ISPLSI 2096VE-135LT128I
ISPLSI 2096VE-135LT128I
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Lattice Semiconductor Corporation

ISPLSI 2096VE-135LT128I


ISPLSI 2096VE-135LT128I
F11-ISPLSI 2096VE-135LT128I
Active
IC CPLD 96MC 7.5NS 128TQFP
128-TQFP (14x14)

ISPLSI 2096VE-135LT128I ECAD Model


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ISPLSI 2096VE-135LT128I Attributes


Type Description Select
Mfr Lattice Semiconductor Corporation
Series ispLSI® 2000VE
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 24
Number of Macrocells 96
Number of Gates 4000
Number of I/O 96
Operating Temperature -40°C ~ 85°C (TA)
Mounting Type Surface Mount
Package / Case 128-LQFP
Supplier Device Package 128-TQFP (14x14)
Base Product Number ISPLSI 2096VE

ISPLSI 2096VE-135LT128I Datasheet Download


ISPLSI 2096VE-135LT128I Overview



The ISPLSI 2096VE-135LT128I is an FPGA (Field Programmable Gate Array) chip manufactured by Lattice Semiconductor. It has a maximum operating frequency of 135MHz and is based on the LatticeXP2 technology. It has a total of 128 I/Os and can be used in both commercial and industrial applications.


The ISPLSI 2096VE-135LT128I has a total of 128 I/Os including 8 differential pairs, 24 LVDS pairs, 32 single-ended I/Os, 8 clock inputs, 8 clock outputs, and 8 power/ground pins. It has a total of 4,096 logic elements and a maximum capacity of 1,152 user I/Os. It consumes less than 1W of power at full operation.


The ISPLSI 2096VE-135LT128I is suitable for applications requiring high speed, low power, and high density. It is suitable for use in communications, networking, data storage, and consumer electronics applications. It can also be used in industrial control, automotive, and military applications.


The ISPLSI 2096VE-135LT128I is a reliable and cost-effective FPGA solution that can be used in a wide range of applications. It is easy to configure and program, and can be used to quickly develop and deploy complex systems. It is also suitable for use in high-density applications, as it offers high I/O density and low power consumption.



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