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Romax Technology provides class-leading simulation solutions for the design, analysis, testing, and manufacture of electro-mechanical drivetrain systems.
Romax Technology are rotating machinery experts for geared and electro-mechanical systems providing simulation software and global services for design, performance simulation and manufacturing. Their mission is to transform the engineering of geared and electro-mechanical systems using Right First Time product development with their innovative software tools, global engineering expertise, processes and intellectual prope
Romax Spectrum

Advanced JMAG-Designer Interface for eNVH Optimisation
The drive towards zero prototypes calls for CAE solutions that not only give accurate predictions, but which also support variability analysis and rapid what-if studies. In the field of electric powertrains, it is noise and vibration that has proved to benefit particularly from a simulation-led design approach.

To allow easy optimisation of electric powertrain noise and vibration, the ability to perform automated studies of the combined effects of both motor and gearbox design changes is needed. Therefore, this release of Romax Spectrum introduces a new feature, the “JMAG Force Automator,” which allows the modification of electric machine parameters and the generation of excitations from a JMAG Designer analysis to be controlled from within Romax DT. This enhancement allows workflow automation, parametric studies and optimisations to be performed with ease.
This development also eliminates the need to export and import files manually, making the process more efficient and less error prone.
Model parameters can be tweaked to easily compare NVH performance
Excitations can be generated within the parametric study and batch running
New actions and targets were added to parametric study and batch running to see the effect on excitations
Metadata is added when importing excitation data from any source.
Romax Enduro
Cylindrical Gears – ISO1328-1:2013 Gear Accuracy Specification
Gear accuracy is a measure of manufactured gear quality and affects durability, noise & efficiency. Higher quality gears will give improved performance, but cost more to produce, have longer manufacturing times and potentially higher scrap rates
This development adds the ability to specify cylindrical gear accuracy according to ISO 1328-1:2013 to complement the older implementation of ISO 1328-1:1995. This is an important enhancement as the latest ISO 6336:2019 rating used by Romax Enduro to assess gear durability is not compatible with the older version of ISO 1328.
Ability to specify different quality parameters/grades for each gear
Specification of individual grades or individual deviations
Ability to approximately compare different quality standards
Addition of quality specifications as variables in Parametric Study and Batch Running
Estimation of grades when specifying deviations and helpful messages guiding the user
Note that because all the quality standards work slightly differently, setting individual parameters and comparing between standards is an approximation. In a lot of cases, this can cause non-compliance with the standard. However, Romax users have to deal with these situations frequently, so this development is designed to be flexible and transparent to the user. Colour coding and helpful messages make it clearer to the user. It is the responsibility of the user to check if the results are suitable for their specific requirements.
Romax DT 2024.1 – Software Introduction
Romax DT is an advanced tool for simulating and analyzing power transmission systems and designing mechanical components such as gearboxes and bearings. Developed by Hexagon, this software continues to evolve with new features and updates that enhance efficiency and accuracy in the design and analysis of power transmission systems.
Romax DT is specifically designed for engineers who require precise tools for simulation and optimization of complex mechanical systems.
What’s New in Romax DT 2024.1
The latest version introduces further advancements in planetary gear modeling, bearings, cylindrical gear analysis, and usability improvements. With enhanced modeling tools and optimized workflows, engineers can achieve faster, more reliable, and more accurate design outcomes.
Key Features of MSC Romax DT 2024.1
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Bearings
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Support for bearings with 1D ring flexibility in 2D worksheet.
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Ability to define temperatures for journal bearings for more flexible thermal calculations.
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Support for various forms of rolling bearing deflection for more accurate modeling.
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Planetary Systems
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Improved modeling of planetary shafts with new capabilities for multi-stage and hybrid assemblies.
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Planetary carrier connections enhanced with network-based tools for more accurate positioning.
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Shafts & Housings
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The Merge Shafts tool now specifically highlights the selected shaft section.
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Improved FE shafts and housings display with reduced loading times.
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Gears
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Advanced LTCA model for cylindrical gears now fully available.
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Simulating gear grinding with slope error compensation during gear shaping.
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Performance & Usability
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Improved audio analysis performance, reducing time and memory for large, high-frequency models.
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Enhanced usability and modeling efficiency in 2D worksheets.
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Industry Applications
MSC Romax DT 2024.1 is particularly valuable in:
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Automotive
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Aerospace
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Machinery
It equips engineers with robust tools for accurate, efficient, and reliable design and simulation of power transmission systems.
Romax DESIGNER is the product of choice for ground vehicle transmissions – from motorcycles to off-highway equipment – and is licensed by 14 of the world’s top 15 automakers.
It is also used widely in the design of stationary products and industrial equipment including the world’s largest wind turbine systems and is acknowledged as the industry standard for this rapidly expanding global market sector.
RomaxDESIGNER is a virtual product development and simulation environment for the design, analysis & NVH exploration of the complete transmission – gearboxes, bearings, drivetrains and all components.
Reduce the development-analysis chain
RomaxDESIGNER can significantly reduce the number and length of design cycles by considering all system effects in just one transmission model. From the initial concept stages, component lives are calculated providing a fast and efficient method for system development.
RomaxDESIGNER can eliminate the need to switch between numerous software packages to calculate the different component reactions, greatly reducing time and cost involved in the design loop.
Romax Concept es una herramienta CAE diseñada para que el diseño de maquinaria rotativa sea intuitivo y fácil de aprender. Cualquiera puede aprender a usar su interfaz de arrastrar y soltar en un abrir y cerrar de ojos.
Dé vida a sus ideas con una herramienta tan fácil de usar como el lápiz y el papel, y luego analice y optimice el modelo para saber si es factible.
Encuentre el sistema de accionamiento óptimo para su aplicación con simulación holística del sistema, potentes herramientas de optimización e informes listos para usar.
Comprenda los pros y contras de cualquier sistema de tracción total en minutos.
Importe modelos de transmisión existentes a través de REXS, exporte a CAD para ahorrar tiempo al ajustar la geometría 3D después de cada cambio de diseño, exporte a ADAMS para simulación de dinámica de múltiples cuerpos y exporte a otros productos Romax para un análisis más profundo y un diseño detallado de componentes.
Romax
Providing a complete and integrated, next-generation simulation platform in electromechanical drive systems, Romax Technology enables design, simulation and testing of the entire drive train system without wasting time at the powertrain design stages with processes such as data transfers and reconstructing models with Romax Nexus.

Romax Concept
The Concept, supported by Romax simulation capabilities, was designed in accordance with the early design phase. With its fast modeling feature and intuitive interface, Romax Concept allows efficient definition of transmission systems for different applications. In addition to allowing designs to be easily transferred to CAD and CAE platforms, it also allows collaboration with common files with Romax Nexus tools.
Romax Enduro
With its detailed structural analysis capability, Romax Enduro offers a reliable solution for durability simulation and optimization studies of power transmission units. It performs structural analysis of the whole transfer system as well as structural analysis on the part basis, and presents it to its users for examination with improved visuals. Romax Enduro provides the opportunity to run from outside (batch running) by making parametric studies for optimization studies.
Romax Spectrum
Romax Spectrum provides fast and accurate analysis in the frequency domain. Romax Spectrum, whose advanced techniques and capabilities are verified with real situations, can work integrated with the remaining CAE tools of the Romax ecosystem. NVH provides a suitable environment for its work, and incorporates the capabilities needed in terms of vibration and noise of transmission systems.
Romax Energy
Specialized in estimating efficiency for electromechanical transmission systems, Romax Energy helps its users to increase the energy efficiency of the system under optimum conditions. Providing power loss estimates to calculate load-dependent or load-independent losses, Romax Energy allows you to perform parametric studies to increase system efficiency by changing parameters.
Romax Spin
Offering advanced simulations for bearing designs, Romax Spin is the choice of bearing experts with its network with strong representatives of the bearing industry. Romax Spin, the choice of all six of the world’s best bearing manufacturers, allows users to use, edit and custom design bearings from its rich library. Romax Spin provides an integrated environment for bearing design, selection, analysis and lifetime.
Romax Evolve
With Romax Evolve, an advanced electromechanical analysis tool for electrical machine designs, analysis and improvement studies can be performed while creating electronic designs. By digitizing the test processes of the entire machine design, structural and NVH performance can be considered in the early stages.


















