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Collection System Product List and Ranking from 40 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

Collection System Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. 株式会社ハイブリッチ/ビス Tokyo//IT/Telecommunications
  2. 日本ベーカーヒューズ株式会社&ベーカーヒューズ・エナジージャパン株式会社  (旧)GEセンシング&インスペクション・テクノロジーズ株式会社 & GEエナジー・ジャパン株式会社 Tokyo//Testing, Analysis and Measurement
  3. Kistler Japan G.K. Head office Kanagawa//Testing, Analysis and Measurement
  4. 4 フェニックス Tokyo//Industrial Machinery
  5. 4 d-Solutions Osaka//others

Collection System Product ranking

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. Machine Data Collection System "ADRE System" 日本ベーカーヒューズ株式会社&ベーカーヒューズ・エナジージャパン株式会社  (旧)GEセンシング&インスペクション・テクノロジーズ株式会社 & GEエナジー・ジャパン株式会社
  2. S046 Rewrite Card Printer + NFC Work Performance Collection System フェニックス
  3. AE-Connect 5.8 (Adverse Event/Side Effect Reporting Form Collection Management) d-Solutions
  4. "Ez-Collect" Integrated Inspection and Process Performance Collection System テクノア 岐阜本社 東京本部 大阪支店 九州支店
  5. 4 Data Collection Solution 株式会社ハイブリッチ/ビス

Collection System Product List

61~72 item / All 72 items

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Introduction to Solutions - Mold Management Edition

We provide a solution that automatically collects performance data using RFID, helping you achieve more "accurate and reliable" operations!

Timely maintenance is crucial for maintaining product quality. To achieve this, it is necessary to keep records of usage frequency and other relevant data. Management of these records can be done through visual checks by workers or handwritten notes. In such cases, human error is a concern. If records are inadvertently missed, accuracy may be compromised, leading to inadequate maintenance and potentially resulting in accidents. As a solution to this problem, we introduce a solution that automates the collection of performance data using RFID technology.

  • Process Control System

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Data collection system

HBM offers a wide range of DAQs (data acquisition systems), data loggers, and data recorders that are guaranteed to fit your applications and situations.

HBM offers a variety of data acquisition systems that can be combined with sensors to create a complete high-precision measurement chain, including high-throughput data recorders with oscilloscope functions, lightweight compact models with 24-bit resolution, and environment-resistant models ideal for harsh measurement environments. The modular structure provides high flexibility, allowing for free reconfiguration and expansion according to measurement tasks.

  • Voltage Meter

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Local M2M System / Sensor Data Collection System

A low-cost, low-budget data collection system for M2M systems using 920MHz LoRa long-range, low-power communication, managed through public wireless networks, etc.

Local M2M System / Sensor Data Collection System Utilizing the 920MHz LoRa long-range, low-power communication technology, we enable real-time fine control M2M systems and a data collection system that manages vast amounts of sensor data via public wireless and free mail, all at a low cost and budget!

  • Company:Ronk
  • Price:Other
  • Circuit board design and manufacturing
  • Other environmental analysis equipment
  • Server monitoring and network management tools

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AE-Connect 5.8 (Adverse Event/Side Effect Reporting Form Collection Management)

Electronically collect side effects and adverse events (safety information) using mobile devices to improve the situation of MR!

AC-Connect: A new standard for collecting adverse event information that balances accuracy and speed, making adverse event reporting smarter. 'AE-Connect' is a system that allows medical representatives (MRs) to quickly and reliably report safety information obtained to the pharmacovigilance (PV) department using a smartphone. When an MR obtains information about an adverse event at a facility, they can input the necessary information for the initial report through the web browser on their mobile device. The initial report from the MR is immediately displayed in a list on the management screen of the safety management department (PV department), where detailed information can be confirmed. Additionally, inquiries to the MR can be made as needed. Furthermore, new information can be added as supplementary information to previously reported data. 【Features】 ■ Streamlines the time of busy MRs ■ Maintains the accuracy of reported information, allowing the PV department to receive it in a normalized and structured state through input validation features ■ Achieves data linkage with other systems using an industry-standard (E2B) interface (XML linkage) ■ Retains activity records between MRs and PV, as well as audit trails of collected data, ensuring compliance with regulations ■ Allows files to be attached to contact report information, enabling centralized management of information related to the contact report *Please feel free to contact us.

  • Sales and production cost management system for food and pharmaceutical manufacturing industries

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FactoryLiNQ IoT

A platform that utilizes various sensors using a general-purpose microcontroller (M5Stack / ESP32).

FactoryLiNQ IoT is a unique IoT platform developed to efficiently collect and utilize various data within factories. This system combines M5Stack series devices with various sensors to acquire data, and by integrating with Microsoft Azure, it achieves flexible and advanced data management. One of the major features of adopting M5Stack is the ability to use a wide range of sensors. This allows for easy monitoring of various environmental conditions and machine states within the factory, such as temperature, humidity, vibration, and pressure. Additionally, by leveraging programs on the M5Stack, data preprocessing and processing based on specific rules can be flexibly performed on the device side, enabling responsiveness in real-time scenarios. Furthermore, the ability to remotely monitor sensor data and perform remote maintenance as needed improves operational efficiency. For example, it is easy to automatically send alerts when abnormal values are detected or to change the settings of sensors and equipment from a remote location.

  • others

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[Use Case] Utilizing RFID to collect work performance data.

Easily visualize "who is doing what task" and "at what speed" for each project!

We would like to introduce a case study utilizing RFID to collect work performance data. In manufacturing sites, collecting work performance data is essential for work management and improving work efficiency. However, collecting data manually or through paper records is labor-intensive and poses challenges in ensuring accuracy. By implementing RFID, it becomes possible to record work performance in real-time and manage data effectively. [Challenges] - Unable to grasp work hours and progress status - Inefficiency and lack of improvement in work processes - Time consumed in creating reports and daily logs *For more details, please refer to the related links or feel free to contact us.

  • RFID related products and IC tag services
  • RFID/IC tags

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Operational Collection System Simple Scada

We will establish a system that can display metrics such as operational efficiency and product lead time to evaluate the factory's capabilities.

By enabling the analysis of the current situation, it becomes possible to identify issues. The combination of hardware and software allows for the collection of information from various machine tools.

  • Other information systems

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Simply place it to easily collect work performance data! 'Okudake Board' for metal processing.

Recommended for metal processing! Process performance collection board using RFID.

It is a digital tool that allows for easy visualization of people's movements and product flows. By simply holding an RFID card up to the reader, you can obtain information on when tasks start and finish. The data is accumulated, making it useful for subsequent analysis. If you have any of the following issues, please consult us!! ● When did this work instruction start? When did it finish? ● Where is the work instruction that was inquired about? ● How much man-hours were spent on this work instruction? ● This work instruction is cumbersome; what is the cause? ● There are many personnel changes and support, making it difficult to record work! ● With calls and interruptions, it's hard to know the actual time? ● Managing the preparation time for each work instruction is troublesome and prone to errors! ● Recording output and defect numbers by hand is tedious, and entering them into the computer is a hassle! ● I'm not sure if the allocation of personnel for each process is appropriate!

  • Process Control System
  • Document and Data Management
  • Other production management systems

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Driving Management and Performance Collection System

Realization of recipe management through equipment integration and real-time data collection.

<System Points> ◆ Real-time monitoring of equipment operating status and collection of performance data. ◆ Control of various parameters and operation management based on recipes. ◆ Management of other tasks such as warehouse operations, inspection and packaging, and shipping. ーーーーーーーー※Case study materials available※-------ー

  • Production Management System
  • Production Scheduler
  • Other production management systems

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Easy collection of work results just by placing it! 'Okudake Board' for the food industry.

Recommended for the food industry! RFID-based process performance collection board.

It is a digital tool that easily visualizes the movement of people and the flow of products. By simply holding an RFID card up to the reader, you can obtain information on when items are started and completed. The data is accumulated, allowing for subsequent analysis. If you have any of the following issues, please consult with us!! ● When did this work instruction start? When did it finish? ● Where is the work instruction that was inquired about? ● How much man-hours were spent on this work instruction? ● This work instruction is cumbersome; what is the cause? ● There are many personnel changes and support, making it difficult to record work! ● With calls and interruptions, do you not know the actual time? ● Managing the preparation time for each work instruction is troublesome and prone to errors! ● The output and defect numbers are also handwritten, and entering them into the computer is a hassle! ● It is unclear whether the allocation of personnel for each process is appropriate!

  • Process Control System
  • Document and Data Management
  • Other production management systems

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