【Free energy-saving estimate now available!】Significantly reduce both electricity costs and CO₂ emissions!
【Free energy-saving estimation now available!】By simply replacing your current air nozzle with 'Hayate', you can significantly reduce both electricity costs and CO₂ emissions!
✅ Do you have any of these concerns with your existing nozzles? - High air consumption leading to high electricity costs... - Difficulty in removing foreign objects and water droplets... - Noise is a concern... We recommend the 'Hayate' series, which achieves both high performance and energy savings with laminar flow air! ✅ Switching to 'Hayate' can make a significant difference! We offer a "free" comparative estimate of CO₂ emissions and annual electricity costs based on your current nozzles and equipment conditions. ✅ Information needed for the estimate (examples): - Type and number of nozzles currently in use - Operating hours (◯ hours/day, ◯◯ days/month) - Air pressure used - Air generation cost per cubic meter (unknown is also acceptable) ✅ If you would like an estimate... Please feel free to contact us with "Estimate Request" clearly stated! We will provide a dedicated energy-saving estimate sheet for your company. ✅ What is 'Hayate'? - Excellent removal efficiency and distance with laminar flow air - Up to 1/5 reduction in air usage compared to conventional nozzles - Achieves energy savings, quiet operation, and high quality - Contributes to GX and CSR activities Why not start improving your equipment sustainably right away? We look forward to your inquiry.
basic information
【Features】 - Significant reduction in air consumption with proprietary technology - Achieves high wind speed, thin sheet air, and long-distance air - Improved product quality through enhanced foreign object removal performance - No resin or moving parts, allowing for semi-permanent use - Low noise design improves the working environment 【Campaign during Hayate consideration】 - Energy-saving estimates for electricity costs and CO2 emissions reduction - Trial service through free rental
Price range
Delivery Time
Applications/Examples of results
For more details, please refer to the PDF document or feel free to contact us.
Related Videos
catalog(5)
Download All CatalogsNews about this product(2)
-
The air nozzle "Hayate" received the "Invention Award" at the 2025 National Invention Awards. I had the honor of attending the award ceremony.
We are pleased to announce that the air nozzle "Hayate," developed by Tori Engineering Co., Ltd., has received the "Invention Award" at the 2023 National Invention Awards organized by the Japan Patent Office. We participated in the award ceremony held on July 1, 2023 (Tuesday). Please be sure to try the next-generation air nozzle "Hayate," which boasts remarkable energy savings, high wind speed, long-distance air delivery, and low noise.
-
GX and carbon pricing measures with the air nozzle 'Hayate'! We have launched a new category page.
As environmental regulations are being strengthened and carbon pricing (carbon tax and emissions trading) is being introduced, it has become urgent for companies to respond to GX (Green Transformation). Therefore, we have established a new category for "GX and Carbon Pricing Response." ◆ Reduce CO₂ and costs simultaneously with the air nozzle 'Hayate'! Reducing the use of compressed air is one effective measure in response to carbon pricing. By introducing the air nozzle 'Hayate', you can gain the following benefits: ✅ Reduce compressed air usage by up to 90%, cutting electricity and fuel costs ✅ Prepare for GX compliance and environmental regulations by reducing CO₂ emissions ✅ Improve the working environment and enhance safety with a quiet design ✅ Can be installed on existing equipment! Quick implementation is possible In the future, carbon pricing will become stricter, and a reduction in CO₂ will be required. To smoothly advance GX measures, why not consider introducing the air nozzle Hayate first? ▶ Free demo unit rental and energy-saving estimates are currently available! Please feel free to inquire.