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High-Performance SHSS500 Vector Frequency Inverter from China Suppliers | Reliable Factory Solutions
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High-Performance SHSS500 Vector Frequency Inverter from China Suppliers | Reliable Factory Solutions

Discover the advantages of our advanced vector frequency inverters, designed for optimal motor speed and torque regulation. As a leading China supplier and factory, we offer these inverters that utilize cutting-edge vector control technology. Our products feature three core functions: high-precision speed regulation, exceptional energy efficiency, and rapid dynamic response, With a remarkable speed regulation ratio of up to 1:200 and a speed accuracy error controlled within 0.5%, our frequency inverters can adapt to real-time load changes, ensuring stable equipment operation. This smart technology intelligently matches load requirements, allowing for energy consumption reductions of over 30% compared to traditional drive methods. Additionally, our inverters can swiftly react to sudden load fluctuations in milliseconds, maintaining system stability. Choose our China-based solutions for superior performance and reliability in your applications

    Feature Description

    Feature Description Diagram
    Note:

    1. Rated voltage of the main power supply: 02:220V; 04:400V; 05:500V;
    2. Rated current: 1.5~1100A;
    3. Service code: D:Single tube; M:Module; S:Plastic shell; T:Iron shell
    4. Rated main voltage: 04T:Three-phase 380V; 02T:Three-phase 220V; 02S:Single-phase 22V
    5. Power: 1.5G:1.5KW

    Reliability
    • Multiple protection functions: overvoltage, overcurrent, overload, overheating, etc.
    • Setting of the protection level for overvoltage and overcurrent stall
    • Two-segment jump frequency can effectively avoid the mechanical resonance point
    High performance
    • Automatic torque boost: The starting torque can reach 150% at 0.5Hz
    • Automatic slip compensation: Makes the speed more accurate
    • Non-stop during momentary power outage: Maintains operation for a short time during momentary power failure
    • Low noise: The motor runs more smoothly
    • Overload capacity: Can operate at 150% of the rated torque for 60 seconds
    Multifunction
    • Main/auxiliary frequency addition and subtraction control mode
    • Pulse input for frequency control
    • The maximum pulse output can reach 100KHZ
    • Can display voltage, current, set frequency, output frequency, rotation speed, etc. according to user definition
    • Swing frequency, fixed length and counting functions
    • Built-in PLC can operate at 16 speed segments
    • Supports a variety of frequency settings: digital, analog, PID, multi-segment speed, simple PLC, PULSE pulse, RS485 communication
    • Embedded RS485 communication interface, supports Modbus protocol
    Input and output
    • Input functions: two-wire/three-wire control mode, external EF, UP/DOWN, automatic program operation control, counting, pulse input, etc.
    • Output functions: indication of counting arrival, frequency arrival, over-torque, overload warning, etc.

    Model Selection

    Model Voltage(V) Power(Kw) Current(A) Dimension(mm)
    SHSS500DS-04T1.5G Three-phase input: 380V
    three-phase output: 380V
    1.5Kw 3.8A 165*106*142
    SHSS500DS-04T2.2G 2.2Kw 5.1A 165*106*142
    SHSS500DS-04T4.0G 4Kw 9A 185*125*175
    SHSS500DS-04T5.5G 5.5Kw 13A 185*125*175
    SHSS500DS-04T7.5G 7.5Kw 17A 258*146*190
    SHSS500MS-04T1.5G 1.5Kw 3.8A 165*106*142
    SHSS500MS-04T2.2G 2.2Kw 5.1A 165*106*142
    SHSS500MS-04T4.0G 4Kw 9A 185*125*175
    SHSS500MS-04T5.5G 5.5Kw 13A 185*125*175
    SHSS500MS-04T7.5G 7.5Kw 17A 258*146*190
    SHSS500MS-04T11G 11Kw 25A 258*146*190
    SHSS500MS-04T15G 15Kw 32A 322*171*215
    SHSS500MS-04T18.5G 18.5Kw 37A 322*171*215
    SHSS500MS-04T22G 22Kw 45A 322*171*215
    SHSS500MT-04T7.5G 7.5Kw 17A 258*146*190
    SHSS500MT-04T11G 11Kw 25A 258*146*190
    SHSS500MT-04T15G 15Kw 32A 322*171*215
    SHSS500MT-04T18.5G 18.5Kw 37A 322*171*215
    SHSS500MT-04T22G 22Kw 45A 322*171*215
    SHSS500MT-04T30G 30Kw 60A 435*230*230
    SHSS500MT-04T37G 37Kw 75A 435*230*230
    SHSS500MT-04T45G 45Kw 90A 410*260*252
    SHSS500MT-04T55G 55Kw 110A 590*270*300
    SHSS500MT-04T75G 75Kw 150A 590*270*330
    SHSS500MT-04T90G 90Kw 176A 620*320*300
    SHSS500MT-04T110G 110Kw 210A 620*320*300
    SHSS500MT-04T132G 132Kw 260A 800*400*350
    SHSS500MT-04T160G 160Kw 305A 800*400*350
    SHSS500MT-04T185G 185Kw 340A 950*500*360
    SHSS500MT-04T200G 200Kw 380A 950*500*360
    SHSS500MT-04T220G 220Kw 425A 950*500*360
    SHSS500MT-04T250G 250Kw 480A 950*500*360
    SHSS500MT-04T280G 280Kw 530A 950*500*360
    SHSS500MT-04T315G 315Kw 600A 1060*650*360
    SHSS500MT-04T355G 355Kw 650A 1060*650*360
    SHSS500MT-04T400G 400Kw 720A 1200*860*380
    SHSS500MT-04T450G 450Kw 820A 1200*860*380
    SHSS500MT-04T500G 500Kw 860A 1360*1000*390
    SHSS500MT-04T630G 630Kw 1100A 1360*1000*390

    Technical Specifications

    Control Characteristics

    Output frequency: 0-500Hz
    Carrier frequency: The carrier frequency can be automatically adjusted from 0.8kHz to 12kHz according to the load characteristics.
    Output frequency resolution: Digital setting: 0.01Hz; Analog setting: up to 0.025% of the maximum frequency.
    Control mode: Open-loop vector control(SVC); V/F control; Closed-loop vector control(FVC)
    Torque characteristics: It has torque compensation and slip compensation. The starting torque can reach 150% at 0.25Hz(SVC).
    Torque control accuracy: SVC: ±5% above 5Hz; FVC: ±3%
    Overvoltage and overcurrent stall prevention protection: During operation, the voltage and current are automatically limited to prevent frequent tripping due to overvoltage and overcurrent.
    Speed regulation range: 1:200 (SVC); 1:1000(FVC)
    Speed stabilization accuracy: ±0.5%(SVC); ±0.02%(FVC)
    Overload capacity: 150% of the rated output current for one minute.
    V/F curve: Four modes: linear type; multi-point type; complete V/f separation; incomplete V/f separation.
    Acceleration and deceleration curve: Linear or S-curve acceleration and deceleration mode; Four kinds of acceleration and deceleration times; The acceleration and deceleration time range is 0.1~6500.0s.
    DC braking: DC braking frequency: 0.00Hz~maximum frequency, braking time: 0.0s~36.0s, braking action current value: 0.0%~100.0%
    Jog control: Jog frequency range: 0.00Hz~maximum frequency; Jog acceleration and deceleration time: 0.1s~6500.0s
    Simple PLC, multi-segment speed operation: It can achieve up to 16-segment speed operation through the built-in PLC or control terminals.
    Built-in PID: It can easily realize the closed-loop control system for process control.
    Automatic voltage regulation (AVR): When the grid voltage changes, it can automatically maintain the constant output voltage.
    Fast current limiting function: Minimize the overcurrent fault to protect the normal operation of the frequency

    Display and Keyboard Operation

    LED display:
    There are 8 function keys, a 5-digit 7-segment LED, and 5 status LED indicators. It can perform forward rotation, reverse rotation, reset, stop, jogging, as well as parameter setting and display.

    Protection Characteristics

    Protection Function:
    Short-circuit detection of the motor during power-on, input and output phase-loss protection, overcurrent protection, overvoltage protection, undervoltage protection, overheat protection, overload protection, short-circuit protection, etc.

    Technical Specifications (Interface & Environment)

    Operating command channel Three channels given by the operation panel, given by the control terminal, given by the serial communication port. It can be switched through various methods.
    Frequency source Ten frequency sources: given by the panel knob, given by the operation panel, given by the analog voltage, given by the analog current, given by RS485 communication, multi-segment speed, simple PLC of PID. It can be switched through various methods.
    Auxiliary frequency source Ten auxiliary frequency sources. It can flexibly achieve the fine-tuning of the auxiliary frequency and frequency synthesis.
    Input terminal Five digital input terminals, one of which can be used as a high-speed pulse input. There are two analog input terminals. AI1: input 0~+10V, AI2: input 0~+10V/0-20mA.
    Output terminal One high-speed pulse output terminal, which can output a square wave signal of 0kHz~50kHz, and can achieve the output of physical quantities such as the set frequency and output frequency. It can be selected as an open-collector type.
    One digital output terminal.
    One relay output terminal.
    Two analog output terminals of 0V~10V/0-20mA can indicate the output frequency/current/voltage/frequency command/rotation speed/power factor signal output.
    Other Characteristics
    Optional card IO expansion card, communication card (isolated type), PG card
    Multi-encoder support Supports differential mode, open collector, UVW, resolver
    Environment
    Place of use Indoors, free from direct sunlight, and without dust, corrosive gases, flammable gases, oil mist, water vapor.
    Altitude Below 1000m
    Ambient temperature -10℃~+40℃ (When the ambient temperature is between 40℃ and 50℃, it should be used with a derated load.)
    Humidity Less than 95% RH, without water condensation
    Vibration Less than 5.9m/s² (0.6g)
    Storage temperature -20℃~+60℃

    Application scenarios

    Application scenarios

    With advanced vector control technology, vector frequency inverters achieve precise regulation of motor speed and torque, featuring three core functions: high-precision speed regulation, high energy efficiency, and high dynamic response. In terms of speed regulation performance its speed regulation ratio can reach 1:200 or even higher, and the speed accuracy error is controlled within ±0.5%. It can adjust the motor operation status in real-time according to load changes to ensure the stable operation of equipment. In terms of energy conservation, by intelligently matching load requirements, it can reduce energy consumption by more than 30% compared with traditional driving methods. When facing sudden load changes, it can respond rapidly within milliseconds to maintain system stability.

    Based on these outstanding functions, vector frequency inverters precisely control the operating speeds of robotic arms and conveyor belts in industrial automation production lines, ensuring the accuracy of product assembly. In the construction field, they are used in elevator control systems to achieve smooth start and stop, while reducing energy consumption. By optimizing energy utilization efficiency, they are widely applied in multiple fields such as energy, manufacturing, and construction, becoming an indispensable power core for the intelligent development of modern industries.

    Device connection diagram

    Device connection diagram

    Wiring diagram

    Wiring diagram

    Frequently Asked Questions (FAQ)

    Q What control modes does this frequency inverter support?
    It supports three control modes: Open-loop vector control (SVC), V/F control, and Closed-loop vector control (FVC).
    Q What is the starting torque performance of the inverter?
    It features automatic torque boost, allowing the starting torque to reach 150% at 0.5Hz, and up to 150% at 0.25Hz under Open-loop vector control (SVC).
    Q What protection functions are built into the device?
    The inverter provides comprehensive protection, including short-circuit detection during power-on, input/output phase-loss protection, overcurrent, overvoltage, undervoltage, overheat, and overload protection.
    Q Does the inverter support RS485 communication?
    Yes, it features an embedded RS485 communication interface that fully supports the Modbus protocol.
    Q What are the environmental requirements for operating this equipment?
    It should be installed indoors, away from direct sunlight, dust, corrosive or flammable gases, oil mist, and water vapor. The altitude should be below 1000m, and the humidity less than 95% RH without condensation.
    Q How does the inverter respond to sudden load changes or power outages?
    The inverter can respond rapidly within milliseconds to maintain system stability during load changes. It also features a non-stop function during momentary power failures, maintaining operation for a short period of time.