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IC Socket 2x12 - DIP 24-Pin Integrated Circuit Wide

IC Socket 2x12 - DIP 24-Pin Integrated Circuit Wide
IC Socket 2x12 - DIP 24-Pin Integrated Circuit Wide
IC Socket 2x12 - DIP 24-Pin Integrated Circuit Wide
IC Socket 2x12 - DIP 24-Pin Integrated Circuit Wide
IC Socket 2x12 - DIP 24-Pin Integrated Circuit Wide
IC Socket 2x12 - DIP 24-Pin Integrated Circuit Wide
IC Socket 2x12 - DIP 24-Pin Integrated Circuit Wide
1.11RON
  • Stock: In Stock
  • Model: ICCXXX.DIP24P
Your orders placed until 16:30 on weekdays are shipped on the same day.

24-Pin DIP-24 Wide Integrated Circuit Socket - 2x12 IC

Integrated Circuit (IC) Socket Overview:

Integrated Circuit (IC) sockets are essential connectors that facilitate the easy insertion and removal of ICs from a printed circuit board (PCB). They offer a convenient method of mounting ICs without the need for direct soldering to the PCB. This feature is particularly advantageous for prototyping, testing, and repair processes.

Key Features of IC Sockets:

  • Ease of Use: ICs can be conveniently inserted and removed, making these sockets perfect for prototyping and testing.
  • Protection: They offer protection to ICs from potential heat damage during soldering.
  • Versatility: They are available in a variety of sizes and configurations to suit different IC packages.
  • Reusability: IC sockets can be reused, facilitating easy replacement of ICs without the need for desoldering.

Types of IC Sockets:

  • DIP (Dual In-Line Package) Sockets: Designed for ICs with two parallel rows of pins. Common pin counts include 8, 14, 16, 20, 24, 28, 40, and more. Widely used in prototyping and development boards.
  • SIP (Single In-Line Package) Sockets: Suitable for ICs with a single row of pins and used for specific types of ICs or modules.
  • ZIF (Zero Insertion Force) Sockets: Allow ICs to be inserted and removed without any force, ideal for testing and programming.
  • PLCC (Plastic Leaded Chip Carrier) Sockets: Designed for PLCC IC packages with leads on all four sides. Common pin counts include 20, 28, 32, 44, 52, 68, and more.
  • BGA (Ball Grid Array) Sockets: Suitable for ICs with an array of solder balls on the bottom, used in high-density applications like CPUs and GPUs.
  • PGA (Pin Grid Array) Sockets: Designed for ICs with an array of pins arranged in a grid pattern, common in older CPUs and high-power applications.

Benefits and Drawbacks of Using IC Sockets:

  • Flexibility: Allow for easy swapping of ICs for testing or upgrading.
  • Damage Prevention: Protect ICs from thermal stress and potential damage during soldering, facilitate easy replacement without desoldering.
  • Applications: Essential in prototyping, testing, and environments requiring frequent IC replacement. However, they add to PCB cost and height, with potential for contact wear over time.

Applications of IC Sockets:

  • Prototyping and Development: Allow easy swapping of ICs during design and testing.
  • Repair and Maintenance: Facilitate easy replacement of faulty ICs in electronic devices.
  • Educational Kits: Used in kits and development boards for ease of use.
  • Production: Used in low-volume production with expected updates or changes.

Conclusion:

IC sockets are indispensable in electronics, offering flexibility, protection, and ease of use. Despite added cost and height, benefits often outweigh drawbacks, making them preferred in various applications.

Package Includes:

1 x IC Socket 2x12

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