EPM7512BTC144-5N
EPM7512BTC144-5N
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rohs
Altera

EPM7512BTC144-5N


EPM7512BTC144-5N
F53-EPM7512BTC144-5N
Active
EE PLD, 5.5 ns, 512-Cell, CMOS, LFQFP, QFP144,.87SQ,20
QFP144

EPM7512BTC144-5N ECAD Model


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EPM7512BTC144-5N Attributes


Type Description Select
Rohs Code Yes
Part Life Cycle Code Obsolete
Supply Voltage-Nom 2.5 V
Propagation Delay 5.5 ns
Number of Macro Cells 512
Number of I/O Lines 120
Programmable Logic Type EE PLD
Temperature Grade COMMERCIAL
Package Shape SQUARE
Technology CMOS
Organization 0 DEDICATED INPUTS, 120 I/O
Additional Feature YES
Clock Frequency-Max 163.9 MHz
In-System Programmable YES
JTAG BST YES
Output Function MACROCELL
Power Supplies 1.8/3.3,2.5 V
Supply Voltage-Max 2.625 V
Supply Voltage-Min 2.375 V
JESD-30 Code S-PQFP-G144
Qualification Status Not Qualified
JESD-609 Code e3
Moisture Sensitivity Level 3
Operating Temperature-Max 70 °C
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 MATTE TIN
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 INTEL CORP
Package Description LFQFP, QFP144,.87SQ,20
Reach Compliance Code compliant
HTS Code 8542.39.00.01

EPM7512BTC144-5N Overview



The EPM7512BTC144-5N is a powerful chip model designed to provide high-performance digital signal processing, embedded processing, and image processing capabilities. It is a member of the Altera MAX family of chips, and is designed to be used with the HDL (Hardware Description Language) language. This makes it a great choice for applications in networks, intelligent systems, and other embedded applications.


The EPM7512BTC144-5N provides a wide range of features and capabilities, making it suitable for a variety of applications. It has a 5-stage pipeline, 4K-bit of embedded SRAM, and a 144-bit wide data bus. It also has an embedded multiplier/accumulator, an 8-bit ALU, and two clock inputs. This makes it an ideal choice for a variety of applications, including digital signal processing, image processing, embedded processing, and more.


The EPM7512BTC144-5N is a great choice for applications in networks and intelligent systems. It is capable of handling high-speed data processing, and can be used in applications such as voice recognition, facial recognition, and other advanced AI-driven applications. It can also be used in the era of fully intelligent systems, as it is capable of handling a variety of tasks and has the flexibility to be adapted to different scenarios.


When designing with the EPM7512BTC144-5N, it is important to consider the product description and design requirements. It is important to ensure that the chip is correctly connected to the system and that all the necessary components are present. Additionally, it is important to consider the amount of power required for the chip, as well as any environmental requirements such as temperature and humidity.


Finally, it is important to consider actual case studies and precautions when using the EPM7512BTC144-5N. There are many examples of successful implementations of the chip, and it is important to understand the best practices and potential pitfalls before embarking on a project. Additionally, it is important to consider any safety or security measures that may be necessary for the application.


In conclusion, the EPM7512BTC144-5N is a powerful and versatile chip model that is suitable for a variety of applications, including networks, intelligent systems, and embedded applications. It is important to consider the product description and design requirements, as well as actual case studies and precautions, when designing with the EPM7512BTC144-5N. With the right approach and precautions, the chip model can be a great choice for a variety of applications.



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