551-10-085-13-042003 Allicdata Electronics
Allicdata Part #:

551-10-085-13-042003-ND

Manufacturer Part#:

551-10-085-13-042003

Price: $ 22.27
Product Category:

Connectors, Interconnects

Manufacturer: Mill-Max Manufacturing Corp.
Short Description: CONN HDR SOLDRTL
More Detail: N/A
DataSheet: 551-10-085-13-042003 datasheet551-10-085-13-042003 Datasheet/PDF
Quantity: 1000
50 +: $ 20.04060
Stock 1000Can Ship Immediately
$ 22.27
Specifications
Series: *
Part Status: Active
Description

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Sockets For ICs, Transistors

Sockets are an integral part of a circuit, connecting ICs, transistors and other components together for them to work as intended. There are many different types of sockets for these components, and each type has its own characteristics. Understanding the benefits and drawbacks of each type helps to determine which one is best for a particular application. In this article, we will discuss the 551-10-085-13-042003 application field and working principle of sockets for ICs, transistors, and other components.

Types of Sockets

Sockets can be broadly categorized according to the type of connection they provide, including single-sided or dual-sided connections, as well as the type of component they connect. Here are the different types of sockets which are commonly used for ICs, transistors and other components:
Dual-In-Line Sockets:
Dual-in-line sockets, also known as DIP sockets, are the most common type of socket for integrated circuits (ICs) and transistors. They are used to connect two ICs directly to each other, or to other components. These sockets feature two rows of pins, typically arranged in a single row on the bottom and a double row on the top. To connect a chip or transistor to a circuit, the chip or transistor is inserted into the socket with the correct pin arrangement.
Surface-Mount Sockets:
Surface-mount sockets are typically used for components that are too small or sensitive to be handled directly. These sockets attach to a printed circuit board’s surface with a soldering iron. They are often used for connecting chips, transistors, and other small components to a circuit.
PCB Sockets:
PCB sockets are typically used to connect through-hole components (e.g. transistors, diodes, relays, etc.) directly to the printed circuit board. These sockets use a mounting nut to secure the component in place, and are typically used in high-power applications.
Terminal Sockets:
Terminal sockets are designed for use in a wide range of applications, including relays, switches, and transistors. They offer superior mechanical strength when compared to PCB sockets, as well as higher current ratings. These sockets are typically found on circuit boards with power supplies.
Edge Card Connector Sockets:
Edge card connector sockets are designed to provide a connection between two printed circuit boards. They are commonly used in applications where the two boards need to be connected at right angles. These sockets feature a wide variety of connection types, such as single-row, double-row, and multi-row options.

551-10-085-13-042003 Application Field and Working Principle

The 551-10-085-13-042003 is a dual-in-line socket designed for power semiconductor components, suchas switch-mode power supplies (SMPS), and RF-elements. This socket features two rows of pins, with a total of 24. The socket has a 5.08 mm pin spacing, and an 18.8N nominal current rating.The 551-10-085-13-042003 socket is designed to provide a reliable connection between ICs and transistors, as well as other power semiconductor components. When a component is inserted into the socket, the pins make contact with the component’s leads, providing a reliable electrical connection. The socket is designed to minimize the chances of a bad connection, as well as providing a secure mechanical connection. The socket also prevents the component from being damaged due to vibration, or from overheating.The 551-10-085-13-042003 socket is ideal for applications where the component needs to be replaced regularly, such as a switch-mode power supply. The socket makes it easy to replace the component without having to frequent disconnect the power supply. The socket also ensures a reliable connection between the component and the circuit, reducing the chances of problems occurring due to a faulty connection. In conclusion, the 551-10-085-13-042003 socket is an ideal solution for connecting ICs, transistors and other power semiconductor components to a circuit. This socket is designed to provide a reliable and secure connection, while allowing for easy component replacement.

The specific data is subject to PDF, and the above content is for reference

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