DC Reversing Solid State Contactor 10A-500A 100V-1200V

Home Products DC to DC Solid State RelayDC motor reversing solid state relayDC Reversing Solid State Contactor 10A-500A 100V-1200V

GTJ038_100P80_dc motor reversing solid state relay, 10-500A,100-1200VDC
GTJ038_100P80_dc motor reversing solid state relay, 10-500A,100-1200VDC
dc motor reversing ssr, DC motor forward and reverse switching solid state relay
GTJ038-600P200-DC-Reversing-Solid-State-Contactor
GTJ038-600P40-DC-Reversing-Solid-State-Contactor
GTJ038-600P40-Packing-DC-Reversing-Solid-State-Contactor.jpg
Product Details

DC Reversing Solid State Contactor 10A-500A 100V-1200V

Transformer isolation between input and output circuits.

Light-emitting diode indicates forward and reverse status.

Changing the control power terminal allows easy switching of load voltage polarity.

Internal control functions such as interlock and time delay are provided for safe and reliable switching.

Because the switching switch is a SCR, it is fast, noiseless and spark-free when switching.

The product is mainly used for frequent switching of singlephase DC motor forward and reverse rotation, switching of semiconductor refrigeration and heating, and other DC load power polarity conversion.

Part numbers
Model Numbers Max Voltage Max Current Housing
GTJ038-100P10 100V 10A J-3
GTJ038-100P20 100V 20A J-3
GTJ038-100P30 100V 30A J-3
GTJ038-100P40 100V 40A J-3
GTJ038-100P50 100V 50A J-3
GTJ038-100P60 100V 60A J-3
GTJ038-100P80 100V 80A J-3
GTJ038-100P100 100V 100A J-3
GTJ038-100P120 100V 120A J-3
GTJ038-100P150 100V 150A J-3
GTJ038-100P180 100V 180A J-3
GTJ038-100P200 100V 200A J-3
GTJ038-100P300 100V 300A J-3
GTJ038-100P400 100V 400A J-5
 
GTJ038-200P10 200V 10A J-3
GTJ038-200P20 200V 20A J-3
GTJ038-200P30 200V 30A J-3
GTJ038-200P40 200V 40A J-3
GTJ038-200P50 200V 50A J-3
GTJ038-200P60 200V 60A J-3
GTJ038-200P80 200V 80A J-3
GTJ038-200P100 200V 100A J-3
GTJ038-200P120 200V 120A J-3
GTJ038-200P150 200V 150A J-3
 
GTJ038-600P10 600V 10A J-3
GTJ038-600P20 600V 20A J-3
GTJ038-600P30 600V 30A J-3
GTJ038-600P40 600V 40A J-3
GTJ038-600P50 600V 50A J-3
GTJ038-600P60 600V 60A J-3
GTJ038-600P80 600V 80A J-3
GTJ038-600P100 600V 100A J-3
GTJ038-600P120 600V 120A J-3
GTJ038-600P150 600V 150A J-3
GTJ038-600P180 600V 180A J-3
GTJ038-600P200 600V 200A J-3
GTJ038-600P300 600V 300A J-5
GTJ038-600P400 600V 400A J-5
 
GTJ038-1200P10 1200V 10A J-3
GTJ038-1200P20 1200V 20A J-3
GTJ038-1200P30 1200V 30A J-3
GTJ038-1200P40 1200V 40A J-3
GTJ038-1200P50 1200V 50A J-3
GTJ038-1200P60 1200V 60A J-3
GTJ038-1200P80 1200V 80A J-3
GTJ038-1200P100 1200V 100A J-5
GTJ038-1200P120 1200V 120A J-5
GTJ038-1200P150 1200V 150A J-5
GTJ038-1200P180 1200V 180A J-5
GTJ038-1200P200 1200V 200A J-5
Specification

Model

GTJ038

Maximum output voltage

60~900VDC

Max. output current

10~500A

On-state voltage

≤2~8 V

Control voltage

12 to 24 VDC.

Control current

60-100 MA

Switching time

≤ 0.3S

Off-state voltage

100-1200V

Off-state current

≤ 10 MA

Isolation voltage

≥1800 V

Adiabatic voltage

≥2000 V

Insulation resistance

≥100 MΩ

Operating Temperature

-25~75℃

Heat dissipation conditions

≥20A with heat sink, ≥30A plus fan strong cooling

Safety factor of load current

≤2KW motor according to the rated current 2.5-4 times, > 2KW motor according to the rated current 4-6 times

Dimension (code)

J-3:105×74×41mm; J-5: 120×84×56mm

 

Notes on product selection:

According to the size of the load power, different current margin should be selected. The larger the power, the larger the current margin. Generally choose the current capacity of solid state relay is 3-6 times of the load current. In addition, add overcurrent protection to the load circuit to prevent short circuits. The method is: the load circuit is connected in series with a fast circuit breaker or fast fuse.

In the output circuit, overvoltage protection measures should be added. Method: output parallel connected varistor (MOV), or add RC resistive capacitive absorption circuit. MOV: 440V power supply select 470V ~ 680V, 660V gear select 1100 ~ 1200V. Or with the factory's AC overvoltage protection absorber. Overcurrent protection method: Connect a quick disconnect switch or quick fuse in series with the load circuit.

If the load power supply is taken from the AC power supply through rectification into DC pulsating power supply, the filter capacitor must be added at the power end for filtering. The size of the capacitance is determined by the size of the load current.

According to the size of the selected solid state relay current, working mode, environmental conditions, the choice of heat sink should be different, the area of the heat sink should be large rather than small.

When installing, it is required that the contact surface between the heat sink and the product shall be flat and smooth, and a layer of thermally conductive silicone grease shall be applied to its surface, and finally the screws set with flat washers and spring washers shall be tightened and fixed symmetrically.

The control terminal is equipped with interlock and time delay functions, so there is no need to attach relevant protective measures when using.

FAQ
Q:The Critical Role of Safety Margins in DC SSR Selection
Selecting a DC Solid State Relay (SSR) with sufficient margin is a core principle for ensuring stable and reliable operation, as the semiconductor nature of these devices makes them extremely sensitive to overcurrent and overvoltage. This margin is essential to mitigate three critical risks: high inrush currents during startup (such as motor starting currents reaching 5-7 times the rated value), current-carrying derating caused by high-temperature environments, and high-voltage spikes generated when switching off inductive loads. Consequently, adhering to recommended safety factors- typically 2-4 times the rated current for resistive loads and 4-6 times for inductive loads- is not a waste of resources, but rather a vital "insurance policy" that protects the system against instantaneous shocks and ensures long-term reliability in engineering applications.
Q:What is a DC Motor Reversing Solid State Relay?

The DC Motor Reversing Solid State Relay is a contactless electronic switching device specifically designed to control the forward and reverse operation of DC motors. It utilizes two internally reverse-parallel MOSFET or IGBT sets to switch the motor phase sequence, thereby controlling the motor's forward and reverse rotation. Compared to traditional mechanical contactor-based solutions, it eliminates arcing, noise, and mechanical wear, offering higher reliability, faster response times, and longer service life.

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