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EPM7064BFC49-5

EPM7064BFC49-5

Product Overview

Category

The EPM7064BFC49-5 belongs to the category of programmable logic devices (PLDs).

Use

This device is commonly used in digital electronics for implementing various logical functions and designs.

Characteristics

  • Programmable: The EPM7064BFC49-5 can be configured to perform specific logic functions.
  • High Density: This PLD offers a high number of logic elements, allowing for complex designs.
  • Low Power Consumption: It operates efficiently with low power requirements.
  • Fast Operation: The device provides fast switching speeds, enabling quick response times.

Package

The EPM7064BFC49-5 is available in a 49-pin Fine-Pitch Ball Grid Array (FBGA) package.

Essence

The essence of the EPM7064BFC49-5 lies in its ability to provide flexible and efficient logic implementation in digital circuits.

Packaging/Quantity

This PLD is typically sold in reels or trays, with each reel containing a specified quantity of devices.

Specifications

  • Device Type: Programmable Logic Device (PLD)
  • Family: EPM70xx
  • Model: EPM7064BFC49-5
  • Package: 49-pin FBGA
  • Operating Voltage: 3.3V
  • Speed Grade: -5
  • Logic Elements: 64 macrocells
  • I/O Pins: 36
  • Maximum Frequency: 250 MHz
  • JTAG Support: Yes

Detailed Pin Configuration

The EPM7064BFC49-5 has a total of 49 pins. The pin configuration is as follows:

  1. VCCIO
  2. GND
  3. IO_0
  4. IO_1
  5. IO_2
  6. IO_3
  7. IO_4
  8. IO_5
  9. IO_6
  10. IO_7
  11. IO_8
  12. IO_9
  13. IO_10
  14. IO_11
  15. IO_12
  16. IO_13
  17. IO_14
  18. IO_15
  19. IO_16
  20. IO_17
  21. IO_18
  22. IO_19
  23. IO_20
  24. IO_21
  25. IO_22
  26. IO_23
  27. IO_24
  28. IO_25
  29. IO_26
  30. IO_27
  31. IO_28
  32. IO_29
  33. IO_30
  34. IO_31
  35. IO_32
  36. IO_33
  37. IO_34
  38. IO_35
  39. GND
  40. TCK
  41. TMS
  42. TDI
  43. TDO
  44. GND
  45. VCCIO
  46. GND
  47. VCC
  48. GND
  49. NC

Functional Features

  • Programmability: The EPM7064BFC49-5 can be programmed to implement various logic functions.
  • High-Speed Operation: It offers fast switching speeds, enabling efficient data processing.
  • JTAG Support: The device supports Joint Test Action Group (JTAG) for programming and debugging purposes.
  • Flexible I/O Configuration: The PLD provides a range of I/O pins for interfacing with external devices.

Advantages and Disadvantages

Advantages

  • Flexibility: The programmable nature of the EPM7064BFC49-5 allows for easy design modifications.
  • High Density: The device offers a high number of logic elements, enabling complex designs.
  • Low Power Consumption: It operates efficiently with low power requirements.
  • Fast Operation: The PLD provides fast switching speeds, ensuring quick response times.

Disadvantages

  • Complexity: Programming and configuring the device may require specialized knowledge.
  • Limited I/O Pins: The number of available I/O pins may restrict the connectivity options in certain applications.

Working Principles

The EPM7064BFC49-5 utilizes a combination of programmable logic elements, interconnects, and I/O blocks to implement desired logic functions. These elements are configured using programming tools that generate a bitstream file, which is then loaded into the device. Once programmed, the PLD operates based on the specified logic design, processing input signals and generating output signals accordingly.

Detailed Application Field Plans

The EPM7064BFC49-5 finds applications in various fields, including:

  1. Embedded Systems: It can be used for implementing control and interface logic in embedded systems.
  2. Communication Systems: The PLD can be utilized in communication devices for protocol handling and data processing.
  3. Industrial Automation: It enables the implementation of custom

Enumere 10 preguntas y respuestas comunes relacionadas con la aplicación de EPM7064BFC49-5 en soluciones técnicas

Sure! Here are 10 common questions and answers related to the application of EPM7064BFC49-5 in technical solutions:

  1. Q: What is EPM7064BFC49-5? A: EPM7064BFC49-5 is a specific model of programmable logic device (PLD) manufactured by Intel.

  2. Q: What is the purpose of EPM7064BFC49-5 in technical solutions? A: EPM7064BFC49-5 is used for implementing digital logic functions, such as combinational and sequential circuits, in various electronic systems.

  3. Q: What are some typical applications of EPM7064BFC49-5? A: EPM7064BFC49-5 can be used in applications like industrial control systems, communication devices, automotive electronics, and consumer electronics.

  4. Q: How does EPM7064BFC49-5 differ from other PLDs? A: EPM7064BFC49-5 offers a specific combination of features, including a certain number of logic elements, I/O pins, and memory capacity, which may vary from other PLDs.

  5. Q: Can EPM7064BFC49-5 be reprogrammed after it has been configured? A: No, EPM7064BFC49-5 is a one-time programmable device, meaning that its configuration cannot be changed once programmed.

  6. Q: What programming tools are required to configure EPM7064BFC49-5? A: EPM7064BFC49-5 can be programmed using dedicated hardware programmers or software tools provided by the manufacturer.

  7. Q: Is EPM7064BFC49-5 compatible with popular design languages like VHDL or Verilog? A: Yes, EPM7064BFC49-5 supports popular design languages like VHDL and Verilog for describing the desired logic functions.

  8. Q: What is the maximum operating frequency of EPM7064BFC49-5? A: The maximum operating frequency of EPM7064BFC49-5 depends on various factors, including the complexity of the design and the specific implementation.

  9. Q: Can EPM7064BFC49-5 interface with other components or microcontrollers? A: Yes, EPM7064BFC49-5 can interface with other components or microcontrollers through its I/O pins, allowing it to communicate and exchange data.

  10. Q: Are there any limitations or considerations when using EPM7064BFC49-5 in technical solutions? A: Some considerations include power supply requirements, temperature range, and the need for proper grounding and decoupling techniques to ensure reliable operation. Additionally, the available resources (logic elements, memory) should be carefully considered during the design phase.