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LC4256ZC-75T176E

LC4256ZC-75T176E

Product Overview

Category

LC4256ZC-75T176E belongs to the category of programmable logic devices (PLDs).

Use

This product is commonly used in electronic circuits for digital logic implementation, such as in embedded systems, telecommunications, and consumer electronics.

Characteristics

  • Programmable: LC4256ZC-75T176E can be configured to perform specific functions using a hardware description language.
  • High-density: This PLD offers a large number of logic elements, allowing for complex designs.
  • Low power consumption: LC4256ZC-75T176E is designed to operate efficiently with minimal power requirements.
  • Fast operation: With high-speed performance, this device enables rapid data processing.

Package

The LC4256ZC-75T176E comes in a compact package that ensures easy integration into circuit boards. It is available in a 176-pin Thin Quad Flat Pack (TQFP) package.

Essence

The essence of LC4256ZC-75T176E lies in its ability to provide flexible and customizable digital logic functionality, enabling efficient design and implementation of various electronic systems.

Packaging/Quantity

LC4256ZC-75T176E is typically packaged in reels or trays, with each reel or tray containing a specified quantity of devices. The exact packaging and quantity may vary depending on the supplier.

Specifications

  • Logic capacity: 2560 logic elements
  • Number of I/O pins: 75
  • Operating voltage: 3.3V
  • Maximum operating frequency: 100 MHz
  • On-chip memory: 64 kilobits
  • Programmable interconnect resources: 1600

Detailed Pin Configuration

The pin configuration of LC4256ZC-75T176E is as follows:

  1. VCCIO
  2. GND
  3. IO0
  4. IO1
  5. IO2
  6. IO3
  7. IO4
  8. IO5
  9. IO6
  10. IO7
  11. IO8
  12. IO9
  13. IO10
  14. IO11
  15. IO12
  16. IO13
  17. IO14
  18. IO15
  19. IO16
  20. IO17
  21. IO18
  22. IO19
  23. IO20
  24. IO21
  25. IO22
  26. IO23
  27. IO24
  28. IO25
  29. IO26
  30. IO27
  31. IO28
  32. IO29
  33. IO30
  34. IO31
  35. IO32
  36. IO33
  37. IO34
  38. IO35
  39. IO36
  40. IO37
  41. IO38
  42. IO39
  43. IO40
  44. IO41
  45. IO42
  46. IO43
  47. IO44
  48. IO45
  49. IO46
  50. IO47
  51. IO48
  52. IO49
  53. IO50
  54. IO51
  55. IO52
  56. IO53
  57. IO54
  58. IO55
  59. IO56
  60. IO57
  61. IO58
  62. IO59
  63. IO60
  64. IO61
  65. IO62
  66. IO63
  67. IO64
  68. IO65
  69. IO66
  70. IO67
  71. IO68
  72. IO69
  73. IO70
  74. IO71
  75. IO72
  76. IO73
  77. IO74
  78. IO75
  79. GND
  80. VCCIO

Functional Features

  • Flexible configuration: LC4256ZC-75T176E can be programmed to implement a wide range of digital logic functions, including combinational and sequential circuits.
  • In-system reprogrammability: The device allows for reconfiguration while in operation, enabling dynamic changes to the implemented logic.
  • Integrated memory: With on-chip memory resources, LC4256ZC-75T176E facilitates efficient storage and retrieval of data within the programmable logic.

Advantages and Disadvantages

Advantages

  • Versatility: LC4256ZC-75T176E offers a high level of flexibility in designing complex digital systems.
  • Cost-effective: By eliminating the need for custom-designed integrated circuits, this PLD reduces development costs.
  • Time-saving: The programmable nature of LC4256ZC-75T176E enables rapid prototyping and faster time-to-market for electronic products.

Disadvantages

  • Limited performance optimization: Compared to application-specific integrated circuits (ASICs), PLDs may have slightly lower performance due

Lista 10 Vanliga frågor och svar relaterade till tillämpningen av LC4256ZC-75T176E i tekniska lösningar

Sure! Here are 10 common questions and answers related to the application of LC4256ZC-75T176E in technical solutions:

1. What is LC4256ZC-75T176E? LC4256ZC-75T176E is a specific model of Field Programmable Gate Array (FPGA) manufactured by Lattice Semiconductor.

2. What are the key features of LC4256ZC-75T176E? Some key features of LC4256ZC-75T176E include 2560 Look-Up Tables (LUTs), 64 I/O pins, 75 MHz maximum operating frequency, and 176-pin Thin Quad Flat Pack (TQFP) package.

3. What are the typical applications of LC4256ZC-75T176E? LC4256ZC-75T176E can be used in various applications such as industrial automation, telecommunications, automotive electronics, medical devices, and consumer electronics.

4. How can LC4256ZC-75T176E be programmed? LC4256ZC-75T176E can be programmed using Hardware Description Languages (HDLs) like VHDL or Verilog, which allow designers to describe the desired functionality of the FPGA.

5. Can LC4256ZC-75T176E be reprogrammed after initial programming? Yes, LC4256ZC-75T176E is a reprogrammable FPGA, meaning it can be reprogrammed multiple times to implement different designs or functionalities.

6. What development tools are available for working with LC4256ZC-75T176E? Lattice Semiconductor provides development tools like Lattice Diamond Design Software and iCEcube2 Design Software that support the design, simulation, and programming of LC4256ZC-75T176E.

7. What is the power supply requirement for LC4256ZC-75T176E? LC4256ZC-75T176E typically operates at a voltage range of 3.3V, but it also supports lower voltages like 2.5V or 1.8V depending on the specific design requirements.

8. Can LC4256ZC-75T176E interface with other components or devices? Yes, LC4256ZC-75T176E can interface with various components and devices through its I/O pins, allowing communication with sensors, memory modules, displays, and other peripherals.

9. Is there any documentation available for LC4256ZC-75T176E? Yes, Lattice Semiconductor provides datasheets, user guides, application notes, and reference designs for LC4256ZC-75T176E on their official website, which can be helpful for understanding its features and usage.

10. Are there any limitations or considerations when using LC4256ZC-75T176E? Some considerations include the maximum operating frequency, power consumption, and the size of the FPGA. It's important to carefully analyze the design requirements and consult the datasheet to ensure compatibility and optimal performance.