Beat the Heat: Why EXAIR Cabinet Coolers are the Ultimate Industrial Fix – (Cabinet Cooler Promo)

As the mercury rises, industrial facilities face a familiar foe: heat-related downtime. When sensitive electronics and control panels overheat, production grinds to a haltโ€”often at the most inconvenient times. While fans or traditional air conditioners might seem like the go-to solutions, they often bring their own headaches, like clogged filters or mechanical failures.

Enterย EXAIR Cabinet Cooler Systems, a low-cost and highly reliable alternative that uses nothing but compressed air to keep your critical components running cool and clean. And now through the end of August, with the purchase of these systems, you will receive a free AC Sensor โ€” Model 7929.

How They Work: The Power of the Vortex

At the heart of everyย EXAIR Cabinet Coolerย is aย Vortex Tube. This clever piece of engineering converts a standard supply of compressed air into two streams: one hot and one cold.

  • Cold Air Injection: The cold air is discharged directly into the cabinet through a distribution kit, creating a pressurized environment.
  • Contaminant Exclusion: Because the cabinet is slightly pressurized, outside airโ€”along with its dust, dirt, and oilโ€”can never get in.
  • Heat Exhaust: The warm air inside the cabinet is displaced and vented out through the cooler body, leaving your electronics in a clean, temperature-controlled environment.

Maintenance-Free Reliability

One of the biggest advantages ofย EXAIRโ€™s designย is what itย doesn’tย have. There areย no moving parts to wear out, no filters to clog, and no refrigerants (like Freon) to leak.

  • Simple Installation: These units can be installed in minutes through a standard electrical knockout.
  • Long Lifespan: With a clean, dry supply of compressed air, these coolers can run for decadesโ€”some have even been tested to work perfectly after 20 years of service.

Smart Cooling with Thermostat Control

While the coolers are incredibly effective, using compressed air continuously can be expensive. To maximize efficiency, most systems include aย Thermostat Control.

  • Automated Operation: The thermostat (factory set at 95ยฐF) acts as an on/off switch, activating the cooler only when the temperature reaches critical levels.
  • Digital Precision: For even tighter control,ย Electronic Temperature Controls (ETC)ย are available to maintain a constant temperature with a digital LED display.

A Solution for Every Environment

No two facilities are the same, which is whyย EXAIR offers several ratingsย to match your specific needs:

  • NEMA 12 (IP54): For dust-tight, oil-tight indoor industrial environments.
  • NEMA 4 (IP66): For splash-resistant indoor or outdoor use.
  • NEMA 4X: Corrosion-resistant 303 or 316 stainless steel for food service or aggressive chemical settings.
  • Hazardous Locations (HazLoc/ATEX): Specifically designed and certified for explosive environments containing gases or dust.
  • High Temperature Models: Capable of providing relief in ambient temperatures reaching up to 200ยฐF (93ยฐC).
Both the HazLoc (left) and ATEX Cabinet Cooler Systems are available from stock in NEMA 4 and NEMA 4X ratings.

Stop the Shutdowns

Don’t wait for a 100ยฐF day to realize your cooling is insufficient. You can use theย Cabinet Cooler System Calculatorย on EXAIR’s websiteย to find the exact cooling capacity you need, with models ranging from 275 to 5,600 Btu/hr.

Al Wooffitt
Application Engineer

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Banner image: Image by stux from Pixabay

The Importance Of Planned Maintenance

“If it ain’t broke, don’t fix it” is a common phase that we’ve all heard. It’s also a recipe for disaster. Think about it:

  • Corrective maintenance is ALWAYS more expensive. An oil change in your car might set you back $50 and an hour or so, but when (not if) emulsified, contaminated oil causes your engine to seize, that’s a four (if not five) figure repair bill.
  • Corrective maintenance is also ALWAYS more inconvenient. “If you don’t schedule time for maintenance, your equipment will schedule it for you.” ’nuff said.

Anything with moving parts is going to live its best life if you maintain it properly, and your air compressor has a LOT of moving parts that are CONSTANTLY under a good deal of mechanical stress. Your compressor’s manufacturer almost certainly has a published list of recommended maintenance items, with a schedule of when they should be performed. While that list is going to vary, depending on the type of compressor you have, some of the more common items include:

  • Intake Filter: This is what removes environmental contamination from the air that the compressor is drawing in. When (not if) it gets dirty, your compressor works harder. That means higher power consumption, which means higher operating costs. It also means more heat is generated, which can wear machinery out WAY faster than it should.
  • Lubricating Oil: If your compressor is oil lubed, that oil needs to be changed periodically. The schedule for this is always going to be a certain number of hours of operation, or a certain period of time, whichever comes first. That first one is because the amount of particulate contamination is going to be roughly proportional to the amount of time the lubricated parts spend in motion. The latter is because oil just loses some of its critical lubricating properties over time.
  • Drive Equipment: The two main methods of connecting a motor to a compressor are direct drive shaft coupling, or a system of pulleys and belts. Making sure they stay aligned is critical to their operation. Depending on the nature of the drive, lubrication, tension, and physical condition are all important maintenance points as well.
  • Safety (Pressure Relief) Valve: This valve releases excess pressure if the pressure switch fails and the compressor keeps running. At the very least, this keeps your operating costs in line โ€” the higher the discharge pressure, the higher the power consumption. And, worst case, it makes sure you don’t over pressurize the system. If your receiver tank blows up, that’s a bad day.
  • Receiver Tank Condensate Drain: While there are a number of automatic condensate drains available for industrial air compressors, many owners choose to manually drain condensate from the wet receiver. This should be done AT LEAST once a day, with some manufacturers recommending it more frequently than that. This is critical because standing water can corrode the tank from the inside over time. It can also lead to moisture carryover into the header, and it reduces the volume of available air storage in the tank.
  • Keep Clean To Keep Cool: Air compressors generate heat, both from the friction between the moving parts, and the compression itself (Gay-Lussac’s Law states that the pressure of a given mass of gas is directly proportional to its temperature as long as the volume is constant.) Some compressors are air cooled; others are water cooled. Whichever yours is, keep the heat transfer surfaces โ€” like the fins on the air end housing (air cooled) or fins of the heat exchanger (water cooled) โ€” clean & free of debris to maximize the heat transfer, keeping your compressor as cool as possible.

Again, these are just some of the more common maintenance items for an air compressor. If you want yours to live its best life, keep up with the manufacturer’s recommendations. Oftentimes, maintenance records are required for warranty consideration, should something fail. If you have questions about getting the most out of your compressed air system, give me a call.

Russ Bowman, CCASS

Application Engineer
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EXAIR Cabinet Cooler vs. Refrigerant-Based Panel Coolers: Which Is Right for Your Application?

Keeping electrical enclosures cool is essential for protecting components, avoiding downtime, and maintaining consistent performance. While both Cabinet Coolers and refrigerant-based panel air conditioners can get the job done, more manufacturers are shifting toward a simpler, more reliable solution like Cabinet Coolers from EXAIR.

Hereโ€™s a closer look at how they compareโ€”and why Cabinet Coolers often come out ahead in real-world industrial environments.

What Is a Cabinet Cooler?

Compressed air goes in; cold air comes out of the Vortex Tube and is circulated through the enclosure. The Vortex Tube’s hot flow and the warm exhaust from the enclosure are vented through the Cabinet Cooler’s body.

What Is a Cabinet Cooler?

Cabinet Coolers use compressed air and a vortex tube to create a stream of cold air that circulates inside the enclosure. With no moving parts and a straightforward design, they offer dependable cooling without the complexity of traditional systems.

Why EXAIR Cabinet Coolers Stand Out:

  • Maintenance-free operation
  • No moving parts to fail, leading to long life
  • Compact, lightweight design
  • Installs in minutes
  • Thermostat control options to minimize air use

What Is a Refrigerant-Based Panel Cooler?

Refrigerant-based panel coolers function like a traditional air conditioner, using a compressor and refrigerant to remove heat from the enclosure.

While effective, they introduce added complexityโ€”both in installation and long-term upkeep.


Where Cabinet Coolers Have the Advantage

1. Simplicity That Saves Time

Refrigerant systems require wiring, mounting, and clearance for airflow. Cabinet Coolers, on the other hand, install quickly through a standard knockout and are ready to run with minimal setup.

For operations that canโ€™t afford long installation windows, this simplicity is a major advantage.


2. Virtually Zero Maintenance

One of the biggest hidden costs of refrigerant systems is maintenanceโ€”filters clog, fans wear out, and compressors eventually fail.

Cabinet Coolers eliminate those concerns entirely. With no moving parts, thereโ€™s nothing to service, replace, or break down.


3. Built for Harsh Environments

Industrial environments arenโ€™t always clean. Dust, oil mist, humidity, and washdowns can quickly degrade traditional panel A/C units.

Cabinet Coolers excel here:

  • No ambient air is pulled into the enclosure
  • Sealed design keeps contaminants out
  • Performs reliably in dirty, wet, or high-vibration conditions

This is where many refrigerant-based systems struggleโ€”and where Cabinet Coolers consistently prove their value.


4. Reliable, No-Downtime Operation

When a refrigerant unit fails, cooling stopsโ€”and repairs can be costly and time-consuming.

Cabinet Coolers offer a more rugged, dependable alternative. Their simple design means fewer failure points and more consistent performance over time. Cabinet cooler systems bought over 20 years ago are still in operation to this day.


5. Ideal for Targeted & Intermittent Cooling

Not every application needs a large, continuously running A/C unit. For moderate heat loads or intermittent cooling needs, Cabinet Coolers provide efficient, on-demand coolingโ€”especially when paired with a thermostat control.


Where Refrigerant Systems Still Fit

To be fair, refrigerant-based panel coolers do have their placeโ€”particularly in applications with:

  • High, continuous heat loads
  • Large enclosures requiring significant BTU capacity
  • Environments where compressed air is limited or costly

But in many industrial settings, those conditions donโ€™t outweigh the added complexity and maintenance burden. Not to mention the cost to repair and replace after a few years of service.


The Bottom Line

If your priority is reliability, low maintenance, and years of performance in tough environments, Cabinet Coolers from EXAIR offer a clear advantage.

Theyโ€™re simple to install, built to last, and designed to keep your enclosures cool without the headaches that come with traditional refrigerant systems.

For many manufacturers, that combination isnโ€™t just convenientโ€”itโ€™s a smarter long-term investment.

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

Find time on my calendar by scheduling a meeting here.

Compressed Air Problems? Ask An Application Engineer If An EXAIR Super Air Nozzle Is Right For You.

A few years back, I had the pleasure of working with a machine shop manager who wanted to reduce the compressed air consumption in their facility. They had ten lathes, machining high-tech plastic products, and used crimped copper tubing to blow off chips and shavings as the parts were turned. They ran continuously โ€” as did the air compressor โ€” which occasionally caused header pressure to drop below the level required for operation of the pneumatic chucks & tool changers.

These cheap and easy blow offs were making things expensive and difficult for the company.

After some discussion and an Efficiency Lab test of one of their crimped tubes, I recommended our Model 1100 1/4 NPT Zinc Aluminum Super Air Nozzles. They’re our most popular engineered Air Nozzle for typical industrial blow-off applications. They generate a forceful, focused blast of air that’s ideal for chip removal on machine tools, and they’re ideally suited for a number of other uses as well. They bought ten (one for each machine) and installed them one afternoon, right before close of business, by cutting the crimps off the copper tubes and fitting them with simple compression fittings. The whole operation took about five minutes. When the machine shop manager arrived the next morning, he was at first alarmed because there was so little noise coming from the shop (he thought something was wrong with the machines) and then impressed when he found all the lathes were running, and the Super Air Nozzles were so much quieter than the crimped tubes.

The copper tube used to have a crimped end that was aimed at the part in the chuck. They simply cut it off and used a compression fitting to install the Super Air Nozzle.

While our Model 1100 Super Air Nozzle is our most popular one, EXAIR makes a wide range of engineered Air Nozzles to meet the needs of almost any blow-off application. If you’re replacing something else, we can test your current device(s) in our Efficiency Lab (like we did the crimped copper tubing here) and determine the Air Nozzle that most closely matches the performance required for your application.

If it’s a new application, we have tools at our disposal for proper product selection too:

  • The Catalog: Our Air Nozzles & Jets catalog section lists them all, from smallest to largest, with performance data, dimensions, and airflow patterns. I actually like to start with the airflow pattern: once we know the size & shape of the needed/desired flow, we can narrow down our selection.
  • Application Database: At last count, we had over 200 blow-off applications written up. Now, that includes Air Nozzles as well as Air Knives, Air Amplifiers, and Safety Air Guns (which have Air Nozzles on them), but keep in mind what I said about picking the size & shape of the airflow.
  • Engineering Assistance: If you’re short on time, find yourself completely stumped, or just want a 2nd opinion on the best product for your application, we’re here from 7am to 4pm Eastern Time to help you over the phone, in a Live Chat, or at an Engineering Consultation web meeting. You can also email techelp@exair.com, 24/7, with details about what you’re after.

At EXAIR, we want to help you get the most out of your compressed air use. If you want to find out more, give me a call.

Russ Bowman, CCASS

Application Engineer
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