Relays & Contactors
Electromechanical, solid-state relays, contactors and sockets.
Also searched as: ssrsolid state relaycontactorrelay socketpower relay
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Definite Purpose Contactor 2P 30A 120VAC
Coil Voltage: 120V ACCurrent Rating: 30APoles: 2
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Definite Purpose Contactor 2P 40A 120VAC
Current: 40 APoles: 2Voltage: 120 VAC
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Definite Purpose Contactor 40A 4 Pole 24V
Current: 40 APoles: 4Voltage: 24 V
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Flange Mount, Enclosed Power Relay, Square, 25 A, 5 Pins
Contact Form: SPDTCurrent Rating: 25 AVoltage: 240V AC
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Industrial Mount Solid State Relay, 530Vac 75A, Dc In, Zc
Current Rating: 75AInput Type: DCMounting Style: Industrial MountOutput Voltage: 530V ACSwitching Type: Zero Cross
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Magnetic Contactor
Poles: 3 PVoltage: 100V-250V
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Magnetic Contactor
Coil Voltage: 240V ACContact Configuration: 1NC/1NOPoles: 3
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Power Relay Socket, 5 A, 4 Pins, PCB
Current Rating: 5 ANumber of Pins: 4Number of Poles: 4Power Consumption: 900 mW
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Power Relay, SPST, 70A, 12VDC
Coil Voltage: 12V DCContact Form: SPST-NOCurrent Rating: 70 A
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Solid State Relay, 1 Phase, Ring Cable, DIN Rail or Panel Mount
Electrical Connection: Ring CableElectrical Phase: 1Mounting Style: DIN Rail or Panel Mount
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Solid State Relay, 1 Phase, Screw, DIN Rail & Surface, SCR
Electrical Connection: ScrewElectrical Phase: 1Input Voltage: 90 to 280V ACMaximum Output Current with Heat Sink: 25 AMounting Style: DIN Rail & Surface
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Solid State Relay, 1 Phase, Screw, Surface, SCR
Electrical Connection: ScrewElectrical Phase: 1Input Voltage: 90 to 280V ACMaximum Output Current with Heat Sink: 10 AMounting Style: Surface
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Solid State Relay, 3 Phase, Surface, SCR
Electrical Phase: 3Input Voltage: 90 to 140V ACMaximum Output Current with Heat Sink: 50 AMounting Style: SurfaceOutput Voltage Range: 48 to 530V AC
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Solid State Relay, Screw Clamp, Surface, Phototriac
Electrical Connection: Screw ClampInput Current: 40 AInput Voltage: 5 to 24V DCMounting Style: Surface
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Solid State Relay, Screw, Surface, Triac
Electrical Connection: ScrewInput Voltage: 4 to 32V DCMaximum Output Current Without Heat Sink: 40.0 AMounting Style: SurfaceOutput Voltage Range: 48 to 480V AC
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Surface, Open Power Relay
Contact Form: DPDTVoltage: 24V DC
About relays & contactors
Relays and contactors are electrically operated switches used to control power flow in a circuit. Electromechanical relays utilize an electromagnet to actuate a physical switch, offering galvanic isolation between control and load circuits. Key specifications include coil voltage (e.g., 5VDC, 24VDC, 120VAC), contact configuration (e.g., SPDT, DPDT, 3PST-NO), and contact current rating (e.g., 1A, 10A, 30A). Solid-state relays (SSRs) employ semiconductor devices like TRIACs or MOSFETs to switch loads, providing silent operation, faster switching speeds, and longer lifespan compared to electromechanical types, particularly in high-cycle applications. SSRs are characterized by input control voltage/current, output voltage/current ratings, and typically come in AC or DC switching variants. Contactors are heavy-duty relays designed for switching high-power loads, often found in motor control applications. They are rated by horsepower or current (e.g., 20A, 100A, NEMA size 0-5) and typically feature multiple poles. Relay sockets provide a convenient, often DIN-rail mountable, interface for relays, simplifying installation and replacement. Common materials for contacts include silver alloy (e.g., AgCdO, AgSnO2) for durability and conductivity, often with gold plating for low-current signal applications. Enclosures are typically plastic (e.g., polycarbonate, nylon) for insulation and protection, with specific IP ratings (e.g., IP20, IP67) indicating environmental resistance.
How to choose
Selecting the appropriate relay or contactor begins with defining the load: AC or DC, voltage, and current. This determines the required output switching capability and contact rating. Next, consider the control signal: what voltage and current will drive the coil or input? This dictates the relay's input specifications. Evaluate the switching frequency and expected operational lifespan; high-cycle applications often favor SSRs over electromechanical relays for longevity. Finally, assess the operating environment for temperature, vibration, and ingress protection (IP rating) to select a suitably robust device. For multi-phase loads or high-horsepower motors, contactors with appropriate NEMA or IEC ratings are typically required.