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Evaluation Equipment Product List and Ranking from 105 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Jun 03, 2026~Jun 30, 2026
This ranking is based on the number of page views on our site.

Evaluation Equipment Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Jun 03, 2026~Jun 30, 2026
This ranking is based on the number of page views on our site.

  1. null/null
  2. システム技研 Kanagawa//Testing, Analysis and Measurement
  3. 地方独立行政法人東京都立産業技術研究センター Tokyo//Public interest/special/independent administrative agency
  4. 4 ノックス電子 【ECU設計開発、EV充放電システム開発はお任せください!】 Aichi//Automobiles and Transportation Equipment
  5. 4 米倉製作所 Osaka//Testing, Analysis and Measurement

Evaluation Equipment Product ranking

Last Updated: Aggregation Period:Jun 03, 2026~Jun 30, 2026
This ranking is based on the number of page views on our site.

  1. 全固体電池・LIB評価向け『アプリケーション資料集:電池編』
  2. CCID evaluation device ノックス電子 【ECU設計開発、EV充放電システム開発はお任せください!】
  3. Tokyo Metropolitan Industrial Technology Research Institute Healthcare Industry Support Office (SUSCARE) 地方独立行政法人東京都立産業技術研究センター
  4. Catalyst Evaluation Series "BELCAT II/BELMASS II"
  5. 4 Automated wafer bonding strength evaluation device using the DCB method. 米倉製作所

Evaluation Equipment Product List

151~180 item / All 242 items

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8-inch wafer compatible type CVmap92 A/B

8-inch wafer compatible type

This is a CV/IV measurement system using a mercury probe method that excels in reproducibility and safety. It can measure the characteristics of various types of wafers, including Si, compounds, SOI, SiC, and bulk wafers. Users can specify up to 49 measurement sites, and the system allows for mapping measurements of C-V, I-V characteristics, TDDB, Vbd, Qbd oxide breakdown evaluation, Dit, doping concentration, oxide film thickness, Low-k, High-k, and more.

  • Other environmental analysis equipment
  • Evaluation Equipment

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Organic OED manufacturing and evaluation device

Organic OED production and evaluation device

Features - Small space, compact design - Up to 5 deposition cells can be installed - Wide selection of substrate sizes from 1 to 3 inches - Double shield structure to prevent contamination - Standard equipped with substrate heating heater control mechanism - Easy design for maintenance and cleaning

  • Analytical Equipment and Devices
  • Other environmental analysis equipment
  • Other laboratory equipment and containers
  • Evaluation Equipment

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Solar cell evaluation device capable of observing the transition of maximum power point and conversion efficiency.

Observe the transition of current under pressure voltage with one click! The maximum power tracking function enhances the efficiency of next-generation solar cell development. Actively adopted in research fields [Demo units available].

The "PV Power Analyzer (VK-PA-300)" is a solar cell evaluation device that incorporates research and development functions for evaluating the current-voltage characteristics of solar power generation elements. It is compatible with modular solar power generation elements (10V/3A) and features a Maximum Power Point Tracking (MPPT) function, allowing observation of the process of reaching the maximum power point from different points (voltages) and directions. 【Features】 ■ Display of the transition of power/current/voltage/conversion efficiency after reaching the maximum power point ■ One-click measurement of "Open Circuit Voltage (Voc)" and "Short Circuit Current (Isc)" ■ Effective evaluation in a short time *Please contact us if you wish to request a demo loan. *For product details, please refer to the PDF.

  • Voltage Meter
  • Evaluation Equipment

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Composite Material Interface Characteristic Evaluation Device 'MODEL HM410'

Measuring interfacial shear strength and contact angle! Evaluation device for composite material interfacial properties using the micro droplet method.

The "MODEL HM410" is a composite interface property evaluation device that can measure the shear strength at the fiber-resin interface and contact angle using the microdroplet method. It adheres liquid resin to ultra-fine single transitions under any temperature environment, captures the shape, and calculates the contact angle from the image. At the same time, a pull-out test is conducted using the same sample, and the shear strength at the transition and resin interface is measured from the pull-out load at that time. 【Features】 ■ Evaluation device using the microdroplet method ■ Measurement of contact angle from images ■ Measurement of shear strength at the transition and resin interface from pull-out load *For more details, please refer to the PDF document or feel free to contact us.

  • Other measurement, recording and measuring instruments
  • Evaluation Equipment

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Evaluation of TFT characteristics of liquid crystal panels

We can perform good product characteristic measurements for performance verification, as well as defective characteristic measurements and reliability evaluations!

Our company can perform good product characteristic measurements, defective characteristic measurements, and reliability evaluations for specific TFTs in liquid crystal panels. In the "Electrical characteristic measurement of TFTs at various temperatures," we can disassemble the monitor in display mode and measure the electrical characteristics of the pixel TFTs within the panel. In the "DC bias stress test," we apply an arbitrary DC bias to the Gate and Drain and measure the Vth shift when stress is applied to the TFT, conducting reliability verification. 【Features】 - Electrical characteristic measurements can be performed on the pixel TFTs within the panel. - Measurements can be conducted before and after annealing, under light exposure, heating, or cooling conditions. - From the measurement results, indicators such as Ion, Ioff, Vth, and mobility can be calculated. - Verification of actual values in good product analysis and clarification of causes of defects can be performed. *For more details, please refer to the PDF document or feel free to contact us.

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  • LCD display
  • Evaluation Equipment

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EHC's new technology! Successfully expanded the gap range of evaluation cells!

A must-see for researchers! The gap range of the evaluation cell has been expanded to 0.7 to 100 μm! [Over 10,000 types]

It is ideal for research tools for liquid crystal materials and other advanced materials. Thanks to our technological advancements, we have successfully expanded the gap range of evaluation cells! Until now, measurements could only be made in the range of 2 to 50 μm, but we are now able to measure 0.7 to 2 μm and 50 to 100 μm, which were considered difficult in the industry. Additionally, specifications of ±0.2 μm are now possible, allowing us to meet detailed needs. Our product classification encompasses over 10,000 types, and we can customize according to your needs. 【Contents】 - Explanation of display examples and display symbols - Orientation diagrams by type - Price list - Glass substrates ● For more details, please contact us or download the catalog.

  • Other measurement, recording and measuring instruments
  • Evaluation Equipment

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OLED Constant Temperature and Humidity Environment Evaluation Device ELS-100A

This is an evaluation device that allows organic EL display devices to emit light under constant temperature and humidity conditions, conducting accelerated tests on brightness and emitted screen images, with the capability of CSV output.

The ELS-100A is a device that efficiently conducts environmental testing and evaluation of organic EL devices. An OLED device's light-emitting unit is installed inside a constant temperature and humidity chamber, and automatic measurements are taken through the high-transparency glass on the top of the environmental control unit. The standard specification is 4 channels, and the fixture is compatible with both bottom-emission and top-emission OLED devices. With a proven constant current control system and a reliable luminance meter, it performs accelerated testing for temperature and humidity, as well as recording the light-emitting state, with CSV file output.

  • Other semiconductor manufacturing equipment
  • Evaluation Equipment

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Evaluation device SOFC-type fuel cell evaluation device

Measuring solid oxide fuel cells!

This is an announcement from Nishiyama Manufacturing Co., Ltd. regarding the "SOFC-type fuel cell evaluation device."

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SOFC power generation evaluation device with load adjustment function / for tube cells

Easy collection of current with the electrode loading mechanism / Tube cell size can be changed arbitrarily.

The SOFC power generation evaluation device with load adjustment function has made current collection easier with its electrode load mechanism. It features a tapered guide link for easy centering. The load can be adjusted by turning the handle at the bottom, with an adjustment range of up to 50N. The SOFC power generation evaluation device for tube cells is designed to flow fuel inside the cell holding tube, allowing it to react with air on the outside of the cell. The tube cell size can be changed arbitrarily with a conversion adapter. For more details, please contact us or refer to the catalog.

  • Testing Equipment and Devices
  • Other measurement, recording and measuring instruments
  • Evaluation Equipment

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[Analysis Case] Evaluation of Layer Structure of Organic EL Devices

By performing preprocessing under controlled atmosphere conditions, it is possible to analyze while preventing oxidative degradation.

This shows the results of extracting the qualitative spectra of each layer by performing cutting processing of organic EL devices under controlled atmosphere. By conducting the cutting process of the organic EL devices under atmosphere control, we were able to obtain spectra of each layer that are closer to the true state.

  • Contract Analysis
  • Evaluation Equipment

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[Analysis Case] Evaluation of the Diffusion Layer in Crystalline Si Solar Cells

Quantitative evaluation of dopants and evaluation of carrier distribution.

This is an example of quantitatively evaluating the dopant concentration distribution directly beneath the electrode in back contact type crystalline silicon solar cells. Additionally, by evaluating the carrier distribution, it is possible to determine the polarity of p/n and visualize the depletion layer in the cross-sectional direction.

  • Contract Analysis
  • Evaluation Equipment

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[Analysis Case] Evaluation of Carrier Distribution in Crystalline Si Solar Cells

Evaluation of carrier diffusion layer uniformity in samples with surface roughness.

This is an introduction to a case where the carrier diffusion layer distribution of the surface textured part and the back surface field (BSF) part of BSF-type crystalline silicon solar cells was evaluated using SCM. In the textured part, the pn junction is formed along the surface irregularities, while in the BSF part, it can be confirmed that the carrier distribution is interrupted and uneven.

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  • Contract Analysis
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[Analysis Case] Evaluation of Carrier Density Distribution in Power Devices

Evaluation of the activation rate of the Dopant is possible.

SRA (Spreading Resistance Analysis) is a method that involves polishing a sample at an angle, making contact with two probes on the polished surface, and measuring the spreading resistance (Figure 1). By evaluating the carrier concentration distribution, it is possible to gain insights into the activation status of dopants. As an example, we present a case of SRA conducted on the central and outer regions of a diode chip surface after package opening (Figure 2).

  • Contract Analysis
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[Analysis Case] Evaluation of GaN Crystal Growth by XRD and EBSD

Cross-sectional mapping allows for the evaluation of the crystal growth of GaN.

Gallium nitride (GaN) is used as a material for LEDs and power devices due to its high thermal conductivity and high breakdown voltage characteristics. In the manufacturing process of these products, it is essential to produce high-quality GaN crystals without crystal defects that can affect device characteristics. This document presents a case study evaluating the crystal state of samples in which c-GaN crystals were grown at high speed on c-plane GaN substrates (c-GaN substrates).

  • Contract Analysis
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[Analysis Case] Electronic State Evaluation of Wide Bandgap Semiconductor Dopant Site Identification

Evaluation of microscopic atomic structures is possible through computational simulation.

β-Ga2O3 has a wide band gap and is expected to be a promising material for next-generation power devices and oxide semiconductors in terms of excellent power transmission efficiency and cost reduction. In recent years, it has been reported that β-Ga2O3 can be n-doped with Si or Sn. In this study, we conducted structural optimization calculations for models of β-Ga2O3 doped with Si or Sn and evaluated which sites each dopant is more likely to occupy in the crystal. Subsequently, we calculated the density of states from the obtained structural models and investigated the changes in electronic states due to doping.

  • Contract Analysis
  • Other semiconductors
  • Evaluation Equipment

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[Analysis Case] Evaluation of Stainless Steel Passive Films Compliant with SEMI Standards

Evaluation indicators regarding passive film properties can be obtained through standardized testing!

We offer the evaluation of stainless steel passive films in accordance with SEMI standards (C0612). Stainless steel exhibits excellent corrosion resistance due to the formation of a very thin, dense, and stable chromium oxide film (passive film) on its surface. The composition and film thickness of this passive film can be effectively evaluated using surface-sensitive techniques such as XPS and AES. [Measurement and Processing Methods] ■ [AES] Auger Electron Spectroscopy ■ [XPS] X-ray Photoelectron Spectroscopy ■ Others *For more details, please download the PDF or feel free to contact us.

  • Contract Analysis
  • Evaluation Equipment

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Multi-Channel Communication Reliability Evaluation Device "RTm-100 Series"

Measure the conduction resistance of circuit patterns, solder joints, etc., quickly and accurately!

The "RTm-100 Series" is a multi-channel conductive communication reliability evaluation device manufactured by J-RAS Corporation. It measures contact resistance in circuit patterns, solder joints, and more with high speed and precision. With a scan processing time of 50 milliseconds per channel, it can keep up with high-speed cycle testing even for multi-channel measurements. It employs semiconductor relays for the four-terminal network switching in linked channel scans, significantly improving long-term reliability compared to mechanical relay systems. Additionally, the compact housing can be expanded to accommodate up to 240 channels, allowing for flexible installation and easy mobility. It can also connect thermocouples for temperature data display and recording (optional). 【Features】 ■ High precision and high-speed measurement ■ High-speed scanning at 50 msec/channel: follows high-speed heat shock chambers ■ High precision & low noise: reliable data output ■ Four-terminal measurement cables: twisted pair / color-coded by channel ■ High reliability: does not use mechanical relays *For more details, please refer to the PDF document or feel free to contact us.

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High Voltage Insulation Reliability Evaluation Device "HVUα Series"

High-speed detection circuits with a few tens of nsec installed in all channels! Tester capable of low-noise measurement.

The "HVUα Series" is a high-voltage insulation reliability evaluation device manufactured by J-RAS Corporation. It is equipped with high-speed detection circuits capable of operating in the tens of nanoseconds across all channels, enabling more advanced reliability testing. It can detect partial discharge with a high-speed event measurement function of less than 100 nanoseconds. Each channel has its own power supply and individual control, allowing for different applied voltage settings across all channels. There are no mechanical relay scans, so there are no failures or troubles during continuous testing. Active guarding with triaxial cables enables low-noise measurements. 【Features】 ■ Detects partial discharge with a high-speed event measurement function of less than 100 nanoseconds ■ Each channel has its own power supply and individual feedback for stable voltage application to each sample ■ Individual short-circuit detection circuits for each channel can respond to instantaneous sample short circuits ■ Dedicated software allows for graph display and data recording ■ The system can be configured in units of five channels according to demand *For more details, please refer to the PDF document or feel free to contact us.

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0666 Laboplast Mill Micro 4N100

The small processing characteristic evaluation machine has undergone a full model change and is now a tabletop type that can be installed on office desks and laboratory tables.

The Laboplast Mill Micro 4N100 is a tabletop mixing and extrusion evaluation device developed for the purpose of resin material screening and formulation assessment. While it is compatible with our Laboplast Mill S series, it is specialized for testing with smaller quantities, allowing for the evaluation of processing characteristics with sample amounts measured in grams. Additionally, by thoroughly reviewing the internal mechanisms from the conventional Laboplast Mill Micro, this new model achieves significant improvements in operability, torque detection accuracy, and safety. It enables accelerated development and high-precision evaluation in the field of material development, where small quantities and a variety of assessments are required.

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  • Testing Equipment and Devices
  • Extrusion Machine
  • Analytical Equipment and Devices
  • Evaluation Equipment

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Stress Load Testing Machine ISL-T300 + Birefringence Distribution Evaluation Device WPA-200

Real-time observation of orientation changes during the stretching of polymer films! Quantitative evaluation is possible as an in-plane distribution.

We would like to introduce the combination of the stress loading testing machine 'ISL-T300' and the birefringence distribution evaluation device 'WPA-200'. The change in molecular orientation due to the stretching of polymer films can be optically evaluated by measuring birefringence. However, it has been difficult to evaluate birefringence while simultaneously applying tension, especially as surface distribution information. With the proposed combination of devices, it is possible to quantitatively evaluate the orientation changes as a surface distribution during the stretching process. 【Device Specifications】 <ISL-T300> ■ Maximum Load: 300N ■ Travel Distance: Up to 30mm ■ Testing Speed: 0.08 to 8mm/min ■ Chuck Spacing: 2 to 32mm ■ Sample Thickness: 1.5mm or less *For more details, please refer to the PDF document or feel free to contact us.

  • Testing Equipment and Devices
  • Evaluation Equipment

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Huz Technonet Fuel Cell Ion Membrane Evaluator

Easy to understand operations on a Windows computer.

It is ideal for evaluating the electrical characteristics of fuel cells, physical characteristics due to gas, and durability characteristics. Evaluation of the reformer is also possible. The supply humidifier unit is built-in (sold separately).

  • Other semiconductor manufacturing equipment
  • Evaluation Equipment

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Examples of equipment design support

Over 300 device design support cases and achievements in various industries and fields! Examples of device design support.

This document introduces examples of support provided by AUC Corporation, which assists in the design of devices for research and development operations in various cutting-edge technology fields. We address various concerns and requests related to device development, including inspection and evaluation devices, product design and manufacturing (ODM), and equipment updates (renewal of existing devices). We have supported the design of over 300 devices and have a proven track record across multiple industries and fields. Please feel free to consult with us. 【Examples of Published Cases】 ■ High current and voltage cable winding device ■ Bacterial inspection device ■ RFID fiber mounting device ■ Crawler robot ■ Microfluidic chip and cell sorter ■ Stirring and cleaning device *For more details, please refer to the PDF document or feel free to contact us.

  • Contract Analysis
  • Mechanical Design
  • Evaluation Equipment

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Tohoku University Technology: A non-contact quantitative analysis device for food taken movement: T15-050

To provide evaluation method for swallowing function, sense of taste for food

It happens that some food are mistaken by elders and then drop into their lungs. Some times it leads to serious pneumonia and thus becomes to be problematic for home/facility medical care for elders.  This invention provides a non-contact quantitative analysis device to evaluate the swallowing function of elders by monitoring the movement of neck surface. Also, the device is useful to evaluate objectively if the food is delicious and if elders can swallow the food smoothly.

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Tohoku University Technology: Evaluation method for optical properties: T19-441

Possible to check the quality of metamaterials inexpensively, quickly, and accurately.

 When mass-producing products containing metamaterials, a new method for sorting out good or bad metamaterials is desired because the current conventional technology can not provide an efficient and low-cost detection methods for its large areas.  The present invention provides an evaluation method for checking the quality of metamaterials that is less expensive than conventional techniques and reduces the time required for evaluation, thus ultimately reducing costs. Features・Outstandings

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Hirosaki Univ. Technology : Reliability evaluation method of Multilayer wiring : K23-014

Accurate evaluation of electromigration damage

With the high integration of electronic devices, high temperature of metal wiring and high current density used in circuits are increasing. Then, electromigration (EM) damage due to metal fatigue becomes a problem, which may cause disconnection failure. Therefore, it is important to evaluate the reliability of wiring.  Conventional reliability evaluation methods include empirical equations (Black's equation), but tests for each wiring structure are necessary, and evaluation accuracy is also problematic. Since threshold current density of EM damage exists in multilayer wiring with via connections, evaluation studies of threshold current density have conventionally been conducted. However, evaluation of the EM damage process leading to the generation and growth of voids and disconnection has not been achieved, and a highly accurate evaluation method has been required.  In order to solve the above problems, we have developed a method for evaluating wire life and allowable current with high accuracy and simplicity. In the present invention, the parameters controlling EM damage can be specified and the atomic concentration distribution inside the wiring can be simulated. By utilizing this method, it is also possible to design an effective reservoir structure to improve the threshold current density.

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Tohoku University Technology: Evaluation of Protein Degradation Ability of Photocatalysts: T24-043

Accurately evaluate photocatalytic performance and apply it to the development of materials useful for preventing contact infections.

It is widely known that titanium dioxide has photocatalytic activity and protein degradation capabilities, including antibacterial and antiviral properties, making it a promising material for preventing contact infections such as those caused by the novel coronavirus SARS-CoV-2 (COVID-19). However, conventional methods for quantitative evaluation of protein degradation capability (JIS L 1922 and ISO 18184) raise concerns about the presence of unreacted proteins due to insufficient adsorption to the substrate, which may lead to inaccurate measurements. The present invention is a method for quantitatively evaluating protein degradation capability more accurately by allowing a high percentage of protein to adsorb to the substrate.

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Tohoku University Technology: Evaluation Methods for Polymer Nanocomposites: T24-028

Demonstrate true value in the development of new materials and the design of optimal operating conditions.

Polymer nanocomposite materials are expected to have various applications, such as in battery materials, organic thin film materials, and automobile bodies, and development is underway. The manufacturing of these materials utilizes melt blending. During the mixing of polymers and nanoparticles, the operating conditions are set empirically and exploratively, making it difficult to efficiently find the optimal control methods. This invention proposes an evaluation method that allows for the classification of the aggregation state of nanoparticles present in polymer nanocomposite materials. By observing the components and microstructure of the composite materials, it has become possible to evaluate the behavior of materials obtained from the blending process. Using this evaluation method as a guideline, it is expected to open up pathways for the development of novel polymer nanocomposite materials and the design of optimal operating conditions, leading to improvements in operational efficiency in the field.

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Tohoku Univ. Technology :Microneedle Penetration Evaluation System:T22-113

Visualization of Penetration Characteristics and Pharmacokinetics with Dynamic Skin Model

Microneedles deliver drugs by coating or loading therapeutic agents onto fine needles that penetrate tissues and release the drug in a minimally invasive manner. However, pharmacokinetic evaluations have so far relied on the assumption that sufficient drug amounts were successfully administered to achieve therapeutic effect. This has limited the quantitative assessment of safety and efficacy. Our system enables quantitative evaluation of microneedle penetration behavior—such as penetration depth, direction, and the range of affected tissue—within a simulated skin environment that can reproduce mechanical properties like pulsation and viscoelasticity. These features allow realistic replication of the dynamic interactions that occur during microneedle insertion. Using stereo camera–based measurements, the system captures both the physical penetration process and the dynamic deformation of the target with high precision.

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USB PD compatible power evaluation device 'DTP1U0' now on sale.

[New Product] For evaluating USB PD compatible batteries, chargers, and AC adapters! Efficiently conduct various tests with a single unit.

The "DTP1U0" is a device for evaluating power source products such as batteries and charging AC adapters that comply with the USB Power Delivery (USB PD) standard. It can send Request packets for the supported USB PD voltages (5, 9, 15, 20V), eliminating the need to prepare various devices that were previously necessary for evaluating each voltage. 【Features】 ■ Easy and efficient evaluation of power output and load for USB PD compliant devices ■ Supports evaluation of power supplies with multiple Source Capabilities ■ Operates on USB bus power, eliminating the need for an external power source ■ Allows for unique load testing by connecting an electronic load for current evaluation ■ Compact and lightweight *For more details, please refer to the PDF document. Feel free to contact us with any inquiries.

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[Proposal for Evaluation Device] Pack Charge and Discharge Evaluation Device

Introducing a proposal for battery-related evaluation devices! Conditional branching is possible based on the acquired data.

This product is a device for evaluating the charge and discharge of battery packs. It is capable of creating, controlling, and managing charge and discharge test patterns via a computer. In addition to measuring voltage, current, and temperature, it is also possible to branch conditions based on the acquired measurement values and CAN communication data. 【Specifications】 ■ Voltage: 0–750V ■ Current: ±800A ■ Power: ±500kW ■ Charge and discharge modes: - CC charge and discharge, CC-CV charge and discharge, CP charge and discharge, CP-CV charge and discharge, cell CC-CV charge and discharge, cell CP-CV charge and discharge, pulse charge and discharge, map charge and discharge, etc. *For more details, please refer to the external link or feel free to contact us.

  • Secondary Cells/Batteries
  • Other process controls
  • Other measurement, recording and measuring instruments
  • Evaluation Equipment

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