AMD

AMD

AMD Xilinx is a leading semiconductor company that specializes in the design and manufacture of programmable logic devices, software, and related technologies. The company's broad portfolio of products includes field-programmable gate arrays (FPGAs), system-on-chip (SoC) solutions, adaptive compute acceleration platforms, and more. AMD Xilinx's innovative solutions are widely used in various industries such as automotive, aerospace, telecommunications, data center, and consumer electronics. The company's products enable customers to optimize their systems' performance, reduce power consumption, and accelerate time-to-market. AMD Xilinx also provides comprehensive support through its development tools, libraries, and IP cores, which help customers to streamline their design processes and achieve their goals quickly and efficiently. With a strong focus on innovation and quality, AMD Xilinx has established itself as a trusted partner for businesses seeking customized solutions that address their specific needs. The company's commitment to driving technological advancements and delivering value to its customers has earned it a reputation as a leading player in the semiconductor industry. Through its recent acquisition by AMD, AMD Xilinx is poised to continue expanding its offerings and delivering cutting-edge technologies that transform the way we live and work.

Gates and Inverters

Results:
14
Series
Voltage - Supply
Operating Temperature
Number of LABs/CLBs
Total RAM Bits
Number of I/O
Mounting Type
Supplier Device Package
Package / Case
Number of Gates
Number of Logic Elements/Cells
Max Propagation Delay @ V, Max CL
Logic Type
Grade
Input Logic Level - Low
Qualification
Input Logic Level - High
Number of Inputs
Features
Number of Circuits
Current - Quiescent (Max)
Current - Output High, Low
Results remaining14
Applied Filters:
AMD
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ImageProduct DetailPriceAvailabilityECAD ModelSeriesMounting TypeSupplier Device PackageFeaturesOperating TemperatureVoltage - SupplyPackage / CaseLogic TypeCurrent - Output High, LowMax Propagation Delay @ V, Max CLNumber of InputsInput Logic Level - LowInput Logic Level - HighNumber of CircuitsCurrent - Quiescent (Max)
XCV200E-6FG456C0773
VIRTEX FPGA, 1176CLBS
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XCV300E-7PQ240C0773
VIRTEX FPGA, 1536CLBS
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XCV300E-6PQ240C0773
VIRTEX FPGA, 1536CLBS
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XCV100E-6PQ240C0773
VIRTEX FPGA, 600CLBS
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XC2V1000-5FF896C
VIRTEX-II PLATFORM FPGA, 1M SYST
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XCV400E-6BG560C0773
FPGA, 2400 CLBS, 468252 GATES, 2
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Virtex®-E
Surface Mount
560-MBGA (42.5x42.5)
0°C ~ 85°C (TJ)
1.71V ~ 1.89V
560-LBGA Exposed Pad, Metal
XCV300E-6FG256C0773
VIRTEX FPGA, 1536CLBS
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XCV100E-6BG352I0773
VIRTEX FPGA, 600CLBS
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XC5204-5PQ160C0280
FPGA, 120 CLBS, 4000 GATES, 83MH
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XCV300E-7FG456C0773
VIRTEX FPGA, 1536CLBS
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XCV400-4HQ240C0729
FPGA, 2400 CLBS, 468252 GATES, 2
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XCV400E-7BG432C0773
FPGA, 2400 CLBS, 468252 GATES, 2
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XCV600E-7FG676C0773
FPGA VIRTEX-E FAMILY 186.624K GA
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XCV600E-7BG432C0773
FPGA VIRTEX-E FAMILY 186.624K GA
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About  Gates and Inverters

Gates and Inverters are electronic components used in digital circuits to perform elementary logical operations on individual logic signals. They are fundamental building blocks of digital systems and play a crucial role in processing and manipulating digital information. Logic gates are devices that take one or more input signals and produce an output signal based on a specific logical function. Common types of logic gates include AND gates, OR gates, XOR gates, NAND gates, NOR gates, and others. Each gate type has its own truth table, which defines the output based on the input conditions. Inverters, also known as NOT gates, are a special type of gate that takes a single input signal and produces the logical complement of that signal at the output. If the input is high (logic 1), the output will be low (logic 0), and vice versa. These gates and inverters are typically implemented using integrated circuits, which are compact and efficient solutions that contain numerous interconnected transistors and other electronic components on a single chip. Integrated circuits offer advantages such as high speed, low power consumption, small size, and improved reliability. While integrated circuit implementations are commonly used for complex logical functions, discrete gates and inverters are still available for simpler applications. Discrete gates are individual logic gates implemented as separate components, allowing flexibility and customization in designing digital circuits. Overall, Integrated Circuits (ICs) - Logic - Gates and Inverters are essential components in digital systems. They enable the manipulation and processing of digital information through logical operations, ensuring the proper functioning and operation of various digital electronic devices and systems.