XC7K160T-2FBG484I Overview
The XC7K160T-2FBG484I is a high-performance FPGA offering advanced processing capabilities and flexibility for a range of applications. Featuring a robust architecture, it delivers significant computational power while maintaining energy efficiency. Designed for scalability, this device supports complex designs with ease, making it ideal for engineers and sourcing specialists seeking reliable solutions. For more details, visit IC Manufacturer.
XC7K160T-2FBG484I Key Features
- High Logic Density: With a capacity that facilitates complex applications, it allows for more extensive designs within a compact footprint.
- Enhanced Performance: This FPGA offers superior processing speeds, which is essential for applications requiring real-time data analysis.
- Low Power Consumption: Its energy-efficient design reduces operational costs while maintaining performance, making it suitable for various environments.
- Flexible I/O Configuration: The configurable I/O options enable seamless integration into existing systems, enhancing versatility for diverse projects.
XC7K160T-2FBG484I Technical Specifications
| Parameter | Value |
|---|---|
| Logic Cells | 160,000 |
| Maximum Clock Frequency | 450 MHz |
| RAM Blocks | 8.5 Mb |
| DSP Slices | 480 |
| Package Type | FBG484 |
| Power Supply Voltage | 1.0V |
| Operating Temperature Range | -40??C to +100??C |
| Configuration | JTAG, SelectMAP |
XC7K160T-2FBG484I Advantages vs Typical Alternatives
The XC7K160T-2FBG484I stands out against typical alternatives by offering superior processing capabilities combined with low power consumption. Its high logic density and flexible I/O options ensure greater integration and reliability in diverse applications, making it a preferred choice for engineers.
🔥 Best-Selling Products
Typical Applications
- High-performance computing systems benefit from the advanced processing power and flexibility, enabling complex calculations and simulations.
- Telecommunications infrastructure utilizes this FPGA for data routing and signal processing, ensuring efficient communication.
- Industrial automation systems leverage its real-time processing capabilities to enhance control and monitoring processes.
- Medical imaging applications deploy this device for its high accuracy and reliability in data interpretation.
XC7K160T-2FBG484I Brand Info
This product is part of a well-recognized brand known for its innovation in FPGA technologies. The XC7K160T-2FBG484I is engineered to meet the demands of modern applications, ensuring high performance and reliability for critical systems across various industries.
FAQ
What is the primary use of the XC7K160T-2FBG484I?
The XC7K160T-2FBG484I is primarily used in applications requiring high computational power, such as telecommunications, high-performance computing, and industrial automation systems.
🌟 Featured Products
-

“Buy MAX9312ECJ+ Precision Voltage Comparator in DIP Package for Reliable Performance”
-

QCC-711-1-MQFN48C-TR-03-1 Bluetooth Audio SoC with MQFN48C Package
-

0339-671-TLM-E Model – High-Performance TLM-E Package for Enhanced Functionality
-

1-1415898-4 Connector Housing, Electrical Wire-to-Board, Receptacle, Packaged
How does the power consumption of the XC7K160T-2FBG484I compare to other FPGAs?
This FPGA is designed with low power consumption in mind, making it more efficient than many alternatives, which can lead to reduced operational costs in long-term applications.
What kind of support is available for the XC7K160T-2FBG484I?
Comprehensive technical support is available, including documentation, design tools, and customer service assistance to help engineers effectively utilize this FPGA in their projects.
📩 Contact Us
Can the XC7K160T-2FBG484I be used in harsh environments?
Yes, this FPGA is rated for an operating temperature range of -40??C to +100??C, making it suitable for deployment in various harsh environments and applications.
What makes the XC7K160T-2FBG484I a preferred choice for integration?
Its flexible I/O configuration and high logic density make it easy to integrate into existing systems, providing engineers with a reliable solution for complex designs.





