Shop Genuine OEM Titan TR1 HEA Tips
Shop genuine OEM Titan TR1 HEA tips, Titan's 330-series High Efficiency Airless reversible spray-tip technology for lower-pressure architectural spraying. Titan optimizes HEA for architectural paints and coatings at approximately 1,000 PSI at production speed and documents up to 55% less overspray, a feathered-edge spray pattern, reduced trigger kickback and less pressure-related stress on the pump. Select the correct Titan HEA tip by matching coating requirements, fan width, orifice, sprayer output and the applicable gun/guard configuration.
Choose the Correct Titan TR1 HEA Tip
Choosing HEA technology is only the first step. Individual Titan HEA tip sizes combine different fan widths and orifices, which changes spray coverage and material flow. Select by coating + desired fan width + orifice + required flow + sprayer capacity + gun/guard + exact 330-series size.
A wider fan does not automatically require the same material flow as another tip, and two HEA tips are not interchangeable simply because they share the same low-pressure technology. Your sprayer must have sufficient output for the selected orifice, and the coating manufacturer's tip recommendation should also be checked.
Titan TR1 HEA Tip Size & Part Number Guide
Titan's current HEA literature identifies the reversible-tip family as 330-XXX. The chart below follows Titan's documented fan-width and orifice matrix. Confirm the current orderable manufacturer number when replacing an older 330-series tip, particularly where an updated packaged or suffixed number may be shown in parts channels.
| Titan 330-Series | Tip Size | Documented Fan Width | Orifice | Technology / Application | Selection Consideration |
|---|---|---|---|---|---|
| 330-211 | 211 | 4–6 in. / 102–152 mm | 0.011 in. | HEA architectural coating technology | Narrower fan; verify coating and sprayer output |
| 330-213 | 213 | 4–6 in. / 102–152 mm | 0.013 in. | HEA architectural coating technology | Same documented fan range as 211 with larger orifice |
| 330-311 | 311 | 6–8 in. / 152–203 mm | 0.011 in. | HEA architectural coating technology | Verify material requirement before selecting small orifice |
| 330-313 | 313 | 6–8 in. / 152–203 mm | 0.013 in. | HEA architectural coating technology | Match coating viscosity and required material flow |
| 330-411 | 411 | 8–10 in. / 203–254 mm | 0.011 in. | HEA architectural coating technology | Wider fan with smaller documented orifice |
| 330-413 | 413 | 8–10 in. / 203–254 mm | 0.013 in. | HEA architectural coating technology | Verify coating's recommended orifice range |
| 330-415 | 415 | 8–10 in. / 203–254 mm | 0.015 in. | HEA architectural coating technology | Confirm pump output and coating recommendation |
| 330-417 | 417 | 8–10 in. / 203–254 mm | 0.017 in. | HEA architectural coating technology | Higher flow than smaller orifices; verify sprayer capacity |
| 330-421 | 421 | 8–10 in. / 203–254 mm | 0.021 in. | HEA architectural coating technology | Large orifice requires adequate pump output |
| 330-515 | 515 | 10–12 in. / 254–305 mm | 0.015 in. | HEA architectural coating technology | Broad production fan; confirm coating and pump capacity |
| 330-517 | 517 | 10–12 in. / 254–305 mm | 0.017 in. | HEA architectural coating technology | Titan uses 517 in its HEA-versus-standard fan comparison |
| 330-519 | 519 | 10–12 in. / 254–305 mm | 0.019 in. | HEA architectural coating technology | Verify higher-flow requirement against sprayer output |
| 330-521 | 521 | 10–12 in. / 254–305 mm | 0.021 in. | HEA architectural coating technology | Confirm machine supports the larger orifice |
| 330-615 | 615 | 12–14 in. / 305–356 mm | 0.015 in. | HEA architectural coating technology | Wide fan; verify application and surface geometry |
| 330-617 | 617 | 12–14 in. / 305–356 mm | 0.017 in. | HEA architectural coating technology | Wide fan plus increased flow; confirm pump capacity |
| 330-619 | 619 | 12–14 in. / 305–356 mm | 0.019 in. | HEA architectural coating technology | Higher-flow wide fan; verify coating and machine output |
| 330-621 | 621 | 12–14 in. / 305–356 mm | 0.021 in. | HEA architectural coating technology | Largest documented HEA orifice in this current matrix; verify output carefully |
How to Read a Titan HEA Tip Number
Titan's HEA chart organizes the three-digit tip size by fan-width group and orifice. The final two digits identify the nominal orifice in thousandths of an inch. The first digit identifies the fan-width group in Titan's HEA size matrix.
Increasing the orifice increases the potential material flow and therefore increases the importance of confirming pump output. Fan width and orifice should be selected together rather than choosing a tip from only one of those dimensions.
How Titan High Efficiency Airless Technology Works
Titan describes TR1 HEA as revolutionary low-pressure spray-tip technology. The tip is optimized to atomize architectural paints and coatings at approximately 1,000 PSI while maintaining production speed. Titan's current tip-technology guidance places HEA in an approximately 800–1,200 PSI low-pressure operating range.
Titan documents reduced overspray when HEA is used as intended.
The more forgiving fan is designed for consistent coverage with fewer tails and holidays.
Lower operating pressure reduces pressure-related stress and can extend time between repacks.
Titan documents less kickback when the gun is triggered, improving operator control.
Titan also states that TR1 HEA provides two times the life of a standard reversible tip. Actual wear in service still depends on coating abrasiveness, operating conditions, cleaning practices and use.
Why Titan Lists 1,000 PSI and 5,000 PSI for TR1 HEA Tips
Titan optimizes HEA to spray architectural paints and coatings at approximately 1,000 PSI at production speed.
This is the maximum working-pressure rating of the HEA tip, not Titan's intended normal HEA spraying pressure.
Do not interpret the 5,000 PSI rating as evidence that TR1 HEA is primarily a high-pressure or heavy-industrial-coating tip. Every pressure-bearing component in the spray system must also remain within its own working-pressure rating; the complete system is limited by its lowest-rated component.
Titan TR1 HEA vs Standard Reversible Spray Tips
| Buying Consideration | Titan TR1 HEA | Standard Reversible Tip |
|---|---|---|
| Technology positioning | Low-pressure High Efficiency Airless | Conventional airless tip technology |
| HEA optimized pressure | Approximately 1,000 PSI at production speed | HEA-specific 1,000 PSI claim does not apply |
| Spray pattern | Feathered edge; forgiving pattern | Pattern depends on standard-tip family and operating conditions |
| Overspray | Titan states up to 55% less overspray | HEA-specific reduction claim does not apply |
| Pump stress | Lower pressure reduces pressure-related pump stress | Depends on operating pressure and application |
| Trigger kickback | Titan documents less kickback | Depends on pressure, gun and operating conditions |
| Documented tip-life claim | Titan states two times standard reversible-tip life | Baseline used in Titan's HEA comparison |
| Selection | Coating + fan + orifice + sprayer capacity | Coating + fan + orifice + sprayer capacity |
HEA is not automatically the correct technology for every airless application. Choose according to the coating, desired finish, production requirements and equipment capability.
Titan TR1 HEA Gun Guard & Sprayer Compatibility
Titan states that TR1 HEA tips work with industry-standard gun guards. This describes the guard interface; it should not be interpreted as a statement that every HEA size is suitable for every airless sprayer.
Confirm the gun uses the appropriate industry-standard guard and that the guard is correctly installed.
Confirm the machine can support the selected orifice and required material output.
Confirm the coating manufacturer permits the selected tip size and atomization conditions.
When Should You Replace a Titan HEA Tip?
Airless spray tips are wear components. Inspect the tip when the spray pattern loses definition, coverage becomes inconsistent, material consumption rises, or the desired pattern becomes difficult to maintain at the appropriate pressure. As the precision orifice wears, effective flow and fan characteristics can change. Titan documents TR1 HEA as providing two times the life of a standard reversible tip, but actual service life varies with coating abrasiveness, operating pressure, cleaning, maintenance and usage conditions.
How to Order the Correct Titan TR1 HEA Tip
- Identify the coating and check the coating manufacturer's recommended tip range.
- Determine the required spray fan width.
- Determine the required orifice.
- Check the sprayer's maximum supported tip size and available output.
- Confirm the spray gun and guard configuration.
- Locate the corresponding Titan HEA size in the 330-series chart.
- Verify the current manufacturer ordering number for that size.
- Check documented supersession information when replacing an older part number.
- Order only after the tip size, equipment capability and current part number are confirmed.
Physical similarity, the Titan brand name, or matching three-digit tip sizes alone do not prove complete equipment or coating compatibility.
Compare Related Titan Spray Tip Technologies
HEA is one part of Titan's broader professional airless tip system. Compare the technology required for your coating and application before selecting an individual tip.
The safest way to select a Titan HEA tip is coating + fan width + orifice + sprayer capacity + gun/guard + exact current 330-series ordering number. Choosing “HEA” alone is not enough: a 211, 415, 517 and 621 have substantially different fan and flow requirements.
FAQ Section
Use these answers to narrow the correct Titan TR1 HEA size before ordering.