Interactive Tool

Assembly cost estimator

Build a quick bill of materials, set your production assumptions, and get a fully-loaded per-unit cost — piece parts, assembly labor, amortized tooling, scrap, and overhead — plus a suggested selling price. Everything updates as you type.

Production assumptions

Drives tooling amortization & labor
/yr
Units built per year
yrs
Tooling amortized over total units
$ /hr
Fully-burdened operator rate
%
Added to direct cost
%
Markup on factory cost
%
Sets suggested price

Bill of materials

Part / component Process Qty Piece price Tooling / NRE Assy time (s) Ext. cost
Per-unit piece-part total $0.00 $0 0 s $0.00

How the estimate is built

This is an order-of-magnitude model intended for early concept and design-for-manufacturing trade studies — not a quote. It walks the cost up in the same order a factory does:

Piece-part cost = sum of (quantity × piece price) for every line. Assembly labor = total assembly time per unit × labor rate. Those two form the direct cost, to which scrap is added as a percentage. Tooling / NRE is summed across all lines and amortized per unit over annual volume × program length. Direct + scrap + amortized tooling gives factory cost; applying overhead & SG&A yields the unit COGS. The suggested price back-solves from your target gross margin: price = COGS ÷ (1 − margin).

Real piece prices depend on geometry, material, cavitation, region, and quantity breaks; tooling depends on tool class and complexity. Use this to compare design options and pressure-test a target cost — then bring in a detailed costing exercise for sourcing decisions.

Want a real cost-down on your assembly?

I run detailed should-cost and DFM teardowns — finding the part-count reductions, process changes, and tooling strategies that take real money out of your bill of materials.

Schedule a consultation