Energy equation:   AGV overall consumption × overall route time < CaPow Power Delivery × time spent over CaPow pads
Route & Robot Parameters
Route Configuration
Let's build the longest "worst case scenario" route.
If this yields 100% uptime, your entire fleet will never stop for charging.
Total Route Lengthm
Average Speed (Weighted)m/s
Stopping Points
Stopping points are ideal for a power boost.
Power
Consumption vs. delivery.
AGV Average ConsumptionW
CaPow OutputW
🔋
Modular Charging Pads
Let's juice your robot while it's in motion!
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Calculated Pad Values
Total Pad Lengthm
Time Over Padss
Route Visualization
🗺️
Route Map
Auto-updates as you configure your route
Route Section
Charging Pad
Stop Point
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AGV Direction
Energy Balance Results
Power Balance Summary
— Calculating
AGV Total Consumption
Watt-seconds (Ws)
Static Charging (Stops)
Watt-seconds (Ws)
Modular Charging (Pads)
Watt-seconds (Ws)
Total Charging Output
Watt-seconds (Ws)
Net Power Balance
Watt-seconds (Ws)
Energy Coverage
coverage
Calculation Breakdown
ParameterValueUnit
Course Duration s
AGV Overall Consumption Ws
Charging at Stop Points Ws
Total Pad Length m
Time Over Charging Pads s
Modular Charging Output Ws
Net Power Balance Ws
Improved work:charge ratio ×
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Awaiting Calculation
Adjust the parameters above to see the energy balance result.
net power balance (Ws)
improved work:charge ratio