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This shortage is being seen in both the airline and the cargo industries.
「enovate3D」,as the first company incubated from the School of Engineering at West Lake University, the team has pioneered industry-leading micron- and sub-micron-level ultra-high-precision electronic additive manufacturing technology, providing customers with customized electronic additive manufacturing solutions. The team’s independently developed 1-10 μm precision electronic additive equipment, coupled with an advanced functional material system, enables precise 3D additive manufacturing of dozens of high-performance conductive metals, polymer and ceramic-based dielectric materials, as well as optical and magnetic materials.
The team’s additive solutions target industrial-scale mass production needs, serving current and next-generation mainstream integrated circuit systems. Their products and solutions have been deployed across display, semiconductor packaging, and lithium-ion battery sectors, accumulating over ten industry-leading clients.
The company implements a full-chain strategy encompassing printing materials, equipment, and processes. Its interdisciplinary R&D team possesses extensive experience in precision 3D printing materials, automated equipment, 3D integration technology, and electronic industry development and mass production.
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「enovate3D」,as the first company incubated from the School of Engineering at West Lake University, the team has pioneered industry-leading micron- and sub-micron-level ultra-high-precision electronic additive manufacturing technology, providing customers with customized electronic additive manufacturing solutions. The team’s independently developed 1-10 μm precision electronic additive equipment, coupled with an advanced functional material system, enables precise 3D additive manufacturing of dozens of high-performance conductive metals, polymer and ceramic-based dielectric materials, as well as optical and magnetic materials.
The team’s additive solutions target industrial-scale mass production needs, serving current and next-generation mainstream integrated circuit systems. Their products and solutions have been deployed across display, semiconductor packaging, and lithium-ion battery sectors, accumulating over ten industry-leading clients.
The company implements a full-chain strategy encompassing printing materials, equipment, and processes. Its interdisciplinary R&D team possesses extensive experience in precision 3D printing materials, automated equipment, 3D integration technology, and electronic industry development and mass production.
「enovate3D」, the first spin-off venture from Westlake University’s School of Engineering, delivers cutting-edge customized solutions in electronic additive manufacturing (AM) through our proprietary micrometer-scale ultra-high-precision 3D printing technology. Our self-developed AM systems achieve 1–10 μm feature resolution, enabling the fabrication of ultraprecise 3D architectures using diverse functional materials such as conductive metals, polymer/ceramic dielectrics, optical and magnetic materials.
We provide end-to-end solutions for industrial 3D printing systems, covering advanced materials development, precision equipment manufacturing, and process optimization. Key applications include displays, advanced packaging, and lithium-ion batteries.
Industry-first micron-level multi-material electronic additive manufacturing system, featuring an expandable high-precision production platform, precision fluid control technology for multi-material systems, and one-stop intelligent additive software.
Over 100 types of high-performance conductive metals, polymers, and composite dielectric materials to meet diverse functional product requirements.
Multi-material, multi-module printing process with exceptional adaptability. Primarily employs micro-nano direct-write printing technology with precision up to 1 μm.

Utilizes proprietary nano-scale functional inks and micro/nano direct-write additive manufacturing technology to achieve three-dimensional forming of high-performance functional materials—including metals, polymers, and composites—with feature sizes as small as 1 μm.

Specifically engineered for next-generation display technologies, supporting novel display products such as OLED and MLED.

Proprietary nanomaterial systems ensure conductive/semiconductor/insulating/optical properties, enabling high-precision patterned deposition and high-aspect-ratio structure formation through rheological design.
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FOUNDER
CO-FOUNDER
CCO
CFO
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This shortage is being seen in both the airline and the cargo industries.

This shortage is being seen in both the airline and the cargo industries.

This shortage is being seen in both the airline and the cargo industries.