| Allicdata Part #: | NCMH2-RFC-ND |
| Manufacturer Part#: |
NCMH2-RFC |
| Price: | $ 17.73 |
| Product Category: | Uncategorized |
| Manufacturer: | Panduit Corp |
| Short Description: | NCMH2 REPLACEMENT FRONT COVER |
| More Detail: | N/A |
| DataSheet: | NCMH2-RFC Datasheet/PDF |
| Quantity: | 1000 |
| 1 +: | $ 16.11540 |
Specifications
| Series: | * |
| Part Status: | Active |
Description
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NCMH2-RFC is a special type of fire-proof collocation for controlling electric motors in extreme temperature conditions. It is developed based on the advanced thermoplastic materials that can withstand high temperatures up to 2500 F. This type of collocation is used to ensure that electric motors are protected from overheating in high temperature areas. The main components of this type of collocation include the NCMH2-RFC fire-resistant coating, corrosion-resistant coating, conductive layer, insulating rubber coating, and thermally conductive dielectric gel. The working principle of the NCMH2-RFC application involves increasing the thermal conductivity between the NCMH2-RFC insulation material and the electric motor. This increases the electric motor\'s capacity to withstand higher temperatures and prolongs its operational life.
The thermal conductivity between the NCMH2-RFC collocation and the electric motor is achieved through the conducting layer. This layer consists of an insulating gel layer and an electrically conductive layer. The insulating gel layer is composed of a high-temperature resistant material that is electrically resistive. The conductive layer is composed of a conductive material which conducts the heat away from the motor body. The combination of the two layers generates a thermal conductivity which increases the motor\'s efficiency. This allows the motor to withstand more heat and reduce its risk of failure.
The insulating rubber coating is also important in the application of the NCMH2-RFC fire-proof collocation. This layer increases the electrical insulation of the motor. It is designed to block electrical currents from penetrating the motor and causing damage or shortening its life. The rubber coating also helps to prevent short circuits from occurring anywhere along the wiring of the motor. The thermally conductive dielectric gel on the other hand is responsible for controlling the dispersion of heat away from the motor. The thermally conductive gel reduces the transfer of heat from the hot motor to the cooler motor body.
The NCMH2-RFC application field and working principle provide a great level of protection for electric motors from overheating in extreme temperature conditions. This is an excellent way to ensure that the motors are able to withstand high temperatures for longer periods of time. It is also important that the insulating rubber coating and thermally conductive dielectric gel are present in order to allow the motor to maintain its performance and not be damaged by overheating. Careful maintenance should be undertaken in order to ensure that the motor has a long and efficient life.
The specific data is subject to PDF, and the above content is for reference
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NCMH2-RFC Datasheet/PDF