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Is it more beneficial to charge an EV battery to 80% or 100%?
The best approach depends on your driving needs and the manufacturer’s recommendations for your specific EV. For daily use, charging your EV battery to around 80% is generally sufficient and helps reduce long-term battery degradation. This practice minimizes heat and stress on the battery, which canRead more
The best approach depends on your driving needs and the manufacturer’s recommendations for your specific EV. For daily use, charging your EV battery to around 80% is generally sufficient and helps reduce long-term battery degradation. This practice minimizes heat and stress on the battery, which can extend its lifespan.
However, it’s also important to charge to 100% occasionally, especially if your EV manufacturer recommends it for cell balancing. Cell balancing ensures that all battery cells are evenly charged, maintaining overall performance and health. following blog can give more inputs. https://shippys.org/how-to-maximize-your-ev-battery-life-tips-for-longevity/
For long trips or when you need maximum range, charging to 100% is necessary. Just avoid keeping the battery at 100% for extended periods, as this can accelerate wear over time. Check your vehicle’s user manual for specific guidelines tailored to your EV model.
See lessMy charging pin stuck in charging socket for Tata Nexon EV Prime (Old Model).
If your charging gun gets stuck, don't worry! There's a simple fix: locate the ring below the charging port near the suspension. Push the ring upwards, and the charging gun will disconnect easily, allowing you to get back on the road. Video in below link may be useful https://www.youtube.com/watch?vRead more
If your charging gun gets stuck, don’t worry! There’s a simple fix: locate the ring below the charging port near the suspension. Push the ring upwards, and the charging gun will disconnect easily, allowing you to get back on the road. Video in below link may be useful
See lessCan EVS be compared to ice engine vehicles only by their cost? What about performance, comfort, NVH levels, pollution etc?
Comparing electric vehicles (EVs) to internal combustion engine (ICE) vehicles solely based on cost provides only a partial view of their overall value and advantages. Here’s how EVs stack up against ICE vehicles across various factors, including performance, comfort, NVH (noise, vibration, harshnesRead more
Comparing electric vehicles (EVs) to internal combustion engine (ICE) vehicles solely based on cost provides only a partial view of their overall value and advantages. Here’s how EVs stack up against ICE vehicles across various factors, including performance, comfort, NVH (noise, vibration, harshness) levels, and pollution:
Here’s a concise comparison:
Cost
See lessEVs: Higher upfront cost but lower operating and maintenance expenses.
ICE Vehicles: Typically cheaper initially but cost more to run over time.
Performance
EVs: Faster acceleration due to instant torque; better handling from a lower center of gravity.
ICE Vehicles: Generally higher top speeds but slower acceleration.
Comfort
EVs: Quieter, smoother ride with more interior space.
ICE Vehicles: Typically noisier with more vibration.
NVH Levels
EVs: Lower noise, vibration, and harshness, leading to a more serene driving experience.
ICE Vehicles: Higher levels of noise and vibration.
Pollution
EVs: Zero tailpipe emissions, contributing to better air quality.
ICE Vehicles: Emit pollutants like CO2, NOx, and particulates.
In summary, EVs excel in comfort, environmental impact, and long-term cost savings, while ICE vehicles still lead in range and refueling speed.