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Card printer - メーカー・企業42社の製品一覧とランキング

更新日: 集計期間:Sep 17, 2025~Oct 14, 2025
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Card printerのメーカー・企業ランキング

更新日: 集計期間:Sep 17, 2025~Oct 14, 2025
※当サイトの各ページの閲覧回数を元に算出したランキングです。

  1. ホッティーポリマー Tokyo//Resin/Plastic
  2. null/null
  3. システムクリエイト Osaka//Industrial Machinery
  4. 4 ミマキエンジニアリング Nagano//Industrial Electrical Equipment
  5. 5 マツボー Tokyo//Trading company/Wholesale

Card printerの製品ランキング

更新日: 集計期間:Sep 17, 2025~Oct 14, 2025
※当サイトの各ページの閲覧回数を元に算出したランキングです。

  1. Silicone Rubber 3D Printer "SILICOM" ホッティーポリマー
  2. 3D Printer for Manufacturing Sites 'GX-1000 Series'
  3. Ticket Printing System for Local Governments 'Zenius-is2' カーデックス
  4. 4 3D Scanner × 3D Printer | Expressing 3D Shapes in 10 Million Colors ミマキエンジニアリング
  5. 5 Industrial 3D Printer 'G-ZERO MP1' グーテンベルク

Card printerの製品一覧

646~660 件を表示 / 全 667 件

表示件数

Reduce lead time and costs for sand casting with a 3D printer for casting.

There is not much difference between 3D printers for casting and traditional casting methods using basic wooden patterns. Would you like to take the first step in utilizing this together with our company?

A 3D printer for casting is a modeling method that imports 3D data created using CAD and directly shapes sand molds (such as cores and main molds). It is often referred to as a mold 3D printer or core molding machine, and it can shorten the lead time for producing wooden or resin molds needed for complex shapes, as well as for sand preparation and mold assembly before casting. Rather than relying solely on 3D printers, we recommend a hybrid operation that leverages the advantages of existing methods, the benefits of 3D printing, and your company's strengths and weaknesses. **Features of Utilizing 3D Data and 3D Printers:** - It is possible to create casting 3D data by 3D scanning the product shape even without wooden molds. - For complex-shaped cores, many wooden molds are unnecessary, leading to reduced manufacturing lead times, lower management and storage costs, and shortened assembly time and labor for cores. - Since 3D data is output, there is less variation, and the imbalance in cast products is also reduced. - 3D data can be used not only for modeling but also for verifying products against drawings. - 3D data can also be utilized for casting simulations and other applications. Why not try using a 3D printer this year? We will support you from data creation onwards.

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Metal 3D Printer [AconityTWO]

This is Aconity3D's latest solution for efficient industrial laser powder bed fusion (LPBF) manufacturing and production.

The AconityTWO device is Aconity3D's latest solution for efficient industrial laser powder bed fusion (LPBF) manufacturing and production. With a large build envelope of Ø 400 mm x H 400 mm and an easy-to-open machine cover, it allows for the production of large parts with minimal setup time, thereby reducing manufacturing costs. To maximize flexibility in the types of materials that can be processed and to enhance quality assurance, it can be equipped with optional high-temperature preheating up to 800°C and Aconity3D's entirely new process monitoring system (optional). The AconityTWO can also utilize up to four lasers in a quad-laser configuration, further increasing productivity. Like all Aconity3D devices, the AconityTWO is equipped with the AconitySTUDIO control software, allowing Aconity3D service engineers to remotely access all relevant process parameters and machine components, providing timely support to customers.

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We are currently offering materials that explain the "advantages and disadvantages" of metal 3D printers!

[Currently presenting materials!] In addition to the merits and demerits, we have included the principles of metal 3D printers and our company's initiatives!

Our company has a 3D printer that uses a laser melting method known as the PBF (Powder Bed Fusion) process. The advantages of metal 3D printing include the ability to create complex shapes, improved customization, and optimization of weight and strength. At Yamato Gosei, we are committed to developing technologies that maximize these benefits. We are also offering materials that explain the "advantages and disadvantages of metal 3D printers." Please check the PDF download below. *For more details, please refer to the PDF materials or feel free to contact us.

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Latest trends and future outlook of 3D printer technology, along with examples of various construction methods and devices.

What is the current state of 3D printers and the future trends in the market?

"Utilizing Lasers for High-Precision Structure Realization: Case Studies of Resin and Business Applications for LS" 3D Printing: The Latest Technical Trends, Forming Fine Structures, etc. ★ What is the current state of 3D printers and future market trends? How are they utilized in business and design? What are the differences among various methods? ★ High-speed layering of resins, metals, and rubber! What is the mechanism? What applications are possible, and what are not? ★ Development examples of resins for creating high-precision structures through laser layering! What direction will future developments take? ★ Pre-event content request service is currently available! We welcome the submission of your practical challenges! 【Venue】 Tokyo Chuo Ward Industrial Hall, 4th Floor, Meeting Room 2【Tokyo, Chuo Ward】 【Date and Time】 September 25, 2013 (Wednesday) 11:00-16:00 【Speakers】 Part 1: 3D Systems Japan, Personal & Professional 3D Printer Division, Business Division Manager Part 2: Osaka Prefectural Industrial Technology Research Institute, Processing and Molding Department, Chief Researcher Part 3: Arkema Inc., Kyoto Technical Center, Director

  • 企業:AndTech
  • 価格:10,000 yen-100,000 yen
  • Technical Seminar

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Short delivery time, molding, molds, castings, aluminum, 3D printer.

Are you having trouble with the delivery time for your cast metal prototypes? "Casting Prototype Service!" for cast iron, aluminum castings, and stainless steel castings (lost wax casting)!

● The production time for casting prototypes can be shortened! Since model production is not required, the time needed to produce prototypes, which previously took about a month, can be significantly reduced. ● Model costs can be reduced! By directly producing sand molds from 3D data, there is no need for model production costs. If changes to the model are necessary, they can be addressed by modifying the 3D data. ● Similar products with different shapes and dimensions can be prototyped simultaneously! Different products with similar shapes or varying dimensions can be molded at the same time in one go. This allows for the verification of multiple types in a short period.

  • Prototype Services

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Here are five key points for selecting 3D prints and 3D products!

Key points for selecting a 3D printer vendor 【Handbook available】

Our company specializes in 3D printing processes, including 3D scanning, 3D modeling, and 3D print output, and we will introduce the utilization of 3D printers from this perspective in a handbook! For those who have wanted to try 3D printing or create prototypes but are unsure about what to use or how to use it, we have summarized five key points to address these concerns. [Examples of Content] - Selection of printer models based on purpose and application - Post-processing, finishing, and printing methods - Total solutions from design to implementation, etc. We also have large machines capable of producing objects up to 1 meter in size, as well as 3D printers that support multi-material printing by simultaneously injecting two types of resin materials with different physical properties! *For more details, please refer to our catalog or feel free to contact us.

  • 3D Printer
  • Prototype Services
  • Processing Contract

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Improvement of mold life: LASERTEC 65 DED hybrid

Shorten lead time! Solve concerns such as "worry about damage to the base material due to excessive welding!"

Have you ever thought that wear after welding corrections occurs quickly? It is said to be caused by thermal fatigue and thermal cracks. The "LASERTEC 65 DED hybrid" is a metal 3D printer that contributes to increased productivity by extending maintenance cycles. With five process monitoring systems, it thoroughly manages the manufacturing process to achieve stable quality. The processes of "removal processing" → "laser welding" → "machining finish" can be performed with one chucking on a single machine, enabling complete automation without the need for setup changes. 【Features】 ■ Extended maintenance cycles contribute to increased productivity ■ Thorough management of the manufacturing process ensures stable quality ■ Just set it up and start ■ Fully automated 24 hours *For more details, please refer to the related links or feel free to contact us.

  • 3D Printer

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[Data] Thorough Review of "FUNMAT PRO410"

How powerful is the industrial 2-head model? Introducing the review of 'FUNMAT PRO410'.

In this document, we introduce a review of the "PEEK compatible" dual-head model 'FUNMAT PRO 410'. The review includes specifications of the "FUNMAT PRO410" and the materials it supports, covering everything from pre-print preparation to the experience of using the dual heads. With a user-friendly interface operated via a touch panel, the slicer can be finely adjusted, allowing for savings on expensive support materials. [Contents (excerpt)] ■ About INTAMSYS ■ Specifications of FUNMAT PRO410 ■ Supported materials (1) General-purpose plastics and engineering plastics (2) Super engineering plastics (3) Support filaments *For more details, please refer to the PDF document or feel free to contact us.

  • 3D Printer

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3D Printer 'FUNMAT PRO610' *Video Available

We were introduced on YouTube! PEEK compatible and capable of small lot production【Exhibiting at the Next Generation 3D Printer Exhibition】

We are introducing a 3D printer on YouTube this time. Please take a look at the video at the bottom of the page! The "FUNMAT Series" is a 3D printer that enables stable printing of super engineering plastics thanks to its internal temperature heating function. It can stably print large engineering plastics such as ABS, PC, nylon, PEEK, ULTEM, and PPSU, which have been difficult to print 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 heads allow for easy removal of support materials - Water-soluble support materials are available - Minimum layer pitch of 0.1mm - Oven filament system We will be showcasing the actual machine at the "Next Generation 3D Printer Exhibition," so please come visit us. For more details, please refer to the PDF document or feel free to contact us.

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Differences between "Boden type" and "Direct type" FDM 3D printers.

For those considering implementation! An explanation of the differences between the "Boden type" and "Direct type" of FDM method.

When considering the introduction of a 3D printer and trying to choose a product, many people find themselves surprisingly overwhelmed by the variety available. For example, when researching FDM (Fused Deposition Modeling) 3D printers, you may notice that there are two types: "Bowden" and "Direct Drive." In this column, we will explain the characteristics of Bowden and Direct Drive systems in FDM printers, discussing their advantages and disadvantages. By reading this article, you should be able to determine which type of 3D printer your company should adopt. [Contents] ■ What is Bowden? ■ What is Direct Drive? ■ Understanding the fundamentals of FDM is important ■ Let's clarify the differences between the two *You can view the detailed content of the column through the related links. For more information, please feel free to contact us.

  • 3D Printer

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Requirements and application methods for the "Monozukuri Subsidy" that helps with the introduction of 3D printers.

Introducing the "Monozukuri Subsidy" that can be utilized in businesses using 3D printers!

By utilizing 3D printers, it should be possible to reduce costs in manufacturing and aim for improved operational efficiency. In the future, there may be those considering implementation, but what is likely to be a concern is the cost of implementation, isn't it? Even though it can be used in the long term, it is natural to want to minimize the initial costs of implementation. In this column, we will introduce the "Manufacturing Subsidy" that can be utilized in the 3D printer business. By reading the article, you should be able to understand the amount of subsidies available for 3D printer implementation, points to note, and methods for application. [Contents (partial)] ■ What is the "Manufacturing Subsidy"? ■ The process until the manufacturing subsidy application is approved ■ Points to be reviewed when applying for the manufacturing subsidy ■ Precautions when applying for the manufacturing subsidy *For detailed content of the column, you can view it through the related links. For more information, please feel free to contact us.

  • 3D Printer

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How to Choose a 3D Printer and Key Points to Know

The manufacturer's support system is also an important factor! Here are some points to check when choosing a 3D printer.

To replicate three-dimensional objects or construct them from blueprints, the use of a 3D printer is recommended. In recent years, there has been a wide variety of 3D printer products available, with various manufacturers releasing products that have different features. As a result, among those who are actually considering implementation, there may be some who feel, "I don't know which one is good." In this column, we will introduce how to choose a 3D printer. If you are having trouble selecting a 3D printer, we hope you find this helpful. [Content] ■ Criteria for choosing a 3D printer ■ Check if there is support after implementation ■ Fusion Technology Co., Ltd. also provides support after implementation *For detailed content of the column, you can view it through the related links. For more information, please feel free to contact us.

  • 3D Printer

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Introducing the uses of 3D printers, from typical to surprising.

The uses of 3D printers are diverse! We offer a variety of 3D printers.

With the advancement of technology, the performance and precision of 3D printers have dramatically improved, and their practicality in business has also increased. The fields in which they can be used are broader than we can imagine, and it is believed that there are many industries that can be transformed by 3D printers. However, when hearing such discussions, many people might wonder, "What specific uses are there?" and "In which industries are they being used?" In this column, we will introduce representative as well as surprising uses of 3D printers. [Contents] ■ Applications of 3D printers ■ Let's grasp the basic knowledge about 3D printers ■ The uses of 3D printers are diverse! *For detailed content of the column, you can view it through the related links. For more information, please feel free to contact us.

  • 3D Printer

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UP300 D 1 Nozzle Dual Filament Compatible FDM

Even with one nozzle, it is possible to use different filaments with two heaters. Compatible filaments: ABS/ABS+/PLA/TPU.

Shape size: 255 width, 205 depth, 225 height mm Main body size: 500 width, 523 depth, 460 height mm Main body weight: 30kg

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Ultimate machine for "makers": Da Vinci 1.0 Pro 3in1

Professional 3D printer compatible with third-party filaments and G-code.

The Da Vinci 1.0 Pro 3-in-1 is a professional-grade 3D printer compatible with third-party filaments and G-code. It features a built-in 3D scanner and can perform laser engraving by attaching an optional laser module. It has all the functions in one unit, making it ideal for small offices. With the 3D scanner included in the Da Vinci 1.0 Pro 3-in-1, you can duplicate objects at home. It allows for easy 3D scanning and also includes editing features.

  • 3D Printer

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