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The CHG126 is a high voltage transformer built on a stacked CHG126 ferrite core structure, designed to generate a high voltage output from a low voltage switching input in industrial equipment. It steps a switched primary voltage up to the kilovolt range through a high turns ratio secondary, while maintaining full galvanic isolation between the control side and the high voltage output. This is the component that makes it possible to produce several kilovolts from a low voltage DC supply inside equipment that has no mains connection at high potential.
A high voltage transformer is not simply a standard transformer with more secondary turns. The dominant design problem is insulation rather than magnetics. Every layer of the secondary winding sits at a progressively higher potential relative to the core, the primary and its own neighbouring layers, so layer insulation, creepage distance and partial discharge behaviour determine whether the part survives in service. The CHG126 addresses this with a segmented high voltage secondary, interlayer insulation, generous creepage separation between primary and secondary sections, and epoxy potting at the critical stress points visible on the assembly.
The product is manufactured to order. Output voltage, turns ratio, power rating, insulation system, potting arrangement, lead type and lead length are all defined against the customer circuit, the required output voltage and the safety standard the finished equipment must meet.
| Parameter | Specification |
|---|---|
| Model | CHG126 |
| Core type | Stacked ferrite core |
| Core material | MnZn ferrite, PC40 / PC44 grade or equivalent |
| Product type | High voltage step up transformer |
| Output voltage | Customisable, typical 1 kV to 30 kV |
| Output power | Customisable, typical 100 W to 1000 W |
| Turns ratio | High ratio, defined per output voltage requirement |
| Switching frequency | 20 kHz to 100 kHz, matched to driver circuit |
| Primary inductance | Customisable, defined per topology |
| Secondary construction | Segmented multi section winding, interlayer insulated |
| Winding material | Enamelled copper wire; Litz or foil where required |
| Insulation system | Polyimide tape, epoxy potting at stress points |
| Insulation class | Class F (155 C) / Class H (180 C) |
| Dielectric strength | Tested to the working voltage of the design, per order |
| Insulation resistance | 1000 megohm minimum at 500 VDC |
| Partial discharge | Controlled by segmented construction and potting |
| Operating temperature | -40 C to +130 C including self heating |
| Temperature rise | 40 K maximum at rated load |
| Acoustic noise | Low noise construction, impregnated and bonded |
| Termination | High voltage insulated lead wire, length customisable |
| Mounting | Bracket or chassis mount, arrangement per order |
| Finish | Vacuum varnish impregnated, epoxy reinforced |
| Minimum order quantity | 100 pieces |
| Warranty | 5 years; 20 years for qualifying special industry applications |
| Compliance | RoHS, REACH; IEC 61558 / IEC 62368 design principles supported |
| Customisation | OEM / ODM, free electrical design service |
Note: output voltage, power rating, turns ratio and insulation specification are defined per application. Approval drawings and samples are issued for your confirmation before mass production.
Typical circuit positions include the step up transformer in a flyback or resonant high voltage generator, the transformer feeding a Cockcroft Walton multiplier stage, and the isolation transformer in a capacitor charging supply where output voltage must rise in a controlled manner.
Q1. What is your minimum order quantity?
MOQ is 1000 pieces for this product, which allows a new design to be qualified and released without committing to a large first order.
Q2. What payment methods do you accept?
We accept T/T, PayPal and Western Union.
Q3. How quickly can you quote and produce samples?
Quotation is issued within 3 days of receiving your specification, and sample production is completed within 7 days. Mass production lead time is confirmed with the quotation and depends on quantity and complexity.
Q4. What output voltage can you achieve?
Output voltage is defined per design and typically ranges from 1 kV to 30 kV. Tell us the required output voltage, the load current or power, and the input and switching conditions of your driver, and we will confirm feasibility before you order.
Q5. How do you prevent insulation breakdown at high voltage?
Through segmented secondary construction that limits the voltage stress between adjacent turns, polyimide interlayer insulation, defined creepage and clearance separation between primary and secondary, epoxy potting at the points of highest field concentration, and vacuum impregnation to eliminate voids where partial discharge would otherwise initiate.
Q6. Can you design the transformer to match my existing driver circuit?
Yes, this is the normal case. Send us the topology, input voltage, switching frequency, required output voltage and load current, plus the available mechanical space, and our engineers will define core, turns ratio, segmentation and insulation, then confirm the design with samples.
Q7. What warranty do you provide?
We provide a 5 year warranty as standard, extended to 20 years for qualifying special industry applications. Confirm the applicable term for your application with your sales contact when the specification is finalised.
Q8. Can the lead type, lead length and mounting be customised?
Yes. High voltage lead specification, lead length, low voltage termination type, bracket arrangement and overall mechanical envelope are all defined to your drawing.
Q9. Is the transformer suitable for driving a voltage multiplier?
Yes. We regularly design transformers intended to feed a Cockcroft Walton or similar multiplier stage. Tell us the multiplier configuration and the final output voltage target so the transformer output and the multiplier stage are matched correctly.
Q10. How is the transformer tested before shipment?
Inductance, turns ratio, DC resistance and high potential isolation are tested on production equipment before packing. Test voltage and conditions are stated on the approval drawing so your incoming inspection measures the part under the same conditions we do.
Q11. What certifications and material compliance do you provide?
Manufacturing runs under ISO 9001 and ISO 14001. Products comply with RoHS and REACH, and UL recognised insulation materials can be specified on request. Designs follow IEC 61558 and IEC 62368 principles. If your destination market requires an additional approval, tell us the country before ordering.
Q12. Can you reverse engineer a high voltage transformer I am already using?
Yes. Send us a physical sample together with the circuit conditions and the output requirement, and we will produce a matched replacement with the same mechanical envelope and electrical behaviour, confirmed against your equipment with samples before mass production.
Q13. Do you have overseas warehouses or offer drop shipping?
No. All goods ship directly from our factory in Guangdong, China. We support FOB, CIF, DDU and DDP terms.
Q14. Can you provide samples and drawings before mass production?
Yes. We issue approval drawings and physical samples for your confirmation, and mass production does not begin until you approve them.
