
MU R Series
The MU R Series, consisting of the MU R10 and MU R15, represents a new standard in medium-frequency converters for industrial automation and robotics applications. Designed for high performance and adaptability, the MU R Series offers manufacturers a powerful solution that balances precision, flexibility, and efficiency. In industries where reliability and consistency are non-negotiable, these converters deliver results that enhance both productivity and product quality.
Operating in the 20 kHz to 100 kHz frequency range, the MU R Series converters provide precise and repeatable heating for a wide variety of production processes. This range makes them ideally suited for medium-depth heating applications, where uniformity and energy efficiency are essential. From advanced robotics systems to complex automated manufacturing environments, the MU R10 and MU R15 ensure processes are carried out with exacting standards, cycle after cycle.
The series includes two models tailored to different operational needs. The MU R10 is designed for tasks with lower power requirements, making it ideal for smaller-scale or highly specialized applications. In contrast, the MU R15 offers additional power and capacity, supporting more robust and energy-intensive operations. By offering this range, the MU R Series enables businesses to choose the right fit for their production environment, whether precision-driven or large-scale.
One of the standout advantages of the MU R Series is its ability to guarantee consistent and reproducible results. In manufacturing, variations in heating can cause defects, wasted materials, or costly rework. With its focus on repeatability, the MU R Series minimizes these risks, ensuring that each operation delivers the same high-quality results. This consistency makes it invaluable in industries where strict quality standards and compliance requirements must be met without compromise.
Beyond reliability, the MU R Series is engineered for efficiency and seamless integration into modern automation and robotics systems. As manufacturing environments continue to evolve toward greater automation, the ability to incorporate converters without disruption becomes a key factor. Both the MU R10 and MU R15 integrate smoothly into existing systems, reducing downtime during setup and contributing to faster production cycles. This integration capability ensures that the MU R Series not only supports but actively enhances automated workflows.
A major contributor to the performance of the MU R Series is its microprocessor-controlled design. This technology allows operators to establish, monitor, and reproduce parameters with precision, ensuring stability in dynamic production environments. Whether a process requires minor adjustments or significant changes, the converters provide the flexibility to adapt while maintaining consistent output.
Energy efficiency is another defining feature of the MU R Series. By delivering heat exactly where it is required and minimizing unnecessary energy use, the MU R10 and MU R15 reduce overall power consumption. This efficiency translates into cost savings while also aligning with sustainability goals. For many organizations, adopting technologies that reduce energy waste is an important part of corporate responsibility, and the MU R Series supports this commitment by offering both high performance and environmental benefits.
The durability of the MU R Series ensures that it can withstand the demands of continuous use in challenging industrial environments. Built with robust materials and designed for long-term reliability, the MU R10 and MU R15 are not only efficient and precise but also resilient. This makes them a long-term investment, offering businesses confidence in their ability to maintain high levels of productivity without frequent equipment replacement or downtime.
In summary, the MU R Series medium-frequency converters—the MU R10 and MU R15—combine precision, flexibility, and efficiency to meet the needs of modern industrial automation and robotics. Their 20 kHz to 100 kHz operating range makes them suitable for diverse heating applications, while their microprocessor-controlled design ensures repeatability and stability. By reducing energy waste, improving quality, and integrating seamlessly into automated systems, the MU R Series empowers businesses to achieve sustainable productivity at scale. For companies aiming to enhance their automation and robotics capabilities, the MU R Series provides a reliable, future-ready solution.
- Frequency range: 20 kHz – 100 kHz
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Models: MU R10 and MU R15 medium-frequency generators within the MU R Series
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Reproducible parameters for consistent process control in the MU R Series
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Easy integration of MU R Series converters into industrial automation workflows
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Suitable for series resonant circuit applications across various industries
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Optimised for targeted, energy-efficient heating with MU R Series technology
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Designed for both standalone and fully automated systems using the MU R Series
The MU R10 and MU R15 converters are engineered for precision heating in industrial automation and robotics environments. Their versatility makes them ideal for:
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Heat treatment processes (hardening, annealing, tempering)
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Soldering and joining applications
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Forming and forging operations
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Surface treatment and pre-heating tasks
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Melting and sealing processes
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Automated and high-volume production lines requiring reliable frequency control
Equipped with advanced digital control, the MU R10 and MU R15 allow fast parameter adjustment and reproducibility across production runs. Their software is optimised for industrial automation, enabling smooth integration into robotics systems and ensuring streamlined process automation. The system’s intelligent configuration enhances both productivity and energy efficiency.
| Models | MU R10, MU R15 |
| Frequency range | 20 kHz – 100 kHz |
| Applications | Heat treatment, soldering, joining, forming, surface treatment, melting, sealing |
| Integration | Compatible with industrial automation and robotics systems |
| Control | Digital process control with reproducible parameters |
| Advantages |
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