EPF10K50RI240-4N
EPF10K50RI240-4N
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rohs

Intel Corporation

EPF10K50RI240-4N


EPF10K50RI240-4N
F18-EPF10K50RI240-4N
Active
LOADABLE PLD, 600 ps, CMOS, HFQFP, HQFP240,1.37SQ,20
HFQFP, HQFP240,1.37SQ,20

EPF10K50RI240-4N ECAD Model


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EPF10K50RI240-4N Attributes


Type Description Select
Rohs Code Yes
Part Life Cycle Code Obsolete
Supply Voltage-Nom 5 V
Propagation Delay 600 ps
Number of Inputs 189
Number of Outputs 189
Number of Logic Cells 2880
Number of Dedicated Inputs 4
Number of I/O Lines 189
Programmable Logic Type LOADABLE PLD
Temperature Grade INDUSTRIAL
Package Shape SQUARE
Technology CMOS
Organization 4 DEDICATED INPUTS, 189 I/O
Additional Feature 2880 LOGIC ELEMENTS
Clock Frequency-Max 62.89 MHz
Output Function REGISTERED
Power Supplies 3.3/5 V
Supply Voltage-Max 5.25 V
Supply Voltage-Min 4.75 V
JESD-30 Code S-PQFP-G240
Qualification Status Not Qualified
JESD-609 Code e3
Moisture Sensitivity Level 3
Operating Temperature-Max 85 °C
Operating Temperature-Min -40 °C
Number of Terminals 240
Package Body Material PLASTIC/EPOXY
Package Code HFQFP
Package Equivalence Code HQFP240,1.37SQ,20
Package Shape SQUARE
Package Style FLATPACK, HEAT SINK/SLUG, FINE PITCH
Surface Mount YES
Terminal Finish MATTE TIN
Terminal Form GULL WING
Terminal Pitch 500 µm
Terminal Position QUAD
Width 32 mm
Length 32 mm
Seated Height-Max 4.1 mm
Ihs Manufacturer INTEL CORP
Package Description HFQFP, HQFP240,1.37SQ,20
Reach Compliance Code compliant
HTS Code 8542.39.00.01

EPF10K50RI240-4N Datasheet Download


EPF10K50RI240-4N Overview



The EPF10K50RI240-4N chip model is a high-performance digital signal processing (DSP) device designed for embedded processing and image processing applications. It is a field-programmable gate array (FPGA) device that allows users to design, implement, and customize applications through the use of hardware description language (HDL) code. This chip model is capable of performing complex computations at high speed, making it an ideal choice for applications that require the processing of large amounts of data.


The EPF10K50RI240-4N is a powerful device that can be used in a variety of applications, including high-performance digital signal processing, embedded processing, and image processing. It is capable of performing complex calculations quickly and accurately, making it a great choice for applications that require fast processing and accurate results. This chip model is also capable of controlling multiple devices simultaneously, making it a great choice for applications that require control of multiple devices.


The EPF10K50RI240-4N chip model can be used in the development and popularization of future intelligent robots. This chip model is capable of performing complex calculations quickly and accurately, making it a great choice for robotics applications that require the processing of large amounts of data. This chip model is also capable of controlling multiple devices simultaneously, making it a great choice for robotics applications that require control of multiple devices.


In order to use the EPF10K50RI240-4N chip model effectively, it is important to have a good understanding of the hardware description language (HDL) code used to program this device. A good understanding of HDL code is essential for writing efficient and effective code for the chip model. Additionally, it is important to have a good understanding of the product description and specific design requirements of the chip model, as well as actual case studies and precautions.


The EPF10K50RI240-4N chip model is a powerful device that can be used to develop and popularize future intelligent robots. In order to use this chip model effectively, it is important to have a good understanding of the hardware description language (HDL) code used to program this device, as well as the product description and specific design requirements of the chip model, as well as actual case studies and precautions. With the right technical talents, this chip model can be used to create powerful and efficient applications for the development and popularization of future intelligent robots.



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