EPM9320ALC84-10 vs EPM9320LC84-15 Comparison
Detailed side-by-side comparison of EPM9320ALC84-10 by Intel and EPM9320LC84-15 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 | EPM9320ALC84-10 | EPM9320LC84-15 |
|---|---|---|
| Brand | Intel | Intel |
| Category | FPGA & CPLD | FPGA & CPLD |
| Lifecycle Status | Obsolete | Obsolete |
| Stock Status | In Stock | In Stock |
| Unit Price (USD) | $19.80 | $17.95 |
| Family | MAX 9000 | MAX 9000 |
| Device | EPM9320 | β |
| Macrocells | 320 | 320 |
| Logic Array Blocks (LABs) | 16 | 20 |
| Maximum User I/O Pins | 52 | β |
| Dedicated Inputs | 16 | β |
| Speed Grade | -10 (10 ns pin-to-pin delay) | β |
| Pin-to-Pin Delay (tPD) | 10 ns | β |
| Supply Voltage (VCCINT) | 5.0 V | β |
| In-System Programmability | 5.0 V ISP via IEEE 1149.1 JTAG | β |
| Technology | CMOS EEPROM-based, third-generation MAX | CMOS EEPROM-based, third-generation Multiple Array MatriX (MAX) |
| PCI Compliance | PCI Local Bus Specification Rev. 2.2 (speed grade -10) | β |
| Package | 84-pin PLCC (J-Lead) | 84-pin PLCC (Plastic Leaded Chip Carrier) |
| Operating Temperature | [DATA_NEEDED: commercial/industrial grade] | -40C to +85C (commercial) [DATA_NEEDED: exact grade] |
| Mounting Type | Surface Mount / Through-Hole (PLCC socket) | Surface Mount |
| RoHS Status | [DATA_NEEDED] | [DATA_NEEDED: confirm from manufacturer] |
| Non-Volatile Configuration | Yes (EEPROM cell, powers up in known state) | β |
| Architecture | MAX (Multiple Array MatriX) with FastTrack Interconnect | β |
| Series | β | EPM9320 |
| Device Type | β | CPLD (Complex Programmable Logic Device) |
| Usable Gates | β | 6,000 |
| Propagation Delay (tPD) | β | 15 ns (max) |
| Maximum Clock Frequency | β | 117.6 MHz |
| Supply Voltage (VCC) | β | 4.75 V to 5.25 V (5.0 V nominal) |
| Programmability | β | 5.0 V in-system programmable (ISP) via JTAG |
| JTAG Interface | β | IEEE Std. 1149.1 boundary-scan compliant |
| Built-in Pull-up Resistors | β | Yes, on every I/O pin |
| Architecture Feature | β | Pin-locking across design iterations |