High-performance tooling designed to optimize chip removal, maximize tool life, and deliver exceptional finish quality across diverse substrates.
Founded in Jinan, China, Jinan Deepit Cutter Co., Ltd. has established itself as an industry-leading manufacturer specializing in the research, development, engineering, and global servicing of CNC cutting and routing systems. By concentrating our expertise on both non-metal substrates—such as leather, advanced textiles, technical composites, and foam boards—and industrial metals, we address the highly complex manufacturing demands of the automotive, aerospace, footwear, commercial advertising, and recycling sectors.
With an active R&D ecosystem that has generated more than 150 patents, we deliver customized, high-precision engineering solutions to 81 countries worldwide. Our customer-centric approach guarantees that every machine operates with the highest efficiency, stability, and reliability in intensive production environments.
Optimizing manufacturing yields and material efficiency through specialized CNC configuration and advanced carbide tooling.
In modern high-speed manufacturing, selecting the correct routing tool geometry and machine parameters is critical to preventing material deformation, thermal degradation, and structural stress. Jinan Deepit Cutter Co., Ltd. develops systems integrated with high-precision oscillating tools, pneumatic knife modules, and PCD (Polycrystalline Diamond) milling cutters that solve localized stress and thermal challenges across diverse applications:
A deep look inside our advanced manufacturing facility, where raw chemical powders are compacted, vacuum sintered, and converted into industrial tools.
Our vertical manufacturing integration allows us to oversee every step of the tool lifecycle. From raw tungsten carbide mixing to final vacuum sintering and quality inspection, we maintain complete control over metallurgical properties, dimensional accuracy, and structural performance. This complete production control reduces tool wear variability and provides our global buyers with highly predictable performance.













Integrating smart sensors, advanced coatings, and automation into modern CNC operations.
The industrial cutting field is transitioning from manual machinery to autonomous, data-driven systems. To address these demands, our R&D roadmap focuses on three technological key areas:
1. Ultra-Performance Coatings: We are testing nano-crystalline diamond (NCD) and advanced physical vapor deposition (PVD) variants to improve thermal barrier properties, increasing blade and cutter lifespans when cutting glass-reinforced composites.
2. Smart Oscillating Blades (EOT-Smart): Developing sensor-integrated cutting heads that monitor resistance, temperature, and vibration in real-time. This allows the CNC system to automatically adjust feed rate and oscillation frequency, preventing material damage.
3. Advanced Automation: Working with our international partners to integrate machine vision and automated nesting algorithms, reducing material waste and processing times.
Reducing lead times and ensuring technical compliance for high-production manufacturing operations.
For international buyers, machinery procurement requires careful planning around equipment compatibility, shipping times, and compliance with local industrial standards (such as CE, UL, and RoHS). Jinan Deepit Cutter Co., Ltd. streamlines this process with established support infrastructure:
Every CNC system is shipped with comprehensive user manuals, detailed electrical schematics, CE certification records, and processing documentation. This transparent data packaging helps your local safety engineers complete installation and certification checks quickly.
We provide a dedicated technical support system, including 24/7 online technical help, a 3-year warranty covering critical parts, and a customer service team fluent in English. If issues cannot be resolved remotely, we can arrange for regional field service engineers to assist with setup, training, or repairs on-site.
Expert technical insights to help you choose the right tooling and optimize machine throughput.
The choice depends on material abrasiveness and production volume. Solid Carbide tools are cost-effective for short-to-medium runs in non-ferrous metals, plastics, and wood. PCD (Polycrystalline Diamond) tools are recommended for highly abrasive composites, such as carbon fiber and fiberglass, as well as high-volume wood and plastic operations. While PCD has a higher initial cost, its lifespan is up to 50 times longer than carbide under identical conditions, providing a lower cost-per-part and reduced tool change downtime.
An Electric Oscillating Tool (EOT) uses a motor to generate rapid vertical strokes, making it ideal for processing multi-layered materials, low-density foam, and rubber with high detail. A pneumatic knife uses compressed air to deliver high-torque, high-speed cutting forces. Pneumatic systems are better suited for thick, dense substrates (such as thick gasket materials or heavy leather) where consistent cutting force is required to prevent material binding.
Micro-cracking is prevented using precise temperature profiles during our vacuum sintering process. Our computer-controlled sintering furnaces slowly heat the compacted powder mixture to its liquid phase temperature. This allows the cobalt binder to distribute evenly around the tungsten carbide grains. The cooling rate is then controlled to minimize internal thermal stress, resulting in high fracture toughness and a uniform tool structure.
Our heavy-duty shredders use low-speed, high-torque rotor designs combined with specialized cutting geometries. This mechanical setup minimizes heat generation through friction, preventing polymers (like PE and PP) from softening or melting onto the blades. On high-throughput models, integrated water-cooling jackets can be added to maintain safe operating temperatures during continuous shifts.
Yes. Although designated as a woodworking system, the 1325 platform can be configured with dual-head modules, mist coolant systems, and variable frequency spindles (up to 24,000 RPM). This allows it to process acrylics, PVC boards, aluminum composites, and structural foams. Our engineering team can customize dust extraction hoods and vacuum table zoning to suit the specific material mix of your facility.
Heavy-duty hardware built for durability, efficiency, and continuous production cycles.