This guide offers engineers an in-depth understanding of H Bridge motor control, explaining its basics, topologies, switching strategies, design, optimization, and practical considerations for next-generation engineering projects.
One of the goals of building the Mars Rover is to demonstrate SPARK. As an early step, Fabien introduced a new hardware abstraction layer (HAL) on top of the existing HALs that had been developed for the various pieces of hardware that make up the Mars Rover.
Discover how radar sensors enhance building safety, traffic control, and asset management with reliable vehicle detection solutions for docks, parking, drive-thrus, and toll applications.
Modular high-voltage PDU architectures enable scalable power
distribution using standardized components. This approach
reduces tooling requirements, supports platform reuse, improves
serviceability, and accelerates integration in EV systems.
This guide offers engineers an in-depth understanding of H Bridge motor control, explaining its basics, topologies, switching strategies, design, optimization, and practical considerations for next-generation engineering projects.
Electric vehicles face significant barriers to their adoption. Harwin delivers connectors to help designers create the next phase of charging infrastructure.
When used with high-temperature engineering resins, industrial-grade 3D printers can help automotive companies develop parts and prototypes with short product development cycles.
Choosing the optimal battery technology is pivotal to avoid future consequences. This comprehensive guide delves into the intricacies that distinguish NiMH and Lithium Ion batteries – their fundamental properties, performance across applications, etc. and equips readers for informed decision-making.
Sustainable Mobility can be defined in many ways. Is it a concept for transforming how we transport from an ecological standpoint? Or is it taking into account the accessibility of travel? In this blog, we explore key areas playing a crucial role in defining Sustainable Mobility.
Murata Manufacturing (Murata) has developed a technology that has the potential to enable ultrasonic scans, which are presently used to view the fetus within the uterus, to be used to view the brain within the cranium.
A recent study analyzes the relationship between electric vehicle battery chemistry and supply chain vulnerability for four critical minerals—lithium, cobalt, nickel, and manganese—across particular countries that are key contributors to production.
The automotive industry is undergoing a huge transformation. As the world moves towards more sustainable energy sources, electric vehicles (EVs) are becoming a driving force to transition from gas-powered cars.
The global transition to electrified personal transport is gaining momentum, with consumer electric vehicles (EVs) leading the way. According to the International Energy Agency (IEA), EV sales exceeded 10 million units in 2022.
With the U.S. government’s goal to reduce emissions from transportation as part of a net-zero climate goal by 2050, efficient and reliable batteries are a necessity.
According to the Global EV Outlook from IEA, the EV stock reaches 145 million in 2030, accounting for 7% of the road vehicle fleet. However, one of the main challenges facing EVs is the battery, which determines the performance, range, safety, and cost of the vehicle.
Manufacturing sheet metal is far from a simple task. It requires rigorous inspection, primarily due to the high quality and stringent safety standards required in the automotive industry.