Overview
EP4CE10F17C8N is a cost-effective Cyclone IV FPGA launched by Intel (formerly Altera), designed for embedded systems, industrial control, communications and consumer electronics. The device integrates rich logic resources, low power design and high performance, making it an ideal choice for various low- and medium-density FPGA applications.
Specifications
parameter | Numeric |
Logic Unit (LE) | 10,320 |
Embedded Memory (RAM) | 414kb |
Number of user I/O pins | 179 |
Embedded Multiplier | 36 |
Maximum operating frequency | 150 MHz |
Package Type | FBGA-256 |
Operating voltage | 1.15V to 3.3V |
Operating temperature range | -40°C to +85°C |
EP4CE10F17C8N’s outstanding features
Rich logic resources
provide 10,320 logic cells and 414kb of embedded RAM to support complex logic design and data processing requirements.
The low-power design
uses 60nm process technology to greatly reduce power consumption, making it very suitable for embedded systems and portable devices that require high energy efficiency.
Strong scalability
With 36 embedded multipliers and 4 phase-locked loops (PLLs), it supports a variety of signal processing and clock management requirements to meet higher performance application scenarios.
Multi-voltage compatibility
supports a wide voltage range from 1.15V to 3.3V, providing designers with more power management flexibility.
Compact Package Design
The FBGA-256 package has a high pin density and is suitable for high-performance but space-constrained application designs.
Application Areas
EP4CE10F17C8N has been widely used in the following fields due to its efficient logic resources and flexible architecture design:
Embedded Systems :
Used as real-time processing cores in embedded control and industrial automation to achieve efficient task management.
Communications equipment :
Supports hardware acceleration of communications protocols such as Ethernet interfaces, signal processing, and data transmission optimization.
Consumer electronics :
used for signal conditioning, interface conversion and logic control in smart home appliances and audio and video equipment.
Education and R&D :
Widely used in FPGA development boards as a platform for hardware teaching, research, and prototyping.
Comparative Analysis: EP4CE10F17C8N and Other FPGA Devices
Features/Specifications | EP4CE10F17C8N | Other FPGAs in the market |
Number of logic elements (LE) | 10,320 | 5,000 to 50,000 |
Embedded Memory (RAM) | 414kb | 200kb to 1Mb |
Power consumption | Low power consumption | Medium power consumption |
Embedded Multiplier | 36 | 16 to 48 |
Package | FBGA-256 | TQFP, BGA, etc. |
The EP4CE10F17C8N has a balanced advantage in the number of logic cells, embedded memory, and power consumption, making it very suitable for medium-complexity design requirements.
Manufacturer introduction: Intel
Intel is a leading global supplier of semiconductor and FPGA solutions, dedicated to providing high-performance, low-power programmable logic devices and system-level chips. EP4CE10F17C8N is a classic product of its Cyclone IV series, which has won market favor with its high cost performance and flexibility.
Why choose EP4CE10F17C8N?
EP4CE10F17C8N has become a star product in FPGA applications with its low power consumption, compact design and powerful logic resources. It provides efficient computing power, flexible development options, and comprehensive support for various industry requirements, making it the preferred device for designers to develop low- and medium-density FPGA systems.
FAQ
Q1: Does EP4CE10F17C8N support dynamic reconfiguration?
A: Yes, the EP4CE10F17C8N supports partial reconfiguration, which can dynamically adjust the logic design according to the needs and improve resource utilization. This feature allows the system to be updated or optimized at runtime without downtime, improving the flexibility and adaptability of the system. This is especially important for applications that require high availability and flexible expansion.
Q2: Is this device suitable for harsh environments?
A: Yes, the EP4CE10F17C8N has an operating temperature range of -40°C to +85°C, making it ideal for industrial applications. Its rugged design ensures stable operation in harsh environments and is widely used in automation, communications, automotive and other fields to adapt to different temperature and environmental challenges, ensuring long-term stability and reliability of the system.
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