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2.54mm Female Header Tripple Row Right Angle DIP Y Type

2.54mm Female Header Tripple Row Right Angle DIP Y Type

· Current Rating: 3A Max
· Insulation Resistance: 1000MΩ Min
· Dielectric Withstanding: 600V AC
· Contact Resistance: 20mΩ Max
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Product Introduction

Applications

· Stereo Amplifier

· Audio

· Video

· Industrial controls

· Robotics

· Security equipment

· Power systems

· Communication networks

Specifications

· Current Rating: 3A Max

· Insulation Resistance: 1000MΩ Min

· Dielectric Withstanding: 600V AC

· Contact Resistance: 20mΩ Max

· Operating Temperature: -40°C - +105°C

· Solderability: Reflow capable up to 260°C

Materials

· Plating: Gold flash(0.8”) Standard

Higher gold available

Tin

· Contact Material: Cooper Alloy

· Housing Material: High-temperature Thermoplastic

· Environmental: UL94 V0

Others

· 2D drawing

· Contact CNT to get 3D file

· RoHS & REACH compliant

· UL compliant

 

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Features

 

● Help to make smaller finished product come ture
● Simplify the assembly process of electronic products
● High performance contact design
● High reliable board interconnecting

 

Advantages

 

● Perfect quality control from materials to finished products.
● Traceability of Order and raw material
● Low cost and high reliability
● Integrated production and assembly pocess can save your time to market and increase your profit.

 

Kunshan Connector Electronics Ltd.(CNT) has been devoted to the production and sale of electronic connectors for 16 years, adhering to the belief of quality first and customer first. CNT is a reliable manufacturer in 0.1 female header connectors with high quality and best price. We focus on providing high value products to our customers including male header, female header, box header, wafer, FPC, RJ and wiring harness. Any demand in 0.1 female header connectors, welcome you to contact us. Just call or send email to us to get professional support, believe that CNT will be your best business partner!

 

Packaging and Shipping

 

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7

 

Inspection Equipment

 

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Our Certificate

 

1

 

Q&A

 

What is the impact of connector plating thickness on performance and reliability?

1)Contact resistance: Plating thickness can affect the electrical resistance of the connector. Thicker plating typically results in lower contact resistance, which improves the electrical performance of the connector. Conversely, thinner plating can result in higher contact resistance, which can cause signal attenuation, noise, or other electrical issues.

2)Wear resistance: The thickness of the plating can also affect the wear resistance of the connector. Thicker plating provides more material to resist wear and tear from repeated mating and unmating cycles. This can improve the durability and longevity of the connector.

3)Corrosion resistance: Plating thickness can also affect the corrosion resistance of the connector. Thicker plating provides more material to protect the underlying substrate from corrosion, which can improve the reliability and performance of the connector in harsh environments.

However, it is important to note that increasing plating thickness is not always the best approach to improving connector performance and reliability. In fact, excessively thick plating can cause several issues, including:

1)Ductility: Thick plating can reduce the ductility of the connector, making it more prone to cracking and other mechanical failure modes.

2)Adhesion: Thick plating can also reduce the adhesion of the plating to the substrate, which can cause the plating to flake off or peel over time.

3)Cost: Increasing the plating thickness can increase the cost of the connector, which may not be necessary or practical for all applications.

In summary, the plating thickness of board-to-board connectors can have a significant impact on their performance and reliability, affecting properties such as contact resistance, wear resistance, and corrosion resistance. However, it is important to strike a balance between plating thickness and other factors such as ductility, adhesion, and cost, to ensure optimal performance and reliability for the specific application.

 

What are the advantages of using board-to-board connectors?

1)Ease of assembly
2)Design flexibility
3)Easy maintenance and repair:
4)High reliability
5)Signal integrity
6)Increased density
7)Interchangeability

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