10M40DCF256A7G vs 10M40DCF256C7G

10M40DCF256A7Gと10M40DCF256C7Gの詳細な比較では、それぞれの仕様と主要機能に関する貴重な洞察を提供します。RoHS指令への準拠、REACH規則、シリーズ、実装スタイル、パッケージタイプ、その他の関連特性など、重要な要素を詳細に網羅しています。違いを並べて表示することで、部品選定が容易になり、特定のアプリケーションに最適なオプションを選択しやすくなります。

Technical review by ETEI Component Engineering Source: manufacturer documentation

Replacement verdict

Compatible functional replacement candidate

The 10M40DCF256C7G is a functionally compatible replacement candidate for the 10M40DCF256A7G, sharing identical logic density, package, and I/O configuration, with the primary distinction being the device speed grade and corresponding operating temperature range. Designers should validate timing margins and thermal requirements before substituting in speed-critical or temperature-sensitive applications.

Logic Density High match
Package Type High match
Speed Grade Validation required
Operating Temperature Validation required

Parts at a glance

Part A

10M40DCF256A7G

インテル

Lifecycle
Active
Stock
5210 個数
Package
LBGA-256
Series
組み込み - FPGA(フィールド・プログラマブル・ゲート・アレイ)
Part B

10M40DCF256C7G

インテル

Lifecycle
Active
Stock
8682 個数
Package
LBGA-256
Series
組み込み - FPGA(フィールド・プログラマブル・ゲート・アレイ)

Key differences

Rows are prioritized by design impact. Highlighted values require attention during substitution.

Key electrical and mechanical differences between the two devices

Parameter 10M40DCF256A7G 10M40DCF256C7G Why it matters
Family MAX 10 FPGA MAX 10 FPGA Both parts belong to the same device family, so they share the same architecture, toolchain, and IP support.
Logic Elements (LEs) 40000 40000 Identical logic capacity means both devices can implement the same design complexity.
Package 256-pin FBGA 256-pin FBGA Same package ensures footprint and pinout compatibility for board-level substitution.
Supply Voltage 1.2 V core 1.2 V core Matching core voltage allows the same power delivery design to be reused.
Operating Temperature Range 0°C to 85°C (commercial) 0°C to 85°C (commercial) Temperature grade affects reliability and suitability for different environments.
Speed Grade 7 (fastest) 7 (fastest) Speed grade determines maximum operating frequency and timing closure margins.
Embedded Memory 1260 Kbits 1260 Kbits Equal embedded memory supports the same on-chip buffering and storage requirements.
User I/O Pins 178 178 Same I/O count ensures identical interface capability and board routing options.
Configuration Method Internal configuration flash Internal configuration flash Integrated configuration memory simplifies system design by removing external configuration devices.

Need help validating a replacement?

Send your BOM and application constraints for technical and sourcing review.

Full specification comparison

Use manufacturer datasheets as the final authority.

Specification 10M40DCF256A7G 10M40DCF256C7G
Supplier - Intel
Series MAX® 10 MAX® 10
Part Status Active Active
Number of LABs/CLBs 2500 2500
Number of Logic Elements/Cells 40000 40000
Total RAM Bits 1290240 1290240
Number of I/O 178 178
Voltage - Supply 1.15V ~ 1.25V 1.15V ~ 1.25V
Mounting Type Surface Mount Surface Mount
Operating Temperature -40°C ~ 125°C (TJ) 0°C ~ 85°C (TJ)

Frequently asked questions

What is the difference between the 10M40DCF256A7G and the 10M40DCF256C7G?

The primary difference is the speed grade. The 10M40DCF256A7G is specified with a speed grade of 7, while the 10M40DCF256C7G is specified with a speed grade of 7 but with a different operating temperature range. The "A" and "C" suffixes denote different temperature grades, with the "A" version typically supporting industrial temperature range and the "C" version supporting commercial temperature range, as defined in Intel/Altera MAX 10 device documentation.

Are the 10M40DCF256A7G and 10M40DCF256C7G pin-to-pin compatible?

Yes. Both devices are offered in the same 256-pin FineLine BGA (FBGA) package with identical pinouts, as they share the same device family, density, and package code. The package designator "F256" indicates a 256-ball FBGA in both part numbers.

What is the logic density of the 10M40DCF256A7G and 10M40DCF256C7G?

Both devices have a logic density of 40,000 logic elements (LEs), as indicated by the "40" in the part number. They belong to the Intel MAX 10 family of non-volatile FPGA devices.

Can the 10M40DCF256C7G be used as a direct drop-in replacement for the 10M40DCF256A7G?

Not necessarily. While both devices share the same package, pinout, and logic density, the difference in temperature grade means the 10M40DCF256C7G (commercial grade) may not meet the operating temperature requirements of a design intended for the 10M40DCF256A7G (industrial grade). The replacement is only valid if the target application operates within the commercial temperature range specified for the C-grade device.

What are the operating temperature ranges for the 10M40DCF256A7G and 10M40DCF256C7G?

Based on Intel MAX 10 device specifications, the "A" suffix in 10M40DCF256A7G indicates an industrial temperature range of -40°C to +125°C junction temperature (TJ), while the "C" suffix in 10M40DCF256C7G indicates a commercial temperature range of 0°C to +85°C junction temperature (TJ). Designers must verify the exact temperature grade from the manufacturer datasheet for their specific ordering code.

Do both the 10M40DCF256A7G and 10M40DCF256C7G support the same configuration methods?

Yes. Both devices are MAX 10 FPGAs and support the same configuration schemes, including internal configuration via on-chip flash memory, as well as external configuration through JTAG and other supported modes. The configuration method is determined by the device family and density, not by the temperature grade or speed grade suffix.

What is the speed grade of the 10M40DCF256A7G and 10M40DCF256C7G?

Both devices have a speed grade of 7, as indicated by the "7" in the part number. The speed grade defines the timing characteristics and maximum operating frequency of the device. The "G" suffix indicates RoHS compliance and lead-free packaging for both devices.