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In this video, I push the EVE 40PL cell to its limits with a continuous 40A discharge test! Watch as I break down its performance using high-precision tools like the Fluke 87V for temperature, Fluke 374 FC for current, and an Atorch DL24EW with 19 modules. Is the EVE 40PL ready for your next high-demand project? Check my other video performing the exact same test to the Ampace JP40 • LT21700a JP40 40A Continuous Discharg... and compare the results. Find out in this real-world test! Don't forget to like, subscribe, and hit the notification bell for more battery tests and DIY projects on DIY500AMP. You can buy your JP40 cells at https://diy500amp.store/products/ampa... for the best price on the market. Timestamps 00:00:00 - Introduction: Overview of the EVE 40PL cell and comparison with the JP 40 cell. 00:01:06 - Testing Setup Description: Tools and methodology for testing. 00:02:07 - Starting the Test: Incremental discharge begins, stabilizing at 40 amps. 00:03:40 - Voltage Under Load Observations: Stable voltage performance and monitoring data. 00:06:05 - Capacity Measurement: Achieving 4.047 amp-hours during continuous discharge. 00:08:54 - Recovery Performance: Cell recovery observed after discharge. 00:09:06 - Conclusion and Recommendations: Final thoughts on the EVE 40PL cell’s performance. EVE 40PL vs. JP40: Performance Comparison Under a 40A Continuous Load I recently conducted a detailed test comparing two popular cells—EVE 40PL and JP40—under a continuous 40A load, excluding the initial 30 seconds for a more accurate comparison. Here’s what I found: 🔋 Voltage: The JP40 maintains a slightly higher voltage throughout the test (max of 3.6V) compared to the EVE 40PL (max of 3.52V). Both cells reached a minimum voltage of 2.5V. ⚡ Current and Power Output: Both cells performed similarly in terms of current and power, with the EVE 40PL providing a peak power of 143W and the JP40 peaking at 123W. The JP40 sustained its power output slightly longer under load compared to the EVE cell. 🌡 Temperature: The EVE 40PL ran slightly cooler, with a peak temperature of 26.2°C, while the JP40 reached 24.4°C. 🔋 Capacity and Watt-Hours: The EVE 40PL showed a slight edge in capacity, maintaining its performance better under load. Watt-hour performance was close, with the EVE cell slightly outperforming the JP40 in total energy output. 📊 Conclusion: The JP40 offers better voltage stability while the EVE 40PL provides cooler operation and slightly better capacity and energy output. Both cells are strong performers, and the choice depends on your needs for voltage stability or efficiency under load. For the detailed charts and analysis, check out DIY500AMP.COM By: Nelvick Berrios | October 2024