About
Innovation
How Our R&D Strategy Powers
Feminine Care Innovation
168
Patents
4
invention patents
100+
R&D personnal
30%
The proportion of senior R&D personnel is 30%

Teams at Kawada

The company continues to strengthen its R&D team, building a multinationaltalent pool that is multi-tiered, diverse, large-scale, and innovation-driven.As of now, our brilliant R&D team has developed 168 exclusive patents and 4invention patents under review or authorization, covering a wide range ofproducts.
Explore our technology
Online Make Thin Core
Online Make Thin Core
Kawada's Online Make Thin Core technologyenables the production of exceptionally thin pulp cores through dual-compression and gradient pulp distribution processes, delivering ultra-thinness, high absorbency, and lower costs compared to conventional composite paper cores.
Technology of Fabric Activation
Technology of Fabric Activation
During the production process, this technology enhances the surface material fibers to achieve a softer, fluffier texture, delivering a cotton-like tactile experience.
Technology of Core Puncture
Technology of Core Puncture
Advanced in-line perforation and channeling technologies accelerate liquid absorption while enhancing breathability and aesthetic appeal.
Dual-SAP Online Homogeneous Mixing Technology
Dual-SAP Online Homogeneous Mixing Technology
By blending two superabsorbent polymers (SAP), we optimize both absorption performance and cost efficiency, achieving a synergistic '1+1>2' effect that enhances functionality while reducing expenses.
Spotlight on Kawada
Air cushion sanitary pad
Air cushion sanitary pad
The air cushion sanitary pad core is different from traditional absorbent cores. It is a textile absorbent core that offers a brand-new experience.
Dual-Core Sanitary Pad
Dual-Core Sanitary Pad
Core A soaks up liquid right away, Core B keeps wetness in and stops leaks - all while staying paper-thin.
Double-Compressed Sanitary Pad
Double-Compressed Sanitary Pad
The ultra-thin wood pulp core is achieved through dual compaction and gradient wood pulp distribution processes.

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