RAVONA IGT-400 Glove Tester
The RAVONA IGT-400 Glove Tester is an advanced, wireless testing solution designed to ensure the integrity and safety of protective gloves used in high-risk environments such as Aseptic and Containment Environments. This innovative tester is engineered to seamlessly integrate with the Isolator HMI (Human-Machine Interface) and PLC systems, offering real-time monitoring and reliable performance for safety-critical operations.

Technical Specifications: RAVONA IGT-400 Glove Tester
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Wireless Communication:
Supports seamless wireless data transfer to the Isolator HMI and PLC systems.
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Power Supply:
Efficient and long-lasting battery operation.
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Detection Range:
Designed for comprehensive testing across a wide range of glove materials and environments.
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Integration Compatibility:
Fully integrates with Isolator HMI and PLC systems for centralized control and monitoring.
We Comply with the Following Standards and Guidelines

Benefit from optimal glove integrity, and maximum peace of mind.
RAVONA IGT-400 Glove Tester
Key Features:
Wireless Design: The IGT-400 offers a state-of-the-art wireless design, providing flexibility and ease of installation. This design ensures that you can place the tester where it’s most effective without worrying about cumbersome cables or restricted mobility.
Seamless Integration:The IGT-400 integrates directly with the Isolator HMIand, providing a comprehensive and efficient system for monitoring the condition of gloves, with a big advantage of validation taking a part of the Isolator main validation system.
Real-time Monitoring: Continuous, real-time monitoring ensures that any failure or breach in glove integrity is immediately detected. Alerts are sent to the operator interface, ensuring swift corrective actions can be taken to maintain a safe environment.
Enhanced Safety Features: The IGT-400’s advanced detection mechanism ensures that the gloves are free from any defects or degradation, offering peace of mind in industries where glove integrity is a matter of health and safety.
User-friendly Interface: With intuitive operation through the Isolator HMI, users can easily monitor glove status, view diagnostic data, and set parameters, all while ensuring high safety standards are met.
100 micron halls detection, allowing to detect small halls in the glove and ensure the reliability and reputability of the tester made by RAVONA.
Why Choose RAVONA for Glove Integrity Testing?
The IGT-300 ensures that gloves used in critical environments remain intact, protecting both personnel and product integrity.
Works seamlessly within SCADA systems, offering centralized monitoring and real-time feedback on glove integrity status.
Fully CFR 21 Part 11 compliant, ensuring your glove testing processes meet the highest regulatory standards.
Detects leaks as small as 50 microns, providing accurate results and preventing exposure to hazardous substances.
Automatically generates PDF reports, providing secure storage of results for easy access and compliance auditing.
Simple and intuitive controls with an HMI interface ensure seamless glove testing operations for your team.
Benefits RAVONA IGT-400 Glove Tester:
Increased Efficiency: With its wireless design and seamless integration, the IGT-400 minimizes installation time and operational complexity.
Enhanced Safety: Continuous glove integrity checks improve safety for personnel working with hazardous materials or in high-risk environments as well as Aseptic environments.
Reduced Downtime: Immediate alerts allow for faster response times and minimal disruption to operations, enhancing overall productivity.
Cost-Effective: By ensuring gloves remain intact and effective, the IGT-400 helps avoid costly accidents, material waste, and downtime.
Conclusion:
The RAVONA IGT-400 Glove Tester is a cutting-edge solution that combines the best of wireless technology and smart integration for glove safety monitoring. With its reliable performance, user-friendly design, and integration with existing control systems, the IGT-400 is an essential tool for ensuring worker safety and operational efficiency in critical environments.