Experimental equipment Product List and Ranking from 14 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.

Experimental equipment 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. メガケム Kanagawa//Educational and Research Institutions
  2. 長野オートメーション Nagano//others
  3. 国際振音計装 加古川試験所 Hyogo//others
  4. 4 コーレンス Tokyo//Trading company/Wholesale
  5. 5 アルテックス Tokyo//Trading company/Wholesale

Experimental equipment 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. Lithium-ion electrolyte injection experiment device for small batteries 長野オートメーション
  2. Technical Data: Naru Hodo Series 5 "Let's Experience Vibration Experiments." 国際振音計装 加古川試験所
  3. Lithium-ion electrolyte injection experiment device for large batteries 長野オートメーション
  4. Small Wind Tunnel Experimental Device 305 メガケム
  5. Water Hammer (Hydraulic Shock) Experimental Device メガケム

Experimental equipment Product List

31~45 item / All 68 items

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Hot Jet Welding Technology "Welding Processing Case Studies"

Solve liquid leakage and corrosion issues in cleaning tanks and experimental equipment with "welding"! Free processing case examples.

Our company manufactures tanks and aquariums for both industrial and commercial use. Utilizing welding techniques honed over many years, we can provide custom processing tailored to your needs. We offer a wide range of products, including cleaning tanks and equipment for LCD and semiconductor manufacturing, as well as industrial experimental devices and headers made from acrylic. We operate under a consistent system from parts manufacturing to welding and bonding, with a particular expertise in "hot jet welding," where welding rods are melted and applied to the welding surface using hot air to bond them. ★ We are currently offering a "Processing Case Collection" featuring products made through welding processing! (Please check it out from "Download.") 【Examples of Cases (Partial)】 <For Semiconductors>  ■ We want to prevent the metal framework from being corroded by chemicals.  (Using PVC C-channels to prevent framework exposure) <Industrial Experimental Devices>  ■ The pipes and flanges are under load, leading to insufficient strength. We want to make the contents visible.  (Manufacturing ribs with acrylic plates and welding them to ensure transparency and reinforcement) <Headers>  ■ There are no standards for tapered screw parts.  (Using a lathe to newly manufacture tapered parts and welding them) *For more details, please refer to the case collection. Feel free to contact us with any inquiries.

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Vacuum Freeze Drying Experimental Machine MIT-803-3-11

It is possible to achieve extreme drying in a high vacuum, allowing for the production of dried products with excellent reconstitution and solubility!

It is possible to achieve extreme drying in a high vacuum, resulting in a porous finish that produces dried products with excellent reconstitution and solubility. Designed for large-scale production, it can be tailored to fit factory layouts and utilities. Additionally, the heating shelves can be designed not only as fixed units but also as cart-compatible systems. If using a cart-compatible system, it allows for easy movement of large quantities of trays. *For more details, please contact us or download the catalog to view.

  • Other analytical equipment
  • others

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Ultraviolet and Ozone Cleaning Modification Experimental Equipment SKT Series

Batch type

We respond to various requests, including the supply of units for irradiation devices, lamps, and power supplies suitable for integrated inline devices, batch devices, and incorporation into conveyors.

  • others

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Technical Data: Naru Hodo Series 5 "Let's Experience Vibration Experiments."

A recommended collection of basic knowledge for those who are new to vibrations! If you know this much, you'll be almost fine!

For over 40 years, the international vibration and noise instrumentation group has been tackling many problem-solving challenges as experts in vibration and noise. We are currently offering a free copy of "Naruhodo Series 5," which explains vibration phenomena. This material provides a clear explanation using a simple vibration experiment setup, allowing you to experience phenomena such as resonance and deepen your understanding of vibrations. [Contents] - About the vibration test model - Introduction to various vibration models, etc. *For more details, please refer to the PDF document, and feel free to contact us if you have any questions.

  • Analysis and prediction system

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Overview of Nuclear Fusion Power Generation Device (Plasma Heating Device)

A cylindrical sealed container covered with an insulating film! Using light hydrogen gas instead of deuterium gas.

We are seeking collaborative researchers to conduct the fabrication and heating experiments of our demonstration device, the "Nuclear Fusion Power Device (Plasma Heating Device)." The device consists of a cylindrical sealed container covered on the inside with an insulating film such as fluororesin. It will be negatively charged by applying a high-voltage power supply, with an anode placed in the center. In the actual experiments, we will use hydrogen gas instead of deuterium gas. There is no risk of neutron exposure since fusion reactions will not occur. [Overview] - The sealed container is planned to be a cylindrical shape with a diameter of 5 cm and a length of 4 cm. - Hydrogen gas will be used in the actual experiments instead of deuterium gas. - There is no risk of neutron exposure since fusion reactions will not occur. - Patent No. 7005069: Plasma Heating Device (Patent Information Platform) *For more details, please refer to the PDF document or feel free to contact us.

  • Power generation equipment
  • Other power generation

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Etching experimental device "Mini Mini Etcher"

Etching with a small amount of chemical solution is possible! Easy replacement of the chemical solution makes it suitable for experiments and development.

The "Mini Mini Etcher" is a device suitable for the production of small-sized circuit boards and the experimentation and development of chemical solutions. It features a lineup including "vertical type left-right spray" with nozzles that move side to side, as well as "horizontal type up-down spray" and "horizontal oscillating type up-down spray." It allows for etching with a small amount of chemical solution and can accommodate the production of circuit boards in units of a few pieces. Additionally, the exchange of chemical solutions is easy, and it is designed to save space. 【Features】 ■ Ideal for the production of small-sized circuit boards and the experimentation and development of chemical solutions ■ Capable of etching with a small amount of chemical solution ■ Supports the production of circuit boards in units of a few pieces ■ Easy exchange of chemical solutions ■ Space-saving design *For more details, please refer to the PDF document or feel free to contact us.

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Etching experimental device 'Mini Mini Etcher Horizontal Type - Up and Down Spray'

Introduction of an etching experimental device with automatic temperature control and a spray time control timer.

The "Mini Mini Etcher Horizontal Type with Up and Down Spray" is an etching experiment device that can be used for various purposes, equipped with automatic temperature control and a spray time control timer. The upper and lower chemical solution spray nozzles perform a swinging motion, allowing results similar to those of large etching devices. The main body is made of PVC (polyvinyl chloride), which is resistant to acids and alkalis. 【Features】 ■ Achieves results similar to those of large etching devices ■ Equipped with automatic temperature control and spray time control timer ■ Made of PVC (polyvinyl chloride) ■ Resistant to acids and alkalis ■ Usable for experiments and tests involving etching solutions, resist, and stripping solutions *For more details, please refer to the PDF document or feel free to contact us.

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Etching experimental device "Mini Mini Etcher Transport Type"

An etching experimental device that can automatically perform tasks from substrate loading, spraying, to substrate unloading.

The "Mini Mini Etcher Transport Type" is an etching experimental device that allows for the input and output of substrates from the entire device. It can automatically perform tasks from substrate input, spraying, to substrate output. The main body is made of PVC (polyvinyl chloride), which is resistant to acids and alkalis. Additionally, it features automatic temperature control and a spray time control timer, making it suitable for various applications. 【Features】 ■ Transport type (automatic operation: reciprocating, manual operation: fixed) ■ Substrate input and output possible from the entire device ■ Automatically performs tasks from substrate input, spraying, to substrate output ■ Equipped with automatic temperature control and spray time control timer ■ Main body made of PVC (polyvinyl chloride) *For more details, please refer to the PDF document or feel free to contact us.

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Lithium-ion electrolyte injection experiment device for large batteries

Lithium-ion electrolyte injection experiment device for large batteries

We design and manufacture various production equipment and experimental devices for lithium-ion (Li-ion) and nickel-metal hydride (Ni-MH) batteries. We accommodate cylindrical, rectangular, and laminated types. Depending on the process, we have demo and experimental machines available, so please feel free to contact us.

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Swirl pump and turbine experimental apparatus

Swirl pump and turbine experimental apparatus

This is a device for extensively experimenting and researching the operational characteristics of centrifugal pumps and turbines (water wheels). A variable speed motor operates the pump, drawing water from a tank and circulating it back to the tank through a strainer, valve, and venturi tube. The pump's rotational speed (rev/min), torque (N.m), output (W), differential pressure across the venturi tube (△P), and inlet/outlet pressure of the pump are digitally displayed, allowing for a wide range of experiments by changing the operating conditions through adjustments to the pump's inlet and outlet valves. By installing one of the separately sold options, such as a Pelton turbine, Francis turbine, or propeller turbine, along with a turbine dynamometer (MFP101a), it is also possible to measure the turbine's rotational speed, shaft torque, and output. Additionally, by utilizing the optional data automatic collection system VDAS (sold separately), various data can be collected and analyzed in real-time on a PC (sold separately).

  • Analysis and prediction system

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Francis turbine experimental apparatus

Francis turbine experimental apparatus

It is a water wheel that uses the reaction of water hitting the runner as rotational force, consisting of an 80mm runner (with 10 blades), 6 adjustable guide vanes, a friction load device (spring scale type), and an inflow pressure gauge, and experiments will be conducted while varying the inflow water volume and load.

  • Analysis and prediction system

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Venturi meter experimental apparatus

Venturi meter experimental apparatus

Measure the pressure distribution at a total of 11 locations along a horizontal semi-transparent Venturi tube, derive the theoretical flow rate using Bernoulli's theorem from each cross-sectional area, and calculate the flow coefficient from different flow rates (maximum flow rate of 27 L/min). The 11 manometer tubes are connected to the upper head, allowing for adjustment of the manometer water head level by operating the air valve. The experiment requires an H1F hydraulic bench (sold separately) for water supply and flow measurement.

  • Analysis and prediction system

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Flow meter characteristic testing device

Flow meter characteristic testing device

We will conduct characteristic experiments on various flow meters used around us. The inlet and outlet of the piping will measure the pressure loss of the flow meter, and the flow rate will be calculated from the pressure difference, flow coefficient, viscosity, density, etc., of each flow meter. By comparing the experiments of each flow meter, we will understand the accuracy and characteristics of the flow meters and consider their usage. A nozzle-type flow meter is included, but other options (sold separately) such as a Pitot tube flow meter (H40a), a Venturi flow meter (H40b), and an orifice flow meter (H40c) are available. The experiment requires an H1F hydraulic bench (sold separately) for water supply and flow measurement.

  • Analysis and prediction system

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Piping loss head experimental device

Pipe loss head experimental device

This is an experimental device for measuring pressure loss and flow measurement techniques in various pipes and fittings, consisting of a main body and a measuring manometer. Using three types of pathways that include measuring instruments, straight pipes, and bent pipe components, the characteristics of each component are investigated and compared using a manometer and a differential pressure gauge. In addition to learning general measurement methods and the application of Bernoulli's theorem, the experiment will compare pressure losses in a Venturi tube and an orifice plate, as well as determine the pressure loss in a sudden expansion pipe. The Pitot tube system within the device will derive the velocity distribution and flow coefficient in the transparent pipe cross-section direction. The experiment requires a H1F hydraulic bench (sold separately) for water supply and flow measurement.

  • Analysis and prediction system

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Volumetric transfer pump experimental apparatus

Volumetric transfer pump experimental apparatus

An oil pump used to move a liquid of a certain volume, which can be of rotary or piston type, is utilized in many industrial products such as lubrication systems, hydraulic systems, automobiles, and medical devices. It consists of a pump drive motor and control unit (MFP100), an oil tank, and a constant volume flow meter, measuring and digitally displaying the pump inlet and outlet pressure, flow rate, oil temperature, pump shaft speed, torque, and output on the control unit. Additionally, by using the optional data automatic collection system VDAS (sold separately), various data can be collected and analyzed in real-time on a PC (sold separately).

  • Analysis and prediction system

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