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Automation technology Drive technology Flat gear motor

Flat gear motor

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The providers have not yet entered any products for this product type Flat gear motor. The number of products in diribo is increasing dynamically, meaning that you will also find an interesting selection of Flat gear motor in the future.
Parallel shaft gearmotors - The future of drive technology?

Parallel shaft gearmotors are an innovative type of electric motor that are becoming increasingly important due to their compact design and high performance. They are used in a wide range of applications, from the automotive industry to robotics.

The main advantage of offset gearmotors is their flat design. Unlike conventional motors, in which the rotor and the gearbox are arranged one above the other, the components of offset gearmotors are arranged in parallel. This allows them to be used in tight spaces where conventional motors simply would not fit. This allows optimal use of the available space and opens up new possibilities for the design of devices and machines.

Another advantage of offset geared motors is their high performance. The parallel arrangement of the components allows direct transmission of torque energy, resulting in more efficient performance. This enables higher speed and improved positioning accuracy, which is particularly important in robotics.

Parallel shaft gearmotors are already being used in the automotive industry to power electric vehicles. Their compact design allows them to be integrated into the limited space of an electric vehicle without compromising on performance. They also enable efficient power transfer, resulting in longer battery life.

Offset gearmotors are also in high demand in the robotics industry due to their advantages. Robots often have to work in tight spaces and perform precise movements. Parallel shaft gearmotors enable them to meet these requirements by providing high performance and precise positioning.

In addition, parallel shaft gearmotors are also used in other industries, such as medical technology, aerospace or the packaging industry. Wherever compact design and high performance are required, offset gearmotors are being used more and more frequently.

The future of drive technology could therefore be characterized by offset geared motors. Their advantages in terms of space savings and performance make them an attractive option for many industries. Demand for offset gearmotors is expected to continue to rise in the coming years as more and more companies recognize the benefits of this innovative drive technology.

Overall, parallel shaft gearmotors offer a promising alternative to conventional motors and could revolutionize the way we power machinery and equipment. It will be exciting to see how this technology develops and what new possibilities it will offer in the future.

What are parallel shaft geared motors and how do they work?

Parallel shaft geared motors are compact electric motors in which the gearbox is integrated in a flat design. In contrast to conventional motors, where the gearbox is usually mounted separately, the flat design saves space and enables greater integration into various applications.

The functionality of a parallel shaft geared motor is based on the interaction between the electric motor and the gearbox. The electric motor generates the necessary rotary motion by converting electrical energy into mechanical energy. The gearbox, on the other hand, is used to adapt the speed and torque of the motor to the specific requirements of the application.

In a parallel shaft geared motor, the gearbox is usually designed as a planetary gearbox. The gearbox consists of a sun gear, several planet gears and a ring gear. The planetary gears are connected to the sun gear and the ring gear via gear wheels. When the electric motor rotates, the planet wheels move along their own axis and orbit the sun wheel at the same time. This results in a transmission of torque and speed.

The advantage of parallel shaft geared motors lies in their compact design and high efficiency. They are particularly suitable for applications where space is at a premium, such as in the automotive industry, robotics or household appliances.

What are the advantages of parallel shaft geared motors compared to conventional motors?

Parallel shaft geared motors offer several advantages compared to conventional motors:

1. Compact design: Parallel shaft geared motors have a flat and compact design that takes up less space. This is particularly advantageous in applications where the available installation space is limited.

2. High power density: Due to their compact design, parallel shaft geared motors have a high power density. This means that they can offer high performance in relation to their size and weight.

3. Efficiency: Due to their design, parallel shaft geared motors can be highly efficient. They minimize energy loss and ensure optimum transmission of mechanical power.

4. Low vibration and noise development: Due to their design, parallel shaft geared motors generate less vibration and noise compared to conventional motors. This is particularly advantageous in applications where a quiet and low-noise working environment is required.

5. High precision: Parallel shaft geared motors offer high precision and positioning accuracy. They can perform precise movements and positioning, which is required in many applications.

6. Versatility: Parallel shaft geared motors can be used in a wide range of applications, including robotics, medical technology, automation technology and industrial applications. They are versatile and can fulfill a variety of requirements.

Overall, parallel shaft geared motors offer a number of advantages that make them an attractive option in many applications.

Which areas of application are particularly suitable for parallel shaft geared motors?

Due to their specific design, parallel shaft geared motors are particularly suitable for various applications. Here are some examples:

1. Robotics: Parallel shaft geared motors are often used in robots as they are compact and offer a high power density. They can be used in joints, drives and other moving parts of robots.

2. Medical technology: Due to their small size and low weight, parallel shaft geared motors are well suited for medical devices such as insulin pumps, prostheses or surgical instruments.

3. Automotive industry: Parallel shaft geared motors are used in the automotive industry, particularly in electric vehicles. They can be used in electric steering systems, windshield wipers, power windows and other drive components.

4. Aerospace: Parallel shaft geared motors are also used in aerospace technology, as their low weight and compact design enable them to meet the requirements for weight savings. They are used in satellites, drones and other aircraft and spacecraft.

5. Industrial automation: Parallel shaft geared motors are used in various industrial applications, for example in conveyor belts, robots, CNC machines and packaging machines.

There are many other areas of application for parallel shaft geared motors, as they can be used in many areas due to their versatility.

How do parallel shaft geared motors differ from other motor types, such as reciprocating piston motors?

Flat geared motors, also known as Wankel motors, differ from reciprocating piston motors in various ways:

1. How it works: Flat-gear engines use a rotating Wankel principle to convert fuel into mechanical energy. They consist of a triangular rotor body that rotates in an oval housing. In contrast, reciprocating piston engines use pistons that move up and down in a cylinder to burn the fuel.

2. Construction: Parallel shaft geared motors have a compact design as they have fewer moving parts. They are generally lighter and have a smaller number of moving parts compared to reciprocating engines. This leads to advantages such as lower weight, less friction and less vibration.

3. Performance: Parallel shaft geared motors generally have a higher speed and a higher output compared to reciprocating motors of a similar size. They are known for their high torque and their ability to reach high speeds. This leads to improved acceleration and performance at higher speeds.

4. emissions: Shaft-mounted geared motors generally have lower emissions than reciprocating engines. This is partly because they have better combustion efficiency and fewer moving parts that require lubrication and cooling.

5. Maintenance: Due to their simpler design, parallel shaft geared motors require less maintenance than reciprocating motors. For example, there are no valves that need to be adjusted or replaced. This can lead to lower maintenance costs and a longer service life for the motor.

It is important to note that there are also differences within the reciprocating engine category. For example, two-stroke and four-stroke engines can differ in their mode of operation and design.

Which manufacturers offer parallel shaft geared motors and which models are available on the market?

There are several manufacturers who offer parallel shaft geared motors. Some of them are:

1. Maxon Motor: Maxon Motor offers a wide range of flat geared motors, including models such as the EC 45 flat, the EC 90 flat and the EC-4pole 30 flat.

2. Faulhaber: Faulhaber is another well-known manufacturer of parallel shaft geared motors. The available models include the BXT, the BX4 and the BX6.

3. Portescap: Portescap also offers a range of parallel shaft geared motors, including the Athlonix, the M series and the P series.

4. Nidec Corporation: Nidec Corporation is a global manufacturer of electric motors and also offers parallel shaft geared motors. The models include the H20 flat, the H30 flat and the H40 flat.

This list is not exhaustive and there are other manufacturers who offer parallel shaft geared motors. The available models may vary depending on the manufacturer. It is advisable to visit the manufacturers' websites to find out the latest models and technical specifications.

What materials are used in the manufacture of parallel shaft geared motors and why?

Various materials are used in the manufacture of parallel shaft geared motors, depending on the specific requirements and purpose of the motor. The most important materials used in parallel shaft geared motors are:

1. Stator: The stator is the fixed part of the motor and is usually made of laminated sheet iron. This material offers high magnetic permeability, which improves the efficiency of the motor by increasing the magnetic flux.

2. Rotor: The rotor is the rotating part of the motor and can be made of different materials. Magnetic materials such as iron or rare earth magnets are often used to generate a strong magnetic field and enable the motor to rotate.

3. Housing: The housing of the motor can be made of various materials such as aluminum, steel or plastic. The choice of material depends on various factors, such as weight, heat dissipation and mechanical strength.

4. Bearing: The bearings that support the rotor in the housing can be made of different materials such as steel, ceramic or plastic. The choice of material depends on factors such as the speed, load and service life of the motor.

5. Cabling: The wiring in the motor is usually made of copper wire, as copper has a high electrical conductivity and therefore minimizes energy loss.

The use of these materials in parallel shaft geared motors aims to ensure high efficiency, reliability, performance and service life of the motor. The choice of material is also influenced by factors such as cost, weight and environmental impact.

How high is the efficiency of parallel shaft geared motors compared to other motor types?

The efficiency of parallel shaft geared motors can vary depending on the design and application. Parallel shaft geared motors are generally considered to be more efficient than conventional geared motors, as they enable direct power transmission and therefore cause less energy loss due to friction and wear.

Some studies and investigations have shown that parallel shaft geared motors can achieve an efficiency of over 90%, which is considered very good compared to other motor types, such as combustion engines, electric motors or hydraulic motors.

However, it should be noted that the efficiency of parallel shaft geared motors depends on various factors, such as the design, the area of application and the load. The exact efficiency can therefore vary depending on the application.
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