Circuit Breakers

Image Part Number Description / PDF Quantity Rfq
GMB633PC1

GMB633PC1

Carlo Gavazzi

CIR BRKR THERM-MAG 1A 240VAC

4

GMB63H3PC4

GMB63H3PC4

Carlo Gavazzi

CIR BRKR THERM-MAG 4A 480/277V

3

GMB63H2PC20

GMB63H2PC20

Carlo Gavazzi

CIR BRKR THERM-MAG 20A 480/277V

9

GMS-32H 0.25A

GMS-32H 0.25A

Carlo Gavazzi

MMS 32A HIGH BREAK 0.16-0.25A

5

GMB631PC0.5

GMB631PC0.5

Carlo Gavazzi

CIR BRK THERM 500MA 240VAC/60VDC

15

GMS-32H 10A

GMS-32H 10A

Carlo Gavazzi

MMS 32A HIGH BREAK 6-10A

5

GMB632PC0.5

GMB632PC0.5

Carlo Gavazzi

CIR BRK THRM 500MA 240VAC/125VDC

41

GMS-100S 63A

GMS-100S 63A

Carlo Gavazzi

MMS 100A STD BREAK 45-63A

3

GMB632PC20

GMB632PC20

Carlo Gavazzi

CIR BRKR THERM 20A 240VAC/125VDC

10

GMB63H2PC10

GMB63H2PC10

Carlo Gavazzi

CIR BRKR THERM-MAG 10A 480/277V

4

GMS-100S 22A

GMS-100S 22A

Carlo Gavazzi

MMS 100A STD BREAK 14-22A

3

GMS-100S 50A

GMS-100S 50A

Carlo Gavazzi

MMS 100A STD BREAK 34-50A

3

GMS-32S 0.63A

GMS-32S 0.63A

Carlo Gavazzi

MMS 32A STD BREAK 0.4-0.63A

4

GMS-32S-17A

GMS-32S-17A

Carlo Gavazzi

MMS 32A STD BREAK 11-17A

4

GMS-63S 17A

GMS-63S 17A

Carlo Gavazzi

MMS 63A STD BREAK 11-17A

3

GSB633PC10

GSB633PC10

Carlo Gavazzi

MCB UL1077 C 3P 10A

2

GMB633PC63

GMB633PC63

Carlo Gavazzi

CIR BRKR THERM-MAG 63A 240VAC

10

GMS-32H 4A

GMS-32H 4A

Carlo Gavazzi

MMS 32A HIGH BREAK 2.5-4A

3

GMB63H3PC16

GMB63H3PC16

Carlo Gavazzi

CIR BRKR THERM-MAG 16A 480/277V

3

GSB632PC4

GSB632PC4

Carlo Gavazzi

MCB UL1077 C 2P 4A

18

Circuit Breakers

1. Overview

Circuit breakers are automatic electrical switches designed to protect circuits from damage caused by overloads or short circuits. Unlike fuses, they can be reset after tripping. Modern circuit breakers ensure electrical safety, prevent equipment damage, and maintain system reliability in residential, commercial, and industrial applications.

2. Main Types and Functional Classification

TypeFunction FeaturesApplication Examples
MCB (Miniature Circuit Breaker)Thermal-magnetic protection, <100A ratingResidential wiring, lighting circuits
MCCB (Molded Case Circuit Breaker)Adjustable trip settings, 10-2500A ratingIndustrial machinery, HVAC systems
ACB (Air Circuit Breaker)High fault current interruption, 400-6300A ratingPower distribution in data centers
RCCB (Residual Current Circuit Breaker)Earth leakage protection (5-500mA sensitivity)Outdoor outlets, swimming pool equipment
RCBO (Residual Current Breaker with Overcurrent)Combines overload, short-circuit, and leakage protectionHospital equipment, construction sites

3. Structure and Components

Typical components include: - Enclosure: Flame-retardant insulating material housing - Contacts: Silver alloy for high conductivity - Trip Mechanism: Bimetallic strip (thermal) and electromagnetic coil (magnetic) - Arc Extinguisher: Multi-plate chamber for arc suppression - Operating Lever: Manual ON/OFF control with position indicators

4. Key Technical Parameters

ParameterDescriptionImportance
Rated Current (In)Maximum continuous current without trippingDetermines load capacity
Rated Voltage (Un)Maximum operating voltageEnsures insulation safety
Breaking Capacity (Icu)Maximum fault current interrupting capabilityPrevents catastrophic failure
Tripping CharacteristicsTime-current curve (B/C/D types)Matches load requirements
Pole Number1P to 4P configurationsDetermines phase protection

5. Application Fields

  • Power distribution: Residential panels, commercial switchboards
  • Industrial equipment: Motors, transformers, CNC machines
  • Renewable energy: Solar inverters, wind turbine systems
  • Transportation: EV charging stations, rail traction systems

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
Schneider ElectricActi 9 seriesModular design, 0.5-125A range
Siemens5SJ seriesHigh short-circuit withstand, DIN rail mount
ABBEmax seriesSmart connectivity, up to 6300A
General ElectricTHQL seriesUL-certified, industrial motor protection

7. Selection Guidelines

Key considerations: - Match rated current to load requirements (125% safety margin) - Select tripping curve (Type B for resistive loads, C for motors) - Verify breaking capacity against system fault levels - Consider environmental factors (temperature, altitude) - Ensure compliance with standards (IEC 60898, UL 489) - Example: For a 20kW motor (400V), select MCCB with 63A rating, Type C curve, 50kA breaking capacity

8. Industry Trends

Emerging trends include: - Smart grid integration with IoT-enabled monitoring - Compact designs for space-constrained applications - Eco-friendly materials with halogen-free construction - Integration with renewable energy systems - Predictive maintenance via AI-powered diagnostics - Increased adoption of DC circuit breakers for EV infrastructure

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