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Emily WhiteWe required a low-noise spindle motor for a sensitive testing environment. The unit we purchased operates whisper-quiet and maintains consistent torque. The quality exceeds some big-name brands we've used, at a fraction of the cost. Exceptional for specialized applications.
Low Voltage Engineering Single-Drive Inverter 2.2kW-560kW Output frequency 0~600Hz Output voltage 0V-Input voltage
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x| Input Voltage | Input Voltage: 380V (-15%) To 480V (+10%) Phase: Three-phase | Input Power Frequency | 50Hz/60Hz ±5% |
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| Output Voltage | 0V~Input Voltage | Output Frequency | 0~600Hz |
| Master Control Motor Type | Asynchronous Motor | Master Control Speed Range | 1:10 V/F;1:100 OLVC;1:1000 CLVC |
| Master Control Mode | V/F, OLVC(Open-loop Vector Control), CLVC(Closed-loop Vector Control) | ||
| Highlight | 0V Single-Drive Inverter,2.2kW-560kW Single-Drive Inverter,0~600Hz Single-Drive Inverter |
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Back-end quick debugging software
Powerful and easy to use, with functions such as parameter setting, real-time oscilloscope, fault recording, event recording, etc.
Excellent performance
Suspending at zero speed;Torque response 1-3ms;Extremely low dynamic speed drop and dynamic speed drop equivalent;Excellent robustness; Accurate off-line/online motor model identification.
Various needs satisfied
Standard LCD panel to improve user experence,Master-slave control function;Expandable communication card, encoding disk card,voltage detection card.
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Technical Data |
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Projects |
Specification Description and Technical Data |
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Power input/ |
Input voltage |
Input voltage: 380V (-15%) to 480V (+10%) Phase: Three-phase |
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Input power frequency |
50Hz/60Hz ±5% |
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Input voltage imbalance |
≤3% |
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Output voltage |
OV-Input voltage |
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Output frequency |
0~600Hz |
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Motor type |
Asynchronous motor |
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Master control performance |
Control mode |
V/F, OLVC(Open-loop Vector Control), CLVC(Closed-loop Vector Control) |
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Speed range |
1:10 V/F; 1:100 OLVC; 1:1000 CLVC |
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Starting torque |
OLVC: 150%(0.5Hz), CLVC: 200%(OHz) |
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Torque precision |
≤±5%, in Vector control mode |
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Torque ripple |
≤±5%, in Vector control mode |
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Speed stability |
OLVC, 0.2%; CLVC: 0.1% |
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Torque response |
≤5ms, in Vector control mode |
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Acceleration/deceleration time |
0.0s~3200.0s; 0.0min~3200.0min |
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Torque boost |
0.0%~30.0% |
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Overload capacity |
G model: 150% 1min/5min; 180%10s/5min; P model: 110% 1min/5min; 150% 10s/5min |
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V/F curve |
Straight-line type, multi-point type, V/F Half separation mode, V/F complete separation mode |
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Input frequency resolution |
Digital setting: 0.01Hz, Analog setting: 0.01Hz |
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Acceleration/deceleration curve |
Straight line and S-curve |
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Main functions |
Simple PLC, Multi-speed control |
16 speed segments supported through control terminals |
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Automatic voltage regulation (AVR) |
Automatically keeps the output voltage constant when grid voltage varies within a certain range |
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Fixed length control |
Fixed length control |
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Built-in PID |
Easily forms a closed-loop control system |
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Multi-motor switching |
Switchover between two groups of motor parameters to control the two motors |
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Virtual I/O |
Eight groups of virtual DI/DOenabling simple logic control |
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Overvoltage/Overcurrent stall control |
Automatic current and voltage limitation during operation preventing the inverter from tripping due to frequent overcurrent or overvoltage |
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Restart after power failure |
After power failure and restoration, the inverter waits for a set time before automatically running |
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Quick current limiting |
Avoids frequent overcurrent faults in the inverter |
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Frequency setting method |
keypad; terminal UP/DOWN; multi-reference; pulse reference; communication |
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Power input/ output |
Analog input terminals |
AI1; AI2: 0V~10V/ 0 (4)mA~20mA |
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Digital input terminals |
DI1-DI5, 5 programmable digital input terminals with opto-isolation, compatible with both |
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Digital output terminals |
Open-collector output; output voltage range: 0V~24V; current load capacity: 50mA. |
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Analog output terminals |
1-channel 0V ~ 10V/0(4)mA ~ 20mA |
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Relay output |
1-channel Form C contact, NO+NC |
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Communication |
Communication protocols |
Modbus RTU (standard configuration); Profibus-DP; Profinet IO; CANopen; Modbus TCP/IP; Ethercat; EtherNet/IP (optional configuration) |
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Ambient |
Altitude |
≤1000m: no need for derating |
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Ambient temperature |
-25℃~+40℃ (Running with derating allowed between 40~55) |
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Humidity |
15% ~ 95%, No condensation |
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Vibration |
3M3, IEC60721-3-3 |
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Storage temperature |
−40°C~+70°C |
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Installation place |
Indoor, without direct sunlight, free from flammable, corrosive gases, liquids, and conductive |
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Optional accessories |
Encoder card, communication expansion card, IO expansion card |
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Protections |
Protection against short circuit , overcurrent, overload, overvoltage, undervoltage, phase loss, |
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Installation method |
Installed in a cabinet |
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Protection rating |
IP20 |
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Cooling method |
Air cooling |
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General Purpose VFD Vector Frequency Inverter Product Product Applicantion
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HV350 Product Selection Rated voltage: three-phase 380Vac (suitable for operating voltage range of 323V~528V) |
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Model |
Heavy Load |
Light Load |
Frame Type |
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Rated Power (kW) |
Rated Output Current |
Rated Power |
Rated Output Current |
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HV350-4T0.75G/1.5PB |
0.75 |
2.5 |
1.5 |
4.2 |
FA |
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HV350-4T1.5G/2.2PB |
1.5 |
4.2 |
2.2 |
5.8 |
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HV350-4T2.2GB |
2.2 |
5.8 |
- |
- |
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HV350-4T4G/5.5PB |
4 |
9.5 |
5.5 |
13 |
FB |
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HV350-4T5.5GB |
5.5 |
13 |
- |
- |
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HV350-4T7.5G/11PB |
7.5 |
17 |
11 |
25 |
FC |
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HV350-4T11GB |
11 |
25 |
- |
- |
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HV350-4T15G/18PB |
15 |
32 |
18.5 |
38 |
FD |
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HV350-4T18G/22PB |
18.5 |
38 |
22 |
46 |
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HV350-4T22GB |
22 |
46 |
- |
- |
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HV350-4T30G/37P(B) |
30 |
60 |
37 |
75 |
FE |
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HV350-4T37G/45P(B) |
37 |
75 |
45 |
91 |
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HV350-4T45G/55P(B) |
45 |
91 |
55 |
125 |
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HV350-4T55G/75P(B) |
55 |
125 |
75 |
150 |
FF |
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HV350-4T75G/90P(B) |
75 |
150 |
90 |
180 |
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HV350-4T90G/110P(B) |
90 |
180 |
110 |
210 |
FG |
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HV350-4T110G/132P(B) |
110 |
210 |
132 |
250 |
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