ISPLSI 5256VE-125LT128
ISPLSI 5256VE-125LT128
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Lattice Semiconductor Corporation

ISPLSI 5256VE-125LT128


ISPLSI 5256VE-125LT128
F11-ISPLSI 5256VE-125LT128
Active
IC CPLD 256MC 7.5NS 128TQFP
128-TQFP (14x14)

ISPLSI 5256VE-125LT128 ECAD Model


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ISPLSI 5256VE-125LT128 Attributes


Type Description Select
Mfr Lattice Semiconductor Corporation
Series ispLSI® 5000VE
Package Tray
Programmable Type In System Programmable
Delay Time tpd(1) Max 7.5 ns
Voltage Supply - Internal 3V ~ 3.6V
Number of Logic Elements/Blocks 8
Number of Macrocells 256
Number of Gates 12000
Number of I/O 96
Operating Temperature 0°C ~ 70°C (TA)
Mounting Type Surface Mount
Package / Case 128-LQFP
Supplier Device Package 128-TQFP (14x14)
Base Product Number ISPLSI 5256VE

ISPLSI 5256VE-125LT128 Datasheet Download


ISPLSI 5256VE-125LT128 Overview



The ISPLSI 5256VE-125LT128 is a Field Programmable Gate Array (FPGA) chip model manufactured by Lattice Semiconductor. It is a high-performance, low-power FPGA device with a wide range of features and applications.


The ISPLSI 5256VE-125LT128 is a 5.25 million system gate device with a total of 256 I/O pins. It is designed to provide a high-performance solution for a wide range of applications, including communication, consumer electronics, networking, and industrial control. It has a maximum operating frequency of up to 125 MHz, a power dissipation of 2.5 W, and a voltage range of 1.2 to 3.3 V. It also features advanced low-power design techniques, such as dynamic power management and clock gating, to reduce power consumption.


The ISPLSI 5256VE-125LT128 includes a variety of features, such as a rich set of I/O options, integrated high-speed transceivers, advanced logic blocks, and a wide range of memory blocks. It also supports a wide range of programming languages, such as VHDL, Verilog, and SystemVerilog. Additionally, it has an integrated JTAG programming interface and supports in-system programming.


The ISPLSI 5256VE-125LT128 is ideally suited for a wide range of applications, such as automotive, consumer electronics, industrial control, and communication systems. It can be used to develop high-performance, low-power designs with a wide range of I/O and memory options. Additionally, its advanced low-power design techniques make it an ideal choice for power-sensitive applications.



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