Ampseal Series Connector 282080-1
Original Number:282080-1
Material:Polybutylene Terephthalate (PBT)
Number of Positions:2 Positions
Gender:Female
- Product Introduction
Product Parameters
| Product | Ampseal Series Connector 282080-1 |
| Original Number | 282080-1 |
| Material | Polybutylene Terephthalate (PBT) |
| Color | Black |
| Gender | Female |
| Max Operating Temperature | + 125 ℃ |
| Min Operating Temperature | - 40 ℃ |
| Number of Positions | 2 Positions |
| Pitch | 6 mm |
| Series | Superseal 1.5 |
| Termination Style | Crimp |
| Sealed/Unsealed | Sealed |
| Package | 100 PCS per bag with label,export standard carton. |

Material:Housing:PBT, Terminal:Copper,Seal:Silicone Rubber
Installation Style:Wire to Wire
Sealed/Unsealed:Sealed
MOQ:We can accept small quantity if we have stock of Ampseal Series Connector 282080-1.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.


Q:Are you a manufacturer or trading company?
A:We are a manufacturer with professional R&D team,and providing OEM/ODM services.
Q:What is your sample policy?
A:We can supply the sample if we have ready parts in stock.
Q:Do you have a price list contains all products?
A:We only have the price list of main products for your reference.
Q:What’s our MOQ?
A:We can accept small order for try.
Q:What is your payment terms?
A:T/T,PAYPAL,CASH,RMB,ETC.
Note of Ampseal Series Connector 282080-1:
The discontinuous change in arc energy produced by intentional or accidental unplugging during the conversion of a grid system voltage from 14 to 42 volts DC. This requires improvements to the electrical disconnection and connection equipment. For the connector, the result is the added ability to withstand arcing during live disconnection on top of the basic characteristics of high conduction and low insertion effort. To quantify this new capability and the associated level of arc damage, the authors propose to correlate the insertion criterion "insertion force" with the parameters "arc energy" and current levels. In contrast to our previous work, the introduction of current parameters allows us to attribute the cause of connector damage to overheating of contacts due to the heat conduction mechanism provided by the arc. As an intermediate result, the effect of opening speed and contact coating on arc energy increase is confirmed. The results are helpful to characterize and select arc-resistant interconnect solutions for high-power Ampseal Series Connector 282080-1.
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