Intelligent System

A

Blower Heat & Vibration Monitor

Technical Introduction

Real-time monitoring of blower temperature and triaxial vibration provides continuous health status tracking. Integrated with smart analytics, the system detects early anomalies to transition maintenance from reactive repairs to predictive prevention, ensuring uninterrupted furnace operation.

 

Technical Advantages

Real-time anomaly alerts and automated maintenance tracking minimize unplanned downtime, protect core blower assets, and ensure optimal glass tempering quality.

B

Functional Fault Alerts

Technical Introduction

The system performs continuous real-time monitoring of operational status to detect functional anomalies. Once an issue occurs, it immediately pinpoints and displays the specific faulty module or system on the control interface, providing operators with clear directional guidance for efficient inspection.

 

Technical Advantages

Clear functional module alerts eliminate blind troubleshooting across the furnace, accelerating response speed, preventing improper operations, and ensuring production line safety.

C

IoT Operations & Maintenance

Technical Introduction

Integrated with IoT technology, the system enables real-time monitoring of furnace operational status directly from mobile devices. Designed to bridge global time zone differences, it allows engineers in China to quickly access live equipment data, pinpoint root causes accurately, and deliver swift remote troubleshooting for overseas clients.

 

Technical Advantages

Multi-channel real-time alerts  combined with deep data analytics and instant AI support shorten diagnostic time, optimize operational decision-making, and minimize equipment downtime.

D

Smart Maintenance Reminders

Technical Introduction

Transitioning from reactive repairs to predictive maintenance, the system combines local data with IoT integration to track real-time equipment operation. By analyzing usage metrics, it automatically predicts potential faults, generates service work orders, and issues proactive alerts to optimize routine servicing.

 

Technical Advantages

Data-driven predictive alerts eliminate maintenance oversight, transform reactive repairs into planned servicing, prevent premature component failure, and lower total operational costs.

Technical Introduction

Southtech’s Intelligent Control Systems serve as the digital brain spanning the entire lifespan of the glass tempering equipment, seamlessly integrating algorithm-based recipe temperature control, real-time hardware monitoring, and S-CLOUD IoT technology. The system enables digitalized centralized management of all process parameters with one-touch recipe execution, drastically reducing reliance on manual operator experience. Furthermore, with 24/7 monitoring of fan vibration and temperature, precise fault location, and cross-border remote maintenance via S-CLOUD, it drives a paradigm shift from reactive repairs to proactive predictive maintenance, delivering stable, efficient production with minimized unplanned downtime for global clients.

  • A
  • B
  • C
technical-bg

Recommended Chapters

Innovation Powers the Future of Glass Manufacturing! Southtech Wraps Up a Successful 2025 China Glass Expo

Technology Exhibition concluded successfully at the National Convention Center. As one of the world’s leading events for the glass industry, this year's show brought together global manufacturers, suppliers, technology innovators, and industry professionals to explore the latest trends shaping the future of glass production.

3mm Tempered Glass Mirror Stable Mass Production Solution

In recent years, high-end home furnishings, smart bathrooms, and lightweight transportation have put forward unprecedented new requirements for mirror glass. Safety and particle size must meet the standard - after crushing, it should form obtuse angle particles and comply with national standards; The thickness needs to be significantly reduced - from over 5mm to within 3mm, achieving overall lightweighting; The imaging quality cannot be compromised - it must be close to zero optical distortion.

Southtech 2025 Mid Year Marketing Conference successfully concluded, fully sprinting towards the second half of the year

Recently, the 2025 Mid Year Summary Conference of Southtech, with the theme of "Communication Breaking through Walls, Empowering Sprint in the Market", was successfully held in Wuhu, Anhui. The two-day conference brought a successful conclusion to the work in the first half of the year and clarified the direction for development in the second half of the year.

FAQ

  • Tempering must be completed prior to edge encapsulation (typically plastic injection molding). Plastics cannot withstand the ultra-high temperatures inside tempering furnaces. After tempering, the cleanliness, surface temperature and primer coating treatment of glass edges are critical factors that directly affect the adhesion and sealing performance of subsequent injection-molded encapsulation.

  • This is determined by both safety regulations and functional requirements. Windshields must stop occupants’ heads from being thrown out in collisions and retain partial visibility after breaking, hence laminated glass is used. Side and rear windshields need to be breakable to create escape access for rescue operations while avoiding flying sharp fragments, so tempered glass is the mainstream choice. Nevertheless, some high-end vehicles equip side windows with laminated or tempered-laminated glass to boost safety (penetration resistance, anti-theft performance) and sound insulation.

  • A sunroof is a movable component. When tempered glass breaks, it crumbles into granular pieces free of sharp angles, which effectively prevents vehicle occupants from being cut or struck by large glass shards.

Made With Heart Safe To Use

Contact Us