PXe-PI550 High Performance Current Vector Inverter
The PXe-PI550 High Performance Current Vector Inverter provides precise variable-speed motor control for industrial machinery, process equipment and automation systems where speed stability, torque response and dependable operation under changing load are important.
Built around DSP control with V/F and sensorless vector operating modes, the PI550 can be configured for a wide range of AC motor applications. G-type configurations provide up to 150% starting torque at 0.5Hz under sensorless vector control, while built-in PID, flexible acceleration and deceleration control and multiple speed references support more demanding machinery and process applications.
The range includes single-phase and three-phase input configurations across 220V, 380V and 480V supply classes, with motor ratings extending from compact machinery drives through to 22kW on selected three-phase models.
Built-in RS485 / Modbus RTU, programmable digital and analogue I/O, local keypad control and comprehensive inverter protection allow the PI550 to operate as a standalone motor drive or as part of a wider PLC and automation system.
Technical Highlights for Industrial Motor Control
Vector & V/F Motor Control
Supports V/F and sensorless vector control for stable speed and torque performance across a wide range of standard industrial motor applications.
Strong Low-Speed Starting Torque
Provides up to 150% starting torque at 0.5Hz on suitable G-type configurations under sensorless vector control, supporting machinery that requires controlled torque during start-up.
DSP-Based Control with Built-In PID
A DSP control platform supports fast response and consistent operation under changing load conditions, with integrated PID control for pumps, fans, pressure, flow and general process automation.
Flexible Local & Remote Control
Supports keypad operation, terminal control and serial communication, with built-in RS485 / Modbus RTU for PLC, automation and wider system integration.
Integrated Drive Protection
Protection functions include overvoltage, undervoltage, overcurrent, overload, applicable overheat protection, external fault, communication error, PID feedback abnormality and short-circuit-to-ground conditions.
Product Information
Motor Control
The PI550 converts the incoming AC supply to a controlled variable-voltage, variable-frequency output for the connected motor.
The drive can operate using sensorless vector control or V/F control, allowing the control method to be matched to the motor, mechanical load and required operating performance.
Sensorless Vector Control
Sensorless vector control provides improved speed and torque behaviour without requiring external encoder feedback.
Published performance includes:
- Speed range: 1:100
- Steady-speed accuracy: ≤0.5% of rated synchronous speed
- Torque response: ≤20ms
- G-type starting torque: 150% at 0.5Hz
- F-type starting torque: 100% at 0.5Hz
This mode is appropriate where improved low-speed torque and load response are required without the complexity of encoder feedback.
V/F Control
V/F control provides conventional voltage-to-frequency motor control for general variable-speed applications.
Available characteristics include linear, power-law and custom V/F curves together with automatic or manual torque boost.
V/F control is particularly suited to pumps, fans, conveyors and other standard industrial loads where full vector performance is not required.
Motor Self-Learning
The PI550 supports rotary and static motor-parameter identification, allowing motor characteristics to be established during commissioning.
Static identification can be useful where the motor cannot conveniently be rotated during commissioning, while rotary identification can provide more detailed motor parameter information where the installation permits it.
Hard Speed Tracking
Speed-tracking functionality allows the inverter to identify and track a motor that is already rotating before applying the controlled output.
This can be useful when restarting fans, pumps and other machinery where the motor may still be coasting following a stop or supply interruption.
Acceleration & Deceleration
Straight-line and S-curve acceleration and deceleration are supported.
Up to four acceleration/deceleration time settings are available, with a programmable range from 0.0 to 6500.0 seconds.
This allows starting and stopping behaviour to be matched to the mechanical load rather than applying an abrupt speed change.
G-Type & F-Type Duty
The PI550 includes G-type and F-type duty ratings on selected models.
G Type: 150% rated current for 1 minute and 180% for 2 seconds.
F Type: 120% rated current for 1 minute and 150% for 2 seconds.
Final inverter selection should consider motor current, starting torque and expected load duty rather than motor kW alone.
Built-In PID Control
Integrated PID control allows the PI550 to regulate a process variable using an external feedback signal.
Typical applications include pump pressure, flow, fan pressure, airflow and other closed-loop process-control duties.
PID feedback can use 0 to 10V DC or 0 to 20mA signals.
Multiple Speed Operation
Up to 16 preset speeds can be configured using multifunction terminals or programmed operating logic.
This is useful for machinery operating at several defined production or process speeds.
Frequency Reference
Available frequency-reference methods include:
- Digital setting
- Analogue voltage or current input
- Preset multi-speed settings
- Serial communication
The control source can therefore be selected according to whether the drive is operated locally, from an external control signal or through an automation system.
Command Sources
The PI550 can be controlled from:
- Local operating keypad
- Control terminals
- Serial communication
This allows the same drive platform to support standalone machinery or wider PLC-based systems.
Automatic Voltage Regulation
Automatic Voltage Regulation helps maintain the required motor output voltage as the incoming mains supply changes within the permitted input range.
Quick Current Limiting
The PI550 includes a current-limiting algorithm intended to reduce the likelihood of overcurrent trips during changing load conditions and short-duration increases in mechanical demand.
DC Braking
DC braking is available where additional motor stopping control is required.
Braking frequency, current and duration can be programmed according to the motor and mechanical load.
Applications involving rapid stopping, high-inertia loads or frequent braking cycles should be reviewed to determine whether an external braking resistor or other braking arrangement is required.
Common DC Bus
Multiple compatible drives can be configured around a common DC bus where required by the wider system design.
Common-bus installations should be engineered as a complete system, including rectification, protection, braking and regenerative-energy considerations.
Local Display & Fault History
The local keypad can display operating information including running frequency, set frequency, DC bus voltage, output voltage, output current, output power, output torque, motor speed, terminal status, analogue input, PID values and IGBT temperature.
The inverter can also retain information for up to three fault events, allowing operating conditions at the time of a fault to be reviewed.
Selecting a PXe-PI550 Current Vector Inverter
Correct inverter selection should consider the motor and driven equipment rather than motor power alone.
PX will normally review:
- Motor rated power, voltage, current, frequency and speed
- Available site supply and phase arrangement
- Type of driven machinery
- Required starting torque
- Acceleration and deceleration requirements
- Minimum and maximum operating speed
- Continuous and short-duration load duty
- G-type or F-type duty requirement
- V/F or sensorless vector control
- Analogue or digital control signals
- PID feedback requirements
- RS485 / Modbus RTU integration
- Braking requirements
- Ambient temperature and altitude
- Available control-panel space and ventilation
Input Supply Configurations
The PI550 is available in several supply-voltage families.
Single-Phase 220V Class
220 to 240V AC nominal, -15% / +10%, with selected models up to approximately 5.5kW.
Three-Phase 220V Class
220 to 240V AC nominal, -15% / +10%, with selected models up to approximately 11kW.
Three-Phase 380V Class
380 to 440V AC nominal, -15% / +10%, with selected models up to 22kW.
Three-Phase 480V Class
480V AC ±10%, with selected models up to 22kW.
Final model availability should be confirmed against the required voltage class, motor rating and load duty.
Single-Phase Motor Configurations
Selected G1S models are identified for single-phase motor loads.
Motor compatibility and the required output arrangement should be confirmed before selection, as this capability should not be assumed across the complete PI550 range.
RS485 / Modbus RTU
Built-in RS485 / Modbus RTU allows the PI550 to exchange operating commands, frequency references and status information with suitable PLC, HMI and automation systems.
The source wiring information specifies communication rates up to 115200bps.
Digital & Analogue I/O
The PI550 provides six programmable digital inputs, with DI5 capable of high-speed pulse input up to 100kHz.
One analogue input can be configured for:
- 0 to 10V
- 0 to 20mA
Available outputs include an open-collector output, programmable relay output and analogue output.
Emergency Stop / Output Interrupt Input
A programmable input can be used to interrupt the controller output as part of the machine control arrangement.
This input should not be assumed to provide a safety-rated emergency-stop function unless incorporated into a suitably designed and validated machine safety system.
Installation Environment
The standard PI550 is intended for indoor installation in an appropriately controlled electrical environment.
Published operating conditions include:
- Operating temperature: -10°C to 40°C
- Operation from 40°C to 50°C with derating
- Relative humidity below 90%, non-condensing
- No corrosive or explosive gases
- Protection from water, steam, conductive dust, oil mist and salt contamination
- No output derating below 1000m altitude
- 1% derating per additional 100m above 1000m
- Maximum published altitude: 3000m
- IP20 protection
- Forced-air cooling
Adequate ventilation and installation clearance should be provided around the inverter.
PXe-PI550 Technical Specification
Power Input
| Parameter | Specification |
|---|---|
| Input Voltage Classes | 1PH 220-240V, 3PH 220-240V, 3PH 380-440V and 3PH 480V-class configurations |
| Input Frequency | 50Hz / 60Hz |
| Continuous Voltage Fluctuation | ±10% |
| Voltage Imbalance | Less than 3% |
| Input Frequency Fluctuation | ±5% |
Motor Control
| Parameter | Specification |
|---|---|
| Control Platform | DSP-based high-performance current vector inverter |
| Control Methods | V/F control and sensorless vector control |
| Vector Control Output Frequency | 0 to 300Hz |
| V/F Maximum Output Frequency | Up to 3200Hz |
| Digital Frequency Resolution | 0.01Hz |
| Carrier Frequency | 0.5 to 16kHz, automatically adjustable according to load characteristics |
| G-Type Starting Torque | 150% at 0.5Hz under sensorless vector control |
| F-Type Starting Torque | 100% at 0.5Hz under sensorless vector control |
| Sensorless Vector Speed Range | 1:100 |
| Steady-Speed Accuracy | ≤0.5% of rated synchronous speed |
| Torque Response | ≤20ms under sensorless vector control |
| Torque Boost | Automatic or manual, 0.1% to 30.0% |
| Acceleration / Deceleration | Straight-line or S-curve, 0.0 to 6500.0 seconds |
| Preset Speeds | Up to 16 |
| PID Control | Built in |
| Automatic Voltage Regulation | Built in |
| Motor Self-Learning | Rotary and static motor-parameter identification |
| Speed Tracking | Motor speed tracking for restart of a rotating motor |
| DC Braking | Programmable braking frequency, current and time; braking time 0.0 to 100.0 seconds |
| Jog Control | Programmable jog frequency and acceleration/deceleration time |
Overload Capability
| Duty Type | 1 Minute | 2 Seconds |
|---|---|---|
| G Type | 150% rated current | 180% rated current |
| F Type | 120% rated current | 150% rated current |
I/O & Communications
| Function | Specification |
|---|---|
| Digital Inputs | 6 programmable inputs; DI5 supports high-speed pulse input up to 100kHz |
| Analogue Input | 1 × 0-10V / 0-20mA |
| PID Feedback | 0-10V DC or 0-20mA |
| Preset Speeds | Up to 16 using multifunction terminals or programme control |
| Open-Collector Output | 1 programmable SPA output |
| Relay Output | 1 programmable relay output |
| Relay Contact Capacity | 5A at 250V AC / 1A at 30V DC, normally open contact |
| Analogue Output | 1 × 0-10V / 0-20mA programmable output |
| Control Channels | Keypad, control terminals or serial communication |
| Frequency Reference | Digital, analogue voltage/current, preset multi-speed and serial communication |
| Communications | Built-in RS485 / Modbus RTU |
| Maximum Communication Rate | Up to 115200bps |
Monitoring & Protection
| Parameter | Specification |
|---|---|
| Protection Functions | Over-voltage, under-voltage, over-current, overload, applicable overheat protection, external fault, communication error, PID feedback abnormality and short-circuit-to-ground protection |
| Running Information | Frequency, set frequency, DC bus voltage, output voltage, output current, output power, output torque, motor speed, terminal status, analogue input and PID information |
| IGBT Temperature | Displayed locally |
| Fault History | Stores information for up to 3 fault events |
| Key Lock | Selected or all keypad functions can be locked to prevent unintended operation |
Operating Environment
| Parameter | Specification |
|---|---|
| Operating Temperature | -10°C to 40°C; derating required from 40°C to 50°C |
| Storage Temperature | -20°C to 65°C |
| Humidity | Below 90% RH, non-condensing |
| Vibration | Below 5.9m/s² (0.6g) |
| Installation Environment | Indoor installation away from direct sunlight, corrosive or explosive gases, water vapour, conductive dust, flammable gas, oil mist, dripping water and salt contamination |
| Altitude | No derating below 1000m; 1% derating per additional 100m above 1000m; maximum 3000m |
| Protection Degree | IP20 |
| Cooling | Forced-air cooling |
| Safety Standard | IEC 61800-5-1:2007 |
| EMC Standard | IEC 61800-3:2005 |
Specification note: Model availability, duty rating and final technical specification should be confirmed for the selected input voltage, motor rating and application.
The PI550 is used to control AC motors in demanding industrial applications where stable speed, torque and process control are required. Typical uses include pumps, fans, compressors, conveyors, textile machinery, water treatment systems and production equipment.
A standard variable-frequency drive controls motor speed by varying the output frequency and voltage. A current vector inverter provides more advanced motor control by managing current and torque behaviour more precisely, thereby improving response and stability under changing load conditions.
Yes. The PI550 supports vector control without encoder feedback and V/F control. This makes it suitable for many industrial motor applications that require improved speed and torque control without installing a motor encoder.
Yes. The PI550 includes built-in PID control, making it suitable for pressure, flow and ventilation control applications. This is useful for pumps, fans, water treatment systems and HVAC-related equipment.
Yes. Built-in RS485 communication enables the inverter to be integrated into control systems that require remote monitoring, control, or automation.
The PI550 includes inverter protection functions for overvoltage, undervoltage, overcurrent, overload, overheating, communication faults, external faults, and short-circuit-to-ground conditions.
Yes. The PI550 is positioned for more demanding industrial machinery and process applications than a compact general-purpose drive. It is better suited for applications where torque response, load variation, and continuous operation are important.

