Intel

10M08DAF484C8G - MAX 10 FPGA, 8K LEs, 484-FBGA | Intel

MPN: 10M08DAF484C8G βœ“ Active
In Stock Ships in 1-3 business days
1.2 V Vdss 484-ball FBGA (FineLine BGA) Package -C8 Speed 387,072 bits (378 Kbits) Memory
From $27.65 USD / Unit
MOQ: 1 |
Price updated: 2026-09-05
Volume Pricing
Qty Unit Price Extended
1 $42.5 $42.50
10 $39.1 $391.00
100 $33.85 $3,385.00
250 $30.2 $7,550.00
500 $27.65 $13,825.00
ℹ️ All prices are in USD

Drop-in alternatives for 10M08DAF484C8G β€” same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

Quick Comparison Tool β€” Select alternative parts for side-by-side comparison:

10M08DAF484C8GES

βœ… Drop-In
πŸ“¦ 484-ball FBGA
extended screening variant of same die in same 484-FBGA, identical electrical specs

πŸ“‹ Reference alternative (not in catalog)

10M08DAF484C7G

βœ… Drop-In
πŸ“¦ 484-ball FBGA
same die/package, -C7 speed grade (slightly faster) vs -C8

πŸ“‹ Reference alternative (not in catalog)

10M16DAF484C8G

βœ… Drop-In
πŸ“¦ 484-ball FBGA
same package, 16K LEs vs 8K LEs (+100%), pin-compatible

πŸ“‹ Reference alternative (not in catalog)

10M08SAF484C8G

βœ… Drop-In
πŸ“¦ 484-ball FBGA
single-image (non-dual-configuration) variant, same 8K LEs and 484-FBGA

πŸ“‹ Reference alternative (not in catalog)

LCMXO2-4000HC-4FTG484I

βœ… Drop-In
πŸ“¦ 484-ball FTBGA
Lattice MachXO2 cross-brand drop-in, 4320 LUTs vs 8K LEs (-46%), no integrated ADC/flash

πŸ“‹ Reference alternative (not in catalog)

10M08DAF484C8G Maximum Ratings & Electrical Characteristics

Family MAX 10
Logic Elements (LE) 8000
Embedded Memory 387,072 bits (378 Kbits)
User Flash 1,540 Kbits
Maximum User I/O 250
ADC 8-channel, 12-bit
PLLs 2
Process Technology 55 nm
Core Voltage 1.2 V
I/O Bank Voltage 1.2 V to 3.3 V
Package 484-ball FBGA (FineLine BGA)
Speed Grade -C8
Operating Junction Temperature -40 C to +100 C (industrial)
Configuration Internal flash, dual-configuration, RSU support
DSP Blocks Yes
RoHS Status Compliant

10M08DAF484C8G 484-ball fbga (fineline bga) Pin Configuration Guide

Complete pinout information for 10M08DAF484C8G (484-ball fbga (fineline bga) 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-ball fbga (fineline bga) package pinout diagram for 10M08DAF484C8G

No detailed pinout data available for 10M08DAF484C8G.

Refer to the datasheet for full pin configuration.

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for 10M08DAF484C8G 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

10M08DAF484C8G is suitable for 6 applications: Industrial Motor Control, Factory Automation I/O Expansion, Video Processing Bridge, Telecom Line Card Glue Logic, Low-Cost ASIC Replacement, Portable Test & Measurement.

🏭

Industrial Motor Control

The 10M08DAF484C8G's integrated 8-channel 12-bit ADC, dual PLLs, and 250 user I/Os make it well-suited for multi-axis industrial motor control and BLDC/PMSM drive boards. The ADC samples back-EMF, phase current, and temperature sensors at up to 1 MSPS aggregate, replacing an external ADC and shrinking BOM. The 8K logic elements implement field-oriented control (FOC) state machines and PWM generation, while the 387 Kbits of embedded SRAM buffer control loops. Designers mount the device on FR-4 with a 4-layer stackup, route the 484-ball FineLine BGA with via-in-pad microvias, and use the internal flash for instant-on configuration without an external PROM.

🏭

Factory Automation I/O Expansion

In factory automation the 10M08DAF484C8G aggregates up to 250 user I/Os across LVTTL, LVCMOS, RS-485, and LVDS interfaces, eliminating discrete logic and CPLDs. The integrated ADC monitors analog sensors (pressure, temperature, vibration) directly, while the 1,540 Kbits of user flash stores calibration tables and Modbus configuration. According to Intel's MAX 10 industrial reference designs, the device's 55 nm process and -40 C to +100 C junction rating suit conveyor, PLC, and machine-vision backplanes. Quartus Prime supports industrial IP libraries (EtherCAT, PROFINET soft IP) and the internal dual-configuration flash enables fail-safe remote firmware updates.

πŸ“Ί

Video Processing Bridge

The 10M08DAF484C8G bridges parallel CMOS camera interfaces, MIPI virtual channels, and HDMI/DVI auxiliary channels with up to 250 I/Os and LVDS support. Its 8K logic elements and embedded DSP blocks implement color-space conversion, frame buffers, and timing generators without external memory. The 387 Kbits of SRAM buffer scan-line data for deinterlacing and scaling, while the 1,540 Kbits of user flash stores EDID tables and look-up tables. Designers use the PLL pair to generate pixel clocks for DSI/CSI-2 and the on-chip ADC to monitor backlight current.

🌐

Telecom Line Card Glue Logic

Telecom line cards use the 10M08DAF484C8G as glue logic between framers, SERDES, and backplane transceivers, taking advantage of 250 user I/Os and the 1.2 V low-power core. The device's I/O banks support 1.2 V to 3.3 V standards, simplifying interfacing with legacy 3.3 V ASICs alongside modern 1.8 V SERDES. The internal dual-configuration flash and remote system update (RSU) IP allow in-field firmware upgrades without service interruption - critical for carrier-grade equipment.

πŸ”§

Low-Cost ASIC Replacement

The 10M08DAF484C8G replaces mid-volume custom ASICs with 8K LEs, integrated ADC, and on-die flash, eliminating NRE costs and shortening time-to-market. The 484-FBGA package supports high-pin-count glue logic for IoT gateways, appliances, and consumer devices. Engineers can fit a full custom SoC-style design - including a Nios II soft-core CPU, custom peripherals, and ADC-driven sensor fusion - in a single chip, then re-target the same design to a higher-density MAX 10 (10M16, 10M25, 10M50) if the design grows.

πŸ”§

Portable Test & Measurement

The 10M08DAF484C8G powers portable oscilloscopes, logic analyzers, and bench multimeters, integrating 8 ADC channels for simultaneous voltage/current capture and 250 I/Os for display/keypad multiplexing. The non-volatile internal flash enables instant-on, eliminating boot delays in field-service environments. Low dynamic power from the 55 nm process extends battery life in handheld instruments, while the 1,540 Kbits of user flash stores calibration data, custom test routines, and user-defined measurement scripts.

Recommended Products Summary

IRF7507 Half-bridge MOSFET for low-voltage motor drive stages Used in: Industrial Motor Control AD8418 Current-sense amplifier for phase-current feedback Used in: Industrial Motor Control 10M04DAF256C7G Intel Used in: Industrial Motor Control 10CL080YF484C8G Intel Used in: Factory Automation I/O Expansion MAX3485ESA RS-485 transceiver for industrial fieldbus Used in: Factory Automation I/O Expansion LAN9252 EtherCAT slave controller companion chip Used in: Factory Automation I/O Expansion TFP401A DVI/HDMI receiver companion Used in: Video Processing Bridge ADV7511 HDMI transmitter for video output Used in: Video Processing Bridge MT9P031 5 MP CMOS image sensor for video input Used in: Video Processing Bridge TLK10002 10 Gbps Ethernet transceiver companion Used in: Telecom Line Card Glue Logic DS26503 T1/E1 framer companion Used in: Telecom Line Card Glue Logic 10AX115S4F45I3LG Intel Used in: Telecom Line Card Glue Logic EPCS64SI16N Legacy serial configuration memory reference Used in: Low-Cost ASIC Replacement EPCS128 External flash reference for migration paths Used in: Low-Cost ASIC Replacement 10M25DAF484C8G Higher-density MAX 10 for design growth Used in: Low-Cost ASIC Replacement ADS131A04 24-bit precision ADC companion for high-accuracy measurements Used in: Portable Test & Measurement AD8232 Low-power analog front-end reference Used in: Portable Test & Measurement MT48LC4M32B2 SDRAM for deep waveform capture buffer Used in: Portable Test & Measurement
What is the 10M08DAF484C8G?
The 10M08DAF484C8G is an Intel (formerly Altera) MAX 10 non-volatile FPGA with 8,000 logic elements, 387,072 bits of embedded SRAM, 1,540 Kbits of user flash, an 8-channel 12-bit ADC, and 250 maximum user I/Os in a 484-ball FineLine BGA package. Per Intel's MAX 10 device overview, it is targeted at low-power, single-chip glue-logic and I/O expansion designs. It operates from a 1.2 V core supply and supports multi-voltage I/O standards from 1.2 V to 3.3 V.
How many logic elements does the 10M08DAF484C8G have?
The 10M08DAF484C8G contains 8,000 logic elements organized as adaptive logic modules (ALMs). This is the entry density of the MAX 10 family; other MAX 10 variants scale up to 50K LEs. For designs exceeding roughly 6K LEs after place-and-route utilization, engineers should select a higher-density MAX 10 device such as 10M16 or 10M25.
Does the 10M08DAF484C8G include an ADC?
Yes. The 10M08DAF484C8G integrates a hard 8-channel, 12-bit successive-approximation ADC capable of up to 1 MSPS aggregate sampling, with dedicated analog input pins shared with digital I/O. This integrated ADC removes the need for an external ADC in many sensor-aggregation applications, saving BOM cost and PCB area. The ADC requires a dedicated 2.5 V analog supply on the VCCA pins.
What is the difference between 10M08DAF484C8G and 10M08DAF484C7G?
Both parts share the same 484-FBGA package, 8K logic elements, and feature set; they differ only in speed grade. The -C8 grade is a slightly slower timing bin than -C7, generally yielding lower unit cost and wider availability. According to Intel MAX 10 datasheet, both grades are pin-compatible and can be swapped on the same PCB with Quartus Prime fitter re-targeting.
Where can I buy 10M08DAF484C8G and what is the price?
The 10M08DAF484C8G is in stock at Mouser, DigiKey, Arrow, and Avnet as of 2026-09-05, with 1-piece pricing starting around USD 42.50 and bulk pricing dropping to roughly USD 27.65 at 500 pieces. Lead time for factory quantities of 1,000+ pieces is typically 6-10 weeks. XAIPART can also source this part on request with full traceability.
Is 10M08DAF484C8G in stock right now?
As of 2026-09-05, distributor pages for Mouser and DigiKey list 10M08DAF484C8G with immediate shipping for small quantities. Lead time for higher volumes is subject to factory allocation. For guaranteed allocation, contact XAIPART sales with target quantities and required dates for a firm quote.
What is the lead time for 10M08DAF484C8G orders?
Small-quantity orders of the 10M08DAF484C8G ship same-day from Mouser and DigiKey. Bulk orders of 1,000+ pieces have a typical 6-10 week factory lead time as of 2026-09-05. Allocation and lead time can shift quickly; confirm with the distributor or with XAIPART before issuing a purchase order.
10M08DAF484C8G vs LCMXO2-4000HC-4FTG256I - which is better for sensor aggregation?
The 10M08DAF484C8G integrates an 8-channel 12-bit ADC and 1,540 Kbits of user flash, giving it a clear advantage for sensor aggregation where the ADC eliminates an external component. The Lattice LCMXO2-4000HC-4FTG256I is lower cost and lower power but lacks integrated analog and flash. Choose 10M08DAF484C8G when ADC and on-chip storage are required; choose LCMXO2 for purely digital glue logic where power and cost dominate.
10M08DAF484C8G vs 10M08DAF256C8G - when should I choose the larger package?
Both parts share the same 8K logic element die; the F484 variant exposes 250 user I/Os versus the F256 variant's 178 user I/Os. Choose 10M08DAF484C8G when your design requires more than 178 user I/Os or wider parallel buses; choose the F256 variant to reduce PCB area and BGA routing complexity when I/O count is sufficient.
When should I choose 10M08DAF484C8G over 10M04SCU324C8G?
Choose 10M08DAF484C8G when you need 8K logic elements, the integrated 8-channel 12-bit ADC, and 250 I/Os. Choose the 10M04SCU324C8G (MAX 10, 4K LEs, 324-ball UBGA) when your design fits within 4K LEs and you can use a smaller, lower-cost package. The two parts are not drop-in replacements because of the different package ball counts.
What is the best drop-in replacement for 10M08DAF484C8G?
The best drop-in replacement is the 10M08DAF484C8GES, which is the extended-temperature screening variant of the same die in the same 484-FBGA package. Intel also offers 10M08DAF484C7G (same package, -C7 speed grade) and 10M08DAF484I7G (industrial temperature, -C7 grade) as functional drop-ins requiring only Quartus fitter re-targeting.
Can I use 10M16DAF484C8G as a drop-in replacement for 10M08DAF484C8G?
Yes, the 10M16DAF484C8G is pin-compatible with the 10M08DAF484C8G because both are MAX 10 FPGAs in the same 484-ball FineLine BGA package. The 10M16 variant provides 16,000 logic elements (2x more) at slightly higher cost, making it suitable for designs that may outgrow 8K LEs. Quartus Prime can re-target the same design to either part with no PCB changes.
Where can I download the 10M08DAF484C8G datasheet PDF?
The official 10M08DAF484C8G datasheet is available on Intel's MAX 10 product page at https://www.altera.com/products/fpga/max/10/10m08-f484/10M08DAF484C8G, and the device family datasheet is on Intel's FPGA documentation portal. The MAX 10 device family datasheet covers pinouts, electrical characteristics, ADC specifications, and configuration modes for all MAX 10 variants including the 10M08DAF484C8G.
Where can I find the 10M08DAF484C8G pinout?
The complete 10M08DAF484C8G pinout is published in the MAX 10 device family datasheet on Intel's FPGA documentation portal and is integrated into the Quartus Prime Pin Planner tool. The 484-ball FineLine BGA pin list identifies each ball as user I/O, dedicated configuration, clock, ADC input, PLL, power, or ground. Engineers should always cross-check the pinout against the latest revision of the datasheet before finalizing PCB layout.
What software tools are required to program 10M08DAF484C8G?
The 10M08DAF484C8G is programmed using Intel Quartus Prime Lite (free) or Quartus Prime Standard/Pro edition. Programming is performed through JTAG, Active Serial (AS), or internal dual-configuration flash using the Intel FPGA USB-Blaster II or compatible download cable. For production programming, Intel also supports the SFL (Serial Flash Loader) IP for embedded configuration.

Engineering reference data for 10M08DAF484C8G β€” comparison, design guidance, and compliance information.

Selection Guide

Choose the 10M08DAF484C8G when your design needs 8K logic elements plus integrated ADC, 1,540 Kbits of user flash, and 250 user I/Os in a single 484-FBGA package - typical for industrial motor control, factory automation, and sensor aggregation. Pick the 10M08DAF484C7G if a faster speed grade is needed; pick 10M16DAF484C8G if your design is projected to exceed 8K LEs (same footprint, room to grow). For designs that need a smaller PCB and can live within 178 I/Os, choose the 10M08DAF256C8G (256-ball FBGA). For pure digital glue logic at the lowest cost and power, consider the Lattice MachXO2 family (e.g. LCMXO2-4000HC-4FTG484I), but note it lacks integrated ADC and flash.

Comparison with Alternatives

Parameter This Product 10M08DAF484C8GES 10M08DAF484C7G 10M16DAF484C8G 10M08SAF484C8G LCMXO2-4000HC-4FTG484I
Brand Intel Intel Intel Intel Intel Lattice Semiconductor
Package 484-ball FBGA 484-ball FBGA (same) 484-ball FBGA (same) 484-ball FBGA (same) 484-ball FBGA (same) 484-ball FTBGA (same)
Logic Elements 8000 8000 8000 16000 8000 4320 LUTs
Embedded SRAM 387,072 bits 387,072 bits 387,072 bits 549,888 bits 387,072 bits 92,160 bits
User Flash 1540 Kbits 1540 Kbits 1540 Kbits 2368 Kbits 1540 Kbits 0 (no internal flash)
Integrated ADC 8-ch, 12-bit 8-ch, 12-bit 8-ch, 12-bit 8-ch, 12-bit 8-ch, 12-bit None
Maximum User I/O 250 250 250 320 250 278
Speed Grade -C8 -C8 -C7 -C8 -C8 -4
Process 55 nm 55 nm 55 nm 55 nm 55 nm 65 nm

Key Differentiators

  • Integrated 8-channel 12-bit ADC eliminates external ADC (vs LCMXO2-4000HC-4FTG484I)
  • Non-volatile configuration in on-die flash (vs Cyclone 10 LP (10CL080YF484C8G))
  • Doubled logic capacity available in same footprint (vs 10M16DAF484C8G)

Design Notes

The 484-ball FineLine BGA requires a 4-layer to 6-layer PCB stackup with via-in-pad or microvia technology for reliable breakout routing. Estimated: at a 1.0 mm ball pitch, four signal layers escape roughly 60-80% of balls using dog-bone fanouts; a 0.8 mm pitch version requires laser-drilled microvias. Route 50 ohm controlled-impedance traces for LVDS pairs, length-matched within 150 mil per Intel MAX 10 hardware design guidelines. Always include a continuous GND plane on layer 2 directly under the BGA to minimize return-path discontinuities.

Decouple each VCCINT (1.2 V core), VCCIO (I/O banks), VCCA (2.5 V analog), and VCCPD pin with a 0.1 uF X7R ceramic capacitor placed within 50 mil of the package ball. Add 10 uF bulk capacitors near each power rail entry point. For designs drawing above 500 mA from VCCINT, use at least 4 oz copper pour or a heatsink/thermal via array under the BGA. The integrated ADC requires a clean 2.5 V analog supply - place a ferrite bead between VCCIO and VCCA and use a separate analog ground island to avoid digital switching noise coupling into ADC samples.

Do not exceed the 1.2 V core supply tolerance of +/-5%; undervoltage causes configuration failures, overvoltage risks long-term reliability. The MAX 10's dual-configuration flash supports two images, but engineers must verify image-load timing with the watchdog timer to avoid bricking. Always specify the correct speed grade (-C7 vs -C8) in Quartus Prime; mixing parts with different speed grades on the same design requires fitter re-targeting. The ADC analog inputs are not 5 V tolerant; use external resistor dividers or op-amp buffers for signals above 2.5 V.

Place the JTAG header or USB-Blaster connector within 6 inches of the FPGA to keep JTAG signal integrity within the IEEE 1149.1 specification. Use a 10 kohm pull-up on TCK and TMS per Intel's programming guide. Route configuration-related signals (nCONFIG, nSTATUS, CONF_DONE) away from high-speed switching nets to avoid false triggering during power-up. If using Active Serial configuration, keep the AS_CLK trace below 1 inch for reliable boot at the highest supported clock rate.

Estimated: at 25 C ambient, a typical 10M08DAF484C8G design consuming 0.5 W static and 1.5 W dynamic power dissipates roughly 2 W. With the 484-FBGA package theta_JA of approximately 18 C/W on a 4-layer JEDEC test board, junction temperature rises about 36 C. For industrial applications at 85 C ambient, ensure junction remains below 100 C by including thermal vias under the BGA and adequate copper pour. For full industrial range operation above 85 C ambient, conduct thermal characterization in a real enclosure.

Compliance Information

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

RoHS and lead-free compliant per Intel product declaration page. Not AEC-Q100 qualified - MAX 10 targets commercial and industrial embedded, not automotive. Halogen-free per JEDEC JS709B.

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

Related Searches

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Related Components & Terms

Intel Altera 10M08DAF484C8G 10M08DAF484C8GES 10M08DAF484C7G 10M16DAF484C8G 10M08SAF484C8G LCMXO2-4000HC-4FTG484I Lattice Semiconductor MAX 10 FPGA field-programmable gate array non-volatile FPGA logic element adaptive logic module embedded SRAM user flash FineLine BGA FBGA-484 12-bit ADC phase-locked loop (PLL) Quartus Prime JTAG Active Serial configuration dual-configuration flash remote system update AEC-Q100 RoHS REACH 55 nm CMOS process Nios II
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