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2.5mm Wafer Single Row Right Angle DIP H6.4mm

2.5mm Wafer Single Row Right Angle DIP H6.4mm

· Current Rating: 2A Max
· Insulation Resistance: 1000MΩ Min
· Dielectric Withstanding: 1000V AC
· Contact Resistance: 20mΩ Max
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Product Introduction

Applications

· Power systems

· Audio

· Video

· Home appliances

· Servo drives

· Industrial controls

· LED Screen

Specifications

· Current Rating: 2A Max

· Insulation Resistance: 1000MΩ Min

· Dielectric Withstanding: 1000V AC

· Contact Resistance: 20mΩ Max

· Operating Temperature: -25°C - +85°C

Materials

· Plating: Tin--Standard

· 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

 

product-1093-769

 

product-1085-768

 

Features

 

  • Reduce the time and effort required for installation.
  • Offer a secure and reliable connection between components.
  • Provide flexibility in terms of connectivity options.
  • Available in various sizes and shapes to accommodate different connection requirements.

 

Advantages

 

  • Improved resistance to wear
  • Improved system efficiency
  • Offers protection against voltage spikes
  • Provides flexible options for connecting different types of devices

 

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 equivalent jst connector 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 equivalent jst connector, 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

 

2

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Our Certificate

 

1

 

Q&A

 

What are the key electrical parameters to consider while selecting a board-to-board connector?

When selecting a board-to-board connector, there are several key electrical parameters to consider. These parameters will vary depending on the specific application requirements, but some common ones include:
1)Contact Resistance
2)Insertion Loss
3)Return Loss
4)Crosstalk
5)Current Rating
6)Voltage Rating
7)Frequency Response

 

Do you have any patents or proprietary technology for your products?

Our products have achieved 15 patents.

 

How does the choice of materials impact the performance of board-to-board connectors?

1,Electrical Properties: The choice of materials can impact the electrical properties of the connector, including contact resistance, insertion loss, and crosstalk. Materials with low electrical resistivity and good conductivity, such as copper or gold, can provide good electrical performance. However, if the materials have a high dielectric constant, it can lead to signal degradation due to signal reflections or electromagnetic interference.

2,Mechanical Properties: The choice of materials can also impact the mechanical properties of the connector, including strength, stiffness, and durability. Materials with good mechanical properties, such as high strength, low coefficient of thermal expansion, and resistance to wear and corrosion, can increase the connector's reliability and lifespan.

3,Thermal Properties: The choice of materials can impact the thermal properties of the connector, including thermal conductivity and coefficient of thermal expansion. Connectors made of materials with high thermal conductivity, such as copper, can dissipate heat more efficiently, reducing the risk of overheating and damage to the connector.

4,Cost: The cost of materials can impact the overall cost of the connector. High-performance materials, such as gold or ceramics, can be more expensive than standard materials such as copper alloys or plastics.

In summary, the choice of materials in board-to-board connectors is an important consideration, and different materials may be selected based on the specific requirements of the application. The material selection should take into account the electrical, mechanical, and thermal properties of the connector, as well as its cost, to ensure optimal performance and reliability.

 

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