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Card printer Product List and Ranking from 169 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Dec 24, 2025~Jan 20, 2026
This ranking is based on the number of page views on our site.

Card printer Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Dec 24, 2025~Jan 20, 2026
This ranking is based on the number of page views on our site.

  1. null/null
  2. システムクリエイト Osaka//Industrial Machinery
  3. カーデックス Tokyo//Consumer Electronics
  4. 4 ミマキエンジニアリング Nagano//Industrial Electrical Equipment
  5. 5 グーテンベルク Tokyo//Industrial Machinery

Card printer Product ranking

Last Updated: Aggregation Period:Dec 24, 2025~Jan 20, 2026
This ranking is based on the number of page views on our site.

  1. 3D Printer for Manufacturing Sites 'GX-1000 Series'
  2. Ticket Printing System for Local Governments 'Zenius-is2' カーデックス
  3. SLA (3D Printing / Stereolithography) 南デザイン
  4. 4 High-Precision 3D Printer AGILISTA Series
  5. 5 Industrial 3D Printer 'G-ZERO MP1' グーテンベルク

Card printer Product List

331~345 item / All 662 items

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Carbon 3D Printer "Anisoprint Composer"

This is a 3D printer capable of using continuous carbon fiber composite materials. It reinforces the interior of models with proprietary technology, achieving high strength and lightweight. *Demo available.

The "Anisoprint Composer" series is a 3D printer that uses continuous fibers (carbon/basalt) to easily create high-strength and lightweight models. By adopting unique technology, it maximizes the "anisotropy" inherent in continuous fibers. [Features] ■ "CFC" for simultaneous extrusion of resin and continuous fibers By employing the unique technology "CFC (Composite Fiber Co-Extrusion)," it combines continuous fiber materials and resin materials within the 3D printer. By printing the base and surface of the model with resin and reinforcing the interior with fiber composite materials, it significantly enhances the strength of the model. ■ Ability to create lattice structures with fiber composites It allows the use of lattice shapes made from continuous fibers, enabling models to utilize "anisotropy," which exhibits very high tensile strength and bending strength in the direction of applied loads. ■ Compatible with various resins In addition to genuine PA (nylon), it can use resin filaments from various manufacturers. Materials can be selected according to the desired finish and characteristics of the model. *For more details, please request a catalog or view the PDF data via the download button below.

  • 3D Printer
  • Composite Materials
  • plastic

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Problem-Solving Materials: Utilizing 3D Data 16 | Strength of FDM Printed Models

How to incorporate "carbon materials" to solve the strength issues of 3D printers? A resource for identifying and solving challenges in the production field.

This document is a series that proposes solutions to various challenges faced in production sites, from identifying issues to finding solutions. In the "3D Data Utilization Edition," we will introduce various solutions to manufacturing challenges through the use of 3D data. [Document Overview] Among 3D printers, FDM (Fused Deposition Modeling) machines are easy to use and implement, and they have become widespread in many production sites. In recent years, elements that were considered weaknesses of FDM, such as the variety of materials and improvements in model quality, have gradually been addressed. However, the challenge posed by FDM technology is the "insufficient strength of printed models." This document compiles the issue of strength deficiency that most FDM 3D printers face and explains the advantages of carbon materials with "continuous fibers." Additionally, we will introduce 3D printers that adopt a unique printing method based on FDM. *You can download the document using the button below.

  • 3D Printer
  • fiber
  • Composite Materials

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I tried creating a small model with a large 3D printer!

[Mitarepo] I tried creating a small model with a large 3D printer!

"Mitarepo" is a series based on the concept of "I tried doing this!" where we introduce what can be done using various products. We deliver useful information each time from the wide range of product categories handled by System Create. The theme of Vol. 10 is "We tried creating small models with a large 3D printer." We used a large FDM-type 3D printer to create small models. While handling large printers, we receive a lot of feedback, and among them, many people ask, "Can I create both large and small items with just one machine? Is it really possible?" Therefore, we will explain the "finish" that you might be curious about when creating small models with a large machine, along with actual images and comments from our technical staff! *You can download the materials from the button below.

  • 3D Printer
  • Prototype Services
  • Processing Jig

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I tried out the cost reduction effects of supportless modeling!

[Mitarepo] Tried the cost reduction effects of support-free powder molding! [Low-cost powder molding 3D printer LISA-PRO]

"Mitarepo" is a series that introduces what can be done using various products with the concept of "I tried doing this!" From the wide range of product categories handled by System Create, we deliver useful information each time. The theme of Vol. 11 is "We examined the operational effects of support-free 3D printing using powder 3D printers!" It has become common knowledge that "support is necessary" for 3D printing. But don't you think that if 3D printing could be done without support, it could reduce costs? This time, we actually performed support-free printing with a powder sintering 3D printer and carried out post-processing, examining the advantages of support-free printing, such as "ease of post-processing," "cost reduction," and "print quality." "After all, doesn't surface treatment take a lot of effort?" "Isn't the cost difference between having support and not having it negligible?" "Will the roughness of the powder compromise quality?" We will explain these concerns regarding "operational effects" along with actual images and comments from our technical staff! *You can download the materials from the button below.

  • 3D Printer
  • Contract manufacturing
  • Prototype Services

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Powder Sintering Method 3D Printer 'Fuse 1+ 30W'

A highly versatile SLS (Selective Laser Sintering) system that balances ease of use and quality. Anyone can achieve high-quality modeling. *Demonstrations available.

The "Fuse 1+ 30W" is a powder sintering (SLS) 3D printer from Formlabs (powder 3D printer). It condenses a technology that was mainly high-end and expensive into a compact size, achieving both ease of use and quality. [Features] ■ Packaged Forming System The packaged forming system, enabled by the collaborative operation of the Fuse 1+ 30W and Fuse Sift, allows for efficient and clean operation. ■ Easy Operation for Anyone By loading data into the included software "PreForm," you can simply select the material and determine the model's layout to prepare for printing. ■ New Design Material That Does Not Require Nitrogen The specially designed powder material achieves high quality while maintaining material properties without the need for nitrogen. ■ No Support Needed, Reducing Costs and Time Un-sintered powder supports the model, eliminating the need for support material that would otherwise have to be discarded. ■ An Ecosystem with Virtually Zero Waste By mixing approximately 30% of new powder with un-sintered powder, it can be used as recycled powder. *Please view the PDF data from the download button below.

  • fuse1_detail.jpg
  • fuse1_sagyo1.jpg
  • fuse1_sagyo2.jpg
  • fuse1_sagyo3.jpg
  • fuse1_sagyo4.jpg
  • fuse1_sagyo5.jpg
  • fuse1_sagyo6.jpg
  • 3D Printer

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Problem-Solving Materials 3D Data Utilization Edition 20 | 3D Printing of Soft Materials

Cost challenges resolved with large 3D printers! How to reduce costs associated with creating large models? A resource for identifying and solving issues in production sites.

This document is a series that proposes solutions to various challenges faced in production sites, from identifying issues to finding solutions. In the "3D Data Utilization Edition," we will introduce various solutions to manufacturing challenges through the use of 3D data. [Document Overview] As the performance of FDM 3D printers improves, not only the main material PLA but also functional materials such as heat-resistant and high-strength resins have increased. One of these is "soft materials." However, soft materials tend to clog near the print nozzle, and many models cannot print them, making FDM 3D printers generally considered "not good with soft materials." In this document, we will explain the factors that make FDM printers struggle with soft materials, along with the structure of 3D printers, and introduce 3D printers that can resolve these issues. *You can download the document using the button below.

  • 3D Printer
  • Rubber
  • Other polymer materials

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I tried making a lightweight and strong model with Form 3/3L!

【Mitarepo】Model weight reduction and strength enhancement with Form 3L × Form 3! We tried improving it into a more functional model!

"Mitarepo" is a series that introduces what can be done using various products with the concept of "I tried doing this!" From the wide range of product categories handled by System Create, we deliver useful information each time. The theme of Vol.36 is "We tried enhancing the functionality of the model using a combination of Form 3 and 3L!" In the previously introduced Vol.33, we created a model of a magic hand using Form 3L. However, when we actually assembled the model, we discovered issues such as "the main body is heavy" and "the parts lack strength." Therefore, this time we challenged ourselves to improve functionality through weight reduction and strength enhancement. For the magic hand data, we made two changes: - Main body: Weight reduction through hollowing - Parts: Increased toughness using Tough 2000 resin We printed each using Form 3L and Form 3. "Is it possible to create hollow models with the light curing method?" "What does it look like to combine two models?" We will explain the actual verification process along with comments from our technical staff. *You can download the materials from the button below.

  • 3D Printer
  • 3D CAD
  • plastic

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Mitarepo[38] How far can powder 3D printers go in fine expression?

[Review] How capable is the powder sintering 3D printer "Fuse1" in expressing fine details? We tried creating a dinosaur skull!

"Mitarepo" is a series that introduces what can be done using various products with the concept of "I tried doing this!" We deliver helpful information each time from the wide range of product categories handled by System Create. The theme of Vol. 38 is "How finely can powder sintering 3D printers express shapes?" In the materials, we create a detailed model of a Tyrannosaurus skull using the powder material "Nylon 12" from the powder sintering 3D printer "Fuse 1," based on CT scan data. We are testing how finely detailed shapes can be reproduced, including the fine surface textures, small protrusions like teeth, and the complex arrangement of small bones inside the skull. Additionally, we are challenging the expression of raised and recessed lettering as one aspect of detail representation. "Isn't it impossible to achieve fine expressions because the powder is sintered and solidified?" "Even if fine shapes can be reproduced, won't they break?" We will explain these points of concern and verification regarding the use of 3D printers, along with comments from our technical staff. *You can download the materials from the button below.

  • 3D Printer
  • Resin processing machine
  • plastic

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Form3+ adaptable layer pitch that changes the layer thickness of Marsugo.

Malsugo: Speedy printing on gentle slopes with Form 3+! Explaining the amazing changes in "layer pitch."

Marsgo is a document that picks up the functions and features of various products and introduces the "amazing" aspects of them. This time, we will introduce the "Adaptive Layer Height" of the Form 3+, which changes the layer thickness of 3D printing and optimizes it according to the model shape. The biggest feature of the light-curing method "Form 3+" is that the layering marks that shape the three-dimensional object are hardly noticeable! The model is so intricate that it does not give a sense of layer overlap, earning a solid reputation. However, with the "Form 3+", depending on the shape of the model, layering may be noticeable, especially for models with gentle slopes, which can be affected by the layer thickness. Therefore, what we are introducing this time is the "Adaptive Layer Height" of the Form 3+, which changes the layer thickness according to the model shape. It is an amazing feature that places fine layers only where necessary. You do not need to set the layer thickness distribution yourself; it automatically optimizes according to the model shape. With just a simple setting, you won't have to spend a long printing time, and it is a feature that allows you to pursue the smoothness of the model, so please take a look. *You can download the document from the button below.

  • 3D Printer
  • Other CAD
  • plastic

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I tried creating a test piece with Fuse1+30W!

【Mitarepo】I tried creating a test piece with Fuse 1 + 30W!

"Mitarepo" is a series that introduces what can be done using various products with the concept of "I tried doing this!" We will deliver useful information each time from the wide range of product genres handled by System Create. The theme of Vol. 49 is "We tried creating a test piece with Fuse 1 + 30W!" In July, the "Fuse 1 + 30W," equipped with high-output laser and nitrogen filling capabilities, and capable of using high-performance materials with excellent rigidity and strength, was announced as a new addition to the Fuse 1 series. Since then, we have received many inquiries. The first unit of the "Fuse 1 + 30W" has arrived at our company. This time, we will conduct setup, various operation checks, test piece creation, and dimensional reproducibility verification in accordance with the inspection process we carry out for each "Fuse 1" upon arrival. We will explain questions and concerns about the new product, such as "What is different from Fuse 1?" and "Are there differences in operation and print quality?" along with images and measurement results. *You can download the materials from the button below.

  • 3D Printer
  • plastic
  • Prototype Services

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I tried FDM printing with a carbon printer.

[Mitarepo] Testing the potential of a carbon composite 3D printer! Tried FDM printing using only PLA! | System Create

"Mitarepo" is a series that introduces what can be done using various products with the concept of "I tried doing this!" We will deliver useful information each time from the wide range of product genres handled by System Create. In Vol. 51, we tested what kind of precision models can be created with PLA printing using the "Anisoprint Composer." The "Anisoprint Composer" is a composite 3D printer that can create models while incorporating carbon fibers. The ability to freely add carbon is attractive, but its frequency of use varies depending on the model's application and cost conditions. There may be those who want to include carbon at critical times but prefer to mainly use general-purpose resin on a daily basis...! Therefore, we conducted printing with PLA to verify what kind of precision models can be created. "Can it be printed beautifully?" "Is there a difference in the models compared to other FDM machines?" We will explain the finishing of the models along with actual images and dimensional measurement results. *You can download the materials from the button below.

  • 3D Printer
  • plastic
  • Composite Materials

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I tried painting a model made with Nylon 12!

"Can beautiful painting be done on sculptures?! We tried painting on 'Fuse1' nylon 12!" | System Create

"Mitarepo" is a series that introduces what can be done using various products with the concept of "I tried doing this!" From the wide range of product genres handled by System Create, we deliver useful information each time. In Vol. 52, we painted a model made of nylon 12 using the powder sintering layered 3D printer "Fuse 1." The "Fuse 1," a powder sintering 3D printer, is highly functional and can be utilized in various scenes. It seems that there are increasing cases where prototypes are not only created for shape confirmation but are also actually incorporated as parts, leveraging their characteristics. In this context, we have received requests to paint models used in proposals and presentations to clarify the feel and completion image. Therefore, this time, we painted a sample of nylon 12 printed with the Fuse 1. "Can I paint it as I imagined?" "What will the texture be like?" We will explain the painting process and the product's texture along with images, addressing any questions or concerns. *You can download the materials from the button below.

  • 3D Printer
  • plastic
  • Prototype Services

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I tried removing the powdered material remaining in the hollow part of the mitarepo!

【Mitarepo】I tried removing the residual powder material inside the model created with an SLS method 3D printer! | System Create

"Mitarepo" is a series that introduces what can be done using various products, based on the concept of "I tried doing this!" From the wide range of product categories handled by System Create, we deliver useful information each time. In Vol. 57, we used the SLS method 3D printer "Fuse 1+30W" to create a model with a complex internal shape and tested whether we could cleanly remove the powder left inside. The SLS method 3D printer has the advantage of being able to create support-free structures, unlike other printing methods. Therefore, it can produce complex shapes that are difficult to achieve with other methods. However, since the uncurled powder laid out functions as a substitute for support, hollow areas may remain filled with powder. Nevertheless, the powder left inside should be removable with the SLS method. In this document, we challenge the removal of powder remaining inside the model! We will thoroughly check the invisible interior using a CT scanner. We will explain whether it is truly possible to cleanly remove the powder material left inside, along with the removal process and CT scan images. *You can download the document using the button below.

  • 3D Printer
  • plastic
  • Other polymer materials

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I tried combining metals to create a unified sculpture!

[Mitarepo] Layering different metals with a metal 3D printer! We tried combining materials for integrated manufacturing! | System Create

"Mitarepo" is a series that introduces what can be done using various products with the concept of "I tried doing this!" We deliver useful information each time from the wide range of product genres handled by System Create. In Vol. 59, we tried creating a model by combining different metals using "2CREATE." The compact metal printer is easy to handle and allows for easy material changes, which is a great feature. With this, it might be possible to change materials midway! Aren't you interested in creating metals that are fused together from different types? So, in between prints, we changed materials and created a model made from two types of materials! This is the first attempt to utilize the flexibility of material selection in 2CREATE and the characteristics of a 3D printer that sinters metal powder with a laser. "Doesn't changing materials in a metal printer take a long time?" "Is it really possible to combine metals in 3D printing?" We will explain the flow of material changes and the finish of the model along with actual images. *You can download the materials from the button below.

  • 3D Printer
  • Other metal materials

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Large FDM 3D Printer "Modix BIG Series"

This is an FDM (Fused Deposition Modeling) 3D printer assembly kit that allows anyone to easily start large-scale modeling. *Demonstrations available.

The "Modix BIG Series" is an FDM (Fused Deposition Modeling) 3D printer assembly kit that allows anyone to easily start large-scale printing. It is equipped with various features, including an automatic correction function to ensure stable printing. [Features] ■ Automatic leveling correction The level of the table significantly affects the quality of the model, making leveling an important process. The "Modix BIG Series" can be set up completely automatically, allowing for proper preparation before printing. ■ Easy gap adjustment even for beginners Manual adjustments are no longer necessary. It eliminates discrepancies in settings caused by different operators, enabling anyone to easily and accurately adjust the gap. ■ Expanded operational range with dual extruders By adopting an IDEX (Independent Dual Extruder) print head, the two print heads operate independently. This allows for printing with two different materials simultaneously. Additionally, in the event of a material run-out, the print head can automatically switch to continue printing without interruption. *For more details, please request a catalog or view the PDF data from the download button below.

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