EP3C25U256C6N

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Mfr.Part #
EP3C25U256C6N
Manufacturer
Altera (Intel)
Package / Case
256-LFBGA
Datasheet
Download
Description
IC FPGA 156 I/O 256UBGA
Stock
34,285
In Stock :
34,285

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Manufacturer :
Altera (Intel)
Product Category :
FPGAs (Field Programmable Gate Array)
Packaging :
Tray
Moisture Sensitivity Level (MSL) :
3 (168 Hours)
Length :
14mm
Number of Terminations :
256
Factory Lead Time :
8 Weeks
Terminal Pitch :
0.8mm
Peak Reflow Temperature (Cel) :
260
Total RAM Bits :
608256
Number of LABs/CLBs :
1539
Series :
Cyclone® III
Height Seated (Max) :
2.2mm
Number of I/O :
156
ECCN Code :
3A991
Time@Peak Reflow Temperature-Max (s) :
40
Width :
14mm
Mounting Type :
Surface Mount
Clock Frequency :
472.5MHz
Supply Voltage :
1.2V
Terminal Finish :
TIN SILVER COPPER
Programmable Logic Type :
FIELD PROGRAMMABLE GATE ARRAY
Terminal Position :
BOTTOM
Surface Mount :
yes
Voltage - Supply :
1.15V~1.25V
Package / Case :
256-LFBGA
JESD-609 Code :
e1
Number of Logic Elements/Cells :
24624
Qualification Status :
Not Qualified
HTS Code :
8542.39.00.01
Base Part Number :
EP3C25
Terminal Form :
Ball
Number of Outputs :
156
JESD-30 Code :
R-PBGA-B256
Operating Temperature :
0°C~85°C TJ
Number of Inputs :
156
RoHS Status :
RoHS Compliant
Datasheets
EP3C25U256C6N
Introducing FPGAs (Field Programmable Gate Array) Altera (Intel) EP3C25U256C6N from Chip IC,where excellence meets affordability. This product stands out with its Number of Terminations:256, Mounting Type:Surface Mount, Package / Case:256-LFBGA, Base Part Number:EP3C25, Operating Temperature:0°C~85°C TJ, EP3C25U256C6N pinout, EP3C25U256C6N datasheet PDF, EP3C25U256C6N amp .Beyond FPGAs (Field Programmable Gate Array) Altera (Intel) EP3C25U256C6N ,we also offer T35F400C3, T55F324C3, T120F324C3, Our vast inventory has you covered. Contact us now for immediate solutions.

Altera (Intel) EP3C25U256C6N


FPGAs (Field Programmable Gate Array) Altera (Intel) EP3C25U256C6N Overview

The FPGAs (Field Programmable Gate Array) Altera (Intel) EP3C25U256C6N is a cutting-edge integrated circuit designed to deliver high performance and flexibility for a variety of complex digital systems. Manufactured by Altera, now part of Intel, this FPGA stands out with its substantial logic elements and adaptability, packaged neatly in a 256UBGA form. It supports a wide range of applications, making it an ideal solution for designers looking to optimize their systems for speed and efficiency while maintaining the ability to make late-stage design changes without incurring high costs. The EP3C25U256C6N is perfect for applications that require a high degree of programmable logic integration and specific I/O configurations.

EP3C25U256C6N Features

This FPGA boasts 156 I/O pins that allow for versatile connectivity options, supporting various design requirements and peripherals. Its compact 256UBGA package ensures a minimized footprint on system boards, which is crucial for space-constrained applications. The device's high integration capability facilitates significant reductions in power consumption and increased system reliability, critical for developing advanced technology solutions in both commercial and industrial settings.

EP3C25U256C6N Applications

  • Automotive Driver Assistance Systems: Utilizes its high-speed processing to manage real-time data from vehicle sensors, aiding in features such as collision detection, lane departure warnings, and adaptive cruise control.
  • Telecommunications Infrastructure: The FPGA serves as a core component in managing data traffic and signal processing within network hardware, enhancing bandwidth capacity and network reliability.
  • Industrial Automation: In automation systems, it processes multiple inputs and outputs efficiently, facilitating complex manufacturing processes and increasing factory throughput.
  • Consumer Electronics: The EP3C25U256C6N is used in smart home devices and entertainment systems, where its programmable nature allows for tailored functionalities and improved user experiences.
  • Medical Devices: Essential in handling precise and complex computations needed for medical imaging and diagnostic equipment, ensuring fast and accurate results.
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