10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

10 steps to a green and more efficient production

Carbon reduction for green production - all you need to know
10 steps to green compressed air production

Everything you need to know about your pneumatic conveying process

Discover how you can create a more efficient pneumatic conveying process.
3D images of blowers in cement plant
Close
AC VSD campaign web banner - Red background

Reduce energy cost by 50%

The new revolutionary 5th Generation VSD compressor from Atlas Copco.

The better way to reduct energy cost by 50% - READ HERE!!

coins in a jar, total cost saving icon

The new revolutionary 5th Generation VSD compressor from Atlas Copco.

Atlas Copco

Atlas Copco’s new VSD+ compressor is not just a ground-breaking new compressor range, it is an operational transformation. It reduces your energy costs by 50% on average and maximizes uptime, even in the harshest conditions.

Driving this next-level performance:

iPM motor
Atlas Copco's Variable Speed Drive, a powerful interior permanent magnet motor, and our in-house developed Neos inverter. Thanks to its compact vertical design, the VSD+ compressor fits in even the smallest compressor room.  Twenty-five years ago, Atlas Copco pioneered the introduction of the first variable speed air compressor in the world. This was a revolutionary achievement in the compressed air industry, and the customers could save on average up to 35% of energy.  Atlas Copco has been continuously upgrading the VSD technology and product portfolio since then, and the 5th generation of variable speed drive compressors is a testament to that.

How does a Variable Speed Drive or inverter drive compressor work?

An air compressor with a Variable Speed Drive (VSD) automatically adjusts the compressor's operating speed to be relevant to air demand in real-time of the production line. VSD compressors are designed for operations where demand for compressed air fluctuates, such as facilities that operate different processes or multiple shifts, so flow demand increases and decreases throughout the day.

Compared to fixed speed compressors that operate only at full speed, VSD compressors offers several benefits:

  • Because the VSD compressor only runs when needed, it reduces energy cost—typically enough to pay for the additional investment in VSD technology.
  • A VSD compressor can start/stop under full system pressure. There is no need to unload, which saves both time and energy.
  • No time is lost to idling.
  • No blow-off losses occur in normal operations.
  • Power company penalties for peak current at startup are avoided.
  • Air system pressure is more consistent and also lower, minimizing leakage
Learn the basics: VSD wiki
AC VSD campaign web banner - blue background
Learn the basics: VSD wiki
The big benefit of variable speed drive (VSD) air compressors is lower energy costs—but do you know about these other key advantages?
 
The big benefit of variable speed drive (VSD) air compressors is lower energy costs—but do you know about these other key advantages?
The big benefit of variable speed drive (VSD) air compressors is lower energy costs—but do you know about these other key advantages?
VSD technology explained
VSD technology explained
 
When to use a VSD compressor
When to use a VSD compressor
 

In the continuous term of efficiency

Why Atlas Copco Variable Speed Drive+ technology?

• On average 50% energy savings with an extensive flow range (20-100%).

• Integrated Elektronikon® Touch controller controls the motor speed and high-efficiency frequency inverter.

• No wasted idling times or blow-off losses during operation.

• Compressor can start/stop under full system pressure without the need to unload.

• Eliminates peak current penalty during start-up.

• Minimizes system leakage due to lower system pressure.

• EMC compliance to directives (2004/108/EG).

Variable Speed ​​Drive (VSD) is a device to control an electric motor's speed to suit the conditions of the load. To increase the efficiency of compressed air production in industrial production systems.

 
VSD compare technologies
 
VSD versus fixed speed
VSD versus fixed speed
 
VSD versus VSD+
VSD versus VSD+
 

Air compressors Screw compressors Air compressors Oil-free compressors Oil-lubricated compressors Industries

Reduce energy cost by 50%

explainer icon