EPF6016ATI100-2N vs EPF6016ATC100-2N Comparison
Detailed side-by-side comparison of EPF6016ATI100-2N by Altera and EPF6016ATC100-2N by Altera. Compare key specifications, electrical parameters, packaging, lifecycle status, pricing, and availability to determine the best component for your design requirements.
Altera
EPF6016ATI100-2N - FLEX 6000 FPGA, 16K Gates, 100-TQFP | Altera/Intel
EPF6016ATI100-2N ObsoleteAltera
EPF6016ATC100-2N - 16K Gates FLEX 6000 FPGA, 100-TQFP | Altera/Intel
EPF6016ATC100-2N ObsoleteSpecification Comparison
| Parameter | EPF6016ATI100-2N | EPF6016ATC100-2N |
|---|---|---|
| Brand | Altera | Altera |
| Category | FPGA & CPLD | FPGA & CPLD |
| Lifecycle Status | Obsolete | Obsolete |
| Stock Status | In Stock | In Stock |
| Unit Price (USD) | $14.20 | $15.95 |
| Family | FLEX 6000 | β |
| Device Logic Elements | 1,320 LEs | β |
| Typical Gate Count | 16,000 gates | β |
| Logic Array Blocks (LABs) | 132 LABs (10 LEs per LAB) | 132 |
| User I/Os | 81 | β |
| Package | 100-pin TQFP | 100-pin TQFP |
| Internal Operating Frequency (max) | 166.67 MHz | β |
| Core Supply Voltage | 3.3 V | 3.3 V |
| Process Technology | 0.42 um CMOS SRAM | 0.42 Β΅m CMOS |
| Configuration Method | SRAM, JTAG BST, serial/parallel | β |
| I/O Standard Support | 3.3 V LVTTL/LVCMOS, 5.0 V tolerant | β |
| Setup Time | 2 ns (typical) | β |
| Hold Time | 0 ns (typical) | β |
| Operating Temperature | 0 C to 85 C (commercial) | 0 Β°C to +85 Β°C (Commercial) |
| Mounting Type | Surface Mount | Surface Mount |
| RoHS Status | [DATA_NEEDED: RoHS compliance] | β |
| Lead-Free | [DATA_NEEDED: lead-free status] | β |
| Series | β | FLEX 6000 |
| Logic Elements / Cells | β | 1,320 |
| Total Gates | β | 16,000 |
| Number of I/O | β | 81 user I/O |
| Maximum Internal Frequency | β | 172 MHz |
| I/O Supply Voltage | β | 3.3 V or 5 V tolerant |
| Configuration Memory | β | SRAM-based (volatile) |
| Package Code | β | C (100-TQFP) |
| Speed Grade | β | -2 |
| Lead-Free / RoHS | β | Yes (N suffix) |
| JTAG / IEEE 1149.1 | β | Yes |
| LUT Inputs per Logic Element | β | 4 |