Technical Document
Specifications
Brand
TE ConnectivityGender
Female
Contact Size
16
Wire Size
24 → 20 AWG
Termination Method
Crimp
Series
Type III+
For Use With
CPC Connectors, G Series Connectors, M Series Connectors
Current Rating
13A
Length
20.96mm
Contact Plating
Gold
Contact Material
Brass
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
Stock information temporarily unavailable.
34.30 MOP
6.863 MOP Each (Supplied in a Bag) (ex VAT)
Production pack (Bag)
5
34.30 MOP
6.863 MOP Each (Supplied in a Bag) (ex VAT)
Stock information temporarily unavailable.
Production pack (Bag)
5
| quantity | Unit price | Per Bag |
|---|---|---|
| 5 - 245 | 6.863 MOP | 34.32 MOP |
| 250 - 495 | 6.698 MOP | 33.49 MOP |
| 500+ | 6.575 MOP | 32.87 MOP |
Technical Document
Specifications
Brand
TE ConnectivityGender
Female
Contact Size
16
Wire Size
24 → 20 AWG
Termination Method
Crimp
Series
Type III+
For Use With
CPC Connectors, G Series Connectors, M Series Connectors
Current Rating
13A
Length
20.96mm
Contact Plating
Gold
Contact Material
Brass
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


