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EP4CE22F17C9L

EP4CE22F17C9L

Product Overview

Category

EP4CE22F17C9L belongs to the category of programmable logic devices (PLDs).

Use

This product is commonly used in various electronic applications that require high-performance and flexible digital logic functions.

Characteristics

  • High-performance programmable logic device
  • Offers flexibility in designing digital logic circuits
  • Provides a wide range of features and capabilities
  • Suitable for complex digital designs

Package

EP4CE22F17C9L is available in a compact and durable package, ensuring easy integration into electronic systems.

Essence

The essence of EP4CE22F17C9L lies in its ability to provide designers with a versatile platform for implementing complex digital logic functions.

Packaging/Quantity

This product is typically packaged in trays or reels, depending on the quantity ordered. The exact packaging and quantity can vary based on customer requirements.

Specifications

  • Device family: Cyclone IV E
  • Device density: 22,320 logic elements (LEs)
  • Maximum user I/O pins: 179
  • Embedded memory: 414 Kbits
  • Maximum operating frequency: 300 MHz
  • Voltage supply: 1.2V
  • Package type: FBGA
  • Package pin count: 324

Detailed Pin Configuration

The EP4CE22F17C9L has a total of 324 pins, each serving a specific purpose in the device's functionality. The detailed pin configuration can be found in the manufacturer's datasheet.

Functional Features

  • High-density programmable logic elements
  • Flexible I/O interface
  • Embedded memory blocks for data storage
  • Dedicated clock management circuitry
  • Support for various communication protocols
  • On-chip analog-to-digital converters (ADCs) and digital-to-analog converters (DACs)

Advantages and Disadvantages

Advantages

  • Versatile and flexible design capabilities
  • High-performance digital logic functions
  • Efficient use of resources
  • Wide range of available features
  • Cost-effective solution for complex designs

Disadvantages

  • Steep learning curve for beginners
  • Limited support for certain advanced features
  • Higher power consumption compared to some alternatives

Working Principles

EP4CE22F17C9L operates based on the principles of programmable logic. It consists of a matrix of configurable logic elements that can be programmed to implement various digital logic functions. The device is configured using a hardware description language (HDL) or a graphical design tool, allowing designers to define the desired functionality.

Detailed Application Field Plans

EP4CE22F17C9L finds applications in various fields, including: 1. Telecommunications: Used in network equipment, routers, and switches. 2. Industrial automation: Employed in control systems and monitoring devices. 3. Automotive electronics: Integrated into automotive control units and infotainment systems. 4. Consumer electronics: Utilized in smart TVs, gaming consoles, and home automation systems. 5. Medical devices: Incorporated into medical imaging equipment and patient monitoring systems.

Detailed and Complete Alternative Models

  1. EP4CE10F17C8N: A lower-density alternative with 10,080 logic elements.
  2. EP4CE30F23C7: A higher-density alternative with 30,060 logic elements.
  3. EP4CE40F29I7: A higher-density alternative with 39,600 logic elements and extended temperature range.

These alternative models offer different logic element densities and additional features, providing options for various design requirements.

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Seznam 10 běžných otázek a odpovědí souvisejících s aplikací EP4CE22F17C9L v technických řešeních

Sure! Here are 10 common questions and answers related to the application of EP4CE22F17C9L in technical solutions:

  1. Q: What is EP4CE22F17C9L? A: EP4CE22F17C9L is a field-programmable gate array (FPGA) chip manufactured by Intel (formerly Altera). It offers a range of programmable logic elements and embedded memory blocks.

  2. Q: What are the key features of EP4CE22F17C9L? A: Some key features include 22,320 logic elements, 594 kilobits of embedded memory, 66 embedded multipliers, and support for various I/O standards.

  3. Q: What are the typical applications of EP4CE22F17C9L? A: EP4CE22F17C9L can be used in a wide range of applications such as digital signal processing, motor control, communication systems, industrial automation, and image/video processing.

  4. Q: How do I program EP4CE22F17C9L? A: EP4CE22F17C9L can be programmed using the Quartus Prime software provided by Intel. The programming file can be loaded onto the FPGA using a USB Blaster or other compatible programming hardware.

  5. Q: Can EP4CE22F17C9L interface with external devices? A: Yes, EP4CE22F17C9L supports various I/O standards such as LVDS, LVTTL, and SSTL. It can interface with external devices like sensors, displays, memory, and communication modules.

  6. Q: What is the maximum operating frequency of EP4CE22F17C9L? A: The maximum operating frequency of EP4CE22F17C9L depends on the design and implementation. It can typically achieve frequencies in the range of several hundred megahertz.

  7. Q: Can EP4CE22F17C9L be reprogrammed multiple times? A: Yes, EP4CE22F17C9L is a reprogrammable FPGA, which means it can be programmed and reprogrammed multiple times to implement different designs or make updates to existing designs.

  8. Q: Does EP4CE22F17C9L support hardware debugging? A: Yes, EP4CE22F17C9L supports various debugging features such as SignalTap II logic analyzer, which allows you to capture and analyze internal signals during runtime.

  9. Q: What power supply requirements does EP4CE22F17C9L have? A: EP4CE22F17C9L requires a single 3.3V power supply for core operation. Additional voltage supplies may be needed for I/O banks depending on the application.

  10. Q: Are there any development boards available for EP4CE22F17C9L? A: Yes, Intel offers development boards like the DE0-Nano-SoC, which feature the EP4CE22F17C9L FPGA chip. These boards provide a convenient platform for prototyping and testing applications.

Please note that the answers provided here are general and may vary based on specific requirements and implementations.