EP4CE30F29C8N
Manufacturer: intel
Part Number: EP4CE30F29C8N
Attribute | Value |
cate_name | Field Programmable Gate Arrays (FPGA) |
Datasheet | EP4CE30F29C8N intel |
rohs | Compliance |
reference_package | FBGA-780 |
mounting | SMD mount |
application_level | Commercial |
lifecycle | On sale |
spm | tray |
min_operating_temperature | 0℃(TJ) |
max_operating_temperature | 85℃(TJ) |
length_width_height | 29mm*29mm*1.75mm |
max_operating_supply_voltage | 1.25V |
min_operating_supply_voltage | 1.15V |
number_of_labclb | 1803 |
number_of_logic_blocks | 28848 |
total_ram_bits | 594Kbit |
Overview:
The Intel EP4CE30F29C8N is a high-performance, low-power FPGA (Field-Programmable Gate Array) belonging to the Cyclone IV E family. It is designed to meet the demands of complex digital systems requiring high-speed data processing, low power consumption, and flexible design capabilities.
Key Features:
1. Power Efficiency: Optimized for power-sensitive applications, the EP4CE30F29C8N offers a balance between performance and power consumption.
2. High-Speed Performance: With a fast clock rate and high-speed I/Os, this FPGA is suitable for applications requiring rapid data processing.
3. Configurable Logic Blocks: The device features a large number of configurable logic blocks, allowing for a wide range of custom designs.
4. Embedded Memory: It includes block RAM and distributed RAM, providing ample memory resources for complex algorithms and data storage.
5. DSP Blocks: The FPGA is equipped with digital signal processing blocks for high-speed arithmetic operations.
6. I/O Capabilities: It supports a variety of I/O standards and protocols, making it versatile for different interface requirements.
7. Security Features: The device includes security features to protect intellectual property and ensure data integrity.
Development Support:
Intel provides comprehensive development tools and support for the EP4CE30F29C8N, including:
- Quartus Prime software for design entry and optimization.
- IP cores and libraries for common functions to accelerate development.
- Technical documentation and reference designs.
- Active community and forum support for troubleshooting and sharing knowledge.
Application Fields:
The EP4CE30F29C8N is well-suited for a variety of applications, such as:
- Communications infrastructure (e.g., routers, switches)
- Industrial automation and control systems
- Video processing and display technologies
- Automotive electronics for infotainment and control systems
- High-speed data acquisition and signal processing
Parameter Introduction:
- Device Family: Cyclone IV E
- Logic Elements: 30,000
- Block RAM (KB): 3,360
- DSP Blocks: 240
- Max. User I/O Pins: 338
- Power Consumption (W): Up to 13 (depending on configuration)
- Operating Temperature Range: -40°C to +85°C
- Package Type: Flip-Chip Ball Grid Array (FBGA)
Frequently Asked Questions (FAQ):
1. Q: What is the main advantage of using the EP4CE30F29C8N FPGA?
A: The main advantage is its combination of high performance, low power consumption, and flexibility in design, making it suitable for a wide range of applications.
2. Q: How does the EP4CE30F29C8N compare to other FPGAs in its class?
A: It offers competitive performance and power efficiency, along with a robust set of features and development support that can be advantageous for complex system designs.
3. Q: Can the EP4CE30F29C8N be used in high-temperature environments?
A: Yes, it can operate in a wide temperature range from -40°C to +85°C, making it suitable for industrial applications.
4. Q: What kind of development tools does Intel provide for this FPGA?
A: Intel provides the Quartus Prime software suite, which includes design entry, synthesis, and optimization tools, along with a wealth of IP cores and technical support.
5. Q: Is there support for intellectual property (IP) protection on the EP4CE30F29C8N?
A: Yes, the device includes security features designed to protect your intellectual property and ensure the integrity of your data.
6. Q: What is the typical use case for the EP4CE30F29C8N FPGA?
A: Typical use cases include communications infrastructure, industrial automation, video processing, automotive electronics, and high-speed data acquisition systems.
This introduction and feature overview of the Intel EP4CE30F29C8N FPGA provides a comprehensive understanding of its capabilities, ideal for engineers and developers looking to implement this device in their projects.
Please refer to the product rule book for details.
Intel's groundbreaking products range from microprocessors, chipsets, and embedded processors to programmable semiconductors, server products, and a variety of hardware and software solutions. The company's microprocessors, which include the famous Intel Core, Xeon, and Atom families, are found at the heart of countless personal computers, servers, and networking equipment globally. Intel's technology extends beyond just computing hardware; it also encompasses security, Internet of Things (IoT) devices, and data center solutions, making it a comprehensive technology ecosystem.
Intel's commitment to innovation is evident in its substantial investment in research and development. This dedication has led to significant advancements in areas such as artificial intelligence, 5G network transformation, and autonomous driving. Intel Labs, the research arm of Intel, works on cutting-edge technology that spans numerous domains including quantum computing, neuromorphic computing, and technology, aiming to solve global challenges and enhance the capabilities of Intel products.
Sustainability and corporate responsibility are integral to Intel's philosophy. The company strives to reduce its environmental impact through energy-efficient technologies, responsible sourcing, and waste reduction practices. Intel is also committed to diversity and inclusion in its workforce, aiming to create a more inclusive environment that reflects the global communities it serves.
Intel's influence extends into the educational sector through its Intel Education initiative, which provides resources and technology to help transform learning and teaching. Additionally, the Intel Foundation supports educational and charitable projects around the world, fostering innovation and improving lives in global communities.
In the realm of competition, Intel faces challenges from other semiconductor giants like AMD, NVIDIA, and Qualcomm, but it continues to leverage its vast resources, extensive research and development capabilities, and deep industry knowledge to maintain a competitive edge.
As the digital landscape evolves, Intel remains at the forefront of technological innovation, continuously pushing the boundaries of what is possible in the world of computing and beyond. The company's vision for the future is not just about advancing technology, but also about leveraging that technology to create a better, more connected, and sustainable world. Intel's ongoing mission is to drive innovation that makes the world safer, builds healthy and vibrant communities, and increases productivity. Through its relentless pursuit of innovation and excellence, Intel continues to have a profound impact on society, powering the devices and systems that form the backbone of modern technology infrastructure.
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