We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Discrimination sensor.
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Discrimination sensor Product List and Ranking from 7 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Oct 01, 2025~Oct 28, 2025
This ranking is based on the number of page views on our site.

Discrimination sensor Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Oct 01, 2025~Oct 28, 2025
This ranking is based on the number of page views on our site.

  1. null/null
  2. リコー 環境・エネルギー事業センター Shizuoka//Optical Instruments
  3. IREXソリューション Fukuoka//Industrial Electrical Equipment
  4. 4 関東パルス Tokyo//Industrial Electrical Equipment
  5. 5 セキュリティハウス Okayama//Consumer Electronics

Discrimination sensor Product ranking

Last Updated: Aggregation Period:Oct 01, 2025~Oct 28, 2025
This ranking is based on the number of page views on our site.

  1. AI-equipped image recognition sensor 'IV3 Series'
  2. Integrated Lighting Image Recognition Sensor IV Series
  3. AI-equipped image recognition sensor IV2 series
  4. 4 Through-type laser discrimination sensor IB series
  5. 5 Digital Color Discrimination Sensor CZ-V20 Series

Discrimination sensor Product List

16~22 item / All 22 items

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Direction Discrimination Unit HU-101

It determines the direction of passage for people and vehicles using a two-way function.

■Two-way function for direction detection Using two sensors to detect people and vehicles, the direction of passage is determined by the two-way function. ●Forward detection When a person or vehicle is detected in the order of Sensor 1 → Sensor 2 within a certain time, a forward sound is emitted, and a forward output is activated for the timer duration. ●Reverse detection When a person or vehicle is detected in the order of Sensor 2 → Sensor 1 within a certain time, a reverse sound is emitted, and a reverse output is activated for the timer duration. ■Distinction between people and vehicles possible with AND detection of two sensors In addition to the conventional direction detection timer, the AND detection condition of Sensor 1 and Sensor 2 (detecting Sensor 2 while Sensor 1 is detected) allows for the detection of vehicles (wide objects) only. *When settings other than AND are used, simultaneous input will activate the forward output. ■Control of AC100V devices possible with large contact output In addition to small contacts, the forward output includes a large contact output (AC100V 5A resistive load), allowing direct operation of alarms such as rotating lights.

  • Other security and surveillance systems

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Mix it and it's waste, separate it and it's a resource. Plastic recycling starts with identifying types.

The resin identification handheld sensor contributes to reducing disposal costs of waste plastics and promoting recycling!

The "Resin Identification Handy Sensor" is a product that allows for easy measurement and sorting. It features a lightweight and compact size that can be handled with one hand. You can take it to various locations and explore recycling possibilities. There are many types of plastics, and by sorting them by type, they can be purchased as resources. 【Features】 - Standard registration of 13 commonly used resin data - Ability to add up to 100 unique data types - Safe design intended for both indoor and outdoor use - Data can be exported to a computer *For more details, please refer to the PDF document or feel free to contact us.

  • plastic

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[Case Study] Contributing to Horizontal Recycling of Label Backing! Nichiei Shinka Co., Ltd.

The RICOH resin identification handheld sensor plays an important role in the "Resource Recycling Project"!

We would like to introduce a case study of the implementation of the "RICOH Resin Identification Handheld Sensor" at Nichirei Shinkawa Co., Ltd. The backing paper for the company's main products, seal and label materials, is a composite material of paper and resin, which has been discarded and incinerated in large quantities without being collected and reused as a resource. In response, we launched the horizontal recycling "Resource Circulation Project" for label backing paper. Our product plays a crucial role in accurately identifying the materials of the label backing paper. [Case Overview] ■ Challenges - As society as a whole works towards achieving the goals of the SDGs, label backing paper has been discarded in large quantities without recycling, highlighting the need to establish a resource circulation system. - To achieve a high level of recycling, it was necessary to accurately determine whether the collected "recycling-specific backing paper" is made of the unique material "Kamis Shine." *For more details, please refer to the PDF document or feel free to contact us.

  • Sensors

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<11/26: Webinar Held> Case Study on the Introduction of a Resin Identification Handheld Sensor

High accuracy in discrimination is the key! Added registration of resin types to the sensor enables efficient material discrimination for "recycling-specific substrates." *Free webinar available.

We would like to introduce a case study on the introduction of the "RICOH Resin Identification Handheld Sensor" to Nichirei Shinka Co., Ltd. The backing paper of the company's main products, seal and label materials, is a composite material of paper and resin, which has been discarded and incinerated in large quantities without being collected and reused as a resource. Driven by the desire to eliminate the disposal of label backing paper and recycle it as a resource, we launched the horizontal recycling project for label backing paper, called the "Resource Circulation Project." Additionally, we will hold a webinar titled "Promoting Material Recycling of Plastics." In addition to case studies from various companies, we will invite Nichirei Shinka to share practical examples of material recycling. [Case Study Overview (Partial)] ■ Challenges - Traditionally, label backing paper has been discarded in large quantities without recycling, highlighting the need to establish a resource circulation system. ■ Implementation Effects - It has become easy and efficient to identify the materials of the collected "recycling-specific backing paper," playing an essential role in the establishment of the "Resource Circulation Project" scheme. *For more details, please refer to the related links or feel free to contact us.

  • Technical Seminar

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[Usage Example] Acceptance/Shipping Inspection of Recycled Pellets

Recycled pellets are easy to use, and sorting them into grades can be expected to improve productivity!

We would like to introduce a case study on the use of the "Resin Discrimination Handheld Sensor" in the acceptance/shipping inspection of recycled pellets. There are cases where variations in the PP and PE ratios occur during the crushing and molding processes of recycled pellets. When the purity of the target material decreases, it ultimately affects the quality of the finished product. Therefore, inspections are conducted during the shipping and acceptance of recycled pellets to categorize them by grade. By using pellets with consistent purity of PP and PE, the quality of recycled material products is stabilized. 【Case Overview】 ■ Target Companies: Pellet manufacturers, waste plastic recycling manufacturers ■ Challenges: Inconsistent purity of PP and PE affecting the quality of recycled material products ■ Effects: Identification by grade to provide products with consistent quality *For more details, please refer to the PDF document or feel free to contact us.

  • plastic

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[Specific Example] Streamlining Inspection Operations and Reducing Outsourcing Costs

Utilizing handheld sensors for random sampling inspections! Check on-site whether the main component of plastic is used according to standards.

We would like to introduce a case study of the implementation of a "resin identification sensor" at a plastic product manufacturer. The company conducted random inspections of products manufactured overseas after they were received and outsourced quality checks. Inefficient inspection operations and costs were problematic. After the introduction of the resin identification sensor, the company internalized random inspections and quality checks, achieving operational efficiency. The lead time to shipment and inventory days were reduced. 【Case Overview】 ■ Issues - After receiving products manufactured overseas, the company conducted random inspections internally and outsourced quality checks, leading to inefficient inspection operations and costs. ■ Effects - Internalization of random inspections and quality checks, achieving operational efficiency. - Reduction in lead time to shipment and inventory days. *For more details, please refer to the PDF document or feel free to contact us.

  • plastic

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Specific example: Streamlining purchasing operations and shortening analysis time.

On-site purchasing decisions using a handheld sensor! Estimates provided on the spot based on resin type.

We would like to introduce a case where a "resin identification sensor" was implemented by an intermediate processing company. In this company, when collecting waste plastics, analysis was necessary for unknown resins, which required bringing them back to their facility for purchasing decisions. The labor costs and time associated with transportation and analysis were challenges. After the introduction of the resin identification sensor, they were able to respond quickly to purchasing decisions and estimate proposals at the customer's site without keeping them waiting, achieving standardization of staff skills and improved customer satisfaction. 【Case Overview】 ■ Challenges - Analysis was necessary for unknown resins during waste plastic collection, requiring them to be brought back for purchasing decisions. ■ Effects - Quick response to purchasing decisions and estimate proposals at the customer's site without keeping them waiting. - Achieved standardization of staff skills and improved customer satisfaction. *For more details, please refer to the PDF document or feel free to contact us.

  • plastic

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