206832-1001

Heilind Number:MOL206832-1001
Manufacturer:Molex
Manufacturer Number:206832-1001
Datasheet:Drawing
ECAD Model:
3D Model

Description:

MICRO-FIT PLUS VERT HDR ASSY X5 TIN LU

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Specifications

AttributeValue
Product Category:
Manufacturer:Molex
Manufacturer Part Number:Molex 206832-1001
Color:Black
Series:206832 - Micro-Fit+
Amperage:12.5 A
Connector Type:Micro-Fit+
Number of Contacts:10
Number of Rows:2
Termination Method:Through Hole
Contact Material:High Copper Alloy
Pitch:3 mm
Voltage:600 V AC/DC
Material:Liquid Crystal Polymer
Orientation:Vertical
Keying:No
Tail Length:3.18 mm
Packaging:Tray
Operating Temperature Range:-40 - 105 °C
Contact Mating Area Plating:Tin
Number of Contacts Loaded:10
Mating Cycles:25
Polarized to PCB:Yes
Polarized to Mate:Yes
Connector System:Wire to Board
Contact Termination Plating:Tin
Glow Wire Capable:Yes
Lock to Mating Part:Yes
Breakaway:No
Shroud Type:Yes
Product Name:Micro-Fit+
Part Aliases:2068321001
SKU:MOL206832-1001

Detailed Description

Elevate your connectivity with the Micro-Fit Plus Vertical Header Assembly. This essential component, featuring a sleek black design, is part of the innovative Micro-Fit+ series, known for its high performance. With 10 contacts arranged in 2 rows, it offers reliable power delivery with an amperage of 12.5A and a voltage rating of 600V AC/DC. Constructed with durable materials like Liquid Crystal Polymer and High Copper Alloy, it ensures longevity even in harsh conditions, operating seamlessly in temperatures ranging from -40 to 105°C. Its through-hole termination method guarantees secure attachment to your PCB, while its tin contact plating and glow wire capability enhance conductivity and safety. The vertical orientation, polarized to both the PCB and mating part, ensures proper alignment, and its shrouded design adds an extra layer of protection. Ideal for wire-to-board connections, this assembly is RoHS compliant, making it a sustainable choice for your electronic projects. Upgrade to the Micro-Fit Plus for a seamless and efficient connectivity solution.