AMP Terminals 5-963715-1

AMP Terminals 5-963715-1

Material:Copper
Plating Material:Tin (Sn)
Gender:Female
Part No.:5-963715-1

  • Product Introduction
Product Parameters
ProductAMP Terminals 5-963715-1
Part No.5-963715-1
MaterialCopper
Plating MaterialTin (Sn)
Sealable Yes
GenderFemale
Wire Size (AWG): 20 – 18/Wire Size (mm²): .5 – .75
SeriesMQS,Receptacle Tab
Termination MethodCrimp
Body OrientationStraight
Operating temperature-40℃-120℃
PackagingTape & Reel (TR)/Cut Tape (CT)
Dimension-
MountingCable Mount / Free Hanging


Features:

Material:Copper Nickel Plated

Installation Style:Cable Mount / Free Hanging

Sealed/Unsealed:Sealed

MOQ:We can accept small quantity if we have stock of AMP Terminals 5-963715-1.Small order will be allowed.

Packing Method:100/200/300/500/1000 per bag with label,export standard carton,or according to client’s requirements.

Sample:Free of charge.1 to 3 pieces for each item you require.

Service:OEM/ODM,customization as per clients requirements.

Market:35% North America,25% Europe,15% Asia,10% Mid East,15% other area.


Shipment:

For the small order,the goods will be arranged by the courier company,such as DHL,Fedex,UPS,TNT, or something else.We can help you to arrange the shipment,you also can call your forwarder agent to send out via your account.Will take short time to let you get the goods.If the goods is heavy and you do not need them urgently,the sea shipment will be welcomed.We are located in coastal city(Yueqing),it is very close to Ningbo or Shanghai(port of loading).


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Note:

Fig. 5 schematically depicts the cross-sectional structure of a mass-produced copper alloy with AMP Terminals 5-963715-1 tin plating made by Kobe Steel. The phrase "reflowed tin plating" denotes that heat is used after electrodeposition plating to remelt the electrodeposited tin. The term "reflow," as used in "reflowed tin plating," refers to remelting. Interdiffusion during remelting creates a layer of intermetallic compound made of tin and copper.

Fig. 4 At 180°C heating, the stress relaxation ratio changes (starting load: 0.2% yield strength80%).

Figure 5 shows a schematic illustration of a cross-section of copper alloys with tin plating.

Table 2 lists the typical mechanical and electrical conductivity characteristics of copper alloys for power lines between the Cu base and the Cu core.

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