Heat Pump (Modular)

Gree GMV Heat Pump DC Inverter VRF adopts a high-efficient DC inverter compressor and DC inverter fan motor. The unit can be combined modularly from 6 ton to 30 ton.

All DC Inverter Technology
All DC Inverter Compressor
Maximum Torque Control with Minimum Current
180° Sine Wave DC Speed Varying Technology
Sensorless DC Inverter Fan Motor
Non-polar CAN Technology
88HP Max Capacity

Heat Pump (Modular)

Gree GMV Heat Pump (Mini) ALL DC Inverter VRF adopts a high-efficient DC inverter compressor and DC inverter fan motor. The unit can be combined modularly from 2 tons to 5 tons.

All DC Inverter Technology
All DC Inverter Compressor
Maximum Torque Control with Minimum Current
180° Sine Wave DC Speed Varying Technology
Sensorless DC Inverter Fan Motor
Non-polar CAN Technology
88HP Max Capacity

All DC inverter technology to improve compression efficiency

Sensorless DC inverter fan motor

All DC inverter compressor and high-performance high pressure chamber are utilized to reduce loss of overheat and improve compression efficiency from direct intake. Compared to low pressure chamber, the compression efficiency is improved. High-efficiency Permasyn motor is utilized to provide better performance than traditional DC inverter compressor.

Stepless speed regulation ranges from 5Hz to 65Hz. Compared with traditional inverter motors, the operation is more energy-saving.

All DC inverter technology to improve compression efficiency

All DC inverter compressor and high-performance high pressure chamber are utilized to reduce loss of overheat and improve compression efficiency from direct intake. Compared to low pressure chamber, the compression efficiency is improved. High-efficiency Permasyn motor is utilized to provide better performance than traditional DC inverter compressor.

Sensorless DC inverter fan motor

Stepless speed regulation ranges from 5Hz to 65Hz. Compared with traditional inverter motors, the operation is more energy-saving.

Maximum Torque Control with Minimum Current

It can reduce energy loss caused by device winding which results in higher efficiency.

Maximum Torque Control with Minimum Current

It can reduce energy loss caused by device winding which results in higher efficiency.

Maximum Torque Control with Minimum Current

It can reduce energy loss caused by device winding which results in higher efficiency.

Low-frequency Torque Control

It can directly control motor torque, through which fan motor can run at a low speed. Users will feel more comfortable while requirements of the system are also met.

Low-frequency Torque Control

It can directly control motor torque, through which fan motor can run at a low speed. Users will feel more comfortable while requirements of the system are also met.

180° Sine Wave DC Speed Varying Technology

It can satisfy demands for different temperatures and is able to save a great deal of energy and provide users with utmost comfort at the same time.

180° Sine Wave DC Speed Varying Technology

It can satisfy demands for different temperatures and is able to save a great deal of energy and provide users with utmost comfort at the same time.

180° Sine Wave DC Speed Varying Technology

It can satisfy demands for different temperatures and is able to save a great deal of energy and provide users with utmost comfort at the same time.

88HP max capacity-the largest free combination

Non-polar CAN technology to improve communication efficiency

Max capacity of single outdoor unit reaches 22HP and max combination capacity is even up to 88HP, in an industry leading level.

GREE is a pioneer in the industry for adopting a non-polar CAN communication technology. CAN communication technology provides quicker system response speed, more convenient installation debugging and more reliable communication data.

88HP max capacity-the largest free combination

Max capacity of single outdoor unit reaches 22HP and max combination capacity is even up to 88HP, in an industry leading level.

Non-polar CAN technology to improve communication efficiency

GREE is a pioneer in the industry for adopting a non-polar CAN communication technology. CAN communication technology provides quicker system response speed, more convenient installation debugging and more reliable communication data.

Wide Range of Operating Conditions

Working voltage range of the GMV5 system has been improved to 320V-460V, which surpasses the national standard of 342V-420V. For places with unsteady voltage, this system can operate effectively.

Wide Range of Operating Conditions

Working voltage range of the GMV5 system has been improved to 320V-460V, which surpasses the national standard of 342V-420V. For places with unsteady voltage, this system can operate effectively.

Wide Range of Operating Conditions

Working voltage range of the GMV5 system has been improved to 320V-460V, which surpasses the national standard of 342V-420V. For places with unsteady voltage, this system can operate effectively.

Wider Application Location

GMV5 can utilize a combination of 4 outdoor unit modules connecting with as many as 80 indoor units.

Wider Application Location

GMV5 can utilize a combination of 4 outdoor unit modules connecting with as many as 80 indoor units.

Wider Application Location

GMV5 can utilize a combination of 4 outdoor unit modules connecting with as many as 80 indoor units.

Refrigerant Storage and Distribution

The GMV5 system is designed without liquid receiver and the excess refrigerant is stored in the piping, which can minimize the refrigerant charging volume and enhance the control accuracy of refrigerant.

Refrigerant Storage and Distribution

The GMV5 system is designed without liquid receiver and the excess refrigerant is stored in the piping, which can minimize the refrigerant charging volume and enhance the control accuracy of refrigerant.