Product

AVL Active Load Cabinet™

When active power makes the real difference.

The AVL Active Load Cabinet™ is the key product to perform a wide range of high-voltage functional tests for inverter hardware development.

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The key component of an electrified powertrain is the inverter as it represents the heart and the brain of any electrified vehicle. In the early development phase of the inverter hardware, stationary operating points are used to stress the inverter and to design and qualify the hardware accordingly. By detecting errors in the hardware at an early stage, potential error costs can be significantly reduced. In addition to the potential costs, time also plays an important role in the development phase. Therefore, testing the inverter with active power at an early development phase is essential.

The AVL Active Load Cabinet (ALC) is an active power test device which can be used to perform high-voltage functional tests of inverters (UUT). Thanks to its open communication interfaces, the ALC can be easily integrated into a lab or test setup.

The ALC enables robust inverter functional tests within short test times and according to the UUT’s voltage and power requirements. These functional tests enable a parallel development, independently from the UUT’s software, and provide the opportunity to detect failures at an early stage – before hardware and software integration.

rendering of dark gray "active load cabinet" in a white room
Inverter Hardware Testing

Testing pure hardware while no serial software is available.

Parallel Development

Saving time and money due to split hardware and software development tasks.

Early Failure Detection

Detecting malfunctions in an early stage of the inverter hardware development.

The AVL Active Load Cabinet provides the following operating modes: 

  • Four-quadrant mode
  • R-L mode
  • One-phase current source mode

The four-quadrant mode of the ALC enables the testing of the UUT within all four quadrants (speed/torque plane), meaning motor and generator operation. In R-L mode, the ALC acts as an adjustable ohmic inductive load. Due to active power, the testing of the UUT‘s power electronics is enabled under more realistic conditions.

Optionally, the ALC can be used as a one-phase current source to e.g. calibrate the UUT internal sensors or to test the connectors.

Technical Data
UUT DC Voltage
(in VDC)
300 - 1,000
Phase current
(nominal A rms)
280 or 560
Phase current
(maximal A rms)
400 or 800 for 34s
(up to 900 V)
Power AC in kW Depending on the operating
point and UUT
Fundamental
frequency Hz
up to 1,000
Interfaces Automation system: EtherCAT, Ethernet
XCPonEthernet; Safety system: Profinet
Rotor positions
sensor options
Digital encoder sensor emulator, active
magnetic sensor emulator, resolver
sensor emulator

 

Fast UUT commissioning

enabled by the easy test setup capability: only 4 parameters must be defined to start the testing process.

Easy and fast adjustment

of several parameters: R and L can be parametrized via mouse click during operation.

Minimum facility requirements

only 30kW AC connection for power and water connection for cooling is needed.

Wide range of applications

thanks to additional options like one-phase current source and four-quadrant mode operation.

AVL Active Load Cabinet™ – Solution Sheet

Perform a wide range of high-voltage functional
tests for R&D applications.

Download
AVL Inverter TS™ – Solution Sheet

How to enable the validation of the inverter and to prepare its integration into the electrified powertrain.

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AVL E-Mobility Testing Solutions – Brochure

Tested and Trusted.

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Inverter Testbed with AVL Engineers
Inverter Testing Solutions

The inverter is very complex, and its behavior and handling influence the driving experience significantly. It needs to be tested and developed without further influences of other components. Learn more about our test system (TS) for inverter. 

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