04-0501-20 Allicdata Electronics
Allicdata Part #:

04-0501-20-ND

Manufacturer Part#:

04-0501-20

Price: $ 2.65
Product Category:

Connectors, Interconnects

Manufacturer: Aries Electronics
Short Description: CONN SOCKET SIP 4POS TIN
More Detail: N/A
DataSheet: 04-0501-20 datasheet04-0501-20 Datasheet/PDF
Quantity: 1000
30 +: $ 2.38140
Stock 1000Can Ship Immediately
$ 2.65
Specifications
Series: 501
Packaging: Bulk 
Part Status: Active
Type: SIP
Number of Positions or Pins (Grid): 4 (1 x 4)
Pitch - Mating: 0.100" (2.54mm)
Contact Finish - Mating: Tin
Contact Finish Thickness - Mating: 200.0µin (5.08µm)
Contact Material - Mating: Phosphor Bronze
Mounting Type: Through Hole
Features: --
Termination: Wire Wrap
Pitch - Post: 0.100" (2.54mm)
Contact Finish - Post: Tin
Contact Finish Thickness - Post: 200.0µin (5.08µm)
Contact Material - Post: Phosphor Bronze
Housing Material: Polyamide (PA46), Nylon 4/6, Glass Filled
Operating Temperature: -55°C ~ 105°C
Termination Post Length: 0.420" (10.67mm)
Material Flammability Rating: UL94 V-0
Current Rating: 1A
Contact Resistance: --
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 electronic components are used for a variety of applications in multiple technology areas. These sockets are designed to be reliable and secure when attached to the component in question, while allowing high-speed performance and low-cost implementation. In this article, we’ll provide an overview of how the socket works and discuss its various application fields and working principles.

Overview

Sockets for ICs, transistors, and other electronic components are utilized in many applications within fields such as automotive, industrial, communication, broadcast, consumer, and networking. These sockets are designed to ensure reliable and secure electrical connections between component and its equipment. These sockets are also manufactured for a variety of performance requirements, including high speed, signal integrity, reliability, and cost savings. The sockets come in different form factors, such as PCI, DIP, TSOP, SIP, SOIC, AMP, QFP, SSO, and BGA, which accommodate a wide range of component sizes and pin numbers.

Application Field

Sockets for ICs and transistors are used in a variety of electronic products, such as computers, laptops, and mobile phones. For example, laptop manufacturers may use sockets for ICs and transistors to varying degree of difficulty, depending on the chip and board design. For instance, a laptop may have a socket for the power electronics, such as the processor, chipset, and graphics card. In addition, sockets are often used in consumer electronics, such as cameras, TVs, and audio systems, to ensure the secure electrical connections between the component and its equipment.

Sockets can also be used in automotive and industrial applications. This includes applications such as communication systems, power control systems, and servo-motor control systems. Automotive electronics often require a high level of durability and reliability, so the sockets used for ICs and transistors must be able to withstand a certain range of environmental conditions such as vibration, temperature, humidity, and corrosive gases. On the other hand, sockets for industrial applications need to be able to provide reliable connection even under harsh conditions, such as extreme temperatures and shock.

Working Principle

The working principle of a socket for ICs and transistors is relatively simple. In short, a socket acts as an electrical connector between two devices. One end of the socket is connected to a component, such as an IC or a transistor, and the other end is connected to the device, such as a motherboard. The socket allows a certain level of electrical contact between the two, and this is what makes it possible for the component and device to communicate and power the component.

When the socket is connected to the component and device, it creates a path for electricity to flow. This electricity flows through the socket, and then through the component and device. This is what allows the component and device to exchange data signals and also power the component. This path is made possible by the connection between the socket contacts, which are usually made of metal or some other conductive material.

The contacts of the socket are what help to ensure that a secure and reliable connection can be made. They are specifically designed to reduce noise and avoid any signal interfering or degradation. The contacts are also designed to be able to withstand the various environmental conditions and physical stresses that may be found in different applications.

In addition, sockets for ICs and transistors can also be used as a kind of safety measure to protect the component in question, as there is no direct contact between the chip and its equipment. This ensures that the component is not damaged by any stray voltages or currents, and it also helps to reduce the risk of any shock or injury caused by an electrical connection failure.

Conclusion

Sockets for ICs and transistors act as an essential component in many electronic systems. They are utilized across a variety of applications and are designed to provide reliable and secure connections while providing high speed performance and cost savings. Sockets have specific design features that ensure they are durable and reliable, and this makes them suitable for many different applications. Knowing the basics of how these sockets work and the different application fields and working principles can help provide insight into how these components are utilized and how they can be effectively applied to different applications.

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

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