Contactors (Solid State)

Image Part Number Description / PDF Quantity Rfq
DR2260A35V

DR2260A35V

Sensata Technologies – Crydom

RELAY SSR 600V 35A DIN RAIL

0

PM2260D50VR

PM2260D50VR

Sensata Technologies – Crydom

RELAY SSR 600V 50A PNL MNT

0

DR2260A20W

DR2260A20W

Sensata Technologies – Crydom

RELAY SSR 600V 20A DIN RAIL

0

DP4RSA60E20B8

DP4RSA60E20B8

Sensata Technologies – Crydom

RELAY SSR CONTACT 48VDC 20A 32V

0

DP4R60D40

DP4R60D40

Sensata Technologies – Crydom

RELAY SSR CONTACT 48VDC 40A 15V

0

DRC3R48B400

DRC3R48B400

Sensata Technologies – Crydom

REV 480V 7.6A 120 VAC NO AUX

7

PM2260D50VH

PM2260D50VH

Sensata Technologies – Crydom

RELAY SSR 600V 50A PNL MNT

0

DP4RSA60E40B8

DP4RSA60E40B8

Sensata Technologies – Crydom

RELAY SSR CONTACT 48VDC 40A 32V

0

DRH3P60A20

DRH3P60A20

Sensata Technologies – Crydom

SSR CONTACTOR 3PH DIN MNT 600VAC

9

DP4RSB60E40B5

DP4RSB60E40B5

Sensata Technologies – Crydom

RELAY SSR CONTACT 48VDC 40A 32V

0

DP4RSC60D20B2

DP4RSC60D20B2

Sensata Technologies – Crydom

RELAY SSR CONTACT 48VDC 20A 15V

0

PM2260D95V

PM2260D95V

Sensata Technologies – Crydom

RELAY SSR 600V 95A PNL MNT

13

DP4RSC60E20B2

DP4RSC60E20B2

Sensata Technologies – Crydom

RELAY SSR CONTACT 48VDC 20A 32V

0

DRA3P48B2R

DRA3P48B2R

Sensata Technologies – Crydom

RELAY CONT 3PH 480VAC 2A 120VAC

0

DRC3P48A4112

DRC3P48A4112

Sensata Technologies – Crydom

480V 7.6A 230VAC 1NO+1NC ZC 2L

0

HAC24A150H

HAC24A150H

Sensata Technologies – Crydom

RELAY SSR CONTACTOR AC 150A 270V

0

DR2260D35VRJ

DR2260D35VRJ

Sensata Technologies – Crydom

RELAY, DIN RAIL 600V 35A RN

0

DP4RSC60E60B

DP4RSC60E60B

Sensata Technologies – Crydom

RELAY SSR CONTACTOR 60A 48V

0

DP4RSC60E60B5

DP4RSC60E60B5

Sensata Technologies – Crydom

RELAY SSR CONTACT 48VDC 60A 32V

0

PM2260A50VJ

PM2260A50VJ

Sensata Technologies – Crydom

RELAY SSR 600V 50A PNL MNT

0

Contactors (Solid State)

Solid State Contactors (SSCs) are electronic switching devices that use semiconductor components (e.g., thyristors, triacs, or MOSFETs) to control electrical circuits without mechanical contacts. Unlike electromechanical relays, SSCs provide wear-free operation, faster switching speeds, and enhanced reliability. They play a critical role in modern industrial automation, energy management systems, and precision control applications where longevity and performance are paramount.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
AC Output Solid State ContactorsUse thyristors/triacs for zero-crossing switching, reducing electrical noiseHeating systems, motor control in HVAC
DC Output Solid State ContactorsEmploy MOSFETs for high-speed DC circuit controlSolar inverters, battery management systems
Random Turn-on ContactorsSwitch immediately upon signal input, regardless of voltage phaseLighting control, phase angle regulation
Zero-crossing ContactorsSwitch when AC voltage crosses zero to minimize transient spikesResistive heating loads, industrial ovens
Modular Solid State RelaysCompact plug-in designs for panel mountingFactory automation lines, test equipment

3. Structure and Components

A typical solid state contactor consists of:

  • Housing: Flame-retardant polymer casing with IP20 protection rating
  • Semiconductor Switch: SCR (Silicon Controlled Rectifier) or TRIAC for AC control, MOSFETs for DC applications
  • Heat Sink: Aluminum finned structure for thermal dissipation (rated for 80 C ambient operation)
  • Control Circuit: Optocoupler isolation with LED indicator, typically operating at 3-32V DC
  • Terminal Blocks: Screw-type or spring-clamp connections for load and control circuits

4. Key Technical Specifications

ParameterTypical RangeImportance
Rated Voltage24-660V AC/DCDetermines circuit compatibility
Load Current0.5-100ADefines maximum power handling capacity
Switching Speed0.5-20msControls response time in dynamic applications
Operating Temperature-25 C to +80 CSpecifies environmental tolerance range
Dielectric Strength2500V RMSEnsures electrical isolation safety
MTBF100 million operationsMeasures reliability and service life

5. Application Fields

Major industries utilizing solid state contactors include:

  • Industrial Automation: PLC systems, CNC machines, conveyor belts
  • Energy Management: Smart grids, solar power inverters, energy storage systems
  • Process Control: Temperature regulation in chemical reactors
  • Transportation: Electric vehicle charging stations, rail traction control
  • Consumer Electronics: High-end home appliances, smart thermostats

Case Study: In injection molding machines, solid state contactors enable precise temperature control ( 1 C) for heating barrels, improving production yield by 15% compared to electromechanical alternatives.

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
OmronG3PH-C-DC-24V24V DC control, 40A load, DIN rail mount
Siemens3RF2020-1AA000.5-10A range, LED status indicator
ABBAF10-30MA30mA control current, IP20 protection
CrydomHL240D100100A rating, 240V AC output
TE ConnectivitySS-4S-S-DC5V5V DC input, 2A load capacity

7. Selection Guidelines

  1. Load Type: Choose AC/DC-specific models with appropriate semiconductor technology
  2. Current Rating: Select 20% higher capacity than maximum load requirements
  3. Thermal Management: Consider heatsink requirements for continuous operation
  4. Control Signal: Match input voltage to PLC/system control levels
  5. Environmental Factors: Verify protection rating (IP), vibration resistance, and operating temperature
  6. Certifications: Check for UL, CE, RoHS compliance for regulatory compliance

8. Industry Trends

Future developments include:

  • Integration with IoT for predictive maintenance capabilities
  • Adoption of wide bandgap semiconductors (SiC/GaN) for higher efficiency
  • Miniaturization through advanced thermal management materials
  • Increased adoption in EV charging infrastructure (expected CAGR 22% by 2028)
  • Standardization of digital interfaces (e.g., IO-Link compatibility)
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