324-43-164-41-002000 Allicdata Electronics
Allicdata Part #:

324-43-164-41-002000-ND

Manufacturer Part#:

324-43-164-41-002000

Price: $ 15.72
Product Category:

Connectors, Interconnects

Manufacturer: Mill-Max Manufacturing Corp.
Short Description: CONN SKT SNG
More Detail: 64 Position Receptacle Connector Through Hole
DataSheet: 324-43-164-41-002000 datasheet324-43-164-41-002000 Datasheet/PDF
Quantity: 1000
51 +: $ 14.14670
Stock 1000Can Ship Immediately
$ 15.72
Specifications
Insulation Color: Black
Contact Finish Thickness - Post: 200.0µin (5.08µm)
Contact Material: Beryllium Copper
Contact Shape: Circular
Insulation Material: Polycyclohexylenedimethylene Terephthalate (PCT), Polyester
Applications: --
Voltage Rating: --
Current Rating: 3A
Features: --
Ingress Protection: --
Mated Stacking Heights: --
Contact Finish - Post: Tin
Material Flammability Rating: --
Operating Temperature: -55°C ~ 125°C
Contact Length - Post: 0.630" (16.00mm)
Insulation Height: 0.110" (2.79mm)
Series: 324
Contact Finish Thickness - Mating: 30.0µin (0.76µm)
Contact Finish - Mating: Gold
Fastening Type: Push-Pull
Termination: Wire Wrap
Mounting Type: Through Hole
Row Spacing - Mating: --
Number of Rows: 1
Pitch - Mating: 0.100" (2.54mm)
Number of Positions Loaded: All
Number of Positions: 64
Style: Board to Board
Contact Type: Female Socket
Connector Type: Receptacle
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, are an important component used to electronically connect an integrated circuit (IC) to a device such as a printed circuit board (PCB). These sockets are designed to fit the specific electrical requirements of each circuit component. The electrical connection between an IC and a socket is performed by a set of pins, which come together to form a single structured interface. The socket is typically constructed of plastic material, which may include a resilient inner layer of insulation to provide protection and reduce EMI, or electrical noise. These sockets are commonly used in multiple applications across multiple industries due to their ability to successfully route power and signal with minimum losses.

When selecting the appropriate socket for an application, careful consideration of the voltage, current, and the package pins is essential. Sockets for ICs, Transistors, come in a variety of shapes and sizes, from commonly used models such as PLCCs, SSOPs, and PDIPs to more specialized forms like PQFPs, UFQFPs, and LQFPs. Each package can provide advantages for particular applications. For instance, the QFP package type provides extremely high pins-per-component density and is used in many applications where board space is at a premium.

The working principle of sockets for ICs, Transistors, is a fairly simple concept. When an IC is placed into the socket, a connection is made between the socket\'s pins and the IC\'s pins. This connection allows for the electrical current to be conducted between the IC and the PCB. The power and signal pins are then routed to the appropriate area on the PCB for transferring the electrical signal or power. Additionally, the socket provides a barrier between the ground connection on the PCB and the IC itself, ensuring that the IC is not affected by electrical noise that might be found in the PCB.

The use of properly designed and tested sockets for ICs, Transistors, is essential for the successful operation of many electronics applications. When used in conjunction with a PCB, these sockets are a reliable way to electrically connect ICs to the board and ensure quality electrical performance. Additionally, these sockets provide EMI protection and offer resistance to vibration, moisture, and other environmental factors.

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

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