XC5204-5PQG160C
XC5204-5PQG160C
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rohs

AMD Xilinx

XC5204-5PQG160C


XC5204-5PQG160C
F20-XC5204-5PQG160C
Active
FIELD PROGRAMMABLE GATE ARRAY, CMOS, QFP
QFP

XC5204-5PQG160C ECAD Model


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XC5204-5PQG160C Attributes


Type Description Select
Pbfree Code Yes
Rohs Code Yes
Part Life Cycle Code Obsolete
Supply Voltage-Nom 5 V
Number of Equivalent Gates 4000
Number of CLBs 120
Combinatorial Delay of a CLB-Max 4.6 ns
Programmable Logic Type FIELD PROGRAMMABLE GATE ARRAY
Temperature Grade OTHER
Package Shape SQUARE
Technology CMOS
Organization 120 CLBS, 4000 GATES
Additional Feature MAX AVAILABLE 6000 LOGIC GATES
Clock Frequency-Max 83 MHz
Supply Voltage-Max 5.25 V
Supply Voltage-Min 4.75 V
JESD-30 Code S-PQFP-G160
Qualification Status Not Qualified
JESD-609 Code e3
Moisture Sensitivity Level 3
Operating Temperature-Max 85 °C
Peak Reflow Temperature (Cel) 245
Time@Peak Reflow Temperature-Max (s) 30
Number of Terminals 160
Package Body Material PLASTIC/EPOXY
Package Code QFP
Package Shape SQUARE
Package Style FLATPACK
Surface Mount YES
Terminal Finish Matte Tin (Sn)
Terminal Form GULL WING
Terminal Pitch 650 µm
Terminal Position QUAD
Width 28 mm
Length 28 mm
Seated Height-Max 4.1 mm
Ihs Manufacturer XILINX INC
Part Package Code QFP
Package Description QFP,
Pin Count 160
Reach Compliance Code compliant
HTS Code 8542.39.00.01

XC5204-5PQG160C Datasheet Download


XC5204-5PQG160C Overview



The XC5204-5PQG160C chip model is the latest in a long line of advanced digital signal processing (DSP) chips from Xilinx Corporation. It is designed to provide unparalleled performance and flexibility in embedded processing, image processing, and other high-performance digital signal processing tasks. It is the perfect choice for anyone looking to take advantage of the latest in DSP technology.


The XC5204-5PQG160C chip model has several advantages that make it a great choice for high-performance applications. It has a high-speed, low-power, and low-cost design, making it suitable for a wide range of applications. It also features an advanced instruction set and a wide range of peripherals, allowing it to be used in a variety of applications. Additionally, its high-speed, low-power design makes it suitable for use in low-power embedded systems.


The expected demand for the XC5204-5PQG160C chip model is likely to be strong in the near future. As more and more applications require high-performance digital signal processing, the demand for this chip model is expected to increase. Additionally, its low-power design makes it suitable for use in a variety of low-power embedded systems, making it a great choice for a wide range of applications.


The original design intention of the XC5204-5PQG160C chip model was to provide a powerful, yet low-cost solution for high-performance digital signal processing tasks. Its wide range of peripherals and its advanced instruction set make it suitable for use in a variety of applications. Additionally, its low-power design makes it suitable for use in low-power embedded systems.


The XC5204-5PQG160C chip model is also capable of being upgraded in the future. Its advanced instruction set and wide range of peripherals make it suitable for use in a variety of applications. Additionally, its low-power design makes it suitable for use in low-power embedded systems. This makes it a great choice for anyone looking to take advantage of the latest in DSP technology.


The XC5204-5PQG160C chip model is also capable of being used in advanced communication systems. Its high-speed, low-power design makes it suitable for use in a variety of applications. Additionally, its wide range of peripherals and its advanced instruction set make it suitable for use in a variety of applications. This makes it a great choice for anyone looking to take advantage of the latest in DSP technology.


Overall, the XC5204-5PQG160C chip model is a great choice for anyone looking to take advantage of the latest in DSP technology. Its high-speed, low-power, and low-cost design make it suitable for a wide range of applications. Additionally, its wide range of peripherals and its advanced instruction set make it suitable for use in a variety of applications. Furthermore, its low-power design makes it suitable for use in low-power embedded systems. Finally, its ability to be upgraded in the future and its ability to be used in advanced communication systems make it a great choice for anyone looking to take advantage of the latest in DSP technology.



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