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Use cases

Every Cell Matters

01
Speed

Measurement results in seconds, not hours. Test hundreds of cells and batteries while traditional methods would still be processing the first.

02
Accuracy

Laboratory grade accuracy, delivers over 2,000 data points in under 2 seconds, which is 900 times faster than other methods.

03
Data & analytics

All essential data, comprehensive insights, and analytics are in the cloud, enabling informed decision-making in real-time.

04
Modifiability

For all cell and battery chemistries and types, from battery modules and packs to supercapacitors and fuel cells.

Main usecases

Our versatile solution brings value for various different customers.

10

Quality control and defect detection

Detect production defects in seconds. Save money by identifying defects early in production process.
3

Testing and measurement

Gain the most accurate production insights in seconds from every produced cell/battery
7

Data mining and analytics

Access data from previous tests and gain AI-driven insights throughout the cell lifecycle.
6

Grading and characterization

Ensure the quality of utilized batteries swiftly to guarantee safety, save money, and maximize usage.
10

Production optimization

Optimize your production-line efficiency based on data insights.
4

Second use assessment

Swiftly categorize and test used batteries. Ensure battery quality for effective pricing.

Examples

Battery grading & measuring

Entities with thousands of batteries have to rely on the condition. CeLLife's allows customers to quickly grade their batteries which allows them to optimize the usage of batteries, safe money and quarantee the safety of operations.

Example 1 : Company measuring the quality of its batteries

  •  Thousands of batteries​
  • To check battery condition took previously 6 hours for one battery​
  • With CeLLife they are able to analyze thousands of batteries in 6 hours​ and get cell level insights from each battery.

Total production testing and assured battery quality

Currently, comprehensive battery cell testing can take from several minutes to several hours and requires manual labor.

For an example, In a factory, testing the quality of a single cell takes over 10 minutes. This means that with 10 testers they would maximally be able to test 1440 cells in a day out of a total production of 100,000 cells. Each battery contains tens of cells, and the quality of each cell varies. As the quality of cells varies, the actual quality of the battery is determined by the weakest cell.

With CeLLife's technology, factories can test the whole daily production, allowing them to sort cells by quality and assemble battery modules with uniform quality cells, resulting in consistent quality batteries.

Example 2: Quality assurance challenges

  • More than half of X EV batteries contain defective cells. A defective cell can lead to warranty claims if the battery fails. One cell costs €2 - The price of a battery is €15,000
    • It's more cost-effective for a company to fix the defect in time by replacing only the defective cells at €2 each, rather than risking warranty claims and losses amounting to €15,000 per battery.

Battery second use

CeLLife is revolutionizing the second-life battery market by enabling quick categorizing and testing of used batteries. Therefore CeLLife enables maximal usage of batteries before recycling and raw materials extraction.

Its technology allows battery resellers to test quickly the quality & condition of used batteries and use the insights in effective pricing. Our solution automatically grades cells based on their condition.

Example 3: Used battery reseller

  •  Thousands of different batteries
  • Ablity to profundly test and grade batteries by capacity and condition
    • Other quick methods provide only a few data points, which can sometimes give the same data for both used and new batteries as only a few data points are measured.
  • Optimizing profit per capacity f.e:
    • 80-90% capacity = 100€
    • 90-100 capacity 145€

Supercapacitor lifetime

The internal resistance of supercapacitors (ESR), is a key factor that affects their lifespan. Higher resistance causes the supercapacitors to heat up more, which speeds up aging and reduces the lifetime.

A study compared supercapacitors from three different manufacturers and found that the ESR could vary by up to 18% within the same brand. This large difference means it's hard to predict the lifetime of these supercapacitors as the quality is not homogenous.

ESR is one known parameter, and for comparison second-life cells that CeLLife has processed show less than 1% variation in ESR, indicating superior quality control. This minimal difference ensures more homogeneous and predictable performance.

With CeLLife's technology, supercapacitor manufacturers and buyers can more precisely measure and ensure the consistency of electrical characteristics, with ESR being just one of the 2,000 data points provided by CeLLife. This leads to more uniform modules and more reliable lifetime predictions, enhancing overall quality and performance.

 

CELLIFE

Battery Perfected Cloud

From our versatile EFP measurement solution you get data driven insights and reports from any sort of batteries or cells.

Learn more about our technology
Cellife_Battery_Perfected_Cloud

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