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@ -5,9 +5,6 @@
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Strawman design proposal: 1S LiPo, 18650 for easy ubiquitous availability
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(~3,000 mAh). Add cells in parallel until you get the capacity you want.
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## CELLS
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[INR18650-35E](https://lygte-info.dk/review/batteries2012/Samsung%20INR18650-35E%203500mAh%20%28Pink%29%20UK.html)
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## CHARGERS
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1. [5V 2A USB-C](https://www.amazon.com/DWEII-Converter-Step-Up-Charging-Protection/dp/B09YD5C9QC/)
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2. [5V 2A](https://www.amazon.com/Ruiwaer-Discharge-Integrated-Adjustable-Charging/dp/B08QHVW5J8)
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@ -16,7 +13,6 @@ Strawman design proposal: 1S LiPo, 18650 for easy ubiquitous availability
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* combine with [heatsink](https://www.amazon.com/Printer-Heatsink-Thermal-Conductive-Adhesive/dp/B07RKHRHJV)
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strawman: charging up to 4v with the INR18650 (see `CELLS:INR18650-35E` for the discharge capacity graph, and `CHARGERS:3` for 4V cutoff w/ a 5V panel) gives us ~3000mAh, or 88% of the 3398mAh tested battery life.
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## BMS
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2. [3S 60A](https://www.amazon.com/dp/B0B9MMZWXC)
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@ -25,4 +21,3 @@ strawman: charging up to 4v with the INR18650 (see `CELLS:INR18650-35E` for the
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* mppt charge controllers:
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1. <https://www.amazon.com/Waveshare-Solar-Power-Manager-Regulated/dp/B0CT2ZBML9>
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2. <https://www.amazon.com/4-4-6-5V-Lithium-Battery-Charger-Controller/dp/B08DY28BXW>
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