| Parameters |
| Mount |
Surface Mount |
| Package / Case |
PLCC |
| Number of Pins |
84 |
| Packaging |
Bulk |
| Published |
1998 |
| Part Status |
Discontinued |
| Max Operating Temperature |
70°C |
| Min Operating Temperature |
0°C |
| Frequency |
250MHz |
| Operating Supply Voltage |
3.3V |
| Max Supply Voltage |
3.6V |
| Min Supply Voltage |
3V |
| Number of I/O |
68 |
| Memory Type |
EEPROM |
| Propagation Delay |
5 ns |
| Turn On Delay Time |
5 ns |
| Frequency (Max) |
192.3MHz |
| Number of Logic Elements/Cells |
8 |
| Number of Gates |
2500 |
| Number of Programmable I/O |
68 |
| Number of Logic Blocks (LABs) |
8 |
| Speed Grade |
5 |
| Number of Macro Cells |
128 |
| Radiation Hardening |
No |
| RoHS Status |
RoHS Compliant |
| Lead Free |
Contains Lead |
EPM7128AELC84-5 Overview
Currently, there are 128 macro cells, which are low-power cell sites (towers, antennas, masts) that serve as radio coverage.It is contained in package [0].In this case, there are 68 I/Os programmed.It is recommended that the chip be packaged by Bulk.In digital circuits, there are 2500gates, which act as a basic building block.The supply voltage should be maintained at 3.3V for high efficiency.EEPROM is adopted for storing data.This electronic part is mounted in the way of Surface Mount.The pins are [0].In this case, the maximum supply voltage is 3.6V.Despite its minimal supply voltage of [0], it is capable of operating.There are 68 programmable I/Os in this system.You can achieve 250MHzfrequencies.Ideally, the operating temperature should be greater than 0°C.It is recommended that the operating temperature be below 70°C.There are 8 logic blocks (LABs) in its basic building block.The fundamental building block consists of 8logic elements/cells.There should be a lower maximum frequency than 192.3MHz.
EPM7128AELC84-5 Features
PLCC package
68 I/Os
84 pins
8 logic blocks (LABs)
EPM7128AELC84-5 Applications
There are a lot of Altera EPM7128AELC84-5 CPLDs applications.
- SFP, QSFP, QSFP-DD, OSFP, Mini-SAS HD Port Management
- Multiple Clock Source Selection
- High speed graphics processing
- D/T registers and latches
- Auxiliary Power Supply Isolated and Non-isolated
- Software-driven hardware configuration
- LED Lighting systems
- Configurable Addressing of I/O Boards
- State machine design
- Programmable power management