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XC7K410T-1FFG900I: High-Performance Kintex-7 FPGA for Advanced Applications

Original price was: $20.00.Current price is: $19.00.

The XC7K410T-1FFG900I is a powerful Kintex-7 FPGA (Field-Programmable Gate Array) from Xilinx, designed to deliver exceptional performance for demanding applications in telecommunications, aerospace, defense, and industrial markets. This advanced programmable logic device combines high logic capacity with energy efficiency, making it an ideal choice for complex digital signal processing and high-speed connectivity solutions.

Product Specifications

The XC7K410T-1FFG900I features an impressive array of technical specifications that make it suitable for the most demanding applications. This Kintex-7 FPGA contains 406,720 logic cells and 28,620 Configurable Logic Blocks (CLBs), providing extensive programmable resources for complex designs. The device includes 1,540 DSP48E1 slices, enabling high-performance digital signal processing capabilities essential for applications requiring intensive mathematical computations.

Memory resources in the XC7K410T-1FFG900I include 28,620 Kb of block RAM and 2,760 Kb of distributed RAM, offering flexible storage options for various application requirements. The FPGA supports up to 500 user I/O pins in the FFG900 package, providing extensive connectivity options for interfacing with external components and systems.

The device operates with a -1 speed grade, ensuring reliable performance across industrial temperature ranges. The XC7K410T-1FFG900I supports multiple I/O standards including LVDS, LVTTL, and high-speed differential signaling, making it compatible with a wide range of interface requirements. Power consumption is optimized through advanced 28nm CMOS technology, delivering excellent performance per watt ratios.

Price Information

Pricing for the XC7K410T-1FFG900I varies based on order quantity, delivery requirements, and current market conditions. The component is typically priced in the premium FPGA category due to its high logic capacity and advanced features. Volume discounts are generally available for orders exceeding standard quantities.

For current pricing information on the XC7K410T-1FFG900I, customers should contact authorized Xilinx distributors or sales representatives. Educational discounts may be available for qualified institutions and research organizations. Lead times can vary depending on market demand and manufacturing schedules, with standard delivery typically ranging from several weeks to a few months.

Documents & Media

Comprehensive technical documentation is available for the XC7K410T-1FFG900I to support design and implementation efforts. The primary datasheet provides detailed electrical specifications, timing parameters, and package information essential for proper circuit design. Pin-out diagrams and package drawings are included to facilitate PCB layout and mechanical design considerations.

Application notes cover specific implementation topics including configuration methods, power supply design, and thermal management strategies. The Kintex-7 FPGA User Guide provides in-depth information about architecture details, memory interfaces, and I/O capabilities. Development tool documentation includes guides for Xilinx Vivado Design Suite, which is the recommended development environment for the XC7K410T-1FFG900I.

Reference designs and example projects demonstrate practical implementations of common applications, helping engineers accelerate their development cycles. Simulation models and IBIS models are available for signal integrity analysis and system-level verification.

Related Resources

The XC7K410T-1FFG900I ecosystem includes various development tools and support resources to facilitate successful project implementation. Xilinx Vivado Design Suite provides comprehensive design entry, synthesis, implementation, and debugging capabilities specifically optimized for Kintex-7 FPGAs. The software includes advanced features such as UltraFast design methodology and integrated logic analyzer functionality.

Development boards featuring the XC7K410T-1FFG900I are available from Xilinx and third-party partners, providing ready-to-use platforms for prototyping and evaluation. These boards typically include essential support circuitry, I/O connectors, and programming interfaces to simplify the development process.

IP cores and reference designs are available through the Xilinx IP catalog, offering pre-verified building blocks for common functions such as memory controllers, communication interfaces, and signal processing algorithms. Training resources including webinars, application notes, and technical support forums provide ongoing assistance for developers working with the XC7K410T-1FFG900I.

Environmental & Export Classifications

The XC7K410T-1FFG900I meets stringent environmental and reliability standards required for professional and industrial applications. The device is manufactured using RoHS-compliant processes, ensuring compliance with environmental regulations regarding hazardous substances. The industrial temperature grade (-I suffix) specifies operation from -40ยฐC to +100ยฐC, making it suitable for harsh environmental conditions.

Export classification information is essential for international shipments and compliance with trade regulations. The XC7K410T-1FFG900I falls under specific Export Control Classification Numbers (ECCN) that may require export licenses for certain destinations. Customers should consult current export control regulations and work with authorized distributors to ensure proper compliance with applicable trade laws.

Quality and reliability testing includes extensive validation procedures to ensure consistent performance across production lots. The device meets industry-standard reliability specifications including mean time between failures (MTBF) ratings and stress testing results. Moisture sensitivity level (MSL) ratings provide guidance for proper handling and storage procedures during manufacturing and assembly processes.

The XC7K410T-1FFG900I represents a premium solution for applications requiring high-performance programmable logic capabilities, offering the flexibility and power needed for next-generation electronic systems while maintaining compliance with environmental and regulatory requirements.