Engineering as core of our services
At Involute Transmissions, expertise is built through engineering practice.
It’s at the core of everything we do.
Our engineering office designs, analyzes and validates power transmission systems for applications where performance, reliability and efficiency must coexist under real-world constraints.
Constrained environment design
Tooth profile engineering
Gear pump system design
Constrained environment design
Engineering solutions where constraints define performance
Designing transmission systems in constrained environments requires more than adaptation. It requires engineering from scratch.
Our engineering office specializes in the design of power transmission systems operating under severe mechanical, thermal or operational constraints.
Designing under constraints requires engineering, not adaptation
Standard solutions rarely survive demanding operating conditions.
High power density, limited space, harsh environments or complex duty cycles require transmission systems to be engineered from the ground up.
Our design office works closely with our customers to understand the real context of use — not just nominal specifications. this leads to solutions that are perfectly suited to your needs.
Our engineers combine mechanical design, system architecture, simulation, and empirical knowledge to build solutions adapted to each application.
This approach enables us to develop transmission systems that are:
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- compact without compromising load capacity
- optimized for high power density
- robust under extreme operating conditions
- designed for long-term reliability
Discover the process
Engineering services
We design custom tooth profiles adapted to each application, taking into account load cases, speed ranges, lubrication conditions and integration constraints.
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We analyze constraints at system level to define realistic and robust transmission architectures aligned with performance, integration and durability targets.
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We design compact transmission systems capable of delivering high power within limited volume and mass, adapted to demanding environments.
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Mechanical loads, efficiency, thermal behavior, noise and integration are addressed simultaneously to ensure balanced and reliable solutions.
Constraints don’t limit performance — they define how it must be engineered
Discuss your constrained transmission challenge
Contact our engineering team
Tooth profile engineering
Where transmission performance truly begins
Find a clear path forward for power transmission through performance-driven engineering.
By working directly on tooth profiles, we are able to tailor each transmission to its real operating conditions, rather than relying on standard geometries. Cutting tools are also defined by our design office to make sure that the optimized profile can actually be made
A science-driven approach to performance
Gear tooth design is a balance between competing constraints.
Load capacity, compactness, efficiency, noise, lifetime and manufacturability are tightly linked, and any modification of the tooth geometry impacts the entire system.
Our approach focuses on understanding these interactions and using geometry as a lever to reach the desired performance level.
Rather than adapting the system to a predefined gear profile, we adapt the tooth profile to the system.
This leads us to design gears that are:
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- stronger without unnecessary material,
- lighter without compromising reliability,
- quieter without sacrificing efficiency,
Discover the process behind
Gear engineering dedicated services
We design custom tooth profiles adapted to each application, taking into account load cases, speed ranges, lubrication conditions and integration constraints.
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We design custom tooth profiles adapted to each application, taking into account load cases, speed ranges, lubrication conditions and integration constraints.
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By working directly on the geometry, we address root causes rather than symptoms, enabling meaningful reductions in noise and energy losses while increasing component lifetime.
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Optimized tooth profiles allow material to be placed only where it is structurally necessary, contributing to lighter, more efficient transmission systems.
Optimizing tooth geometry is optimizing the entire system.
Explore tooth profile optimization
Contact our engineering team
Gear pump systems design
Engineering flow as a system, not just a component
Gear pump systems are never isolated components.
They are integral parts of complex mechanical environments, where flow rate, pressure, fluid properties, efficiency and reliability must coexist under real operating constraints.
Engineering Gerotor pump for real operating conditions
Gear pump performance cannot be reduced to nominal flow rates.
Operating fluids, temperature variations, duty cycles, pressure levels and integration constraints all have a direct impact on system behavior.
Gerotor systems offer a robust and efficient basis for a wide range of pumping applications.
We leverage this technology to design solutions adapted to both low and high flow requirements, across various industries and fluid types.
Our gear pump systems cover flow rates ranging from 2 L/min to 260 L/min, and are designed to handle all types of fluids, depending on application requirements.
Rather than relying on predefined architectures, each system is engineered to match:
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- functional performance targets,
- integration constraints,
- operating environments,
- long-term reliability objectives.
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Custom pump design services
We design custom tooth profiles adapted to each application, taking into account speed, pressure, viscosity and temperature constraints.
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We design complete Gerotor-based pump systems tailored to the specific requirements of each application, from concept to validated architecture.
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Flow rates, pressure levels and efficiency are optimized according to real operating conditions and performance targets.
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Our designs account for fluid properties to ensure compatibility, durability and stable performance across the system’s lifetime.
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Pump system design is supported by Gerotor Designer, our proprietary internal software developed to address project-specific constraints and enable rapid iteration.
Efficient flow starts with system-level engineering.
Let’s discuss how a custom pump system can be designed to meet your application constraints.
Contact our engineering team