M5LV-320/160-15YC
M5LV-320/160-15YC
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Lattice Semiconductor Corporation

M5LV-320/160-15YC


M5LV-320/160-15YC
F11-M5LV-320/160-15YC
Active
IC CPLD 320MC 15NS 208QFP
208-PQFP (28x28)

M5LV-320/160-15YC ECAD Model


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M5LV-320/160-15YC Attributes


Type Description Select
Mfr Lattice Semiconductor Corporation
Series MACH® 5
Package Tray
Programmable Type In System Programmable
Delay Time tpd(1) Max 15 ns
Voltage Supply - Internal 3V ~ 3.6V
Number of Macrocells 320
Number of I/O 160
Operating Temperature 0°C ~ 70°C (TA)
Mounting Type Surface Mount
Package / Case 208-BFQFP
Supplier Device Package 208-PQFP (28x28)
Base Product Number M5LV-320

M5LV-320/160-15YC Datasheet Download


M5LV-320/160-15YC Overview



The M5LV-320/160-15YC is a low-voltage, high-performance, low-power FPGA (Field Programmable Gate Array) chip model. It is designed to meet the requirements of high-speed, low-power, and low-cost applications. The chip is based on the Xilinx Virtex-5 FPGA architecture and is capable of supporting multiple clock frequencies up to 160MHz. It also offers a maximum of 320 user-programmable logic cells and 15Kbits of block RAM.


The M5LV-320/160-15YC chip model is designed to meet the needs of a wide range of applications including embedded systems, digital signal processing, communications, and automotive systems. It is also suitable for use in medical, industrial, and military applications.


The chip is designed with a 0.13-micron process technology, which enables it to operate at low voltage levels (1.2V to 1.5V). It also features an on-chip oscillator, which provides clock frequencies up to 160MHz. The chip also has two power-saving modes, which allow it to operate in low-power mode when not in use.


The chip is also equipped with a number of I/O options, which include LVDS, LVCMOS, and SSTL-2 I/O standards. It also has a number of advanced features such as low-skew clock networks, multiple clock domains, and programmable I/O delay.


Overall, the M5LV-320/160-15YC chip model is an ideal solution for applications that require high-speed, low-power, and low-cost performance. It is suitable for use in a variety of applications such as embedded systems, digital signal processing, communications, automotive systems, medical, industrial, and military applications.



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