MCPCB

What is a MCPCB? – Low price answer from China manufacturer

MCPCB refers to (Metal Core PCB, MCPCB)

 

Attaching the original printed circuit board to another metal with better heat conduction effect can improve the heat dissipation at the circuit board level.

When it comes to PCB manufacturing, there are a variety of printed circuit board types to suit different needs and purposes.

The base material used in many PCBs is fiberglass, but for some products that require good electrical insulation and thermal conductivity, a metal-based PCB, such as aluminum metal, is used.

Metal core PCBs or MCPCBs are commonly used in various industries as they offer great advantages for applications requiring high density.

 

Cost-effective

 

wonderful pcb55This type of PCB can be very cost-effective, since aluminum is a common metal in all climates.

This type of metal is also easy to mine and refine, which makes aluminum much cheaper to produce than other types of metals.

Ultimately, this results in lower overall costs when producing MCPCBs. Not only will your business benefit from reduced production costs, but your customers will also be able to benefit from cheaper production costs.

 

 

Good for heat dissipation

 

Heat dissipation is often a challenge for many higher density and power double-sided and multilayer PCBs.

Conventional materials used in these PCBs conduct heat and insulate poorly, which means that the heat generated is more difficult to dissipate.

Most of the time, high temperatures in circuits can lead to thermal throttling and component failure if not dissipated or cooled properly.

With MCPCB, heat dissipation is greatly improved and has excellent thermal conductivity. Aluminum is the metal commonly used in metal cores because it is a very good heat conductor.

The metal is also very effective at moving heat away from vital components, which reduces the chance of overheating component failure.

 

Strong and sturdy

 

PCB Supplier

A huge benefit of using aluminum for MCPCBs is the durability and strength it provides.

Aluminum is a strong metal where ceramics and fiberglass do not provide a strong base. This metal is very stable and can benefit applications requiring strong mechanical stability or resistance to stress.

This means aluminum is less likely to suffer accidental damage during manufacturing, handling, or even everyday use.

Another reason aluminum is a durable material is its resistance to thermal expansion. Thermal expansion is the process by which a material expands when heated and contracts when it cools.

Over time, this process can create weaknesses in the material that ultimately lead to less efficient heat dissipation. Aluminum is less prone to thermal expansion than conventional materials such as ceramics and fiberglass.

 

Light Material

 

In addition to its durability, the material is also extremely lightweight.

Due to the lower density of this metal, it is able to add higher durability, strength and resistance to the printed circuit board without adding any additional weight.

The quality of the lightweight material makes it mechanically strong, ideal for adaptable boards. Another property of aluminum is that it can be very flexible.

Metals can be processed as needed while in the liquid state, and when solidified, the metal remains durable and strong.

 

Environmental friendly

 

WDF PCB 800×60022An important point to consider when using MCPCBs is how environmentally friendly they are.

A huge benefit of aluminum PCBs is that they are non-toxic and recyclable. Once you no longer need it, you can use the aluminum inside for other uses.

When you manufacture in aluminum, it is more conducive to saving energy due to the ease of fabrication and assembly. For manufacturers, using environmentally friendly metals helps the environment.

Kei Lin

Editor-in-Chief of Wonderful PCB, enjoys writing and telling stories about power electronics, wide bandgap semiconductors, automotive, IoT, digital, energy and quantum. Currently the editor-in-chief of Wonderful PCB and Wonderful Chip, a podcast about power electronics.

Leave a Comment

Your email address will not be published. Required fields are marked *

en_USEnglish