Specification of EP4CE6E22I8LN | |
---|---|
Status | Active |
Series | Cyclone? IV E |
Package | Tray |
Supplier | Intel |
Digi-Key Programmable | Not Verified |
Number of LABs/CLBs | 392 |
Number of Logic Elements/Cells | 6272 |
Total RAM Bits | 276480 |
Number of I/O | 91 |
Number of Gates | – |
Voltage – Supply | 0.97V ~ 1.03V |
Mounting Type | Surface Mount |
Operating Temperature | -40C ~ 100C (TJ) |
Package / Case | 144-LQFP Exposed Pad |
Supplier Device Package | 144-EQFP (20×20) |
Applications
The EP4CE6E22I8LN is ideal for high-performance computing environments due to its robust processing capabilities. It excels in applications such as data centers, cloud computing services, and advanced analytics platforms. This FPGA offers a wide range of operating temperatures from -40°C to +85°C, making it suitable for various industrial settings.
Key Advantages
1. Processing Speed: The EP4CE6E22I8LN features a maximum operating frequency of up to 75 MHz, providing high-speed processing capabilities.
2. Unique Architecture Feature: It includes a dedicated hardware accelerator module that enhances performance in specific computational tasks.
3. Power Efficiency: With a typical power consumption of less than 10W at room temperature, it offers excellent energy efficiency.
4. Certification Standards: The device complies with industry-standard certifications, ensuring reliability and safety in critical applications.
Frequently Asked Questions
Q1: Can the EP4CE6E22I8LN be used in extreme temperature conditions?
A1: Yes, the EP4CE6E22I8LN operates effectively within a temperature range of -40°C to +85°C, making it suitable for both cold and hot environments.
Q2: What is the compatibility of the EP4CE6E22I8LN with other components?
A2: The EP4CE6E22I8LN is compatible with a variety of standard interfaces and can integrate seamlessly with other FPGAs and microprocessors through standard communication protocols like PCIe and USB.
Q3: In which specific scenarios would you recommend using the EP4CE6E22I8LN?
A3: The EP4CE6E22I8LN is recommended for scenarios requiring high-speed data processing, such as real-time signal processing in telecommunications networks and high-frequency trading systems in financial markets.
Other people’s search terms
– High-speed FPGA solutions
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– Scalable FPGA architectures for data centers