Despite the economic challenges in its industry, Idra Group continues to assert its technological leadership by developing state-of-the-art machinery. While working on the 9000-ton GigaPress for major industrial players, the company is also addressing the needs of businesses seeking compact, high-efficiency solutions. The answer? The MiniGigaPress—featuring the groundbreaking 5S injection system—a transformative innovation that boosts productivity without requiring larger production facilities. Designed for adaptability, this machine can be customized to fit any space.
MiniGigaPress: Compact Power for Large-Scale Production
With a clamping force ranging from 2200 to 4900 tons, the MiniGigaPress provides a versatile and powerful solution for companies producing large components while preserving their existing production space. Unlike larger GigaPresses, which often demand extensive infrastructure and facility upgrades, the MiniGigaPress integrates effortlessly into current manufacturing setups. This makes it an ideal choice for manufacturers looking to enhance efficiency without the need for a dedicated factory.
5S Injection System: A Breakthrough in Regenerative Technology
At the core of the MiniGigaPress is its defining innovation: the 5S injection system—a closed-loop regenerative system with an auxiliary servo pump for unparalleled efficiency. Honored with the prestigious Industrial European Inventor Award 2024 by the European Patent Office, this groundbreaking technology delivers precise control over pressure and speed, ensuring the dynamic force needed to fill even the most intricate and demanding molds.
Key Features of the 5S System
- Energy Optimization – Reduces energy consumption by regenerating energy throughout the production cycle.
- Precision Control – Continuously monitors pressure and speed parameters, enhancing final product quality.
- High Dynamic Force – Enables rapid and precise filling of complex molds.
- Operational Efficiency – Ensures faster, more consistent production cycles with minimal waste.