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Experimental equipment Product List and Ranking from 61 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Jan 07, 2026~Feb 03, 2026
This ranking is based on the number of page views on our site.

Experimental equipment Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Jan 07, 2026~Feb 03, 2026
This ranking is based on the number of page views on our site.

  1. メガケム Kanagawa//Testing, Analysis and Measurement
  2. エコー電子 Saitama//Industrial Electrical Equipment
  3. 吉田機械興業 三重ナノテク生産技術センター Mie//Industrial Machinery
  4. 4 ナニオンテクノロジーズジャパン 東京ラボ(東京大学内) Tokyo//Pharmaceuticals and Biotechnology
  5. 4 三協インタナショナル Tokyo//Trading company/Wholesale

Experimental equipment Product ranking

Last Updated: Aggregation Period:Jan 07, 2026~Feb 03, 2026
This ranking is based on the number of page views on our site.

  1. 4ch Artificial Lipid Bilayer Experimental Device Orbit Mini ナニオンテクノロジーズジャパン 東京ラボ(東京大学内)
  2. MRI experimental device "EP-400" エコー電子
  3. NanoVita Series Desktop Experimental Device (Electric Type) 'L-ES' 吉田機械興業 三重ナノテク生産技術センター
  4. 4 Rental Lab (Lithium-ion Battery Prototype Lab) / Battery Prototype Training
  5. 5 Dynamically reproducing dust explosions with a Hartmann-type dust explosion device! ファイク・ジャパン

Experimental equipment Product List

91~120 item / All 169 items

Displayed results

[Experimental Video] Explaining the principle of hair implantation using a simple electrostatic hair implantation device in a video!

YouTube channel launched! We will clearly explain the principles of electrostatic flocking, which can be expected to have effects such as heat insulation, slip resistance, and soundproofing, in a video.

Electrostatic flocking is a process where fibers, lifted by high voltage, are attached to an object that has been pre-coated with adhesive. *Specialized fibers are used for this purpose.* President Tanaka and Assistant Hayashi from Green Tech Co., Ltd., who are experts in static electricity, will explain the principles of flocking in an easy-to-understand video using a simple electrostatic flocking device. Flocking not only enhances the tactile feel and appearance but also offers benefits such as decoration, heat insulation, anti-friction and slip resistance, sound absorption, diffuse reflection, condensation prevention, scratch resistance, and breathability. It can be widely applied to materials like polystyrene, metal, mobile phone covers, and toys. Green Tech will continue to conduct various experiments and proposals utilizing static electricity, discharge, and charging. If you are interested, please take a look! *You can watch the experimental video in the middle of the page.*          ★Free Demo Available★ If you visit Green Tech, we will provide a free demonstration of the actual machine. If you would like to "see the lineup" or "test/verify with the actual machine," please contact us using the information below. *We also accept contract manufacturing of high-voltage power supplies.*

  • Other surface treatment equipment
  • others
  • Experimental equipment

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915MHz semiconductor microwave heating experimental device

Semiconductor microwave heating experimental device, oscillation frequency 915 MHz, ideal for the development and chemical synthesis of various battery materials. Individual control of electric and magnetic fields.

Semiconductor Microwave Heating Experimental Device. This is a semiconductor microwave power supply and heating test device that does not use a magnetron, designed with ease of use in mind, featuring a commercial power supply of AC100V and a desktop size. It is ideal for experiments in the development of various battery materials, chemical synthesis, reactions, low-temperature sintering, drying, and more. Additionally, it allows for testing in separate electric and magnetic fields. Compared to traditional heating methods such as electric furnaces, experiments can be conducted in a shorter time. The oscillation frequency (860 to 960 MHz, continuously variable) can be adjusted like tuning a radio. Options include pulse width modulation, FM modulation, AM modulation, frequency sweeping, PLL frequency generator, pattern operation of output power, linking with a computer, and performing vacuum, gas replacement, etc., using test tubes, quartz tubes, fluorine tubes, and more. Main specifications: Microwave output: 300W, oscillation frequency: 915MHz (860 to 960MHz, continuously variable), microwave output setting: in units of 0.1W, power supply input: single-phase AC100V 1kVA.

  • Heating device
  • Experimental equipment

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Experimental device "FDU-301VP-01"

It is a microwave heating test device that can be used for multiple purposes!

The "FDU-301VP-01" is a semiconductor microwave heating experimental device developed with a focus on low cost and ease of use, without using a magnetron. It allows for high-precision continuous variable micro output and comes standard with digital monitoring displays for forward power and reflected power. Additionally, it enables experiments to be conducted in a shorter time compared to heating methods using external sources like conventional thermoelectric furnaces. 【Features】 ■ Semiconductor type ■ Usable for various applications ■ Commercial power supply AC100V ■ Space-saving ■ Output can be set in units of 0.1W *For more details, please refer to the catalog or feel free to contact us.

  • Other experimental equipment
  • Experimental equipment

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Shimatani Giken Co., Ltd. Company Profile

Custom-made design and manufacturing! We also assist with mass production equipment after experiments.

Shimatani Giken Co., Ltd. has been able to progress with the support of various companies as a manufacturer of equipment that handles surface treatment devices, including plating equipment. Considering recent trends, we believe that it is becoming increasingly important for Japan's manufacturing industry to focus on the development and experimental types of plating equipment, electrolysis equipment, and surface treatment devices in order to move forward. Our company aims to create user-friendly and satisfying custom experimental and prototype devices for surface treatment, taking into account the perspectives of those who will actually be working with them. 【Business Activities】 ■ Development-type electrolysis treatment equipment ■ Prototype chemical immersion treatment equipment ■ Plating experimental equipment [20–200L tanks] *For more details, please refer to the PDF materials or feel free to contact us.

  • Other surface treatment equipment
  • Drying Equipment
  • Other machine elements
  • Experimental equipment

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Educational experimental device: Observation of Bernoulli's theory

Educational experimental device: Observation of Bernoulli's theory

Bernoulli's Equation, Understanding the Law of Conservation of Energy Experiment ○ Experiment Items - Application experiment on Bernoulli's theorem and the law of conservation of energy - Flow measurement experiment using a Venturi tube - Flow velocity measurement experiment using a Pitot tube ○ Device Dimensions - Approximately 1600mm(W) × 500mm(D) × 1700mm(H)

  • Testing Equipment and Devices
  • Other measurement, recording and measuring instruments
  • Analytical Equipment and Devices
  • Experimental equipment

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Educational Experimental Equipment: Heat Exchanger Experimental Device HEP Series

Educational Experimental Equipment: Heat Exchanger Experimental Device HEP Series

Liquid-liquid heat exchange experimental apparatus with counterflow and parallel flow in a steady state 【Features】 ○ Heat source is a hot water boiler ○ Large heat transfer area, capable of conducting experiments with high heat loads ○ Experimental items ・Calculation of heat transfer rate and overall heat transfer coefficient (counterflow, parallel flow) ・Calculation of logarithmic mean temperature and logarithmic mean heat transfer area ・Heat balance calculation ・Calculation of thermal conductivity and film heat transfer coefficient, Reynolds number calculation ○ Equipment dimensions ・HEP-200: 1350mm(W) × 820mm(D) × 1760mm(H) ・HEP-400: 2350mm(W) × 820mm(D) × 1760mm(H) ・HEP-800: 4700mm(W) × 1450mm(D) × 1710mm(H)

  • Heat exchanger
  • Temperature and humidity measuring instruments
  • Analytical Equipment and Devices
  • Experimental equipment

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Educational Experimental Device: Heat Pump Cycle Learning

Leave it to us when it comes to experimental equipment.

It is a device that allows you to understand at a glance the mechanism, structure, function, and operation method of the heat pump cycle.

  • Temperature and humidity measuring instruments
  • Analytical Equipment and Devices
  • Experimental equipment

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Microwave experimental device μReactorEX for beaker scale experiments

For beaker scale experiments! Microwave experimental equipment

The definitive version of the microwave experimental device! A device for conducting basic beaker-scale experiments using microwaves. ■□■ Features ■□■ ■ Ideal as an introductory device for microwave reactions ■ Built-in control structure ■ Easy operation via touch panel ■ Suppression of microwave heating unevenness ■ Various containers and options according to experimental needs (such as internal clamps and turntables) ■ Capability to record microwave output and temperature data (via PC connection) ■ For other functions and details, please download the catalog or contact us.

  • Other physicochemical equipment
  • Analytical Equipment and Devices
  • Experimental equipment

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NanoVita Series Desktop Experimental Device (Electric Type) 'C-ES'

【20th Anniversary Sales Campaign Now Underway!】Introducing a compact tabletop experimental device designed to meet the demand for space-saving solutions.

The "C-ES" is a compact tabletop experimental device designed to meet the demand for space-saving solutions. It is smaller than our NanoVita series tabletop experimental device "L-ES." 【Features】 ■ Compact type designed to meet the demand for space-saving solutions ■ Smaller than the NanoVita series tabletop experimental device "L-ES" ★ Celebrating 20 Years of NanoVita Sales Campaign Now Underway ★ In celebration of our 20th anniversary, we are offering a limited edition at an affordable price as a token of appreciation to all our customers. (Campaign period: Until September 30, 2025) *For more details, please refer to the PDF document or feel free to contact us.

  • Emulsifier/Disperser
  • Homogenizer
  • Experimental equipment

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UF RO flat membrane experimental device

You can easily conduct experiments using UF and RO flat membranes (FLAT SHEET).

Since we will conduct the experiment using a flat membrane, there is no need to prepare expensive UF modules. The system is of the cross-flow type. It is possible to conduct the experiment with about 5 liters of the original solution.

  • others
  • Filtration Equipment
  • Experimental equipment

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F.I.T. Pacific Co., Ltd. Company Profile

We respond to needs as a solution provider in information technology and environmental safety technology.

F.I.T. Pacific is engaged in businesses related to vehicle collision testing, planning, manufacturing, and sales of nursing care welfare equipment, as well as providing ICT (information and communication technology) related products and services. The AS division provides solutions that contribute to improving automotive safety, the CS division solves issues through "monozukuri + kotzukuri" open innovation, and the CFM division achieves efficient operational management through integrated wiring management of networks, all responding to customer needs. We aim to create products that, even if they are inconspicuous or plain, are indispensable and always provide us with safety and peace of mind in unseen ways. 【Business Activities (Excerpt)】 ■ Maintenance services for human dummies and load cells for vehicle collision testing ■ Import and sales of accelerometers for vehicle collision testing, along with maintenance services ■ Sales of CAD-based integrated wiring management database software, data entry, and maintenance services ■ Import and sales of heat-resistant and wear-resistant hoses ■ Planning and sales of bone conduction, repellents, and other products *For more details, please refer to the PDF document or feel free to contact us.

  • Other information systems
  • Testing Equipment and Devices
  • others
  • Experimental equipment

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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.

  • Other processing machines
  • Other physicochemical equipment
  • Other semiconductor manufacturing equipment
  • Experimental equipment

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Inkjet Desktop Experimental Device "LaboJet Series"

Realizing cutting-edge inkjet research with a compact desktop-sized machine.

From material extrusion to device prototyping.

  • Commercial printers
  • Experimental equipment

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Continuous Methane Fermentation Experimental Device BioReactorSimulator3

This is an experimental device for simulating biogas production.

Simultaneous measurements on 9 channels can significantly shorten the experimental time. It has many excellent features, including high accuracy, no need for calibration, ease of maintenance for long-term use, and automatic measurement and data processing using web-based software (no separate purchase required).

  • Testing Equipment and Devices
  • Experimental equipment

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Wireless power transfer receiving coil traction system during operation

An experimental device simulating wireless power transfer to a moving electric vehicle.

This device is an experimental apparatus that simulates the situation where a vehicle-mounted coil travels over a road coil by using a motor to pull the coil along a rail. 【Features】 ■ Considering the workability during experiments, a structure has been designed to facilitate the easy attachment and detachment of the coil. ■ The main body is constructed with an aluminum frame to allow for modifications and adjustments according to the experimental requirements. We have introduced our achievements in the production of simulation experimental devices. Please feel free to consult us when you are facing challenges in realizing structures or requirements.

  • Mechanical Design
  • Contract manufacturing
  • Experimental equipment

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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 (waterwheels). 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 in the venturi tube (△P), and inlet/outlet pressure of the pump are digitally displayed, allowing for a wide range of experiments by adjusting the pump's outlet and inlet valves to change operating conditions. By installing one of the separately sold options—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, using the optional data automatic collection system VDAS, various data can be collected and analyzed in real-time on a PC (sold separately).

  • Vocational Training/Technical School
  • Experimental equipment

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Francis turbine experimental apparatus

Francis turbine experimental apparatus

It is a waterwheel 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.

  • Vocational Training/Technical School
  • Experimental equipment

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Venturi meter experimental apparatus

Venturi meter experimental apparatus

We measured the pressure distribution at a total of 11 locations along a horizontally oriented translucent Venturi tube, derived the theoretical flow rate using Bernoulli's theorem from each cross-sectional area, and calculated 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.

  • Vocational Training/Technical School
  • Experimental equipment

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Flow measurement experimental device

Flow measurement experimental device

This is a device for conducting experiments on pressure and flow measurement in a Venturi tube, orifice plate, and floating flow meter, demonstrating the application of the energy equation (Bernoulli) for steady flow. The piping is made of transparent resin to allow observation of the internal conditions, and measurements include the head loss caused by each flow meter, sudden expansions, and the head loss from 90° elbows. The experiment requires a H1F hydraulic bench (sold separately) for water supply and flow measurement.

  • Vocational Training/Technical School
  • Experimental equipment

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Pressure gauge calibration experimental device

Pressure gauge calibration experimental device

Calibration of the Bourdon tube pressure gauge will be performed using weights. A skeleton-type Bourdon tube pressure gauge is used so that the internal operation can be learned, allowing observation of the internal tube moving under pressure.

  • Vocational Training/Technical School
  • Experimental equipment

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Orifice flow and jet trajectory experimental apparatus

Flow contraction experimental apparatus through an orifice.

We will analyze the flow from the orifice or nozzle discharged in the vertical and horizontal directions. While measuring the flow reduction, velocity, and discharge amount, we will analyze various discharge characteristics and the effects of Reynolds number, and measure the trajectory of the horizontal jet.

  • Vocational Training/Technical School
  • Experimental equipment

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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 a H1F hydraulic bench (sold separately) for water supply and flow measurement.

  • Vocational Training/Technical School
  • Experimental equipment

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Piping loss head experimental device

Piping loss head experimental apparatus

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 differential pressure gauge. In addition to learning general measurement methods and the application of Bernoulli's theorem, the experiment involves comparing pressure losses in a Venturi tube and an orifice plate, as well as determining the pressure loss in a sudden expansion pipe. The Pitot tube system within the device also derives 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.

  • Vocational Training/Technical School
  • Experimental equipment

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Volumetric transfer pump experimental device

Volumetric transfer pump experimental device

It is an oil pump used to transfer a fixed volume of liquid, available in rotary and piston types, and 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 fixed volume flow meter, measuring and digitally displaying the pump inlet and outlet pressure, flow rate, oil temperature, pump shaft speed and 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).

  • Vocational Training/Technical School
  • Experimental equipment

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Jet Stream Collision Experiment Device

Jet Stream Collision Experiment Device

We observe the impact of a precise and rapid high-speed jet stream on the test specimen (blade) and measure its force. As an optional accessory, a 120° conical plate and a 30° inclined plate (H8a) are also available, allowing us to measure the forces on various surfaces subjected to jet impact and understand the laws of momentum to solve jet impact problems.

  • Vocational Training/Technical School
  • Experimental equipment

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Tabletop wind tunnel experimental device

Tabletop wind tunnel experimental device

This open-type suction wind tunnel allows for a wide range of experiments related to fluid dynamics, despite its compact design. It consists of a large bell mouth with a honeycomb, a two-dimensional converging nozzle, an experimental area (125x125mm), a diffusion section, a protective mesh, a variable-speed fan, and a silencer unit, achieving a flow with minimal turbulence. The included manometers (6 units) and two Pitot tubes positioned before and after the experimental area measure the wind speed and pressure distribution in the wake of the model. The experimental area has four sides made of transparent acrylic panels, with the front and back panels being removable. The device comes with a single force balance measurement system and three types of experimental models (a cylindrical model with pressure holes, a NACA0012 wing model, and a flat plate model), allowing for immediate experiments on drag or lift, as well as pressure distribution experiments around a cylinder. The drag or lift (N) is digitally displayed on the included display unit. Additionally, the single force balance measurement system can be mounted on the underside of the experimental area, enabling the measurement of drag (N) using original test specimens created with a 3D printer or similar methods.

  • Vocational Training/Technical School
  • Experimental equipment

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Small wind tunnel experimental device 305

Small wind tunnel experimental device 305

This open-type suction wind tunnel can conduct a wide range of experiments related to fluid dynamics while maintaining a compact design. It consists of a large bell mouth, a two-dimensional converging nozzle, an experimental area (305x305x600mm), a diffusion section, a protective mesh, an axial fan, and a silencer unit, achieving a flow with minimal turbulence. The control unit (desktop type) regulates the rotational speed of the axial fan and controls the flow velocity in the experimental area. The wind tunnel and control unit, mounted on a caster-equipped frame, are designed to be very compact, making it easy to change their arrangement. Various options can be added according to the experimental objectives. The optional data automatic collection system VDAS (sold separately) can display measurement data in real-time on a computer (sold separately) and can calculate and graph the collected data, facilitating smooth progress in experiments.

  • Vocational Training/Technical School
  • Experimental equipment

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Smoke wind tunnel experimental device

Smoke wind tunnel experimental device

This is a specially designed small wind tunnel to visualize the airflow around a model. The compact device can be demonstrated in various locations, such as classrooms, regardless of the laboratory setting, and can be easily moved and stored when not in use. The airflow moves from the bottom to the top. Air entering from the bottom of the device passes through a contraction section and a comb-shaped nozzle, then enters observation ducts illuminated on both sides. The lighting clarifies the streamlines around the model. There is a variable-speed fan at the duct exit that adjusts the flow rate based on volume. A smoke generator is located beneath the device. Smoke (oil droplets) is produced by heated vegetable oil and carbon dioxide supplied from a tank, and is sent to the comb-shaped nozzle. From the comb-shaped nozzle, 23 streamlines are released to observe the airflow around the model.

  • Vocational Training/Technical School
  • Experimental equipment

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Flight demonstration wind tunnel testing device

Flight demonstration wind tunnel experimental device

This is a device specially designed to conduct extensive experiments on the takeoff, flight, and landing of aircraft. The aircraft model in the suction-type open wind tunnel consists of two propellers, a main wing with a chord length of 152mm (NACA2412), and a fully movable tail with a chord length of 76mm. Air flowing in from the bell mouth is discharged from the device through a rectifying honeycomb, the experimental area equipped with the aircraft, a diffusion body, an axial fan, and a silencer duct. The control wheel located at the front of the experimental area manipulates the tail angle of the aircraft model, while the lever resembling the engine throttle on the right side controls the wind speed within the wind tunnel.

  • Vocational Training/Technical School
  • Experimental equipment

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