10M40DCF256A7G vs 10M40DCF256I7G

10M40DCF256A7G과 10M40DCF256I7G에 대한 심층 비교를 통해 두 제품의 사양 및 주요 특징에 대한 유용한 정보를 얻을 수 있습니다. RoHS 준수 여부, REACH 인증 상태, 시리즈, 장착 방식, 패키지 유형 및 기타 관련 특성을 포함한 중요한 요소들을 자세히 다룹니다. 두 제품의 차이점을 나란히 제시함으로써 부품 선택이 간소화되어 특정 용도에 가장 적합한 옵션을 쉽게 선택할 수 있습니다.

Technical review by ETEI Component Engineering Source: manufacturer documentation

Replacement verdict

Compatible functional replacement candidate

The 10M40DCF256A7G and 10M40DCF256I7G are functionally equivalent MAX 10 FPGA devices sharing identical logic density, package, and I/O configuration; the only material distinction is the operating temperature grade, making the industrial-grade variant a viable substitute for the automotive-grade part provided the target application's thermal profile is validated.

Operating Temperature Grade Validation required
Logic Density High match
Package Type High match
Supply Voltage High match

Parts at a glance

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 10M40DCF256I7G Why it matters
Operating Temperature Range 0°C to +85°C (Commercial) -40°C to +100°C (Industrial) Determines the environments in which the device can reliably operate; industrial-grade parts are required for harsh or wide-temperature applications.
Logic Family / Series MAX 10 MAX 10 Identifies the FPGA family, ensuring architectural and toolchain compatibility between the two parts.
Logic Elements (LEs) 40000 40000 Defines the available programmable logic capacity, directly affecting the complexity of designs that can be implemented.
Package / Case 256-FBGA 256-FBGA Must match for physical board compatibility and footprint; identical packages allow drop-in replacement.
Mounting Type Surface Mount Surface Mount Determines the assembly process and PCB land pattern required for the device.
Supply Voltage 1.15V to 1.25V (Core) 1.15V to 1.25V (Core) Core voltage must be compatible with the board power design; identical values ensure electrical interchangeability.
Number of I/Os 178 178 I/O count determines how many external signals the FPGA can interface with, affecting system connectivity.
Embedded Memory 1260 kbit 1260 kbit On-chip memory capacity affects the ability to store data, buffers, or configuration within the FPGA.
Speed Grade 7 7 Speed grade indicates timing performance; matching grades ensures identical maximum operating frequencies.
RoHS / Environmental Status RoHS Compliant RoHS Compliant Environmental compliance affects regulatory acceptance and disposal requirements in different markets.

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Full specification comparison

Use manufacturer datasheets as the final authority.

Specification 10M40DCF256A7G 10M40DCF256I7G
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) -40°C ~ 100°C (TJ)

Frequently asked questions

What is the difference between the 10M40DCF256A7G and the 10M40DCF256I7G?

The primary difference is the operating temperature grade. The 10M40DCF256A7G is specified for commercial temperature operation, while the 10M40DCF256I7G is specified for industrial temperature operation. Both devices are Intel (Altera) MAX 10 field-programmable gate arrays in the same 256-ball FineLine BGA package with the same logic density and speed grade.

Are the 10M40DCF256A7G and 10M40DCF256I7G functionally identical?

Yes. Both devices are MAX 10 FPGAs with 40,000 logic elements, the same embedded memory, DSP blocks, analog-to-digital converter blocks, and configuration flash. The functional architecture is identical; the difference is the qualified temperature range.

What temperature ranges do the A7G and I7G suffixes indicate?

The "A7" suffix in 10M40DCF256A7G denotes the commercial temperature grade, and the "I7" suffix in 10M40DCF256I7G denotes the industrial temperature grade. The "7" in both part numbers indicates the speed grade. Designers should confirm the exact junction and ambient temperature limits in the Intel MAX 10 device datasheet before selecting a grade.

Can the 10M40DCF256A7G be used as a drop-in replacement for the 10M40DCF256I7G?

No, not unconditionally. Although both devices share the same 256-ball FineLine BGA package and pinout, the 10M40DCF256A7G is rated for a narrower temperature range than the 10M40DCF256I7G. A drop-in replacement is only acceptable if the target application remains within the commercial temperature limits of the A7G device and all other specifications are verified against the datasheet.

Do the 10M40DCF256A7G and 10M40DCF256I7G use the same package and pinout?

Yes. Both part numbers use the 256-ball FineLine BGA (FBGA) package with the same pinout. The "F256" designator in both part numbers indicates the identical package type and ball count, so PCB footprint and pin assignments are the same.

Which device should be selected for an industrial-temperature application?

The 10M40DCF256I7G should be selected for industrial-temperature applications because its "I" suffix indicates the industrial temperature grade. The 10M40DCF256A7G, with its "A" suffix, is intended for commercial temperature environments and should not be used outside its rated range.

Are the 10M40DCF256A7G and 10M40DCF256I7G available in the same speed grade?

Yes. Both part numbers include the "7" speed grade designator, indicating the same speed grade for the MAX 10 FPGA fabric. Timing performance for the FPGA core logic is therefore equivalent between the two devices when operated within their respective rated temperature ranges.