LFXP15C-4F256C
- Mfr.Part #
- LFXP15C-4F256C
- Manufacturer
- Lattice Semiconductor
- Package / Case
- 256-BGA
- Datasheet
- Download
- Description
- IC FPGA 188 I/O 256FBGA
- Stock
- 24,832
- In Stock :
- 24,832
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- Manufacturer :
- Lattice Semiconductor
- Product Category :
- FPGAs (Field Programmable Gate Array)
- Terminal Position :
- BOTTOM
- Voltage - Supply :
- 1.71V~3.465V
- Package / Case :
- 256-BGA
- Packaging :
- Tray
- Number of Logic Blocks (LABs) :
- 1875
- Mounting Type :
- Surface Mount
- Operating Supply Voltage :
- 1.8V
- Number of CLBs :
- 1932
- Reach Compliance Code :
- not_compliant
- Moisture Sensitivity Level (MSL) :
- 3 (168 Hours)
- JESD-609 Code :
- e0
- Height Seated (Max) :
- 2.1mm
- Number of Logic Elements/Cells :
- 15000
- Total RAM Bits :
- 331776
- Supply Voltage :
- 1.8V
- ECCN Code :
- EAR99
- Max Frequency :
- 360MHz
- Series :
- XP
- Operating Temperature :
- 0°C~85°C TJ
- Pbfree Code :
- No
- Organization :
- 1932 CLBS
- Programmable Logic Type :
- FIELD PROGRAMMABLE GATE ARRAY
- RoHS Status :
- Non-RoHS Compliant
- Length :
- 17mm
- Base Part Number :
- LFXP15
- Width :
- 17mm
- Peak Reflow Temperature (Cel) :
- 225
- Terminal Pitch :
- 1mm
- Terminal Form :
- Ball
- Number of Terminations :
- 256
- Terminal Finish :
- Tin/Lead (Sn63Pb37)
- Time@Peak Reflow Temperature-Max (s) :
- 30
- Memory Size :
- 48.1kB
- Number of Pins :
- 256
- Number of Outputs :
- 188
- Qualification Status :
- Not Qualified
- Published :
- 2010
- Power Supplies :
- 1.8/2.5/3.3V
- Combinatorial Delay of a CLB-Max :
- 0.53 ns
- Pin Count :
- 256
- Number of Gates :
- 4
- RAM Size :
- 40.5kB
- Mount :
- Surface Mount
- Number of Logic Cells :
- 1932
- Number of I/O :
- 188
- Datasheets
- LFXP15C-4F256C
LFXP15C-4F256C Documents

FPGAs Lattice Semiconductor LFXP15C-4F256C Overview
The LFXP15C-4F256C, manufactured by Lattice Semiconductor, stands out in the market of Field Programmable Gate Arrays (FPGAs). This device offers a versatile solution for developers needing high-speed logic operations in a compact package. Its 256-ball fine pitch BGA (FBGA) package ensures a minimal footprint while providing ample I/O capabilities with 188 pins available. This FPGA is ideal for applications requiring a high degree of programmability and real-time performance adjustments, making it a critical component in both prototyping and full-scale production environments. By integrating this FPGA into your design, you gain not only robust performance but also the reliability expected from a leading provider like Lattice Semiconductor, optimizing both power and cost efficiencies in complex electronic systems.
LFXP15C-4F256C Features
The LFXP15C-4F256C FPGA includes several key features that make it a top choice for developers. Notably, its high I/O count in a compact form factor facilitates versatile design possibilities in space-constrained applications. The device supports a range of logic density options, allowing for customization and scalability depending on project requirements. Advanced security protocols are embedded to ensure intellectual property protection and secure operations, critical in today's technology landscape. Additionally, low power consumption and support for multiple I/O standards extend its usability across various electronic platforms.
LFXP15C-4F256C Applications
- Consumer Electronics: Utilized in devices like smart TVs and gaming consoles where multiple input/output options and high-speed logic are essential.
- Automotive Applications: Employs its robust feature set in automotive infotainment systems and advanced driver-assistance systems (ADAS) to process multiple real-time inputs and outputs efficiently.
- Industrial Automation: Enhances control systems in manufacturing environments by providing scalable logic solutions that adapt to various sensor inputs and control outputs.
- Telecommunications: Serves in base stations and networking equipment where high data throughput and reliability are necessary to manage and route communications efficiently.
- Medical Devices: Applied in medical imaging systems where precision and the ability to handle complex algorithms quickly are critical for accurate diagnostics.
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