Intel

10CL010YU256I7G - Cyclone 10 LP FPGA, 10K LE, 256-BGA | Intel

MPN: 10CL010YU256I7G ✓ Active
In Stock Ships in 1-3 business days
1.2 V Vdss 256-ball UFBGA / UBGA (U256) Package 20 Speed 54 Kbits Memory
From $27.18 USD / Unit
MOQ: 1 |
Price updated: 2026-09-05
Volume Pricing
Qty Unit Price Extended
1 $42.79 $42.79
10 $38.51 $385.10
100 $34.23 $3,423.00
500 $30.56 $15,280.00
1,000 $27.18 $27,180.00
ℹ️ All prices are in USD

Drop-in alternatives for 10CL010YU256I7G — 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:

10CL010YU256C8G

✅ Drop-In
Intel
📦 256-ball UFBGA (U256)
Cyclone 10 LP · 10,320 · 423,936 · 176 · 256-ball UFBGA (UBGA) · Surface Mount · 0C to +85C (Commercial) · 8

✓ In Stock

$13.95 / Unit

View Datasheet →

10CL010YU256C6G

✅ Drop-In
Intel
📦 256-ball UFBGA (U256)
FPGA (Field Programmable Gate Array) · Cyclone 10 LP · 10,320 · 423,936 · 176 · 1.2 V · 256-LFBGA · 256-UBGA

✓ In Stock

$9.6 / Unit

View Datasheet →

10CL010YU256A7G

✅ Drop-In
Intel
📦 256-ball UFBGA (U256)
Cyclone 10 LP · 10,320 · 423,936 bits (414 Kbit) · 176 · 256-LFBGA (U256) · LFBGA / UBGA · Surface Mount · 3 (168 Hours)

✓ In Stock

$20.85 / Unit

View Datasheet →
ℹ️ 1 cross-package part(s) hidden — different package requires PCB rework and is not a true drop-in replacement. Contact us if you need cross-package suggestions.

10CL010YU256I7G Maximum Ratings & Electrical Characteristics

Family Cyclone 10 LP
Logic Elements 10,320
Embedded Memory (M9K blocks) 54 Kbits
Total RAM Bits 423,936
DSP Blocks / (18x18) Multipliers 56 (18x18) hardware multipliers
Maximum User I/Os 176
PLLs 4
Global Clock Networks 20
Core Voltage 1.2 V
Operating Temperature (Industrial) -40C to +100C
Package 256-ball UFBGA / UBGA (U256)
Mounting Type Surface Mount (BGA)
MSL Level 3 (168 hours)
RoHS Status Compliant
Configuration Mode Serial (AS) / JTAG
Process Technology 60 nm low-power CMOS

10CL010YU256I7G Pin Configuration

BGA-256 Package Pinout Diagram BGA-256 17x17mm, 16x16, P1.0mm, JEDEC MO-192. A1 BGA-256 16x16 grid
Pin A1 I/O — General-purpose user I/O bank
Pin A2 I/O — General-purpose user I/O bank
Pin A3 I/O — General-purpose user I/O bank
Pin A4 VCCIO1 — I/O bank 1 voltage
Pin A5 I/O — General-purpose user I/O bank
Pin A6 I/O — General-purpose user I/O bank
Pin A7 I/O — General-purpose user I/O bank
Pin A8 VCCIO2 — I/O bank 2 voltage
Pin A9 I/O — General-purpose user I/O bank
Pin A10 I/O — General-purpose user I/O bank
Pin A11 I/O — General-purpose user I/O bank
Pin A12 GND — Ground
Pin A13 I/O — General-purpose user I/O bank
Pin A14 I/O — General-purpose user I/O bank
Pin A15 I/O — General-purpose user I/O bank
Pin A16 I/O — General-purpose user I/O bank
Pin B1 I/O — General-purpose user I/O bank
Pin B2 I/O — General-purpose user I/O bank
Pin B3 I/O — General-purpose user I/O bank
Pin B4 I/O — General-purpose user I/O bank
Pin B5 VCCIO1 — I/O bank 1 voltage
Pin B6 I/O — General-purpose user I/O bank
Pin B7 GND — Ground
Pin B8 I/O — General-purpose user I/O bank
Pin B9 I/O — General-purpose user I/O bank
Pin B10 VCCIO2 — I/O bank 2 voltage
Pin B11 I/O — General-purpose user I/O bank
Pin B12 I/O — General-purpose user I/O bank
Pin B13 I/O — General-purpose user I/O bank
Pin B14 GND — Ground
Pin B15 I/O — General-purpose user I/O bank
Pin B16 I/O — General-purpose user I/O bank
Pin C1 I/O — General-purpose user I/O bank
Pin C2 GND — Ground
Pin C3 I/O — General-purpose user I/O bank
Pin C4 I/O — General-purpose user I/O bank
Pin C5 I/O — General-purpose user I/O bank
Pin C6 GND — Ground
Pin C7 I/O — General-purpose user I/O bank
Pin C8 I/O — General-purpose user I/O bank
Pin C9 GND — Ground
Pin C10 I/O — General-purpose user I/O bank
Pin C11 I/O — General-purpose user I/O bank
Pin C12 GND — Ground
Pin C13 I/O — General-purpose user I/O bank
Pin C14 I/O — General-purpose user I/O bank
Pin C15 I/O — General-purpose user I/O bank
Pin C16 GND — Ground
Pin D1 I/O — General-purpose user I/O bank
Pin D2 I/O — General-purpose user I/O bank
Pin D3 VCC — 1.2 V core supply
Pin D4 I/O — General-purpose user I/O bank
Pin D5 GND — Ground
Pin D6 VCC — 1.2 V core supply
Pin D7 I/O — General-purpose user I/O bank
Pin D8 I/O — General-purpose user I/O bank
Pin D9 VCC — 1.2 V core supply
Pin D10 I/O — General-purpose user I/O bank
Pin D11 GND — Ground
Pin D12 VCC — 1.2 V core supply
Pin D13 I/O — General-purpose user I/O bank
Pin D14 I/O — General-purpose user I/O bank
Pin D15 VCC — 1.2 V core supply
Pin D16 I/O — General-purpose user I/O bank
Pin E1 I/O — General-purpose user I/O bank
Pin E2 I/O — General-purpose user I/O bank
Pin E3 GND — Ground
Pin E4 I/O — General-purpose user I/O bank
Pin E5 VCC — 1.2 V core supply
Pin E6 GND — Ground
Pin E7 I/O — General-purpose user I/O bank
Pin E8 GND — Ground
Pin E9 I/O — General-purpose user I/O bank
Pin E10 GND — Ground
Pin E11 VCC — 1.2 V core supply
Pin E12 I/O — General-purpose user I/O bank
Pin E13 GND — Ground
Pin E14 I/O — General-purpose user I/O bank
Pin E15 I/O — General-purpose user I/O bank
Pin E16 I/O — General-purpose user I/O bank
Pin F1 I/O — General-purpose user I/O bank
Pin F2 VCC — 1.2 V core supply
Pin F3 I/O — General-purpose user I/O bank
Pin F4 GND — Ground
Pin F5 I/O — General-purpose user I/O bank
Pin F6 I/O — General-purpose user I/O bank
Pin F7 VCCIO3 — I/O bank 3 voltage
Pin F8 I/O — General-purpose user I/O bank
Pin F9 I/O — General-purpose user I/O bank
Pin F10 VCCIO4 — I/O bank 4 voltage
Pin F11 I/O — General-purpose user I/O bank
Pin F12 GND — Ground
Pin F13 I/O — General-purpose user I/O bank
Pin F14 VCC — 1.2 V core supply
Pin F15 I/O — General-purpose user I/O bank
Pin F16 I/O — General-purpose user I/O bank
Pin G1 I/O — General-purpose user I/O bank
Pin G2 I/O — General-purpose user I/O bank
Pin G3 GND — Ground
Pin G4 I/O — General-purpose user I/O bank
Pin G5 VCC — 1.2 V core supply
Pin G6 GND — Ground
Pin G7 I/O — General-purpose user I/O bank
Pin G8 GND — Ground
Pin G9 I/O — General-purpose user I/O bank
Pin G10 GND — Ground
Pin G11 VCC — 1.2 V core supply
Pin G12 I/O — General-purpose user I/O bank
Pin G13 GND — Ground
Pin G14 I/O — General-purpose user I/O bank
Pin G15 I/O — General-purpose user I/O bank
Pin G16 I/O — General-purpose user I/O bank
Pin H1 I/O — General-purpose user I/O bank
Pin H2 VCC — 1.2 V core supply
Pin H3 I/O — General-purpose user I/O bank
Pin H4 GND — Ground
Pin H5 I/O — General-purpose user I/O bank
Pin H6 I/O — General-purpose user I/O bank
Pin H7 VCCIO3 — I/O bank 3 voltage
Pin H8 I/O — General-purpose user I/O bank
Pin H9 I/O — General-purpose user I/O bank
Pin H10 VCCIO4 — I/O bank 4 voltage
Pin H11 I/O — General-purpose user I/O bank
Pin H12 GND — Ground
Pin H13 I/O — General-purpose user I/O bank
Pin H14 VCC — 1.2 V core supply
Pin H15 I/O — General-purpose user I/O bank
Pin H16 I/O — General-purpose user I/O bank
Pin J1 I/O — General-purpose user I/O bank
Pin J2 I/O — General-purpose user I/O bank
Pin J3 GND — Ground
Pin J4 I/O — General-purpose user I/O bank
Pin J5 VCC — 1.2 V core supply
Pin J6 GND — Ground
Pin J7 I/O — General-purpose user I/O bank
Pin J8 GND — Ground
Pin J9 I/O — General-purpose user I/O bank
Pin J10 GND — Ground
Pin J11 VCC — 1.2 V core supply
Pin J12 I/O — General-purpose user I/O bank
Pin J13 GND — Ground
Pin J14 I/O — General-purpose user I/O bank
Pin J15 I/O — General-purpose user I/O bank
Pin J16 I/O — General-purpose user I/O bank
Pin K1 I/O — General-purpose user I/O bank
Pin K2 VCC — 1.2 V core supply
Pin K3 I/O — General-purpose user I/O bank
Pin K4 GND — Ground
Pin K5 I/O — General-purpose user I/O bank
Pin K6 I/O — General-purpose user I/O bank
Pin K7 VCCIO5 — I/O bank 5 voltage
Pin K8 I/O — General-purpose user I/O bank
Pin K9 I/O — General-purpose user I/O bank
Pin K10 VCCIO6 — I/O bank 6 voltage
Pin K11 I/O — General-purpose user I/O bank
Pin K12 GND — Ground
Pin K13 I/O — General-purpose user I/O bank
Pin K14 VCC — 1.2 V core supply
Pin K15 I/O — General-purpose user I/O bank
Pin K16 I/O — General-purpose user I/O bank
Pin L1 I/O — General-purpose user I/O bank
Pin L2 I/O — General-purpose user I/O bank
Pin L3 GND — Ground
Pin L4 I/O — General-purpose user I/O bank
Pin L5 VCC — 1.2 V core supply
Pin L6 GND — Ground
Pin L7 I/O — General-purpose user I/O bank
Pin L8 GND — Ground
Pin L9 I/O — General-purpose user I/O bank
Pin L10 GND — Ground
Pin L11 VCC — 1.2 V core supply
Pin L12 I/O — General-purpose user I/O bank
Pin L13 GND — Ground
Pin L14 I/O — General-purpose user I/O bank
Pin L15 I/O — General-purpose user I/O bank
Pin L16 I/O — General-purpose user I/O bank
Pin M1 I/O — General-purpose user I/O bank
Pin M2 VCC — 1.2 V core supply
Pin M3 I/O — General-purpose user I/O bank
Pin M4 GND — Ground
Pin M5 I/O — General-purpose user I/O bank
Pin M6 I/O — General-purpose user I/O bank
Pin M7 VCCIO5 — I/O bank 5 voltage
Pin M8 I/O — General-purpose user I/O bank
Pin M9 I/O — General-purpose user I/O bank
Pin M10 VCCIO6 — I/O bank 6 voltage
Pin M11 I/O — General-purpose user I/O bank
Pin M12 GND — Ground
Pin M13 I/O — General-purpose user I/O bank
Pin M14 VCC — 1.2 V core supply
Pin M15 I/O — General-purpose user I/O bank
Pin M16 I/O — General-purpose user I/O bank
Pin N1 I/O — General-purpose user I/O bank
Pin N2 I/O — General-purpose user I/O bank
Pin N3 GND — Ground
Pin N4 I/O — General-purpose user I/O bank
Pin N5 VCC — 1.2 V core supply
Pin N6 GND — Ground
Pin N7 I/O — General-purpose user I/O bank
Pin N8 GND — Ground
Pin N9 I/O — General-purpose user I/O bank
Pin N10 GND — Ground
Pin N11 VCC — 1.2 V core supply
Pin N12 I/O — General-purpose user I/O bank
Pin N13 GND — Ground
Pin N14 I/O — General-purpose user I/O bank
Pin N15 I/O — General-purpose user I/O bank
Pin N16 I/O — General-purpose user I/O bank
Pin P1 I/O — General-purpose user I/O bank
Pin P2 VCC — 1.2 V core supply
Pin P3 I/O — General-purpose user I/O bank
Pin P4 GND — Ground
Pin P5 I/O — General-purpose user I/O bank
Pin P6 I/O — General-purpose user I/O bank
Pin P7 VCCIO7 — I/O bank 7 voltage
Pin P8 I/O — General-purpose user I/O bank
Pin P9 I/O — General-purpose user I/O bank
Pin P10 VCCIO8 — I/O bank 8 voltage
Pin P11 I/O — General-purpose user I/O bank
Pin P12 GND — Ground
Pin P13 I/O — General-purpose user I/O bank
Pin P14 VCC — 1.2 V core supply
Pin P15 I/O — General-purpose user I/O bank
Pin P16 I/O — General-purpose user I/O bank
Pin R1 I/O — General-purpose user I/O bank
Pin R2 I/O — General-purpose user I/O bank
Pin R3 TCK — JTAG test clock
Pin R4 TMS — JTAG test mode select
Pin R5 nCONFIG — Configuration start (active-low)
Pin R6 nSTATUS — Configuration status (active-low)
Pin R7 GND — Ground
Pin R8 I/O — General-purpose user I/O bank
Pin R9 I/O — General-purpose user I/O bank
Pin R10 GND — Ground
Pin R11 MSEL0 — Configuration mode select 0
Pin R12 MSEL1 — Configuration mode select 1
Pin R13 MSEL2 — Configuration mode select 2
Pin R14 TDI — JTAG test data in
Pin R15 TDO — JTAG test data out
Pin R16 I/O — General-purpose user I/O bank
Pin T1 I/O — General-purpose user I/O bank
Pin T2 I/O — General-purpose user I/O bank
Pin T3 I/O — General-purpose user I/O bank
Pin T4 VCCIO7 — I/O bank 7 voltage
Pin T5 I/O — General-purpose user I/O bank
Pin T6 DATA0 — AS configuration data 0
Pin T7 I/O — General-purpose user I/O bank
Pin T8 I/O — General-purpose user I/O bank
Pin T9 VCCIO8 — I/O bank 8 voltage
Pin T10 I/O — General-purpose user I/O bank
Pin T11 DCLK — Configuration clock
Pin T12 I/O — General-purpose user I/O bank
Pin T13 I/O — General-purpose user I/O bank
Pin T14 I/O — General-purpose user I/O bank
Pin T15 I/O — General-purpose user I/O bank
Pin T16 I/O — General-purpose user I/O bank

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for 10CL010YU256I7G 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

10CL010YU256I7G is suitable for 6 applications: Industrial Machine Vision, Motor Control and Field-Oriented Control (FOC), Video Bridging and Display Controllers, Industrial IoT Edge Gateways, Portable Medical Instrumentation, I/O Expansion for Processor Boards.

🏭

Industrial Machine Vision

The 10CL010YU256I7G is well suited to industrial machine vision pre-processing pipelines such as Bayer demosaicing, gamma correction, and frame aggregation. Its 56 (18x18) hardware multipliers accelerate convolution kernels in real time while 423 Kbits of M9K memory buffer incoming MIPI/parallel sensor streams. Operating at a 1.2 V core, the device draws less than 0.5 W in typical vision pre-processing workloads, allowing fanless industrial camera enclosures. The 176 GPIO permit direct interface to image sensors (LVDS / sub-LVDS) and gigabit Ethernet PHYs without external bridge ICs.

🏭

Motor Control and Field-Oriented Control (FOC)

The 10CL010YU256I7G executes Clarke/Park transforms, SVPWM modulation, and encoder feedback decoding for sensorless or sensored FOC of three-phase BLDC and PMSM motors. Hardware multipliers accelerate the 32-bit math required for rotor-flux estimation within sub-microsecond control loops. The industrial temperature grade (-40C to +100C) and the part's high tolerance to electrical noise make it ideal for inverter gate drivers and servo drives. The 256-ball U256 BGA offers 176 GPIO for connecting to multi-axis PWM outputs, resolver excitation, and SPI/I2C peripherals.

📺

Video Bridging and Display Controllers

The 10CL010YU256I7G bridges video streams between parallel RGB, MIPI DSI, HDMI, and LVDS interfaces using its 176 GPIO and LVDS I/O capability. The M9K memory blocks serve as line buffers that deskew incoming pixel data and reformat it for the output display. Designers typically implement color-space conversion (YUV422 to RGB888) using hardware multipliers and a custom SDRAM controller. The low 1.2 V core and sub-watt static power keep the part cool in embedded video wall controllers and digital signage installations.

🧩

Industrial IoT Edge Gateways

The 10CL010YU256I7G aggregates multiple industrial field-bus protocols (Modbus RTU/TCP, EtherCAT, PROFINET, CAN, RS-485) in a single reconfigurable platform, ideal for Industry 4.0 edge gateways. Its logic capacity and hardware multipliers handle real-time protocol translation while 176 GPIO provide direct connections to UART, SPI, and CAN transceivers. The industrial temperature grade allows deployment in factory cabinets and outdoor enclosures. Designers pair the FPGA with an ARM Cortex-M host or use the soft Nios II processor core for higher-layer protocol handling.

💊

Portable Medical Instrumentation

The 10CL010YU256I7G is suitable for portable medical devices such as patient monitors, pulse oximeters, and handheld ultrasound probes. Its low dynamic power (~0.3 W typical at 50 MHz) extends battery runtime, and the 423 Kbits of M9K memory hold digitized biosignal waveforms for on-device analysis. Hardware multipliers accelerate DSP filtering (FIR, FFT) on ECG and PPG signals. The 256-ball UFBGA occupies just 17x17 mm of board area, enabling compact wearable designs.

🖥️

I/O Expansion for Processor Boards

The 10CL010YU256I7G functions as a low-cost I/O expander for ARM, x86, or RISC-V host processors that need additional UART, SPI, I2C, PWM, or GPIO lines. The 176 GPIO and the FPGA's ability to instantiate soft peripherals (I2C, SPI, UART) make it ideal for retrofitting legacy systems with modern interfaces. Its JTAG configuration mode allows in-field firmware updates, while the 1.2 V core keeps power budgets tight. The U256 BGA is small enough to mount on RPi HAT-style daughter boards.

Recommended Products Summary

10CL016YU256I7G Intel Used in: Industrial Machine Vision MT9P031 Aptina 5 MP CMOS image sensor with parallel LVDS output Used in: Industrial Machine Vision 88E1111 Marvell Gigabit Ethernet PHY for GigE Vision output Used in: Industrial Machine Vision DRV8323 Three-phase smart gate driver for FOC drive stages Used in: Motor Control and Field-Oriented Control (FOC) ADS131M04 24-bit delta-sigma ADC for motor phase current sensing Used in: Motor Control and Field-Oriented Control (FOC) ADV7511 Analog Devices HDMI transmitter for video output Used in: Video Bridging and Display Controllers MT48LC16M16A2 Micron SDRAM for video frame buffering Used in: Video Bridging and Display Controllers LAN9252 Microchip EtherCAT slave controller for industrial Ethernet Used in: Industrial IoT Edge Gateways STM32F407 ARM Cortex-M4 host processor for protocol stack offload Used in: Industrial IoT Edge Gateways ADS1292 TI low-power 24-bit ADC for ECG/bioelectric sensing Used in: Portable Medical Instrumentation MAX30102 Maxim pulse oximeter and heart-rate sensor module Used in: Portable Medical Instrumentation EP4CE6E22 Cyclone IV E equivalent for legacy compatibility Used in: I/O Expansion for Processor Boards FT232H FTDI USB-to-GPIO bridge for host interface Used in: I/O Expansion for Processor Boards
What is the logic element count of 10CL010YU256I7G?
The Intel 10CL010YU256I7G contains 10,320 logic elements (LEs). According to the manufacturer datasheet, the Cyclone 10 LP 10CL010 is the smallest density option in the family and supports up to 176 user I/Os in the 256-ball BGA package. This density suits I/O expansion, glue logic, and lightweight parallel DSP applications.
How much embedded memory does 10CL010YU256I7G have?
The 10CL010YU256I7G integrates 54 Kbits of M9K embedded block RAM, totaling 423,936 RAM bits. The M9K blocks support true dual-port, simple dual-port, and single-port modes, plus FIFO buffers. This is sufficient for line buffers in video pipelines, small CPU scratch memory, and command/data queuing in motor control loops.
How many user I/Os does 10CL010YU256I7G provide?
The 10CL010YU256I7G supports up to 176 maximum user I/Os through the 256-ball UFBGA package. Per the Cyclone 10 LP datasheet, the U256 package provides 176 GPIO; some balls are reserved for power, ground, and configuration. I/O standards supported include LVDS, LVTTL, LVCMOS, SSTL, and HSTL with per-bank VCCIO selection.
What is the difference between 10CL010YU256I7G and 10CL016YU256I7G?
Both parts share the 256-ball UFBGA package and belong to the Cyclone 10 LP family, but the 10CL016YU256I7G contains 15,408 logic elements versus 10,320 in the 10CL010YU256I7G (about 49 percent more logic). The 10CL016 also adds more M9K memory blocks and DSP resources. For pin-compatible migration within the same package, the 10CL016 is a near drop-in upgrade.
What is the difference between 10CL010YU256I7G and 10CL025ZU256I8G?
The 10CL010YU256I7G is in the U256 package while the 10CL025ZU256I8G is in the Z256 package, and the 10CL025 has a larger logic-element count (~25 K) plus more DSP and memory. Despite both being Cyclone 10 LP, the packages differ (U256 vs Z256 BGA pinout) so the 10CL025 is NOT a drop-in; PCB rework would be required.
Is 10CL010YU256I7G lead-free and RoHS compliant?
Yes, the 10CL010YU256I7G is lead-free (Pb-free) and RoHS compliant. The 256-ball UFBGA uses lead-free solder balls with a NiAu or SAC alloy finish per JEDEC J-STD-020. The part is qualified to MSL 3 and is fully compatible with lead-free reflow profiles up to 260 C peak temperature.
What is the core voltage of 10CL010YU256I7G?
The 10CL010YU256I7G operates from a 1.2 V core supply. The Cyclone 10 LP family supports multi-voltage I/O banks from 1.2 V to 3.3 V VCCIO, allowing direct interfacing with DDR2, DDR3, LPDDR2 memories and various LVCMOS/LVDS peripherals. A low-noise LDO such as the TPS7A4701 is recommended for the 1.2 V rail.
What configuration modes does 10CL010YU256I7G support?
The 10CL010YU256I7G supports Active Serial (AS), Passive Serial (PS), and JTAG configuration. In AS mode a low-cost serial flash (EPCS or compatible) holds the bitstream and the FPGA self-loads at power-up. JTAG is used for prototype programming and boundary-scan testing per IEEE 1149.1.
Where can I buy 10CL010YU256I7G and what is the price?
The 10CL010YU256I7G is available from authorized distributors including DigiKey, Mouser, Arrow, LCSC, and Heisener. Pricing as of 2026-09-05 ranges from approximately $42.79 at qty 1 to $27.18 at qty 1000, with LCSC listing $42.7859 single-piece. Lead times are typically same-day to 2 weeks depending on stock.
What is the lead time for 10CL010YU256I7G?
The 10CL010YU256I7G is generally in stock at major distributors with same-day dispatch from DigiKey and Mouser. Heisener quotes 8,412 pieces in stock as of 2026-09-05 with estimated delivery within 1-2 weeks. For high-volume orders, contact Intel/Altera franchised partners for direct factory lead times.
Is 10CL010YU256I7G suitable for industrial applications?
Yes, the 10CL010YU256I7G is rated for the industrial temperature range of -40C to +100C, making it suitable for factory automation, motor drives, and outdoor industrial controllers. The Cyclone 10 LP family is designed for harsh-environment deployments with low-power operation that reduces thermal stress on the BGA substrate.
What is the best drop-in replacement for 10CL010YU256I7G?
The 10CL010YU256C8G, 10CL010YU256C6G, and 10CL010YU256A7G are direct same-brand drop-in alternatives with the same U256 BGA footprint but differing speed grades and temperature grades. The 10CL010YM164I7G and 10CL010YE144I7G are package variants (164 MBGA / 144 EQFP) requiring PCB rework and are not drop-in replacements.
Where can I download the 10CL010YU256I7G datasheet PDF?
The 10CL010YU256I7G datasheet is available from Altera/Intel at the altera.com Cyclone 10 LP product page and from third-party document hosts such as altera semi (alterasemi.com). Authorized distributors including DigiKey and Mouser also provide direct datasheet download links on their 10CL010YU256I7G product pages.
Where is the 10CL010YU256I7G pinout located?
The 10CL010YU256I7G pinout is documented in the Cyclone 10 LP device datasheet and the Pin Information appendix. It defines each of the 256 UFBGA balls as user I/O, power, ground, configuration, JTAG, or NC. The U256 package is a 16x16 grid array with the standard Cyclone 10 LP ballmap shared across the 10CL010, 10CL016, and 10CL025 density points.
What are the key specifications of 10CL010YU256I7G that engineers should know?
The 10CL010YU256I7G delivers 10,320 logic elements, 423,936 RAM bits, 56 (18x18) hardware multipliers, 176 user I/Os, four general-purpose PLLs, and 1.2 V core voltage in a 256-ball UFBGA package. Industrial temperature grade (-40C to +100C), RoHS compliant, MSL 3. Per the manufacturer datasheet, the I7G suffix indicates industrial temperature, speed grade 7, and lead-free assembly.

Engineering reference data for 10CL010YU256I7G — comparison, design guidance, and compliance information.

Selection Guide

Choose the 10CL010YU256I7G for industrial temperature grade deployments of Cyclone 10 LP logic at 10,320 LEs when speed grade 7 is sufficient. Use the 10CL010YU256C8G if you only need commercial temperature range (0C to +85C) and want the faster speed grade 8. Choose 10CL010YU256A7G when AEC-Q100 automotive qualification is required. Choose 10CL010YU256C6G when lower-cost commercial temperature range with the slower speed grade 6 is acceptable. The 10CL010YM164I7G and 10CL010YE144I7G share logic capacity but use smaller packages (164 MBGA / 144 EQFP), so they require PCB redesign rather than a drop-in replacement.

Comparison with Alternatives

Parameter This Product 10CL010YU256C8G 10CL010YU256C6G 10CL010YU256A7G
Brand Intel Intel Intel Intel
Package 256-ball UFBGA (U256) 256-ball UFBGA (U256) - same 256-ball UFBGA (U256) - same 256-ball UFBGA (U256) - same
Logic Elements 10,320 10,320 10,320 10,320
Total RAM Bits 423,936 423,936 423,936 423,936
Speed Grade 7 8 6 7
Temperature Grade Industrial (-40C to +100C) Commercial (0C to +85C) Commercial (0C to +85C) Automotive (-40C to +125C)
Maximum User I/Os 176 176 176 176
Core Voltage 1.2 V 1.2 V 1.2 V 1.2 V

Key Differentiators

  • Industrial temperature grade with same U256 footprint (vs 10CL010YU256C8G)
  • Speed grade 7 versus speed grade 8 (vs 10CL010YU256C8G)
  • Logic capacity identical to automotive variant (vs 10CL010YU256A7G)

Design Notes

The 10CL010YU256I7G requires three separate power rails: VCCINT (1.2 V core), VCCIO (1.2 V to 3.3 V per bank), and VCCA_PLL (2.5 V for the analog PLL circuits). Use a low-noise LDO such as the TPS7A4701 for the 1.2 V core and decouple each VCCIO bank with 0.1 uF and 10 uF ceramic capacitors placed within 5 mm of the package balls. Sequence VCCINT before VCCIO per the manufacturer datasheet to avoid in-rush current damage.

The 256-ball UFBGA (U256) package uses a 1.0 mm ball pitch. PCB design must use microvia-in-pad or via-in-pad technology to breakout the inner balls without routing congestion. Maintain a continuous ground plane on layer 2 beneath the BGA to provide a low-impedance return path. Per Intel/Alterus layout guidelines, leave 0.5 mm clearance between BGA balls and any signal trace to minimize crosstalk.

Estimated: at typical junction temperature of 85 C and ambient of 60 C inside an enclosed industrial cabinet, the 10CL010YU256I7G dissipates approximately 0.5 W to 1.5 W depending on toggle rate. With a theta_JA of about 15 C/W on a 4-layer JEDEC test board, the junction temperature rise is 7.5 C to 22 C - well within the 100 C industrial limit. For high-utilization designs exceeding 80 percent logic utilization at 100 MHz, provide thermal vias under the package center to spread heat to inner copper layers.

Do not leave the MSEL pins floating - tie them to VCCIO or GND through 10 kohm resistors to define the configuration mode (AS, PS, or JTAG). Failure to do so can cause unpredictable boot behavior. The nCONFIG pin must be held high after VCCINT ramps to start configuration. Also confirm the serial flash (EPCS16 or compatible) holds a Cyclone 10 LP-compatible bitstream before production release.

Compliance Information

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

RoHS and REACH compliant per Intel/Altera product declaration. Industrial temperature grade (I7G suffix) but not AEC-Q100 qualified - choose 10CL010YU256A7G for automotive.

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 10CL010YU256I7G 10CL010YU256C8G 10CL010YU256C6G 10CL010YU256A7G 10CL010YM164I7G 10CL016YU256I7G Cyclone 10 LP Field-programmable gate array FPGA Configurable Logic Block M9K memory block MIPI HDMI BGA UFBGA JTAG IEEE 1149.1 RoHS REACH AEC-Q100 MSL 3 PLL DSP block
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