XC4003A-10PG120B
XC4003A-10PG120B
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rohs

AMD Xilinx

XC4003A-10PG120B


XC4003A-10PG120B
F20-XC4003A-10PG120B
Active
FIELD PROGRAMMABLE GATE ARRAY, CMOS, PGA
PGA

XC4003A-10PG120B ECAD Model


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XC4003A-10PG120B Attributes


Type Description Select
Part Life Cycle Code Obsolete
Supply Voltage-Nom 5 V
Number of Equivalent Gates 2500
Number of CLBs 100
Programmable Logic Type FIELD PROGRAMMABLE GATE ARRAY
Screening Level MIL-STD-883 Class B
Temperature Grade MILITARY
Package Shape SQUARE
Technology CMOS
Organization 100 CLBS, 2500 GATES
Additional Feature 360 FLIP-FLOPS; TYP. GATES = 2500-3000
Supply Voltage-Max 5.5 V
Supply Voltage-Min 4.5 V
JESD-30 Code S-CPGA-P120
Qualification Status Not Qualified
Operating Temperature-Max 125 °C
Operating Temperature-Min -55 °C
Number of Terminals 120
Package Body Material CERAMIC, METAL-SEALED COFIRED
Package Code PGA
Package Shape SQUARE
Package Style GRID ARRAY
Surface Mount NO
Terminal Form PIN/PEG
Terminal Pitch 2.54 mm
Terminal Position PERPENDICULAR
Width 34.544 mm
Length 34.544 mm
Seated Height-Max 4.318 mm
Ihs Manufacturer XILINX INC
Reach Compliance Code unknown
HTS Code 8542.39.00.01
Part Package Code PGA
Package Description PGA,
Pin Count 120
ECCN Code 3A001.A.2.C

XC4003A-10PG120B Datasheet Download


XC4003A-10PG120B Overview



The XC4003A-10PG120B chip model is a high-end integrated circuit with multiple features that can be used for a wide range of applications. It is designed to provide a high degree of flexibility and scalability, allowing it to be used in a variety of advanced communication systems. The chip model is based on a powerful processor core and includes a number of peripheral components, such as memory, analog-to-digital converters, and digital-to-analog converters.


The original design intention of the XC4003A-10PG120B chip model was to provide a highly efficient and reliable solution for advanced communication systems. It is designed to be able to handle a wide range of data rates, from low-speed data to high-speed data, and can be used in a variety of applications, such as data acquisition, signal processing, and control systems. The chip model is also designed to be able to handle a wide range of frequencies, from low-frequency signals to high-frequency signals.


The product description and specific design requirements of the XC4003A-10PG120B chip model are described in detail in its user manual. The manual includes detailed information about the features and capabilities of the chip model, as well as detailed instructions on how to use it effectively. It also includes a number of case studies and precautions, which can help users understand the potential risks and limitations of the chip model.


The XC4003A-10PG120B chip model can be used to develop and popularize future intelligent robots. It is designed to be able to handle a wide range of data rates, from low-speed data to high-speed data, and can be used in a variety of applications, such as data acquisition, signal processing, and control systems. The chip model is also designed to be able to handle a wide range of frequencies, from low-frequency signals to high-frequency signals. To use the XC4003A-10PG120B chip model effectively, users need to have a good understanding of the features and capabilities of the chip model, as well as a good understanding of the principles of robotics and artificial intelligence.


In terms of future upgrades, the XC4003A-10PG120B chip model is designed to be highly scalable and can be upgraded to meet the demands of new applications. It is also designed to be able to handle a wide range of data rates, from low-speed data to high-speed data, and can be used in a variety of applications, such as data acquisition, signal processing, and control systems. The chip model is also designed to be able to handle a wide range of frequencies, from low-frequency signals to high-frequency signals.


In conclusion, the XC4003A-10PG120B chip model is a powerful and reliable integrated circuit that can be used for a wide range of applications. It is designed to provide a high degree of flexibility and scalability, allowing it to be used in a variety of advanced communication systems. The chip model can also be used to develop and popularize future intelligent robots, and it can be upgraded to meet the demands of new applications. To use the XC4003A-10PG120B chip model effectively, users need to have a good understanding of the features and capabilities of the chip model, as well as a good understanding of the principles of robotics and artificial intelligence.



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