EPM7192EGI160-12
EPM7192EGI160-12
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rohs

Altera Corporation

EPM7192EGI160-12


EPM7192EGI160-12
F53-EPM7192EGI160-12
Active
EE PLD, 12 ns, 192-Cell, CMOS, PGA, PGA160M,15X15
PGA, PGA160M,15X15

EPM7192EGI160-12 ECAD Model


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EPM7192EGI160-12 Attributes


Type Description Select
Rohs Code No
Part Life Cycle Code Obsolete
Supply Voltage-Nom 5 V
Propagation Delay 12 ns
Number of Macro Cells 192
Number of I/O Lines 124
Programmable Logic Type EE PLD
Temperature Grade INDUSTRIAL
Package Shape SQUARE
Technology CMOS
Organization 0 DEDICATED INPUTS, 124 I/O
Additional Feature 192 MACROCELLS
Clock Frequency-Max 125 MHz
In-System Programmable NO
JTAG BST NO
Output Function MACROCELL
Power Supplies 3.3/5,5 V
Supply Voltage-Max 5.5 V
Supply Voltage-Min 4.5 V
JESD-30 Code S-CPGA-P160
Qualification Status Not Qualified
JESD-609 Code e0
Moisture Sensitivity Level 1
Operating Temperature-Max 85 °C
Operating Temperature-Min -40 °C
Peak Reflow Temperature (Cel) 220
Number of Terminals 160
Package Body Material CERAMIC, METAL-SEALED COFIRED
Package Code PGA
Package Equivalence Code PGA160M,15X15
Package Shape SQUARE
Package Style GRID ARRAY
Surface Mount NO
Terminal Finish TIN LEAD
Terminal Form PIN/PEG
Terminal Pitch 2.54 mm
Terminal Position PERPENDICULAR
Width 39.624 mm
Length 39.624 mm
Seated Height-Max 5.34 mm
Ihs Manufacturer ALTERA CORP
Part Package Code PGA
Package Description PGA, PGA160M,15X15
Pin Count 160
Reach Compliance Code unknown
HTS Code 8542.39.00.01

EPM7192EGI160-12 Datasheet Download


EPM7192EGI160-12 Overview



The chip model EPM7192EGI160-12 is a highly versatile and advanced model that is becoming increasingly popular in the electronics industry. It is a Field Programmable Gate Array (FPGA) chip that provides a wide range of features and capabilities to support complex applications. It is designed to offer superior performance, reliability, and scalability for a variety of applications.


The EPM7192EGI160-12 chip model offers a variety of advantages, including its flexibility and scalability. It is capable of being reconfigured to meet the needs of a variety of applications, such as embedded systems, signal processing, and communications. It also provides a high-speed signal processing capability and a wide range of I/O options. Additionally, it offers a low power consumption, which makes it suitable for low-power applications.


The chip model is also expected to become increasingly popular in the future as the demand for more advanced electronics continues to grow. As more applications are developed for the chip model, its usage is expected to expand into a variety of industries, such as automotive, medical, industrial, and consumer electronics. It is also expected to be used in networking applications, as well as in intelligent scenarios.


The chip model EPM7192EGI160-12 is well suited for use in the era of fully intelligent systems. It is capable of supporting a wide range of applications, including robotics, artificial intelligence, and machine learning. It also offers a high-speed signal processing capability, which makes it suitable for use in a variety of intelligent scenarios.


The chip model is also well suited for use in the development and popularization of future intelligent robots. It is capable of supporting a wide range of applications, including robotics, artificial intelligence, and machine learning. Additionally, it offers a high-speed signal processing capability, which makes it suitable for use in a variety of intelligent scenarios.


To effectively use the chip model EPM7192EGI160-12, technical talents such as software engineers, hardware engineers, and system architects are needed. These professionals are responsible for designing, implementing, and maintaining the chip model. Additionally, they must have a thorough understanding of the chip model’s capabilities and features in order to ensure that it is used to its fullest potential.


In conclusion, the chip model EPM7192EGI160-12 is a highly versatile and advanced model that is becoming increasingly popular in the electronics industry. It offers a wide range of features and capabilities to support complex applications and is expected to become even more popular in the future. It is well suited for use in the era of fully intelligent systems, as well as in the development and popularization of future intelligent robots. To effectively use the chip model, technical talents such as software engineers, hardware engineers, and system architects are needed.



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