XC6SLX16-2FTG256I Overview
The XC6SLX16-2FTG256I is a high-performance FPGA designed to meet the demands of various applications in industrial and commercial sectors. It offers a unique combination of flexibility and efficiency, making it an ideal choice for engineers who require reliable and scalable solutions. With its advanced architecture, it provides extensive programmable logic resources that can be tailored to specific project requirements, enhancing design productivity. For detailed specifications, visit IC Manufacturer.
XC6SLX16-2FTG256I Key Features
- Flexible architecture: The XC6SLX16-2FTG256I features a highly flexible design that allows for easy customization, enabling engineers to adapt the device for a variety of applications.
- Low power consumption: This device operates efficiently with a low power footprint, which is essential for battery-powered applications and helps reduce overall operating costs.
- High reliability: Built to withstand harsh conditions, the XC6SLX16-2FTG256I ensures consistent performance and longevity, making it suitable for critical industrial environments.
- Integrated features: The device includes built-in memory and I/O options, which streamline designs and reduce the need for additional components, facilitating quicker project timelines.
XC6SLX16-2FTG256I Technical Specifications
| Parameter | Value |
|---|---|
| Logic Cells | 16,000 |
| Maximum I/O Pins | 128 |
| Package Type | FTG256 |
| Operating Voltage | 1.2V |
| Maximum Clock Frequency | 400 MHz |
| RAM Blocks | 16 Kbits |
| DSP Slices | 32 |
| Temperature Range | -40??C to +100??C |
XC6SLX16-2FTG256I Advantages vs Typical Alternatives
Compared to typical alternatives, the XC6SLX16-2FTG256I stands out due to its lower power consumption and superior integration capabilities. This combination allows for enhanced efficiency in designs without compromising on performance or reliability, making it a preferred choice for engineers focused on optimizing their applications.
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Typical Applications
- Digital signal processing in telecommunications, enabling high-speed data transmission and robust signal integrity. This application benefits from the device’s DSP slices and efficient architecture.
- Industrial automation systems, where reliable and flexible control solutions are essential for optimizing production processes.
- Embedded systems that require rapid prototyping and customization, allowing developers to implement tailored functionalities efficiently.
- Consumer electronics, where innovative features and low power consumption are critical for market competitiveness.
XC6SLX16-2FTG256I Brand Info
The XC6SLX16-2FTG256I is part of a renowned family of FPGAs known for their adaptability and high performance. This device is specifically engineered to cater to the evolving needs of modern applications across various industries. With a commitment to innovation and quality, the manufacturer ensures that the XC6SLX16-2FTG256I remains at the forefront of technological advancements, providing engineers with reliable solutions that enhance their design capabilities.
FAQ
What is the primary use of the XC6SLX16-2FTG256I?
The XC6SLX16-2FTG256I is primarily used in applications requiring high flexibility and efficient processing, such as telecommunications, industrial automation, and embedded systems development.
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How does the power consumption of the XC6SLX16-2FTG256I compare to other FPGAs?
This device is designed to operate with low power consumption, making it more efficient than many other FPGAs, which is particularly beneficial in battery-operated applications.
What benefits does the integrated memory provide?
The integrated memory enhances the design efficiency by reducing the need for external components, simplifying the circuit design while improving performance and reducing costs.
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Is the XC6SLX16-2FTG256I suitable for harsh environments?
Yes, it is built to operate within a wide temperature range of -40??C to +100??C, making it suitable for challenging industrial conditions.
Can the XC6SLX16-2FTG256I be used in high-speed applications?
Absolutely, with a maximum clock frequency of 400 MHz, it is well-suited for high-speed applications, such as digital signal processing and real-time data management.






