01

Complete SKD platform

A complete platform groups the application-matched generator, coil, controls, sensing, cooling and agreed interfaces. It is usually the clearest starting point for a manufacturer building its first model or standardizing a new family.

  • More defined compatibility boundary
  • Clearer prototype and assembly checkpoints
  • Simpler spare-parts and version planning
02

Application-specific core set

A core set suits manufacturers that already control more of the enclosure, wiring, protection, cooling and final validation. The supplied boundary must still be documented so that neither party assumes responsibility for an unreviewed interface.

  • Best for experienced integration teams
  • More local design freedom
  • Requires stronger internal engineering and test discipline
03

Selected individual components

Individual modules are useful for an established platform, a controlled product update or field service. Similar connector shapes or power labels do not prove electrical, firmware, sensor or thermal compatibility.

  • Identify the existing platform and version
  • Confirm interface and parameter compatibility
  • Avoid uncontrolled substitutions during production
04

Use capability—not price alone—to choose

A narrower supply scope may look cheaper but can move engineering, testing and warranty risk to the buyer. Compare the total work your team must complete, validate and support before choosing the quotation boundary.

FAQ

Common project questions

Can a commercial induction SKD platform be selected by power alone?

No. Power, voltage, cooking task, vessel, coil geometry, cooling, controls and local assembly scope need to be reviewed together.

Are detailed BOMs and drawings published online?

No. Customer-specific technical files are controlled within an active project.

Engineering note

This guide explains selection logic. Final specifications depend on the confirmed appliance, electrical supply, cookware or vessel, duty cycle and integration design.