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The Schneider ATS130N2D45LT Altivar Soft Starter is a motor-control device used to manage the starting and stopping of three-phase asynchronous motors. It fits applications where the motor normally operates at a fixed speed but needs a more controlled transition during startup or shutdown.
A typical example is a conveyor motor. With direct-on-line starting, the motor can apply a sudden torque to the gearbox, coupling, and belt. A soft starter changes the way that acceleration takes place, allowing the rotating system to build up speed progressively rather than receiving the full mechanical impact immediately.
The same approach is useful on pumps, fans, compressors, and other rotating machines. In these applications, the objective is generally not to control the motor speed throughout the production process. Instead, attention is placed on the starting event, motor current, mechanical stress, and the behavior of the driven load.
The ATS130N2D45LT is part of the Altivar ATS130 soft starter family. When selecting it for an existing machine, the motor nameplate current, supply conditions, starting duty, load characteristics, protection arrangement, and control circuit should be considered together.
| Parameter | Details |
|---|---|
| Manufacturer | Schneider Electric |
| Model | ATS130N2D45LT |
| Product Family | Altivar ATS130 |
| Product Type | Soft Starter |
| Main Function | Motor Starting and Stopping Control |
| Motor Type | Three-Phase Asynchronous Motor |
| Rated Operational Current | 45 A |
| Supply Voltage | 200–480 V AC |
| Supply Frequency | 50–60 Hz |
| Control Supply | 24 V DC |
| Number of Phases | 3 Phase |
| Connection Type | In-Line |
| Utilization Category | AC-53A |
| Integrated Bypass | Yes |
| Typical Application | Fixed-Speed Industrial Motor Control |
| Dimensions | 166 × 55 × 165 mm |
| Weight | 1.3 kg |
The ATS130N2D45LT is aimed at motor applications where controlled acceleration and stopping are needed without introducing continuous variable-speed control.
Key characteristics include:
The 45 A current class makes the model suitable for a range of medium-duty motor applications within the ATS130 family. Final selection should be based on the actual motor current and starting conditions rather than simply matching the motor’s nominal power rating.
The ATS130N2D45LT can be viewed as the controlled interface between the three-phase supply and the motor during the starting process:
Three-Phase Supply → Motor Protection → ATS130N2D45LT → Motor → Mechanical Load
When the motor receives a start command, the soft starter manages the electrical conditions during acceleration. The motor is brought toward operating speed in a controlled manner rather than experiencing the abrupt transition associated with direct-on-line switching.
The effect is particularly noticeable on machines with significant rotating inertia. A conveyor drive, for example, has to accelerate not only the motor but also the belt, gearbox, rollers, and material being moved. A controlled start can reduce the mechanical shock transmitted through these components.
On pump systems, the starting behavior of the motor can also be an important consideration for the connected mechanical system. Fans and compressors present similar situations where the motor and driven load need to accelerate together.
Once normal motor operation has been reached, the soft starter is not intended to act like a variable frequency drive. The application remains fundamentally a fixed-speed motor system.
The ATS130N2D45LT is suited to industrial equipment where the main control requirement is a smoother motor starting or stopping process.
| Application | Typical Use |
|---|---|
| Pumps | Controlled acceleration of pump motors |
| Fans | Starting motors with substantial rotating inertia |
| Conveyors | Reducing abrupt torque during startup |
| Compressors | Managing motor starting conditions |
| Material Handling | Controlled startup of fixed-speed drives |
| Process Machinery | Smoother motor acceleration |
| Industrial Equipment | Three-phase asynchronous motor control |
| Utility Systems | Fixed-speed motor applications |
The starting characteristics of the driven machine should be considered carefully. A motor that appears suitable from its nameplate current may still require additional evaluation if it drives a high-inertia load or starts frequently.
The ATS130N2D45LT normally forms part of a complete motor feeder.
| Component | Function |
|---|---|
| Motor Circuit Breaker | Provides motor circuit protection |
| Three-Phase Asynchronous Motor | Converts electrical power into mechanical motion |
| 24 V DC Power Supply | Supplies the control circuit |
| PLC or Controller | Generates start/stop commands when automation is used |
| Contactor | Provides switching or isolation where required |
| Motor Power Cable | Connects the starter to the motor |
| Control Wiring | Carries commands and status signals |
| Control Cabinet | Houses the starter and associated components |
| Mechanical Coupling | Transfers motor torque to the machine |
| Ventilation System | Manages heat inside the enclosure |
The soft starter should be considered together with the motor protection equipment. Incorrect protection settings, unsuitable motor current selection, or inadequate control wiring can cause operating problems that may initially appear to be related to the starter.
The ATS130N2D45LT should be installed in an electrical enclosure suitable for industrial motor-control equipment. Wiring access, ventilation, heat dissipation, and clearance around the device should be considered during cabinet design.
Before energizing the system, verify the motor nameplate information against the starter configuration. Pay particular attention to motor current, incoming supply, control supply, motor connections, and expected starting frequency.
Recommended checks include:
If the motor does not accelerate correctly, inspect the complete system before replacing the starter. Mechanical overload, incorrect motor connections, inadequate supply conditions, protection settings, and excessive starting demand can all produce similar symptoms.
The most useful comparison for the ATS130N2D45LT is with other soft starters that address similar motor-control requirements but differ in current capacity or application scope.
| Model / Component | Type | Primary Function | Application |
|---|---|---|---|
| Schneider ATS130N2D45LT | Soft Starter | Controlled motor starting and stopping | 45 A motor applications |
| Schneider ATS130N2D38LT | Soft Starter | Controlled motor starting and stopping | Lower-current ATS130 applications |
| Schneider ATS130N2C11LT | Soft Starter | Controlled motor starting and stopping | Higher-current ATS130 applications |
| Schneider Altivar ATS130 Series | Soft Starter Family | Motor starting and stopping control | Pumps, fans, conveyors, compressors |
| Schneider Altivar ATS480 | Soft Starter | Advanced motor starting control | More demanding industrial applications |
The ATS130N2D38LT is a useful comparison for applications with lower motor-current requirements, while the ATS130N2C11LT belongs to a higher current range within the same ATS130 family.
The ATS480 is worth considering when the application requires more advanced soft-start functionality or broader commissioning and motor-management capabilities.
For replacement work, the motor’s actual current, supply voltage, starting duty, protection arrangement, and control architecture should be checked before selecting an alternative.
The 45 A rating needs to be compared with the motor’s actual rated current and the expected starting duty. The driven load and frequency of starts should also be considered, especially for machines that accelerate heavy or high-inertia loads.
Fixed-speed machines with noticeable starting torque or inertia are good candidates. Conveyors, pumps, fans, and compressors can benefit when a direct-on-line start produces excessive electrical current or mechanical shock.
The ATS130N2D45LT focuses on controlled starting and stopping. A variable frequency drive can continuously change motor speed by controlling the supplied frequency. If the process requires different operating speeds, a VFD should be evaluated instead.
Check the motor current, incoming supply, motor wiring, protection settings, mechanical load, and starting conditions. If these are correct, review the starter’s diagnostic information and control commands to determine whether the problem is electrical, mechanical, or related to the control sequence.