EPF10K30AQC240-1

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Mfr.Part #
EPF10K30AQC240-1
Manufacturer
Altera (Intel)
Package / Case
240-BFQFP
Datasheet
Download
Description
IC FPGA 189 I/O 240QFP
Stock
5
In Stock :
5

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Manufacturer :
Altera (Intel)
Product Category :
FPGAs (Field Programmable Gate Array)
Height Seated (Max) :
4.1mm
Width :
32mm
ECCN Code :
3A991
Programmable Logic Type :
LOADABLE PLD
Number of I/O :
189
Power Supplies :
2.5/3.33.3V
HTS Code :
8542.39.00.01
Voltage - Supply :
3V~3.6V
Number of Terminations :
240
Operating Temperature :
0°C~70°C TA
Number of Inputs :
246
Surface Mount :
yes
Terminal Pitch :
0.5mm
Number of LABs/CLBs :
216
Total RAM Bits :
12288
Number of Dedicated Inputs :
4
Number of Outputs :
246
Qualification Status :
Not Qualified
Propagation Delay :
0.6 ns
RoHS Status :
Non-RoHS Compliant
Number of Gates :
69000
Terminal Finish :
Tin/Lead (Sn/Pb)
JESD-30 Code :
S-PQFP-G240
Number of Logic Elements/Cells :
1728
Base Part Number :
EPF10K30
Peak Reflow Temperature (Cel) :
220
Terminal Form :
Gull wing
Length :
32mm
Clock Frequency :
80MHz
Packaging :
Tray
Mounting Type :
Surface Mount
Supply Voltage :
3.3V
Moisture Sensitivity Level (MSL) :
6 (Time on Label)
Series :
FLEX-10KA®
Package / Case :
240-BFQFP
Output Function :
REGISTERED
Terminal Position :
QUAD
JESD-609 Code :
e0
Time@Peak Reflow Temperature-Max (s) :
30
Datasheets
EPF10K30AQC240-1
Introducing FPGAs (Field Programmable Gate Array) Altera (Intel) EPF10K30AQC240-1 from Chip IC,where excellence meets affordability. This product stands out with its Number of Terminations:240, Operating Temperature:0°C~70°C TA, Base Part Number:EPF10K30, Mounting Type:Surface Mount, Package / Case:240-BFQFP, EPF10K30AQC240-1 pinout, EPF10K30AQC240-1 datasheet PDF, EPF10K30AQC240-1 amp .Beyond FPGAs (Field Programmable Gate Array) Altera (Intel) EPF10K30AQC240-1 ,we also offer T35F400C3, T55F324C3, T120F324C3, Our vast inventory has you covered. Contact us now for immediate solutions.

Altera (Intel) EPF10K30AQC240-1


FPGAs (Field Programmable Gate Array) Altera (Intel) EPF10K30AQC240-1 Overview

Designed to deliver robust performance and versatility, the EPF10K30AQC240-1 from Altera (Intel) is a high-quality FPGA (Field Programmable Gate Array) that addresses a wide range of complex digital circuit requirements. This IC is renowned for its flexibility and high-density integration, allowing it to be configured for numerous applications. With 189 user I/O pins and housed in a 240-pin QFP package, it offers ample connectivity for various design needs. This product's appeal in the B2B market is significantly enhanced by its adaptability, making it an excellent choice for businesses looking to implement advanced digital logic while maintaining efficiency and reliability.

EPF10K30AQC240-1 Features

The EPF10K30AQC240-1 FPGA features include its 240-pin Quad Flat Package (QFP) that simplifies PCB design, and its support for 189 I/O pins, which ensures versatile interfacing capabilities. The device operates efficiently across varying voltage and temperature ranges, making it suitable for demanding environments. Its reprogrammable nature allows for iterative development and deployment, which is crucial for prototyping and dynamic project requirements.

EPF10K30AQC240-1 Applications

  • Telecommunications Equipment: The device can be used to manage signal processing functions and interface management in complex telecommunications infrastructure.
  • Automotive Electronics: This FPGA can control various electronic components within vehicles, including sensor data integration and real-time system monitoring.
  • Industrial Automation: Suitable for controlling machinery, automating tasks, and processing inputs from various industrial sensors efficiently.
  • Consumer Electronics: It finds applications in home appliances and entertainment systems, enhancing user interfaces and functionality.
This HTML formatted text divides the product description into an overview, features, and specific applications for the EPF10K30AQC240-1 FPGA, tailored to meet the needs of B2B clients and highlight its versatility and efficiency in various scenarios.
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