Intel

10M40DAF256C7G - 40K LE MAX 10 FPGA, 256FBGA | Intel

MPN: 10M40DAF256C7G ✓ Active
In Stock Ships in 1-3 business days
1.2 V Vdss [DATA_NEEDED: Supported I/O standards] Rds(on) FBGA-256 (256-LBGA) Package 1.23 Mbit Memory
From $46.83 USD / Unit
MOQ: 1 |
Price updated: 2026-09-05
Volume Pricing
Qty Unit Price Extended
1 $83.78 $83.78
10 $72.52 $725.20
100 $59.81 $5,981.00
500 $50.22 $25,110.00
1,000 $46.83 $46,830.00
ℹ️ All prices are in USD

Drop-in alternatives for 10M40DAF256C7G — 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:

10M40DAF256I7G

✅ Drop-In
Intel
📦 FBGA-256
MAX 10 · 40,000 · 1,290,240 (M9K + M144K blocks) · 178 · 256-FBGA (FineLine BGA), 17x17 mm · 55 nm TSMC · 1.2 V · -40C to +100C (Industrial, I7)

✓ In Stock

$65.8 / Unit

View Datasheet →

10M40DCF256C7G

✅ Drop-In
Altera
📦 FBGA-256
MAX 10 · Intel / Altera · 40,000 · 1,290,240 · 178 · 472.5 MHz · 55 nm · 1.2 V

✓ In Stock

$26.4 / Unit

View Datasheet →

10M40DCF256I7G

✅ Drop-In ⚠️ 参数待验证
Intel
📦 FBGA-256
MAX 10 · Intel MAX 10 · 40,000 · 1,290,240 · 178 · 55 nm non-volatile (flash) · 1.2 V · 256-FBGA (F256), 1.0 mm pitch

✓ In Stock

$52.12 / Unit

View Datasheet →

10M40DAF256C8G

✅ Drop-In ⚠️ 参数待验证
Altera
📦 FBGA-256
MAX 10 · 40,000 · 1,290,240 · 178 · 178 · 256-FBGA (FineLine BGA) · 256-LBGA (FBGA-256, 17 x 17 mm, 1.0 mm pitch) · 55 nm CMOS

✓ In Stock

$55.2 / Unit

View Datasheet →

10M40DCF256C8G

✅ Drop-In ⚠️ 参数待验证
Intel
📦 FBGA-256
MAX 10 · MAX 10 FPGA · 40,000 · 1,290,240 · Embedded SRAM (block RAM) · 178 (MAX) · [DATA_NEEDED: LAB count] · [DATA_NEEDED: register count]

✓ In Stock

$71.8 / Unit

View Datasheet →

10M40DAF256C7G Maximum Ratings & Electrical Characteristics

Product Type Field Programmable Gate Array (FPGA)
Series MAX 10
Non-volatile FPGA Yes
Number of Logic Elements 40000
Total RAM Bits 1290240 bits
Embedded Memory 1.23 Mbit
Number of User I/Os 178
Core Supply Voltage 1.2 V
Minimum Operating Temperature 0C
Maximum Operating Temperature +85C
Package / Case FBGA-256 (256-LBGA)
Package Body Size 17 mm x 17 mm
Package Pitch 1 mm
Mounting Style SMD/SMT
Packaging Type Tray
RoHS Status Compliant
Device Option Code DAF256C7G

10M40DAF256C7G 1 mm Pin Configuration Guide

Complete pinout information for 10M40DAF256C7G (1 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.

1 mm package pinout diagram for 10M40DAF256C7G

No detailed pinout data available for 10M40DAF256C7G.

Refer to the datasheet for full pin configuration.

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for 10M40DAF256C7G 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

10M40DAF256C7G is suitable for 6 applications: Industrial Motor Control, IoT Edge Computing and Sensor Fusion, LED Display and Video Interface, Factory Automation and Robotics, Remote I/O and Communication Concentrators, Test and Measurement Instruments.

🏭

Industrial Motor Control

The Intel 10M40DAF256C7G suits motor-control designs that need deterministic local logic and 178 user I/Os for encoder interfaces, PWM generation, H-bridge control, and safety interlocks. Because MAX 10 is non-volatile, the FPGA begins execution immediately after power-up without waiting for an external configuration device, reducing boot delay in drive panels. Its 40,000 logic elements can host multiple PID controllers, commutation state machines, and overcurrent protection logic, while the 1,290,240 RAM bits buffer position and current samples. The commercial 0C-to-85C rating matches indoor industrial cabinets; designs exposed to -40C should select the I7G variant. The FBGA-256 package supports compact inverter boards when combined with proper via fan-out and 1.2V core decoupling.

🧩

IoT Edge Computing and Sensor Fusion

For IoT edge nodes that require flexible sensor timing and protocol conversion, the 10M40DAF256C7G provides 40K logic elements, 178 user I/Os, and non-volatile instant-on operation. The FPGA can preprocess data from temperature, pressure, current, and motion sensors before forwarding results to a host MCU or SoC. Its programmable I/O banks can adapt to different sensor voltage domains while the embedded RAM stores small FIFOs for asynchronous data streams. Unlike MCU-only designs, the MAX 10 device supports deterministic parallel acquisition from multiple sensors in the same clock cycle. For smart building and industrial IoT installations that stay within 0C to +85C, the C7G variant is a cost-effective logic device. The 1.2V core rail should be cleanly separated from I/O banks during PCB layout.

💡

LED Display and Video Interface

The 10M40DAF256C7G is well suited for LED display controllers and video interface boards that must scan many parallel data lines. Its 178 user I/Os allow direct connection to RGB LED drivers, shift registers, and memory buses, while 40,000 logic elements implement scan state machines, gamma correction pipelines, and timing generators. The internal RAM blocks buffer line data between input video streams and the display panel, reducing external memory requirements in smaller panel designs. Non-volatile configuration enables the display controller to start up immediately when power is applied, avoiding configuration delay during unattended public-display operation. For commercial indoor LED walls and signage, the 0C-to-85C temperature rating is generally sufficient, though outdoor cabinets with high ambient temperatures should use industrial-rated variants.

🏭

Factory Automation and Robotics

In factory automation, the 10M40DAF256C7G can serve as an I/O expansion and protocol-bridging FPGA between fieldbus PHYs, robot controllers, and sensors. The 40K logic element architecture supports soft UARTs, SPI masters, and a custom parallel register map, while the 178 user I/Os connect to limit switches, actuators, and encoder interfaces. Because MAX 10 stores configuration internally, automated machines can restart quickly after a power glitch; no external configuration flash cable has to be attached on the line. The commercial temperature rating suits controlled factory floors, while the industrial-grade I7G variant is available for unheated production areas. Proper thermal management should still be provided on the 1.2V core, especially in sealed control cabinets.

🌐

Remote I/O and Communication Concentrators

The 10M40DAF256C7G can implement a remote I/O concentrator that aggregates digital inputs, analog trigger signals, and low-speed serial links before forwarding them to a central controller. Its non-volatile FPGA fabric starts on power-up, making it appropriate for distributed industrial nodes that must be ready quickly when the network powers on. With 178 I/Os, the device can monitor many discrete field signals and drive relay coils through external transceivers and drivers. The 40K logic element density provides room for protocol timing logic, cyclic redundancy check modules, and a simple soft-core processor if required. Use the FBGA-256 package in compact remote terminal unit designs, and maintain controlled impedance and glitch filtering for long cable connections to the field.

🔧

Test and Measurement Instruments

Benchtop instruments such as data loggers, waveform generators, and signal-routing boxes can use the 10M40DAF256C7G for high-speed digital control, trigger logic, and pattern generation. The 40,000 logic elements are sufficient for capture state machines and FIFO control, while 1,290,240 RAM bits provide on-chip data buffering for short acquisitions. The 178 user I/Os allow direct connection to ADCs, DACs, comparators, and front-panel digital interfaces. Non-volatile configuration is beneficial in instruments that must boot quickly when a user presses power. The commercial temperature grade covers typical laboratory environments. During layout, separate analog and digital ground areas and decouple the 1.2V core with multiple ceramic capacitors near the BGA balls.

What is the 10M40DAF256C7G?
The Intel/Altera 10M40DAF256C7G is a non-volatile MAX 10 field-programmable gate array (FPGA) with 40,000 logic elements, 178 user I/Os, and 1,290,240 RAM bits. It is delivered in a 256-ball FBGA package with a 17x17 mm body, runs from a 1.2V core supply, and is rated for commercial temperature from 0C to +85C. According to distributor listings, the device is RoHS compliant and supplied in tray packaging.
What are the key specifications of 10M40DAF256C7G that engineers should know?
Engineers evaluating the 10M40DAF256C7G should know its 40,000 logic elements, 178 user I/Os, 1,290,240 RAM bits, and FBGA-256 package with 1 mm ball pitch. The MAX 10 device is non-volatile, enabling configuration from internal flash at power-up. The commercial temperature rating is 0C to +85C and the core supply is 1.2V. These parameters make the FPGA suitable for moderate-density logic integration and parallel interface applications in commercial-grade systems.
What is the price of 10M40DAF256C7G?
As of 2026-09-05, one source listed the 10M40DAF256C7G at approximately USD 83.78 per piece at unit quantity. Pricing varies by distributor, order volume, and availability; higher-volume purchases generally qualify for reduced per-unit prices. Engineers should confirm current pricing directly on DigiKey, Mouser, Octopart, or other authorized distributor channels before generating a BOM cost estimate.
Where to buy 10M40DAF256C7G online?
The 10M40DAF256C7G is available from multiple online distributors, including DigiKey, Mouser, Octopart-listed suppliers, Heisener, Nantian Electronics, and AiPCBA. The DigiKey product page and Mouser product page show active listings for this MAX 10 FPGA. Because stock and pricing change frequently, request a quote or check the current web inventory before ordering.
Is 10M40DAF256C7G in stock?
Stock availability changes daily. At the time of the verified web data on 2026-09-05, Heisener showed an inventory quantity of 4,240 pieces for the 10M40DAF256C7G, while DigiKey and Mouser both displayed active orderable product pages. To confirm stock, check the live distributor listing just before purchase because component availability can change without notice.
What is the difference between 10M40DAF256C7G and 10M40DAF256I7G?
The 10M40DAF256C7G and 10M40DAF256I7G have the same MAX 10 40K logic-element density, 178 user I/Os, and FBGA-256 package. The primary difference is operating temperature grade: the C7 variant is commercial grade rated 0C to +85C, while the I7 variant is the industrial-temperature version rated for -40C to +100C. For cold-start or outdoor systems, the I7 variant is the safer choice.
Is 10M40DAF256C7G a drop-in replacement for 10M40DAF256I7G?
Yes, the 10M40DAF256I7G is a drop-in pin-compatible alternative for designs that can accept the industrial-temperature grade and potential cost difference. Both parts use the same 40,000-logic-element MAX 10 fabric, the same 178 user I/Os, the same 1,290,240 RAM bits, and the same FBGA-256 package. The I7G suffix changes the temperature rating, not the physical footprint.
What is the difference between 10M40DAF256C7G and 10M40DCF256C7G?
The 10M40DAF256C7G and 10M40DCF256C7G share the same 10M40 density and FBGA-256 package, but they carry different MAX 10 device option letters in the part number. The DAF variant includes the analog-capable ordering option signified by 'A', while the DCF variant is the non-ADC 'C' device option. Designers should verify which device option their configuration and pin files target before selecting one.
When should I choose 10M40DAF256C7G over 10M40DCF256C7G?
Choose 10M40DAF256C7G when you want the MAX 10 analog-capable option and commercial 0C-to-85C temperature rating. The DAF ordering code is useful for applications that may use the internal ADC feature of the MAX 10 device. Choose 10M40DCF256C7G if you are targeting the non-ADC product option and do not need analog input capability. Both share the same package and general logic density.
Why should I choose 10M40DAF256C7G over 10M40DAF256C8G?
The 10M40DAF256C7G and 10M40DAF256C8G are both commercial-temperature MAX 10 devices with the same 40K logic density and FBGA-256 package, but the final speed-grade digit differs. If the design is already timing-closed at the C7 speed grade, the C7G part may offer lower cost or better availability than the C8G variant. For marginal timing paths, verify whether the C8G part provides the additional performance headroom required by your application.
Hey Google, what can replace 10M40DAF256C7G?
Direct drop-in replacements for 10M40DAF256C7G include Intel/Altera MAX 10 variants in the same FBGA-256 package: 10M40DAF256I7G, 10M40DCF256C7G, 10M40DCF256I7G, 10M40DAF256C8G, and 10M40DCF256C8G. These parts share the 10M40 logic density and package, so they can be fitted on the same 256-ball land pattern. Temperature grade, ADC option, and speed grade differ among them, so confirm design requirements before substitution.
What is the lead time for 10M40DAF256C7G?
Lead time for the 10M40DAF256C7G varies by distributor and region. At Heisener, the lead time was listed as 'To be Confirmed' with an estimated delivery window of March 8-13 in the captured data. DigiKey and Mouser show active orderability and often ship same-day for stocked components, but actual lead time should be confirmed at the time of purchase.
What are the typical applications of 10M40DAF256C7G?
The 10M40DAF256C7G is commonly used in industrial motor control, factory automation, IoT edge gateways, LED/video display interfaces, remote I/O systems, and test-and-measurement equipment. Its 40,000 logic elements can implement soft processors, protocol timing, and custom parallel logic, while 178 user I/Os support multiple sensor, encoder, and communication interfaces. The non-volatile MAX 10 architecture also makes it suitable for systems requiring fast, reliable start-up without external configuration memory.
Where to download 10M40DAF256C7G datasheet PDF?
The 10M40DAF256C7G datasheet and related MAX 10 documentation are available from the Intel FPGA MAX 10 product page and from distributor product pages such as DigiKey, Mouser, and Octopart. While the captured web data does not include a direct PDF document number, the Intel MAX 10 page provides device overview documents, pin files, and configuration guides needed for board design.
Is there a cross-brand equivalent for 10M40DAF256C7G?
No verified pin-compatible cross-brand equivalent for the 10M40DAF256C7G was found in the web data searches. FPGA pinouts are vendor-specific, and a Lattice or Microchip part with 256 balls would not necessarily match the Intel/Altera MAX 10 ball map. If a cross-brand replacement is unavoidable, treat it as a redesign and use the vendor's pin files to verify every ball before change.
Does 10M40DAF256C7G support an internal ADC?
The MAX 10 family includes ADC-capable device options, and the 'A' in the 10M40DAF256C7G ordering code indicates the analog-capable MAX 10 option in the Intel/Altera naming convention. The exact number of ADC inputs and analog pin assignments should be verified from the device pin file for this specific package. If analog conversion is not required, the non-ADC 'C' ordering variant may be selected instead.

Engineering reference data for 10M40DAF256C7G — comparison, design guidance, and compliance information.

Selection Guide

Select the 10M40DAF256C7G when the design requires 40K logic elements, 178 user I/Os, 1.29 Mbit of RAM, and a compact FBGA-256 package in a commercial 0C-to-85C environment. Choose 10M40DAF256I7G when the same design must tolerate -40C to +100C industrial conditions. Choose 10M40DCF256C7G if you do not need the ADC-capable 'A' option and want the non-ADC ordering variant. Choose 10M40DAF256C8G if timing closure requires a different speed-grade suffix and the C7 variant cannot meet performance targets. A cross-brand equivalent is not verified; stay within Intel/Altera MAX 10 F256 variants to preserve the same ball map and pin compatibility.

Comparison with Alternatives

Parameter This Product 10M40DAF256I7G 10M40DCF256C7G 10M40DCF256I7G
Package FBGA-256 (17x17 mm) FBGA-256 (17x17 mm) FBGA-256 (17x17 mm) FBGA-256 (17x17 mm)
Brand Intel Intel Intel Intel
Logic Elements 40000 40000 40000 40000
User I/O 178 178 178 178
Total RAM Bits 1,290,240 1,290,240 1,290,240 1,290,240
Temperature Grade Commercial 0C to +85C Industrial, -40C to +100C Commercial 0C to +85C Industrial, -40C to +100C
Device Option A (ADC-capable ordering option) A (ADC-capable ordering option) C (non-ADC ordering option) C (non-ADC ordering option)
Speed/Temperature Suffix C7 I7 C7 I7

Key Differentiators

  • Commercial 0C-to-85C grade provides lower-cost option for indoor systems (vs 10M40DAF256I7G)
  • ADC-capable 'A' option in the part number (vs 10M40DCF256C7G)
  • Non-volatile instant-on configuration (vs 10M40DAF256I7G)

Design Notes

The 10M40DAF256C7G uses a 1.2V core supply, as shown in the verified distributor specification. Place multiple 100nF ceramic capacitors close to the core-supply balls of the FBGA-256 package and add a 10uF bulk capacitor near the point where 1.2V enters the PCB. Keep the 1.2V plane clean and away from noisier I/O bank supplies to reduce power-supply-induced jitter in high-speed user logic.

The FBGA-256 package has a 17 mm x 17 mm body with 1 mm ball pitch. Use a dog-bone fanout with 0.3 mm or smaller vias for signal escape routing. For the center balls, consider using blind/buried vias if the layer count is low. Confirm the exact ball map from the Intel pin file before final layout; the captured web data does not include the complete BGA pinout.

Do not confuse the commercial C7 grade with the industrial I7 grade. If the end product must start below 0C or operate in an unheated enclosure, select 10M40DAF256I7G or another I7 variant instead of the C7G device. Also verify the MAX 10 device option 'A' versus non-ADC 'C' because Quartus device selection and pin assignments may differ between options even when the package size is identical.

Compliance Information

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

RoHS compliance is stated in the Ampheo distributor listing. The 'G' suffix in the Intel part number commonly indicates lead-free/RoHS-compliant finish. No REACH, AEC-Q100, halogen-free, or conflict-minerals statements were found in the captured web data.

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 10M40DAF256C7G 10M40DAF256I7G MAX 10 FPGA Field Programmable Gate Array Non-volatile FPGA FBGA-256 BGA Surface-mount technology 40,000 logic elements 178 user I/Os 1,290,240 RAM bits RoHS
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