Solid State Relays

Image Part Number Description / PDF Quantity Rfq
PVG613PBF

PVG613PBF

IR (Infineon Technologies)

TRANSISTOR OUTPUT SSR, 1-CHANNEL

10277

PVA2352NSPBF

PVA2352NSPBF

IR (Infineon Technologies)

TRANSISTOR OUTPUT SSR, 1-CHANNEL

3075

PVA3324NPBF

PVA3324NPBF

IR (Infineon Technologies)

SSR RELAY SPST-NO 150MA 0-300V

4969

PVN012APBF

PVN012APBF

IR (Infineon Technologies)

SSR RELAY SPST-NO 4A 0-20V

1992

PVT422PBF

PVT422PBF

IR (Infineon Technologies)

SSR RELAY SPST-NO 120MA 0-400V

1750

PVDZ172NPBF

PVDZ172NPBF

IR (Infineon Technologies)

SSR RELAY SPST-NO 1.5A 0-60V

471

PVG612APBF

PVG612APBF

IR (Infineon Technologies)

SSR RELAY SPST-NO 2A 0-60V

2796

PVA3055NSPBF

PVA3055NSPBF

IR (Infineon Technologies)

SSR RELAY SPST-NO 50MA 0-300V

5262

PVN012SPBF

PVN012SPBF

IR (Infineon Technologies)

PVN012 - PHOTOVOLTAIC RELAY

2369

PVT212PBF

PVT212PBF

IR (Infineon Technologies)

SSR RELAY SPST-NO 550MA 0-150V

853

PVAZ172NS-TPBF

PVAZ172NS-TPBF

IR (Infineon Technologies)

60V 1 FORM A PHOTO VOLTAIC RELAY

6000

PVA1352NPBF

PVA1352NPBF

IR (Infineon Technologies)

SSR RELAY SPST-NO 375MA 0-100V

1610

PVT322S-TPBF

PVT322S-TPBF

IR (Infineon Technologies)

DUAL POLE, HEXFET POWER MOSFET P

35

PVT412S-TPBF

PVT412S-TPBF

IR (Infineon Technologies)

SSR RELAY SPST-NO 140MA 0-400V

451

PVT322PBF

PVT322PBF

IR (Infineon Technologies)

SSR RELAY SPST-NO 170MA 0-250V

20831

PVD1352NSPBF

PVD1352NSPBF

IR (Infineon Technologies)

SSR RELAY SPST-NO 550MA 0-100V

1800

PVT312PBF

PVT312PBF

IR (Infineon Technologies)

SSR RELAY SPST-NO 190MA 0-250V

958

PVT212SPBF

PVT212SPBF

IR (Infineon Technologies)

SSR RELAY SPST-NO 550MA 0-150V

4547

PVT412SPBF

PVT412SPBF

IR (Infineon Technologies)

SSR RELAY SPST-NO 140MA 0-400V

548

PVG613SPBF

PVG613SPBF

IR (Infineon Technologies)

TRANSISTOR OUTPUT SSR, 1-CHANNEL

1868

Solid State Relays

1. Overview

Solid State Relays (SSRs) are electronic switching devices that activate or deactivate electrical loads without mechanical contacts. Utilizing semiconductor components like thyristors, triacs, or MOSFETs, SSRs offer reliable, maintenance-free operation. Their importance in modern technology stems from advantages over electromechanical relays (EMRs), including faster switching speeds, longer lifespan, and resistance to vibration and electromagnetic interference (EMI). They are critical in precision control systems, industrial automation, and energy-efficient designs.

2. Major Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
DC Output SSRsUse MOSFETs for low-voltage DC switching, zero leakage current in off-statePLC signal control, battery systems
AC Output SSRsEmploy triacs/thyristors for AC load control, zero-crossing switchingHeating systems, motor drives
Multi-phase SSRsControl 3-phase power with synchronized switchingIndustrial furnaces, compressors
Normally Closed (NC) SSRsRemain conductive until triggered, fail-safe operationSafety systems, emergency shutdowns

3. Structure and Components

A typical SSR consists of three functional modules:

  • Input Circuit: Receives control signals (DC 3-32V) with opto-isolators or transformers
  • Output Circuit: Semiconductor switching elements (triacs/MOSFETs) with thermal pads
  • Isolation Barrier: Reinforced insulation ( 2500Vrms) between input/output
Modern designs integrate snubber circuits (RC networks) to suppress voltage spikes and heat sinks for thermal management.

4. Key Technical Specifications

ParameterDescription and Importance
Load Voltage RangeOperating AC/DC voltage limits (e.g., 24-660VAC) determining compatibility
On-state CurrentMaximum continuous current (e.g., 0.1-120A) affecting power handling
Switching SpeedResponse time (0.1-15ms) critical for dynamic control systems
Thermal ResistanceMeasured in C/W, impacts cooling requirements
Dielectric StrengthIsolation voltage ( 2500Vrms) ensuring safety compliance

5. Application Fields

  • Industrial Automation: CNC machines, conveyor systems
  • Process Control: Temperature regulation in ovens, chemical reactors
  • Medical Equipment: MRI scanners, diagnostic analyzers
  • Smart Grids: Renewable energy inverters, grid-tied storage systems
  • Home Appliances: Smart thermostats, washing machines

6. Leading Manufacturers and Products

ManufacturerProduct SeriesKey Specifications
OmronG3PH-D220BSingle-phase AC, 20A, DIN rail mount, 45mm width
Siemens3TF493-phase, 40A, integrated RC snubber, IP20 rating
PanasonicAY2Z-5DCDC output, 5A, 5mm pitch, surface-mount design

7. Selection Guidelines

Key considerations include:

  1. Load Type: Match AC/DC ratings and inrush current requirements
  2. Environmental Conditions: Operating temperature (-40 to 85 C typical) and humidity
  3. Mounting Method: DIN rail, PCB mount, or panel mount
  4. Agency Approvals: UL, CE, RoHS compliance for regulatory compliance
  5. Protection Features: Overvoltage/overcurrent ratings for reliability
Example: Selecting a 40A SSR with heat sink for 3-phase motor control operating at 55 C ambient.

8. Industry Trends

Key developments shaping SSR technology:

  • Miniaturization: Chip-scale packaging reducing footprint by 40%
  • Smart Integration: Embedded microcontrollers for IoT-enabled monitoring
  • Wide Bandgap Semiconductors: SiC/GaN devices enabling 50% higher switching frequencies
  • Functional Safety: ISO 13849-1 compliant designs for industrial safety systems
  • Green Manufacturing: Halogen-free materials and RoHS compliance
The global SSR market is projected to grow at 8.2% CAGR through 2030, driven by EV charging infrastructure and renewable energy systems.

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