10CL016YU484C8G vs 10CL080YF484I7G

Dieser detaillierte Vergleich von 10CL016YU484C8G und 10CL080YF484I7G bietet wertvolle Einblicke in deren Spezifikationen und Hauptmerkmale. Wir gehen ausführlich auf wichtige Faktoren ein, darunter RoHS-Konformität, REACH-Status, Serie, Montageart, Gehäusetyp und weitere relevante Eigenschaften. Die übersichtliche Darstellung der Unterschiede vereinfacht die Komponentenauswahl und erleichtert Ihnen die Wahl der optimalen Lösung für Ihre Anwendung.

Technical review by ETEI Component Engineering Source: manufacturer documentation

Replacement verdict

Compatible functional replacement candidate

The 10CL080YF484I7G and 10CL016YU484C8G share the same 484-pin FBGA package and Cyclone 10 LP device family, but differ in logic density, speed grade, and temperature grade. The 10CL080YF484I7G offers higher logic capacity and industrial temperature operation, while the 10CL016YU484C8G provides lower density at commercial temperature. Functional substitutability is feasible only when the reduced logic capacity and commercial temperature range are acceptable for the target application.

Logic Density Validation required
Package Type High match
Speed Grade Validation required
Operating Temperature Not compatible

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 10CL080YF484I7G 10CL016YU484C8G Why it matters
Logic Elements (LEs) 8,000 16,000 LE count determines the amount of programmable logic available; a device with half the LEs cannot implement designs that require the larger capacity.
Total RAM Bits 294,912 516,096 Embedded memory capacity limits buffering, FIFOs, and data storage within the FPGA; insufficient RAM prevents larger memory-intensive designs from fitting.
Number of I/Os 278 340 Available user I/O pins determine how many external signals the device can interface with; fewer pins may force design changes or prevent a drop-in replacement.
Number of LABs/CLBs 500 1,000 Logic array blocks define the granularity of the programmable fabric; a lower count reduces the total logic resources available for implementation.
Maximum Operating Temperature 100°C (TJ) 85°C (TJ) The industrial-grade temperature range of the first device supports harsher environments, while the commercial-grade second device may not meet the same thermal requirements.
Speed Grade 7 8 Speed grade affects maximum clock frequency and timing closure; a slower grade may not meet timing requirements designed for a faster device.
Package / Case 484-FBGA (23x23) 484-FBGA (23x23) Identical package and footprint allow the same PCB layout to accommodate either device, which is essential for physical substitutability.
Supply Voltage 1.2V 1.2V Matching core supply voltage means the same power delivery network can be used without redesign.
Mounting Type Surface Mount Surface Mount Consistent mounting style ensures compatibility with the same assembly process and board design.

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Full specification comparison

Use manufacturer datasheets as the final authority.

Specification 10CL016YU484C8G 10CL080YF484I7G
Series Cyclone® 10 LP Cyclone® 10 LP
Part Status Active Active
Number of LABs/CLBs 963 5079
Number of Logic Elements/Cells 15408 81264
Total RAM Bits 516096 2810880
Number of I/O 340 289
Voltage - Supply 1.2V 1.2V
Mounting Type Surface Mount Surface Mount
Operating Temperature 0°C ~ 85°C (TJ) -40°C ~ 100°C (TJ)

Frequently asked questions

What are the key differences between the 10CL080YF484I7G and the 10CL016YU484C8G?

The 10CL080YF484I7G is an Intel (Altera) Cyclone 10 LP FPGA with 80,000 logic elements, a 484-pin FBGA package, and an industrial temperature grade (I7). The 10CL016YU484C8G is a Cyclone 10 LP FPGA with 16,000 logic elements, a 484-pin UBGA package, and a commercial temperature grade (C8). They differ in logic density, package type, and temperature grade.

Are the 10CL080YF484I7G and 10CL016YU484C8G pin-to-pin compatible?

No. The 10CL080YF484I7G uses a 484-pin FBGA package, while the 10CL016YU484C8G uses a 484-pin UBGA package. These are different package types with different ball maps and PCB land patterns, so they are not pin-to-pin compatible.

Can the 10CL016YU484C8G be used as a direct replacement for the 10CL080YF484I7G?

No. The 10CL016YU484C8G has only 16,000 logic elements versus 80,000 in the 10CL080YF484I7G, and it uses a different package (UBGA vs FBGA) and a commercial temperature grade instead of industrial. A direct replacement is not possible without redesign.

What are the operating temperature ranges for these two FPGAs?

The 10CL080YF484I7G is rated for industrial temperature range (I7 grade), typically -40°C to +100°C junction temperature. The 10CL016YU484C8G is rated for commercial temperature range (C8 grade), typically 0°C to +85°C junction temperature. Refer to the official Intel Cyclone 10 LP datasheet for exact limits.

Do both devices belong to the same FPGA family?

Yes. Both the 10CL080YF484I7G and the 10CL016YU484C8G are members of the Intel (Altera) Cyclone 10 LP FPGA family, which shares the same architecture and configuration methodology but offers different logic densities and package options.

What configuration methods are supported by these Cyclone 10 LP devices?

Both devices support active serial (AS), passive serial (PS), and JTAG configuration modes, as documented in the Intel Cyclone 10 LP device datasheet. Configuration details are identical across the family, though the configuration file size differs with logic density.

Which device has higher logic capacity and embedded memory?

The 10CL080YF484I7G has 80,000 logic elements and correspondingly more embedded memory blocks than the 10CL016YU484C8G, which has 16,000 logic elements. Exact memory bit counts are available in the Intel Cyclone 10 LP datasheet.

Are these devices RoHS compliant and lead-free?

Yes. Both the 10CL080YF484I7G and the 10CL016YU484C8G are offered in RoHS-compliant, lead-free packages as stated in Intel's product material declarations. Always verify the specific ordering code on the manufacturer's website for the latest compliance status.