XC7Z030-1FFG676C Overview
The XC7Z030-1FFG676C is a versatile System on Chip (SoC) designed for industrial applications. It combines robust processing capabilities with integrated peripherals, making it ideal for embedded systems. Featuring an efficient architecture, this device supports various connectivity options and is optimized for real-time processing tasks. Its compact design and high performance ensure that it meets the demanding needs of modern electronic systems. For more details, visit IC Manufacturer.
XC7Z030-1FFG676C Key Features
- High-performance processing: The device features a dual-core ARM Cortex-A9 processor, enabling efficient multitasking and rapid data processing for embedded applications.
- Integrated peripherals: With built-in interfaces such as UART, SPI, and I2C, the XC7Z030-1FFG676C simplifies connectivity, reducing the need for additional components.
- Low power consumption: This SoC is designed to operate at lower power levels, enhancing energy efficiency in field-deployed systems.
- Flexible I/O options: The device supports various I/O configurations, allowing customization for specific application requirements.
XC7Z030-1FFG676C Technical Specifications
| Parameter | Value |
|---|---|
| Core Architecture | ARM Cortex-A9 |
| Number of Cores | Dual-core |
| Maximum Clock Frequency | 1 GHz |
| On-chip Memory | 1 MB L2 Cache |
| FPGA Fabric | 28K Logic Cells |
| Operating Voltage | 1.0V – 1.2V |
| Package Type | 676-pin FFG |
| Temperature Range | -40??C to 100??C |
XC7Z030-1FFG676C Advantages vs Typical Alternatives
The XC7Z030-1FFG676C offers superior integration of processing and peripheral features compared to typical alternatives. Its dual-core architecture enhances processing speed while maintaining low power consumption, making it ideal for energy-sensitive applications. The compact design also allows for easier integration into existing systems.
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Typical Applications
- Industrial automation: The device is well-suited for controlling machinery and processes due to its reliable performance and real-time processing capabilities, making it essential in manufacturing environments.
- Embedded systems: The XC7Z030-1FFG676C can be utilized in various embedded applications, providing a balance of processing power and energy efficiency.
- Data acquisition systems: Its integrated interfaces enable effective data collection from sensors, which is crucial for monitoring and control in industrial settings.
- Robotics: The SoC’s capabilities support advanced control algorithms, making it ideal for robotic applications requiring precise movement and decision-making.
XC7Z030-1FFG676C Brand Info
The XC7Z030-1FFG676C is a product from a leading manufacturer in the semiconductor industry, known for its innovative solutions in embedded systems and industrial applications. This device exemplifies the commitment to quality and performance that the brand represents, providing engineers and developers with the tools they need to build cutting-edge technology.
FAQ
What is the processing capability of the XC7Z030-1FFG676C?
The XC7Z030-1FFG676C features a dual-core ARM Cortex-A9 processor, capable of running at a maximum clock frequency of 1 GHz, facilitating efficient multitasking and high performance in embedded applications.
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What types of applications can benefit from this device?
Applications in industrial automation, embedded systems, data acquisition, and robotics can all benefit from the high-performance and integrated features of the XC7Z030-1FFG676C, making it a versatile choice.
How does this SoC compare to traditional microcontrollers?
This SoC offers significantly higher processing power and integrated peripherals compared to traditional microcontrollers, resulting in improved performance for complex tasks while maintaining energy efficiency.
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What is the temperature range for the XC7Z030-1FFG676C?
The device operates effectively in a temperature range of -40??C to 100??C, making it suitable for various industrial environments where temperature fluctuations can occur.
How does the integrated FPGA benefit the user?
The integrated FPGA fabric allows for customizable hardware acceleration and processing capabilities, enabling users to tailor the device for specific application requirements and improve overall system performance.






