OverviewA new level of connectivity and digitization that enables simulation of any project and reduces error risk thanks to a powerful graphic engine that converts requirements into precise, profitable and repeatable results. Built for heavy workpieces and complex erosion tasks. Connect. Simulate. Win.
Benefits of ONA IRIS Technology- Highly rigid mechanical structure in stabilized fine-grained cast iron with graphite, supporting workpieces up to 25,000 kg.
- Reinforced C axis for stable erosion with electrodes of high moment of inertia (approx. 12,000 kg/cm2).
- Direct position measurement via linear scales with 0.1 µm resolution for high positional accuracy.
- Innovative generator design: 30% more powerful than typical market units, capable of reaching up to 400 A.
- Advanced control with up to 8 simultaneously interpolating axes and volumetric compensation across the entire work area.
Specifications (from product table)- X-axis travel (individual): 2,000 mm — 78.74 in
- Y-axis travel: 750 / 1,000 mm — 29.53 in
- Z-axis travel: 650 / 800 mm — 25.59 in
- Max. distance between table and head: 1,200 mm — 47.24 in
- Worktank internal dimensions (L×W×H): 2,800 × 1,500 × 1,000 mm — 110.24 × 59.05 × 39.37 in
- Work table dimension: 2,200 × 1,000 mm — 86.61 × 39.37 in
- Allowable weight on the table: 20,000 kg — 44,093 lbs
- Type of work tank: Drop door
- Maximum electrode weight: 300 kg — 660 lbs
- Intensity of the generator: 100 | 200 | 400 A
Technical features- Model: ONA IRIS 8
- Suitable for parts up to 25,000 kg
- X-axis travel (individual): 2,000 mm
- Y-axis travel: 750 / 1,000 mm
- Z-axis travel: 650 / 800 mm
- Max. distance between table and head: 1,200 mm
- Worktank internal dimensions (L×W×H): 2,800 × 1,500 × 1,000 mm
- Work table dimension: 2,200 × 1,000 mm
- Allowable table load: 20,000 kg
- Maximum electrode weight: 300 kg
- Generator intensity options: 100, 200, 400 A
- Type of work tank: Drop door
- Direct position measurement with linear scales, 0.1 µm resolution
- Control: up to 8 simultaneously interpolating axes and volumetric compensation across the work area