110-99-652-41-001000 Allicdata Electronics
Allicdata Part #:

11099-65241001000-ND

Manufacturer Part#:

110-99-652-41-001000

Price: $ 9.21
Product Category:

Connectors, Interconnects

Manufacturer: Mill-Max Manufacturing Corp.
Short Description: CONN IC DIP SOCKET 52POS TINLEAD
More Detail: N/A
DataSheet: 110-99-652-41-001000 datasheet110-99-652-41-001000 Datasheet/PDF
Quantity: 1000
56 +: $ 8.36997
Stock 1000Can Ship Immediately
$ 9.21
Specifications
Termination: Solder
Contact Resistance: --
Current Rating: 3A
Material Flammability Rating: --
Termination Post Length: 0.125" (3.18mm)
Operating Temperature: -55°C ~ 125°C
Housing Material: Polycyclohexylenedimethylene Terephthalate (PCT), Polyester
Contact Material - Post: Brass Alloy
Contact Finish Thickness - Post: 200.0µin (5.08µm)
Contact Finish - Post: Tin-Lead
Pitch - Post: 0.100" (2.54mm)
Series: 110
Features: Open Frame
Mounting Type: Through Hole
Contact Material - Mating: Beryllium Copper
Contact Finish Thickness - Mating: 200.0µin (5.08µm)
Contact Finish - Mating: Tin-Lead
Pitch - Mating: 0.100" (2.54mm)
Number of Positions or Pins (Grid): 52 (2 x 26)
Type: DIP, 0.6" (15.24mm) Row Spacing
Part Status: Active
Packaging: Tube 
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 integrated circuits (ICs), transistors, and other electrical components are ubiquitous in modern electronic applications. They facilitate quick and efficient connection and exchange of electrical signals using their simple but reliable structure and connections. Socketing an IC or transistor enables it to be easily connected to other components, while allowing for easier repair and replacement should any component malfunction.

Sockets provide a secure and reliable way to make and maintain electrical connections between components and to other components such as printed circuit boards (PCBs). They consist of a complete circuit that includes power, ground, and signal lines all connected to a common point. The socket is typically designed to accept the component that will be plugged into it. The sockets have a standard set of pins that must be connected to the actual component in order for it to make the desired connection.

Once an IC or transistor is plugged into its socket, its connection to other components is established. The connection is completely insulated and isolated from other connection points to ensure that electrical signals are properly transmitted between components. In some cases, the components may need to be powered up for the connection to be established.

The design of the socket ensures that the component makes a safe and reliable connection to other components. This is achieved by the physical contact between the pins of the socket and the component. This provides an electrical connection that is more robust and reliable than other connection methods, such as soldering, and prevents dangerous short circuits from occurring. The sockets also help reduce EMI (electromagnetic interference) between components.

Sockets for ICs, transistors, and other electrical components are not limited to only powering and controlling electrical signals. They can also provide protection for components from EMI, abnormal voltages, and other environmental dangers. This is done by implanting specific resistors, capacitors, and other protective components into the sockets, which absorb some of the unwanted energy in order to protect the component.

Sockets for ICs and transistors are designed to offer reliable connection points while providing superior protection from short circuits and EMI. The simple design and construction of these sockets make them easy to use, install, and maintain. As a result, they are widely used in a variety of applications, from consumer electronics to industrial applications where reliable connections are critical.

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

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