Parameters |
Mounting Type |
Surface Mount |
Package / Case |
100-LQFP |
Supplier Device Package |
100-TQFP (14x14) |
Operating Temperature |
-40°C~85°C TA |
Packaging |
Tray |
Published |
1995 |
Series |
MACH® 5 |
Part Status |
Obsolete |
Moisture Sensitivity Level (MSL) |
3 (168 Hours) |
Max Operating Temperature |
85°C |
Min Operating Temperature |
-40°C |
Base Part Number |
M5LV-128 |
Operating Supply Voltage |
3.3V |
Programmable Type |
In System Programmable |
Max Supply Voltage |
3.6V |
Min Supply Voltage |
3V |
Number of I/O |
74 |
Memory Type |
EEPROM |
Number of Gates |
5000 |
Max Frequency |
71.4MHz |
Number of Programmable I/O |
100 |
Number of Macro Cells |
128 |
Voltage Supply - Internal |
3V~3.6V |
Delay Time tpd(1) Max |
12ns |
RoHS Status |
Non-RoHS Compliant |
M5LV-128/74-12VI Overview
128 macrocells are present in the mobile phone network, which offer radio coverage from a high-power cell tower, antenna, or mast.100-LQFPis the package in which it resides.It is programmed with 74 I/Os.Trayshould be used to package the chip.During operation, the operating temperature is kept at -40°C~85°C TA to ensure its reliability.Mount the chip by Surface Mount.This type of FPGA is a part of the MACH? 5 series.The M5LV-128can be used to identify its related parts.There are 5000 gates, which are devices that acts as a building block for digital circuits. It is recommended that the supply voltage be kept at 3.3Vto maximize efficiency.For data storage, EEPROMis adopted.It operates with the maximal supply voltage of 3.6V.With a minimal supply voltage of [0], it operates.A programmable I/O count of 100 has been recorded.The maximal frequency should be lower than 71.4MHz.It is recommended that the operating temperature be greater than -40°C.There should be a temperature below 85°Cat the time of operation.
M5LV-128/74-12VI Features
100-LQFP package
74 I/Os
The operating temperature of -40°C~85°C TA
M5LV-128/74-12VI Applications
There are a lot of Lattice Semiconductor Corporation M5LV-128/74-12VI CPLDs applications.
- Software-Driven Hardware Configuration
- Preset swapping
- I/O PORTS (MCU MODULE)
- Pattern recognition
- Portable digital devices
- Synchronous or asynchronous mode
- Timing control
- ToR/Aggregation/Core Switch and Router
- Reset swapping
- Address decoders