Free UPS Ground on All Orders!
+1 (919) 205-4392
Siemens Other 6SE7031-8EF84-1JC1

Product image is representative; revision or series may vary. Contact us to request a specific version.

6SE7031-8EF84-1JC1

|

The Siemens 6SE7031-8EF84-1JC1 is an inverter triggering module designed specifically for 3-phase AC drive applications. It operates within a voltage range of 380 to 460 VAC and provides a line frequency capability of 50/60 Hz.

In Stock
Ships from Raleigh, NC
2 Year DO Supply Warranty
Not an Authorized Distributor: DO Supply is not an authorized distributor for listed manufacturers or tradenames and therefore the manufacturer's warranty does not apply. All of our products come with DO Supply's 2-year warranty.
Learn more

Technical specifications for 6SE7031-8EF84-1JC1

ManufacturerSiemens
Product TypeInverter Triggering Module
Product LineOther
Part Number6SE7031-8EF84-1JC1
UPC662643064650
Weight0.69 lbs (0.31 kg)
SeriesAC Drives
ApplicationAC Drives
Number of Phases3-phase
Voltage Range380 to 460 VAC
Line Frequency50/60 Hz
Output Voltage510 to 620 VDC
Output Current (L-axis)186A
RoHS CompliantNo
EnvironmentNo corrosive gases
Relative Humidity95% or less (non-condensing)

The 6SE7031-8EF84-1JC1 model from Siemens functions as an inverter triggering module, well-suited for applications involving AC drives. This component is rated for three-phase systems and accommodates a voltage range of 380 to 460 VAC. Users can operate it at line frequencies of either 50 Hz or 60 Hz depending on system requirements.

It features a DC output voltage capable of reaching between 510 and 620 V, ensuring ample power delivery for its applications. The module supports an output current on the L-axis of 186A, making it effective for high-demand scenarios.

Compact and lightweight, the 6SE7031-8EF84-1JC1 weighs approximately 0.456 kg, translating to about 1 lb. It is essential to note that this module is not RoHS compliant and is designed for use in environments that do not contain corrosive gases. Regarding humidity, it is rated to perform optimally in conditions of 95% relative humidity or less without condensation.