15kw Frequency Inverter 3phase 220V 380V 460V for Pid Control

Product Details
Customization: Available
Application: High-performance Transducer, Three Phase Transducer, General Transducer, Single-phase Transducer, High Frequency Converter Transducer
Output Type: 1/3 Phase
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  • 15kw Frequency Inverter 3phase 220V 380V 460V for Pid Control
  • 15kw Frequency Inverter 3phase 220V 380V 460V for Pid Control
  • 15kw Frequency Inverter 3phase 220V 380V 460V for Pid Control
  • 15kw Frequency Inverter 3phase 220V 380V 460V for Pid Control
  • 15kw Frequency Inverter 3phase 220V 380V 460V for Pid Control
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Basic Info.

Model NO.
Z900E
Principle of Work
Vector Control Transducer
Switch Mode
Vector Control
Main Circuit Type
Current
Voltage of Power Supply
Low Voltage Variable-Frequency Drive
Link of Transformation
AC-DC-AC Variable-Frequency Drive
Nature of DC Power
Current Variable-Frequency Drive
Function
Multifunctional
Brand
Machtric
Color
Black
Size
Compact Size
Control Type
Vector Control
Certification
Ce ISO
Input Power380V
0.75~160kw
Display
LED
Protection
Over Voltage
Input Power 220V
0.4-3.7kw
Export Markets
Global
Output Frequency
0~400Hz
Transport Package
Standard Export Package
Specification
CE ISO
Trademark
machtric
Origin
China
HS Code
850440999
Production Capacity
10000

Product Description

Z900E Frequency Inverter  
Overview

15 kW (20 hp) frequency drive inverter input, voltage 3 phase 220V /380V /460V AC ±15% (Optional), and output voltage 3 phase AC 0~input voltage. With RS485 communication, 3 phase inverter has V/F control and sensorless vector control.


Feature

  1. The host computer (PC/PLC) can monitor the variable frequency inverter in the control system and realize complex control functions such as remote control and fine adjustment.
  2. The remote control panel can be connected to the variable frequency drive inverter through the RS485 interface. Just plug the remote control panel into the RS485 interface without any parameter settings. The local control panel and remote control panel of the inverter can work at the same time.
  3. The operation panel and control terminals of the frequency drive inverter can control the start, speed regulation, stop, brake, operation parameter setting, and peripheral equipment of the motor.
 
Product specification:
 
Items
 
        Z900E  Frequency Inverter  
Power
Supply
Rated voltage, Frequency Single phase/Three phase  220V 50/60Hz
Voltage Range 220V:170V~240V   380V:330~440V
Output Voltage Range 220V:0~220V,380V:0~380V
Frequency Range 0.10`400.00Hz
Control method Sensor less flux vector control (SFVC)
Voltage/Frequency (V/F) control
Indication Operating status/Alarm definition/interactive guidance: eg , frequency setting, the output frequency/current, DC bus voltage, the temperature and so on.
Control Specifications Output Frequency Range 0.10Hz~400.00Hz
Frequency Setting Resolution Digital input:0.01Hz, analog input:0.1% of maximum output frequency
Output Frequency Accuracy 0.01Hz
V/F Control Setting V/F curve to satisfy various load requirements
Torque Control Auto increase: auto raise torque by loading condition; manual increase; enable to set0.0~20.0% of raising torque
Multifunctional input
Terminal
Six multi-function input terminals, realizing functions including fifteen section speed control, program running, four-section acceleration/deceleration speed switch, UP/DOWN function and emergency stop and other functions
Multifunctional Output
Terminal
2 multi-function output terminals for displaying of running, zero speed, counter, external abnormity, program operation and other information and warnings
Acceleration/deceleration Time Setting 0~-999.9s acceleration/deceleration time can be set individually
Other Functions PID Control Built-in PID control
RS485 Standard RS485 communication function(MODBUS)
Frequency Setting Analog input:0 to 10V,,0 to 20mA can be selected;
Dig ital input: Input using the setting dial of the operation panel or RS485 or UP/DOWN
Multi-speed Six multifunction input terminals, 15section speed can be set
Automatic voltage regulation Automatic voltage regulation function can be selected
Counter Built -in 2group of counters
Protection/
Warning Function
Overload 150%,60 second(Constant torque)
Over Voltage Over voltage protection can be set
Under Voltage Under voltage protection can be set
Other Protections Overheat, short circuit, over current, and parameter lock and so on
Environment Ambient Temperature -10ºC to 40ºC(non-freezing)
Ambient Humidity Max.95%(non-condensing)
Altitude Lower than 1000m
Vibration Max. 0.5G
Structure Cooling Mode Forced air cooling
Protective Structure IP20
Installation Mode Wall Mounted
 
Specification:
Model Input Rate output
Power
(kw)
Capacity
(KVA)
Output
Current
(A)
Overload capacity
(60s)(A)
Applicable motor
(KW)
Z900-2S0.4GE Single phase AC 220V.50/60Hz 0.4 1 2.2 3.75 0.4
Z900-2S0.75GE Single phase AC 220V.50/60Hz 0.75 2 5 7.5 0.75
Z900-2S1.5GE Single phase AC 220V.50/60Hz 1.5 2.8 7 10.5 1.5
Z900-2S3.7GE Single phase AC 220V.50/60Hz 3.7 6.8 8.6 12.9 3.7
Z900-4T0.75GE Three phase AC 380V.50/60Hz 0.75 2.2 2.7 4.05 0.75
Z900-4T1.5GE Three phase AC 380V.50/60Hz 1.5 3.2 4 6 1.5
Z900-4T2.2GE Three phase AC 380V.50/60Hz 2.2 4 5 7.5 2.2
Z900-4T3.7GE Three phase AC 380V.50/60Hz 3.7 6.8 8.6 12.9 3.7
Z900-4T5.5GE Three phase AC 380V.50/60Hz 5.5 10 12.5 18.75 5.5
Z900-4T7.5GE Three phase AC 380V.50/60Hz 7.5 14 17.5 21 7.5
Z900-4T11GE Three phase AC 380V.50/60Hz 11 19 24 36 11
Z900-4T15GE Three phase AC 380V.50/60Hz 15 26 33 45 15
Z900-4T18.5GE Three phase AC 380V.50/60Hz 18.5 32 40 60 18.5
Z900-4T22GE Three phase AC 380V.50/60Hz 22 37 47 70.5 22
 
FAQ

How to determine the size of a three-phase inverter?

The size of a three-phase inverter is usually not given directly but is determined based on the specific parameters and design of the inverter. These parameters may include the power, current, voltage, cooling method of the inverter, etc. When determining the size of a three-phase inverter, the following factors need to be considered:

  1. Power demand: The power demand of the inverter is a key factor in determining its size. Higher power demand usually requires a larger inverter to accommodate more internal components, such as circuit boards, capacitors, and inductors.
  2. Heat dissipation requirements: The inverter generates heat when working, and proper heat dissipation design is required to prevent heat. The design and size of the heat dissipation system will also affect the overall size of the inverter.
  3. Installation method: The size of the inverter also needs to consider its installation method. For example, whether the inverter is wall-mounted, rack-mounted, or stand-alone will affect its size.

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