28-0508-20 Allicdata Electronics
Allicdata Part #:

28-0508-20-ND

Manufacturer Part#:

28-0508-20

Price: $ 6.71
Product Category:

Connectors, Interconnects

Manufacturer: Aries Electronics
Short Description: CONN SOCKET SIP 28POS GOLD
More Detail: N/A
DataSheet: 28-0508-20 datasheet28-0508-20 Datasheet/PDF
Quantity: 1000
11 +: $ 6.09897
Stock 1000Can Ship Immediately
$ 6.71
Specifications
Termination: Wire Wrap
Contact Resistance: --
Current Rating: 3A
Material Flammability Rating: UL94 V-0
Termination Post Length: 0.360" (9.14mm)
Operating Temperature: -55°C ~ 105°C
Housing Material: Polyamide (PA46), Nylon 4/6
Contact Material - Post: Brass
Contact Finish Thickness - Post: 200.0µin (5.08µm)
Contact Finish - Post: Tin
Pitch - Post: --
Series: 508
Features: --
Mounting Type: Through Hole
Contact Material - Mating: Beryllium Copper
Contact Finish Thickness - Mating: 10.0µin (0.25µm)
Contact Finish - Mating: Gold
Pitch - Mating: 0.100" (2.54mm)
Number of Positions or Pins (Grid): 28 (1 x 28)
Type: SIP
Part Status: Active
Packaging: Bulk 
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

Sockets for ICs, transistors, and other components serve an important purpose in most modern electronics. They allow for easy installation and removal of components without damaging the board or other components connected to the circuit. In this article we will explore the different types of sockets available and their applications in the field of electronics. We will also discuss the working principle of each type of socket.

Integrated Circuits (ICs) are a type of semiconductor device that can contain hundreds or even thousands of individual components. They are used in the electronics industry to reduce the size of components that would otherwise take up a large amount of space. The sockets used for ICs are designed specifically to fit the specific ICs and are often composed of multiple pins which are then connected to the circuit board. These sockets are used to make it easier to install and remove ICs as needed.

Transistors, which are also semiconductor devices used in the electronics industry, are much smaller than ICs and are usually composed of three or more pins. The sockets for transistors are often designed differently than those for ICs. Instead of having multiple pins, these sockets typically have a single contact point for the transistor to be installed on. This contact point is then connected to the circuit board.

The working principle of sockets for ICs and transistors is the same. When a component is installed in its socket, the pins or contact points make contact with the board’s circuits. Since the circuit board is electrically connected, electricity is able to flow through the component and its pins, allowing them to function correctly. When the component is removed, the contact points break and the electricity is no longer able to flow through the component.

Sockets for ICs and transistors are used in a variety of applications ranging from consumer electronics to scientific applications. In consumer electronics, they are used to allow for easier removal of components from devices such as computers, televisions, and cell phones. In scientific applications they are often used to study how electricity interacts with semiconductor devices.

Sockets for ICs and transistors are also used in industrial applications. These applications involve the installation of components that require precise control of electricity for automation processes. They are often used in machines that make use of robotics, where the ICs and transistors need to be replaced quickly and correctly. This use requires the installation of specific types of sockets in order for the machine to function correctly.

Sockets for ICs and transistors come in a variety of shapes and sizes that correspond to the different components that are required for the specific application. A common example is the DIP (Dual In-line Package) socket, which is designed to accommodate transistors. The socket is shaped like an elongated triangle with two rows of pins that are connected onto the circuit board.

In addition to DIP sockets, there are also sockets designed for specific components like resistor, capacitors, and inductors. These sockets are typically designed to be slightly larger than the components so that they can securely be placed and removed from the board. Each socket will vary slightly depending on the type of component and its working principle.

The materials used to make sockets for ICs and transistors are typically very durable, such as brass or stainless steel. These materials are chosen to ensure that the sockets can withstand a wide range of temperatures and conditions. In addition, the pins or contact points are usually made of a metal that is corrosion resistant and has excellent electrical conducting properties.

In conclusion, sockets for ICs, transistors, and other components are an important component in the field of electronics. They allow for easy installation and removal of components from a circuit board without damaging the board or other components. They are also used in a variety of applications, from consumer electronics to scientific studies. The working principle of each type of socket is the same; when a component is installed in its socket, the pins or contact points make contact with the board’s circuits, allowing electricity to flow through the component and its pins. Knowing the different types of sockets available, their applications, and the materials used to create them is essential for anyone involved in the electronics industry.

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

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