PCB Transformer Manufacturer for Custom OEM Applications
ECKO designs and manufactures PCB-mounted transformers based on your electrical requirements, dimensional limits and applicable safety standards.
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Custom PCB Transformers Engineered for Your Circuit Board
Compact through-hole PCB transformers with customized input voltage, output windings, rated power, pin layout and insulation construction. ECKO designs each transformer around your load requirements, PCB footprint, temperature-rise target and applicable safety requirements.
From initial electrical calculations to approved drawings, controlled production and routine electrical testing, we help OEM customers integrate reliable mains-frequency power conversion directly into their PCB assemblies.
Typical PCB Transformer Specifications
| Parameter | Typical Range / Available Options |
|---|---|
| Product Type | Open-frame, vacuum-impregnated or fully encapsulated PCB transformer |
| Rated Power | 0.5 VA to 100 VA typical; higher ratings subject to engineering review |
| Primary Voltage | 100V, 110V, 115V, 120V, 200V, 220V, 230V or 240V AC; single or dual primary |
| Secondary Voltage | 3V to 48V AC per winding typical; other voltages available |
| Output Configuration | Single, center-tapped, dual or multiple secondary windings |
| Frequency | 50Hz, 60Hz or 50/60Hz |
| Core Material | EI laminated electrical steel core selected according to power and temperature-rise requirements |
| Winding Material | Copper winding wire |
| Insulation Class | Class B 130°C or Class F 155°C |
| Dielectric Strength | Project-specific; 3.0–4.0kVAC primary-to-secondary options commonly available |
| Temperature Rise | Defined according to rated load, ambient temperature, enclosure and insulation class |
| Mounting Method | Through-hole PCB pins |
| Pin Configuration | Custom pin count, pitch, row spacing, diameter, length and polarity marking |
| Protection Options | Thermal fuse, resettable thermal protector or external PTC coordination |
| Shielding Options | Electrostatic shield, inter-winding shield or magnetic shielding where required |
| Operating Temperature | Typical design range from -20°C to +70°C, depending on the material system |
| Compliance Options | Construction designed for applicable IEC, EN or UL requirements; approval is model-specific |

Specification notice: The values above represent typical engineering capabilities rather than one fixed catalog model. Final electrical ratings, dimensions, tolerances and test limits are defined by the customer-approved specification and dimensional drawing.
PCB Transformer Product Advantages
PCB Footprint Designed Around Your BoardPin spacing, row distance, pin diameter, seated height and maximum external dimensions can be developed from your PCB layout. This helps reduce board redesign and improves first-fit integration during prototype assembly. |
Stable Output Under Actual Load ConditionsThe transformer is calculated according to the required output voltage, current, duty cycle and acceptable regulation. Output performance is verified under the agreed input voltage, frequency and rated-load conditions. |
Controlled Temperature RiseCore size, magnetic flux density, copper current density, winding arrangement and insulation materials are selected together. This provides a practical thermal margin for enclosed control boards and continuously operated equipment. |
Low No-Load Current and Reduced Core LossThe number of turns, core stack and operating flux density are optimized for the specified mains frequency. This helps control standby loss, excitation current and unnecessary heating. |
Application-Specific Insulation DesignThe bobbin, winding barriers, insulation tape, creepage distance, clearance distance and dielectric-strength level are reviewed according to the end-product requirements. Functional, basic, supplementary or reinforced insulation can be evaluated. |
Quiet and Repeatable ProductionControlled winding tension, core assembly, impregnation or encapsulation help reduce mechanical vibration and audible hum. Approved drawings, BOMs and test limits improve consistency between samples and production batches. |
PCB Transformer Customization Options
| Customization Area | Available Options |
| Electrical Input | Primary voltage, voltage range, 50Hz/60Hz frequency, single primary or dual primary |
| Electrical Output | Single output, dual output, multiple windings, center tap, series/parallel connection |
| Rated Power | VA rating calculated according to each secondary load and operating duty cycle |
| Voltage Regulation | Output voltage adjusted according to the required full-load voltage |
| PCB Footprint | Custom pin position, pitch, row spacing, mounting grid and keep-out area |
| Product Dimensions | Maximum length, width, height, seated height and weight |
| Insulation System | Class B or Class F; functional, basic, supplementary or reinforced insulation |
| Dielectric Strength | Customer-defined or standard-based Hi-Pot level and test duration |
| Thermal Protection | Internal thermal fuse, resettable protector or external protection coordination |
| EMI Control | Electrostatic shield, inter-winding shield and optimized winding arrangement |
| Environmental Protection | Open-frame, vacuum impregnation, tape wrapping or fully encapsulated construction |
| Noise Control | Reduced flux-density design, controlled core assembly and impregnation |
| Identification | Customer part number, polarity mark, date code, batch code and private label |
| Documentation | Product specification, dimensional drawing, pin diagram, test report and material declarations |
| Packaging | Individual trays, partitioned cartons, export cartons and pallet packaging |
Why Choose ECKO for Custom PCB Transformers?
Engineering Design Based on the Complete ApplicationECKO evaluates the input range, frequency, output load, voltage regulation, temperature rise, PCB space, enclosure ventilation and insulation requirements before releasing a design. The transformer is developed as part of the customer’s power circuit rather than selected only by voltage and VA. |
Controlled Specifications, Drawings and RevisionsEach approved project can be managed through a controlled product specification, dimensional drawing, pin diagram, BOM, process instruction and inspection plan. Engineering changes are recorded by revision, approval status and effective production lot. |
Qualified and Traceable Raw MaterialsCopper wire, electrical steel, bobbins, insulation tape, thermal protectors, terminals and encapsulation materials are purchased according to approved specifications. Incoming inspection and batch records help prevent unauthorized material substitution. |
Production Capacity with Process ControlEstablished in 2000, ECKO operates three workshops covering approximately 5,000m² with around 150 skilled workers. Winding, soldering, core assembly, impregnation, encapsulation and electrical testing are managed through defined production and inspection procedures. |
Quality Control from Sample to Mass ProductionCritical electrical parameters are confirmed during sample verification and transferred into the production test specification. Routine testing and batch traceability support stable repeat orders and more efficient customer incoming inspection. |
PCB Transformer Tests and Reference Standards
Routine Production Tests
| Test Item | Test Purpose | Typical Inspection Plan |
| Visual Inspection | Workmanship, label, polarity mark, pin condition and product appearance | Routine or sampling |
| Dimensional Inspection | Outline dimensions, seated height, pin pitch and pin position | Sampling or critical dimensions |
| Winding Resistance | Checks conductor continuity and winding consistency | Routine |
| Turns Ratio / Output Voltage | Verifies output voltage and winding polarity at the specified input | 100% routine test |
| No-Load Current | Confirms excitation current, core assembly and winding consistency | 100% or agreed inspection plan |
| No-Load Loss | Evaluates standby core and winding loss | Sampling or qualification |
| Load Voltage and Regulation | Confirms rated-load output voltage and voltage drop | Sample and periodic verification |
| Insulation Resistance | Checks insulation between windings and accessible conductive parts | Routine or sampling |
| Dielectric Strength / Hi-Pot | Verifies the specified insulation withstand level | 100% at the approved test level |
| Temperature Rise | Confirms thermal performance under defined mounting and load conditions | Type or qualification test |
| Audible Noise | Evaluates hum and mechanical vibration at the specified input | When controlled by the specification |
| Solderability | Confirms PCB pin wetting and resistance to soldering heat | Qualification or sampling |
Custom PCB Transformer Development Process
Step 1: Submit the Application RequirementsProvide the primary voltage, frequency, secondary voltage and current, available PCB space, operating environment, annual quantity and applicable safety requirements. |
Step 2: Engineering Feasibility ReviewECKO reviews the VA requirement, winding arrangement, core size, temperature-rise target, insulation construction, PCB footprint and potential technical risks. |
Step 3: Technical Proposal and QuotationWe provide a proposed electrical configuration, construction type, estimated dimensions, testing plan, tooling requirements and commercial quotation. |
Step 4: Specification and Drawing ApprovalThe customer reviews the electrical specification, outline drawing, PCB footprint, pin assignment, polarity and critical tolerances before sample production. |
Step 5: Prototype ManufacturingSamples are produced using the approved materials and process route. Electrical and dimensional test records can be provided according to the agreed project plan. |
Step 6: Sample Verification and Customer ApprovalOutput voltage, load regulation, no-load current, temperature rise, dielectric strength, dimensions and PCB fit are confirmed before production release. |
Step 7: Controlled Mass ProductionThe approved BOM, drawing revision, winding data, process instructions and test limits are released to production. Routine tests and batch identification are applied according to the inspection plan. |
PCB Transformer FAQ
1. What information is required to quote a custom PCB transformer?
Please provide the input voltage and frequency, each output voltage and current, rated power or load profile, maximum dimensions, PCB footprint, operating temperature, insulation requirements, annual quantity and applicable safety standard. A PCB file, existing drawing or product sample is also helpful.
2. How do I calculate the required transformer VA rating?
For each secondary winding, multiply the rated output voltage by the required output current. Add the VA values of all windings and include suitable design margin for regulation, temperature rise, intermittent peak loads and rectifier circuits.
3. Can you produce 115V/230V dual-primary PCB transformers?
Two primary windings can be configured for series or parallel connection to support different mains voltages. The pin assignment, connection diagram and insulation requirements must be confirmed on the approved drawing.
4. Can one PCB transformer provide multiple output voltages?
We can design single, dual, center-tapped or multiple independent secondary windings. Please specify the voltage, current and duty cycle required from each winding.
5. What is the difference between an open-frame and an encapsulated PCB transformer?
An open-frame transformer is generally smaller, lighter and more economical. A fully encapsulated transformer provides better protection against moisture, dust and mechanical vibration, but normally has different thermal behavior, dimensions and tooling requirements.
6. Can you match our existing PCB footprint?
We can review your PCB layout, hole positions, keep-out area and maximum component height. Final pin tolerances and PCB hole diameters should be confirmed through an approved dimensional drawing.
7. Can the transformer dimensions be customized?
Within the limits of electrical power, insulation distance, core size and temperature rise. Reducing one dimension may require increasing another dimension or accepting different thermal and regulation performance.
8. What is the typical temperature rise of a PCB transformer?
Temperature rise is not one fixed value for every model. It depends on the VA rating, ambient temperature, enclosure ventilation, core flux density, winding current density and insulation class. ECKO can design to an agreed maximum temperature-rise target and verify it on the sample.
9. Can you reduce no-load current, standby loss or audible hum?
Yes. These characteristics can be improved through core selection, increased turns, lower flux density, controlled core assembly, winding arrangement and impregnation. The required limits should be stated before the transformer size and price are finalized.
10. Can you add an electrostatic shield?
A shield can be placed between the primary and secondary windings to reduce capacitive coupling and common-mode noise. The shield lead and grounding method must be shown in the customer’s circuit and pin diagram.




