10CL080YF484I7G vs 10CL016YF484C8G

Это подробное сравнение 10CL080YF484I7G и 10CL016YF484C8G предоставляет ценную информацию об их технических характеристиках и ключевых особенностях. Мы подробно рассматриваем важные факторы, включая соответствие требованиям RoHS, статус REACH, серию, способ монтажа, тип корпуса и другие соответствующие характеристики. Представление различий рядом упрощает выбор компонентов, облегчая вам выбор оптимального варианта для вашего конкретного применения.

Technical review by ETEI Component Engineering Source: manufacturer documentation

Replacement verdict

Compatible functional replacement candidate

The 10CL080YF484I7G and 10CL016YF484C8G share the same 484-pin FBGA package and Cyclone 10 LP device family, making them mechanically and architecturally compatible for board-level substitution. However, the 10CL080YF484I7G offers five times the logic density and a wider industrial temperature range, while the 10CL016YF484C8G provides a commercial-grade, lower-density alternative. Designers must validate logic utilization, timing closure, and thermal margins before committing to a drop-in replacement.

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

Parts at a glance

Part A

10CL080YF484I7G

Интель

Lifecycle
Active
Stock
2707 ПКС
Package
BGA-484
Series
Встроенные - FPGA (Field Programmable Gate Array)
Part B

10CL016YF484C8G

Альтера

Lifecycle
Active
Stock
9496 ПКС
Series
Встроенные - FPGA (Field Programmable Gate Array)

Key differences

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

Key electrical and mechanical differences between the two devices

Parameter 10CL080YF484I7G 10CL016YF484C8G Why it matters
Logic Elements (LEs) 80,000 16,000 LE count determines the amount of programmable logic available; a design that fits in one device may not fit in the other, so this is the primary capacity differentiator.
Total RAM Bits 2,810,624 562,176 Embedded memory capacity limits buffering, FIFOs, and data storage inside the FPGA; designs relying on large on-chip memory cannot be directly ported to the smaller device.
Embedded Multipliers (18x18) 244 56 DSP blocks are required for efficient arithmetic and signal processing; fewer multipliers restrict the amount of parallel computation the device can implement.
Maximum User I/O Pins 278 340 Available I/O determines how many external signals and peripherals can be interfaced; a mismatch can prevent a design from connecting all required external components.
Package 484-pin FBGA 484-pin FBGA Both devices share the same 484-pin FineLine BGA footprint, which supports board-level interchangeability even though the internal resources differ.
Supply Voltage 1.2 V core 1.2 V core Core voltage must match the board power design; identical 1.2 V requirements simplify power supply reuse between the two parts.
Speed Grade 7 (fastest) 8 (slower) Speed grade affects maximum operating frequency and timing closure; a slower grade may not meet the same clock rates as the faster device.
Operating Temperature Range -40°C to +100°C (Industrial) 0°C to +85°C (Commercial) Temperature grade determines suitability for harsh or industrial environments; the commercial part cannot be substituted in industrial applications.
Configuration Memory Type SRAM-based (volatile) SRAM-based (volatile) Both devices require external configuration memory at power-up, so the boot circuitry and configuration scheme are compatible between them.

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Full specification comparison

Use manufacturer datasheets as the final authority.

Specification 10CL080YF484I7G 10CL016YF484C8G
Series Cyclone® 10 LP Cyclone® 10 LP
Part Status Active Active
Digi Key Programmable - Not Verified
Number of Logic Elements / Cells - 15408
Total RAM Bits 2810880 516096
Number of I/O 289 340
Voltage - Supply 1.2V 1.2V
Mounting Type Surface Mount Surface Mount
Operating Temperature -40°C ~ 100°C (TJ) 0°C ~ 85°C (TJ)
Number of LA Bs / CL Bs - 963
Number of LABs/CLBs 5079 -
Number of Logic Elements/Cells 81264 -

Frequently asked questions

What are the key differences between the 10CL080YF484I7G and the 10CL016YF484C8G?

The primary differences are logic density and speed grade. The 10CL080YF484I7G is a Cyclone 10 LP device with 80,000 logic elements (LEs) and a speed grade of 7 (industrial temperature range, I). The 10CL016YF484C8G is a Cyclone 10 LP device with 16,000 LEs and a speed grade of 8 (commercial temperature range, C). Both use the same 484-pin FBGA package (F484).

Are the 10CL080YF484I7G and 10CL016YF484C8G pin-to-pin compatible?

Yes, both devices are offered in the same 484-pin FineLine BGA (FBGA) package with the same pinout for the Cyclone 10 LP family. However, pin-to-pin compatibility does not guarantee functional equivalence; the designer must verify that the target device supports the required I/O standards, transceiver channels (if any), and power supply requirements.

Can the 10CL016YF484C8G be used as a direct drop-in replacement for the 10CL080YF484I7G?

No, a direct drop-in replacement is not possible without design changes. The 10CL080YF484I7G has 80,000 LEs, while the 10CL016YF484C8G has only 16,000 LEs. If the original design utilizes more than 16,000 LEs, the smaller device cannot accommodate the logic. Additionally, the speed grade and temperature range differ (7 vs. 8, industrial vs. commercial), which affects timing closure and operating conditions.

What is the difference in speed grade between the 10CL080YF484I7G and the 10CL016YF484C8G?

The 10CL080YF484I7G has a speed grade of 7, while the 10CL016YF484C8G has a speed grade of 8. In Intel (Altera) Cyclone 10 LP nomenclature, a lower speed grade number indicates a faster device. Therefore, the 10CL080YF484I7G (speed grade 7) is faster than the 10CL016YF484C8G (speed grade 8).

What are the operating temperature ranges for the 10CL080YF484I7G and the 10CL016YF484C8G?

The 10CL080YF484I7G is specified for industrial temperature range (I), typically -40°C to +100°C junction temperature (Tj). The 10CL016YF484C8G is specified for commercial temperature range (C), typically 0°C to +85°C junction temperature (Tj). The exact temperature ranges should be confirmed in the respective Intel Cyclone 10 LP device datasheets.

Do both devices support the same configuration methods?

Yes, both the 10CL080YF484I7G and the 10CL016YF484C8G are Cyclone 10 LP FPGAs and support the same configuration schemes, including active serial (AS), passive serial (PS), JTAG, and active parallel (AP) configuration modes, as documented in the Intel Cyclone 10 LP device family datasheets.

What is the logic element (LE) count for each device?

The 10CL080YF484I7G contains 80,000 logic elements (LEs). The 10CL016YF484C8G contains 16,000 logic elements (LEs). This five-fold difference in logic capacity is the most significant functional distinction between the two parts.

Are the power supply requirements identical for both devices?

Both devices belong to the Cyclone 10 LP family and share the same core voltage (VCCINT) and I/O voltage (VCCIO) requirements as specified in the Intel Cyclone 10 LP device datasheet. However, the actual power consumption differs due to the difference in logic density and speed grade. The 10CL080YF484I7G, with more LEs and a faster speed grade, will generally consume more power than the 10CL016YF484C8G under equivalent operating conditions.