EP3C16F484C8N vs EP3C40F484C8 Comparison
Detailed side-by-side comparison of EP3C16F484C8N by Intel and EP3C40F484C8 by Intel. Compare key specifications, electrical parameters, packaging, lifecycle status, pricing, and availability to determine the best component for your design requirements.
Intel
EP3C16F484C8N
EP3C16F484C8N - Cyclone III FPGA 15K LE 484-BGA | Intel
EP3C16F484C8N β ActiveIntel
EP3C40F484C8
EP3C40F484C8 - Cyclone III FPGA, 39.6K LE, 484-BGA | Intel
EP3C40F484C8 β Last Time BuySpecification Comparison
| Parameter | EP3C16F484C8N | EP3C40F484C8 |
|---|---|---|
| Brand | Intel | Intel |
| Category | FPGA & CPLD | FPGA & CPLD |
| Lifecycle Status | Active | Last_time_buy |
| Stock Status | In Stock | In Stock |
| Unit Price (USD) | $29.95 | $88.10 |
| Series | Cyclone III | β |
| Manufacturer | Intel (formerly Altera) | β |
| Logic Elements | 15,408 LE | β |
| Adaptive Logic Modules (ALMs) | 963 ALM | β |
| Logic Array Blocks (LABs) | 963 LAB | β |
| Embedded Memory | 504 Kbit (M9K blocks) | β |
| Embedded 18x18 Multipliers | 56 | 56 |
| PLLs | 4 | 4 |
| Maximum User I/O Pins | 346 | β |
| Package | 484-BGA (FineLine BGA) | 484-ball FBGA (F484), 1.0 mm pitch, 23 x 23 mm |
| Speed Grade | 8 | C8 (commercial, mid-speed) |
| Operating Temperature | 0C to +85C (commercial) | 0C to +85C (commercial) |
| Process Technology | 60 nm low-power CMOS | β |
| Core Voltage | 1.2 V (typical) | β |
| Configuration | JTAG / Active Serial / Fast Passive Parallel | β |
| Mounting Type | Surface Mount | β |
| RoHS Status | Compliant | Compliant (lead-free FBGA) |
| Lead-Free | Yes | β |
| Device Family | β | Cyclone III |
| Logic Elements (LE) | β | 39,600 |
| Logic Array Blocks (LAB) | β | 2,475 |
| Embedded Memory (bits) | β | 1,161,216 |
| M9K Memory Blocks | β | 126 |
| Maximum User I/O | β | 331 |
| User I/O Banks | β | 8 |
| Process Node | β | 60 nm TSMC low-power CMOS |
| Supply Voltage (Core) | β | 1.2 V |
| Configuration Scheme | β | Active serial (AS), Passive serial (PS), JTAG |
| MSL Level | β | 3 (per JEDEC J-STD-020) |