XC4025-5PG299C
XC4025-5PG299C
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rohs

AMD Xilinx

XC4025-5PG299C


XC4025-5PG299C
F20-XC4025-5PG299C
Active
FIELD PROGRAMMABLE GATE ARRAY, CMOS, PGA, PGA299,20X20
PGA, PGA299,20X20

XC4025-5PG299C ECAD Model


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XC4025-5PG299C Attributes


Type Description Select
Rohs Code Yes
Part Life Cycle Code Obsolete
Supply Voltage-Nom 5 V
Number of Inputs 256
Number of Outputs 256
Number of Logic Cells 1024
Number of Equivalent Gates 20000
Number of CLBs 1024
Combinatorial Delay of a CLB-Max 4.5 ns
Programmable Logic Type FIELD PROGRAMMABLE GATE ARRAY
Temperature Grade OTHER
Package Shape SQUARE
Technology CMOS
Organization 1024 CLBS, 20000 GATES
Additional Feature 2560 FLIP-FLOPS; TYP. GATES = 20000-25000
Clock Frequency-Max 133.3 MHz
Power Supplies 5 V
Supply Voltage-Max 5.25 V
Supply Voltage-Min 4.75 V
JESD-30 Code S-CPGA-P299
Qualification Status Not Qualified
Operating Temperature-Max 85 °C
Number of Terminals 299
Package Body Material CERAMIC, METAL-SEALED COFIRED
Package Code PGA
Package Equivalence Code PGA299,20X20
Package Shape SQUARE
Package Style GRID ARRAY
Surface Mount NO
Terminal Form PIN/PEG
Terminal Pitch 2.54 mm
Terminal Position PERPENDICULAR
Width 52.324 mm
Length 52.324 mm
Seated Height-Max 4.2418 mm
Ihs Manufacturer XILINX INC
Part Package Code PGA
Package Description PGA, PGA299,20X20
Pin Count 299
Reach Compliance Code unknown
HTS Code 8542.39.00.01

XC4025-5PG299C Datasheet Download


XC4025-5PG299C Overview



The chip model XC4025-5PG299C is a chip designed by Xilinx, a leading semiconductor company. It is a highly advanced and reliable chip that is suitable for many applications in a wide range of industries. It is designed to meet the needs of high-end applications such as artificial intelligence, autonomous driving, data centers, and the Internet of Things.


The XC4025-5PG299C chip has a number of advantages. It is designed with a high level of flexibility and scalability, allowing it to be used in a variety of applications. It also has a low power consumption, making it suitable for use in low-power applications. Additionally, the chip is highly reliable and offers excellent performance. It is also designed to be compatible with a variety of software and hardware platforms, making it a great choice for applications that require a high degree of flexibility.


The XC4025-5PG299C chip is expected to be in high demand in the future due to its advanced features and performance. It is expected to be used in a wide range of applications, from artificial intelligence and autonomous driving to data centers and the Internet of Things. Additionally, as the demand for high-end applications increases, the XC4025-5PG299C chip will become increasingly popular.


The XC4025-5PG299C chip has a number of specific design requirements. It is designed to be compatible with a variety of software and hardware platforms, and it requires a high degree of flexibility. Additionally, it requires a low power consumption, and it must be able to handle high-end applications. To ensure that the chip meets these design requirements, it is important to test it in a variety of different environments and applications.


In order to determine whether the application environment requires the support of new technologies, it is important to understand the specific requirements of the application. For example, if the application requires high-end performance and scalability, then the XC4025-5PG299C chip may be the best choice. However, if the application requires a low power consumption and a high degree of flexibility, then other chip models may be more suitable.


To ensure that the XC4025-5PG299C chip is used in the most effective way, it is important to study actual case studies and consider any potential risks. For example, if the application requires a high degree of scalability, then it is important to consider the potential risks of using the chip in that application. Additionally, it is important to consider the potential cost savings of using the chip in the application.


Overall, the XC4025-5PG299C chip is a highly advanced and reliable chip that is suitable for many applications in a wide range of industries. It is designed to meet the needs of high-end applications such as artificial intelligence, autonomous driving, data centers, and the Internet of Things. It has a number of advantages, including a high level of flexibility and scalability, a low power consumption, and excellent performance. In order to determine whether the application environment requires the support of new technologies, it is important to understand the specific requirements of the application. Additionally, it is important to study actual case studies and consider any potential risks before using the chip in an application.



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