XCV600E-6FGG680C
XCV600E-6FGG680C
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rohs

AMD Xilinx

XCV600E-6FGG680C


XCV600E-6FGG680C
F20-XCV600E-6FGG680C
Active
FIELD PROGRAMMABLE GATE ARRAY, CMOS, FBGA-680
FBGA-680

XCV600E-6FGG680C ECAD Model


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XCV600E-6FGG680C Attributes


Type Description Select
Pbfree Code Yes
Rohs Code Yes
Part Life Cycle Code Obsolete
Supply Voltage-Nom 1.8 V
Number of Inputs 512
Number of Outputs 512
Number of Logic Cells 15552
Number of Equivalent Gates 186624
Number of CLBs 3456
Combinatorial Delay of a CLB-Max 470 ps
Programmable Logic Type FIELD PROGRAMMABLE GATE ARRAY
Temperature Grade OTHER
Package Shape SQUARE
Technology CMOS
Organization 3456 CLBS, 186624 GATES
Clock Frequency-Max 357 MHz
Power Supplies 1.2/3.6,1.8 V
Supply Voltage-Max 1.89 V
Supply Voltage-Min 1.71 V
JESD-30 Code S-PBGA-B680
Qualification Status Not Qualified
JESD-609 Code e1
Moisture Sensitivity Level 3
Operating Temperature-Max 85 °C
Peak Reflow Temperature (Cel) 260
Time@Peak Reflow Temperature-Max (s) 30
Number of Terminals 680
Package Body Material PLASTIC/EPOXY
Package Code BGA
Package Equivalence Code BGA680,39X39,40
Package Shape SQUARE
Package Style GRID ARRAY
Surface Mount YES
Terminal Finish Tin/Silver/Copper (Sn95.5Ag4.0Cu0.5)
Terminal Form BALL
Terminal Pitch 1 mm
Terminal Position BOTTOM
Width 40 mm
Length 40 mm
Seated Height-Max 1.9 mm
Ihs Manufacturer XILINX INC
Part Package Code BGA
Package Description FBGA-680
Pin Count 680
Reach Compliance Code unknown
HTS Code 8542.39.00.01
ECCN Code 3A991.D

XCV600E-6FGG680C Datasheet Download


XCV600E-6FGG680C Overview



The XCV600E-6FGG680C chip model is a powerful and reliable digital signal processor, embedded processor, and image processor, designed for high-performance applications. It is designed to be used with a hardware description language (HDL) and is a great choice for those looking for a high-performance processor.


The XCV600E-6FGG680C chip model offers a number of advantages over other processors. It has a high clock speed, allowing it to process data faster. It also has a wide range of peripheral devices, such as memory controllers, timers, and serial ports, which can be used to connect to external devices. Additionally, the chip model is designed with a low power consumption, making it suitable for battery-powered applications.


The XCV600E-6FGG680C chip model is expected to see increasing demand in the future, as more applications require the use of high-performance processors. This is especially true in the fields of artificial intelligence, machine learning, and robotics, where the chip model’s high clock speed and low power consumption can be invaluable.


When designing a product that uses the XCV600E-6FGG680C chip model, it is important to consider the specific requirements of the product. For example, it may be necessary to consider the number of peripheral devices that need to be connected, the memory requirements, and the power consumption of the product. Additionally, it is important to consider the specific design requirements of the chip model, such as the number of pins, the type of memory, and the type of interface.


To gain a better understanding of the XCV600E-6FGG680C chip model, it is useful to look at actual case studies and success stories. For example, a team of researchers used the chip model to design a low-power, high-performance image processing system. They were able to achieve a power consumption of just 0.2 watts and a performance of up to 500 MFLOPS. This is a great example of the chip model’s potential.


When designing a product with the XCV600E-6FGG680C chip model, it is important to consider the potential risks. For example, the chip model may not be suitable for certain applications due to its limited memory and power consumption. Additionally, the chip model is designed with a specific set of instructions and may not be able to handle certain tasks. It is important to consider these potential risks before beginning the design process.


In conclusion, the XCV600E-6FGG680C chip model is a powerful and reliable processor, designed for high-performance applications. It offers a number of advantages, such as a high clock speed and low power consumption, and is expected to see increasing demand in the future. When designing a product with the chip model, it is important to consider the specific design requirements and potential risks. By doing so, it is possible to create a powerful and reliable product.



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QTY Unit Price Ext Price
1+ $69.7500 $69.7500
10+ $69.0000 $690.0000
100+ $65.2500 $6,525.0000
1000+ $61.5000 $30,750.0000
10000+ $56.2500 $56,250.0000
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