LFECP6E-4QN208I
LFECP6E-4QN208I
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rohs

Lattice Semiconductor Corporation

LFECP6E-4QN208I


LFECP6E-4QN208I
ECP
F11-LFECP6E-4QN208I
Active
IC FPGA 147 I/O 208QFP
208-PQFP (28x28)

LFECP6E-4QN208I ECAD Model


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LFECP6E-4QN208I Attributes


Type Description Select
Mfr Lattice Semiconductor Corporation
Series ECP
Package Tray
Number of Logic Elements/Cells 6100
Total RAM Bits 94208
Number of I/O 147
Voltage - Supply 1.14V ~ 1.26V
Mounting Type Surface Mount
Operating Temperature -40°C ~ 100°C (TJ)
Package / Case 208-BFQFP
Supplier Device Package 208-PQFP (28x28)
Base Product Number LFECP6

LFECP6E-4QN208I Datasheet Download


LFECP6E-4QN208I Overview



The LFECP6E-4QN208I is a Field Programmable Gate Array (FPGA) chip manufactured by Lattice Semiconductor. It is a low cost, low power and highly configurable device with a wide range of applications.


The FPGA chip is based on the LatticeECP6E architecture, which is a high-performance, low-power, and cost-effective FPGA solution. It has 4,608 logic elements and 208 I/O pins. The logic elements are divided into 4,032 4-input look-up tables (LUTs) and 576 Flip-Flops. The I/O pins are divided into four banks, each with 52 I/O pins. The chip also has two clock management tiles, which can be used for clock synthesis, phase shift and other clock management functions.


The FPGA chip has a wide range of applications, including digital signal processing, embedded system design, industrial automation, and automotive electronics. It can be used for high-performance applications such as image processing, video processing, and data acquisition. It is also suitable for low-power applications such as wireless sensor networks, IoT and wearable devices.


The FPGA chip has an operating temperature range of -40°C to +85°C and is available in a 208-pin, 7mmx7mm, 0.5mm pitch QFN package. It has a power dissipation of 2.5W and a maximum clock frequency of 400MHz. It is also RoHS compliant and is compatible with a wide range of development tools such as Lattice Diamond, Lattice ispLEVER, and Lattice ispVM.



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