LCMXO640E-3FTN256I
- Mfr.Part #
- LCMXO640E-3FTN256I
- Manufacturer
- Lattice Semiconductor
- Package / Case
- 256-LBGA
- Datasheet
- Download
- Description
- IC FPGA 159 I/O 256FTBGA
- Stock
- 27,014
- In Stock :
- 27,014
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- Manufacturer :
- Lattice Semiconductor
- Product Category :
- FPGAs (Field Programmable Gate Array)
- ECCN Code :
- EAR99
- Moisture Sensitivity Level (MSL) :
- 3 (168 Hours)
- Nominal Supply Current :
- 14mA
- Memory Type :
- SRAM
- Max Frequency :
- 500MHz
- Number of Terminations :
- 256
- Series :
- MachXO
- Qualification Status :
- Not Qualified
- Length :
- 17mm
- Operating Supply Current :
- 14mA
- Reach Compliance Code :
- not_compliant
- Terminal Position :
- BOTTOM
- Packaging :
- Tray
- Pbfree Code :
- yes
- Base Part Number :
- LCMXO640
- Package / Case :
- 256-LBGA
- Output Function :
- MACROCELL
- Pin Count :
- 256
- Operating Supply Voltage :
- 1.2V
- Mount :
- Surface Mount
- Terminal Finish :
- Tin/Silver/Copper (Sn95.5Ag4.0Cu0.5)
- Voltage - Supply :
- 1.14V~1.26V
- Number of LABs/CLBs :
- 80
- Factory Lead Time :
- 8 Weeks
- Terminal Pitch :
- 1mm
- Number of Pins :
- 256
- HTS Code :
- 8542.39.00.01
- Width :
- 17mm
- Number of Dedicated Inputs :
- 7
- Peak Reflow Temperature (Cel) :
- 260
- Number of Outputs :
- 159
- Number of Logic Cells :
- 640
- Number of I/O :
- 159
- Published :
- 2000
- Terminal Form :
- Ball
- Lead Free :
- Lead Free
- Propagation Delay :
- 4.9 ns
- Programmable Logic Type :
- FLASH PLD
- Number of Logic Elements/Cells :
- 640
- Number of Macro Cells :
- 320
- Time@Peak Reflow Temperature-Max (s) :
- 40
- Supply Voltage :
- 1.2V
- Mounting Type :
- Surface Mount
- RoHS Status :
- ROHS3 Compliant
- JESD-609 Code :
- e1
- Height Seated (Max) :
- 1.55mm
- Operating Temperature :
- -40°C~100°C TJ
- Datasheets
- LCMXO640E-3FTN256I

FPGAs Lattice Semiconductor LCMXO640E-3FTN256I Overview
The FPGAs Lattice Semiconductor LCMXO640E-3FTN256I is a high-performance FPGA device designed to meet the demanding needs of modern embedded systems. This IC offers a flexible programmable solution with a 256FTBGA package, making it ideal for applications requiring a compact form factor with extensive I/O capabilities. Equipped with 159 I/O pins, this FPGA provides ample connectivity for complex digital systems, while its robust design ensures reliable operation even in extended temperature environments. Its efficient architecture allows for rapid prototyping and customization, making the LCMXO640E-3FTN256I a preferred choice for developers and engineers looking to streamline their design processes.
LCMXO640E-3FTN256I Features
This FPGA from Lattice Semiconductor boasts several key features that make it stand out in the field of programmable logic devices. It supports a wide range of design applications thanks to its versatile 159 I/O pins and the compact 256-ball fine-pitch BGA (FTBGA) packaging. The device is designed to be utilized in extended temperature ranges, ensuring reliability under varying environmental conditions. Additionally, its programmability and reconfigurability make it an excellent choice for iterative design processes where flexibility and adaptability are paramount.
LCMXO640E-3FTN256I Applications
- Consumer Electronics: Applied in devices such as smart TVs and gaming consoles, this FPGA facilitates high-speed signal processing and enhances multimedia operations.
- Industrial Automation: In industrial settings, the LCMXO640E-3FTN256I is used to control machinery and processes, improving efficiency and safety with its robust I/O capabilities.
- Automotive Applications: Utilized within automotive systems for managing in-vehicle infotainment and advanced driver-assistance systems (ADAS), ensuring high reliability and performance under harsh conditions.
- Telecommunications: This device supports complex telecommunications infrastructures by enabling rapid data transmission and processing capabilities, essential for network management and optimization.
- Medical Devices: In the medical field, it is used in diagnostic and therapeutic equipment, offering precise control and flexibility needed for critical healthcare applications.
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