GE ADS36400JB
General Electric ADS36400JB is a Spectra Series™ fusible panelboard switch designed for industrial and commercial power distribution applications. It is a heavy-duty disconnect and protection device used in electrical switchboards and panelboards.
Product Description
- Manufacturer: GE (General Electric)
- Model / Catalog Number: ADS36400JB
- Product Type: Fusible Panelboard Switch
- Series: GE Spectra Series™
- Configuration: 3-phase, 3-pole fusible switch
- Rated Current: 400 A
- Rated Voltage: 600 VAC
- Fuse Type: Class J fuse compatible
- Mounting Type: Panelboard / single mounting unit
- NEMA Rating: NEMA 1
- Interrupting Rating: Up to 200 kA (at applicable voltage ratings)
Technical Specifications
| Parameter | Specification |
|---|---|
| Model | ADS36400JB |
| Manufacturer | GE |
| Product Family | Spectra Series |
| Type | Fusible Switch |
| Poles | 3 Pole |
| Phase | 3 Phase |
| Voltage Rating | 600 VAC |
| Current Rating | 400 A |
| Fuse Class | Class J |
| Enclosure Rating | NEMA 1 |
| Application | Panelboard / Switchboard Power Distribution |
| AIC Rating | 200 kA @ 480 VAC (typical) |
Application Range
GE ADS36400JB is commonly used in:
- Industrial power distribution systems
- Manufacturing plants
- Motor control centers (MCC)
- Commercial electrical switchboards
- Building power distribution panels
- Heavy machinery power isolation systems
- High-current feeder protection applications
Features & Benefits
- High current capacity: Supports 400A power distribution requirements.
- Reliable circuit isolation: Provides safe manual disconnect capability.
- Fuse-based protection: Class J fuses provide overload and short-circuit protection.
- Industrial-grade construction: Designed for demanding electrical environments.
- Spectra Series compatibility: Integrates with GE Spectra panelboard systems.
Conclusion
The GE ADS36400JB 400A 600V fusible panelboard switch is a robust electrical distribution component suitable for industrial and commercial facilities requiring reliable feeder switching and overcurrent protection. It is widely applied in power distribution systems where safety, high fault protection, and dependable isolation are required.












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