Specification of EP1C12F256C6N | |
---|---|
Status | Obsolete |
Series | Cyclone? |
Package | Tray |
Supplier | Intel |
Digi-Key Programmable | Not Verified |
Number of LABs/CLBs | 1206 |
Number of Logic Elements/Cells | 12060 |
Total RAM Bits | 239616 |
Number of I/O | 185 |
Number of Gates | – |
Voltage – Supply | 1.425V ~ 1.575V |
Mounting Type | Surface Mount |
Operating Temperature | 0C ~ 85C (TJ) |
Package / Case | 256-BGA |
Supplier Device Package | 256-FBGA (17×17) |
Applications
The EP1C12F256C6N is widely used in various industries due to its versatility and robust performance. Here are some key applications:
- Industrial Automation: Used in control systems requiring high reliability and fast processing speeds.
- Medical Equipment: Essential for medical imaging devices that need precise timing and data handling capabilities.
- Networking Devices: Utilized in routers and switches for packet switching and routing algorithms.
- Automotive Electronics: Critical for vehicle diagnostics and safety systems.
- Consumer Electronics: Found in smart home devices and entertainment systems for enhanced user interaction.
Operating Temperature: -40°C to +85°C
Key Advantages
1. High Performance: Equipped with advanced logic blocks offering superior computational power.
2. Flexible Architecture: Supports multiple configurations to meet diverse application needs.
3. Eco-Friendly: Designed with low power consumption features, reducing energy usage.
4. Industry Standards: Certified to meet international quality and safety standards.
Frequently Asked Questions
Q1: What is the maximum clock frequency supported by the EP1C12F256C6N?
A1: The EP1C12F256C6N supports a maximum clock frequency of up to 100 MHz.
Q2: Is the EP1C12F256C6N compatible with other FPGA families?
A2: Yes, it is compatible with several other FPGA families through standard interface protocols.
Q3: In which specific scenarios would you recommend using the EP1C12F256C6N?
A3: The EP1C12F256C6N is recommended for applications requiring high-speed data processing and complex logic operations, such as real-time signal processing and embedded systems.
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