Amada Miyachi Europe offers robot dispensing systems that dramatically boost productivity
Amada Miyachi Europe announces that it offers a range of robot dispensing system options that can be fully customized for use in the automotive, electronics and solar cells, information technology and multimedia, medical, aerospace, and defence industries. Amada Miyachi Europe combines its standard desktop XYZ fluid dispensing systems with high precision, user-friendly JANOME Industrial Equipment desktop robots that can dramatically boost productivity.
Amada Miyachi Europe announces that it offers a range of robot dispensing system options that can be fully customized for use in the automotive, electronics and solar cells, information technology and multimedia, medical, aerospace, and defence industries. Amada Miyachi Europe combines its standard desktop XYZ fluid dispensing systems with high precision, user-friendly JANOME Industrial Equipment desktop robots that can dramatically boost productivity.
To meet the demands of accuracy, speed, flexibility and cost-efficiency, Amada Miyachi Europe offers a complete line of products and solutions that can process materials with a viscosity of 1 millipascal-second (mPa·s) (water) to 500.000mPas correctly and accurately. Available options include single component positive displacement dispensing, single component time/pressure dispensing, two component dispensing, and jet dispensing.
Combining JANOME Industrial Equipment robots with Amada Miyachi Europe dispensing products, Amada Miyachi Europe provides customized application-specific solutions for solder paste dispensing, as well as adhesive dispensing for speakers and lamps, gluing, dispensing silicone for gasketing, spraying lubrication material, and many more.
The high precision, user-friendly, JANOME desktop robots provide companies with a solid platform to implement multiple dispensing solutions for manufacturing. Dialog-based operating software makes programming easy. The robot easily performs 3-dimensional linear and arc interpolations with positional repeatability of +- 0.01mm.