Do I Need to Fully Charge My Robot Vacuum Before First Use?
Q&A of functional explanation or specification parameters
Updated 02-05-2024 01:36:43 AM31841
Este artículo se aplica a:
Tapo RV30C Mop Plus , Tapo RV20 , Tapo RV30C , Tapo RV30C Slim , Tapo RV20 Plus , Tapo RV20 Max Plus , Tapo RV20 Mop Plus , Tapo RV70 Omni , Tapo RV10 , Tapo RV20 Mop , Tapo RV30 , Tapo RVA100 , Tapo RVA101 , Tapo RVA200 , Tapo RVA300 , Tapo RVA102 , Tapo RVA400 , Tapo RVA103 , Tapo RV10 Plus , Tapo RV30C Plus , Tapo RV30 Max , Tapo RV30C Mop , Tapo RV30 Max Plus , Tapo RV10 Lite , Tapo RV20 Max , Tapo RV30 Plus
Recent updates may have expanded access to feature(s) discussed in this FAQ. Visit your product's support page, select the correct hardware version for your device, and check either the Datasheet or the firmware section for the latest improvements added to your product. Please note that product availability varies by region, and certain models may not be available in your region.
Tapo Device use lithium batteries, eliminating concerns about memory effect commonly associated with traditional nickel-cadmium (NiCd) or nickel-metal hydride (NiMH) batteries.
Therefore, there is no need to worry about specific charging and discharging times, and you can use your device at any time.
You may have encountered charging reminders elsewhere, suggesting extended initial charging periods or complete discharge before recharging.
This advice is rooted in the memory effect of traditional NiCd or NiMH batteries, where incomplete charge and discharge cycles lead to reduced usable capacity over time.
These batteries seem to "remember" previous charging and discharging patterns, providing only the capacity utilized in previous cycles. Regular full charge and discharge cycles are recommended to break this memory effect and allow the battery to utilize its full capacity.
Modern battery technologies, such as lithium-ion (Li-ion) batteries, are largely immune to memory effect issues.
This is primarily due to their different chemical structure and operational principles. The working principle of lithium-ion batteries involves the movement of lithium ions between positive and negative electrodes, without the involvement of crystalline structure changes. In contrast, the active materials in nickel-cadmium (NiCd) and nickel-metal hydride (NiMH) batteries may experience crystallization and dissolution during charge and discharge processes, a key factor in memory effect. The chemical reactions of lithium-ion batteries do not involve such crystalline changes, making memory effect less likely in everyday use.
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