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China-based rare-earth-free motor manufacturing partner supporting customization, quality control, and global delivery.

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Synchronous Reluctance Motors (SynRM)

IE5 ultra-premium efficiency motors with zero rare-earth materials, designed as IEC/NEMA replacement paths for standard induction motors in pumps, fans, compressors, and continuous-duty industrial drives.

Target Buyer:Best for procurement managers, plant engineers, and equipment OEMs reviewing IE3 induction motor replacement under EU 2019/1781, DOE 2027 planning, and energy-cost targets.

Engineering Assets

Request reference specifications and STEP models without a registration gate. We confirm the correct package after a quick project-fit check.

Request DatasheetRequest STEP Model
Open SynRM industrial motor showing laminated reluctance rotor and copper stator windings

Capability Highlights

  • IE4/IE5 efficiency target for EU Ecodesign and DOE-aligned projects
  • Neodymium-free rotor path with reduced permanent-magnet cost exposure
  • Flux-barrier rotor design to remove induction rotor copper loss
  • IEC and NEMA frame replacement planning for pump, fan, and compressor OEMs
  • VFD parameter review for open-loop or closed-loop vector control
  • Optional insulated bearing and shaft-current mitigation discussion

Typical Applications

  • HVAC air handlers and cooling towers
  • Industrial water and process pumps
  • Compressors and vacuum systems
  • Textile and paper machinery
  • Retrofit programs replacing IE2/IE3 induction motors

Engineering Focus

  • VFD compatibility with open-loop or closed-loop vector algorithms
  • Frame, shaft, foot, flange, and terminal-box compatibility review
  • Partial-load efficiency and heat rise under real pump/fan duty cycles
  • Bearing-current mitigation for long cable runs and high dV/dt drives
  • Efficiency test method, load points, and nameplate/document requirements

Key Evaluation Matrix

MetricTypical RangeWhy It Matters
Efficiency ClassIE4 / IE5Defines the compliance direction, test evidence, and buyer-side TCO model.
Power Range0.75-450 kW review rangeLets buyers screen retrofit and OEM platforms before detailed frame confirmation.
Voltage Platform230V / 400V / 460V / 690VDetermines insulation, drive, and regional compliance assumptions.
Mechanical InterfaceIEC 90-315 / NEMA equivalent reviewDrop-in replacement value depends on shaft, foot, flange, and terminal-box alignment.
Drive RequirementVFD requiredSynRM projects must validate inverter algorithms before PO and sample release.

Production and Validation Flow

Process StepBuyer EvidenceAcceptance Gate
Application and retrofit screenExisting nameplate, frame drawing, load curve, duty cycle, VFD model, and target efficiency class.SynRM is confirmed as viable against mechanical interface, load profile, and control mode.
Mechanical and VFD fit reviewShaft, foot, flange, terminal-box, enclosure, cable length, encoder need, and VFD parameter notes.Drop-in or OEM adaptation scope is clear before sample quotation.
Sample efficiency and thermal validationEfficiency test plan, heat-rise points, load points, nameplate assumptions, and inverter settings.Sample passes agreed efficiency, thermal, vibration, and control-stability criteria.
Pilot deployment planningLot-release records, installation notes, packaging, spare strategy, and delivery schedule.Buyer can release pilot or repeat orders with known installation and documentation scope.

RFQ Checklist

  1. Required power, speed, poles, and duty cycle
  2. Operating voltage and frequency, such as 400V/50Hz or 460V/60Hz
  3. Existing IEC or NEMA frame size, mounting, shaft, and enclosure needs
  4. VFD brand/model, control mode, encoder requirement, and cable length
  5. Target efficiency class, ambient temperature, altitude, and protection class
  6. Prototype quantity, annual forecast, destination country, and requested documents

Risk Controls

  • Drive mismatch: Provide VFD parameters upfront for algorithm confirmation.
  • Unexpected retrofit work: Confirm frame, shaft height, mounting, cable entry, and terminal-box orientation before quotation freeze.
  • Efficiency claim mismatch: Agree on test standard, load points, and report format before sample acceptance.
  • Bearing damage under inverter duty: Review dV/dt, cable length, grounding, and insulated bearing requirements for larger frames.

Product Gallery

Precision reluctance rotor and stator lamination geometry for magnet-free motor programs
Precision reluctance rotor and stator lamination geometry for magnet-free motor programs
Stacked silicon steel stator lamination core for IE5 motor manufacturing
Stacked silicon steel stator lamination core for IE5 motor manufacturing

Buyer FAQ

Does it require a VFD?

Yes, SynRM inherently requires a Variable Frequency Drive for operation.

Can a SynRM replace an existing induction motor?

Often yes, but the replacement must be checked against frame size, shaft height, mounting, cooling, enclosure, load curve, and VFD control mode.

What information is needed for a TCO comparison?

Share power, operating hours, electricity cost, load profile, current efficiency class, and requested efficiency target so we can structure the comparison.

Related Resources

  • IE5 SynRM vs Induction Comparison Guide
  • IE5 Compliance & Loss Reduction
  • Contact Engineering / RFQ

Inquiry Email

[email protected]

Email app

Include target torque/speed, quantity, and delivery location.

Instant Chat

+86 18857971991

Chat on WhatsApp

Direct response from our engineering team.