EV battery testing solutions utilize interface mini load cells
Automotive components undergo rigorous testing to meet regulatory standards, guarantee performance and ensure consumer safety. These components require continued investment in innovation to meet the explicit needs of governments, consumers and businesses.
One of the vehicle components that is undergoing intensive change is the battery. The market is heavily focused on increasing mileage and lifespan, which includes switching from disposable lithium batteries to rechargeable lithium-ion batteries.
These customer requests are reflected in the increasing global demand for sustainable and long-lasting battery solutions for electric vehicles (EV) and hybrid vehicles (HEV). Customer satisfaction and commercial applications are closely linked to a vehicle's ability to travel longer distances without refueling or recharging. The requirements and changes are leading to robust testing and measurement programs to bring new battery models and designs to market.
Electric car batteries accounted for more than 2021% of total battery sales in 38
It is estimated that the electric car battery market will account for more than 2021% of total battery sales in 38. As technology continues to improve the life cycle and reduce battery costs, Precedence Research estimates a CAGR of 32% by 2030. This represents a market share of $46 billion in the US alone, while Asia Pacific is leading in the production of electric vehicles and leads the overall demand for batteries for electric vehicles. Due to the global adoption of electric vehicles supported by government initiatives and an intense focus on reduced carbon emissions, the EV battery market is expected to further expand globally.
Battery testing is becoming increasingly complex as cell counts, advanced designs, materials, cycles, installations, vehicle models, certifications and chargers increase, to name a few. Battery simulation and real battery integration testing are two examples of commonly used testing programs to verify the adaptability and usage requirements of batteries. When testing batteries, the accuracy and quality of the measuring devices are crucial. The following types of batteries are most common today:
- Lithium Ion Battery
- lead-acid battery
- Sodium ion battery
- Nickel metal hydride battery
- Other
Due to the market shift towards electric vehicles, the lithium-ion battery is now the most important battery type. Lithium-ion battery dominance will surpass all other battery types in 2021. Electric vehicle manufacturers prefer to partner with OEMs on newer model lithium-ion batteries because they are lighter and have higher energy density. The following describes one of many interface solutions offered to automotive component and battery manufacturers.
Battery monitoring for electric vehicles

The electric vehicle battery manufacturer needed a system to monitor its lithium-ion batteries. Typically, lithium-ion batteries are measured by voltage and current measurements or (ICV) to analyze and monitor battery life. In consultation with the design and test engineers, Interface recommended a solution that would install the LBM push-button load cell between two Garolite endplates and measure the force created by the swelling or expansion of the cells. Instead of monitoring by voltage (ICV), this method is based on measured force (ICF). To monitor the tests, the load cell coupled to the 9330 high-speed battery-powered data logger. This instrument solution offers the ability to view, record and log force measurement results using the included software. Find the results and full application note here.
Interface has a long history of working with automobile manufacturers and suppliers of various parts and components to provide a wide range of test and measurement solutions for the automotive industry. This includes sensors and instrumentation solutions for the development, testing and performance monitoring of all battery types, with growing interest in testing lithium-ion batteries.