
ACLT is a series of models developed by HEIDEN power GmbH for loading rotary current systems. ACLT stands for three-phase loads, which combine three alternating current load channels in one enclosure. The three load channels can be used to load different devices in AC or DC operation or to test a rotary current system.
| Characteristics | Values |
|---|---|
| Full Form | ACross the Line |
| Used in | Water and Wastewater Industry, IEEE Articles, Architecture and Construction Sector |
| Description | Three-phase load AC-Load |
| Operating Modes | Constant Current, Constant Resistance, Constant Power, Constant Voltage |
| Connection | Combine 3 channels or phases in one enclosure |
| Interface | Ethernet, USB, RS-232, CAN, I/O |
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What You'll Learn

ACLT is a three-phase load
ACLT stands for three-phase loads, which combine three alternating current load channels in one enclosure. The ACL series supports DC voltage and AC voltage up to 1,000 Hz loads. The three-phase load systems, or ACLT, combine three channels or phases in one enclosure.
The ACLT series models were developed for loading rotary current systems. The three load channels can be used to load three different DUTs in AC or DC operation or to test a rotary current system. The maximum load current can be increased by connecting several channels of a rotary current device ACLT in parallel.
The ACL series loads have the following operating modes: constant current, constant resistance, constant power, and constant voltage (CC, CR, CP, and CV mode). In ACL mode, the load current mode has a set waveform independent of the input voltage. In resistance mode, the height and waveform of the current depend on the input voltage. In power and voltage mode, the power or voltage is controlled by adjusting the input current.
The ACLT combines three channels or phases in one enclosure. Ethernet, USB, RS-232, CAN, I/O interface, and a system bus for master-slave connection are built in serially, while the GPIB interface is available as an option. The programming is done in SCPI with an extensive command syntax.
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ACLT combines three alternating current load channels
ACLT stands for three-phase AC-Load, which combines three alternating current load channels in one enclosure. This is in contrast to the single-phase models (ACLS). The three load channels can be used to load three different DUTs in AC or DC operation or to test a rotary current system. ACLT models were developed for loading rotary current systems.
The ACL series loads have the operating modes constant current, constant resistance, constant power, and constant voltage (CC, CR, CP, CV mode). In ACL mode, the load current mode has a set waveform independent of the input voltage. In resistance mode, the height and waveform of the current depend on the input voltage. In power and voltage mode, the power or voltage is controlled by adjusting the input current.
DC voltage and AC voltage up to 1,000 Hz load the ACL series. The ACLT series models have built-in Ethernet, USB, RS-232, CAN, I/O interface, and a system bus for master-slave connection. The GPIB interface is also available as an option. The programming is done in SCPI with an extensive command syntax.
By combining three alternating current load channels, the ACLT series offers a versatile and powerful solution for loading rotary current systems. The multiple channels allow for the testing of different DUTs and the flexibility of AC or DC operations. With its high load capacity and range of interface options, the ACLT series provides a comprehensive solution for a variety of applications.
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ACLT is used in rotary current systems
ACLT stands for three-phase loads, which are used in rotary current systems. ACLT combines three alternating current load channels in one enclosure. The three load channels can be used to load three different DUTs in AC or DC operation or to test a rotary current system.
The ACL series, of which ACLT is a part, includes single-phase models (ACLS) and three-phase loads (ACLT). The ACL series loads have the operating modes constant current, constant resistance, constant power, and constant voltage (CC, CR, CP, CV mode).
In ACL mode, the load current mode has a set waveform independent of the input voltage. In resistance mode, the height and waveform of the current depend on the input voltage. In power and voltage mode, the power or voltage is controlled by adjusting the input current.
To increase the maximum load current, several channels of a rotary current device ACLT can be connected in parallel. Additionally, several single-phase devices ACLS can also be connected in parallel.
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ACLT can be connected in parallel to increase maximum load current
ACLT stands for three-phase loads, which combine three alternating current load channels in a single enclosure. The ACL series supports DC voltage and AC voltage up to 1,000 Hz loads. The ACL series has operating modes of constant current, constant resistance, constant power, and constant voltage.
The ACLT series, on the other hand, is designed for loading rotary current systems. The three load channels can be used to load different devices in AC or DC operations or to test a rotary current system.
The ACLT series combines three channels or phases in one enclosure, offering a range of interfaces, including Ethernet, USB, RS-232, CAN, and an I/O interface. Additionally, a system bus for master-slave connection is built-in serially, and a GPIB interface is available as an option.
To increase the maximum load current, multiple channels of a rotary current device ACLT can be connected in parallel. This allows for the combination of multiple single-phase devices, enabling higher load capacities. By connecting multiple ACLT channels in parallel, the overall load capacity of the system can be enhanced, making it suitable for applications requiring higher current demands.
This parallel connection of ACLT channels provides a flexible solution to increase the maximum load current, allowing for a scalable approach to meet the specific requirements of various applications.
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ACLT has built-in Ethernet, USB, RS-232, CAN, I/O interface, and a system bus
ACLT stands for three-phase loads, which combine three alternating current load channels in one enclosure. The ACLT series was developed for loading rotary current systems, with the three load channels used to load different devices under test (DUTs) in alternating current or direct current operation, or to test a rotary current system.
The ACLT has a wide range of built-in interfaces, including Ethernet, USB, RS-232, CAN, and I/O. These interfaces provide versatile connectivity options for various devices and systems. The Ethernet interface, for example, enables network connectivity, allowing the ACLT to communicate with other devices over a local area network (LAN) or even remotely over the internet. This is particularly useful for remote monitoring, control, and data acquisition applications.
The USB interface is another versatile feature, allowing easy connection to a wide range of peripheral devices such as storage drives, keyboards, mice, and more. This makes data transfer and system configuration convenient and straightforward. The RS-232 interface, on the other hand, provides a serial communication protocol commonly used for establishing a connection with serial devices such as older printers, barcode scanners, or industrial equipment.
Additionally, the CAN interface enables the ACLT to communicate with other devices using the Controller Area Network protocol, which is commonly used in automotive and industrial applications. Finally, the I/O interface provides input and output capabilities, allowing the ACLT to interact with external devices, sensors, or actuators. These I/O interfaces can be digital or analog, allowing for flexibility in the type of signals and devices that can be connected.
All these built-in interfaces on the ACLT, including Ethernet, USB, RS-232, CAN, and I/O, offer a wide range of connectivity options, making the ACLT a highly versatile and adaptable solution for various applications and systems. Furthermore, the system bus built into the ACLT provides a common pathway for the transfer of data and control signals between these interfaces and the master-slave connection, ensuring efficient and coordinated communication within the system.
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Frequently asked questions
ACLT stands for "three-phase loads" or "three-phase loading systems".
ACL stands for "ACross the Line", an acronym used in some sectors of the water and wastewater industry, as well as in IEEE articles and electrical engineering.
ACLT combines three alternating current load channels in one enclosure, whereas ACLS is a single-phase loading system.
ACLT is used for loading rotary current systems, while ACLS is used for single-phase loading.
ACLT is used to increase the maximum load current by connecting multiple channels in parallel.





