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Jake MillerWe waagden de gok met inverters-vfd.com voor een cruciale VFD-vervanging op onze assemblagelijn. Het product was niet alleen een perfecte match, maar ook voordeliger dan onze vorige leverancier. De stabiliteit heeft onze frequente problemen met het uitschakelen geëlimineerd. Een uitstekende waarde en een betrouwbare partner voor industriële componenten. -
Sarah ChenHet technische team van inverters-vfd.com was van onschatbare waarde. Ik beschreef onze toepassing voor een servomotor en ze adviseerden een model met superieure dynamische respons. De installatie verliep vlekkeloos en de precisie heeft onze cyclustijden verbeterd. Deskundige begeleiding en een hoogwaardig product! -
David "Big D" KowalskiOnze bestelling voor meerdere PLC-eenheden en HMIs is accuraat uitgevoerd en met verbazingwekkende snelheid verzonden. Sinds de integratie ervan is de communicatie van ons besturingssysteem robuuster. We zijn onder de indruk van de logistiek en de solide prestaties van deze componenten. Een probleemloze ervaring in alle opzichten. -
Emily WhiteWe hadden een stille spindelmotor nodig voor een gevoelige testomgeving. De unit die we kochten werkt fluisterstil en behoudt een constante draaimoment. De kwaliteit overtreft die van sommige bekende merken die we hebben gebruikt, voor een fractie van de prijs. Uitzonderlijk voor gespecialiseerde toepassingen.
Comprehensive Protection VFD with Overvoltage, Undervoltage, and Phase Loss Safety Features
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x| Beschermingscijfer | IP20 | Koeling manier | Gedwongen luchtkoeling |
|---|---|---|---|
| Efficiëntie | 5.5kW~22kW: ≥93%; boven 30kW: ≥95% | Inputvoltage | 200V (-15%) ~ 240V (+10%) 3Fase, 380V (-15%) ~ 480V (+10%) 3Fase, 500V (-15%) ~ 690V (+10%) 3Fase |
| Invoerfrequentie | 50 Hz/60 Hz ± 5% | Uitgangspanning | 0V~Inputspanning |
| Uitgangsfrequentie | 0 Hz ~ 500 Hz | ||
| Markeren | VFD with overvoltage protection,frequency inverter with safety features,VFD with phase loss protection |
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HIC200-OP-10-W is a smart operator panel developed independently for high-performance transmission products, which is informative, friendly and easy to use, and according to the different configurations of the panel, it is divided into two kinds: wiFi function and without WiFi function, which are conveniently applied to high-performance, single transmission, multi-VFDs system, it can monitor and adjust the system.
| Optional | Module | Function |
| Keyboard Base | HVKMB | Depending on the situation, the base can be installed in the specified position and the drive can be operated by operating the keyboard |
| Communication Adapter | HVCOM-USB | The drive can achieve high-speed communication with the computer via this option |
| Profibus-DP Expand Card | HVCOM-DP | It is for Profibus-DP bus communication, It can fulfill the monitoring and diagnostics of inverters |
| ABZIncremental Code disk Expansion Card |
HVPG-ABZ | Code disk expansion card, incremental code disk for ABZ signal output, power programmable control, compatible single/bipolar output of the code disk |
| CANopen Expansion Card | HVCOM-CAN | It is for CANopen bus commnication, it can fulfill the monitoring and diagnostics of inverters |
| Three-phase voltage detection module |
HVVMU | Detection of three-phase voltage, it can be used for permanent magnetic synchronous motor soft start grid, speed tracking and other functions |
| Technical Specification | ||
| Input/output Power |
Input Uin | 200V (-15%) ~240V (+10%) 3Phase , 380V (-15%) ~480V (+10%) 3Phase, 500V (-15%) ~690V (+10%) 3Phase |
| Input Frequency | 50Hz/60Hz±5% | |
| Unbalance Degree of Uin | ≤3% | |
| Output Uout | 0V~Input Uin | |
| Output Frequency | 0Hz~500Hz | |
| Control Performance |
Motor Type | Asynchronous / Synchronous |
| Control Method | V/F, OLVC (Open-Loop Vector Control), CLVC (Close-Loop Vector Control) | |
| Range of Speed Regulation | 1:10 V/F, 1:100 OLVC, 1:1000 CLVC | |
| Start Torque | VF: 100% (0.5Hz), OLVC: 150% (0.5Hz), CLVC: 180% (0Hz) | |
| Torque Precision | ≤5%, Vector Control | |
| Torque Pulsation | ≤5%, Vector Control | |
| Speed Regulation Precision | OLVC 0.2%, CLVC 0.01% | |
| Torque Response | ﹤5ms, Vector Control | |
| Dynamic Speed Reduction | OLVC<0.5%*s, CLVC<0.3%*s | |
| Acceleration and Deceleration Time | 0.0s~3200.0s, 0.0min~3200.0min | |
| Torque Lifting | 0.0%~30.0% | |
| Overload | Heavy Load Application 150% 1min/5min, Light Load Application 110% 1min/5min | |
| V/F Curve | Multiple ways: linear V/F curve, 5 kinds of torque reduction characteristic curve mode (2.0 power, 1.8 power, 1.6 power, 1.4 power, 1.2 power), user-defined VF curve | |
| Input Frequency Accuracy | Digital: 0.01Hz, Analog: 0.01Hz | |
| Control Performance |
Acceleration and Deceleration Curve | Straight, S Curve |
| Multiple Speed-Steps Operation | 16-Speed Steps Operation through control terminals | |
| Automatic VoltageAdjustment (AVR) |
Keeping the output voltage constant automatically when the grid voltage changes within a certain range | |
| Fixed Length | Setted and Fixed Length Control | |
| In-build PID | It Can Easily Constructed Closed loop control system | |
| Enhencement Function | Free Function Block | |
| Input/output Power |
Set Frequency | Keyboaed, UP/DOWN Terminals, Multiple Speed-Steps Operation, Terminals Pulsation, Com |
| Analog Input Terminals | AI1: 0V~10V/-10V~10V, AI2: 0V~10V/0(4) mA~20mA | |
| Digital Input Terminals | DI1-DI6, 6 programmable digital input terminals, optocoupler isolation, compatible with drain/source input | |
| Digital Input/Output Terminals | DIO1: Fast pulse output, normal input/output; DIO2: fast pulse input, normal input/output | |
| Anolog Output Terminals | 2 Strings 0V~10V/0 (4) mA~20mA | |
| Relay Output | 2Strings Contact Type FormC | |
| Motor Temperature Detection | Support PT100/PT1000/KTY84 | |
| STO Interface | SIL3/PLe Safe torque shutdown function | |
| Com | Com Protocol | Modbus RTU (Standard), Pro ibus, CANopen, pro inet, Devicenet, Ethercat |
| Environment | Altitude | Without Derating Operation Within 2000m Altitude; 2000m~4000m, Each 100m lifting, Derating 1% (Current) |
| Operation Temperature | -25℃~+40℃ (40℃~55℃ Derating) | |
| Humidity | 15%~95%, Without Condensation | |
| Vibration | 3M3, IEC60721-3-3 | |
| Storage Temperature | -40℃~+70℃ | |
| Operation Place | Indoor, Without direct sunlight, no flammable, corrosive gases, liquids and conductive particles | |
| Accessory | Encoding card, communication expansion card, voltage detection card | |
| Protection Function | Short circuit, over current, overload, over voltage, under voltage, phase loss, over temperature, external fault, etc. | |
| Efficiency | 5.5kW~22kW: ≥93%; Above 30kW: ≥95% | |
| Installation Method | Cabinet | |
| Protection Degree | IP20 | |
| Cooling | Forced Air Cooling | |
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Q1: What are the key applications of the HV500 inverter in US industrial settings?
A: The HV500 is ideal for HVAC, pumping, conveyor systems, and manufacturing automation, offering high precision and energy savings compliant with US standards.
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Q2: How does the HV500 handle voltage fluctuations common in US power grids?
A: It supports input voltage ranges from 200V to 690V 3-phase with automatic voltage adjustment (AVR), ensuring stable operation even during fluctuations.
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Q3: Is the HV500 suitable for high-torque applications like heavy machinery?
A: Yes, with CLVC mode, it provides 180% starting torque at 0Hz, perfect for crushers, presses, and other high-torque machines.
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Q4: What communication protocols are supported for integration with US PLC systems?
A: It supports Modbus RTU, Profibus, CANopen, Profinet, Devicenet, and Ethercat, ensuring seamless integration with most US industrial networks.
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Q5: How does the HV500 perform in high-temperature environments like Texas?
A: It operates from -25°C to +40°C without derating, and up to 55°C with derating, making it reliable in hot climates.
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Q6: Does the HV500 meet US safety standards?
A: Yes, it includes SIL3/PLe safe torque off (STO) and protection against overload, short circuit, and phase loss.
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Q7: Can the HV500 be used with asynchronous and synchronous motors?
A: Absolutely, it supports both motor types with flexible control methods (V/F, OLVC, CLVC).
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Q8: What is the efficiency rating of the HV500?
A: For models 5.5kW–22kW, efficiency is ≥93%; above 30kW, it’s ≥95%, helping reduce energy costs.
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Q9: How user-friendly is the HV500 for technicians?
A: It features multiple speed steps, PID control, and easy terminal programming, reducing setup time.
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Q10: Does the HV500 offer long-term reliability?
A: With robust construction, forced air cooling, and protection against dust and moisture (IP20), it ensures long service life.


