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The PQ2620 is a high frequency PCB mount transformer built on a PQ26/20 ferrite core, designed as the main isolation transformer in a switch mode power supply. It transfers energy from the primary switching stage to the secondary output while maintaining full galvanic isolation between the mains side and the load side, and it does so at switching frequencies where a conventional low frequency transformer of the same power rating would be several times larger and heavier.
The PQ core shape is chosen deliberately for this class of application. Compared with EE or EI geometry of similar volume, the PQ core provides a larger effective cross sectional area relative to its footprint and encloses the winding more completely. The practical result is a better ratio of power handling to board area, a lower leakage field, and a larger surface area for heat to escape from the winding. For a designer who has to fit a given output power into a fixed board outline, this is usually what decides the core shape.
The transformer is supplied as a vertical PCB mount component on a rigid bobbin with through hole pins, which allows it to be inserted and wave soldered as a standard part on an automated line. The winding is layered with insulation tape between primary and secondary and vacuum varnish impregnated, so the assembly resists vibration, humidity and the thermal cycling that industrial equipment experiences over a long service life.
The product is manufactured to order. Turns ratio, primary inductance, output voltages, number of secondary windings, pin configuration, insulation system and creepage arrangement are all defined against the customer circuit and the safety standard the finished equipment must meet.
| No. | Parameter | Specification |
|---|---|---|
| 1 | Model | PQ2620 series |
| 2 | Core type | PQ26/20 ferrite core |
| 3 | Core material | MnZn ferrite, PC40 / PC44 grade or equivalent |
| 4 | Product type | High frequency isolation transformer, SMPS |
| 5 | Mounting | Vertical PCB mount, through hole |
| 6 | Bobbin material | Flame retardant thermoplastic, UL 94V-0 |
| 7 | Winding material | Enamelled copper wire; triple insulated wire available for reinforced insulation designs |
| 8 | Pin configuration | Customisable, typical 5 + 5 pin arrangement |
| 9 | Output power | Customisable, typical 40 W to 120 W |
| 10 | Switching frequency | 50 kHz to 200 kHz, matched to controller |
| 11 | Primary inductance | Customisable, typical 200 uH to 1500 uH |
| 12 | Inductance tolerance | Plus or minus 10% standard, 5% on request |
| 13 | Turns ratio | Defined per input and output specification |
| 14 | Leakage inductance | Typically below 2% of primary inductance |
| 15 | Topology support | Flyback, forward, half bridge, LLC resonant |
| 16 | Insulation class | Class B (130 C) standard; Class F available |
| 17 | Dielectric strength | 3000 VAC for 1 minute, primary to secondary |
| 18 | Insulation resistance | 100 megohm minimum at 500 VDC |
| 19 | Operating temperature | -40 C to +130 C including self heating |
| 20 | Temperature rise | 40 K maximum at rated load |
| 21 | Finish | Vacuum varnish impregnated, taped |
| 22 | Safety approval | UL recognised construction, file E332338 |
| 23 | Compliance | RoHS, REACH; IEC 61558 / IEC 62368 design principles supported |
| 24 | Customisation | OEM / ODM, free electrical design service |
Note: output power, inductance, turns ratio and pin configuration are defined per application. Approval drawings and samples are issued for your confirmation before mass production. Confirm the applicable safety file reference with your sales contact for your specific part number.
Typical circuit positions include the main transformer in a flyback converter, the power transformer in a forward or half bridge topology, and the resonant transformer in an LLC stage where controlled leakage inductance is used as part of the resonant tank.
