List of Testing Equipment and Devices products
- classification:Testing Equipment and Devices
271~285 item / All 7097 items
It won't break even after 1 million repetitions! A mat switch with reliable operation, high durability, and low price. Suitable for options in machine tools as well. Please consult us about delivery t...
- Sensors
We can accommodate high resistance over 10,000 ohms, with diameters ranging from approximately 30 mm to 8 inches, and we also offer thinning and chip processing arrangements!
- Other semiconductors
- Processing Contract
- Wafer
It is designed to measure the biodegradability of a wide range of materials, including bioplastics.
- Testing Equipment and Devices
Opening up the material behavior under high-temperature stress of MAX1400℃ through in-situ micro-observation [CATY-T3H]
- Strength Testing Equipment
Catalog for Budget Application for High-Temperature Heating Furnaces / For budget applications such as development and research expenses
We have lined up the heating observation devices and IR image furnaces from Yokokura Manufacturing, used by various research institutions around the world. ▼ Product 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" - On-site 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" - Offers a wide heating range in the IR series, heating up to high temperatures (1700°C). 6. Wide-Range Type "IR-HP" - Offers a wide heating range in the IR series, suitable for heating plates, wafers, substrates, etc. 7. Wide-Range High-Temperature Type "IR-HQ" - A higher model than 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" - Utilizes specially designed long-length heating lamps. Please check the individual product pages for more details. We also welcome inquiries for customizations tailored to your testing needs, so feel free to contact us.
Sharpie adopts a single-blade chip exchange system for the Izot shock test, achieving cost reduction.
- Testing Equipment and Devices
Easily detects invisible fine surface defects, cracks, and pinholes in all materials!
- Flaw detection testing
Easily detects invisible fine surface defects, cracks, and pinholes in all materials!
- Flaw detection testing
A high-reliability oxidation furnace that allows for free control of the dew point using a bubbling method, capable of heating while flowing gas containing water vapor.
- Testing Equipment and Devices
- Heating device
Real-time observation of ultra-high temperatures! A system that enables high-speed heating and cooling, allowing for the observation and recording of behavioral changes in real-time to fulfill your de...
- Testing Equipment and Devices
Experience high-temperature measurements up to 1700℃ and experiments under controlled atmospheric conditions! We invite you to try high-temperature observations using the demo unit from the IR series, which represents Yonezawa Manufacturing, including heating, atmospheric control, and oxidation experiments.
- Metal / Filler Material / Ceramic / Solder / Glass, etc. - This measurement allows you to experience high-temperature observation using a demonstration unit of the "IR Series" concentrated heating furnace, which represents the test equipment manufacturer Yokokura Seisakusho. Due to its sealed structure, the IR Series furnace can achieve a maximum temperature of 1700°C under controlled atmospheric conditions, as in the case of the IR-18SP. You can capture real-time changes in the test subject by checking videos of actual experiments and the test program. *Please note that the equipment used is a demonstration unit, and we may not be able to accommodate requests depending on the circumstances, so please contact us for details. *There may be variations depending on the thermal capacity of the test specimen. ▼ Features of the IR Series ▼ The rapid heating performance and superior temperature control, along with information from the observation port, significantly shorten heating experiment times and facilitate the screening of optimal heating conditions, contributing to improved efficiency in material development tasks.
Using the IR series high-temperature observation furnace for demonstrations: <<Heating/Atmosphere Control/Oxidation Experiments>> Metals/Solders/Ceramics/Solder/Glass, etc.
- Testing Equipment and Devices
- Other inspection equipment and devices
- Heating device
Experience high-temperature measurements up to 1700℃ and experiments under controlled atmospheric conditions! We invite you to try high-temperature observations using the demo unit of the IR series, which represents Yonezawa Manufacturing, including heating, atmospheric control, and oxidation experiments.
- Metals / Filler materials / Ceramics / Solder / Glass, etc. - This measurement allows you to experience high-temperature observation using a demonstration unit of the "IR Series" concentrated heating furnace, which represents the test equipment manufacturer, Yokokura Seisakusho. Due to its sealed structure, the IR Series furnace can achieve a maximum temperature of 1700°C under controlled atmospheric conditions, as in the case of the IR-18SP. You can capture real-time changes in the test subject by checking videos of actual experiments and the test program. *Please note that the equipment used is a demonstration unit, and we may not be able to accommodate requests depending on the circumstances, so please contact us for details. *There may be variations depending on the thermal capacity of the test specimen. ▼Features of the IR Series▼ The rapid heating performance and superiority in temperature control, along with information from the observation port, significantly shorten heating experiment times and facilitate the screening of optimal heating conditions, contributing to improved efficiency in material development tasks.