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Strict cascade power balance

Cascade Drive Efficiency

Combine one to five stage efficiencies from the same operating point. Calculate efficiency alone, output power from input power, or required input power from required output.

η=ΠηᵢForward/reverse powerNo nominal presets

Boundary gate: every ηi must describe power leaving stage i divided by power entering that same stage at the stated operating point. Do not mix nameplate full-load values, part-load estimates and measurements from different conditions.

Cascade result

Total efficiency η
-
Loss fraction
-
Input power
-
Output power
-
Total power loss
-

η=∏ηi;   P밖으로=Pinη;   Pin=P밖으로
Ploss=Pin−P밖으로;   loss fraction=1−η

The identities follow directly from η=P밖으로/Pin for each consecutive stage with no unmodelled branch between boundaries.

The US Department of Energy’s Motor-Driven Systems guidebook shows that motor efficiency varies with load. Its motor and drive sourcebook advises using manufacturer drive efficiency as a function of operating speed or load. Therefore this calculator requires actual same-condition inputs instead of component-type defaults.

Removed claims: the former tool prefilled motor, gear, belt, chain, worm and coupling efficiencies and a typical-value table without traceable operating points. It also silently ignored blank, zero or >100% stages while still showing a total. All active stages are now mandatory and validated.

© 2024-2026 바이브로메라

Cascade power-balance arithmetic; verify ratings at the actual duty point. Scientific review: July 2026.

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