We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Inverter.
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Inverter Product List and Ranking from 41 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 24, 2025~Oct 21, 2025
This ranking is based on the number of page views on our site.

Inverter Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 24, 2025~Oct 21, 2025
This ranking is based on the number of page views on our site.

  1. 未来舎 Tokyo//Industrial Electrical Equipment
  2. アルファーシステム Nagano//Industrial Electrical Equipment
  3. 東洋電機製造株式会社 Tokyo//others
  4. 4 null/null
  5. 5 Bluesun Japan Tokyo//Energy

Inverter Product ranking

Last Updated: Aggregation Period:Sep 24, 2025~Oct 21, 2025
This ranking is based on the number of page views on our site.

  1. Multipurpose Inverter 'VF3017P' 未来舎
  2. Intelligent Inverter 'VF66B' 東洋電機製造株式会社
  3. Pump Dedicated Single-Phase Inverter FR-D710S Series
  4. Bluesun 10KW single-phase three-wire full-load high grid inverter Bluesun Japan
  5. 5 Power supply available from electric forklift - Smart E Inverter 2000 加地コーポレーション

Inverter Product List

136~150 item / All 254 items

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Distributed generation grid-connected inverter

A power conversion device that converts direct current to alternating current and operates in conjunction with the commercial power grid.

The distributed generation system interconnection inverter has achieved miniaturization and high efficiency. It also ensures moisture resistance that can withstand JET certification tests. This power conversion device converts direct current generated from fuel cells and solar cells into alternating current and operates in conjunction with the commercial grid. Customization options, such as size, are available according to customer requirements. For more details, please download the catalog.

  • Inverter

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DCAC Inverter "PBS Series"

PWM inverter type DC input AC output power supply! Customizable capacity and input voltage.

The "PBS Series" is a DC input AC output power supply that employs an insulated type DCDC converter in the boost section using a PWM inverter method. Through the RS-232C interface, it is possible to monitor input voltage, current, and output current. Customization options such as capacity and input voltage are also available, so please feel free to inquire. 【Features】 ■ Output waveform is a sine wave with a distortion rate of 3% or less ■ Output power supply frequency can be switched between 50Hz and 60Hz ■ RS-485 interface support is also available *For more details, please download the PDF or feel free to contact us.

  • Testing Equipment and Devices

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Grid-connected inverter

In cases where insulation is required, such as for fuel cell applications! Insulation type grid-connected inverter.

This device is an isolated grid-connected inverter, unlike commercially available solar power converters. It is ideal for applications that require isolation, such as fuel cells. The power generation and the ON/OFF operation are controlled by communication commands from the host machine. Input voltage and output capacity can be customized, so please contact us for more information. 【Features】 ■ Isolated type ■ Customizable input voltage and output capacity *For more details, please refer to the PDF document or feel free to contact us.

  • Testing Equipment and Devices

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Case Study 4: [Office Building] Operational Improvement (Standardization of Inverter Manufacturers)

The inverter is now understandable for facility personnel, improving maintenance capabilities.

Before the update, the inverter, which had been installed for over ten years, had a built-in sequence circuit for frequency display, but the fault information and operation methods were unclear. After the update, the inverter became user-friendly for facility personnel, improving maintenance capabilities. 【Features】 ○ The inverter became user-friendly, enhancing maintenance capabilities. ○ Target equipment: Inverter for total heat exchanger blower (200V/15.0kW) For more details, please contact us or download the catalog.

  • Inverter
  • air conditioning
  • Ventilation and Exhaust

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Update Case 5 [Commercial Facility] Operational Improvement (Increased Energy Savings through Automated Control)

Added variable speed control based on temperature and carbon dioxide concentration. Improved average energy-saving rate to over 60%.

Before the update, the machine room was located far away, making it almost impossible to use frequency control with inverters. After the update, we improved the average energy-saving rate to over 60% by using temperature sensors and carbon dioxide concentration sensors to control the fan motor with an inverter. 【Features】 ○ Inverter control of the fan motor's rotation speed using temperature sensors and carbon dioxide concentration sensors ○ Target equipment: Inverters for air conditioning units and exhaust fans (400V/30.0kW, 18.5kW) For more details, please contact us or download the catalog.

  • Inverter
  • air conditioning
  • Ventilation and Exhaust

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Case Study: Pump 2 [Commercial Facility] Inverterization of Cooling Water Pump

Monitor the temperature at the cooling water outlet and further reduce power consumption through inverter control except during the peak summer daytime.

The flow rate sent to the cold water pump was adjusted by throttling the valve, but significant reductions in electrical power consumption were achieved by controlling it with an inverter. By monitoring the temperature at the cold water outlet with a temperature sensor, the pump motor's rotation speed can be controlled by the inverter, allowing for further energy savings except during the peak summer daytime. 【Features】 ○ Control Method: Pump motor rotation speed controlled by inverter using a temperature sensor ○ Target Equipment: Absorption chiller/heater Cold water pump (200V/55.0kW) For more details, please contact us or download the catalog.

  • Inverter
  • Flow Control
  • air conditioning

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Case Study: Pump 4 [Condominium] Inverterization of Chilled and Hot Water Pump

It is possible to convert pumps to inverters at a low cost.

By opening the valve and adjusting the inverter to the same flow rate as before, power consumption is reduced. Since control is not performed using sensors for temperature, pressure, or flow rate, it can be implemented at a low cost. Five inverters are compactly installed on one panel. 【Features】 ○ Control Method: Fixed frequency (constant flow) control ○ Target Equipment: Absorption chiller/heater       Primary chilled/heated water pump (2.2kW × 2 units),       Secondary chilled/heated water pump (3.7kW × 3 units) For more details, please contact us or download the catalog.

  • Inverter
  • Flow Control
  • air conditioning

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Case Study: Pump 5 [Commercial Facility] Inverterization of Chilled Water Pump

By using a temperature sensor in conjunction, further power reduction is achieved through inverter control.

By opening the valve and adjusting the inverter to achieve the same flow rate as before, we reduce the power consumption of the pump. By using temperature control and variably controlling the inverter frequency, we implement further energy savings. Additionally, by using compressor current control for the turbo chiller, we prevent overload due to insufficient cooling water. 【Features】 ○ Control Method: Using temperature sensors to control the pump motor speed with an inverter ○ Target Equipment: Turbo chiller       Cooling water pump (75.0 kW), Chilled water primary pump (55.0 kW) For more details, please contact us or download the catalog.

  • Inverter
  • Flow Control
  • air conditioning

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Case Study: Pump 7 [Sports Facility] - Inverterization of Filtration Pump

Inverter control considering the backwashing operation of the filtration device and the number of circulation cycles (turns).

We will implement a scheduled operation where the speed is high during business hours and low during non-business hours (such as nighttime and closed days). To maintain water quality, we will use inverter control that takes into account backwashing and circulation frequency (turns). We will use a low-cost inverter panel (EBL series) to shorten the investment recovery period. 【Features】 ○ Control methods: Time schedule control, temperature control, manual step speed control ○ Target equipment: Pool filtration pump (5.5kW) For more details, please contact us or download the catalog.

  • Inverter
  • Flow Control
  • Filtration Equipment

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Case Study: Fan 3 [Accommodation Facility] Inverterization of Supply and Exhaust Fans

Detecting the operating status of kitchen equipment with sensors and controlling the intake and exhaust with an inverter to reduce power consumption.

By linking the supply and exhaust fans, the conditioned air is not unnecessarily lost to the outside, improving air conditioning efficiency and reducing power consumption. Since busy hours vary due to banquet schedules, instead of time-based control, the operation status of kitchen equipment is detected by sensors, and the supply and exhaust are controlled by inverters. During times when no heating or cooking is taking place, temperature sensors and carbon dioxide concentration sensors help reduce the drying of served food. 【Features】 ○ Control Method: Motor speed is controlled by inverter using temperature sensors and carbon dioxide concentration sensors ○ Target Equipment: Kitchen ventilation system Supply fan (30.0 kW), Exhaust fan (37.0 kW) For more details, please contact us or download the catalog.

  • air conditioning
  • Ventilation and Exhaust
  • Inverter

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Case Study: Fan 4 [Office Building] - Inverterization of Cooling Tower Fan

Eliminating abnormal noise caused by fan belt slippage at startup with gentle acceleration of the inverter.

The gentle acceleration of the inverter eliminates abnormal noises caused by fan belt slippage at startup (noise reduction effect). By adding rotational control via the inverter to the start-stop control method using temperature sensors, significant power savings are achieved. Controlling three motors with one 18.5kW inverter helps to reduce manufacturing and installation costs. 【Features】 ○ Control Method: Inverter control of fan motor speed using temperature sensors ○ Target Equipment: Absorption chiller Cooling tower fans (5.5kW) × 3 units For more details, please contact us or download the catalog.

  • Ventilation and Exhaust
  • Inverter
  • cooling tower

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Case Study: Fan 5 [Accommodation Facility] Inverterization of Supply and Exhaust Fans

Manage the operating status using the temperature of each exhaust duct and reduce power consumption by controlling the fan motor with an inverter.

In a kitchen where reducing airflow is difficult, the operating status is managed by the temperature of each exhaust duct, and the fan motor is controlled by an inverter. The coordination between the external air conditioning unit and the exhaust fan located at a distance is also controlled by the inverter. 【Features】 ○ Control Method: Fan motor speed is controlled by an inverter using temperature sensors. ○ Target Equipment: Kitchen ventilation system External air conditioning unit (11.0 kW), exhaust fan (7.5 kW) For more details, please contact us or download the catalog.

  • Ventilation and Exhaust
  • Inverter
  • air conditioning

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Case Study: Blower 7 [Commercial Facility] Inverterization of Exhaust Fan

Reduce power by controlling the fan motor speed with an inverter using a carbon monoxide concentration sensor.

Control the fan motor speed using an inverter based on the carbon monoxide concentration sensor installed on the roadway. By controlling the motor speed with the inverter during off-peak hours (such as weekends and evenings), significant power savings can be achieved. 【Features】 ○ Control Method: Fan motor speed controlled by inverter using carbon monoxide concentration sensor ○ Target Equipment: Underground parking exhaust fans (22.0 kW × 3 units) For more details, please contact us or download the catalog.

  • Ventilation and Exhaust
  • Inverter
  • air conditioning

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General-purpose inverter "FREQROL-F700PJ"

Small body, big energy savings. Mitsubishi inverter software provides comprehensive support.

The "FREQROL-F700PJ" is a general-purpose inverter from Mitsubishi Electric that can operate both general-purpose motors (IM) and IPM motors (IPM). With just one setting, you can switch from a general-purpose motor to an IPM motor. There is no need to prepare two types of spare inverters for general-purpose motors and IPM motors. Additionally, there is no need for a "temporary inverter, later motor" bulk update. This is advantageous for securing budget with phased capital investment. 【Features】 ■ Both general-purpose motors (three-phase induction motors) and IPM motors can be handled with ease ■ Inverter control for energy saving ■ Reduced wiring and space-saving ■ User-friendly operation and maintenance ■ Functions suitable for fans and pumps *For more details, please download the PDF or feel free to contact us.

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  • F700PJ3.png
  • F700PJ4.png
  • F700PJ5.png
  • F700PJ6.png
  • F700PJ7.png
  • Inverter

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