EP1S80B956C7

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Mfr.Part #
EP1S80B956C7
Manufacturer
Altera (Intel)
Package / Case
956-BBGA, FCBGA
Datasheet
Download
Description
IC FPGA 683 I/O 956BGA
Stock
35,957
In Stock :
35,957

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Manufacturer :
Altera (Intel)
Product Category :
FPGAs (Field Programmable Gate Array)
Power Supplies :
1.51.5/3.3V
Organization :
9191 CLBS
RoHS Status :
Non-RoHS Compliant
Packaging :
Tray
Number of LABs/CLBs :
7904
Number of Outputs :
1238
HTS Code :
8542.39.00.01
Number of Logic Elements/Cells :
79040
Terminal Position :
BOTTOM
Peak Reflow Temperature (Cel) :
220
JESD-30 Code :
S-PBGA-B956
Terminal Form :
Ball
Total RAM Bits :
7427520
Number of Inputs :
1238
Number of Terminations :
956
Base Part Number :
EP1S80
Operating Temperature :
0°C~85°C TJ
Package / Case :
956-BBGA, FCBGA
Time@Peak Reflow Temperature-Max (s) :
30
Number of CLBs :
9191
Mounting Type :
Surface Mount
Qualification Status :
Not Qualified
Series :
Stratix®
ECCN Code :
3A001.A.7.A
Terminal Pitch :
1.27mm
Height Seated (Max) :
3.5mm
Supply Voltage :
1.5V
Width :
40mm
Number of I/O :
683
Moisture Sensitivity Level (MSL) :
3 (168 Hours)
Voltage - Supply :
1.425V~1.575V
Terminal Finish :
TIN LEAD
Length :
40mm
Surface Mount :
yes
Programmable Logic Type :
FIELD PROGRAMMABLE GATE ARRAY
JESD-609 Code :
e0
Datasheets
EP1S80B956C7
Introducing FPGAs (Field Programmable Gate Array) Altera (Intel) EP1S80B956C7 from Chip IC,where excellence meets affordability. This product stands out with its Number of Terminations:956, Base Part Number:EP1S80, Operating Temperature:0°C~85°C TJ, Package / Case:956-BBGA, FCBGA, Mounting Type:Surface Mount, EP1S80B956C7 pinout, EP1S80B956C7 datasheet PDF, EP1S80B956C7 amp .Beyond FPGAs (Field Programmable Gate Array) Altera (Intel) EP1S80B956C7 ,we also offer T35F400C3, T55F324C3, T120F324C3, Our vast inventory has you covered. Contact us now for immediate solutions.

Altera (Intel) EP1S80B956C7


FPGAs Altera (Intel) EP1S80B956C7 Overview

The EP1S80B956C7 from Altera (Intel) represents a state-of-the-art solution in the realm of field programmable gate arrays (FPGAs). Designed to meet the rigorous demands of modern digital applications, this IC FPGA features an expansive array of 683 I/O pins housed in a compact 956BGA package. The versatility and high performance of the EP1S80B956C7 make it an ideal choice for developers looking to push the boundaries of technology with scalable and customizable digital circuit designs. Its robust configuration capabilities enable optimization for speed, power consumption, and real-time processing, making it a cornerstone in the development of complex digital systems.

EP1S80B956C7 Features

The EP1S80B956C7 FPGA includes multiple features that enhance its utility and efficiency in various applications. The 683 I/O pins allow for extensive connectivity and interfacing options, while the 956-ball grid array (BGA) packaging ensures a minimal footprint on system boards. Enhanced with Altera's leading-edge technology, it supports comprehensive system-level integration with improved signal integrity and reduced latency, providing a reliable foundation for high-speed computing tasks.

EP1S80B956C7 Applications

  • Telecommunications: Utilized in routers and switches, the EP1S80B956C7 manages data flow efficiently, ensuring high-speed data transmission and robust signal integrity across complex network infrastructures.
  • Automotive Systems: In automotive applications, this FPGA can control and process multiple inputs and outputs simultaneously, suitable for advanced driver-assistance systems (ADAS) where real-time processing is critical.
  • Industrial Automation: The chip is integral in managing the operational technology in smart factories, including robotics and real-time machine-to-machine communication, optimizing production efficiency and reliability.
  • Consumer Electronics: In consumer electronics, such as smart TVs and gaming consoles, the EP1S80B956C7 enhances user experience by accelerating graphic processing and increasing responsiveness.
  • Medical Devices: Applied in medical imaging systems, it supports complex image processing algorithms necessary for detailed and accurate diagnostics.
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