Lattice Semiconductor_LFEC3E-3FN256C

Lattice Semiconductor
LFEC3E-3FN256C  
FPGAs

LFEC3E-3FN256C
696-LFEC3E-3FN256C
Ersa
Lattice Semiconductor-LFEC3E-3FN256C-datasheets-11617349.pdf
IC FPGA 160 I/O 256FBGA
In Stock : 3801

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LFEC3E-3FN256C Description

Lattice Semiconductor's LFEC3E-3FN256C is a powerful programmable logic device designed to meet the demands of various applications. This device is part of Lattice's EC family, which is known for its low power consumption, small form factor, and high performance.

Description:

The LFEC3E-3FN256C is a Field Programmable Gate Array (FPGA) that comes in a compact 256-ball Fine-Pitch Ball Grid Array (FBGA) package. It features a high-density architecture and offers a wide range of configurable logic elements, memory, and I/O resources to support complex designs.

Features:

  1. Compact 256-ball Fine-Pitch Ball Grid Array (FBGA) package for easy integration into small form-factor systems.
  2. High-density architecture with configurable logic elements, memory, and I/O resources for complex designs.
  3. Low power consumption, making it suitable for battery-powered and energy-efficient applications.
  4. Versatile I/O capabilities, supporting various industry-standard protocols and interfaces.
  5. On-chip memory options, including block RAM and distributed RAM, for efficient data storage and processing.
  6. Advanced security features, such as encryption and authentication, to protect intellectual property and sensitive data.
  7. Robust design and manufacturing processes, ensuring high reliability and long-term availability.

Applications:

The LFEC3E-3FN256C is suitable for a wide range of applications, including but not limited to:

  1. Industrial automation and control systems, where its low power consumption and small form factor are advantageous.
  2. Communication systems, such as base stations, routers, and switches, due to its versatile I/O capabilities and high performance.
  3. Consumer electronics, like smartphones, tablets, and wearable devices, where its advanced security features and low power consumption are crucial.
  4. Automotive systems, including infotainment, telematics, and advanced driver assistance systems (ADAS), thanks to its reliability and robustness.
  5. Aerospace and defense applications, where high performance, security, and reliability are essential.

In summary, Lattice Semiconductor's LFEC3E-3FN256C is a versatile, high-performance FPGA that offers a range of features and benefits for various applications. Its compact form factor, low power consumption, and advanced security features make it an ideal choice for designers looking to develop innovative and efficient solutions.

Tech Specifications

Operating Temperature
Total RAM Bits
ECCN
Number of I/O
Mounting Type
Product Status
Supplier Device Package
Series
Package / Case
Voltage - Supply
REACH Status
Mfr
HTSUS
Package
Number of Logic Elements/Cells
Base Product Number
Moisture Sensitivity Level (MSL)
Program Memory Type
PCB changed
HTS
Logic Elements
ECCN (US)
PPAP
Number of Global Clocks
Automotive
Operating Supply Voltage (V)
Total Number of Block RAM
Minimum Operating Temperature (°C)
Maximum Operating Temperature (°C)
Tradename
Supplier Package
Device Logic Units
Number of I/O Banks
Process Technology
Package Height
Family Name
Maximum Operating Supply Voltage (V)
EU RoHS
I/O Voltage (V)
Device Number of DLLs/PLLs
Maximum Differential I/O Pairs
Number of Inter Dielectric Layers
Embedded Memory (Kbit)
Package Length
Supplier Temperature Grade
In-System Programmability
Standard Package Name
Pin Count
Reprogrammability Support
Mounting
Lead Shape
Part Status
Copy Protection
Opr. Frequency (MHz)
Speed Grade
Package Width
User I/Os
Programmability
Shift Registers
Maximum Distributed RAM Bits
Minimum Operating Supply Voltage (V)

LFEC3E-3FN256C Documents

Download datasheets and manufacturer documentation for LFEC3E-3FN256C

Ersa ECP, EC Family      
Ersa All Dev Pkg Mark Chg 12/Nov/2018      
Ersa LatticeEC/P and LatticeXP Devices 25/Jul/2013      
Ersa ECP, EC Family      
Ersa Top Mark Format Change 20/Dec/2023      

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