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

Last Updated: Aggregation Period:Dec 17, 2025~Jan 13, 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 17, 2025~Jan 13, 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 南デザイン Tokyo//Resin/Plastic
  5. 5 ミマキエンジニアリング Nagano//Industrial Electrical Equipment

Card printer Product ranking

Last Updated: Aggregation Period:Dec 17, 2025~Jan 13, 2026
This ranking is based on the number of page views on our site.

  1. 3D Printer for Manufacturing Sites 'GX-1000 Series'
  2. SLA (3D Printing / Stereolithography) 南デザイン
  3. Ticket Printing System for Local Governments 'Zenius-is2' カーデックス
  4. 4 High-Precision 3D Printer AGILISTA Series
  5. 5 3D Printer for Solid Dosage Form Manufacturing M3DIMAKER HIGUCHI INC.

Card printer Product List

181~195 item / All 662 items

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3D Printer FUNMAT PRO610 PEEK Compatible

Compatible with difficult-to-shape materials such as ABS, PC, nylon, PEEK, ULTEM, and PPSU!

The "FUNMAT Series" is a 3D printer that enables stable molding of super engineering plastics thanks to its internal temperature heating function. Equipped with a high-temperature nozzle. It can stably mold large engineering plastics such as ABS, PC, nylon, PEEK, ULTEM, and PPSU, which have been difficult to mold due to thermal shrinkage and distortion. 【Features】 ■ High-temperature nozzle with a maximum temperature of 500℃ ■ Chamber heater that maintains an internal temperature of 300℃ ■ Dual-head design allows for easy removal of "support materials." ■ Water-soluble support materials are available ■ Minimum layer pitch of 0.1mm ■ Oven filament system *For more details, please refer to the PDF document or feel free to contact us.

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3D printer "FUNMAT Series"

Equipped with a chamber heater that maintains a constant temperature! Stable molding of super engineering plastics is possible.

The "FUNMAT series" is a 3D printer that enables stable printing of super engineering plastics thanks to its internal temperature heating function. Equipped with a high-temperature nozzle, it can stably print large engineering plastics that were previously difficult to print due to thermal shrinkage and warping. Three products are available in the lineup depending on the application. 【Features】 ■ High-temp nozzle with a maximum temperature of 450℃ ■ Chamber heater that maintains a constant internal temperature ■ Hotbed maximum temperature of 160℃ ■ Minimum layer pitch of 0.05mm ■ Easy-to-maintain unit parts *For more details, please refer to the PDF document or feel free to contact us.

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  • 3D Printer

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[Case Study] Utilizing FUNMAT PRO 410 for Prototyping Baby Products

Examples of utilizing "prototype of pacifier cap shape" and "prototype of stroller frame part"!

Combi Corporation is headquartered in Taito-ku, Tokyo, and is actively involved in a wide range of activities both domestically and internationally, from the development, manufacturing, and export of baby products and infant toys to technology licensing. We have received a survey response following the introduction of the "FUNMAT PRO 410." You can view it through the related links below. 【Overview】 ■ Customer Name: Combi Corporation ■ Industry: Development, manufacturing, and sales of baby products ■ Application: Prototyping, development, and structural checks of baby products ■ 3D Printer Used: FUNMAT PRO 410 ■ Filaments Used: PolyLite ABS/HIPS/PA6/PA6-GF, etc. *For detailed information about the case, please refer to the related links. For more details, feel free to contact us.

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[Case Study] Filament Development and Contract Processing with FUNMAT HT

High molding precision despite being compatible with super engineering plastics! A case study introduced to filament manufacturing companies.

Hottipo Polymer Co., Ltd. manufactures and sells extruded products made of rubber and resin. With their long-established high technical capabilities, they have recently focused on 3D printer-related businesses, developing 3D printers and filaments. The "FUNMAT HT" was introduced for the development of filaments made from high-temperature thermoplastic materials such as PEEK and for contract processing. They describe the advantages of the "FUNMAT HT" as "high precision despite being compatible with super engineering plastics," "fast stage movement speed," and "easy maintenance." [Overview] ■ Customer Name: Hottipo Polymer Co., Ltd. ■ Industry: Filament manufacturing ■ Applications: Filament development, manufacturing and sales, contract processing ■ 3D Printer: FUNMAT HT *For more details, please refer to the related links or feel free to contact us.

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[Case Study] INTAMSYS 3D Printers on Dutch Navy Ships

Various brands of filaments available in the market can be printed! A case mounted on a Dutch Navy ship.

3D printing is becoming a key technology for the Royal Netherlands Navy, responding to on-site needs by printing parts on frigates and reducing reliance on complex logistics systems. The AMCOD released by the Dutch Navy is a mobile repair center integrated into a standard container. This mobile repair center is equipped with the INTAMSYS "FUNMAT PRO 410" 3D printer, which primarily prints parts that can withstand mechanical and thermal stress. For more details, please refer to the related links below. 【Overview】 ■ Open material system, dual-head design 3D printer ■ The open material system meets the needs of the certification process ■ Additive manufacturing (AM) container *For more detailed information about the case, please refer to the related links. Feel free to contact us for further inquiries.

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[Case Study] Utilizing FUNMAT PRO 410 for Prototyping and More

The wide modeling area and modeling speed were the deciding factors for the introduction! Utilized for prototyping, processing of in-house products, and contract processing.

Acrus Co., Ltd. is a company located in Higashi-Osaka City, Osaka Prefecture, that manufactures and sells lighting, medical and nursing care, and fisheries and agricultural-related equipment. This time, they considered the introduction of a 3D printer that can be used not only for prototyping but also as a finished product, and they have adopted the "FUNMAT PRO 410." The deciding factors for the introduction were stated as "low material costs," "large build area," "printing speed," and "running costs of consumables." [Overview] ■ Customer Name: Acrus Co., Ltd. ■ Industry: Manufacturing ■ Applications: Prototyping, processing of in-house products, contract processing ■ 3D Printer: FUNMAT PRO 410 *For more details, please refer to the related links or feel free to contact us.

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FUNMAT HT Enhanced

A small desktop model that can also 3D print PEEK.

< Entry model compatible with PEEK > - Large-scale printing with stable formation using a chamber heater Print area: 260*260*260mm - Multi-material compatibility Super engineering plastics PEEK, PEEK-CF, PEEK-GF, PEKK PEI (ULTEM9085, ULTEM1010), PPSU, PPS General-purpose engineering plastics PLA, ABS, ASA, PETG, PC (PC, PC-ABS) PA (CoPA, PA6-CF, PA6-GF, PA12-CF) PP (PP, PPGF30)

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[3D Printer Implementation Case] Creating Final Products of Surveying Equipment

Creating final products of measuring instruments! Introducing examples from the design, sales, and rental industry of construction materials!

Fujiwara Sangyo Co., Ltd. is a company engaged in the manufacturing, sales, and rental of construction equipment and materials in Suminoe Ward, Osaka City. This time, in addition to the "L-DEVO series," we have introduced the Creality CR-30 belt conveyor 3D printer, which is handled by our sister company, Sunstella, utilizing fusion technology. We feel that the appeal lies in being able to quickly turn ideas into tangible products for our customers, allowing for immediate commercialization and sales. 【Case Study】 ■ Customer Name: Fujiwara Sangyo Co., Ltd. ■ Industry: Design, sales, and rental of construction materials ■ Application: Creating final products for surveying equipment ■ Material: PLA ■ 3D Printer: L-DEVO *For more details, please feel free to contact us.

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Points to consider when thinking about the "accuracy" of 3D printers.

Regarding accuracy, we explain the factors that create meaning and errors! We have a variety of 3D printers available.

When introducing and using a 3D printer, not only the cost but also the finish of the final product is a concern. If it is for business purposes, the reproduction accuracy of the model is naturally important. To achieve results as much as possible within a limited budget, it is essential to understand the factors that cause errors. Additionally, some may wonder, "Do cheaper products inevitably have lower accuracy?" In this column, we will explain the accuracy of 3D printers, including an overview and the factors that cause errors. Those who want to pursue accuracy may find this information helpful. [Contents] ■ Meaning of "accuracy" ■ Factors that determine "accuracy" ■ Understanding slicer software is essential to improve accuracy ■ Comparison of "accuracy" between inexpensive models and business-use models ■ Fusion Technology provides support from product proposals to assistance *For detailed content of the column, please refer to the related links. For more information, feel free to contact us.

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Features of Light-Curing 3D Printers and Advantages and Disadvantages of Implementation

Attention-grabbing light-based 3D printer! It's important to understand the overview and basic information before implementation.

In recent years, 3D printers have begun to be utilized in many industries, starting with manufacturing. Among them, those using the stereolithography method account for a significant proportion. Various variations have emerged in recent years, and since the patent expired in 2006, there has been remarkable improvement in performance. In this column, we will explain the characteristics and mechanisms of stereolithography 3D printers, as well as their advantages and disadvantages. [Contents] ■ What is stereolithography? ■ The mechanism of stereolithography ■ Advantages and disadvantages ■ Other types of 3D printers also exist ■ Let's understand the characteristics of stereolithography 3D printers *For detailed content of the column, please refer to the related links. For more information, feel free to contact us.

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High-speed 3D printer Amesos using linear motor

- Use of linear motor - Control of the motor with a proprietary optimization algorithm - High-speed compatible, high fluidity filament

Shape Size: 310mm*310mm*420mm (Single nozzle) Maximum Printing Speed: 300mm/s Maximum Acceleration: 5000mm/s² Movement Speed: 0-500mm/s Dedicated Filament: Blade Mate PAHT-CF/PET-CF/PETG/PETG ESD/PLAPRO Maximum Power Consumption: 1kW

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Large-scale FFF method 3D printer, AON3D AON-M2

FFF method 3D printer capable of large-scale modeling using PEEK and Ultem.

The AON3D "AON-M2" is equipped with a high-temperature heating and cooling system. It can stably print super engineering plastics such as PEEK, PEKK, and Ultem, which are used in the aerospace industry, without compromising performance. Additionally, it features two independent operating heads, allowing for the use of water-soluble support materials. **Features** - **Specialized for Super Engineering Plastics** The AON-M2 is equipped with a high-temperature heating and cooling system, enabling stable printing of super engineering plastics like PEEK, PEKK, and Ultem without compromising performance. - **Independent Operation** It adopts two independent operating heads that can print simultaneously, increasing part production speed and allowing for the use of water-soluble support materials. - **Large-Scale Printing** Designed for industrial use, the AON-M2 can not only print large products but also be utilized for batch production of multiple parts at once. - **Compatible Materials** PEEK, PEKK, Ultem, nylon, polycarbonate, TPU, carbon fiber, ABS, and many others.

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3D printer series for composite carbon fibers

By incorporating special fibers such as carbon fiber, Kevlar, and glass fiber, the strength of the molded object achieves a strength equivalent to that of aluminum!

The "3D Printer Series for Composite Carbon Fiber" is a CFRP 3D printer that achieves strength equivalent to aluminum using continuous fiber CFRP. It allows for the replacement of parts that traditionally used aluminum, promising significant reductions in manufacturing costs and labor, thereby bringing dramatic changes to the manufacturing process. Additionally, the setup for modeling and data processing is extremely simple. Through a proprietary platform called Eiger, fiber density, arrangement, and filling methods are all processed automatically according to the necessary conditions. **Features** - **Strength Comparable to Aluminum Machined Parts**: It enables the manufacturing of parts with strength comparable to aluminum machined parts, making it suitable for end-use applications such as jigs and functional components. - **Smooth Surface Finish**: Conventional FFF-type 3D printers often have noticeable layering marks, resulting in poor surface finishes. Markforged's 3D printers achieve a very clean surface finish thanks to the base material Onyx. - **Fiber Reduces Warping**: The base material Onyx contains short carbon fibers that help suppress warping, allowing for very low-warping prints.

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