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- Schneider Electric XB5AJ53 Harmony XB5 Black 3-Position Spring Return to Center 2NO Selector Switch Schneider Electric XB5AJ53 Harmony XB5 Black 3-Position Spring Return to Center 2NO Selector Switch
Schneider Electric XB5AJ53 Harmony XB5 Black 3-Position Spring Return to Center 2NO Selector Switch
Schneider Electric XB5AJ53 Harmony XB5 Black 3-Position Spring Return to Center 2NO Selector Switch
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- Description
The Schneider Electric XB5AJ53 is a Harmony XB5 selector switch with a black long handle, a 3-position +/-45° action that springs back to center from either side, and 2NO contacts rated 10 A Ith. It mounts in a standard 22.5 mm panel cut-out with screw-clamp terminals.
Technical Specifications
| Reference | XB5AJ53 |
| Brand | Schneider Electric |
| Range | Harmony XB5 |
| Device Type | Selector switch |
| Bezel Material | Dark grey plastic |
| Mounting Diameter | 22.5 mm |
| Operator Type | Spring return to center, black long handle |
| Operator Positions | 3 positions, +/-45° |
| Contacts | 2NO, slow-break |
| Terminals | Screw clamp, 0.22-1.5 mm² |
| Conventional Free-Air Thermal Current [Ith] | 10 A |
| Rated Operational Current [Ie] | 3 A at 240 V AC-15 |
| Rated Insulation Voltage [Ui] | 600 V |
| Rated Impulse Withstand Voltage [Uimp] | 6 kV |
| Positive Opening | Without |
| IP Degree | IP67, IP69, IP69K |
| IK Degree | IK04 |
| Electrical Shock Protection Class | Class II |
| Ambient Temperature (Operation) | -40 to 70 °C |
| Dimensions (H x W x D) | 48 x 30 x 70 mm |
| Net Weight | 0.053 kg |
Certifications & Standards
- BV
- UL
- CSA
- DNV
- Lloyd's Register
- IEC 60947-5-1
- IEC 60947-1
Selection Notes
The handle snaps back to center as soon as it is released, which makes this version a momentary jog selector rather than a persistent mode switch, in contrast to the maintained XB5AJ33. The long handle gives extra leverage for repeated jog actuations compared with the standard XB5AD53 handle. Each outer position closes its own NO contact, letting the two sides drive two independent jog directions from a single component.