Configure a balancing machine to your rotor specifications
Choose a complete machine, assemble a modular kit, or develop an automated balancing line. Frame length, support count, suspension technology, sensors, measurement electronics and software become one controlled configuration.
Start from components or from a production-ready machine.
Both routes preserve the same engineering logic: the rotor defines the machine, and every selected module must remain compatible with the measurement architecture.
The support technology determines the sensor chain.
Do not select supports and sensors independently. The final architecture depends on rotor behaviour, operating speed, correction method, production rate and required evidence.
Force sensor on every support
HARD-BEARING / SUB-RESONANT
Rigid supports + force sensors
The rotor is measured below the relevant support resonance. Rigid pedestals transfer reaction forces into the measuring chain and suit repeatable industrial workflows after engineering validation.
Sensor principle
Force / reaction measurement
Typical fit
Series production, rapid changeover, defined rotor families
Vibration sensor on every support
SOFT-BEARING / SUPER-RESONANT
Pendulum supports + vibration sensors
The rotor is measured above the suspension resonance. Low-stiffness supports allow measurable motion, captured by vibration sensors for versatile balancing across different rotor families.
The classification above is a configuration guide, not a final design decision. Resonance separation, structural dynamics, sensor range and safety are confirmed during engineering review.
MODULAR SYSTEM BUILDER / ENGINEERING PREVIEW
Configure the machine as a compatible set of modules.
The builder produces a preliminary architecture and project specification. Price, accuracy, delivery and compliance are confirmed only after the rotor data and operating conditions are reviewed.
Select a machine family, then fit it to the real rotor.
The catalog is organized by application rather than a fixed price list. Every machine can be extended with support count, bed length, tooling, guarding, measurement and automation options.
LIGHT ROTORS / HIGH SPEED
Turbo and light-rotor balancer
Compact soft-bearing system for turbocharger assemblies, small armatures and high-speed light rotors.
Soft-bearing architecture
Measurement software included in project scope
UNIVERSAL / WORKSHOP
Universal horizontal machine
A flexible route for motor rotors, impellers, fans, rollers, crankshafts and general rotating assemblies.
Two to four supports
Belt, end or self-drive options
2X / 3X / 4X SUPPORTS
Cardan and drive-shaft machine
Extended bed, adaptable support count and end-drive configuration for industrial and automotive drive shafts.
Long-bed configurations
Optional correction and welding portal
SINGLE / TWO PLANE
Vertical balancing machine
For disc-shaped parts such as flywheels, brake discs, pulleys, clutch assemblies and pump wheels.
Application-specific tooling
Optional automated correction
HEAVY ROTORS / CUSTOM BED
Heavy-duty rotor balancer
An engineered system for large motor rotors, rollers, turbines, fans and other high-mass rotating equipment.
Engineered base and foundations
Overhung-rotor options
AUTOMATED CELL / LINE
Automatic balancing and correction line
Measurement, orientation, drilling or milling correction, handling, safety and production-data integration in one cell.
Robotic or dedicated handling
Production traceability and reporting
Model names and numeric performance are confirmed in the commercial specification. The families above are selection routes, not guaranteed offers.
MODULAR HARDWARE / BUILD LIKE A SYSTEM
Every part has a defined role in the measurement chain.
Select modules as a compatible assembly, not isolated parts. Interfaces, ranges, wiring, software licenses, drawings and calibration records travel with the project.
01
Bed and rails
Complete, sectional or locally fabricated from controlled drawings.
02
Soft supports
Pendulum suspension modules matched to rotor mass and speed.
03
Hard supports
Rigid pedestals with a force-measurement path.
04
Drive module
Belt, end drive, universal joint or self-driven arrangement.
05
Sensor set
Vibration or force sensors plus phase and speed reference.
06
ADC / measurement brain
Signal acquisition, conditioning, synchronization and protected interfaces.
07
Balancing software
Guided measurement, correction, reporting and project records.
08
Safety and automation
Guarding, interlocks, correction tools, robots and line interfaces.
FROM CONFIGURATION TO OPERATING ASSET
The machine remains connected to its engineering history.
A complete project can include engineering, manufacturing, FAT, calibration, delivery, commissioning, training and a digital product passport with current documents and service context.
01
ConfigureRotor, process, machine and measurement inputs
02
VerifyDynamics, compatibility, safety and standards
03
Quote and approveControlled scope, schedule and commercial terms
04
Build and acceptProduction, assembly, FAT, calibration and evidence
05
Deploy and operateLogistics, commissioning, training and lifecycle record
ENGINEERING QUESTIONS
Begin with the rotor, not a model number.
01What is included in a DIY kit?
The preliminary scope can include supports, drive modules, sensors, phase reference, measurement electronics, software, electrical interfaces, drawings, assembly instructions and commissioning support. The exact list follows the selected architecture.
02Can I choose two, three or four supports?
Yes. The selected count changes the bed layout, tooling and measurement plan. Four-support layouts are especially relevant for long shaft assemblies, but the final arrangement is checked against the rotor and correction process.
03How do I choose hard-bearing or soft-bearing?
Use the configurator as a starting point. Engineering confirms resonance separation, rotor range, operating speed, changeover needs, sensor range and foundation conditions before approving the architecture.
04Can the system become an automated line?
Yes. Projects may add handling, identification, guarding, automatic orientation, correction by drilling or milling, verification, rejection routing, reporting and integration with the production environment.
ONE CONFIGURATION / GLOBAL DELIVERY ROUTE
Turn your rotor data into a buildable balancing system.