| Ονομασία μάρκας: | ZXY |
| Αριθμός μοντέλου: | ZXY-PQ |
| Τροποποιημένο: | Διαπραγματεύσιμος |
| τιμή: | Διαπραγματεύσιμα |
| Πληροφορίες συσκευασίας: | ΧΑΡΤΟΚΙΒΩΤΙΟ |
| Performance Characteristic | Specification / Details |
|---|---|
| Core Material | Low-loss ferrite materials (e.g., PC44, 3C94, N87, N67) |
| Operating Frequency | 20 kHz to 500 kHz (typical) |
| Output Power Range | 0.5 VA up to 6 kW+, depending on core size (e.g., PQ20: 50W max; PQ35/35: 350W; PQ50: 1000W+) |
| Efficiency | Up to 95% to 99% |
| Operating Temperature | -40°C to +125°C (typical); some models up to +180°C |
| Storage Temperature | -40°C to +100°C (typical) |
| Dielectric Strength (Hipot) | 1.5 kV to 4.0 kV AC, depending on insulation requirements |
| Insulation Resistance | 100 MΩ min. at DC500V |
| Inductance Tolerance | Typically ±8% to ±10% at 1 kHz/0.25V or 1 kHz/1V |
| DC Resistance (DCR) | As low as 4 mΩ to 780 mΩ (varies by winding and model) |
| Leakage Inductance | Typically 4.0 µH Max. to 6.0 µH Max. |
| Core Geometry | Optimized PQ shape for high power density, low leakage flux, and good thermal performance |
| Ονομασία μάρκας: | ZXY |
| Αριθμός μοντέλου: | ZXY-PQ |
| Τροποποιημένο: | Διαπραγματεύσιμος |
| τιμή: | Διαπραγματεύσιμα |
| Πληροφορίες συσκευασίας: | ΧΑΡΤΟΚΙΒΩΤΙΟ |
| Performance Characteristic | Specification / Details |
|---|---|
| Core Material | Low-loss ferrite materials (e.g., PC44, 3C94, N87, N67) |
| Operating Frequency | 20 kHz to 500 kHz (typical) |
| Output Power Range | 0.5 VA up to 6 kW+, depending on core size (e.g., PQ20: 50W max; PQ35/35: 350W; PQ50: 1000W+) |
| Efficiency | Up to 95% to 99% |
| Operating Temperature | -40°C to +125°C (typical); some models up to +180°C |
| Storage Temperature | -40°C to +100°C (typical) |
| Dielectric Strength (Hipot) | 1.5 kV to 4.0 kV AC, depending on insulation requirements |
| Insulation Resistance | 100 MΩ min. at DC500V |
| Inductance Tolerance | Typically ±8% to ±10% at 1 kHz/0.25V or 1 kHz/1V |
| DC Resistance (DCR) | As low as 4 mΩ to 780 mΩ (varies by winding and model) |
| Leakage Inductance | Typically 4.0 µH Max. to 6.0 µH Max. |
| Core Geometry | Optimized PQ shape for high power density, low leakage flux, and good thermal performance |