10-18-1035

Heilind Number:MOL10-18-1035
Manufacturer:Molex
Manufacturer Number:10-18-1035
Datasheet:3DDrawing
ECAD Model:
3D Model

Description:

2.36mm Diameter Standard .093 Pin and Socket Header, Shrouded, 3 Circuits, 2 Male Terminals, 1 Female Terminal

More >>

Specifications

AttributeValue
Product Category:
Manufacturer:Molex
Manufacturer Part Number:Molex 10-18-1035
Color:Black
Series:3099 - Standard .093"
Amperage:5 A
Connector Type:Standard .093"
Number of Contacts:3
Number of Rows:1
Termination Method:Through Hole
Contact Material:Phosphor Bronze
Body Orientation:Straight
Pitch:5.03 mm
Voltage:250 V
Material:Polyester
Orientation:Vertical
Tail Length:4.32 mm
Packaging:Bag
Operating Temperature Range:-40 - 105 °C
Contact Mating Area Plating:Tin
Contact Mating Area Plating Thickness:1.27 µm
Number of Contacts Loaded:3
Mating Cycles:25
PCB Locator:Yes
PCB Retention:Without
Polarized to PCB:Yes
Contact Termination Plating Thickness:1.27 µm
PCB Thickness (Recommended):1.6 mm
Connector System:Wire to Board
CSA Agency Certification:LR19980
UL Agency Certification:E29179
Contact Termination Plating:Tin
Glow Wire Capable:No
Lock to Mating Part:Yes
Stackable:No
Surface Mount Compatible:No
Breakaway:No
Shroud Type:Fully
Material Flammability Standard:94V-2
Part Aliases:0010181035
SKU:MOL10-18-1035

Detailed Description

Enhance connectivity in your projects with our Straight Black Pin Header, a vital component in our Standard .093" series. Designed for through-hole termination, this header features a single row of three contacts, each capable of handling up to 5A at 250V. Constructed with durable polyester and phosphor bronze materials, it ensures reliable performance in a wide operating temperature range (-40 to 105 °C). With a pitch of 5.03mm and a vertical orientation, it offers versatility in PCB assembly. Fully compliant with RoHS standards, this header guarantees both quality and environmental responsibility. Perfect for wire-to-board connections, it's essential for any electronic setup requiring secure and efficient power distribution.