Contactors (Electromechanical)

Image Part Number Description / PDF Quantity Rfq
CC75SA24

CC75SA24

Carlo Gavazzi

RLY CONT 3P 24V 50/60HZ 2NO/2NC

0

CC100LA600-60HZ

CC100LA600-60HZ

Carlo Gavazzi

RLY CONT 3P 600V 60HZ 2NO/2NC

0

CC100SA240

CC100SA240

Carlo Gavazzi

3P CONT S 240V 50/60HZ 2NO2NC

4

CC65SA600-60HZ

CC65SA600-60HZ

Carlo Gavazzi

RLY CONT 3P 600V 60HZ 2NO/2NC

0

CC22/4SA24

CC22/4SA24

Carlo Gavazzi

RLY CONT 4P 24V 50/60HZ NO AUX

0

CC150LA110

CC150LA110

Carlo Gavazzi

3P CONT L 110V50/60HZ 2NO2NC

5

CC75SA220

CC75SA220

Carlo Gavazzi

RLY CONT 3P 220V 50/60HZ 2NO/2NC

0

CC40SA220

CC40SA220

Carlo Gavazzi

RLY CONT 3P 220V 50/60HZ 2NO/2NC

0

CC150SA110

CC150SA110

Carlo Gavazzi

3P CONT S 110V 50/60HZ 2NO2NC

5

CC22/4SA208-60HZ

CC22/4SA208-60HZ

Carlo Gavazzi

RLY CONT 4P 208V 60HZ NO AUX

0

CC22SA208-60HZ

CC22SA208-60HZ

Carlo Gavazzi

RLY CONT 3P 208V 60HZ 1NO/1NC

0

CC100SD24

CC100SD24

Carlo Gavazzi

RLY CONT 3P 24V DC 2NO/2NC

0

CC50/4SA120

CC50/4SA120

Carlo Gavazzi

4P CONT S 120V 50/60HZ NO AUX

6

CC75SA120

CC75SA120

Carlo Gavazzi

3P CONT S 120V 50/60HZ 2NO2NC

3

CC32/4SA24

CC32/4SA24

Carlo Gavazzi

RLY CONT 4P 24V 50/60HZ NO AUX

0

CC50/4SD24

CC50/4SD24

Carlo Gavazzi

RLY CONT 4P 24V DC 1NO/1NC

0

CC65SA220

CC65SA220

Carlo Gavazzi

RLY CONT 3P 220V 50/60HZ 2NO/2NC

0

CC265/4SA500

CC265/4SA500

Carlo Gavazzi

RLY CONT 4P 500V 50/60HZ 2NO/2NC

0

CGMS-9A-240-01

CGMS-9A-240-01

Carlo Gavazzi

RLY CONT AC COIL 1NC AUX

0

CC130LD24

CC130LD24

Carlo Gavazzi

RLY CONT 3P 24V DC 2NO/2NC

0

Contactors (Electromechanical)

1. Overview

Electromechanical contactors are electrically controlled switching devices designed to handle high-current loads. They operate through electromagnetic actuation to open or close contacts, enabling remote control of electrical circuits. These components are critical in industrial automation, power distribution, and motor control systems, offering reliable and scalable solutions for managing electrical loads ranging from kilowatts to megawatts.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
AC ContactorsDesigned for alternating current loads with arc suppression featuresMotor starters, HVAC systems
DC ContactorsOptimized for direct current circuits with magnetic blowout arcsElectric vehicle charging, battery systems
Heavy-Duty ContactorsHigh inrush current tolerance with reinforced contactsIndustrial furnaces, large compressors
Vacuum ContactorsUse vacuum as arc-quenching medium for high-voltage applicationsPower generation systems, traction equipment

3. Structure and Components

Typical construction includes:

  • Electromagnetic actuator (coil and iron core)
  • Main contacts (silver alloy for conductivity)
  • Auxiliary contacts (for control circuits)
  • Arc suppression system (grids or vacuum chambers)
  • Mechanical linkage assembly

4. Key Technical Parameters

ParameterSignificance
Rated operational current (Ie)Determines maximum load capacity
Rated voltage (Ue)Defines operating voltage range
Coil power consumptionAffects control circuit design
Mechanical life (cycles)Indicates durability without maintenance
Short-circuit withstandSafety margin for fault conditions

5. Application Fields

Primary industries include:

  • Industrial automation (motor control centers)
  • Power generation and distribution systems
  • Building HVAC equipment
  • Transportation infrastructure (traction systems)
  • Agricultural machinery (irrigation pumps)

6. Leading Manufacturers and Products

ManufacturerRepresentative Products
Schneider ElectricTeSys D Green Contactors
Siemens3RT12xx series
ABBAF110-30LX vacuum contactor
OmronMY22S DC contactor

7. Selection Guidelines

Key considerations:

  • Load type (resistive/inductive) and inrush current
  • Environmental conditions (temperature, vibration)
  • Control voltage compatibility
  • Mounting orientation and space constraints
  • Certification requirements (IEC 61439, UL 508)
Example: For 400A motor control in a foundry, select a heavy-duty contactor with IP54 rating and class F insulation.

8. Industry Trends

Emerging developments:

  • Integration with IoT-enabled monitoring systems
  • Nano-coating technologies for harsh environments
  • Miniaturization through advanced arc suppression
  • Hybrid designs combining solid-state and electromechanical features
  • Eco-friendly materials reducing rare metal dependency

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