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ダイナックス

capital50000Ten thousand
number of employees1244
addressHokkaido/Chitose-shi/No. 1, 1053 Shangzhang Road
phone0144-57-3124
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last updated:Oct 09, 2025
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アキシャルギャップ型モータ アキシャルギャップ型モータ
活用イメージ 活用イメージ
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活用イメージをご紹介。 『アキシャルギャップモータ』は、EV・HEV・産業用等の駆動及び補機用に適用可能なモータです。

Examples of Utilizing Axial Gap Motors for Small Mobility Solutions

Lightweight and space-saving design of in-wheel motors! Achieving high output while being compact.

We are developing a flat-shaped "Axial Gap Motor." Unlike conventional radial gap motors, it is characterized by being space-saving, lightweight, and highly efficient. By optimizing the fractional slots, we reduce torque ripple. Additionally, we can provide design proposals for motor characteristics and mounting shapes according to your requirements. 【Features】 - Adoption of a 3D structured powder core and concentrated winding of coils for miniaturization and flattening - Use of surface-mounted magnets and non-magnetic support materials (Rotor) for a maximum efficiency of 96% - Reduction of torque ripple through the optimization of fractional slots - Capability to provide design proposals for motor characteristics and mounting shapes according to your requirements *For more details, please download the PDF or feel free to contact us.

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Examples of Utilizing Axial Gap Motors for Small Electric Buses

Lightweight and space-saving design of in-wheel motors! Axial type demonstrates significant advantages.

Our company is developing a flat-shaped "Axial Gap Motor." Unlike conventional radial gap motors, it is characterized by being space-saving, lightweight, and highly efficient. By adopting a 3D structured powdered core and concentrated winding of the coils, we have achieved a compact and flat design. With the use of surface-mounted magnets and non-magnetic support materials (Rotor), we have achieved a maximum efficiency of 96%. 【Features】 ■ Achieves compact flat design with 3D structured powdered core and concentrated winding of coils ■ Maximum efficiency of 96% with the use of surface-mounted magnets and non-magnetic support materials (Rotor) ■ Reduces torque ripple through optimization of fractional slots ■ Supports design proposals for motor characteristics and mounting shapes according to your requirements *For more details, please download the PDF or feel free to contact us.

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Examples of Utilizing Axial Gap Motors for Construction Machinery

Electric actuator with space-saving design! Features slim profile, high torque, and high efficiency.

We are developing a flat-shaped "Axial Gap Motor." Unlike conventional radial gap motors, it is characterized by being space-saving, lightweight, and highly efficient. The flat shape structure offers the advantage of reducing the axial dimension of the motor, making it suitable for applications with layout constraints. 【Features】 - Adoption of a 3D structured powder core and concentrated winding of the coil for compact flattening - Use of surface-mounted magnets and non-magnetic support materials (Rotor) for a maximum efficiency of 96% - Optimization of fractional slots to reduce torque ripple - Design proposals for motor characteristics and mounting shapes tailored to your requirements *For more details, please download the PDF or feel free to contact us.

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Examples of Utilizing Axial Gap Motors for Vehicle-mounted Auxiliary Devices

Drive of hydraulic actuating mechanism with space-saving design! It has a structure where magnetic flux flows in the axial direction.

We are developing a flat-shaped "Axial Gap Motor." Unlike conventional radial gap motors, it is characterized by being space-saving, lightweight, and highly efficient. With the adoption of surface-mounted magnets and non-magnetic support materials (Rotor), the maximum efficiency reaches 96%. We can provide design proposals for motor characteristics and mounting shapes according to your requirements. 【Features】 - Adoption of a 3D structured powder core and concentrated winding of coils for miniaturization and flattening - Maximum efficiency of 96% with the use of surface-mounted magnets and non-magnetic support materials (Rotor) - Reduction of torque ripple through optimization of fractional slots - Design proposals for motor characteristics and mounting shapes according to your requirements *For more details, please download the PDF or feel free to contact us.

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Motor for snow removal machines (for auxiliary use) | Examples of application of axial gap motors

For applications requiring a balance of lightweight design and high output! Hydraulic actuation mechanism drive, space-saving design.

Our company is developing a flat-shaped "Axial Gap Motor." Unlike conventional radial gap motors, it is characterized by being space-saving, lightweight, and highly efficient. We can provide design proposals for motor characteristics and mounting shapes according to your requirements. The flat shape structure allows for a reduction in the axial dimension of the motor. 【Features】 - Adoption of a 3D structured powder core and concentrated winding of the coil for miniaturization and flattening - Use of surface-mounted magnets and non-magnetic support materials (Rotor) for a maximum efficiency of 96% - Optimization of fractional slots to reduce torque ripple - We can provide design proposals for motor characteristics and mounting shapes according to your requirements. *For more details, please download the PDF or feel free to contact us.

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Motor for Harvesters | Examples of Utilizing Axial Gap Motors

Drive motor and hydraulic actuator drive. Space-saving design! High efficiency and high torque type.

We are developing a flat-shaped "Axial Gap Motor." Unlike conventional radial gap motors, it is characterized by being space-saving, lightweight, and highly efficient. By adopting a 3D structure powder core and concentrated winding of the coils, we achieve a compact and flat design. Optimization of fractional slots reduces torque ripple. 【Features】 ■ Achieves compact flat design with 3D structure powder core and concentrated winding of coils ■ Highest efficiency of 96% with surface-mounted magnets and non-magnetic support materials (Rotor) ■ Reduces torque ripple through optimization of fractional slots ■ We can accommodate design proposals for motor characteristics and mounting shapes according to your requirements *For more details, please download the PDF or feel free to contact us.

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Examples of Utilizing Axial Gap Motors for Trolleys

Lightweight design of drive motors and space-saving design! It is possible to concentrate magnetic flux density and expand torque generation area.

We are developing a flat-shaped "Axial Gap Motor." Unlike conventional radial gap motors, it is characterized by being space-saving, lightweight, and highly efficient. The flat shape structure allows for a thinner axial dimension of the motor. It is also suitable for applications with layout constraints. 【Features】 - Adoption of a 3D structured powder core and concentrated winding of the coil for miniaturization and flattening - Use of surface-mounted magnets and non-magnetic support materials (Rotor) for a maximum efficiency of 96% - Optimization of fractional slots to reduce torque ripple - We can accommodate design proposals for motor characteristics and mounting shapes according to your requirements. *For more details, please download the PDF or feel free to contact us.

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Examples of Utilizing Axial Gap Motors for Special Vehicles

Ideal for applications such as special vehicles with space constraints! Lightweight drive motors and space-saving design.

We are developing a flat-shaped "Axial Gap Motor." Unlike conventional radial gap motors, it is characterized by its space-saving, lightweight, and high-efficiency design. We can provide design proposals for motor characteristics and mounting shapes tailored to your requirements. It is also suitable for applications with layout constraints. 【Features】 - Adoption of a 3D structured powder core and concentrated winding of the coil enables compact flattening. - Use of surface-mounted magnets and non-magnetic support materials (Rotor) achieves a maximum efficiency of 96%. - Optimization of fractional slots reduces torque ripple. - We can provide design proposals for motor characteristics and mounting shapes tailored to your requirements. *For more details, please download the PDF or feel free to contact us.

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Examples of Utilizing Axial Gap Motors for Special Vehicles <Weight Reduction>

Lightweight drive motors, space-saving design, and system simplification through integrated design!

Our company is developing a flat-shaped "Axial Gap Motor." Unlike conventional radial gap motors, it is characterized by being space-saving, lightweight, and highly efficient. The flat shape structure allows for a thinner axial dimension of the motor, and it can easily accommodate an integrated inverter and appropriate transmission. [Features] ■ Provides high torque and high continuous output density with a liquid cooling mechanism ■ Easily accommodates an integrated inverter and appropriate transmission *For more details, please download the PDF or feel free to contact us.

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Examples of Utilizing Axial Gap Motors for Utility Vehicles

Compact yet high output! Lightweight drive motor, space-saving design, and system simplification through integrated design.

Our company is developing a flat-shaped "Axial Gap Motor." Unlike conventional radial gap motors, it is characterized by being space-saving, lightweight, and highly efficient. It provides high torque and high continuous output density with a liquid cooling mechanism, making it suitable for applications with layout constraints. [Features] - Provides high torque and high continuous output density with a liquid cooling mechanism - Built-in inverter and easy to mount appropriate transmission *For more details, please download the PDF or feel free to contact us.

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Examples of Utilizing Axial Gap Motors for Industrial Robots

Lightweight arms, overall efficiency of the device! High-efficiency, high-torque electric motor.

We are developing a flat-shaped "Axial Gap Motor." Unlike conventional radial gap motors, it is characterized by being space-saving, lightweight, and highly efficient. The flat shape structure allows for a thinner axial dimension of the motor. It is also suitable for applications with layout constraints. 【Features】 - Adoption of a 3D structured powdered core and concentrated winding of coils for miniaturization and flattening - Use of surface-mounted magnets and non-magnetic support materials (Rotor) for a maximum efficiency of 96% - Optimization of fractional slots to reduce torque ripple - Design proposals for motor characteristics and mounting shapes according to your requirements *For more details, please download the PDF or feel free to contact us.

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Axial Gap Motor Application Use Cases [Helpful Materials]

Introducing applications of a thin motor where magnets and coils rotate "facing each other"!

This document is a collection of applications for the "Axial Gap Motor," which achieves miniaturization and flattening through the adoption of a 3D structured powder core and concentrated winding of the coil. It explains common challenges and expected benefits in the use of electric motors in applications such as electric small buses, ride-on lawn mowers, and towing carts. Additionally, it introduces the features of the "Axial Gap Motor." We encourage you to read it. [Contents] ■ Use of in-wheel motors in electric small buses ■ Use of electric motors for driving ride-on lawn mowers ■ Use of electric motors for driving towing carts ■ Replacement of hydraulic actuators with electric motors ■ Replacement of hydraulic/engine pumps with electric motors *For more details, please download the PDF or feel free to contact us.

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