TE Connectivity Female Crimp Circular Connector Contact, Wire Size 24 → 20 AWG

Technical documents
Specifications
Brand
TE ConnectivityGender
Female
Wire Size
24 → 20 AWG
Termination Method
Crimp
Series
Type III+
For Use With
Type III + Series Connectors
Contact Plating
Tin
Product details
TE Connectivity Uninsulated Signal Contacts - Multimate Series II and III+
Multimate Series II and III+ uninsulated signal Contacts for use with rectangular M series and CPC connectors.
TE Connectivity Multimate Contacts
Multimate signal contacts feature a high normal force which provides a low resistance in critical applications such as dry circuit signal conditions. Mating entry is closed-ended to prevent damage from stubbing due to misalignment. Stainless steel spring provides superior normal force and retention in the housing
₪ 331.50
₪ 6.63 Each (In a Pack of 50) (ex VAT)
₪ 387.86
₪ 7.757 Each (In a Pack of 50) (inc. VAT)
50
₪ 331.50
₪ 6.63 Each (In a Pack of 50) (ex VAT)
₪ 387.86
₪ 7.757 Each (In a Pack of 50) (inc. VAT)
Stock information temporarily unavailable.
50
Stock information temporarily unavailable.
| quantity | Unit price | Per Pack |
|---|---|---|
| 50 - 450 | ₪ 6.63 | ₪ 331.50 |
| 500 - 1200 | ₪ 5.91 | ₪ 295.50 |
| 1250 - 2450 | ₪ 5.31 | ₪ 265.50 |
| 2500 - 7450 | ₪ 4.80 | ₪ 240.00 |
| 7500+ | ₪ 4.455 | ₪ 222.75 |
Technical documents
Specifications
Brand
TE ConnectivityGender
Female
Wire Size
24 → 20 AWG
Termination Method
Crimp
Series
Type III+
For Use With
Type III + Series Connectors
Contact Plating
Tin
Product details
TE Connectivity Uninsulated Signal Contacts - Multimate Series II and III+
Multimate Series II and III+ uninsulated signal Contacts for use with rectangular M series and CPC connectors.
TE Connectivity Multimate Contacts
Multimate signal contacts feature a high normal force which provides a low resistance in critical applications such as dry circuit signal conditions. Mating entry is closed-ended to prevent damage from stubbing due to misalignment. Stainless steel spring provides superior normal force and retention in the housing

