Budget Application Catalog 2026 Latest Edition [For Budget Applications for Development and Research Funding!]
2026 Latest [Budget Application Catalog] Renewed for easier selection and comparison based on feedback from the field.
The latest budget application catalog from Yonekura Manufacturing has been completed. Based on feedback from the field, it has been revamped to be easier to select and compare. From considering new heating devices and experimental equipment to creating application forms, you can check the necessary information in the "shortest distance." Please make use of the latest catalog for this year's budget planning. <p>Experimental videos are available on the <a title="Yonekura Manufacturing Co., Ltd. Official YouTube" href="https://www.youtube.com/@yonekura_mfg_jp">official YouTube channel</a>.<br /><br /><span>For more details, please check each product page. We also welcome inquiries for customizations tailored to your tests, so feel free to contact us.</span></p>
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▼Lineup▼ High-Temperature Furnaces 1. Heating Observation Type "MHO-300-2" - Observe with your microscope! Optional cooling down to -100°C 2. Compact "IR-TPS" - In-situ observation at high temperatures (1500°C) with your microscope 3. Ultra High-Temperature Heating Type "IR-18SP" - Heats up to high temperatures (1800°C) 4. Compact "IR-TP" - Designed to enable various analyses 5. Wide-Range High-Temperature Type "IR-QP" - Wide heating range in the IR series, heats up to high temperatures (1700°C) 6. Wide-Range Type "IR-HP" - Wide heating range in the IR series, suitable for heating plates, wafers, substrates, etc. 7. Wide-Range High-Temperature Type "IR-HQ" - Higher model of IR-QP. Heats up to high temperatures (1800°C) 8. Large Area "IR-OP" - For simulating various heating conditions 9. Long-Length Large Area "IR-HP5" - Features a specially designed long-length heating lamp Ultra High-Temperature Laser Microscope System 10. "VL3000DX-SVF18SP" - High-resolution in-situ observation. Heats up to high temperatures (1800°C) Tensile Compression Mechanism 11. "CATY-T3H" - Simultaneous high temperature, tensile compression, and in-situ observation Atmosphere-Controlled High-Temperature Testing Device 12. "CATY-T3V" - Heating section slides for easy sample exchange
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For details, please check each product page. We also accept inquiries for customization tailored to your exam, so feel free to contact us.
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Applications/Examples of results
▼IR Series Features▼ The "IR Series" concentrated heating furnace achieves rapid temperature rise of approximately 50℃/sec and high-precision temperature control of ±1℃ through high-speed PID control. Its vacuum chamber structure accommodates various atmospheres such as high vacuum, inert gas, reduction, and humidification. Compact and requiring no preheating, it allows for easy experimentation, and with the addition of an observation mechanism, changes in the sample during heating can be observed in real-time. The absence of insulation materials results in minimal particle generation, making it suitable for clean environments. ▼MHO-300-2 Features▼ This heating and cooling stage can be easily attached to microscopes and allows for observation at temperatures ranging from -100 to 300℃. With dedicated software, temperature control and video recording are possible, achieving a temperature rise of 100℃ in just one minute. Its compact and slim design accommodates various analytical devices. The vacuum chamber structure enables heating and cooling in vacuum or inert gas atmospheres, and sample exchange is made easy with degassing exhaust and an XY slide-type holder.
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Mikyo Manufacturing provides a consistent production system that develops, designs, manufactures, and supports testing machines and measurement devices tailored to the objectives and applications of customers in fields such as material research and development, as well as in accordance with material testing standards and methods. The testing machines that respond to requests from various major manufacturers and research institutions are mostly customized products. When measuring the durability of new materials, they are completely made-to-order. We also pay attention to the "usability," which varies depending on the installation location and users, and we adjust the testing machines to ensure they are optimal for each customer.





