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- Schneider Electric METSECT5MC025 PowerLogic CT MC Type 250/5 A Class 1 32 mm Current Transformer Schneider Electric METSECT5MC025 PowerLogic CT MC Type 250/5 A Class 1 32 mm Current Transformer
Schneider Electric METSECT5MC025 PowerLogic CT MC Type 250/5 A Class 1 32 mm Current Transformer
Schneider Electric METSECT5MC025 PowerLogic CT MC Type 250/5 A Class 1 32 mm Current Transformer
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- Description
The Schneider Electric METSECT5MC025 is a PowerLogic MC-type current transformer for panel metering, rated 250/5 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 3 VA burden or Class 1 at 5 VA.
Technical Specifications
| Reference | METSECT5MC025 |
| Brand | Schneider Electric |
| Range | PowerLogic |
| Product type | Current transformer, tropicalised for busbar and cable |
| Current transformer ratio | 250/5 A |
| Accuracy class | Class 0.5 at 3 VA / Class 1 at 5 VA |
| Rated thermal current (Ith) | 15 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 | Clip-on, insulated locking screw, or by screws |
| 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 | 0.375 kg |
Certifications & Standards
- EAC
- CE
- VDE 0414
- IEC 61869-2
Selection Notes
The METSECT5MC025 fits feeders up to 250 A where the panel builder needs one CT body that serves three bar geometries, since the triple bus bar opening covers 40.5 x 10.5, 32.5 x 20.5, and 25.5 x 25.5 mm sections. Its 15 kA thermal rating is sized for the lower end of the MC family, so it is the choice when upstream protection is already limiting fault current and the higher-current MC variants would be oversized for the burden.