Parameters |
Mount |
Surface Mount |
Package / Case |
PLCC |
Number of Pins |
68 |
Published |
1998 |
Part Status |
Active |
Max Operating Temperature |
70°C |
Min Operating Temperature |
0°C |
Frequency |
166.7MHz |
Operating Supply Voltage |
5V |
Max Supply Voltage |
5.25V |
Min Supply Voltage |
4.75V |
Number of I/O |
52 |
Memory Type |
EEPROM |
Propagation Delay |
7.5 ns |
Turn On Delay Time |
7.5 ns |
Frequency (Max) |
151.5MHz |
Number of Logic Elements/Cells |
4 |
Number of Gates |
1250 |
Number of Programmable I/O |
52 |
Number of Logic Blocks (LABs) |
4 |
Speed Grade |
7 |
Number of Macro Cells |
64 |
Height |
3.81mm |
Length |
24.23mm |
Width |
24.23mm |
Radiation Hardening |
No |
RoHS Status |
RoHS Compliant |
Lead Free |
Contains Lead |
EPM7064LC68-7 Overview
This network has 64macro cells, which are cells that provide radio coverage provided by a high-power cell site (tower, antenna, mast).The item is enclosed in a PLCC package.As you can see, this device has 52 I/O ports programmed into it.As a building block for digital circuits, there are 1250gates.It is recommended that the supply voltage be kept at 5Vto maximize efficiency.For data storage, EEPROMis adopted.The electronic part is mounted by Surface Mount.The 68pins are designed into the board.It operates with the maximal supply voltage of 5.25V.A minimum supply voltage of 4.75V is required for it to operate.Programmable I/Os are counted up 52.This can be achieved at a frequency of 166.7MHz.There should be a temperature above 0°Cat the time of operation.It is recommended to keep the operating temperature below 70°C.In total, it contains 4 logic blocks (LABs).The fundamental building block consists of 4logic elements/cells.There should be a lower maximum frequency than 151.5MHz.
EPM7064LC68-7 Features
PLCC package
52 I/Os
68 pins
4 logic blocks (LABs)
EPM7064LC68-7 Applications
There are a lot of Altera EPM7064LC68-7 CPLDs applications.
- I2C BUS INTERFACE
- I/O PORTS (MCU MODULE)
- Portable digital devices
- Digital multiplexers
- USB Bus
- Boolean function generators
- Software-driven hardware configuration
- DDC INTERFACE
- Code converters
- State machine control