
Lattice Semiconductor Corporation
LFXP3E-4T100C
LFXP3E-4T100C ECAD Model
LFXP3E-4T100C Attributes
Type | Description | Select |
---|---|---|
Mfr | Lattice Semiconductor Corporation | |
Series | XP | |
Package | Tray | |
Number of Logic Elements/Cells | 3000 | |
Total RAM Bits | 55296 | |
Number of I/O | 62 | |
Voltage - Supply | 1.14V ~ 1.26V | |
Mounting Type | Surface Mount | |
Operating Temperature | 0°C ~ 85°C (TJ) | |
Package / Case | 100-LQFP | |
Supplier Device Package | 100-TQFP (14x14) | |
Base Product Number | LFXP3 |
LFXP3E-4T100C Datasheet Download
LFXP3E-4T100C Overview
The LFXP3E-4T100C chip model is a low-cost, low-power, and low-voltage FPGA (Field Programmable Gate Array) device. It is manufactured by Lattice Semiconductor and is based on their LatticeXP3E architecture. The chip is designed to be used in applications such as industrial and automotive control, medical electronics, and telecommunications.
The LFXP3E-4T100C chip model features a total of 4,100 logic cells, which are divided into four main blocks of 1,000 cells each. Each cell has a dedicated memory block and a dedicated logic block, allowing for efficient and flexible design. The chip also has a total of 1,000 I/O pins, which can be configured to support a wide range of I/O protocols. The chip also supports a range of clock frequencies, ranging from 20MHz to 100MHz.
The LFXP3E-4T100C chip model also features a range of features that make it suitable for a variety of applications. These include support for a variety of communication protocols, such as SPI, UART, and I2C, as well as support for a range of embedded memory blocks, including SRAM, Flash, and EEPROM. The chip also features a wide range of power management features, such as dynamic voltage scaling and low-power sleep modes.
The LFXP3E-4T100C chip model is designed for use in a wide range of applications, including industrial, automotive, medical, and telecommunications. It is well-suited for applications that require low power consumption, low cost, and high performance. The chip is also ideal for applications that require a high degree of flexibility, as it allows for easy programming and reconfiguration.
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