PRODUCT

Stainless Steel Dynamic Braking Resistor, Rated Power from 1KW-112KW, Grid Bank and SUS316 enclosure
Place of Origin | CHINA |
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Brand Name | JDC |
Model Number | DBR |
Minimum Order Quantity | 1 Set |
Price | US$800-US$3,200.00 |
Packaging Details | Bulk in Wooden case |
Delivery Time | 3-4 Weeks |
Payment Terms | T/T |
Supply Ability | 1,000 Sets per months |
Product Details
Enclosure | 316 Stainless Steel | ResistGor Type | Stainless Steel Grid |
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IP Grade | IP23 | Max Temperature Rise | 375℃ |
Temperature Protection | Customizable |
Product Description
Dynamic braking resistors are used with AC VFD'S to produce a braking torque in the motor during overhauling conditions. Most DC motors will behave as generators as soon as they are removed from the power supply. This is due to their permanent magnets. The generated energy can be dissipated by connecting a power resistor as load. AC induction motors don’t have permanent magnets. In these motors, the rotating magnetic field in the stator induces a magnetic field. Braking resistors are used for applications where the motor speed exceeds the speed that is set by the variable frequency drive (VFD) or when fast deceleration is required. They can provide controlled braking at an increased torque. If the rotational velocity of the motor exceeds the synchronous velocity from the VFD, it will act as a generator. The surplus energy will be fed into the VFD and increase the voltage on the DC bus. The larger the speed difference between the motor and the drive, the more energy will be fed back. It is important to correctly size a braking resistor. The lower the ohmic value of a resistor, the faster it can stop the motor and the more heat it generates. To compensate for this, the resistor must be bigger or use a heat sink. The designer must design the system and select the resistor with a sufficient power rating to stay under the resistor temperature limits during braking. The resistance range is usually limited by a minimum value (to prevent over current) and a maximum value (for a low power dissipation capability).
Features :
Excellent heat dissipation.
High power load capability and durability.
Low temperature coefficient that is directly proportional.
Stainless Steel design for excellent anti-corrosion performance.
Drawing:
Customization is welcome, please feel free to contact us for discussing more details.
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