Input Supply
Start with the site supply: voltage, phase and frequency. FU9000D models cover different supply classes, so the exact order code must match the installation.
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The FU9000D VFD is a general-purpose, high-performance variable frequency drive for conveyors, material handling equipment and industrial machinery. It supports V/F and vector control, flexible I/O and load-matched motor control across a 0.75–630 kW range.

FU9000D is a general-purpose high-performance VFD for industrial motor control. The series is designed for applications that need adjustable speed, torque control, programmable I/O and flexible commissioning. It can control AC motors and PMSM motors, depending on the selected configuration.
The FU9000D range covers 0.75–630 kW. Voltage classes vary by model, with official product information covering 220/240 V and 380/480 V configurations. Final selection should be based on motor rated current, supply phase and voltage, load characteristics and the required control mode.
The FU9000D series covers small and high-power motor applications. The table below shows representative models and ratings from the current product information; it is not a complete model list. Use the current datasheet or manual for the exact model, current, dimensions and options before ordering.
| Model | Input voltage | Rated power | Rated input current | Rated output current |
|---|---|---|---|---|
| FU9000D-0R7G-S2 | 1-phase 220–240 V | 0.75 kW | 8.2 A | 4 A |
| FU9000D-1R5G-S2 | 1-phase 220–240 V | 1.5 kW | 14 A | 7 A |
| FU9000D-004G-2 | 3-phase 220–240 V | 4 kW | 14.6 A | 13 A |
| FU9000D-022G-4 | 3-phase 380–480 V | 22 kW | 46 A | 45 A |
| FU9000D-075G-4 | 3-phase 380–480 V | 75 kW | 157 A | 150 A |
| FU9000D-200G-4 | 3-phase 380–480 V | 200 kW | 385 A | 377 A |
| FU9000D-400G-4 | 3-phase 380–480 V | 400 kW | 785 A | 725 A |
| FU9000D-630G-4 | 3-phase 380–480 V | 630 kW | 1080 A | 1000 A |
FU9000D is offered across multiple voltage classes. Current product information includes 220/240 V and 380/480 V configurations, while the exact phase, rated input current and rated output current depend on the model. Match the VFD to the motor rated current and the actual site supply rather than selecting by kW alone.
Start with the site supply: voltage, phase and frequency. FU9000D models cover different supply classes, so the exact order code must match the installation.
Match the drive to motor rated current, voltage and power. The motor nameplate remains the most useful starting point for FU9000D selection.
Input and output current rise with the power rating. The motor nameplate current is the number we check first when sizing the drive.
FU9000D combines motor auto-tuning, programmable I/O and adjustable speed and torque functions. The series supports V/F, sensorless vector and closed-loop vector control on applicable configurations, allowing the control method to be matched to the motor and load.
Auto-tuning helps establish motor parameters during commissioning. Follow the current FU9000D manual for the procedure and supported motor type.
I/O can be assigned to the machine’s start/stop circuit, speed reference, interlocks and fault signals.
Set acceleration, deceleration, speed range and torque response around the actual machine load. The series supports high starting torque at low frequency on applicable vector-control configurations.

FU9000D supports V/F control and vector-control configurations. Sensorless vector control (SVC/SFVC) is suited to applications that need better low-speed torque and dynamic response, while closed-loop vector control (FVC/CLVC) can be used when feedback is required.
Official FU9000D information lists starting torque of up to 150% at 0.5 Hz for SVC and 180% at 0 Hz for FVC. The applicable value depends on the control mode and configuration, so confirm the exact requirement before ordering.
Braking is an application decision rather than a kW-only decision. FU9000D product information lists variable DC-injection braking and a built-in dynamic braking unit. Fast stopping, high-inertia loads and repeated deceleration still require checking the selected model and braking duty.
For loads that can stop within the normal deceleration time, parameter setup may be sufficient. The actual allowable deceleration depends on the machine and drive configuration.
Fast stopping or high-inertia loads may need a braking resistor or a different braking arrangement. Tell us the stopping time and load condition when you ask for a model.
Braking hardware changes with power and stopping duty. If the machine stops quickly or has a regenerative load, include that information with the inquiry.
FU9000D supports communication functions for machine integration. Modbus-RTU is listed in the product information, while additional communication options can depend on the selected configuration. Include the PLC/HMI protocol requirement with the inquiry so the correct interface can be confirmed.
| Interface | What we check |
|---|---|
| RS485 / Modbus | Used when the drive needs serial communication with a PLC, HMI or controller. Check the interface on the selected model. |
| Optional network | For PROFIBUS, PROFINET, CAN or another network, tell us the protocol before quotation. |
| Control source | Start/stop and speed commands can come from the keypad, terminals, analog input, PLC or communication, depending on the setup. |
FU9000D is positioned for general industrial machinery and automated production equipment. Official application information includes food-processing machinery, mining equipment, pumps, cranes, hoists, air compressors and other motor-driven equipment; the final model should still be selected from the actual load profile.
Review loaded starting, acceleration time, low-speed running and stop behavior. Vector control can be useful when the conveyor starts under load.
Confirm torque demand, speed range, reversing and external machine-control signals for mixers, machine tools, packaging and processing equipment.
FU9000D can be applied to a wide range of motor-driven equipment. Check the load characteristic before choosing a general-purpose drive instead of a dedicated pump, fan, crane or compressor series.
Physical size changes with the selected power band. Before a new installation or retrofit, check cabinet width, height, depth, ventilation space, cable routing and service clearance.
For replacement work, send a photo of the old drive inside the cabinet together with the old nameplate. This helps compare mounting space, terminal location and cooling requirements before the new unit is selected.
A FU9000D installation normally needs the installer to separate the main power path from the control-signal side and confirm every terminal against the current manual before energizing the system.
Confirm supply input, motor output, grounding and any external braking connection against the selected model’s wiring diagram.
Identify start/stop inputs, analog or digital references, relay outputs and interlocks before commissioning.
If PLC or HMI communication is used, confirm interface terminals, protocol settings and shielding/grounding requirements in the manual.
Send operating data before requesting a final model. This avoids choosing a drive only from the motor kW.
| Data to send | Why it matters |
|---|---|
| Motor nameplate | Confirms kW, rated current, voltage, frequency and speed. |
| Rated current | Current is one of the main checks for matching the drive to the motor. |
| Site voltage and phase | Prevents selecting the wrong voltage class or assuming an unsupported input/output combination. |
| Load type | Conveyor, mixer, machine, fan and other loads have different torque and overload behavior. |
| Starting condition | Loaded starts and frequent starts can change the required drive margin. |
| Braking | Fast stopping and regenerative loads may require a braking review. |
| Communication | PLC/HMI integration can affect the required interface or option. |
| Motor type | Confirm whether the application uses an asynchronous AC motor or PMSM and whether feedback is required. |
| Control mode | Choose V/F, sensorless vector or closed-loop vector control according to torque, speed and feedback requirements. |
FU9000D orders are checked against the approved model and order file. UFELE’s current quality-control workflow covers assembly inspection, electrical and functional checks, controlled aging or batch verification where applicable, label review and packing confirmation.
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Compliance documents are matched to the exact FU9000D model, rating and product version. Before using a certificate for import, registration or tender approval, confirm the certificate number, model scope, applicable standard and current validity with UFELE.
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UFELE supports different levels of customization for distributor and OEM orders. Current custom-service terms list customized logo from 100 pieces, customized packaging from 500 pieces and graphic customization from 500 pieces. Drawing-based, sample-based and full customization require project review.
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Request the current FU9000D datasheet and manual before model approval. The datasheet should control the final model list, power, rated current, dimensions and technical options; the manual should control wiring, terminals, parameters, protection functions and commissioning details.
Use for model selection, rated current, electrical data and dimensions.
Request / View Datasheet
Use for wiring, terminals, parameters, commissioning and fault handling.
Request / View Manual
If the exact model is unclear, send motor and load data before choosing a drive.
Ask UFELE
FU9000D is a general-purpose high-performance VFD for conveyors, material handling, machine equipment and other industrial motor-control applications. It can control AC motors and PMSM motors on applicable configurations.
The FU9000D series covers 0.75 to 630 kW. Exact rated current, voltage class and model depend on the selected order code.
Official product information includes 220/240 V and 380/480 V configurations. The exact phase and voltage combination depends on the FU9000D model.
Yes. FU9000D supports V/F and vector-control configurations, including sensorless vector and closed-loop vector control on applicable models. Official information lists up to 150% starting torque at 0.5 Hz for SVC and 180% at 0 Hz for FVC.
Modbus-RTU is listed in the FU9000D product information. Additional communication options depend on the selected configuration, so confirm the required PLC or HMI protocol before ordering.
Send the motor nameplate, rated current, site voltage and phase, motor type, load type, starting condition, speed range, braking requirement and communication needs. These details are more useful than motor kW alone.
Tell UFELE the motor rating, site voltage, motor type, load type, starting condition and control requirement. We can then review the FU9000D model direction before quotation.