This is a sample holder unit designed to be set up in the sample chamber of a spectrophotometer to measure the transmittance (optical properties) of glass materials.
This is a sample holder unit designed to be set up in the sample chamber of a spectrophotometer to measure the transmittance (optical properties) of glass materials. By turning the handle at hand, it is possible to move the sample position away from the measurement position (toward the back of the device). Additionally, a counter is attached to the shaft, allowing for easy positioning by reading the scale. The angle of the sample can be finely adjusted by micro-adjusting the rotating stage at the bottom of the sample holder.
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basic information
This is a sample holder unit designed to be set up in the sample chamber of a spectrophotometer to measure the transmittance (optical properties) of glass materials. By turning the handle at hand, it is possible to move the sample position from the measurement position (approximately 100mm towards the back of the device). Additionally, a counter is attached to the shaft, allowing for easy positioning by reading the scale. The angle of the sample can be finely adjusted by micro-adjusting the rotating stage at the bottom of the sample holder (0.38° per rotation of the micrometer head).
Price information
Reference price: ¥~500,000 (custom orders negotiable)
Price range
P3
Delivery Time
※Depending on the specifications, the delivery date may vary. Please feel free to contact us.
Applications/Examples of results
Material transmittance measurement for spectrophotometer use.
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We realize a creative system from the design and development stage to manufacturing, centered around the theme of "products that customers demand," and we are also committed to flexible manufacturing as a pioneer of specialized products. On the other hand, we are actively expanding our exports overseas, focusing on sales to countries such as the United States and Germany. Moving forward, we will anticipate increasingly diverse technologies and engage in product development for laser application peripheral devices, prioritizing S (Speed), Q (Quality), and C (Cost) to provide reasonable products.