EP1C6T144I6
EP1C6T144I6
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rohs

Altera Corporation

EP1C6T144I6


EP1C6T144I6
F53-EP1C6T144I6
Active
FIELD PROGRAMMABLE GATE ARRAY, 22 X 22 MM, 0.50 MM PITCH, TQFP-144
22 X 22 MM, 0.50 MM PITCH, TQFP-144

EP1C6T144I6 ECAD Model


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EP1C6T144I6 Attributes


Type Description Select
Pbfree Code No
Rohs Code No
Part Life Cycle Code Transferred
Supply Voltage-Nom 1.5 V
Number of Inputs 98
Number of Outputs 98
Number of Logic Cells 5980
Number of CLBs 598
Programmable Logic Type FIELD PROGRAMMABLE GATE ARRAY
Temperature Grade INDUSTRIAL
Package Shape SQUARE
Organization 598 CLBS
Clock Frequency-Max 405 MHz
Power Supplies 1.5,1.5/3.3 V
Supply Voltage-Max 1.575 V
Supply Voltage-Min 1.425 V
JESD-30 Code S-PQFP-G144
Qualification Status Not Qualified
JESD-609 Code e0
Moisture Sensitivity Level 3
Operating Temperature-Max 100 °C
Operating Temperature-Min -40 °C
Peak Reflow Temperature (Cel) 220
Number of Terminals 144
Package Body Material PLASTIC/EPOXY
Package Code LFQFP
Package Equivalence Code QFP144,.87SQ,20
Package Shape SQUARE
Package Style FLATPACK, LOW PROFILE, FINE PITCH
Surface Mount YES
Terminal Finish TIN LEAD
Terminal Form GULL WING
Terminal Pitch 500 µm
Terminal Position QUAD
Width 20 mm
Length 20 mm
Seated Height-Max 1.6 mm
Ihs Manufacturer ALTERA CORP
Part Package Code QFP
Package Description 22 X 22 MM, 0.50 MM PITCH, TQFP-144
Pin Count 144
Reach Compliance Code compliant
HTS Code 8542.39.00.01

EP1C6T144I6 Datasheet Download


EP1C6T144I6 Overview



The chip model EP1C6T144I6 is a high-performance device designed for digital signal processing, embedded processing, image processing, and other applications. It is manufactured by Altera, a leader in the field of programmable logic devices. This chip model is equipped with a powerful processor and memory, as well as a wide range of I/O interfaces. It is capable of handling a variety of tasks, such as data acquisition, data processing, and system control.


The EP1C6T144I6 is designed to be used in conjunction with a high-level hardware description language (HDL) such as Verilog or VHDL. It is designed to be highly flexible, allowing for the development of complex systems with a variety of peripherals. The chip model is also designed for scalability, allowing for the addition of memory and other components as needed.


The EP1C6T144I6 has several advantages over other chips designed for similar applications. It has a higher processing power and memory capacity, making it suitable for more complex tasks. It also has a wide range of I/O interfaces, allowing for the integration of peripherals and other components. The chip model is also designed for scalability, allowing for the addition of memory and other components as needed.


The EP1C6T144I6 is expected to be in high demand in industries such as automotive, industrial, medical, and consumer electronics. These industries are increasingly relying on complex systems that require high-performance, reliable, and flexible solutions. The EP1C6T144I6 is well-suited to meet these demands, as it is designed to be highly flexible, allowing for the development of complex systems with a variety of peripherals.


The original design intention of the EP1C6T144I6 was to provide a powerful and flexible solution for digital signal processing, embedded processing, image processing, and other applications. The chip model is designed to be highly scalable, allowing for the addition of memory and other components as needed. It is also designed to be highly reliable, with an error-correction mechanism that allows for the correction of errors in the system.


The EP1C6T144I6 is also designed to be upgradable. It is capable of being upgraded to support more advanced communication systems, such as those used in 5G networks. The chip model is also designed to be highly reliable, with an error-correction mechanism that allows for the correction of errors in the system. This makes it suitable for use in mission-critical applications, such as those used in the automotive industry.


In conclusion, the chip model EP1C6T144I6 is a powerful and flexible solution for digital signal processing, embedded processing, image processing, and other applications. It is designed to be highly scalable, allowing for the addition of memory and other components as needed. It is also designed to be upgradable, allowing for the use of more advanced communication systems. Finally, it is designed to be highly reliable, with an error-correction mechanism that allows for the correction of errors in the system.



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