
A used AIRMAN air compressor from Japan can be a practical power source for pneumatic tools, construction work, drilling, blasting, industrial maintenance and other jobs that require compressed air. However, buyers should not choose a compressor from model number or physical size alone. The required free air delivery, operating pressure and air quality must match the equipment that will use the compressed air.
AIRMAN produces standard PDS compressors as well as Leak-Gard, after-cooler, dry-air and high-pressure versions. Before buying, identify the exact model and confirm its air delivery and rated pressure. Then inspect the diesel engine, compressor element, separator system, hoses, valves, cooling system, control panel and operating condition. This guide explains how overseas buyers can decide which used AIRMAN compressor from Japan better fits their work.
What Type of AIRMAN Compressor Do You Actually Need?
AIRMAN divides its engine-driven compressor range into several main categories:
- Standard PDS Series
- Leak-Gard PDS-L Series
- After-Cooler PDS-C Series
- Dry-Air PDS-D Series
- High Pressure PDSE, PDSF, PDSG, PDSH, PDSJ and PDSK Series
These categories are designed for different air requirements.
Do not assume that a standard compressor, dry-air compressor and high-pressure compressor are interchangeable.
Specifications vary by model year and configuration. Exact specifications should be confirmed for each individual machine.
Start With Two Numbers: Air Delivery and Pressure
Before searching for a used AIRMAN compressor, determine:
- Required free air delivery
- Required operating pressure
Free air delivery is commonly shown in m³/min and CFM.
Operating pressure is commonly shown in MPa, kgf/cm² or psi.
Both numbers matter.
A compressor may provide enough air volume but insufficient pressure. Another may provide high pressure but still lack enough airflow for several tools operating together.
Do Not Choose by Model Number Alone
AIRMAN's Standard PDS Series covers a wide range of output classes.
| Current / Recent Example | Free Air Delivery | Rated Operating Pressure | Engine |
|---|---|---|---|
| PDS80S-5C5 | 2.3 m³/min / 81 CFM | 0.7 MPa / 102 psi | Kubota D902-K3A |
| PDS130S-5C3 | 3.7 m³/min / 131 CFM | 0.69 MPa / 100 psi | Yanmar 3TNV88-BDHK |
| PDS185S-5C5 | 5.2 m³/min / 184 CFM | 0.7 MPa / 102 psi | Yanmar 4TNV88-BXDHKSR |
| PDS265S-5C3 | 7.5 m³/min / 265 CFM | 0.69 MPa / 100 psi | Yanmar KDP-4TNV98T |
| PDS400S-6B6 | 11.3 m³/min / 399 CFM | 0.7 MPa / 102 psi | Kubota V3800DI-TI-E2B |
| PDS670S-4C5 | 19.0 m³/min / 671 CFM | 0.7 MPa / 102 psi | Isuzu AI-4HK1X |
These examples show why AIRMAN compressors should be compared by actual air demand rather than by appearance.
What Does Free Air Delivery Mean for a Buyer?
Free air delivery tells you how much usable compressed air the machine can supply under its rated specification.
Your required airflow depends on:
- Tool type
- Number of tools
- Tool air consumption
- Operating pressure
- Whether tools run continuously or intermittently
- Hose length and pressure loss
If several pneumatic tools will operate together, their air requirements should be considered as a group.
Do not simply choose a compressor equal to the air consumption of one tool if several tools may operate at the same time.
Standard PDS Compressors Suit Many General Construction Uses
AIRMAN describes the Standard PDS Series as its general engine-compressor line for supplying air energy at construction sites.
Standard models can be considered for compatible applications such as:
- Pneumatic breakers
- Air tools
- Construction maintenance
- General compressed-air supply
- Compatible drilling equipment
The actual application should always be checked against the required airflow and pressure.
PDS185 Is a Useful Mid-Size Example
The current PDS185S-5C5 provides a practical reference for a medium portable compressor.
AIRMAN officially lists:
- Compressor type: rotary twin screw, single-stage, oil-injected
- Free air delivery: 5.2 m³/min / 184 CFM
- Rated pressure: 0.7 MPa / 102 psi
- Engine: Yanmar 4TNV88-BXDHKSR
- Engine output: 34.9 kW
- Fuel tank: 90 L
- Dimensions: 1,850 × 950 × 1,080 mm
- Dry weight: 755 kg
- Operating weight: 850 kg
These specifications apply to this stated model. Older PDS185 generations may use different engines, dimensions or emissions specifications.
Choose a Larger Compressor Only When the Air Demand Requires It
The PDS390S-5C1 provides almost double the free air delivery of the PDS185 example.
AIRMAN lists:
- Free air delivery: 11.0 m³/min
- Rated pressure: 0.69 MPa / 100 psi
- Engine: Isuzu CI-4JJ1X
- Rated engine output: 84.4 kW
- Fuel tank: 180 L
- Dimensions: 2,680 × 1,300 × 1,400 mm
- Dry weight: 1,660 kg
- Operating weight: 1,870 kg
The larger machine supplies much more air, but it also requires more transport capacity, fuel and working space.
Buying excessive airflow can increase ownership cost without improving productivity if your tools cannot use it.
Box Type vs Trailer Type
AIRMAN offers both box and trailer configurations within parts of the PDS range.
For example, PDS390 variants exist in different physical configurations.
A trailer-type compressor can help with movement around suitable worksites.
A box-type machine can be more compact for certain transport or installation plans.
However, buyers should not assume a trailer unit can automatically be registered or legally towed on public roads in the destination country.
Check local transport regulations separately.
Choose High Pressure When Your Equipment Requires It
Standard PDS compressors commonly operate around 0.69–0.7 MPa.
AIRMAN's high-pressure range provides higher operating pressures.
Examples include:
| Model | Free Air Delivery | Rated Pressure |
|---|---|---|
| PDSF80S-5C5 | 2.15 m³/min | 0.96 MPa / 140 psi |
| PDSF100S-5C3 | 2.8 m³/min | 1.03 MPa / 150 psi |
| PDSF140S-5C3 | 4.0 m³/min | 1.03 MPa / 150 psi |
| PDSF210S-5C3 | 6.0 m³/min | 1.03 MPa / 150 psi |
A high-pressure machine should be selected because the connected equipment requires that pressure.
More pressure is not automatically better.
Why Excessive Pressure Is Not a Buying Advantage
Pneumatic tools and systems are designed for specific pressure ranges.
Using an unsuitable pressure can create:
- Incorrect tool operation
- Higher energy consumption
- Additional pressure-regulation requirements
- Potential equipment damage or safety concerns
Confirm the tool manufacturer's required pressure before selecting the compressor.
After-Cooler Models Address Discharge-Air Temperature and Moisture
Compressed air leaves the compressor hot and can contain significant moisture.
AIRMAN offers PDS-C after-cooler models for applications that need cooler discharged air and reduced water-vapor problems.
For example, the PDS265SC-5B2 is listed with:
- Free air delivery: 7.5 m³/min
- Rated pressure: 0.69 MPa
- Discharge air temperature: atmospheric temperature +20°C
- Yanmar 4TNV98T-NHK engine
An after-cooler model may make sense when downstream equipment is sensitive to hot, moisture-rich compressed air.
Dry-Air Models Go Further
AIRMAN also offers PDS-D dry-air models.
The manufacturer describes this series as supplying dry compressed air.
Current or recent examples include:
- PDS265SD
- PDS400LD
- PDS600SD / F550SD
- PDS670SD
These configurations should be considered where the job requires drier air than a standard compressor can provide.
Do not assume a standard PDS compressor has the same moisture-control equipment.
Choose Dry Air When the Application Actually Needs It
Dryer compressed air can be relevant for compatible applications such as:
- Air supply where moisture creates process problems
- Certain blasting or coating operations
- Instrumentation or specialized pneumatic equipment
- Cold conditions where condensed moisture can be troublesome
The required air quality should be specified by the equipment or process manufacturer.
Leak-Gard Is Another Configuration to Identify
AIRMAN offers PDS-L Leak-Gard compressors with oil-containment features.
This can be useful on jobsites where fluid leakage control matters.
For a used Leak-Gard machine, inspect:
- Containment structure
- Drain system
- Corrosion
- Oil accumulation
- Previous damage or repairs
Do not assume every PDS compressor includes Leak-Gard equipment.
Inspect the Compressor Element, Not Only the Engine
A used AIRMAN compressor has two major mechanical systems:
- The diesel engine
- The compressor air end
A healthy engine does not prove the compressor element is healthy.
During inspection, listen for:
- Abnormal bearing noise
- Unusual mechanical noise
- Irregular loading and unloading
- Unexpected vibration
Performance should also be evaluated through actual air delivery and pressure where suitable test equipment is available.
Check Whether the Compressor Builds Rated Pressure
During an operational test, monitor whether the machine reaches and maintains its normal rated pressure.
Watch for:
- Slow pressure build-up
- Unstable pressure
- Unexpected pressure drop
- Unusual engine load
- Overheating
- Warning lamps
A proper test should follow manufacturer procedures and use safe compressed-air practices.
Inspect the Air-Oil Separator System
Oil-injected screw compressors use systems that separate compressor oil from the discharged air.
For a used machine, review:
- Separator condition where service information is available
- Excessive oil carryover
- Oil level
- Oil leakage
- Service history
Heavy oil in the discharge air can indicate a problem that deserves investigation.
Check Compressor Oil Condition
Inspect the compressor-oil level and condition where possible.
Look for:
- Incorrect level
- Severe contamination
- Signs of overheating
- Oil leaks around hoses and fittings
AIRMAN specifies different compressor-oil capacities by model, so exact service quantities should be confirmed from the correct manual.
Inspect the Diesel Engine
Where possible, start the engine from cold.
Check:
- Starting behavior
- Exhaust smoke
- Abnormal noise
- Engine oil leaks
- Coolant leakage
- Warning indicators
- Response as the compressor loads
Engine manufacturer and emissions specification vary across AIRMAN models and generations.
Do not assume every PDS185, PDS265 or PDS400 uses the same engine.
Operating Hours Need Context
The hour meter is useful, but it does not show the whole condition.
Compare operating hours with:
- Engine wear
- Compressor-element behavior
- Oil condition
- Air-end noise
- Maintenance records
- Cooling-system condition
- Previous application
- Corrosion
A low-hour compressor that spent years outdoors near the coast can present different risks from a higher-hour machine maintained in a controlled environment.
Check the Cooling System Carefully
Both the engine and compressor generate heat.
Inspect:
- Radiator
- Oil cooler
- Cooling fan
- Air passages
- Hoses
- Coolant
- Blocked fins
Dust, concrete powder and other construction-site contamination can reduce cooling performance.
Inspect Air Intake and Filters
Air compressors process large volumes of air.
Air-filter condition therefore matters.
Check:
- Air-filter element condition
- Filter housing
- Intake hoses
- Clamps
- Dust contamination
Heavy dust exposure can affect both the engine and compressor system.
Inspect Hoses, Valves and Air Outlets
Check:
- Outlet valves
- Air hoses on the machine
- Pressure lines
- Clamps
- Fittings
- Safety valves
Look for corrosion, cracking, leakage and non-standard repairs.
The number and size of outlet valves vary by model.
Check the Control Panel and Safety Devices
Depending on model and generation, inspect functions such as:
- Hour meter
- Pressure gauge
- Temperature warnings
- Engine warning lights
- Emergency stop
- Automatic shutdown systems
Unexplained warning lights should be investigated before purchase.
Previous Use Can Explain Wear
| Previous Application | Areas to Check Closely |
|---|---|
| General construction | Dust, enclosure, air filters and cooling system |
| Pneumatic breaker work | Hours, air-end condition, outlets and hoses |
| Drilling | Airflow performance, pressure stability and compressor element |
| Blasting | Air quality, moisture control and high-demand operation |
| Rental fleet | Controls, enclosure, outlets and maintenance history |
| Coastal work | Corrosion, electrical connections, cooler and enclosure |
If previous use cannot be confirmed, treat it as unknown.
Box Condition Can Reveal How the Machine Was Treated
Inspect the enclosure for:
- Large dents
- Door damage
- Missing locks
- Broken hinges
- Corrosion
- Blocked ventilation
- Non-original openings
Exterior damage may be cosmetic, but damage that affects cooling airflow or access panels deserves more attention.
Check Trailer Components Where Fitted
Some AIRMAN compressors use trailer configurations.
Inspect:
- Drawbar
- Frame
- Tires
- Wheels
- Wheel bearings
- Coupling
- Support leg
Again, this does not confirm road legality at the destination.
Local towing and registration regulations need separate confirmation.
High-Pressure Large Compressors Can Become Major Logistics Items
AIRMAN's high-pressure range also includes very large compressors.
For example, the PDSF1000DP-4C5 is officially listed with:
- Free air delivery: 27.5 m³/min
- Dual rated pressure: 1.03 MPa / 0.7 MPa
- Komatsu SAA6D125E-5-A engine
- Rated engine output: 247 kW
- Fuel tank: 600 L
- Dimensions: 4,370 × 2,000 × 2,290 mm
- Dry weight: 4,990 kg
- Operating weight: 5,680 kg
This is clearly a different export and ownership decision from a compact PDS80 or PDS185.
Transport Weight Must Be Confirmed Before Purchase
Even within standard-pressure compressors, size changes quickly.
For example:
| Model | Dimensions | Dry Weight |
|---|---|---|
| PDS185S-5C5 | 1,850 × 950 × 1,080 mm | 755 kg |
| PDS390S-5C1 | 2,680 × 1,300 × 1,400 mm | 1,660 kg |
| PDS390S-4C1 Trailer | 3,065 × 1,415 × 1,870 mm | 1,965 kg |
These current or recent official examples should not be applied to older machines without verification.
Shipping an AIRMAN Compressor from Japan
Some compact box-type compressors may be suitable for container transport. Larger or trailer-type machines may require a different arrangement.
The shipping plan depends on:
- Actual dimensions
- Weight
- Trailer configuration
- Fuel condition
- Battery handling
- Destination
- Port
- Shipping line
- Current shipping conditions
Container, RORO, flat rack or another method may be considered depending on the individual compressor.
No single method applies to every AIRMAN machine.
Which AIRMAN Compressor Direction Fits Your Work?
| Requirement | Series Direction to Consider |
|---|---|
| General construction compressed air | Standard PDS Series |
| Jobsite fluid containment is important | PDS-L Leak-Gard Series |
| Cooler discharge air and moisture reduction | PDS-C After-Cooler Series |
| Dry compressed air required | PDS-D Dry-Air Series |
| Equipment requires higher pressure | PDSF / G / H / J / K High-Pressure Series |
This table is general buying guidance. Final selection should follow the pneumatic equipment specification and exact AIRMAN model data.
A Practical Used AIRMAN Compressor Checklist
- Model: Record the complete AIRMAN model code.
- Serial Number: Confirm machine identity.
- Air Delivery: Match m³/min or CFM to the real load.
- Pressure: Confirm the required MPa or psi.
- Air Quality: Decide whether standard, after-cooled or dry air is required.
- Engine: Confirm engine manufacturer and condition.
- Cold Start: Check starting, smoke and abnormal noise.
- Hours: Compare operating hours with physical wear.
- Pressure Test: Confirm stable pressure where practical.
- Air End: Listen for abnormal compressor-element noise.
- Separator: Check for excessive oil carryover.
- Compressor Oil: Check level, leakage and condition.
- Cooling: Inspect radiator, coolers and fan.
- Filters: Check air-intake and service condition.
- Hoses: Inspect air, oil and coolant hoses.
- Outlets: Check valves, fittings and damage.
- Controls: Test gauges, warning lamps and shutdown functions.
- Enclosure: Check corrosion, doors and airflow.
- Trailer: Inspect drawbar, wheels and frame where fitted.
- Transport: Confirm actual dimensions and weight.
Buying a Used AIRMAN Air Compressor from Japan
Japanese used machinery can include AIRMAN PDS compressors in different airflow classes, pressures, body configurations and generations.
You can check current Japanese used machinery available at EVERYCAR.jp. Inventory changes regularly, so a particular AIRMAN compressor model should not be assumed to remain available.
When making an inquiry, useful information includes the required air delivery, operating pressure, preferred model, standard or special air requirement, budget and destination.
For broader guidance about Japanese used machinery selection, generators, inspection and international purchasing, visit the Japanese Used Machinery & Heavy Equipment Guide.
Choose Airflow, Pressure and Air Quality Before Comparing Price
A used AIRMAN compressor should first be matched to the pneumatic equipment it needs to supply.
Define the required airflow and pressure. Then decide whether standard air, after-cooled air, dry air or higher pressure is necessary.
Once the correct AIRMAN class is clear, evaluate the individual machine. Engine condition, compressor-element performance, separator system, cooling system, hoses, controls, operating hours and maintenance history all affect the real value.
If you are looking for a used AIRMAN air compressor from Japan, you can contact EVERY with your preferred model or required airflow, pressure, air specification, budget and destination. Exact specifications, configuration and condition should be confirmed for each individual compressor before purchase.
Search 100,000+ Dealer Stock Vehicles from Japan
Access a wide selection of vehicles from Japanese dealers nationwide. Updated daily.


