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- Schneider Electric METSECT5MC060 PowerLogic CT MC Type 600/5 A Class 1 32 mm Current Transformer Schneider Electric METSECT5MC060 PowerLogic CT MC Type 600/5 A Class 1 32 mm Current Transformer
Schneider Electric METSECT5MC060 PowerLogic CT MC Type 600/5 A Class 1 32 mm Current Transformer
Schneider Electric METSECT5MC060 PowerLogic CT MC Type 600/5 A Class 1 32 mm Current Transformer
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- Description
The Schneider Electric METSECT5MC060 is a PowerLogic MC-type current transformer for panel metering, rated 600/5 A for busbar and cable installation. It accepts cables up to 32 mm in diameter or a 40.5 x 10.5 / 32.5 x 20.5 / 25.5 x 25.5 mm bus bar, delivering Class 0.5 accuracy at 12 VA burden or Class 1 at 15 VA.
Technical Specifications
| Reference | METSECT5MC060 |
| Brand | Schneider Electric |
| Range | PowerLogic |
| Product type | Current transformer, tropicalised for busbar and cable |
| Current transformer ratio | 600/5 A |
| Accuracy class | Class 0.5 at 12 VA / Class 1 at 15 VA |
| Rated thermal current (Ith) | 36 kA |
| Dynamic withstand current | 2.5 x Ith |
| Maximum safety factor | 5 |
| Rated operational voltage (Ue) | < 720 V AC 50/60 Hz |
| Rated insulation voltage (Ui) | 3 kV 50 Hz for 1 minute |
| Rated impulse withstand voltage (Uimp) | 3 kV |
| Electrical insulation class | Class B |
| Cable outer diameter | 32 mm |
| Bus bar opening | 40.5 x 10.5 / 32.5 x 20.5 / 25.5 x 25.5 mm |
| Mounting mode | By screws, clip-on, or insulated locking screw |
| Mounting support | DIN rail, mounting plate, or busbar |
| Window dimensions | 70 x 95 mm outside, 41 x 41 mm inner |
| IP degree of protection | IP20 |
| Ambient operating temperature | -25...60 C |
| Net weight | 0.449 kg |
Certifications & Standards
- CE
- EAC
- VDE 0414
- IEC 61869-2
Selection Notes
The METSECT5MC060 is the highest-current member of the 32 mm MC window, rated 600 A primary with a 36 kA thermal current that is the largest in the family before stepping up to the 40 mm MD bodies. Use it on feeders near the physical limit of the MC window rather than the 500 A unit, since the extra thermal margin matters more as the circuit approaches a 600 A breaker.