EP2A25F672C8N vs EP2A15F672C9N Comparison
Detailed side-by-side comparison of EP2A25F672C8N by Intel and EP2A15F672C9N by Intel. Compare key specifications, electrical parameters, packaging, lifecycle status, pricing, and availability to determine the best component for your design requirements.
Specification Comparison
| Parameter | EP2A25F672C8N | EP2A15F672C9N |
|---|---|---|
| Brand | Intel | Intel |
| Category | FPGA & CPLD | FPGA & CPLD |
| Lifecycle Status | Nrnd | Nrnd |
| Stock Status | In Stock | In Stock |
| Unit Price (USD) | $205.00 | $155.00 |
| Family | APEX II | β |
| Technology Node | 0.15 um all-layer copper process | β |
| System Gates | 900,000 | β |
| Logic Elements / Cells | 24,320 | 16,640 |
| Maximum Internal Frequency | 333 MHz | β |
| Propagation Delay | 1.69 ns | 1.94 ns |
| User I/Os | 492 | β |
| Package | 672-ball FC-FBGA (FineLine BGA) | 672-ball FC-FBGA (27 x 27 mm, 1 mm pitch, FineLine BGA) |
| Package Body Size | 27 x 27 mm | β |
| Ball Pitch | 1.0 mm | β |
| Core Supply Voltage | 1.5 V | 1.5 V |
| Speed Grade | C8 | C9 (fastest commercial grade in the APEX II speed-grade system) |
| Operating Temperature | 0 C to 85 C (commercial) | 0Β°C to +85Β°C (commercial grade) |
| Multi-Gigabit Transceiver Rate | Up to 1 Gbps per channel | β |
| Mounting Type | Surface Mount | Surface Mount |
| RoHS Status | Compliant | [DATA_NEEDED: RoHS compliance status] |
| Lead-Free Suffix | N (lead-free, Pb-free finish) | β |
| Logic Family | β | APEX II (CMOS) |
| Series | β | Altera APEX II (EP2A) |
| Equivalent Gates | β | 600,000 |
| Maximum User I/O Pins | β | 492 |
| Internal Operating Frequency (max) | β | 379 MHz |
| Technology Process | β | 0.15 Β΅m all-layer copper CMOS, up to 8 metal layers |
| MSL Level | β | 3 (per FC-FBGA moisture sensitivity, typical) |
| Lead-Free / Halogen-Free | β | [DATA_NEEDED: lead-free status] |
| I/O Speed Grade | β | Up to 1 Gbps (LVDS) |
| Embedded Memory | β | Embedded dual-port RAM blocks |
| Special Blocks | β | CAM (Content-Addressable Memory), dedicated multipliers, PLLs |