| Attribute | Value |
|---|---|
| Product Category: | |
| Manufacturer: | Molex |
| Manufacturer Part Number: | Molex 212528-1601 |
| Series: | 212528 - Micro-Fit+ |
| Amperage: | 12.5 A |
| Housing Material: | Liquid Crystal Polymer |
| Number of Rows: | 2 |
| Contact Plating: | Gold |
| Pitch: | 3 mm |
| Voltage: | 600 V AC/DC |
| Orientation: | Right Angle |
| Number of Positions: | 16 |
| Housing Color: | Black |
| Termination Type: | Through Hole |
| Operating Temperature Range: | -40 - 105 °C |
| Circuit Application: | Power |
| Connector System: | Wire to Board |
| Product Name: | Micro-Fit+ |
| PCB Tail Length: | 3.18 mm |
| Part Aliases: | 2125281601 |
| SKU: | MOL212528-1601 |
212528-1601
| Heilind Number: | MOL212528-1601 |
| Manufacturer: | Molex |
| Manufacturer Number: | 212528-1601 |
| ECAD Model: |
Description:
Micro-Fit+ Right-Angle Header, 3.00mm Pitch, Dual Row, 16 Circuits, 0.38µm Gold (Au) Plating, UL 94V-0, Glow-Wire Capable, Black
More >>Specifications
Detailed Description
Enhance your power connectivity with our Micro-Fit+ Right-Angle Header. Featuring a 3.00mm pitch and dual-row design, this connector offers 16 circuits with 12.5A amperage capacity, ideal for high-performance applications. The 0.38µm Gold (Au) plating ensures reliable conductivity, while the UL 94V-0 and Glow-Wire Capable certifications guarantee safety and compliance. Crafted with Liquid Crystal Polymer housing in a sleek black finish, it's not only durable but also visually appealing. With a voltage rating of 600V AC/DC, it provides robust insulation for secure operations. The through-hole termination and PCB tail length of 3.18mm make it easy to install, while its wide operating temperature range of -40 to 105°C ensures versatility in various environments. Perfect for wire-to-board connections, this Micro-Fit+ header is a must-have component for your electronic projects. Rest assured, it's RoHS compliant, affirming our commitment to environmental responsibility. Elevate your PCB connectivity with this high-quality, performance-driven solution.

