Intel

10CL040ZU484I8G - 40K LE Cyclone 10 LP FPGA | Intel | 484-FBGA

MPN: 10CL040ZU484I8G ✓ Active
In Stock Ships in 1-3 business days
LVDS, LVTTL, LVCMOS, SSTL, HSTL Rds(on) 484-pin UBGA (FineLine BGA), 19x19 mm Package 16 Speed 1,161,216 bits Memory
From $6.45 USD / Unit
MOQ: 1 |
Price updated: 2026-09-05
Volume Pricing
Qty Unit Price Extended
1 $9.88 $9.88
10 $8.92 $89.20
100 $7.95 $795.00
500 $7.12 $3,560.00
1,000 $6.45 $6,450.00
ℹ️ All prices are in USD

Drop-in alternatives for 10CL040ZU484I8G — 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:

10CL040ZF484I8G

✅ Drop-In
Altera
📦 484-FBGA (UBGA)
Cyclone® 10 LP · 39,600 · 1,161,216 bits (144 Kbytes) · 56 · 4 · 325 · Low-power 60 nm · 484-ball FineLine BGA (UB484 / F484)

✓ In Stock

$66.9 / 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 →

10CL016ZU484I8G

✅ Drop-In
Intel
📦 484-FBGA (UBGA)
Cyclone 10 LP · 15,408 · 516,096 bits · 16 · 56 · [DATA_NEEDED: Logic Array Blocks count] · 340 · 484-UBGA (Ultra FineLine BGA)

✓ In Stock

$14.1 / Unit

View Datasheet →

10CL025ZU484I8G

✅ Drop-In ⚠️ 参数待验证
📦 484-FBGA (UBGA)
same 484-ball UBGA footprint, 25K LE vs 40K LE (-38% logic), pin-to-pin compatible ball map

📋 Reference alternative (not in catalog)

10CL040ZU484I8G Maximum Ratings & Electrical Characteristics

Series Cyclone 10 LP
Family Cyclone 10 LP FPGA
Logic Elements (LE) 39,600
Embedded Memory Bits 1,161,216 bits
Embedded Memory Blocks 250 M9K blocks
Embedded Multipliers (18x18) 252
PLLs 4
Maximum User I/O 325
Global Clock Networks 16
Package 484-pin UBGA (FineLine BGA), 19x19 mm
Temperature Grade Industrial (-40C to +100C)
Process Node 60 nm low power
Configuration Methods AS (Active Serial), AP (Active Parallel), JTAG, CPU
I/O Standards Supported LVDS, LVTTL, LVCMOS, SSTL, HSTL
Mounting Type Surface Mount (BGA)
RoHS Status Compliant

10CL040ZU484I8G 484-pin ubga (fineline bga), 19x19 mm Pin Configuration Guide

Complete pinout information for 10CL040ZU484I8G (484-pin ubga (fineline bga), 19x19 mm 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 ubga (fineline bga), 19x19 mm package pinout diagram for 10CL040ZU484I8G

No detailed pinout data available for 10CL040ZU484I8G.

Refer to the datasheet for full pin configuration.

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for 10CL040ZU484I8G 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

10CL040ZU484I8G is suitable for 6 applications: Industrial Motor Control and Drives, Factory Automation I/O and Protocol Bridging, Video Surveillance and Machine Vision, Low-Cost Software Defined Radio Front End, Portable Medical Instrumentation, LED Video Wall Display Controllers.

🏭

Industrial Motor Control and Drives

The 10CL040ZU484I8G is well suited to multi-axis industrial motor control because it integrates 252 dedicated 18x18 multipliers that can execute field-oriented control (FOC) algorithms at PWM switching frequencies up to 200 kHz. Its 4 PLLs and 16 global clock networks allow independent time bases for position encoder interfaces (EnDat, BISS), current sensing ADCs, and PWM generation. The 250 M9K memory blocks store sine/cosine lookup tables and PID controller coefficients with single-cycle access. Compared with a DSP processor, the FPGA's parallel architecture executes the full Clarke-Park transform, SVPWM, and current loop in hardware with deterministic latency under 1 microsecond.

🔧

Factory Automation I/O and Protocol Bridging

In factory automation, the 10CL040ZU484I8G bridges legacy fieldbuses (Profibus, RS-485, CAN) to industrial Ethernet (EtherCAT, PROFINET) without external bridge ASICs. Its 325 user I/O pins support multiple voltage standards (LVTTL, LVDS, RS-485) on a single die, eliminating level translators. The 1,161,216 embedded memory bits buffer message frames at line rate, while the 39,600 logic elements implement industrial protocol stacks in soft logic. Industrial temperature grade (-40C to +100C) ensures reliable operation in cabinet environments with elevated ambient temperatures.

🎥

Video Surveillance and Machine Vision

The 10CL040ZU484I8G handles real-time video preprocessing for IP cameras and machine vision systems by performing Bayer demosaicing, color space conversion, and edge detection in parallel hardware. The 252 18x18 multipliers accelerate 5x5 convolution kernels for image filtering at 1080p60 resolution with single-frame latency. Its DDR3 controller IP streams pixel data from external memory at up to 800 MT/s, while the 16 global clock networks synchronize sensor input, processing pipeline, and Ethernet output. The Cyclone 10 LP's low static power (~80 mW typical) suits fanless PoE-powered camera designs.

🌐

Low-Cost Software Defined Radio Front End

For amateur radio, public safety, and lightweight SDR applications, the 10CL040ZU484I8G implements digital down-conversion (DDC), filtering, and demodulation stages after a wideband ADC. The 252 multipliers execute 64-tap FIR filters at 100 MSPS sample rates in real time. Four PLLs generate independent LO frequencies for I/Q mixing while 16 global clocks distribute ADC frame clocks, DAC update clocks, and FPGA fabric clocks with sub-nanosecond skew. Compared with a dedicated DSP, the FPGA enables rapid protocol experimentation through bitstream reconfiguration rather than firmware updates.

💊

Portable Medical Instrumentation

Battery-powered medical devices such as patient monitors, pulse oximeters, and portable ultrasound benefit from the 10CL040ZU484I8G's combination of low static power and high DSP throughput. The 252 18x18 multipliers execute FFT-based spectral analysis on ECG and SpO2 signals, while the 1,161,216 embedded memory bits buffer waveform history for display. Industrial temperature grade suits clinical environments with intermittent thermal stress from disinfection cycles. The device's small 19x19 mm UBGA package fits compact handheld form factors while the mature Quartus tool flow supports IEC 62304 software lifecycle documentation.

💡

LED Video Wall Display Controllers

The 10CL040ZU484I8G drives large LED video walls by accepting HDMI or DisplayPort input and generating high-frequency PWM outputs for thousands of LED channels. Its 325 user I/O pins can drive 100+ PWM channels at 16-bit color depth and 1 kHz refresh rate, while the 252 multipliers implement gamma correction and color space conversion. The DDR3 controller buffers multi-frame video at 1080p60 resolution, and four PLLs generate independent pixel clocks for split-cabinet synchronization. Compared with microcontrollers, the FPGA delivers deterministic refresh without tearing.

Recommended Products Summary

AD2S1210 Resolver-to-digital converter for position feedback Used in: Industrial Motor Control and Drives DRV8323 Three-phase gate driver for motor power stage Used in: Industrial Motor Control and Drives LAN9252 EtherCAT slave controller companion chip Used in: Factory Automation I/O and Protocol Bridging MAX3162 RS-485/232 transceiver for serial fieldbus Used in: Factory Automation I/O and Protocol Bridging AR0330 CMOS image sensor with parallel output interface Used in: Video Surveillance and Machine Vision MT41K256M16 DDR3L SDRAM for frame buffer storage Used in: Video Surveillance and Machine Vision AD9265 Analog Devices Used in: Low-Cost Software Defined Radio Front End AD9747 16-bit 250 MSPS DAC for transmit path Used in: Low-Cost Software Defined Radio Front End ADS1292 Low-power analog front-end for ECG/EMG Used in: Portable Medical Instrumentation MAX30102 Optical sensor for pulse oximetry Used in: Portable Medical Instrumentation TFP401 HDMI receiver up to 1080p Used in: LED Video Wall Display Controllers MBI5024 16-channel LED driver with PWM input Used in: LED Video Wall Display Controllers
What is the operating temperature range of 10CL040ZU484I8G?
The 10CL040ZU484I8G is rated for industrial temperature operation from -40C to +100C junction temperature, per the Cyclone 10 LP datasheet. The 'I' suffix in the ordering code designates industrial grade, distinguishing it from the commercial 'C' variant (0C to +85C) and automotive 'A' variant. Industrial-grade parts are qualified for factory automation, outdoor equipment, and uncontrolled thermal environments.
How many logic elements does 10CL040ZU484I8G have?
The 10CL040ZU484I8G contains 39,600 logic elements organized as adaptive logic modules (ALMs). Each ALM contains an 8-input fracturable look-up table (LUT), two dedicated adders, and four registers, giving designers roughly equivalent capacity to ~80K 4-input LUTs in older architectures. This positions the device in the mid-density Cyclone 10 LP range, suitable for industrial control logic, video bridging, and modest DSP pipelines.
What is the difference between 10CL040ZU484I8G and 10CL040YF484I8G?
The 10CL040ZU484I8G uses the larger 484-pin UBGA (ZU suffix) package with up to 325 user I/O, while the 10CL040YF484I8G uses a smaller 484-pin FineLine BGA (YF suffix) with fewer user I/O pins. Both share the same 39,600 LE silicon die, identical M9K memory (1,161,216 bits), and 252 18x18 multipliers, making them electrically drop-in compatible when board layout accepts the smaller package. Pin-out and ball map differ between the two packages.
What package does 10CL040ZU484I8G use?
The 10CL040ZU484I8G uses a 484-ball Ultra FineLine BGA (UBGA) measuring 19x19 mm with 1.0 mm ball pitch, per the Cyclone 10 LP device pin-out files. The 'ZU' ordering code suffix specifically identifies the 19x19 mm 484-ball UBGA variant. This package is a plastic overmolded BGA suitable for industrial-grade surface-mount assembly with standard lead-free reflow profiles per JEDEC J-STD-020.
How much embedded memory does 10CL040ZU484I8G have?
The 10CL040ZU484I8G integrates 1,161,216 bits of embedded SRAM distributed across 250 M9K memory blocks. Each M9K block is 9 Kbits and can be configured as single-port RAM, dual-port RAM, FIFO, ROM, or shift register. This is sufficient for line buffers in video applications, coefficient storage for DSP filters, and CPU scratch-pad memory in SoC co-processing designs without needing external SRAM.
What is the price of 10CL040ZU484I8G in 2026?
As of 2026-09-05, LCSC Electronics lists the 10CL040ZU484I8G at $9.88 per unit for qty-1, with tier discounts to approximately $6.45 at 1000-piece quantities per their listing. DigiKey and Mouser also stock the part; real-time distributor pricing varies with availability and order volume. Industrial-grade FPGAs in this density class typically range from $7 to $12 single-piece depending on supply conditions and lead time.
Where can I buy 10CL040ZU484I8G online?
Authorized distributors stocking the 10CL040ZU484I8G include DigiKey (P/N 7595037), Mouser, LCSC Electronics, and Heisener. Octopart aggregates real-time pricing across four distributors. For high-volume production (1000+ units), request a quote directly from Intel or an authorized franchise distributor. Avoid brokers for new designs unless the part is on allocation, and always verify lot/date code authenticity.
Is 10CL040ZU484I8G in stock and what is the lead time?
As of 2026-09-05, LCSC reports the 10CL040ZU484I8G is in stock, while Heisener reports 6,416 pieces available and Micro-Semiconductor lists 2,785 pieces. Lead time for production quantities (1000+) is typically 8-12 weeks when ordered through authorized channels. For urgent small-quantity needs, distributors like DigiKey and Mouser typically ship same-day from regional warehouses.
Which software is used to program 10CL040ZU484I8G?
The 10CL040ZU484I8G is programmed using Intel Quartus Prime design software. The free Quartus Prime Lite Edition supports the entire Cyclone 10 LP family including synthesis, place-and-route, timing analysis, and programmer. Quartus supports VHDL, Verilog, and SystemVerilog entry; the Intel FPGA IP library provides pre-verified cores for DDR3 controllers, PCIe, Nios II soft-core processor, and common serial interfaces.
Where can I download the 10CL040ZU484I8G datasheet PDF?
The 10CL040ZU484I8G datasheet is available as part of the Cyclone 10 LP Device Handbook at the Intel FPGA Literature Center. The handbook contains DC and switching characteristics, pin-out files, packaging information, and configuration user guides. Individual device pin-out files (CSV format) are available from the Intel Pin-Out File repository for board design and signal integrity analysis.
What are the best drop-in alternatives to 10CL040ZU484I8G in the same 484-FBGA footprint?
Drop-in alternatives in the same 484-FBGA package footprint include 10CL040ZF484I8G (commercial temperature grade), 10CL040YU484I7G (industrial, smaller I/O count variant), and 10CL016ZU484I8G (lower density 16K LE in same package). All four parts use the same 484-ball UBGA footprint per Intel pin-out files. The density variants (040 vs 016) are bitstream-compatible at the lower-density image and can be used as substitutes when fewer LEs are needed.
10CL040ZU484I8G vs Lattice ECP5 - which is better for low-power designs?
For pure low-static-power designs below 100 mW idle, the Intel Cyclone 10 LP (10CL040ZU484I8G) typically wins on cost and Quartus tool maturity. The Lattice ECP5 family offers smaller geometry (40 nm vs 60 nm) and lower dynamic power per MHz, but at higher per-unit cost in this density class. For applications requiring SERDES (which ECP5 has and Cyclone 10 LP lacks), choose ECP5; for pure logic/DSP workloads, Cyclone 10 LP offers better price/performance.
When should I choose 10CL040ZU484I8G over a microcontroller for my embedded design?
Choose the 10CL040ZU484I8G over a microcontroller when your design requires parallel DSP processing (252 18x18 multipliers), custom high-speed I/O timing, multiple independent clock domains (4 PLLs), or hardware parallelism that a sequential MCU cannot achieve. Typical thresholds include video pipeline processing, multi-channel motor control at >100 kHz PWM rates, or bridging between incompatible parallel bus standards. For sequential control tasks under 200 MHz, an MCU is more power- and cost-efficient.
What is the best Xilinx equivalent for 10CL040ZU484I8G?
There is no true drop-in Xilinx equivalent to the 10CL040ZU484I8G because the 484-ball UBGA pin-out is Intel-specific. The closest Xilinx 7-series counterpart in logic capacity is the XC7A50T in FBG484 package, which offers comparable 52K LC (vs 39,600 LE) but different pin-out, different I/O bank voltages, and different configuration memory interface. A PCB redesign is required to migrate between these families - they are functional equivalents, not drop-in.
What are the key specifications of 10CL040ZU484I8G that engineers should know?
The 10CL040ZU484I8G delivers 39,600 logic elements, 1,161,216 embedded memory bits in 250 M9K blocks, 252 18x18 multipliers, 4 PLLs, 16 global clock networks, and up to 325 user I/O in a 484-ball UBGA package. It operates from -40C to +100C industrial temperature range and supports DDR2/DDR3/LPDDR2 external memory interfaces via soft IP. Static power is approximately 70-90 mW typical, making it suitable for thermally constrained embedded systems.

Engineering reference data for 10CL040ZU484I8G — comparison, design guidance, and compliance information.

Selection Guide

Choose the 10CL040ZU484I8G when your design needs approximately 30K-40K logic elements in a 484-ball BGA with industrial temperature grading. It excels in motor control, factory automation, video bridging, and SDR applications where DSP throughput matters. Select the 10CL040ZF484I8G (commercial grade) only for indoor commercial-temperature products where cost matters more than operating range. Choose the 10CL016ZU484I8G (16K LE) when design complexity is moderate and unit cost is the primary driver - it shares the same PCB footprint. For Xilinx-compatible designs, the XC7A50T-FBG484 is a functional equivalent but requires full PCB redesign due to incompatible pin-out.

Comparison with Alternatives

Parameter This Product 10CL040ZF484I8G 10CL040YU484I7G 10CL016ZU484I8G
Package 484-UBGA (ZU, 19x19 mm) 484-UBGA (ZF, commercial temp) 484-UBGA (YU, same footprint) 484-UBGA (ZU, same footprint, lower density)
Brand Intel Intel Intel Intel
Logic Elements 39,600 39,600 39,600 15,408
Embedded Memory 1,161,216 bits 1,161,216 bits 1,161,216 bits 504 Kbits
18x18 Multipliers 252 252 252 112
PLLs 4 4 4 4
Max User I/O 325 325 [DATA_NEEDED] 325
Temperature Grade Industrial (-40C to +100C) Commercial (0C to +85C) Industrial (-40C to +100C) Industrial (-40C to +100C)
Unit Price (qty 1) $9.88 [DATA_NEEDED] [DATA_NEEDED] Lower (lower density)

Key Differentiators

  • Mid-density 39,600 LE with 325 user I/O in 484-UBGA (vs 10CL016ZU484I8G)
  • Industrial temperature grade in ZU package (vs 10CL040ZF484I8G)
  • Mature Quartus Prime tool support with free Lite Edition (vs Xilinx XC7A50T-FBG484)

Design Notes

The Cyclone 10 LP requires multiple power rails: VCCINT (core, typically 1.2 V), VCCA (PLL analog, 2.5 V), VCCD_PLL (PLL digital, 1.2 V), and VCCIO (I/O banks, 1.2-3.3 V depending on standard). Power sequencing per Intel AN 754 requires VCCINT and VCCIO to ramp together or VCCIO first within 100 ms to prevent I/O latch-up. Use a dedicated LDO per rail; avoid shared inductors. Decoupling requires 100 nF X7R per VCC pin within 2 mm trace length, plus bulk 10-47 uF tantalum on each rail.

The 484-ball UBGA uses 1.0 mm ball pitch on a 19x19 mm body. PCB design requires 0.5 mm via-in-pad or microvia HDI stack-up for reliable assembly. Fanout should use 0.5/0.2 mm trace/space design rules. Breakout routing on top layer requires 4 routing layers minimum; Intel recommends 6+ layers for DDR3 interfaces. Matched impedance (50 ohm single-ended, 100 ohm differential) must be verified with 3D EM simulation for LVDS and DDR3 signals exceeding 200 MHz.

Estimated: at full logic utilization (~70% LE occupancy, 50% toggle rate, industrial temp), the 10CL040ZU484I8G dissipates approximately 1.5-2.5 W typical. The UBGA-484 package has theta_JA of approximately 12-15 C/W on a 6-layer JEDEC test board (per Cyclone 10 LP thermal model). Junction temperature at 70C ambient and 2 W dissipation is approximately 70 + 2*15 = 100C, which is at the industrial limit. Add thermal vias under the package center pad and copper pour on inner layers to reduce theta_JA to 8-10 C/W for safety margin.

Do not confuse the ZU package code with the ZF (commercial temperature, smaller I/O count) or YU (different pin map) variants - they share the 484-ball count but have different ball assignments. Always re-run pin assignment in Quartus after package change. The configuration scheme (AS vs AP) must match the EPCS or EPCQ flash device; mismatched configuration mode causes configuration failures that mimic silicon defects. For JTAG programming, ensure the TCK frequency does not exceed 25 MHz for reliable boundary scan.

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 Cyclone 10 LP product family declaration. Not AEC-Q100 qualified (use Cyclone 10 GX or other automotive-grade parts for vehicle applications). Lead-free assembly per JEDEC J-STD-020 MSL3 profile.

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 10CL040ZU484I8G Cyclone 10 LP Field Programmable Gate Array FPGA Programmable Logic Device PLD Adaptive Logic Module ALM M9K memory block embedded SRAM 18x18 multiplier Phase Locked Loop PLL FineLine BGA UBGA 484-ball BGA surface mount Quartus Prime DDR3 controller LVDS RoHS REACH JEDEC J-STD-020 industrial temperature grade
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