LFXP3C-3QN208I
- Mfr.Part #
- LFXP3C-3QN208I
- Manufacturer
- Lattice Semiconductor
- Package / Case
- 208-BFQFP
- Datasheet
- Download
- Description
- IC FPGA 136 I/O 208QFP
- Stock
- 1,866
- In Stock :
- 1,866
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- Manufacturer :
- Lattice Semiconductor
- Product Category :
- FPGAs (Field Programmable Gate Array)
- Terminal Position :
- QUAD
- Terminal Form :
- Gull wing
- Published :
- 2000
- Mounting Type :
- Surface Mount
- RAM Size :
- 6.8kB
- Voltage - Supply :
- 1.71V~3.465V
- Mount :
- Surface Mount
- Number of Pins :
- 208
- Moisture Sensitivity Level (MSL) :
- 3 (168 Hours)
- Supply Voltage :
- 1.8V
- Number of Gates :
- 2
- Time@Peak Reflow Temperature-Max (s) :
- 40
- ECCN Code :
- EAR99
- Operating Supply Voltage :
- 1.8V
- Frequency :
- 320MHz
- Pin Count :
- 208
- Organization :
- 384 CLBS
- RoHS Status :
- RoHS Compliant
- Operating Temperature :
- -40°C~100°C TJ
- Height Seated (Max) :
- 4.1mm
- Programmable Logic Type :
- FIELD PROGRAMMABLE GATE ARRAY
- Number of I/O :
- 136
- Lead Free :
- Lead Free
- Package / Case :
- 208-BFQFP
- Number of Logic Blocks (LABs) :
- 375
- Reach Compliance Code :
- Unknown
- Total RAM Bits :
- 55296
- Number of Logic Elements/Cells :
- 3000
- Memory Size :
- 8.3kB
- Terminal Pitch :
- 0.5mm
- Number of Logic Cells :
- 384
- Number of Outputs :
- 136
- Pbfree Code :
- yes
- Number of CLBs :
- 384
- Number of Terminations :
- 208
- Base Part Number :
- LFXP3
- Terminal Finish :
- Matte Tin (Sn)
- Combinatorial Delay of a CLB-Max :
- 0.63 ns
- Peak Reflow Temperature (Cel) :
- 245
- Packaging :
- Tray
- Series :
- XP
- Qualification Status :
- Not Qualified
- JESD-609 Code :
- e3
- Datasheets
- LFXP3C-3QN208I
LFXP3C-3QN208I Documents

FPGAs Lattice Semiconductor LFXP3C-3QN208I Overview
Introducing the LFXP3C-3QN208I from Lattice Semiconductor, a cutting-edge Field Programmable Gate Array (FPGA) designed to meet the rigorous demands of modern electronic applications. This FPGA stands out with its high I/O count and compact 208QFP package, making it an ideal solution for developers looking to optimize system performance with flexible, programmable logic solutions. The LFXP3C-3QN208I supports a variety of digital signal processing applications and offers a combination of low power consumption and high functionality, which makes it particularly attractive for designers aiming to increase system efficiency and reliability in a compact form factor. With the FPGAs Lattice Semiconductor LFXP3C-3QN208I, engineers are equipped to tackle complex digital computations and implement prototypes swiftly and effectively.
LFXP3C-3QN208I Features
The LFXP3C-3QN208I FPGA is equipped with 136 programmable I/O pins housed in a 208-pin Quad Flat Pack (QFP). This FPGA is designed for high-speed digital interfaces and is capable of supporting a wide array of configurations for various applications. Its programmable logic cells facilitate rapid prototyping and modifications during the design phase, which significantly speeds up time-to-market. Additionally, the device is noted for its robust power management capabilities, ensuring optimal performance with minimal power draw, making it suitable for energy-sensitive projects.
LFXP3C-3QN208I Applications
- Consumer Electronics: Utilized in devices such as smartphones, tablets, and personal media players for enhanced multimedia processing capabilities and flexible user interface design.
- Automotive Systems: Applied in automotive infotainment systems to manage multiple input/output video streams, improving both the functionality and reliability of multimedia and navigation systems.
- Industrial Automation: Enhances control systems in industrial environments by providing scalable logic solutions for machinery control and process automation, optimizing operational efficiency and safety.
- Telecommunications: Used in network equipment to handle complex signal processing tasks, ensuring faster data transmission and improved reliability of communication systems.
- Medical Devices: Incorporated into medical diagnostic equipment to manage data acquisition and signal processing tasks, thereby increasing the accuracy and speed of medical diagnostics.
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