Freon-based Air Conditioning Units or Cabinet Coolers for Electrical Panels

Whatever you do, DON’T do THIS to your panel.

These hot summer months can bring some elevated temperatures within electric control panels.  With freon-based coolers, higher ambient conditions make them less efficient; and opening the electrical panel to have a fan blow inside creates a dangerous electrical hazard.  For every 10oC rise above the operational temperature, the life of an electrical component is cut in half.  To reduce loss in productivity and premature equipment failures, it is important to keep your electrical mechanisms cool.  The EXAIR Cabinet Coolers are designed to do just that.

From right to left: Small NEMA 12, Large NEMA 12, Large NEMA 4X

We receive many questions when it comes to panel cooling as the Vortex technology is relatively new in this area.  The main question is the comparison between the Cabinet Cooler System and the Freon-based A/C panel units.  In short, the Cabinet Coolers have no moving parts to wear, do not use Freon, and require no maintenance.  But they do require clean compressed air to operate.  The Freon-based A/C units do not use compressed air, and only need electricity to operate.  In this blog, I will cover a term to consider: Total Cost of Ownership.

What do I mean by Total Cost of Ownership?  I mean that you not only take into account energy use, but also other, very real issues of owning the system.  There are some significant financial impacts on the bottom line when one considers the need for using electrical Freon panel coolers.

Initial Unit Cost – The initial cost to acquire a vortex-style Cabinet Cooler is between 1/3 and ¼ the cost to acquire a Freon-based air conditioner system. And if we consider that a typical life span for a Freon-based cooling solution is 5 years, then the yearly cost is $500.00/year.  An EXAIR Cabinet Cooler system, by comparison, will have a 20-year life span as there are no moving parts to wear out. That makes for a yearly cost of $36.45 / year. Quite a large difference between the two. Also note that over the 20-year life of an EXAIR Cabinet Cooler, the Freon unit will have to be replaced four times. We’re not taking that into account for our calculations, but assuming the cost remains the same over that time.

Installation – Because it is so easy to install an EXAIR Cabinet Cooler system, the estimated time to install is only 1 hour. One small hole to mount the unit on the top of the panel and another hole to route the thermostat to the solenoid.  With some small amount of plumbing for the compressed air and cold air distribution kit, the extent of the installation is complete. Compare that to the estimated 3-hour minimum time in order to install a Freon-based solution. With this unit, it will come with very large cut-outs on the panel to allow for the airflow to process through.

Maintenance – In this comparison, we are stating that there are no maintenance or downtime requirements for EXAIR Cabinet Cooler systems. This is another area where the EXAIR Cabinet Coolers really pull ahead of the Freon-based solutions. Yes, there is some small amount of annual filter maintenance for the compressed air supply, but a quick washing and re-installation of the sintered bronze element, and you are back in business in a very short time.  The Freon-based solution, by comparison, will require a minimum of 4 hours per year (one time per quarter) for charging Freon (due to any leaks), cleaning and replacing filters, washing the condenser, and performing compressor checks. At an estimated $80.00/hour, that is $320.00 per year for labor plus any parts. 

Operations – Here we can compare the energy use.  If we use a simple estimate for the cost of compressed air at $0.25/1000 Standard Cubic Feet, then over the course of a year of operation, a vortex-style cooling solution will run about $338.00 / year to operate. For a comparable Freon-based cooling system, it will be about $56.38 / year to operate.  But with a Freon-based system, it will need to be oversized for ambient conditions over 95oF (35oC), which will make this more comparable. 

Electrical shutdowns are expensive and annoying, and if you do not maintain the Freon-based systems regularly, the shutdowns can occur often.  In showing the Total Cost of Ownership, it shows that the EXAIR Cabinet Coolers are a great purchase.  With no moving parts, Freon, or costly preventative maintenance required, they can operate for decades by keeping your electronics cool.  For our U.S. customers, we are offering a promotion.  You will receive a1104SS Super Air Nozzle, a $197.00 value, for free as a promotional item from now until the end of August 2026 with a qualified purchase.  How can you not give them a try?  If you have any questions about Cabinet Coolers or the Sizing Guide, you can contact an Application Engineer at EXAIR.  We will be happy to help you.  Remember whenever you make a purchase, you should always look at the Total Cost of Ownership to get the entire story. 

John Ball
Application Engineer
Email: johnball@exair.com
Twitter: @EXAIR_jb

See the Difference: EXAIR Cabinet Cooler Performance on Thermal Camera

Heat inside electrical enclosures can lead to component failure, downtime, and inconsistent machine performance. In our latest video, we used a thermal camera to show how quickly an EXAIR Cabinet Cooler reduces temperatures inside a control panel.

Thermal imaging makes the results easy to see in real time. Hot spots across the enclosure begin cooling almost immediately once the Cabinet Cooler is activated, helping stabilize temperatures around critical electrical components.

The video highlights:

  • Rapid panel cooling
  • Reduction of hot spots
  • Consistent airflow across components
  • Cooling without pulling contaminated plant air into the enclosure

Unlike traditional fan cooling, the EXAIR Cabinet Cooler uses compressed air to cool the enclosure while maintaining positive pressure to help keep dust and debris out.

For facilities dealing with overheating VFDs, PLCs, or electrical panels, thermal imaging provides a clear look at how effective enclosure cooling can improve reliability and reduce downtime.

If you think a Cabinet Cooler will help your process, please reach out! I’m happy to help you get the right one selected and in service.

Jordan Shouse
Application Engineer
E: JordanShouse@exair.com
O: (513) 671‑3322
F: (513) 671‑3363
A: 11510 Goldcoast Dr Cincinnati OH 45249
www.exair.com

Find time on my calendar by scheduling a meeting here.

Compressed Air Safety in Industrial Environments: Key Risks and Best Practices

Compressed air powers tools, equipment, and cleaning processes in many facilities—but it can also cause serious injuries, damage equipment, and disrupt operations when used improperly. Here is a concise look at the main hazards and the practices that reduce risk.

Common compressed air hazards

  • High-pressure injection and flying debris: Air blasts can propel chips and dust into eyes and skin; air can also enter the body through cuts or openings and cause life-threatening injury.
  • Excessive noise: Blow-off and open pipes can exceed safe sound levels, contributing to permanent hearing loss and making communication harder.
  • Whipping hoses and failed fittings: A loose or damaged hose can detach and strike workers with significant force.
  • Contaminants in the air stream: Oil, water, and particulates can affect product quality, degrade tools, and create health risks in certain applications.

OSHA note: blow-off pressure limits

OSHA Standard 1910.242(b) requires compressed air used for cleaning to be reduced to less than 30 PSI at the nozzle when dead-ended (blocked), and to be used with effective chip guarding and appropriate PPE. Meeting this requirement is a baseline for a safe compressed air program.

Many facilities meet these standards by using engineered nozzles and safety air guns (for example, from EXAIR or similar manufacturers) that limit dead-end pressure, reduce noise, and improve blow-off efficiency.

Best practices checklist

  • Use engineered nozzles/air guns: Replace open pipes and improvised nozzles; choose designs that limit dead-end pressure and reduce noise.
  • Control debris: Use chip guards/shields and direct blow-off away from people and walkways.
  • Manage hoses: Secure connections, route hoses to prevent kinks and trip hazards, inspect routinely, and use whip checks where appropriate.
  • Wear the right PPE: Eye protection is essential; add hearing protection where noise is elevated; use gloves/protective clothing as the task requires.
  • Follow safe procedures: Never point compressed air at anyone or use it to clean clothing; depressurize lines before maintenance; train operators and post clear signage.
  • Maintain the system: Keep filters/dryers/lubricators serviced and repair leaks to improve safety and reduce energy waste.

The Bottom Line

Compressed air is essential—but it is not risk-free. When you pair OSHA-aligned pressure control with engineered tools, hose management, PPE, training, and routine maintenance, you reduce injuries, cut down time, and keep operations running safely.

Neal Raker, Application Engineering Manager
nealraker@exair.com

Reducing Pneumatic Exhaust Noise with EXAIR Mufflers

In many manufacturing facilities, compressed air systems are one of the largest contributors to workplace noise. Pneumatic cylinders, valves, vacuum generators, and cooling devices all exhaust compressed air, often creating sound levels high enough to require hearing protection. OSHA Standard 29 CFR 1910.95 outlines permissible workplace noise exposure levels, making noise reduction an important part of maintaining a safer and more comfortable work environment.

To help solve these issues, EXAIR offers several different styles of Silencing Mufflers designed for specific applications. Choosing the correct muffler can improve operator safety, reduce exhaust noise, and even help eliminate oil mist from compressed air systems.

Reclassifying Mufflers – Maximum Noise Reduction and Oil Removal

Reclassifying Mufflers are EXAIR’s most advanced muffler option. These mufflers are designed not only to reduce noise, but also to remove oil mist from exhausted compressed air. In pneumatic systems where lubricated air is used, exhausted oil mist can create slippery surfaces, contaminate products, and affect air quality.

EXAIR Reclassifying Mufflers can reduce sound levels by up to 35 dB while separating oil from the exhaust stream through a removable filter element. The collected oil drains into an integrated reservoir, helping facilities maintain cleaner and safer operations.

These mufflers are ideal for:

  • Pneumatic cylinders
  • Air valves
  • Lubricated compressed air systems
  • Applications where oil mist must be controlled

Sintered Bronze Mufflers – Simple and Cost Effective

Sintered Bronze Mufflers are a popular low-cost solution for reducing exhaust noise from pneumatic equipment. Their porous bronze construction allows compressed air to pass through with minimal back pressure, helping maintain proper equipment performance.

These mufflers are:

  • Easy to install
  • Available in a wide range of sizes
  • Ideal for standard cylinder and valve exhausts
  • Designed for minimal airflow restriction

Unlike Reclassifying Mufflers, Sintered Bronze Mufflers do not remove oil mist from the exhaust air. However, they remain an excellent option when a simple and economical noise reduction solution is needed.

Straight-Through Mufflers – Ideal for Remote Exhaust Applications

Straight-Through Mufflers are designed for applications where exhaust air needs to be piped away from operators or sensitive areas. These mufflers feature a corrosion-resistant aluminum shell lined with sound-absorbing foam and can reduce noise levels by up to 20 dB.

Their threaded inlet and outlet design makes them especially useful for:

  • Vortex Tubes
  • E-Vac Vacuum Generators
  • Cabinet Cooler Systems
  • Remote exhaust routing

Because the airflow passes directly through the muffler body, Straight-Through Mufflers are also less susceptible to clogging in certain applications.

Selecting the Right Muffler

Each EXAIR muffler style is designed to solve a different challenge:

Muffler TypePrimary BenefitTypical Use
Reclassifying MufflersBest noise reduction and oil removalPneumatic cylinders and lubricated systems
Sintered Bronze MufflersLow cost and easy installationGeneral pneumatic exhaust applications
Straight-Through MufflersRemote exhaust routing and lower clogging riskVacuum generators, vortex tubes, cabinet coolers

Reducing compressed air exhaust noise is often a simple upgrade that can have a major impact on workplace safety and operator comfort. Whether the goal is maximum sound reduction, oil mist filtration, or economical silencing, EXAIR offers a muffler solution designed for the application.

Jordan Shouse
Application Engineer
E: JordanShouse@exair.com
O: (513) 671‑3322
F: (513) 671‑3363
A: 11510 Goldcoast Dr Cincinnati OH 45249
www.exair.com

Find time on my calendar by scheduling a meeting here.