XC7VX485T-L2FF1930E
XC7VX485T-L2FF1930E
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rohs

AMD Xilinx

XC7VX485T-L2FF1930E


XC7VX485T-L2FF1930E
F20-XC7VX485T-L2FF1930E
Active
FIELD PROGRAMMABLE GATE ARRAY, CMOS
BGA

XC7VX485T-L2FF1930E ECAD Model


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XC7VX485T-L2FF1930E Attributes


Type Description Select
Rohs Code No
Part Life Cycle Code Active
Supply Voltage-Nom 1 V
Number of Inputs 700
Number of Outputs 700
Number of Logic Cells 485760
Programmable Logic Type FIELD PROGRAMMABLE GATE ARRAY
Package Shape SQUARE
Technology CMOS
Clock Frequency-Max 1.818 GHz
Power Supplies 1,1.8 V
Supply Voltage-Max 1.03 V
Supply Voltage-Min 970 mV
JESD-30 Code S-PBGA-B1924
Qualification Status Not Qualified
JESD-609 Code e0
Operating Temperature-Max 100 °C
Number of Terminals 1924
Package Body Material PLASTIC/EPOXY
Package Code BGA
Package Equivalence Code BGA1924,44X44,40
Package Shape SQUARE
Package Style GRID ARRAY
Surface Mount YES
Terminal Finish Tin/Lead (Sn/Pb)
Terminal Form BALL
Terminal Pitch 1 mm
Terminal Position BOTTOM
Ihs Manufacturer XILINX INC
Reach Compliance Code not_compliant
ECCN Code 3A991.D
HTS Code 8542.39.00.01

XC7VX485T-L2FF1930E Datasheet Download


XC7VX485T-L2FF1930E Overview



The chip model XC7VX485T-L2FF1930E has become a popular choice for many industries due to its powerful capabilities and features. It is a high-performance, low-power FPGA device from Xilinx and is suitable for a wide range of applications. The device is built on the 28nm 7 Series FPGA architecture and is capable of providing up to 485K logic cells. It also offers a wide range of features and peripherals, including on-chip memory, DSP blocks, and high-speed transceivers.


The XC7VX485T-L2FF1930E chip model has been widely adopted by many industries, including automotive, aerospace, industrial, and consumer electronics. It is especially popular in automotive applications, where it is used to control various functions, such as braking, steering, and powertrain. In the aerospace and industrial sectors, the device is used for applications such as motor control, system monitoring, and data acquisition. In consumer electronics, the chip model is used for applications such as digital signal processing, image processing, and gaming.


The XC7VX485T-L2FF1930E chip model has several advantages that make it an attractive option for many industries. It is highly power efficient, with a maximum power consumption of only 3.5W. It also offers a wide range of features and peripherals, including on-chip memory, DSP blocks, and high-speed transceivers. The device is also highly reliable, with a mean time between failure (MTBF) of over 100 years.


The demand for the XC7VX485T-L2FF1930E chip model is expected to remain strong in the future. This is due to the increasing demand for automotive, aerospace, industrial, and consumer electronics applications. As these industries continue to develop and evolve, the need for reliable and powerful FPGA devices will also increase.


When designing products using the XC7VX485T-L2FF1930E chip model, there are several important considerations to keep in mind. First, the device must be designed to meet the specific requirements of the application. This includes selecting the right peripherals and features, as well as ensuring that the device is properly configured for the application. Second, the device must be tested thoroughly before being deployed in the field. This includes verifying the functionality of the device, as well as ensuring that it is reliable and power efficient. Finally, the device must be properly maintained and updated to ensure that it continues to meet the needs of the application.


In conclusion, the XC7VX485T-L2FF1930E chip model is a powerful and reliable FPGA device that is suitable for a wide range of applications. It offers a wide range of features and peripherals, as well as low power consumption and high reliability. The demand for the device is expected to remain strong in the future, as the need for reliable and powerful FPGA devices continues to increase. When designing products using the XC7VX485T-L2FF1930E chip model, it is important to consider the specific requirements of the application and to ensure that the device is properly configured and tested before being deployed in the field.



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