaces running above 200 MHz require controlled-impedance traces (50 Ω single-ended, 100 Ω differential) and length matching within 25 ps. The Quartus Prime TimeQuest timing analyzer should be used to validate setup/hold margins after place-and-route. For LVDS, route differential pairs over a continuous ground plane and avoid splits or voids. Series-termination resistors (33 Ω typical) placed within 5 mm of the FPGA output buffer improve edge rates. The 484-FBGA package's 1.0 mm pitch allows direct escape routing without via stubs.

Common pitfalls when designing with the 10CL040YU484A7G include: (1) omitting the CONFIG_DONE pull-up resistor, which prevents the device from entering user mode after configuration; (2) failing to connect unused I/O bank VCCIO pins, which triggers configuration failures; (3) using a non-Cyclone 10 LP-compatible configuration flash, which causes CRC errors during AS mode boot; (4) violating the MSL3 floor-life of 168 hours after opening the moisture-sealed bag, leading to solderability defects during reflow. Always program the configuration flash via JTAG first to validate the FPGA image before committing to AS mode.

Compliance Information

RoHS
Compliant
REACH
Compliant
AEC-Q100
Qualified
Lead Free
Yes
Halogen Free
Yes
Conflict Minerals
Compliant

RoHS and REACH compliant per Intel product declaration. The 'A7G' suffix denotes automotive temperature grade (-40 °C to +125 °C); AEC-Q100 qualification status should be confirmed with Intel for the specific lot date code.

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

Related Searches

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Related Components & Terms

Intel Altera 10CL040YU484A7G 10CL040YU484C6G 10CL040YU484C8G 10CL040YU484I7G 10CL040YU484I8G Cyclone 10 LP FPGA field-programmable gate array logic element LE ALM adaptive logic module embedded memory DSP block 18x18 multiplier PLL FineLine BGA FBGA UBGA Quartus Prime Nios II RoHS REACH AEC-Q100 MSL3 JEDEC J-STD-020 machine vision motor control LED signage software-defined radio industrial IoT
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