SOLAR POWER

Off-Grid Solar E-Bike Charging System

A worked solar power example, rendered live. Open it in the AI editor and adapt it to your own case.

UPDATED 2026-09-24
EXAMPLEOff-Grid Solar E-Bike Charging System
Make this diagram your own.

Open it in the AI editor with a prompt pre-filled — keep what works, change what doesn't.

CASE ANALYSIS

Scenario

A cargo e-bike is charged from an off-grid solar installation using a 1.5 kW PV array and a 52 V 40 Ah stationary battery, with a DC-DC charger feeding the e-bike's 48 V battery and a motor controller driving a 1.5 kW mid-drive motor.

Key decisions

  • Use a common negative ground rail to simplify wiring and safety grounding.
  • Represent the MPPT charge controller and motor controller as custom 4-pin ICs with explicit input/output and return pins.
  • Add fuses on both PV input and charger output to protect against overcurrent.

When to reuse this

Reuse this structure for small off-grid vehicle charging stations where solar input, intermediate storage, and a separate vehicle battery must be shown in one netlist.

Open this example in the editor →

Tweak it with chat, export PNG/SVG, or fork it for your own use case.