MAJESTRONICZ
30mm Metal Spacer Female Female Hex Standoff – Double Side Threaded PCB Mounting Spacer
30mm Metal Spacer Female Female Hex Standoff – Double Side Threaded PCB Mounting Spacer
Couldn't load pickup availability
📦 For Bulk Order Enquiry – Click Here for Best Price
This 30mm metal spacer is a female-female hex standoff used for PCB mounting, circuit board spacing, electronics projects, control boards, Raspberry Pi boards, Arduino-compatible boards, sensor modules and DIY project enclosures.
Both sides of this spacer have female threaded holes, so screws can be fixed from both ends. It is useful when you need to create a strong and neat gap between two boards, between a PCB and enclosure, or between a module and base plate.
The metal body provides good strength, and the hexagonal shape makes it easier to hold while tightening. This spacer is suitable for electronics projects, robotics, prototype boards, 3D printer parts, electrical panels, project boxes and repair work.
Specifications
| Specification | Details |
|---|---|
| Product Name | 30mm Metal Spacer |
| Product Type | Female Female Hex Spacer / Standoff |
| Spacer Length | 30mm |
| Body Material | Metal |
| Body Shape | Hexagonal |
| Thread Type | Female thread on both sides |
| Mounting Type | Screw mounting |
| Usage | PCB mounting and board spacing |
| Suitable For | PCB, Arduino, Raspberry Pi, modules, sensors, control boards |
| Application | Electronics projects, robotics, enclosures, prototype boards, DIY work |
| Quantity | 1 Piece |
Key Features
Strong metal body for secure mounting.
30mm length for larger spacing requirements.
Female-female design with both sides open for screw fixing.
Hex body provides better grip during installation.
Useful for PCB, module and electronics board mounting.
Helps create safe distance between circuit board and surface.
Suitable for DIY electronics, robotics and project enclosure work.
Important Note
Please check the required spacer length and thread size before ordering. Use matching screws on both sides and avoid over-tightening to prevent PCB or enclosure damage.
Share
