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- Schneider Electric LR9G630 TeSys Giga Electronic Overload Relay 160-630 A Class 5E-30E LC1G Relay Schneider Electric LR9G630 TeSys Giga Electronic Overload Relay 160-630 A Class 5E-30E LC1G Relay
Schneider Electric LR9G630 TeSys Giga Electronic Overload Relay 160-630 A Class 5E-30E LC1G Relay
Schneider Electric LR9G630 TeSys Giga Electronic Overload Relay 160-630 A Class 5E-30E LC1G Relay
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- Description
The Schneider Electric LR9G630 is a TeSys LRG electronic thermal overload relay for the TeSys Giga (LC1G) high-power contactor range, adjustable over 160-630 A with a selectable class 5E-30E trip curve, push-in control connection, and built-in ground-fault and phase-imbalance protection.
Technical Specifications
| Reference | LR9G630 |
| Brand | Schneider Electric |
| Range | TeSys |
| Product Name | TeSys LRG |
| Device Short Name | LR9G |
| Product Type | Electronic thermal overload relay |
| Thermal Overload Class | Class 5E…30E (IEC 60947-4-1) |
| Thermal Protection Adjustment Range | 160…630 A |
| Tripping Threshold | 1.125 ± 0.07 In (IEC 60947-4-1) |
| Protection Functions | Ground fault (0…1 s), phase loss (0…4 s), phase imbalance (0…5 s) |
| Contacts Type and Composition | 1 NO + 1 NC |
| [Uc] Control Circuit Voltage | 24…500 V AC 50/60 Hz, 24…250 V DC |
| [Ue] Rated Operational Voltage | 1000 V AC 50/60 Hz |
| [Uimp] Rated Impulse Withstand Voltage | 8 kV |
| Surge Withstand | 4 kV |
| Reset | Automatic or manual |
| Local Signalling | LED, trip indicator |
| Connections - Terminals (Power Circuit) | Busbar 50 x 10 mm, or ring lugs |
| Mounting Support | Direct on LC1G contactor or plate |
| IP Degree of Protection | IP2X front face with shrouds (IEC 60529, VDE 0106) |
| Ambient Air Temperature for Operation | -25…60 °C |
| Width x Height x Depth | 211 x 148 x 186 mm |
| Net Weight | 2.9 kg |
Certifications & Standards
- CB Scheme
- CCC
- cULus
- UKCA
- ATEX
- EAC
- IEC 60947-4-1
- IEC 60947-5-1
- UL 60947-4-1
- CSA C22.2 No 60947-4-1
Selection Notes
The 160-630 A range sizes this relay to the TeSys Giga contactor it is paired with; set the class dial to 10E for general-purpose duty and move to 20E or 30E only for high-inertia loads with long starting times, since a higher class number tolerates a longer overcurrent before tripping. Built-in ground-fault and phase-imbalance alarm outputs remove the need for a separate earth-fault relay on the same feeder, and the push-in control terminals cut the wiring time against the screw-clamp LR9D/LR97D relays used on the smaller TeSys D/K frames.