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2.54mm Female Header Double Row SMT U Type

2.54mm Female Header Double Row SMT U 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

· Video

· LED Screen

· Smart Meters & Terminals

· PCBA

· 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

 

product-1098-783

 

Features


● Improved resistance to moisture
● Wide range of sizes and styles
● Secure connection between components
● Facilitates easy maintenance and repair

 

Advantages


● Perfect quality control from materials to finished products.
● Skilled and stable staff
● Good before-sales and after-sales service
● Both small and large orders are acceptable

 

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 female PCB 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 female PCB 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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Inspection Equipment

 

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Our Certificate

 

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Q&A

 

What is the impact of connector spacing and stacking height on performance?

Connector spacing and stacking height can have a significant impact on the performance of electronic systems.

Connector spacing refers to the distance between adjacent connectors, while stacking height refers to the height of stacked connectors when they are connected together. Both of these factors can affect the electrical and mechanical properties of the connector system.

In terms of electrical performance, connector spacing can affect signal integrity by causing crosstalk or interference between adjacent signal lines. When connectors are placed too closely together, the electrical fields of the signal lines can couple with each other, leading to signal distortion or attenuation. Similarly, stacking height can also affect signal integrity by introducing additional impedance or capacitance into the signal path.

Mechanically, connector spacing and stacking height can affect the robustness and reliability of the connector system. When connectors are placed too closely together or stacked too high, it can make it difficult to access or repair individual components, and can increase the risk of damage during maintenance or repair. On the other hand, wider connector spacing and lower stacking height can improve accessibility and reduce the risk of damage.

 

What are the different types of locking mechanisms for board-to-board connectors?

There are several types of locking mechanisms for board-to-board connectors. Here are some of the most common ones:
1)Latch lock: This type of lock uses a latch that snaps into place when the connector is plugged in, securing the connection.
2)Screw lock: This type of lock uses a screw or a set of screws that are tightened to secure the connector in place.
3)Push-pull lock: This type of lock uses a mechanism that requires a button or lever to be pushed or pulled to secure or release the connector.
4)Friction lock: This type of lock uses a mechanism that relies on friction to secure the connector in place.
5)Bayonet lock: This type of lock uses a mechanism that requires the connector to be twisted into place, securing it.
6)Snap lock: This type of lock uses a mechanism that snaps the connector into place, similar to a latch lock.
7)Threaded lock: This type of lock uses a threaded mechanism to secure the connector in place.

Each type of lock has its own advantages and disadvantages, and the choice of locking mechanism will depend on the specific requirements of the application.

 

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