OMNIBUS Technical Regulation, OTR 2024
OTR registration BIS link for Indian Manufacturers
Steps for Preregistration under the Omnibus Technical regulation (OTR) for Indian Manufacturers
OTR registration BIS link for Foreign Manufacturers
Notification by Bureau of Indian Standards in The Times of India, Bengaluru,
April 01 2025
Notification by Bureau of Indian Standards in The Times of India, Bengaluru,
April 02 2025
Machinery and Electrical Equipment Safety (OTR) Amendment Order 2025
User Manual for OTR Machinery Registration and Application Submission
User OTR Webinar Flyer, September 02 2025
PPT on "Application Submission for OTR under Scheme X" presented by BIS on 2-Aug-2025
Wherever straight edges are needed, LMT Fette makes precise 90° face milling possible – with Univex Premium, which works on steel, cast iron, stainless steel and non-iron materials. Univex Premium milling cutters have outstanding machining properties:
They work precisely, smoothly and allow the machine to operate with a low power consumption. This means high productivity and excellent processing safety. Wide range of cutter bodies and indexable inserts – beneficial for your production.
The wider range of milling cutters featuring the new Univex Premium from LMT Fette now offers cutter bodies in three designs:
Higher feed rates are achieved, thanks to the large number of teeth. The highly positive geometry and uneven pitch ensure a soft cut and smooth run. Extra-long end mills are suitable for work with particularly deep throats. All Univex Premium cutters are also equipped with internal coolant supply and coated with a protective layer on the surface. This protects the cutter bodies from wear and ensures their long tool lives. Equipped with high positive inserts, they allow deep cuts up to 16.5 mm.
For machining of steel, cast iron, stainless steel and non-iron materials, LMT Fette offers a wide range of indexable inserts in four sizes and different corner radii.
The indexable inserts are available in both precision-sintered and ground versions. They benefit from wear-resistant substrates and produce excellent surface qualities.
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