Planar transformers
I have found results from4000+products and1000+suppliers aboutPlanar transformers
Flat Wire Winding Planar High Frequency Power Transformer (IKP-ER2614)
China OEM/ODM/Design EV Flat Transformers Suppliers Planar Transformer for Reliable Power Distribution
High-Frequency Customized SMD PCB Planar Transformer Power Choke Inductor SMD Power Inductor
Customized 5.6kw Power Supply Electronic 30uh High Current Flat Core Bobbin Planar Transformer
45uh 200W High Frequency Customized Planar Transformer with Ferrote Core
High Efficient Ee22 Flat Wire Planar Transformer for Power Applications
High-Frequency Ec20 Core Planar Transformer for Reliable Power Supply
Wholesale Electronics 75kHz 250W Planar Transformer, Half-Bridge Transformer
Versatile 1000W Planar Transformer with Push-Pull Design for Electronics
Custom Made High Current Copper Wire Planar Transformer for New Energy Vehicle
Original Transformer Factory Price Planar Transformer for New Energy Industry
Custom Planar Transformer Switch Mode Power Er-30-300W Planar Transformer for DC/DC Module Power
Ee18 High Quality Planar Transformer for Control PCBA Projects
Advanced Ee18 Planar Transformer for Optimal Power Distribution Solutions
Sh15-100/10 Planar Wound Amorphous Alloy Core Power Transformer
Sh15-315/10 Planar Wound Amorphous Alloy Core Power Transformer
Sh25-1000/10 Amorphous Planar Wound Core Distribution Transformers
Sh15-200/10 Planar Wound Amorphous Alloy Core Power Transformer
Sh25-125/10 Amorphous Planar Wound Core Distribution Transformers
Planar Core EPC19 High-Frequency Transformer for High-Density Power Supplies
Free Sample Ut1801 Ut1802 Ut Planar 250 kVA R Core Power Rectifier High Frequency Transformer
Free Sample Pq3401 Pq3235 Pq3230 Pq3225 Pq3220 Pq3218 Pq2625 Planar Ferrite Core High Frequency Transformer
Surface-Mount Planar Semiconductor Transformer for High-Density Power Modules
High-Frequency Planar Transformer for Power Electronics & Semiconductor Applications
Sourcing guidance for Planar Transformers
What are the key technical advantages of Planar Transformers over traditional wire-wound transformers?
Planar transformers offer a low profile and high power density, making them ideal for space-constrained applications. Their primary advantage lies in excellent heat dissipation due to a high surface-area-to-volume ratio. Technically, they provide lower leakage inductance and superior repeatability in electrical characteristics because the windings are replaced by multi-layer PCB traces or copper foils, ensuring consistent performance across large production batches.
Which core materials and winding technologies should B2B buyers prioritize for high-frequency applications?
For high-frequency operations (typically 100kHz to several MHz), buyers should specify high-permeability ferrite cores (e.g., MnZn power ferrite) to minimize core losses. Regarding windings, multi-layer PCB (MLPCB) technology is preferred for precision, while triple-insulated wire (TIW) or copper foil may be used for high-current requirements. Ensure the supplier uses automated stacking processes to maintain tight tolerances on parasitic capacitance.
What compliance standards are mandatory for Planar Transformers in international markets?
Compliance is critical for safety and market entry. Products must adhere to UL 60950-1 or UL 62368-1 for IT and AV equipment safety. For medical applications, IEC 60601-1 is required. Additionally, ensure all materials are RoHS and REACH compliant. For automotive-grade components, look for suppliers certified under IATF 16949 and products that meet AEC-Q200 stress test qualifications.
How can buyers evaluate the thermal management and reliability of a Planar Transformer?
Buyers should request thermal imaging reports under full-load conditions. A high-quality planar transformer should maintain a temperature rise within the insulation class limits (e.g., Class B 130°C or Class F 155°C). Reliability is verified through High-Temperature Storage Life (HTSL) and Temperature Cycling tests. Ask for the MTBF (Mean Time Between Failures) data to ensure long-term stability in industrial environments.
Cross-Border Procurement Strategies for Planar Transformers
How can I mitigate the risks of technical non-conformity when sourcing from overseas?
To avoid receiving sub-standard components, always request a Golden Sample for laboratory testing before authorizing mass production. Utilize third-party inspection services (like SGS or Intertek) to conduct a Pre-Shipment Inspection (PSI) focusing on Hi-Pot testing (dielectric strength) and turns ratio verification. Ensure the purchase contract specifies that batch consistency must align with the approved sample's electrical profile.
What are the best practices for negotiating with Planar Transformer manufacturers on Made-in-China.com?
Focus on Total Cost of Ownership (TCO) rather than just the unit price. Negotiate based on volume-tiered pricing, as the high initial tooling cost for PCB layouts means unit prices should drop significantly at 1,000+ or 5,000+ units. Ask for transparency in the Bill of Materials (BOM) to ensure they aren't substituting premium ferrite cores with lower-grade alternatives to hit a price point.
What logistics and packaging precautions are necessary for ferrite-based components?
Ferrite cores are extremely brittle and sensitive to mechanical shock. Ensure the supplier uses custom-molded EPE foam or vacuum-formed trays to prevent movement during transit. For sea freight, specify moisture-proof packaging (desiccants and vacuum sealing) to prevent oxidation of the copper terminals. Always choose CIF or DAP incoterms if you want the supplier to bear the risk of damage until the goods reach your port or warehouse.
How do I ensure transaction security and intellectual property protection?
Use Secured Payment services provided by Made-in-China.com to ensure funds are only released upon proof of shipment. Since planar transformers often involve custom PCB designs, sign a Non-Disclosure Agreement (NDA) and a Non-Compete Agreement before sharing your schematics to protect your proprietary circuit designs from being resold to competitors.



























