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Inventory Status
In-stock

10-32 Brass mold-in threaded inserts manufactured with a length of 0.375 Inch and an 0.266 Inch outside diameter.

Unit System
View Spec Sheet
Specs (in standard)
Label Value
A 0.266 in
B 0.375 in
Brand RAF
D 6.75 in
Display Name 1032X375MC
Finish None
Material Brass
SKU 1032X375MC
Series MC
Thread Size 10-32
Specs (in metric)
Label Value
A 6.76 mm
B 9.53 mm
Brand RAF
D 171.45 mm
Display Name 1032X375MC
Finish None
Material Brass
SKU 1032X375MC
Series MC
Thread Size 10-32
Introducing the 1032X375MC Mold-in Closed Threaded Inserts, a versatile and reliable solution for securely fastening components in various applications. Constructed from high-quality brass, these inserts offer excellent durability and corrosion resistance, ideal for demanding environments.

Measuring at 0.375 inches in length and designed to fit a 1032 thread size, these inserts provide a robust anchoring point within materials such as plastic or composite substrates. The mold-in closed design ensures a tight and secure fit during installation, preventing rotation or loosening over time.

The brass material not only provides exceptional strength but also offers good electrical conductivity, making these inserts suitable for applications requiring grounding or electrical connectivity. The absence of a finish on the inserts further enhances their conductivity and compatibility with a wide range of finishes or coatings.

Whether used in electronics, automotive, or industrial equipment, the 1032X375MC inserts deliver reliable performance, ensuring a lasting and stable connection between components. Their compact dimensions allow for installation in tight spaces, making them versatile for various design requirements.

In conclusion, the 1032X375MC Mold-in Closed Threaded Inserts in brass combine durability, conductivity, and secure anchoring capabilities, making them a valuable component in engineering and manufacturing projects where reliable fastening is crucial. Trust in these inserts to provide robust support and lasting performance in your next application.