Allen-Bradley 1606-XLS960E-3 (United States)

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  • Allen-Brad
    US$ 1,616.67
  • Allen-Brad
    US$ 1,633.33

Allen-Bradley

Allen-Bradley 1606-XLS960E-3

Allen-Bradley 1606-XLS960E-3 Three-phase Power Supply delivers a high 960 Watts continuous power from 380–480V AC input to 24–28V DC output. This DIN rail mountable module is ideal for automation; obtain the complete technical specifications and wiring and installation instructions.
Allen-Bradley: Product Insights  |  Allen-Bradley: Technical Guides

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Price US$1,616.67
Shipping Fee Paid at Checkout
Brand Allen-Bradley
Model 1606-XLS960E-3
Availability In stock

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  • Allen-Bradley 1606-XLS960E-3
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OVERVIEW

Official designation: Allen-Bradley 1606-XLS960E-3 (1606-XLS, Switched Mode Power Supply)

Role/Application: A high-power, three-phase 960 Watt supply delivering 40 Amperes at 24 Volts DC, featuring 50 percent BonusPower for robust industrial control and automation applications.

KEY SPECS SUMMARY

Power: 960 Watts, 40 Amperes

Interfaces / Ports: Spring clamp connection

Indicators: DC OK relay signal

Operating Temp: Minus 25 to 70 degrees C

Platform / Compatibility: DIN rail mount, IP20

Limit: BonusPower up to 1440 Watts

Lifecycle: Active

FREQUENTLY ASKED QUESTIONS

Technical Specifications:

Q: What is the typical full load efficiency and power loss for this 960 Watt unit at 400 Volts AC input?

A: The efficiency is typically 95.3 percent with power losses of 47.3 Watts at 400 Volts AC.

Wiring & Installation:

Q: What are the primary input connection requirements for the three-phase 1606-XLS960E-3?

A: Input requires three-phase 380 to 480 Volts AC and includes three internal input fuses.

Troubleshooting & Compatibility:

Q: How much derating is required for the output power when operating continuously above 60 degrees C ambient?

A: A derating of 24 Watts per degree Celsius is required for operation between 60 degrees C and 70 degrees C.

Replacement & Upgrades:

Q: Can multiple 1606-XLS960E-3 units be configured for parallel operation to support higher current demands?

A: Yes, this model includes a current sharing feature to support parallel operation for increased capacity or redundancy.

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