At SYAT, our engineering prowess spans the full lifecycle of engine development – from conceptual design to production readiness. We excel in internal combustion engine (ICE) design, development, calibration, and compliance with regulatory standards.
The automotive industry is at a crossroads, facing the dual challenges of reducing greenhouse gas emissions and improving air quality, all under the umbrella of increasingly stringent global regulations. To address these, SYAT focuses on enhancing traditional powertrains while pushing the envelope in powertrain electrification, supporting OEMs in crafting the mobility solutions of the future. Our approach leverages advanced simulation, engineering, testing, validation, and innovative strategies to navigate the complex landscape of modern powertrain development.
Despite the shift towards electrification, internal combustion engines remain pivotal for many years. At SYAT, we're dedicated to reducing their environmental footprint, making them cleaner through advanced combustion systems and exhaust aftertreatment technologies. Our comprehensive approach ensures each component and system is optimized for peak efficiency, performance, and minimal environmental impact.
Offering substantial emission reductions, hybrid systems combine the best of ICE and electric powertrains. Our expertise lies in integrating these systems to work in harmony, delivering a powertrain that meets performance targets while managing the increased complexity for faster market entry.
As we push for CO₂-free or neutral ICE operations, alternative fuels play a crucial role. From development to validation, we provide the tools and expertise to integrate these fuels into powertrains, enhancing performance while adhering to new environmental standards.
Hydrogen offers a pathway to CO₂-neutral operation. Our engineers have tackled the challenges head-on, from optimizing hydrogen/air mixing in the combustion chamber to selecting the right air/fuel ratios and charging concepts for peak performance and minimal emissions. Our development process was underpinned by simulation from the start, complemented by specialized hydrogen engine testing systems.
Our simulation capabilities cover the entire spectrum of engine development, extending into vehicle integration for holistic performance, efficiency, and emission evaluations. We're adept at simplifying complexity, optimizing components, and systems, all aiming to reduce costs and accelerate development timelines.
Beyond ICEs, our simulation tools extend to electrified powertrains, allowing for detailed development and optimization of fuel systems, gas exchange, combustion, and emissions, alongside the unique challenges of electromagnetism, electrochemistry, and thermal management in e-machines and batteries. This includes advanced control function development and calibration for both ICEs and electric motors.
Our engineering team doesn't just stop at prototype development and product certification. We have extensive experience in scaling up for mass production, addressing quality issues during and post-production, and ensuring vehicle compliance in real-world conditions.
Supported by analytics and extensive experience in engine management systems (EMS), electronics, and mechanics.
Efficient development and testing of hydrogen internal combustion engines.
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