
Lattice Semiconductor Corporation
ISPLSI 2128VE-135LT100I
ISPLSI 2128VE-135LT100I ECAD Model
ISPLSI 2128VE-135LT100I 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 | 32 | |
Number of Macrocells | 128 | |
Number of Gates | 6000 | |
Number of I/O | 64 | |
Operating Temperature | -40°C ~ 85°C (TA) | |
Mounting Type | Surface Mount | |
Package / Case | 100-LQFP | |
Supplier Device Package | 100-TQFP (14x14) | |
Base Product Number | ISPLSI 2128VE |
ISPLSI 2128VE-135LT100I Datasheet Download
ISPLSI 2128VE-135LT100I Overview
The ISPLSI 2128VE-135LT100I is a low-power field programmable gate array (FPGA) developed by Lattice Semiconductor. It is a member of the LatticeECP2/M family and is designed to provide designers with a low-cost, high-performance FPGA solution. The device is fabricated on a 0.13-micron CMOS process and has a maximum operating frequency of up to 300MHz. It has a total of 2128 logic elements, 456 Kbits of RAM, and a wide range of I/O options.
The device has a wide range of features that enable it to be used in a variety of applications. It is capable of supporting multiple clock domains, and has a wide range of built-in memory blocks, including SRAM, ROM, and EEPROM. It also features a range of advanced features, such as power management, clock management, and high-speed I/O. The device also offers a range of configurable I/O options, including LVDS, LVCMOS, and differential I/O.
The ISPLSI 2128VE-135LT100I is suitable for a wide range of applications, including automotive, industrial, consumer, and communications. It is particularly well-suited for applications that require low power consumption, high performance, and a high level of flexibility. The device can be used in applications such as motor control, digital signal processing, embedded systems, and communications. It is also suitable for use in applications that require a high degree of programmability and flexibility, such as FPGA-based systems.
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