EV Adoption and EV Charging Stations in Texas
EV Battery Charging Best Practices to Maximize Range
The following factors comprise essential elements of EV charging best practices that will help optimize your battery’s performance and efficiency, as well as prolong its life. We discuss each of these in more detail below.
Slow charging versus fast charging.
Minimum and maximum battery charge.
Driving habits.
Climate conditions.
How Slow Charging Vs. Fast Charging Affect EV Battery Health
EV battery charging best practices are essential to learn and implement, particularly regarding the tradeoffs between fast and slow charging.
When it comes to EV charging, there are three levels of charging to consider: Level 1 EV Charging, Level 2 EV Charging, and Level 3 EV Charging, also referred to as DC Fast Charging (DCFC).
Level 1 EV charging utilizes a 120V AC outlet and is easily accessible for a majority of drivers, as this type of outlet is a standard outlet in any home, multifamily, or commercial building outfitted with electricity. While this type of outlet is convenient to access at home or on the go, it charges at very slow rates due to the low output in voltage.
You can expect a Level 1 charger to add approximately three to five miles of range per hour of charging, depending on the make and model of the electric vehicle. As a result of this slow rate of charging, Level 1 EV charging can lead to an extended battery life by preventing a battery from regularly overcharging or receiving high-levels of energy on a consistent basis.
However, with a full charge often taking over 50 hours, many EV drivers find this level of EV charging is insufficient to meet their daily driving needs.
Level 2 EV charging stations are a preferred method of charging for many people as they can charge an EV up to ten times faster than a Level 1 EV charger, making it an ideal option for overnight charging.
Depending on the make and model of the electric vehicle as well as the EV charger, Level 2 charging adds 12 to 80 miles of range per hour of charging. These units run on 240V AC power through a dedicated circuit and require a certified electrician with the correct EV charger installation experience to install the appropriate hardware and wiring, as well as make any needed panel upgrades depending on the current available capacity and EV charger needs.
Level 2 EV charging stations use a higher level of power than Level 1 EV chargers but are equipped with “smarter” technology to communicate with the computer and technology inside of your electric vehicle to ensure your EV battery does not overcharge or overheat, and degrade as a result of these things over time.
Additionally, installing a smart Level 2 EV charging station that memorizes your schedule and daily driving needs can also calculate when you need your EV to be fully charged and when electricity is the most cost effective, so you never start your day with less battery range than you need and you can maximize your savings with at-home EV charging.
For more information you can read our blog discussing the differences between Level 1 and Level 2 EV chargers.
Level 3 EV charging stations, or Direct Current Fast Chargers (DCFC) are a commercial-grade method of EV charging as they require 480V DC power and are significantly more expensive to purchase and install. Commonly found along major roads and in grocery stores, malls, and other quick stops, these charges offer high-powered, rapid-charging speeds and boast a full charge often in 30 minutes to 1 hour making them convenient for charging your EV while traveling or topping off an EV battery.
Dc Fast Charging Stations are the only charging method to utilize DC, or direct current, energy. Using DC allows these chargers to directly power the vehicle battery, whereas Levels 1 EV chargers and Level 2 EV charging stations must convert the energy from AC to DC within the vehicle, slowing down the charge time of the EV battery.
While Level 3 EV charging stations provide the fastest battery charge, consistent use of Level 3 EV charging has been shown to increase battery degradation for electric vehicles by an average of 3-5% over 50,000 miles.
Related Reading: What Is A Level 3 Ev Charger?
Minimum and Maximum Battery Charge
Lithium-ion batteries work better when they are used and charged in partial cycles, in other words, not completely depleted or fully charged.
Consequently, the best charging practice is to charge the battery at different stages, optimally keeping its level between 20% and 80%. Similarly to how the overuse of fast charging stations can decrease battery life, so can consistently allowing your battery to drain to 0% or continually overcharging the battery to 100% when it’s not needed.
One way to keep your battery charging in the optimal range is to utilize a smart panel or smart EV charger to maintain charging within a certain range. Some EVs may also come with these limits established as a baseline setting for charging capacity. Another benefit to k

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