Xinping
Explore our certified industrial control transformers, intelligent servo units, and harmonic suppression reactors optimized for high-reliability global power infrastructure.
Navigating modern power topology shifts, electromagnetic loss optimization, thermal management, and vector group configurations for industrial B2B procurement.
Single-phase transformers are foundational components in low-power step-down conversion, control loop galvanic isolation, electronic circuitry, PCB potting instrumentation, and residential sub-distribution networks. By employing core lamination geometry (EI, UI, Toroidal) optimized for reduced hysteresis losses and minimal leakage flux, single-phase architectures provide stable power supplies for micro-controller units, relays, medical devices, and automated machinery controls.
Designed for complex heavy-duty industrial loads, three-phase transformers handle symmetrical and asymmetrical three-phase power systems (e.g., 380V/400V/440V step-down to 220V/200V). Utilizing Dyn11 or Yyn0 vector wiring connections, dry-type three-phase systems deliver high electrical efficiency, minimal harmonic distortion, and exceptional thermal stability under continuous heavy overload scenarios. They eliminate liquid dielectric fire hazards, making them ideal for modern smart factories.
| Technical Metric / Feature | Single-Phase Transformer Systems | Three-Phase Dry-Type Transformers | Xinping Custom Engineering Advantage |
|---|---|---|---|
| Voltage & Phase Inputs | Single Phase (110V - 480V) | Three Phase (3-Phase 200V - 690V) | Custom dual-tap / multi-tap voltage configurations |
| Power Rating Range (kVA / VA) | 0.5VA to 50kVA | 1kVA to 1000kVA+ | Flexible core scaling for compact or heavy-duty footprint |
| Electromagnetic Design | Single magnetic circuit (Shell/Core type) | 3-Leg or 5-Leg coupled magnetic circuit | FEA-assisted flux density balance (<1.6 Tesla) |
| Cooling Mechanism | AN (Air Natural) / Encapsulated potting resin | AN / AF (Air Forced with intelligent fans) | Low noise design (<45dB), optimal heat dissipation fins |
| Harmonic Suppression Capability | Fundamental filtering via series reactors | Integrated phase-shifting & DC smoothing reactors | High harmonic suppression series (<3% THDi) |
| Regulatory Compliance | CE, UL, CQC, RoHS, REACH 219/2.0 | CE, UL, ISO9001, QC080000, IATF16949 | 100% full dielectric breakdown & performance testing |
Located at No. 66 Shengye Road, Service Management Office, Canal Economic Development Zone, Dezhou City, Shandong Province, Dezhou Xinping Electronics Co., Ltd. was founded in 1992 and formally established in 2001. The manufacturing facility covers an expanse of over 30 acres with self-built industrial plant buildings spanning more than 10,000 square meters.
To deliver maximum operational efficiency and specialized engineering support, the company operates three focused business units:
Ensuring precision magnetic performance, ultra-low dielectric losses, and zero-defect quality control across all exported products.
Equipped with multiple advanced fully automatic winding machines, automated assembly lines, and smart packaging lines to eliminate human winding variances.
Features state-of-the-art reliability testing instruments including comprehensive no-load loss testers, high-voltage breakdown testers, and thermal shock chambers.
During both initial design phases and mass manufacturing, products undergo multi-stage thermal overload, dielectric strength, and short-circuit withstand tests.
How Dezhou Xinping solves engineering bottlenecks for international buyers, EPC contractors, and OEM equipment manufacturers.
High core losses lead to continuous waste and thermal build-up. We utilize ultra-thin, low-loss CRGO steel laminations and oxygen-free copper coils, reducing no-load losses by up to 30% and maximizing energy efficiency over decades of operation.
Modern CNC servo motors require dynamic response without voltage sag. Our Intelligent Servo Transformers offer ultra-fast dynamic energy transfer and precise voltage conversion for CNC control cabinets and robotics.
Humid, high-dust, or chemical-corrosive environments cause winding insulation breakdown. Our potted and encapsulated single-phase series are vacuum-sealed with fire-retardant epoxy resins, boasting superior IP-rated protection.
A transparent look inside our manufacturing floor, equipment drawings, and engineering R&D methodologies.
At present, our products have passed ISO9001, CQC, CE, UL, QC080000, REACH 219, REACH 2.0, IATF16949, ISO14001, and ISO45001. Products are exported to over 10 countries and regions worldwide.
We strictly implement the QC080000 Hazardous Substance Process Management System alongside ISO9001. All input raw materials (copper magnet wire, silicon steel sheets, potting resins, bobbins) undergo receiving inspection to ensure compliance with hazardous substance limits under EU RoHS and REACH directives.
Dezhou Xinping Electronics holds 3 invention patents, 2 software copyrights, 21 utility model patents, and 2 industrial design patents. Our long-term technical cooperation with top research institutions drives continuous innovation in low-noise and high-frequency magnetics.
Showcasing our active participation in premier global electronics expos and hosting industrial clients worldwide.
Shanghai New International Expo Center | Booth No. C2-2904
China Import and Export Commodity Fair (Guangzhou) | Booth F17/K7
Shenzhen World Exhibition & Convention Center | Hall 13, Booth A390








Pioneering high-frequency planar transformer integration, IoT sensor-enabled dry units, and zero-emission manufacturing workflows.
Embedding wireless RTD thermal sensors and partial discharge monitoring sensors inside dry-type three-phase transformer coils for predictive AI maintenance in smart factories.
Developing ultra-high frequency planar transformers and SQ choke inductors capable of switching at 100kHz-500kHz to match next-generation Silicon Carbide (SiC) inverters.
Transitioning high-volume industrial transformers towards amorphous alloy core ribbons, reducing core loss by up to 70% compared to conventional silicon steels.
Comprehensive answers regarding pricing, OEM customization, technical sizing, minimum order quantities, and export logistics.
Our prices are subject to change depending on supply and raw material market factors (e.g., copper wire exchange indices and CRGO steel pricing). We will send you an updated price list after your company contacts us for specific engineering details and technical specifications.
Yes, we require all international orders to have an ongoing minimum order quantity. If you are looking to resell or need prototype quantities for testing, we recommend contacting our sales team for custom small-batch tooling options.
Yes, we can provide comprehensive documentation including Certificates of Analysis / Conformance (CoA/CoC), Insurance documents, Certificate of Origin (Form E/Form F), CE, UL, CQC certification, and export customs paperwork.
For custom engineering samples, the lead time is about 7 days. For mass production, the lead time is 20-30 days after receiving the deposit payment and technical approval. In urgent project cases, our flexible production scheduling can accommodate your deadline.
We accept wire transfer to our company bank account, Western Union, or PayPal. Standard terms: 30% deposit in advance, and 70% balance paid against the copy of the Bill of Lading (B/L).
We warrant our materials and workmanship against defects. Our commitment is complete customer satisfaction. Regardless of warranty status, it is our core corporate culture to address and resolve all technical or operational issues promptly.
We strictly utilize reinforced export-grade wooden cases, shock-absorbing vacuum packaging, and corner protections. Specialized hazard packing is applied when necessary for sea freight or temperature-sensitive container shipments.
Selection depends on your grid connection and load requirements. Single-phase units are ideal for control panels, isolated circuitry, and loads up to 50kVA. Three-phase units are designed for heavy machinery, CNC equipment, and main sub-panel distribution where balanced phase loads are required.
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