2-2071410-2 IHV200HDANA DC Relay Contactor (Replaces EV200ADANA)


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The 2-2071410-2 IHV200HDANA DC Relay Contactor is a type of electrical switch that is commonly used to control DC motors and other high-power DC loads. This contactor is designed to handle high current and voltage levels, making it ideal for use in industrial and automotive applications.

The IHV200HDANA contactor features a compact and robust design, with a durable metal housing that provides protection against damage from vibration, shock, and other environmental factors. It is also equipped with a number of advanced features that make it highly reliable and easy to use.

One of the key features of the IHV200HDANA contactor is its high breaking capacity, which allows it to safely and quickly disconnect the circuit in the event of a fault or overload. This feature is critical for ensuring the safety of equipment and personnel in high-power applications.

The IHV200HDANA contactor is also designed for easy installation and maintenance, with simple wiring connections and a user-friendly interface that allows for easy monitoring and control of the circuit. It is compatible with a wide range of control systems and devices, including timers, switches, and PLCs.

Overall, the 2-2071410-2 IHV200HDANA DC Relay Contactor is a high-performance and reliable switch that is well-suited for a wide range of industrial and automotive applications. Its advanced features and durable design make it an excellent choice for applications that require high current and voltage levels, as well as for applications that require easy installation and maintenance.

How to connect EV200ADANA ?

Here is a general guide on how to connect the 2-2071410-2 IHV200HDANA DC Relay Contactor:

  1. Before beginning the installation, make sure that the power to the circuit is turned off to prevent any accidental electrical shock.
  2. Identify the incoming power wires and connect them to the positive and negative terminals on the contactor. It is recommended to use appropriately sized wire that is rated for the voltage and current of the circuit.
  3. Identify the load wires and connect them to the normally open (NO) or normally closed (NC) terminals on the contactor, depending on your application needs. The load wires are the wires that carry the current to the equipment or appliance that you want to control.
  4. If the contactor is equipped with a ground terminal, connect the ground wire to the appropriate terminal. The ground wire provides a path for electrical current in the event of a fault or short circuit.
  5. Double-check all the connections to make sure that they are tight and secure. Loose connections can cause arcing and overheating, which can lead to equipment damage or even electrical fires.
  6. After ensuring that all connections are secure, turn on the power to the circuit and test the operation of the contactor. If everything is working correctly, the contactor should allow the current to flow to the load when it is energized, and interrupt the current when it is de-energized.

Note that the specific wiring diagram for your application may vary depending on the requirements of the equipment or system that you are connecting. If you are unsure about any aspect of the installation, it is always recommended to consult a qualified electrician or technician.


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