EP3C16U256C7N

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Mfr.Part #
EP3C16U256C7N
Manufacturer
Altera (Intel)
Package / Case
256-LFBGA
Datasheet
Download
Description
IC FPGA 168 I/O 256UBGA
Stock
19
In Stock :
19

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Manufacturer :
Altera (Intel)
Product Category :
FPGAs (Field Programmable Gate Array)
Mounting Type :
Surface Mount
Programmable Logic Type :
FIELD PROGRAMMABLE GATE ARRAY
Qualification Status :
Not Qualified
Number of Logic Elements/Cells :
15408
Number of Outputs :
168
Total RAM Bits :
516096
Operating Temperature :
0°C~85°C TJ
JESD-30 Code :
R-PBGA-B256
Clock Frequency :
472.5MHz
Number of I/O :
168
Terminal Pitch :
0.8mm
Factory Lead Time :
8 Weeks
Supply Voltage :
1.2V
Surface Mount :
yes
Number of Inputs :
168
Moisture Sensitivity Level (MSL) :
3 (168 Hours)
Length :
14mm
Peak Reflow Temperature (Cel) :
260
Time@Peak Reflow Temperature-Max (s) :
40
Packaging :
Tray
Height Seated (Max) :
2.2mm
Voltage - Supply :
1.15V~1.25V
Series :
Cyclone® III
Terminal Position :
BOTTOM
JESD-609 Code :
e1
HTS Code :
8542.39.00.01
Number of LABs/CLBs :
963
Terminal Form :
Ball
RoHS Status :
RoHS Compliant
Terminal Finish :
TIN SILVER COPPER
Width :
14mm
Base Part Number :
EP3C16
Package / Case :
256-LFBGA
ECCN Code :
3A991
Number of Terminations :
256
Datasheets
EP3C16U256C7N
Introducing FPGAs (Field Programmable Gate Array) Altera (Intel) EP3C16U256C7N from Chip IC,where excellence meets affordability. This product stands out with its Mounting Type:Surface Mount, Operating Temperature:0°C~85°C TJ, Base Part Number:EP3C16, Package / Case:256-LFBGA, Number of Terminations:256, EP3C16U256C7N pinout, EP3C16U256C7N datasheet PDF, EP3C16U256C7N amp .Beyond FPGAs (Field Programmable Gate Array) Altera (Intel) EP3C16U256C7N ,we also offer T35F400C3, T55F324C3, T120F324C3, Our vast inventory has you covered. Contact us now for immediate solutions.

Altera (Intel) EP3C16U256C7N


FPGAs Altera (Intel) EP3C16U256C7N Overview

The FPGAs Altera (Intel) EP3C16U256C7N is a highly versatile field programmable gate array designed for applications requiring a balance of high performance, low power consumption, and a compact footprint. Manufactured by Intel under the Altera brand, this FPGA features a robust 256UBGA package, allowing for efficient thermal management and reliable operation in demanding environments. Its 168 user I/Os make it adaptable to a wide range of applications, from complex digital processing to high-speed signal management. The EP3C16U256C7N is specifically engineered to meet the rigorous demands of modern technology sectors, providing a flexible and cost-effective solution for system design and integration.

EP3C16U256C7N Features

The EP3C16U256C7N FPGA offers a multitude of features that cater to rigorous, high-performance computing requirements. It includes a sophisticated logic element array for versatile programmability and quick adaptation to new logic configurations. Enhanced memory capabilities and high-speed transceiver lanes ensure optimal data throughput and storage efficiency. The integrated digital signal processing (DSP) blocks facilitate efficient processing for real-time applications, making it an ideal choice for developers looking to leverage FPGA technology for complex computational tasks.

EP3C16U256C7N Applications

  • Consumer Electronics: Used in devices such as smart TVs and gaming consoles, where its ability to process high-speed digital signals enhances user experience through quicker response times and improved interface fluidity.
  • Automotive Systems: Employs in driver assistance systems (DAS) where real-time signal processing is crucial for functions like object detection and automatic emergency braking.
  • Communication Infrastructure: Integrates into communication equipment like routers and switches, providing the necessary processing power to handle large-scale data traffic efficiently.
  • Industrial Automation: Utilized in control systems for manufacturing processes, where its capacity to manage multiple input and output operations simultaneously improves system reliability and performance.
  • Medical Devices: Applied in medical imaging systems, where its high processing capabilities help in delivering faster and more accurate diagnostic results.
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