List of byte products
- classification:byte
46~90 item / All 885 items
For those who have isolators. Achieving high chemical resistance and workability. Low cost and short delivery times are also possible for glove box and isolator gloves.
- Work gloves
Notice of participation in 'INTERPHEX Week Tokyo' from May 20 (Wednesday) to May 22 (Friday), 2026.
Ito Corporation will be exhibiting at "INTERPHEX Week Tokyo" held at Makuhari Messe. This exhibition is the largest in Japan, showcasing a wide range of products and services related to the research and manufacturing of pharmaceuticals, cosmetics, and regenerative medicine from 25 countries and regions around the world. Pharmaceutical and cosmetic manufacturers, as well as regenerative medicine companies, will be attending from all over the globe. We will be showcasing "Gloves for Glove Boxes/Isolators" manufactured by Tron Power. We look forward to your visit.
You can attach the EROWA company's centering plate and the System3R company's macro base holder to the bottom of the vice.
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You can attach the EROWA company's centering plate and the System3R company's macro base holder to the bottom of the vice.
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Wire cut clamp made of heat-treated stainless steel.
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Wire cut clamp made of heat-treated stainless steel.
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Wire cut clamp made of heat-treated stainless steel.
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Wire cut clamp made of sub-zero treated stainless steel after vacuum hardening.
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Adjustable wire cut vice that can be moved up and down, left and right, and forward and backward.
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Stainless steel wire cutting vise with leveling and parallel adjustment features, equipped with anti-lifting functionality.
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A wire cut vise that allows for easy workpiece referencing by adjusting the three axes after installation.
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Prevention of workpieces from lifting due to the 45° lockdown method.
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Prevents the workpiece from lifting due to the 45° lockdown method.
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A precision indexing table with minimal distortion after STAVAX was subjected to hardening and sub-zero treatment.
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The precision punch former, equipped with a single-function cutting feature, allows for the accurate fixation of polygonal punches, offering strong gripping power and excellent durability.
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A precision punch former that can accurately fix polygonal punches due to its single-function cutting capability, with strong gripping power and excellent durability.
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The ER collet-type punch former can accurately secure polygonal punches with its single-function indexing capability, offering strong gripping power and excellent durability.
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High-performance cutting is possible even with difficult-to-machine materials such as stainless steel and heat-resistant steel! An end mill that reduces cutting resistance without losing the rigidity ...
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There are many excellent achievements in the milling of various nickel-based alloys such as Inconel 718, Hastelloy X, Rene 41, and Waspaloy, which are heat-resistant alloys!
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Numerous processing achievements of Invar, Super Invar, stainless Invar, etc.! Contributing to longer lifespan!
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This is an end mill developed to also enable dry processing. Its cutting performance in dry environments is outstanding!
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Please use Falcon short end mills for heat-resistant alloys like Inconel, stainless steel, and difficult-to-machine materials in automatic lathe processing!
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Specialized in heat-resistant alloys! Through a special vibration-damping process, the impact of cutting resistance on tools is minimized to the extreme. This is effective for machining that requires ...
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Using the Falcon Wave end mill significantly reduces cutting resistance, enabling high-speed machining of titanium alloys.
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In continuous machining of SUS304 and 316, the feed rate is 800 to 1500 mm/min for outer circumference and trochoidal machining, with an astonishing lifespan of 50 hours!
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We want to significantly improve the processing conditions for difficult-to-cut materials! Here, we introduce a variety of tools specifically developed with Nisshin's passion for machining difficult-t...
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Tool life increased by over 20 times! Eliminate chip wrapping with sintered U breakers. For hole diameters φ4.0mm and above. Cutting tools by HORN.
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By wrapping tape around the outer circumference of the object being measured and ensuring it adheres closely, the outer diameter can be accurately measured in units of 0.01mm.
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By wrapping tape around the outer circumference of the object being measured and ensuring it is in close contact, the outer diameter can be accurately measured to an accuracy of 0.01mm.
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By wrapping tape around the outer circumference of the object being measured and ensuring it is in close contact, the outer diameter can be accurately measured to an accuracy of 0.01mm.
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By wrapping tape around the outer circumference of the object being measured and ensuring it adheres closely, the outer diameter can be accurately measured in units of 0.01mm.
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By wrapping tape around the outer circumference of the object being measured and ensuring it is in close contact, the outer diameter can be measured accurately to an accuracy of 0.01mm.
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By wrapping tape around the outer circumference of the object being measured and ensuring it adheres closely, the outer diameter can be accurately measured in units of 0.01mm.
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By wrapping tape around the outer circumference of the object being measured and ensuring it is in close contact, the outer diameter can be accurately measured in units of 0.01mm.
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By wrapping tape around the outer circumference of the object being measured and ensuring it is in close contact, the outer diameter can be accurately measured in units of 0.01mm.
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By wrapping tape around the outer circumference of the object being measured and ensuring it is in close contact, the outer diameter can be accurately measured to an accuracy of 0.01mm.
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By wrapping tape around the outer circumference of the object being measured and ensuring it adheres closely, it is possible to accurately measure the outer diameter in units of 0.01mm.
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By wrapping tape around the outer circumference of the object being measured and ensuring it is in close contact, the outer diameter can be accurately measured in units of 0.01mm.
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By wrapping tape around the outer circumference of the object being measured and ensuring it is in close contact, the outer diameter can be accurately measured in units of 0.01mm.
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By wrapping tape around the outer circumference of the object being measured and ensuring it adheres closely, the outer diameter can be measured accurately to an accuracy of 0.01mm.
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By wrapping tape around the outer circumference of the object being measured and ensuring it is in close contact, the outer diameter can be accurately measured in units of 0.01mm.
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By wrapping tape around the outer circumference of the object being measured and ensuring it adheres closely, the outer diameter can be measured accurately to an accuracy of 0.01mm.
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By wrapping tape around the outer circumference of the object being measured and ensuring it is in close contact, the outer diameter can be accurately measured in increments of 0.01mm.
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By wrapping tape around the outer circumference of the object being measured and ensuring it adheres closely, the outer diameter can be accurately measured in increments of 0.01mm.
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By wrapping tape around the outer circumference of the object being measured and ensuring it is in close contact, the outer diameter can be accurately measured in increments of 0.01 mm.
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