Product image is representative; revision or series may vary. Contact us to request a specific version.
The Kuka E93EE103I4B531 is designed as a power supply module that efficiently converts 3-phase AC input into dual-phase DC output. With a minimum input voltage requirement of 400 V and a maximum limit of 415 V, this unit functions effectively for various applications, offering reliable performance.
We sell industrial automation parts backed by our free 2-Year DO Supply Warranty.
Same-day domestic and fast international shipping with UPS, FedEx, DHL, and more.
AMEX, Visa, MasterCard, Discover, wire transfer, net terms, and more.
Repairs and exchanges are available for all automation products.
Drop shipping, blind shipping, and account shipping with no extra fees.
| Manufacturer | Kuka |
|---|---|
| Product Line | Other |
| Part Number | E93EE103I4B531 |
| Weight | 6.81 lbs (3.09 kg) |
| Product | Power Supply Module |
| Input Number of Phases | 3 |
| Input Voltage Type | AC |
| Min. Input Voltage | 400 V |
| Max. Input Voltage | 415 V |
| Input Current Rating | 15 A |
| Input Apparent Power | 10.4/10.8 kVA |
| Min. Operating Frequency | 49 Hz |
| Max. Operating Frequency | 61 Hz |
| Output Number of Phases | 2 |
| Output Voltage Type | DC |
| Output Voltage | 666/685 V |
| Output Current | 20 A |
The part number E93EE103I4B531 from Kuka serves as a robust power supply module specifically designed to manage the conversion of alternating current to direct current. The device is configured for a 3-phase AC input, which can range in voltage from a minimum of 400 V to a maximum of 415 V. It is rated for an input current of 15 A and can handle apparent power values between 10.4 kVA and 10.8 kVA.
This power module operates within an input frequency range of 49 Hz to 61 Hz. The dual-phase output voltage is designed to deliver between 666 V and 685 V of DC. It can support an output current of up to 20 A. The specifications of the E93EE103I4B531 module make it versatile for a range of applications, ensuring that it meets the necessary electrical requirements while maintaining efficiency in power management.