Intel

10CL010YE144A7G - Cyclone 10 LP FPGA, 10K LE, EQFP-144 | Intel

MPN: 10CL010YE144A7G ✓ Active
In Stock Ships in 1-3 business days
1.2 V Vdss EQFP-144 (144-LQFP Exposed Pad) Package 414 kbit total (423,936 bits) Memory
From $19.4 USD / Unit
MOQ: 1 |
Price updated: 2026-09-05
Volume Pricing
Qty Unit Price Extended
1 $38.95 $38.95
10 $34.5 $345.00
100 $28.2 $2,820.00
500 $22.8 $11,400.00
1,000 $19.4 $19,400.00
ℹ️ All prices are in USD

Drop-in alternatives for 10CL010YE144A7G — 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:

10CL010YE144C8G

✅ Drop-In
Intel
📦 EQFP-144
Cyclone 10 LP · 10,320 · 423,936 bits (414 Kbit) · 46 · 88 · 23 · 2 · 10

✓ In Stock

$8.4 / Unit

View Datasheet →

10CL010YE144C6G

✅ Drop-In
Altera
📦 EQFP-144
Cyclone 10 LP · Cyclone 10 · 10CL010 · 10,320 · 423,936 bits (M9K blocks) · 88 · 144-LQFP Exposed Pad (EQFP-144) · 6

✓ In Stock

$2.6 / Unit

View Datasheet →

10CL010YE144I7G

✅ Drop-In
Intel
📦 EQFP-144
Cyclone 10 LP · 10,320 · 423,936 bits (414 Kbit) · 56 · 88 · 4 · 20 · 144-pin EQFP (Plastic Enhanced QFP) with exposed pad

✓ In Stock

$17.9 / Unit

View Datasheet →

10CL010ZU256I8G

✅ Drop-In
Intel
📦 UBGA-256
Cyclone 10 LP · 10,320 · 423,936 · 176 · 56 · 4 · 20 · 256-ball UFBGA (UBGA)

✓ In Stock

$22.1 / Unit

View Datasheet →

10CL006YE144A7G

✅ Drop-In
Intel
📦 EQFP-144
Cyclone 10 LP · 6,272 LEs · 276,480 bits (270 Kbits) · 15 · 88 · [DATA_NEEDED: number of I/O banks] · 2 · [DATA_NEEDED: number of global clocks]

✓ In Stock

$17.4 / Unit

View Datasheet →

10CL010YE144A7G Maximum Ratings & Electrical Characteristics

Series Cyclone 10 LP
Family Cyclone 10 LP
Logic Elements (LE) 10,320
Embedded Memory (M9K blocks) 414 kbit total (423,936 bits)
Number of Logic Elements 10,320
Number of I/Os 88
Operating Supply Voltage 1.2 V
Package / Case EQFP-144 (144-LQFP Exposed Pad)
Mounting Style SMD/SMT
Operating Temperature -40 C to +125 C
Packaging Tray
Number of Logic Cells 10,320
Process Node 60 nm (low-power CMOS)
Configuration Interface JTAG (IEEE 1149.1), serial
Design Tool Intel Quartus Prime
RoHS Compliant

10CL010YE144A7G eqfp-144 (144-lqfp exposed pad) Pin Configuration Guide

Complete pinout information for 10CL010YE144A7G (eqfp-144 (144-lqfp exposed pad) 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.

eqfp-144 (144-lqfp exposed pad) package pinout diagram for 10CL010YE144A7G

No detailed pinout data available for 10CL010YE144A7G.

Refer to the datasheet for full pin configuration.

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for 10CL010YE144A7G 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

10CL010YE144A7G is suitable for 6 applications: Industrial Motor Control, Video Interface Bridging, IoT Edge Sensor Aggregation, Human-Machine Interface (HMI), Industrial Communication Gateways, Test & Measurement Front-End.

🏭

Industrial Motor Control

The 10CL010YE144A7G fits industrial motor control because its 10,320 logic elements and embedded M9K memory blocks implement field-oriented control (FOC) loops with deterministic latency. With 88 general-purpose I/Os and dedicated PLLs, the device can simultaneously sample multi-phase current/voltage feedback at 100 kHz while generating PWM outputs for 3-phase IGBT/MOSFET inverters. The 1.2 V core and PowerPlay-managed dynamic power keep dissipation below 1 W for closed-loop servo loops, and the EQFP-144 with exposed pad supports -40 C to +125 C operation in factory cabinets.

🎥

Video Interface Bridging

The 10CL010YE144A7G is widely used as a video bridge between CMOS image sensors, HDMI/LVDS transmitters, and MIPI CSI-2 / DSI interfaces via soft IP cores in Quartus Prime. Its 423,936 bits of embedded RAM buffer line-scan and area-scan image data, while 88 I/Os handle parallel RGB888 / YCbCr buses. The deterministic routing fabric guarantees line-buffer timing without jitter, making it suitable for machine vision, surveillance, and digital signage conversion boxes. Industrial temp grade ensures reliability in unattended installations.

🧩

IoT Edge Sensor Aggregation

The 10CL010YE144A7G acts as a low-power sensor hub aggregating I2C/SPI/UART/Modbus data from multiple industrial sensors into a single Ethernet or wireless uplink. With 10,320 logic elements it can host multiple soft microcontroller cores (Nios II) plus protocol stacks. Its low dynamic power (estimated sub-1 W typical, based on 60 nm LP process and PowerPlay estimates) suits always-on battery-backed edge nodes. The EQFP-144 exposed pad enables thermally efficient fanless enclosures.

📺

Human-Machine Interface (HMI)

The 10CL010YE144A7G is a fit for industrial HMI panels driving TFT LCDs from 4.3 to 10.1 inches via RGB or LVDS, while scanning capacitive touch controllers and rotary encoders. Its 423,936-bit embedded RAM stores font and icon caches, and 88 I/Os accommodate LCD timing signals plus touch/button GPIOs. The -40 C to +125 C industrial temperature grade handles factory-floor environments, and the EQFP-144 footprint simplifies reflow profiles for cost-sensitive panel builders migrating from legacy CPLDs.

🌐

Industrial Communication Gateways

The 10CL010YE144A7G supports protocol conversion between legacy industrial buses (RS-485, RS-232, CAN, Modbus RTU) and modern Ethernet/IP, PROFINET, or EtherCAT using soft IP cores. Its 10,320 logic elements and embedded memory provide sufficient resources for protocol stacks plus deterministic MAC-layer bridging, while the 88 I/Os accommodate several isolated bus interfaces. Industrial-grade operation and JTAG-based field firmware updates via the same device enable rugged industrial gateways.

🔧

Test & Measurement Front-End

The 10CL010YE144A7G is used in bench-top T&M instruments to implement custom DSP filters, trigger logic, and timing controllers. Its M9K memory blocks hold sample buffers, while the ALMs compute FFTs and digital filters at line rates that general-purpose MCUs cannot match. Industrial temperature grade and JTAG-based design iteration support fast prototype-to-product cycles for laboratory instruments where deterministic timing is mandatory.

What is the 10CL010YE144A7G?
The 10CL010YE144A7G is an Intel Cyclone 10 LP field-programmable gate array (FPGA) with 10,320 logic elements, 423,936 bits of embedded memory, and 88 user I/Os, packaged in a 144-pin EQFP with exposed thermal pad. According to the Intel ordering part number scheme, the suffix encodes E144 = EQFP-144, Y = industrial temperature grade, and A7 = speed/lock grade.
How much does the 10CL010YE144A7G cost?
Authorized distributor pricing as of 2026-09-05 starts around USD 4.41 at LCSC for small reels and roughly USD 19-39 per unit in OEM tray quantities at DigiKey/Mouser. Pricing depends on qty break, lead time, and reel/tray packaging. Industrial-grade FPGAs in EQFP packages typically see steeper discounts at 500+ unit orders.
Where to buy 10CL010YE144A7G online?
The 10CL010YE144A7G is in stock at DigiKey, Mouser, Arrow, LCSC, and Xecor as of 2026-09-05. For production volumes, authorized distributors (DigiKey, Mouser, Arrow) are preferred over independent brokers. LCSC reports in-stock status with prices starting at USD 4.41, while Intel-direct purchases are reserved for high-volume OEM agreements.
What is the lead time for 10CL010YE144A7G?
Distributor stock at DigiKey and Mouser for the 10CL010YE144A7G is reported as 'ships today' / 'in stock' as of 2026-09-05, implying same-day or 1-2 week lead times for small quantities. For 1000+ unit factory-direct orders, lead times are typically 8-12 weeks through Intel's authorized supply chain. LCSC also lists immediate stock at the cut-tape and tray level.
What is the difference between 10CL010YE144A7G and 10CL016YE144I7G?
Both parts share the same EQFP-144 package and Cyclone 10 LP family, but the 10CL010 has 10,320 logic elements versus 15,408 in the 10CL016, and the 10CL010 suffix A7 denotes a different speed/temperature grade than the I7G variant. The 10CL016YE144I7G has higher logic density and industrial-grade temperature assurance, making it pin-compatible but more capable when extra LE count is needed.
Is 10CL010YE144A7G the same as 10CL010YU256I7G?
No - both are Cyclone 10 LP devices with 10,320 logic elements, but the 10CL010YE144A7G is in the EQFP-144 package with 88 I/Os, whereas the 10CL010YU256I7G is in the UBGA-256 package with more I/Os. They are NOT drop-in compatible because the ball/lead footprint differs. For a true drop-in alternative in the same EQFP-144 footprint, look at other 10CL010 E144 suffix variants.
When should I choose 10CL010YE144A7G over other Cyclone 10 LP devices?
Choose the 10CL010YE144A7G when you need exactly 10,320 logic elements with 88 I/Os in the lowest-cost EQFP-144 footprint of the Cyclone 10 LP family. Choose the 10CL006YE144A7G when you need fewer than 6,000 LEs and lower BOM cost, or the 10CL016YE144A7G when more LE headroom is required. The EQFP-144 pinout is consistent across the 10CL006/10CL010/10CL016 family, simplifying PCB layout reuse.
What is the best drop-in replacement for 10CL010YE144A7G?
The closest drop-in replacements are other 10CL010 E144 suffix variants in the Cyclone 10 LP family, particularly the 10CL010YE144C8G (industrial temp, lower speed grade), 10CL010YE144C6G (commercial/industrial, lower speed), and 10CL010YE144I7G (industrial, lower speed). All share the same EQFP-144 footprint and 88-I/O ballout. Pick by your required temperature grade and speed-bin need rather than for performance alone.
Can a Cyclone IV (EP4CE10) replace the 10CL010YE144A7G?
The Altera Cyclone IV EP4CE10 in the EQFP-144 package has a very similar pinout and ~10K logic element capacity, but it is a different silicon family with different power, I/O standards, and Quartus support. It can serve as a pin-compatible migration path but is NOT a drop-in replacement because the JTAG IDs, configuration bitstream, and power rails differ. Plan for re-validation when migrating between FPGA families.
Where to download the 10CL010YE144A7G datasheet PDF?
The official Intel (Altera) Cyclone 10 LP device datasheet is published at intel.com and altera.com. A direct product page for this Ordering Part Number lives at https://www.altera.com/products/fpga/cyclone/10/lp/10cl010-e144/10CL010YE144A7G, and the device-family datasheet (covering all Cyclone 10 LP OPNs) can be downloaded from Intel's Cyclone 10 LP support page. The exact document number is [DATA_NEEDED: datasheet document number].
Where to find the 10CL010YE144A7G pinout?
The EQFP-144 pinout for the 10CL010YE144A7G is published in the Cyclone 10 LP device datasheet's Pin Information section on intel.com. Pin assignments vary slightly across Cyclone 10 LP OPNs even within the same package, so always cross-reference the specific E144 Ordering Part Number suffix rather than assume pinout compatibility with other Cyclone 10 LP devices in EQFP-144.
What is the operating voltage of 10CL010YE144A7G?
The 10CL010YE144A7G core operates from a 1.2 V supply with separate VCCIO rails per I/O bank to support mixed-voltage I/O standards (LVCMOS 1.2V through 3.3V, LVDS, SSTL). PLL analog supplies typically run at 2.5 V. According to the Cyclone 10 LP datasheet, power-on sequencing requirements mandate that core supply ramp before VCCIO, and the device supports hot-socketing in compliance with PCIe and CompactPCI standards.
How much embedded memory does the 10CL010YE144A7G have?
The 10CL010YE144A7G includes 423,936 bits (414 kbit) of on-chip embedded RAM organized into M9K 9-kbit blocks that can be configured as single-port, dual-port, or FIFO memory. This is sufficient for buffering sensor data, lookup tables, and small frame buffers in machine vision or motor-control applications, while larger external memories (DDR2/DDR3) are supported via soft IP controllers in Quartus Prime.
Is the 10CL010YE144A7G RoHS compliant?
Yes, the 10CL010YE144A7G is RoHS compliant per Intel/Altera product page specifications. The device is also lead-free (Pb-free) and conforms to REACH, but is NOT AEC-Q100 qualified for automotive applications. For automotive FPGA needs, look at Intel's Cyclone 10 LP automotive-grade variants or the Cyclone V / Arria families with Q-suffix part numbers.
What are the key specifications of 10CL010YE144A7G that engineers should know?
Engineers evaluating the 10CL010YE144A7G should focus on five specifications: 10,320 logic elements (~12,000 ALMs), 423,936 bits of M9K embedded memory, 88 user I/Os across [DATA_NEEDED: I/O bank count] banks, 1.2 V core supply with separate VCCIO banks, and the EQFP-144 (22x22 mm) industrial-temperature package. The 60 nm low-power process and integrated PLLs deliver competitive power-per-LE for cost-sensitive designs.

Engineering reference data for 10CL010YE144A7G — comparison, design guidance, and compliance information.

Selection Guide

Choose the 10CL010YE144A7G when your design needs exactly ~10,320 logic elements, 88 user I/Os, and the lowest cost in the EQFP-144 industrial-temperature footprint of the Cyclone 10 LP family. For higher I/O density in a larger BGA, migrate to the 10CL010ZU256I8G in UBGA-256. For tighter timing margins with industrial temp, choose the A7 grade; for cost-sensitive lower-speed designs, the C8 or C6 grade is interchangeable. For higher logic capacity in the same EQFP-144 footprint, the 10CL016YE144A7G is a 'drop-in upgrade' without PCB changes.

Comparison with Alternatives

Parameter This Product 10CL010YE144C8G 10CL010YE144C6G 10CL010YE144I7G 10CL006YE144A7G
Package EQFP-144 EQFP-144 - same EQFP-144 - same EQFP-144 - same EQFP-144 - same
Brand Intel Intel - same Intel - same Intel - same Intel - same
Logic Elements 10,320 10,320 10,320 10,320 6,272
Embedded Memory 414 kbit 414 kbit 414 kbit 414 kbit 270 kbit
Number of I/Os 88 88 88 88 88
Speed Grade A7 C8 (slower) C6 (slower) I7 (slower) A7 (same)
Core Operating Voltage 1.2 V 1.2 V 1.2 V 1.2 V 1.2 V
Lifecycle Status Active Active Active Active Active

Key Differentiators

  • Smallest 60 nm LP FPGA in 144-pin EQFP with industrial temperature grade (vs 10CL006YE144A7G)
  • A7 speed grade at industrial temp in EQFP-144 footprint (vs 10CL010YE144C8G)
  • Same EQFP-144 pinout across the entire 10CL010/10CL006/10CL016 family (vs 10CL010ZU256I8G)

Design Notes

Cyclone 10 LP requires power-on sequencing where the 1.2 V core rail ramps before the VCCIO banks. Use a power supervisor with PG (power-good) feedback or sequence the rails with load switches. PLL analog supplies (VCC_PLL) should be filtered with ferrite beads and decoupled with 0.1 uF + 10 uF capacitors per the reference design. Hot-socketing is supported, but the live-insertion transient must be limited to below 0.5 V/us to avoid latch-up.

The EQFP-144 exposed thermal pad must be soldered to a top-layer copper pour of at least 1 sq inch to keep junction temperature within the -40 C to +125 C industrial range. Estimated: at full I/O toggle (88 I/Os at 50 MHz, 3.3 V LVCMOS) the device consumes ~0.6-1.0 W, which the exposed pad dissipates adequately for natural-convection cooling. For enclosed industrial cabinets, derate by 30% or add a small clip-on heatsink.

Route configuration and JTAG signals (TCK, TMS, TDI, TDO) with 50 ohm controlled impedance and keep trace lengths matched within 1 inch to avoid JTAG timing errors at high TCK rates. Group clock and PLL feedback traces on inner layers with continuous ground reference. Decoupling: place 0.1 uF X7R 0402/0603 capacitors within 100 mils of every VCC pin, plus bulk 47 uF tantalum or polymer caps per supply rail on the PCB.

Do NOT use a Cyclone 10 LP bitstream on a Cyclone IV or Cyclone V device - bitstream formats are NOT forward/backward compatible. Do NOT assume pinout compatibility across different Cyclone 10 LP Ordering Part Numbers even in the same package (e.g., EQFP-144) without checking the datasheet's pin information appendix - I/O bank assignments may differ. Always re-validate I/O assignments after changing speed grade because I/O timing shifts between A7/C8/C6/I7 bins.

Compliance Information

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

RoHS compliant per Altera/Intel product page. Not AEC-Q100 qualified - this is a commercial/industrial-grade part. For automotive FPGA needs, look at Cyclone 10 LP automotive or Cyclone V/Arria Q-suffix part numbers.

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 10CL010YE144A7G Cyclone 10 LP FPGA Field-Programmable Gate Array Programmable Logic logic element Adaptive Logic Module ALM M9K memory block embedded memory embedded RAM EQFP-144 LQFP Exposed Pad 88 I/Os 1.2 V core supply VCCIO PLL JTAG IEEE 1149.1 Quartus Prime 60 nm process TSMC PowerPlay RoHS AEC-Q100 DDR2 DDR3 LPDDR2 LVDS industrial motor control machine vision human-machine interface IoT edge
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