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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

121~150 item / All 169 items

Displayed results

Wind power generation experimental device

Wind power generation experimental device

This is an experimental device for learning the basics of wind power generation, equipped with a 70W wind turbine and a φ400mm axial fan wind tunnel, mounted on a movable caster frame. Air drawn in from the left bell mouth passes through a honeycomb, anemometer, wind turbine, safety mesh, axial fan, and silencer duct before being discharged. Experiments are conducted while manipulating wind speed, blade pitch, yaw angle, and turbine speed (load resistance), with parameters such as blade pitch, yaw angle, turbine rotation speed (rpm), and current output (A) digitally displayed on the control box. Additionally, using the accompanying software (VDAS), wind speed (m/s), output (W), generator voltage (V), and other data can be automatically calculated in real-time, allowing for efficient collection of experimental data on a PC (sold separately). Transparent observation windows are installed at the front and back of the experimental area, and the front opening door is equipped with an interlock safety mechanism.

  • Vocational Training/Technical School
  • Experimental equipment

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Refrigeration cycle experimental apparatus

Refrigeration cycle experimental apparatus

This is a tabletop refrigeration system using refrigerant R134a. You will learn about the pressure-enthalpy diagram (p-h diagram) and derive subcooling and superheating, as well as the coefficient of performance (COP) from the enthalpy changes. The refrigeration circuit is equipped with high and low pressure gauges, pressure switches, a thermal expansion valve, a sight glass, and a dryer. The evaporator coil (evaporator) and condenser coil (condenser) submerged in the water tank accurately collect temperature changes, clearly demonstrating the heat pump. The water in the tank is circulated by a pump to maintain a steady state. High and low pressures and temperatures of each component are digitally displayed on the control panel's LCD screen, and various data can be displayed and collected on a PC (sold separately) using the included VDAS software. The compressor inlet temperature, thermal expansion valve inlet temperature, and low and high pressures are used to plot the p-h diagram, calculating cooling effect and heating effect (kJ/kg), compressor work (kJ/kg), cooling coefficient of performance (COPc), heating coefficient of performance (COPh), degree of subcooling (K), degree of superheating (K), and more.

  • Vocational Training/Technical School
  • Experimental equipment

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Air Conditioning System Experimental Equipment

Air Conditioning System Experimental Equipment

The air conditioning systems widely used in various industries and for improving living standards not only maintain comfort in daily life but also refer to the control of industrial process environments. The air conditioning system experimental device EC1501V demonstrates the cooling and dehumidification processes as well as the thermodynamic processes of refrigeration systems. The tabletop experimental device using R134a as the refrigerant is equipped with an evaporator in the center of the open duct, a fan at the right end, and a disk for flow adjustment. The transparent acrylic plate at the front allows for observation of the internal sensors and evaporator. The temperature of the refrigeration system, the temperature and humidity at the duct's inlet and outlet, and the high and low pressures are digitally displayed on the control panel's LCD display. Additionally, using the included VDAS software, various data can be displayed and collected on a PC (sold separately), and p-h diagrams and psychrometric charts can be drawn.

  • Vocational Training/Technical School
  • Experimental equipment

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TD1 Forced Convection Heat Transfer Experimental Device

Forced convection heat transfer experimental apparatus

This study examines the theory of heat transfer due to forced convection and various formulas related to forced convection in pipes. The apparatus consists of an electric fan, a heater-equipped copper pipe covered with insulation, a measuring display, and a control panel. The air drawn in by the fan and flow control valve enters the test copper pipe (with an inner diameter of 32mm) through an orifice. The air, heated by the heater, is discharged outside while passing through each measurement point. The control panel is equipped with four sets of manometers to measure the pressure loss of the fan, orifice flow rate, pressure loss in the copper pipe, and the differential pressure of the Pitot tube. Additionally, a temperature switch displays the temperatures from 14 thermocouples installed at various points on the copper pipe. The thermocouples are installed at seven locations on the outer surface of the copper pipe, three locations on the outer surface of the insulation pipe, and three locations on the inner surface of the insulation pipe. A Pitot tube with thermocouples is also included to measure the velocity distribution in the cross-section of the copper pipe. To avoid overheating, the heater is designed to stop when the air is not flowing as specified.

  • Vocational Training/Technical School
  • Experimental equipment

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TD1001 Charles's Law Experimental Apparatus

Charles's Law experimental apparatus

This is a tabletop experimental device that demonstrates Charles's (Gay-Lussac's) law, which shows that the volume of an ideal gas is proportional to its absolute temperature when the pressure is constant. A pressure sensor and three thermocouples are installed in a heated adiabatic container, and the measurement data is displayed digitally. One thermocouple measures the surface temperature of the heater for control, while the other two measure the air temperature inside the container. The digital display shows the pressure inside the container, the air temperatures at two locations, and their average value. It measures the relationship between the pressure and temperature of an ideal gas (air) to demonstrate Charles's law. The device can also operate in reverse. By heating with the valve open and releasing the air inside the container before closing the valve, it records the pressure and temperature drop as the container cools down. This allows for results to be obtained under various starting points and ambient conditions. The optional VDAS automatic recording function is useful for slow natural cooling experiments. By using the optional (sold separately) data acquisition system (VDAS-B), 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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TD1002 Thermal Conductivity Experiment Apparatus

Heat conduction experimental apparatus

This is a tabletop experimental device for comparing and verifying the thermal conductivity and heat transfer rates of various metals. The heat transfer experimental device consists of a heater power supply and a measurement data display unit, and experiments are conducted by attaching one of the optional items TD1002a to d (sold separately). The heat transfer experimental device (TD1002) supplies variable current to the heater of the optional device, and a safety switch prevents the heater from overheating. In the spare space on the right side of the device, an optional (sold separately) data automatic collection system (VDAS-F) can be installed, allowing for real-time collection and analysis of various data to a PC (sold separately) using the data automatic collection system.

  • Vocational Training/Technical School
  • Experimental equipment

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TD1005 Natural and Forced Convection Heat Transfer Experimental Device

Natural and forced convection heat transfer experimental apparatus

This is a tabletop experimental device that conducts experiments on natural convection, forced convection, and heat transfer using heater modules with different surface shapes. The device consists of a duct measuring 128mm x 75mm, a removable fan, and three types of heater modules. Three thermocouples measure the temperature at the inlet and outlet of the duct, as well as the surface temperature of the heater modules. Additionally, a manual thermocouple is included to measure the surface temperature at six locations along the module from the side of the duct. The measured temperatures and wind speeds are displayed in real-time on a digital display. Furthermore, by using an optional (sold separately) data acquisition system (VDAS-B), 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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TD1008 Peltier and Seebeck Effect Experimental Device

Peltier and Seebeck effect experimental apparatus

This is a tabletop device that conducts performance experiments on thermoelectric power generation using the Peltier effect, which creates a temperature difference from the voltage between dissimilar metals, and the Seebeck effect, which generates voltage from a temperature difference. In the Seebeck effect experiment, the voltage generated from the temperature difference between the cooling surface and the hot surface of the device is measured using cold water from an external source and variable electric heater output. In the Peltier effect experiment, the surface temperature difference of the device is measured by adjusting the electric heater, water storage tank, and water supply pump. By accurately measuring the flow of water, the amount of heat transfer can be calculated, allowing for the evaluation of performance based on temperature gradient and power, as well as the analysis of the coefficient of performance (COP) and energy balance in each mode. The device panel features a schematic diagram and digitally displays heater output (W), cooling water inlet temperature (°C), device surface temperatures (top and bottom), voltage, current, and power. By using the optional (sold separately) data automatic collection system (VDAS-B), various data can be collected in real-time to a PC (sold separately), enabling the analysis of experimental results.

  • Vocational Training/Technical School
  • Experimental equipment

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TD1050 Steam Engine and Energy Conversion Experiment Device

Steam engine and energy conversion experimental device

You will learn the basic principles of thermodynamics, heat energy conversion, and power measurement using a boiler and steam engine. Water pumped from the storage tank by the feedwater pump is heated in the boiler and turns into steam, which drives a two-cylinder steam engine. The steam that exits the engine passes through a water-cooled condenser and enters a drainage tank or steam measurement container. A manually operated load device connected to the steam engine measures the engine's rotational speed, torque, and output, while thermocouples measure the temperature inside the boiler, the temperature of the throttling calorimeter, and the inlet and outlet temperatures of the cooling water for the condenser, displaying them digitally. The throttling calorimeter measures the dryness of the steam based on the heat quantity. Two analog gauges display the inlet pressure of the boiler and engine, and an electric meter shows the heater power. The analysis of the Rankine cycle and verification of steam plant performance, including the Mollier diagram, clarify the relationship between pressure and temperature through boiler experiments with saturated steam. For safety, if the water level in the boiler drops and the heater overheats, the heater will automatically stop, and a lamp will light up. Additionally, the safety valve of the boiler limits the pressure.

  • Vocational Training/Technical School
  • Experimental equipment

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TE78 Boiling and Condensation Heat Transfer Experimental Device

Boiling and condensation heat transfer experimental apparatus

The device consists of a main unit made up of a glass container, a heating heater, a water circulation pump, a heating wire test specimen, and a water-cooled cylinder test specimen (with copper oxide surface and gold-plated surface), as well as a control unit composed of a wire temperature adjustment volume and a digital display (showing water temperature, water flow rate, voltage, and current). In the boiling heat transfer experiment, the heater wire (resistor) placed inside the glass container is heated, and the transition from subcooled boiling to nucleate boiling and unstable film boiling is observed, drawing a boiling curve based on heat flux and degree of superheat. This metal wire generates high heat exceeding 100°C. In the condensation heat transfer experiment, the heat transfer due to the condensation phenomenon that occurs when steam contacts the surface of the water-cooled cylinder test specimen placed inside the glass container is measured. The heat transfer rate is derived from the temperature changes at the inlet and outlet of the water flowing through the cylinder test specimen and the flow rate. To clarify the effect of surface finishing on heat transfer, there are two types of finishes on the cylinder test specimen: gold plating and oxide film finishing, which reveal the differences between filmwise and dropwise condensation. By using the optional data automatic collection system VDAS-B (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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4372C Stirling Engine Performance Testing Device

Stirling engine performance testing apparatus

This is a very suitable teaching material for demonstrating thermal engineering, as it is a heat engine close to the Carnot cycle that heats and cools the gas inside the cylinder, converting the thermal energy from its volume changes into work. The power generated by the engine is converted into electrical energy (W) using a motor generator or into mechanical energy (Nm) using a torque meter. Additionally, experiments on a refrigeration cycle can be conducted using an external power source (sold separately). The included interface and software can display in real-time the cylinder pressure (kPa), rotational speed (rpm), cylinder volume (cm³), crank angle, and temperature data for both the heating and cooling sides of the displacer on a PC (sold separately), as well as plot P-V diagrams and estimate the efficiency of the Stirling engine.

  • Vocational Training/Technical School
  • Experimental equipment

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Hydropower generation experimental device (propeller turbine)

This is a demonstration device for propeller turbine hydroelectric power generation.

It consists of a circulating water tank and pump, flow control valve and flow sensor, propeller turbine with guide vanes, generator, and electrical load device. Five propeller turbines of different shapes are included to investigate the efficiency of various propellers and analyze the performance of the power generation system. Additionally, please try creating your own turbine using a 3D printer or similar equipment for experimentation. The turbine mounting section (drain outlet) is designed with transparent resin to allow for internal observation.

  • Testing Equipment and Devices
  • Experimental equipment

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Steam turbine experimental apparatus

It is a device designed to learn about the laws of thermodynamics, the Rankine cycle, and thermal efficiency.

It consists of an electric heating boiler, a single-stage axial flow impulse turbine, a variable load device (generator), a condenser with a cooling fan, a water tank, and a circulation pump. The water sent to the boiler by the circulation pump is heated by the electric heater to become high-temperature, high-pressure steam, which is injected from four nozzles to rotate the turbine and drive the generator. The used steam is cooled in the condenser with a cooling fan and returned to the water tank. The boiler is temperature-controlled by a PID-controlled electric heater and is equipped with a pressure relief valve and thermal trip for safety.

  • Testing Equipment and Devices
  • Experimental equipment

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Vacuum drying and vacuum baking experimental equipment

We respond to experimental requests from customers (such as vacuum drying and vacuum baking processes).

At Sato Vacuum Company, we have newly introduced experimental equipment that enables processing under high vacuum (×10^4Pa) and high temperature (Max 500℃), in addition to our conventional equipment, and it is permanently available for customer work sample testing.

  • Vacuum Equipment
  • Experimental equipment

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Control Equipment Manufacturing - Spraying Experiment Device

Design and manufacture of equipment for controlling the nozzle. Spraying experimental device.

We design and manufacture equipment to control and manage nozzles, as well as custom nozzle products. Please feel free to contact us for inquiries about nozzle peripheral equipment. For more details, please contact us or refer to our catalog.

  • Other machine tools
  • Experimental equipment

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MiniLab-026/090 Glove Box Thin Film Experiment Device

Compact and space-saving! Ideal for organic thin film development, all processes such as deposition, sputtering, and annealing can be seamlessly performed within the glove box.

In the film formation process of 2D materials such as OLED (Organic EL), OPV (Organic Photovoltaic), OTFT (Organic Thin Film Transistor), graphene, and TMD (Transition Metal Dichalcogenides), it is necessary to handle samples in an inert gas atmosphere isolated from oxygen and moisture. The MiniLab-026/090-GB achieves a "oxygen and moisture-free" experimental environment for organic film applications by housing the PVD chamber within the GB, creating a compact and space-saving environment. 【Features】 ◉ A series of processes such as PVD film formation, spin coating, and hot plate baking can be performed seamlessly within the GB without exposing them to the outside air. ◉ Space-saving: The chamber does not protrude from the back, so it does not take up space. 【MiniLab Models】 ◉ MiniLab-026 (26ℓ volume): Metal/insulator/organic material deposition, sputtering, plasma etching, annealing ◉ MiniLab-090 (90ℓ volume): Metal/insulator/organic material deposition, EB deposition, sputtering, plasma etching, annealing * Please first contact us with your required specifications, and we will configure the system according to your needs.

  • Evaporation Equipment
  • Experimental equipment

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Passive Avoidance Experiment Device (Passive Avoidance System)

Used in a test that associates the fear of entering a dark room with shock (passive avoidance test)!

We handle the "Passive Avoidance Experiment Device (Passive Avoidance System)." This product is used for tests (passive avoidance tests) that associate the entry into a dark room with an electric shock by administering an electric stimulus when an animal enters the dark room, thereby creating a memory of fear related to entering the dark room. Please use it for the efficacy evaluation of anti-dementia drugs targeting anti-amnesic effects, memory learning, and the assessment of learning behaviors. 【Features】 ■STEP 1: Acquisition Trial - Measure the time taken to enter the dark box from the light box. ■STEP 2: Recall Trial - Measure the time taken to enter the dark box at intervals of 24 hours. *For more details, please refer to the PDF document or feel free to contact us.

  • Testing Equipment and Devices
  • Other laboratory equipment and containers
  • Experimental equipment

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Fear Conditioning Experiment FC System

Research on anxiety-related disorders such as PTSD and emotional behavioral abnormalities!

The "FC System" is a device used for conducting experiments on fear conditioning and contextual learning. Animals are placed in a dedicated FCC cage, where they are subjected to sound, light, and electric shocks while their subtle movements are captured by "SCANET," which detects freezing behavior. By editing the freezing data while reviewing the recorded images after the experiment, it becomes possible to detect only the actual freezing instances. 【Features】 ■ Used in conjunction with the behavior analysis device SCANET ■ Conditional stimuli presented with dedicated software ■ Animal movements recorded by a camera ■ Soundproof box isolates the target animal from the surrounding environment *For more details, please refer to the PDF materials or feel free to contact us.

  • Testing Equipment and Devices
  • Experimental equipment

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Portable Recirculating Water Channel Experimental Device

This waterway device can be moved by mobile casters.

Water is supplied to the overflow tank by a pump, and static water at a constant pressure flows into the open water channel.

  • others
  • Experimental equipment

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CNI laser education set

Through demonstrations in classes and lectures, we can reproduce scientific phenomena, contributing to the improvement of students' understanding.

We would like to introduce the CNI-made "laser education set" that we handle. This is a series of compact/experimental devices designed for research and experiments at universities. It is easy to operate and move, allowing for the convenient transportation of the device for demonstration purposes in classes, and can be used for experiments and other purposes. It enables the reproduction of scientific phenomena through demonstrations in lessons and lectures, contributing to the improvement of students' understanding. 【Features】 ■ Simple structure ■ Easy product movement and operation *For more details, please download the PDF or feel free to contact us.

  • キャプチャK11-2.PNG
  • キャプチャK11-3.PNG
  • Laser Components
  • Experimental equipment

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Experimental apparatus

We provide a consistent service from the design, manufacturing, to the sales of various physical and chemical products and experimental equipment!

Our company proposes various materials and specifications on behalf of our customers. This significantly shortens the time required for the production of devices in research and development. We have manufactured many materials, sensors, and control devices necessary for experiments. Based on that experience, we can provide useful information on how to assemble them more efficiently and at a lower cost for your experiments. Please feel free to contact us for more details.

  • Processing Contract
  • Experimental equipment

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Vacuum products plasma experimental device

The management innovation plan has been approved for the small roll coater.

For anything related to plasma experimental devices, please leave it to Fuji R&D Corporation. For more details, please contact us.

  • Other processing machines
  • Experimental equipment

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Continuous production flow experimental device

Microreactors, micro-scale CSTRs, mixer-settlers, and other devices utilizing microfabrication can be experienced in the experimental lab.

There are two types of continuous reactors (flow reactors)! 1. Microreactor (Tubular Reactor: PFR) - Precise control and acceleration of mixing, heat transfer, and reactions ⇒ High performance and high functionality - Enables operation under harsh conditions such as nitration (avoiding explosions) ⇒ Improved safety - Miniaturization of equipment and systems ⇒ Resource and energy savings 2. Microscale (Continuous Stirred Tank Reactor: CSTR) - A fully mixed continuous stirred tank reactor miniaturized for experimental use - Extremely smooth transition from batch synthesis to continuous flow synthesis - Capable of heating, cooling, high pressure, microwave, light reactions, crystallization, etc. 3. Mixer Settler (Extraction, Separation, and Washing Device) - Suitable for continuous post-processing (extraction, washing, phase separation, etc.) after reactions - Generates a slug flow in a Y-shaped flow path, achieving continuous separation in tanks on the same plate - Possible to realize a flow process for post-processing by connecting devices in multiple stages ■ Equipped with various measurement and inspection instruments ■ Development, design, manufacturing, and sales are OK ■ Rentals available at the "Microreactor Research Lab" - Over 50 types of microreactors available *For more details, please refer to the PDF document or feel free to contact us.

  • Other molds
  • Experimental equipment

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Mac Technical Report [Products1] Continuous Flow Experimental Equipment Lineup

Introduction of three main devices manufactured utilizing our precision machining, along with projects currently under development.

In this document, we present three main types of equipment that have been manufactured utilizing our precision machining capabilities, as well as projects currently under development. We offer a lineup that includes the "Standard Microreactor," the "Integrated Microreactor," and the "Atmospheric CSTR." Additionally, we introduce mixer settlers and equipment under development. We encourage you to read through it. 【Contents】 1. Overview of Continuous Flow Systems 2. Microreactor (Tubular Reactor: PFR) 3. Micro-scale CSTR (Continuous Stirred Tank Reactor) 4. Mixer Settler 5. Equipment Under Development 6. Conclusion *For more details, please refer to the PDF document or feel free to contact us.

  • Other physicochemical equipment
  • Experimental equipment

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Vacuum Freeze Drying Experimental Machine "MIT-803-3-03 Type"

Research and development of a small quantity of various freeze-dried products! Intuitive operation with a touch panel.

The "MIT-803-3-03 model" is a vacuum freeze-drying experimental machine designed for research and development of small quantities of various products. It features a transparent acrylic door that allows for visual confirmation of the drying condition inside. The drying chamber is made of stainless steel for easy cleaning. The recorder comes standard with a paperless type, displaying the operating temperature on a color screen in real-time. 【Features】 - In the event of a malfunction, the "self-diagnosis function" guides you through the recovery process on the maintenance screen. - The cold trap defrosting time is short, enabling rapid continuous operation. - Operation: Full-color touch panel display. - Recorder: Paperless (USB output). For more details, please contact us or download the catalog.

  • Other drying equipment
  • Experimental equipment

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EB experimental device "I Compact EB"

Low price + compact! EB experimental device that can be easily installed in laboratories with caster mobility.

The "I Compact EB" is a low-cost, compact EB experimental device that is easy to operate. It features self-shielding and interlock for safety. Additionally, it is designed to not operate unless locked for added safety. It can be used in various fields of research and development, such as surface modification of resins, material development, and sterilization/sterilization tests. 【Features】 ■ Easy condition setting with touch panel operation ■ Compact and lightweight, easy to install in laboratories with caster mobility ■ Safe with self-shielding and interlock ■ Does not use greenhouse gases (SF6) *For more details, please refer to the PDF document or feel free to contact us.

  • Testing Equipment and Devices
  • Other laboratory equipment and containers
  • Experimental equipment

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High Voltage Experimental Equipment

Automatic control by software is possible! Introducing a high-voltage training device suitable for high-voltage experimental equipment.

We offer "high voltage experimental equipment" suitable for industrial high schools, technical colleges, and universities with high voltage experimental facilities. We also provide optional potential distribution and electric field distribution simulation software. Additionally, we can accommodate ultra-high voltage lightning surge generators separately. Please feel free to consult with us. 【Features】 ■ Optional potential distribution and electric field distribution simulation software available ■ Automatic control via software is possible  ・ AC high voltage generator: 60kV, 100kV  ・ DC high voltage generator: 75kV, 100kV  ・ Impulse voltage generator: 200kV, 300kV * For more details, please refer to the PDF materials or feel free to contact us.

  • Testing Equipment and Devices
  • Experimental equipment

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Proposal-type experimental equipment development manufacturer that also achieves cost reduction in a short time.

We automate complex elements and manufacture accurate experimental devices in a short time! [Technical expertise involved in the Aichi Knowledge Hub Key Research Project]

Hiroshima Corporation is an independent development manufacturer that participates in customer projects as a collaborative developer in the new energy, plant, and automotive industries, contributing through proposal-based manufacturing to minimize project speed and costs. In our "Equipment Engineering Division," we assist customers in creating plans based on our know-how and manufacture equipment. By combining our core technologies and automation technologies, we handle design, software, and manufacturing in-house, and after development, we can provide production equipment and OEM services. The results and inventions generated through joint development with customers will belong to the customers. [Strengths] ■ Guaranteeing equipment performance at the estimation stage by combining component devices and technical elements ■ A system that actively challenges new technologies and conducts joint development with customers ■ An in-house system capable of producing everything from testing and evaluation equipment to production facilities ■ Manufacturing of demonstration plants and SV support from developed equipment ■ Participation in the Knowledge Hub Aichi Key Research Project *For more details, please refer to the PDF document or feel free to contact us.

  • Contract manufacturing
  • Experimental equipment

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Thermal block products

Design and manufacture centered on ultra-low temperature experimental equipment and vacuum application devices.

At System Brain, we sell systems and components designed and manufactured by our affiliated company, Thermal Block Co., Ltd., which specializes in ultra-low temperature experimental equipment and vacuum application devices. Thermal Block Co., Ltd. has extensive know-how in temperature control, particularly in the low-temperature field, accumulated over many years. We not only provide systems but also assist in bringing ideas to life through sample holders and custom-made products.

  • Other physicochemical equipment
  • Testing Equipment and Devices
  • probe
  • Experimental equipment

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