Precision Craftsmanship with Remeya
Experience flawless CNC machining tailored for perfection.
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Deliver the most ideal cnc cutting machine
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Production Challenges? Solve them with Digital Cutting.
High Material Waste?
Manual cutting limits yield. Our CNC knife cutter intelligent nesting saves up to 30% on materials.
Skilled Labor Shortage?
Reduce dependency on manual labor. One digital flatbed cutter does the work of 3-5 workers.
Production Bottlenecks?
Slow output hurts delivery. Switch to high-speed oscillating knife technology for 24/7 continuous production.
Unreliable Quality?
Stop rejecting parts. Achieve 0.1mm precision on every cut with our automated CNC system.
REMEYA’s CNC Oscillating Knife Solutions
Maximize Every Inch
Our proprietary software drives the digital cutter to optimize material usage automatically.
Automate & Empower
From auto-feeding to cutting, our CNC oscillating knife machine streamlines your entire workflow.
Boost Your Throughput
Equipped with Japanese servo motors, our flatbed cutters deliver industry-leading speed and stability.
Achieve Perfect Consistency
Whether cutting gaskets or foam, the oscillating blade ensures smooth, clean edges without burning.
Our capabilities are anchored by a state-of-the-artequipment production base and technology R&D centerin China.
Application industry of Intelligent cutting
Application industry of Intelligent cutting
Application fields of CNC cutting machines
About REMEYA
Welcome to REMEYA Smart Cutting Systems Inc. We’re not just a CNC cutting machine manufacturer—we’re your strategic partner on the path to automated production, greater efficiency, and stronger profitability. Get to know our story, our dedication to quality, and how we help clients across more than 100 countries stay competitive and future-ready.
Why Choose REMEYA?
More Than a Machine, It’s a Guarantee.
We Are the Factory, Not a Trader
Get direct access to the engineers who build your CNC oscillating knife cutter. No middleman markups, just factory-direct quality and expertise.
Premium Components, Fair Price
Our digital cutters are built with world-class parts like Japanese Panasonic Servo Motors and Taiwanese Guide Rails, ensuring your machine runs smoothly for years.
Lifetime Online Support
We don’t just sell cutting machines; we sell production security. Our English-speaking technical team provides lifetime support for your REMEYA CNC cutter.
Latest News

How to Cut Carpet with a CNC Oscillating Knife Cutting Machine
Carpet is a common flooring material, but cutting carpet accurately is not always as simple as it looks. Straight cuts can be relatively easy for a trained operator. The challenge becomes much greater when production involves irregular shapes, repeated patterns, custom dimensions, carpet tiles, vehicle flooring, exhibition flooring, or large numbers of different parts. Traditional carpet knives and manual cutting tools can work well for simple jobs. However, they rely heavily on operator skill and usually require more manual work when the number of shapes and orders increases. A CNC oscillating knife cutting machine provides a digital alternative. Instead of

How to Cut Upholstery Fabric with a CNC Oscillating Knife Cutting Machine
Upholstery fabric may look simple to cut, but producing consistent parts at scale is a very different challenge from cutting a single piece by hand. Furniture manufacturers, automotive suppliers, interior-product manufacturers, and upholstery workshops often need to cut the same pattern in different sizes while maintaining accurate dimensions and minimizing material waste. Traditional scissors, rotary cutters, and manual templates can work for low-volume production. However, as the number of patterns, product variations, and daily orders increases, manual cutting can become slow and difficult to control. A CNC oscillating knife cutting machine provides a digital alternative. Instead of using a physical

How to Cut Felt with a CNC Oscillating Knife Cutting Machine
Felt is a surprisingly versatile material. It is used for acoustic panels, furniture components, industrial pads, protective liners, automotive interiors, displays, packaging, insulation products, and many custom-made parts. The challenge is that felt does not behave exactly like ordinary fabric. Depending on the material structure, thickness, density, and fiber composition, felt can compress during cutting, move under the knife, leave rough edges, or produce dimensional variations when it is processed manually. For manufacturers producing different shapes, sizes, and designs, a CNC oscillating knife cutting machine can provide a much more repeatable way to process felt sheets and rolls. Instead of

How to Cut EVA Foam with a CNC Oscillating Knife Cutting Machine
EVA foam is widely used for packaging inserts, footwear components, protective padding, automotive parts and custom industrial products. However, cutting EVA foam accurately is not as simple as cutting a rigid sheet. The material can compress, stretch, deform or produce uneven edges when the wrong cutting method is used. For manufacturers producing different shapes, small batches or custom foam parts, choosing the right cutting process is an important production decision. A CNC oscillating knife cutting machine provides a digital cutting solution for many EVA foam sheet applications. Instead of using heat, the machine uses a vibrating blade to follow a

How to Cut Carpet with a CNC Oscillating Knife Cutting Machine
Carpet is a common flooring material, but cutting carpet accurately is not always as simple as it looks. Straight cuts can be relatively easy for a trained operator. The challenge becomes much greater when production involves irregular shapes, repeated patterns, custom dimensions, carpet tiles, vehicle flooring, exhibition flooring, or large numbers of different parts. Traditional carpet knives and manual cutting tools can work well for simple jobs. However, they rely heavily on operator skill and usually require more manual work when the number of shapes and orders increases. A CNC oscillating knife cutting machine provides a digital alternative. Instead of manually tracing and cutting each shape, manufacturers can import a digital drawing, arrange multiple parts on the material, and let the CNC knife follow the programmed cutting paths. This makes digital carpet cutting particularly useful for custom flooring, automotive interiors, modular carpet products, exhibitions, commercial spaces, and manufacturers handling multiple carpet designs. Why Is Carpet Difficult to Cut? Carpet is not one single type of material. Different carpet products may contain: The cutting behavior can therefore vary significantly. The operator may need to consider both the carpet surface and the backing material. Some of the main challenges include: A suitable

How to Cut Upholstery Fabric with a CNC Oscillating Knife Cutting Machine
Upholstery fabric may look simple to cut, but producing consistent parts at scale is a very different challenge from cutting a single piece by hand. Furniture manufacturers, automotive suppliers, interior-product manufacturers, and upholstery workshops often need to cut the same pattern in different sizes while maintaining accurate dimensions and minimizing material waste. Traditional scissors, rotary cutters, and manual templates can work for low-volume production. However, as the number of patterns, product variations, and daily orders increases, manual cutting can become slow and difficult to control. A CNC oscillating knife cutting machine provides a digital alternative. Instead of using a physical template for every shape, the manufacturer can prepare a digital pattern, arrange multiple pieces through nesting software, and use the CNC system to guide the knife along the programmed cutting paths. This approach can be especially useful for custom upholstery, short production runs, prototypes, multiple SKUs, and manufacturers that need a flexible fabric-cutting workflow. Why Is Upholstery Fabric Difficult to Cut Accurately? Fabric is flexible. Unlike rigid sheet materials, it can move, stretch, fold, or shift during cutting. Different upholstery fabrics can also behave very differently depending on their construction. Common materials include: The main challenge is not simply getting

How to Cut Felt with a CNC Oscillating Knife Cutting Machine
Felt is a surprisingly versatile material. It is used for acoustic panels, furniture components, industrial pads, protective liners, automotive interiors, displays, packaging, insulation products, and many custom-made parts. The challenge is that felt does not behave exactly like ordinary fabric. Depending on the material structure, thickness, density, and fiber composition, felt can compress during cutting, move under the knife, leave rough edges, or produce dimensional variations when it is processed manually. For manufacturers producing different shapes, sizes, and designs, a CNC oscillating knife cutting machine can provide a much more repeatable way to process felt sheets and rolls. Instead of using a fixed metal die for every shape, the operator can load a digital drawing, position the material on the cutting table, and let the CNC knife follow the programmed toolpath. This makes CNC felt cutting particularly useful for custom orders, short production runs, prototypes, and products with many different designs. Why Is Felt Difficult to Cut? Felt looks simple, but its internal structure can make cutting more complicated than expected. Unlike woven fabric, many felt products are formed from compressed or bonded fibers. This means the material may behave differently depending on its density and construction. Several factors can

How to Cut EVA Foam with a CNC Oscillating Knife Cutting Machine
EVA foam is widely used for packaging inserts, footwear components, protective padding, automotive parts and custom industrial products. However, cutting EVA foam accurately is not as simple as cutting a rigid sheet. The material can compress, stretch, deform or produce uneven edges when the wrong cutting method is used. For manufacturers producing different shapes, small batches or custom foam parts, choosing the right cutting process is an important production decision. A CNC oscillating knife cutting machine provides a digital cutting solution for many EVA foam sheet applications. Instead of using heat, the machine uses a vibrating blade to follow a programmed cutting path. This article explains how to cut EVA foam, what affects cutting quality, and how to choose a suitable CNC foam cutting machine. What Is EVA Foam? EVA stands for ethylene-vinyl acetate. It is a lightweight, flexible foam material used in many manufacturing applications. Common EVA foam applications include: EVA foam is available in different densities, thicknesses, surface finishes and formulations. These differences can significantly affect how the material behaves during cutting. For this reason, a cutting method that works well for one EVA foam may not produce the same result on another. Why Is EVA Foam Difficult

Oscillating Knife vs Laser Cutting for Flexible Materials: Which Is Better?
When manufacturers need to cut flexible and semi-rigid materials, two technologies are often compared: laser cutting and CNC oscillating knife cutting. Both can produce complex shapes directly from digital files, but they work in fundamentally different ways. A laser cuts by concentrating heat onto the material. An oscillating knife uses a mechanically vibrating blade to physically cut through the material. For materials such as leather, foam, fabric, rubber, gasket sheets, felt, honeycomb board and certain composite materials, this difference can have a major impact on edge quality, material behavior, production cost and the final application. So which technology is better? The answer depends on the material, thickness, required edge quality, production volume and application. This guide explains the key differences between oscillating knife cutting and laser cutting and helps manufacturers choose the right cutting technology for flexible materials. What Is an Oscillating Knife Cutting Machine? An oscillating knife cutting machine is a CNC digital cutting system that uses a rapidly moving blade to cut materials. Instead of applying heat, the blade moves up and down at high frequency while the CNC system controls the X and Y movement according to a digital cutting file. The result is a mechanical cold-cutting

Choosing a Digital Flatbed Cutter: 5 Truths That Save You from Regret
In a workshop that handles flexible materials, the real cost isn’t the machine’s price tag—it’s the six months of downtime, rework, and scrapped sheets that follow a bad purchase. Sales brochures boast “120 m/min speed,” “±0.05 mm accuracy,” and “cuts up to 120 mm thick.” But those numbers rarely translate to reliable production. I’ve seen too many factories buy a machine that looks great on paper but can’t produce a clean edge on 25 mm EVA foam. Selecting a cutter isn’t about buying a sports car; it’s about buying work boots—solid, durable, and made for your specific floor. Here are five hard-earned lessons to guide you. 1. Don’t Ask “What Can It Cut?” — Ask “How Does It Finish?” The first question most buyers ask is: “Can it cut foam?”The better question is: “Will my foam have a fuzzy or melted edge?” Materials are not one-size-fits-all. EPE foam is light and springy; EVA foam is dense and heat-sensitive. An oscillating knife that glides through EPE may burn or powder EVA if the amplitude and frequency aren’t tuned. Corrugated board has flutes—cutting across them versus along them changes resistance entirely. Crease quality matters just as much as cutting; a poor crease
FAQ
What technical support and training does REMEYA provide?
Jinan REMEYA Smart Cutting Systems Inc provides comprehensive technical support including machine installation, operator training, software setup assistance, and ongoing technical consultation. Our experienced engineers offer remote support and on-site service when needed. REMEYA also provides detailed operation manuals, video tutorials, and regular software updates to ensure optimal machine performance.
What materials can a CNC knife cutter process?
It can process leather, fabric, foam, rubber, corrugated board, honeycomb board, carbon fiber prepreg, and gasket materials. It is generally not for metal (unless using a specific router bit for thin soft metals).
Do you provide nesting software?
Yes, our machines are compatible with major CAD/CAM software and come with intelligent nesting software to maximize material utilization.
What advertising materials can REMEYA digital cutters process?
REMEYA advertising cutting machines can cut KT board, Chevron board, PVC foam board, acrylic, paper, vinyl, stickers, reflective film, magnetic sheets, corrugated and honeycomb board.
Different tools and settings are used to match the thickness and properties of each material.
How does the CCD camera improve print-and-cut quality?
The CCD camera reads registration marks on printed sheets and automatically adjusts the cutting path to match the print.
This ensures accurate contour cutting around graphics, reducing misalignment and manual rework.
Can the machine replace manual trimming in our sign shop?
Digital advertising cutters can take over most manual knife cutting and trimming tasks for boards and printed films, significantly improving speed and consistency.
Operators only need to load the material and start the job, while the machine completes the cutting according to the design file.
What is the cutting accuracy of REMEYA advertising cutting machines?
With digital control, servo drives and visual positioning, REMEYA advertising cutting machines can achieve cutting accuracy around ±0.1 mm on most advertising materials.
This level of precision supports high-quality signage, displays and printed products.
What types of fabrics can REMEYA fabric cutting machines handle?
REMEYA fabric cutting machines can handle woven and knitted apparel fabrics, upholstery fabrics, technical textiles, PVC fabrics and soft composite fabrics.
Different tool combinations and cutting parameters are used to match each fabric type and thickness.
Can the machine cut multiple layers of fabric?
REMEYA fabric cutting machines are suitable for single-ply and low-ply cutting, depending on the model and material.
For higher ply counts, cutting speed and parameters are adjusted to maintain accuracy and edge quality.
How does automated fabric cutting improve production compared with manual cutting?
Automated fabric cutting increases cutting speed, improves accuracy and reduces fabric waste by optimizing pattern layouts and eliminating manual errors.
It also reduces the physical workload on operators and supports quick style and size changes in modern production.
