External electrode coating both-terminal (dip) coating device
CMD Series
Ideal for external electrode coating of capacitors, inductors, varistors, and thermistors! Mass production possible in 0201 mm! Equipped with unique helical blot technology!
We have newly adopted a variety of blot processes to improve the application shape. It is possible to achieve uniform film thickness (corner film thickness) for reliability enhancement in automotive, large-capacity AI servers, and smartphones. - Precise control of operations at the micron (μm) level. - Realization of diverse recipes through five types of blotting operation patterns (vertical, horizontal, inclined, arc, helical). - Various process support such as setting application conditions. - Production of application samples. [NEW] A new high-precision specification that enables even more precise application control has also been introduced. - A safety specification that promises greater safety for operators. - The behavior of electrode formation can be confirmed using an observation camera. - There is a function for measuring electrode width using a high-precision camera. *For more details, please feel free to contact us.
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basic information
■Adopts a manual batch coating method ■Supports Paloma-style carrier plates, jig plates, adhesive plates, and other customer requests. ■Improves equipment rigidity for uniform coating across the surface. ■Provides various jigs such as peripheral equipment for the coating device (transfer machines, loading machines, recovery machines, dryers), and load plates. ■Not only maintenance services but also capable of servicing and overhauling coating devices from other manufacturers. *For more details, please feel free to contact us.*
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Applications/Examples of results
Passive components, MLCC, MLCI, LTCC, HTCC, resistors, thermistors, varistors, ceramic capacitors, bonding capacitors, embedded type, low-profile products, thin-type capacitors, arrays, multi-terminal, multi-layer, ultra-small MLCC 0201 mm.
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One of the key technologies for achieving carbon neutrality is next-generation batteries, along with nanoscale functional particles with various capabilities, the proliferation of 5G and 6G communication systems and environmentally friendly vehicles, and the advancements in advanced driver-assistance systems (ADAS). There is a growing expectation for our coating technology in various fields of society, including passive components such as MLCCs, which require miniaturization and high reliability, high-quality healthcare through digital transformation (DX), and medical devices advancing with AI and digitalization.