The Allen-Bradley 1336-MOD-KB005 is a robust dynamic braking resistor kit designed for the 1336 Series drives, compatible with models including 1336, 1336VT, 1336 PLUS, 1336 PLUS II, and 1336 FORCE. Engineered to enhance the braking torque capability up to 100%, this unit operates with an input voltage of 680-750 VDC and a current rating of 2.5 Amperes, efficiently dissipating up to 375 Watts of heat. Housed in a NEMA Type 1 (IP20) enclosure, it features a 20% duty cycle with a capability to perform 100% torque for 20 seconds, and it should ideally be used in non-corrosive environments with an altitude of operation below 3300 feet. Advanced safeguards include built-in fusing and thermostat control to prevent overheating, ensuring optimal performance and protection of both the device and the attached drive.
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Technical specifications for 1336-MOD-KB005
Manufacturer | Rockwell Automation |
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Brand | Allen-Bradley |
Part Number/Catalog No. | 1336-MOD-KB005 |
Manufacturer: | Rockwell Automation / Allen-Bradley |
Description | Heavy Duty Dynamic Braking Option |
Product Type: | Accessory module |
Enclosure Type | NEMA Type 1 |
Product Family: | 1336 Drives |
Voltage Rating | 380/415/460V AC |
Part Number: | 1336-MOD-KB005 |
Drive Rating | B003-B005 |
Product Description: | Heavy-duty dynamic braking resistor |
UPC | 662453298993 |
Input voltage: | 680-750 VDC |
Product Lifecycle Status* | Discontinued/Obsolete |
Rated current: | 2.5 Amperes |
Heat Dissipation: | 375 Watts |
Compatible drives: | 380-460 VAC drives |
LED Status indicator: | DC Power / Brake ON |
Braking Torque: | 100% Torque for 20 seconds |
Duty cycle: | 20%, typical |
Operating altitude: | 3300 feet (1000 meters) |
Enclosure rating: | NEMA Type 1 (IP20) |
Operating temperature: | -10 to 50 Degree Celsius or 14 - 122 Degree Fahrenheit |
* The Allen Bradley 1336-MOD-KB005 has been discontinued by the manufacturer, however we specialize in obsolete parts and can likely still supply surplus and/or refurbished replacement 1336-MOD-KB005 units instead of migration.