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RM-10D 10kW Rack Mounted AC Load Bank 1
RM-10D 10kW Rack Mounted AC Load Bank 2
RM-10D 10kW Rack Mounted AC Load Bank 3
RM-10D 10kW Rack Mounted AC Load Bank 4
RM-10D 10kW Rack Mounted AC Load Bank 1
RM-10D 10kW Rack Mounted AC Load Bank 2
RM-10D 10kW Rack Mounted AC Load Bank 3
RM-10D 10kW Rack Mounted AC Load Bank 4

RM-10D 10kW Rack Mounted AC Load Bank

The RM-10D Rack Mounted AC Load Bank from RATA Technology is a high-performance, space-saving solution designed for reliable power testing in data centers, UPS systems, generator sets, and industrial applications.

5.0
Warranty time:
3 years
Delivery time:
6 weeks
ISO Certification:
ISO9001/ISO14001
Brand:
RATA
Factory Price:
Negotiate
Supply Ability:
200,000 Piece/Pieces per Month
Port:
Shanghai and Guangzhou are both available
Payment Terms:
L/C,Cash,Western Union,T/T, Paypal
Min.Order Quantity:
1 pcs
ODM & OEM:
Available
Certification:
CE 60204 Standard
design customization

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    Product Introduction

    The RM-10D Rack Mounted AC Load Bank from RATA Technology is a high-performance, space-saving solution designed for reliable power testing in data centers, UPS systems, generator sets, and industrial applications. With a 10kW continuous capacity at 400Vac / 60Hz, this 8U rack-mounted unit delivers precise load simulation in a compact 483mm width × 660mm depth footprint.


    Engineered for professionals who demand accuracy and durability, the RM-10D combines finned Ni-chrome resistive elements, dual-channel (A/B) control, and multi-stage load stepping to replicate real-world operating conditions before system commissioning.

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    Enclosure drawings (mm) &Details

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    1 (103)
    2 (79)
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    3 (53)
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    4 (38)
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    5 (19)
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    This info given is our standard load bank features. we are constantly looking to imporove

    our design. We reserve the right to change with prior notice. The finished design maight slightly vary from this given TDS.

    FAQ

    1
    How can the load be precisely controlled?
    The RM-10D is equipped with multiple independent load step switches, rated at 0.5kW, 0.5kW, 1kW, 2kW, 3kW, and 3kW respectively. By combining these switches, users can flexibly configure the test load from 0.5kW to 10kW in 0.5kW increments, enabling precise simulation and stress testing of power supplies or generator outputs.
    2
    What are the key protection mechanisms of this equipment?
    To ensure the safety of the testing process, the equipment integrates multiple protection functions. First, it has an over-temperature protection system that triggers an alarm when the internal temperature reaches 80°C and automatically cuts off the load when it reaches 90°C. Second, the channel A/B interlock function prevents two input power supplies from simultaneously powering the load. Finally, the equipment is also equipped with a Schneider 3P air circuit breaker to provide overcurrent and short-circuit protection for the entire system.
    3
    What are the unique advantages of dual power source functionality in data center testing?
    The dual power source design is the core advantage of this load cell in data center scenarios. It perfectly meets the stringent requirements of data centers for power redundancy (such as A/B power supply). Testers can use this function to simulate the following critical scenarios:
    • Automatic Transfer Switch (ATS) Function Verification: Connect the two inputs of the load cell (Channel A, Channel B) to the two outputs of the ATS respectively. By simulating a primary power supply (such as Channel A) failure, it can be verified whether the ATS can automatically and quickly switch to the backup power supply (Channel B) as expected, thereby ensuring the power supply continuity of critical IT equipment.
    • Rack Power Distribution Unit (PDU) Redundancy Testing: At the server rack level, it can be used to test the load distribution and failover capabilities of dual PDUs. By applying precise loads to a single PDU, its performance and stability can be evaluated.
    4
    How is this load bank used to test the heat dissipation capacity of a data center?
    Yes, the RM-10D is an ideal tool for testing rack-level and even entire-row cooling performance. Due to its standard 8U rack size, it can be easily installed in server racks to accurately simulate the heat generated by multiple servers by continuously running loads up to 10kW.
    5
    What is its automatic switching logic?
    In "Automatic Mode," the load bank's channel selection logic is as follows:
    1. When both power supply channels A and B are normal, the device defaults to selecting channel A as the main power supply.
    2. When power supply channel A fails or loses power, the device automatically switches to power supply channel B.
    3. When power supply channel B subsequently fails, and power supply channel A recovers, the device automatically switches back to power supply channel A.
    This logic ensures that the load can always receive power when available, making it ideal for verifying the reliability of uninterruptible power supply systems.
    6
    Is the RM-10D suitable for factory or periodic maintenance testing of small generators?
    Absolutely. Its 10kW capacity and fine load stepping make it ideal for performance verification of small diesel or gasoline generators.
    7
    How portable and capable is the load bank for field deployment?
    The RM-10D is designed with ease of use in mind. It has a maximum weight of 30 kg and is equipped with a foldable handle for easy handling by one or two people. Its standard rack-mount design allows it to be installed not only in a computer room but also integrated into a mobile test vehicle or portable cabinet for rapid deployment to various environments such as generator rooms and outdoor test sites.
    8
    Do the included cables and connectors meet field requirements?
    Yes, the equipment comes standard with a 5-meter long 5-core copper cable, with IEC 60309 standard 16A male and female quick connectors at both ends. These industrial-grade connectors are reliable and safe, and the 5-meter length provides sufficient flexibility for field connections.
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