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CCHN Industry

CCHN is a trusted U.S. registered company in industrial automation & controls, CCHN's goal is helping saving your money by bypassing all kinds of local dealers/agents in buying industrial automation products from Chinese manufacturers directly. You will be enjoyed to get free tech support on how to choose, how to wire, how to commissioning with CCHN professional engineers. Shopping for your automation systems on CCHN one-stop online store now. The price on the website only for sample reference. for Mass order,please send the enquiry to us.

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Foam cutting is a device for processing materials in the chemical industry such as foam and sponges. It mainly uses the high

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CCHN Industry
 
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CCHN Industry

CCHN is a trusted U.S. registered company in industrial automation & controls, CCHN's goal is helping saving your money by bypassing all kinds of local dealers/agents in buying industrial automation products from Chinese manufacturers directly. You will be enjoyed to get free tech support on how to choose, how to wire, how to commissioning with CCHN professional engineers. Shopping for your automation systems on CCHN one-stop online store now. The price on the website only for sample reference. for Mass order,please send the enquiry to us.

Blog

Foam cutting is a device for processing materials in the chemical industry such as foam and sponges. It mainly uses the high

...
150A High Voltage DC Contactor, 12V/24V coil
 
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150A High Voltage DC Contactor, 12V/24V coil


$154.92
High voltage contactor, 150A rated load current of contact circuit, operating voltage up to 900V, normally open type (SPST-NO
SKU: CHN-DCCON-HV150
Free Shipping Worldwide
Delivery date: 6-12 days

Features

  • DC 12-900V rated load voltage of contact circuit.
  • Normally open type (SPST-NO) of contact form, 12 volt, 24 volt coil for selecting.
  • Main contact voltage drop at 150A, not above 100mV.
  • The connection of contact and coil need to be nonpolarity.
  • Efficient coil, retentive power is only 2-2.3W, counter electromotive force is 0V.
  • The joint way of the coil is very convenient.
  • The coil has no counter force of electromagnetism.
  • Compare to the similar products, this product is smallest and lightest.

Specifications

BasicsModelCHN-ADH150
Dimension80 x 65 x 67 mm
Weight440 g
Main Contact ParametersContact Form1 NO
Leading-OutM6 Internal thread
Rated Load Current150 A
Rated Load Voltage12 – 900V DC
Maximum Switching Current1500A 320V DC (≥1 times)
Maximum Switching Power480 kW
Coil ParametersStandard Type Voltage12/24V DC
Work Voltage8~36V
Max Voltage36 V
Coil Resistance3.1Ω
Average Holding Current0.14 A
Steady State Power1.7~2 W
Actuation Time≤30 ms
Release Time≤10 ms
Bounce Time≤5 ms
Mechanical SpecificationStability196 m/s2 (20G)
Strength490 m/s2 (50G)
Vibration80 ~2000Hz 98m/s2 (20G)
IP GradeIP67
EnvironmentOperating Temperature-40℃~85℃
Operating Humidity5~95% RH

Installation Diagram (Unit: mm)
high voltage 150a dc contactor dimension 1
high voltage 150a dc contactor dimension 2High Voltage DC Contactor Coil Schematic
high voltage dc contactor coil schematicTips: Magnetic blowing device working principle of a DC concactor

When the contactor’s movable and static contacts disconnect, arc will generate between the contacts, the arc still maintains the load current within a short period of time. At this moment, two magnetic fields will generate before the arc extinguishes. One magnetic field is formed by the current around the arc, of which the direction can be determined by the Ampere's rule. Moreover, there’s still another magnetic field around the arc, which is produced between two magnetic splints by the current when it flows the blowout coils. This magnetic field passes the iron core and goes through one magnetic splint, it enters another magnetic splint through the gap and forms a closed magnetic circuit.
Obviously, above the arc, the magnetic field between two magnetic splints has an opposite direction with that of the magnetic field around the arc, the magnetic field intensity is also weaker. Below the arc, the two the magnetic fields have same direction and the field intensity strengthens. Therefore, the arc will be pulled from the strong side of the magnetic field to the weak side, it moves upwards. In this process, the arc will be quickly elongated and form a relative motion with the air, thus reducing the arc temperature. Meanwhile, when the arc is blown to the upper part of arc chute, the heat of the arc will be transferred to the arc chute, thus further reducing the arc temperature, promoting the rapid extinction of the arc.