List of Factory Automation Equipment products

  • classification:Factory Automation Equipment

6271~6285 item / All 13458 items

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Reduce the workload from handling heavy objects! Here are five case studies that solved customer challenges! We are also accepting free consultations and tests tailored to your work!

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  • Other conveying machines

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Support from product planning to filling, processing, and shipping for additives, cleaning agents, chemicals, deodorizing and disinfecting agents, etc.! For those who have raw materials but no place t...

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  • Other consumables
  • Processing Contract

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It is an optical thin-film filter that reduces the reflectance at specific wavelengths and improves transmittance. By increasing the amount of light, it contributes to energy saving and power reductio...

  • Other optical parts
  • lens
  • Sensors

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Co-creation proposal! Added 'Space × Optical Films' as a technology trend keyword.

Outer space is the most challenging and promising field for optical thin films. Environmental factors that are completely different from those on the ground—vacuum ultraviolet, high-energy particles, extreme thermal cycles, atomic oxygen—simultaneously pose threats to the thin films, while it is precisely these films that maintain the accuracy of sensing, communication, and observation. As the trend of New Space accelerates, the scenarios in which optical thin films influence the competitiveness of space development are increasing. We aspire to be more than just a "coating manufacturer"; we want to be partners who think together from the very beginning of development. It is perfectly fine if the requirements are not yet solidified or if we are still in the preliminary stages of specifications. We hope this can serve as a starting point for dialogue with engineers working on space products. Chapter 01: The Three Barriers that the Space Environment Poses to Optical Thin Films Chapter 02: Main Applications of Space × Optical Thin Films—Where Thin Films Thrive Chapter 03: How to Choose Optical Thin Films—The Trinity of Materials, Design, and Process Chapter 04: Proposal for Co-Creation Steps—"Start Small and Grow Steadily" Summary—Together, Let’s Take on the Challenge of Space with the Power of Thin Films.

It is an optical filter that cuts ultraviolet and infrared light while having a high transmittance in the visible light range.

  • Other optical parts
  • Surveillance Cameras
  • Sensors

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Co-creation proposal! Added 'Space × Optical Films' as a technology trend keyword.

Outer space is the most challenging and promising field for optical thin films. Environmental factors that are completely different from those on the ground—vacuum ultraviolet, high-energy particles, extreme thermal cycles, atomic oxygen—simultaneously pose threats to the thin films, while it is precisely these films that maintain the accuracy of sensing, communication, and observation. As the trend of New Space accelerates, the scenarios in which optical thin films influence the competitiveness of space development are increasing. We aspire to be more than just a "coating manufacturer"; we want to be partners who think together from the very beginning of development. It is perfectly fine if the requirements are not yet solidified or if we are still in the preliminary stages of specifications. We hope this can serve as a starting point for dialogue with engineers working on space products. Chapter 01: The Three Barriers that the Space Environment Poses to Optical Thin Films Chapter 02: Main Applications of Space × Optical Thin Films—Where Thin Films Thrive Chapter 03: How to Choose Optical Thin Films—The Trinity of Materials, Design, and Process Chapter 04: Proposal for Co-Creation Steps—"Start Small and Grow Steadily" Summary—Together, Let’s Take on the Challenge of Space with the Power of Thin Films.

It achieves excellent ultraviolet transmission rates and can be adapted to the light sources you plan to use (such as high-pressure mercury lamps, various laser lights, UV LEDs, etc.).

  • LED Module
  • Sensors
  • Ultraviolet irradiation equipment

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Co-creation proposal! Added 'Space × Optical Films' as a technology trend keyword.

Outer space is the most challenging and promising field for optical thin films. Environmental factors that are completely different from those on the ground—vacuum ultraviolet, high-energy particles, extreme thermal cycles, atomic oxygen—simultaneously pose threats to the thin films, while it is precisely these films that maintain the accuracy of sensing, communication, and observation. As the trend of New Space accelerates, the scenarios in which optical thin films influence the competitiveness of space development are increasing. We aspire to be more than just a "coating manufacturer"; we want to be partners who think together from the very beginning of development. It is perfectly fine if the requirements are not yet solidified or if we are still in the preliminary stages of specifications. We hope this can serve as a starting point for dialogue with engineers working on space products. Chapter 01: The Three Barriers that the Space Environment Poses to Optical Thin Films Chapter 02: Main Applications of Space × Optical Thin Films—Where Thin Films Thrive Chapter 03: How to Choose Optical Thin Films—The Trinity of Materials, Design, and Process Chapter 04: Proposal for Co-Creation Steps—"Start Small and Grow Steadily" Summary—Together, Let’s Take on the Challenge of Space with the Power of Thin Films.

It is a filter that efficiently cuts (reflects) short-wavelength UV (ultraviolet) light while allowing visible light to pass through.

  • Sensors
  • Other optical parts
  • Lighting for image processing

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4bb7e4571e7e82e932e455530aa91244.jpg

Co-creation proposal! Added 'Space × Optical Films' as a technology trend keyword.

Outer space is the most challenging and promising field for optical thin films. Environmental factors that are completely different from those on the ground—vacuum ultraviolet, high-energy particles, extreme thermal cycles, atomic oxygen—simultaneously pose threats to the thin films, while it is precisely these films that maintain the accuracy of sensing, communication, and observation. As the trend of New Space accelerates, the scenarios in which optical thin films influence the competitiveness of space development are increasing. We aspire to be more than just a "coating manufacturer"; we want to be partners who think together from the very beginning of development. It is perfectly fine if the requirements are not yet solidified or if we are still in the preliminary stages of specifications. We hope this can serve as a starting point for dialogue with engineers working on space products. Chapter 01: The Three Barriers that the Space Environment Poses to Optical Thin Films Chapter 02: Main Applications of Space × Optical Thin Films—Where Thin Films Thrive Chapter 03: How to Choose Optical Thin Films—The Trinity of Materials, Design, and Process Chapter 04: Proposal for Co-Creation Steps—"Start Small and Grow Steadily" Summary—Together, Let’s Take on the Challenge of Space with the Power of Thin Films.

It is a dielectric multilayer film filter that transmits visible light and reflects near-infrared light.

  • Other optical parts
  • Color camera
  • Sensors

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4bb7e4571e7e82e932e455530aa91244.jpg

Co-creation proposal! Added 'Space × Optical Films' as a technology trend keyword.

Outer space is the most challenging and promising field for optical thin films. Environmental factors that are completely different from those on the ground—vacuum ultraviolet, high-energy particles, extreme thermal cycles, atomic oxygen—simultaneously pose threats to the thin films, while it is precisely these films that maintain the accuracy of sensing, communication, and observation. As the trend of New Space accelerates, the scenarios in which optical thin films influence the competitiveness of space development are increasing. We aspire to be more than just a "coating manufacturer"; we want to be partners who think together from the very beginning of development. It is perfectly fine if the requirements are not yet solidified or if we are still in the preliminary stages of specifications. We hope this can serve as a starting point for dialogue with engineers working on space products. Chapter 01: The Three Barriers that the Space Environment Poses to Optical Thin Films Chapter 02: Main Applications of Space × Optical Thin Films—Where Thin Films Thrive Chapter 03: How to Choose Optical Thin Films—The Trinity of Materials, Design, and Process Chapter 04: Proposal for Co-Creation Steps—"Start Small and Grow Steadily" Summary—Together, Let’s Take on the Challenge of Space with the Power of Thin Films.

We offer mirrors that combine reflective performance and cost-effectiveness. The main feature is that they have low dependence on the angle of incidence.

  • mirror
  • Plastic processing machines (cutting and rolling)
  • Sensors

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Added 'A Comprehensive Comparison of Metal Mirrors in 5 Minutes!' to the technology trend keywords.

Among optical components, metal mirrors possess characteristics such as "broadband and stable reflection performance," "minimal variation in properties with respect to incident angle," and "excellent durability," making them a crucial factor that influences the reliability of devices. They can cover not only visible light but also infrared (IR) and even ultraviolet (UV) regions, leading to their widespread adoption from fundamental research to industrial applications. In this article, we will thoroughly compare the types of representative metal mirrors and their features, clearly organizing selection points based on applications and purposes. We aim to provide helpful information for those wondering, "Which metal is best suited for my device?" 1. The mechanism of metal mirrors and representative coating materials 2. Evaluation criteria for major metal mirrors 3. Aluminum mirrors (Al) 4. Silver mirrors (Ag) 5. Gold mirrors (Au) 6. Aluminum enhanced mirrors (Al Enhanced Mirror) 7. Recommended metal mirrors by application (selection guide based on technical background) 8. The added value that Adachi New Industry can provide (technology + proposal capability)

Over 40 years of experience since establishment! We offer a variety of control switches, terminal blocks, connectors, and more.

  • switch
  • connector
  • Terminal Blocks

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A wide variety of Honeywell limit switches.

  • switch
  • Other FA equipment

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MEMS Specialized Technology Foundry APM

  • Sensors
  • Other semiconductors
  • Sensors

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ict Corporation Insertion Type Ultrasonic Flow Meter ULSONA DT

  • Flow Control
  • Flow Meter
  • Sensors

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ICT Corporation High Precision Temperature Measurement Function Clamp-On Ultrasonic Flow Meter CalorienaR2

  • Flow Control
  • Water Hydraulic Equipment
  • Sensors

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ict Corporation Direct Insertion Ultrasonic Flow Meter NINJA

  • Flow Control
  • Water Hydraulic Equipment
  • Sensors

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Ideal for anomaly management of multi-joint robots! Automatically assesses abnormality using AI and displays maintenance timing automatically!

  • Vibration Monitoring
  • Analytical Equipment and Devices
  • Sensors

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