Cooling & Heating VRF
Featuring an ultra-broad operating range (-15°C to 56°C for cooling, -30°C to 28°C for heating), the unit ensures reliable operation in harsh conditions, greatly boosting stability and applicability.
Featuring an ultra-broad operating range (-15°C to 56°C for cooling, -30°C to 28°C for heating), the unit ensures reliable operation in harsh conditions, greatly boosting stability and applicability.
The 360° dual-tube circulating refrigerant cooling technology offers high thermal conductivity and superior heat dissipation, effectively removing heat from the main control board, inverter module. Tests show a 20°C reduction in the inverter module temperature, extending equipment service.
The 360° dual-tube circulating refrigerant cooling technology offers high thermal conductivity and superior heat dissipation, effectively removing heat from the main control board, inverter module. Tests show a 20°C reduction in the inverter module temperature, extending equipment service.
Our innovation leads in three key areas: oil separation, return, and storage. The entire oil circuit is managed through a precise six-stage system, assuring secure, stable, and reliable compressor performance.
Our innovation leads in three key areas: oil separation, return, and storage. The entire oil circuit is managed through a precise six-stage system, assuring secure, stable, and reliable compressor performance.
For multi-module combination, when one outdoor unit fails, the outdoor unit can be disconnected from the system communication, and the rest modules continue to operate.
For multi-module combination, when one outdoor unit fails, the outdoor unit can be disconnected from the system communication, and the rest modules continue to operate.
By integrating AI and intelligent control algorithms, our system creates a self-optimizing loop that dynamically senses multiple parameters. It precisely matches cooling output to real-time load demands by intelligently adjusting frequency and airflow. This ensures continuous 20% annual energy savings and superior operational efficiency.
By integrating AI and intelligent control algorithms, our system creates a self-optimizing loop that dynamically senses multiple parameters. It precisely matches cooling output to real-time load demands by intelligently adjusting frequency and airflow. This ensures continuous 20% annual energy savings and superior operational efficiency.
Using the remote/wired controller to achieve generator mode from 40%~100%, 6 steps of generator mode to assure unit can run at extreme low power consumption mode.
Using the remote/wired controller to achieve generator mode from 40%~100%, 6 steps of generator mode to assure unit can run at extreme low power consumption mode.
According to big data research, 76.5% of commercial VRF units are in standby state, and standby power consumption is up to 40 W. The intelligent diagnosis system tracks 21 power consumption parameters in real time through the outdoor unit operation status monitoring chip, and the AI decision program automatically identifies the indoor unit requirements, quickly cuts off the power supply of unnecessary modules (electric heating/some electric control modules), and the standby power of the outdoor unit is as low as 1 W.
According to big data research, 76.5% of commercial VRF units are in standby state, and standby power consumption is up to 40 W. The intelligent diagnosis system tracks 21 power consumption parameters in real time through the outdoor unit operation status monitoring chip, and the AI decision program automatically identifies the indoor unit requirements, quickly cuts off the power supply of unnecessary modules (electric heating/some electric control modules), and the standby power of the outdoor unit is as low as 1 W.
This system ensures exceptional performance in extreme conditions through vapor injection technology. In low-temperature environments, it boosts the refrigerant cycle to increase heating capacity by 30% at -15°C and maintain stable operation at -30°C. Conversely, in high-temperature conditions, it enhances the refrigerant cycle and subcooling to deliver powerful, efficient cooling even at 55°C ambient temperature.
This system ensures exceptional performance in extreme conditions through vapor injection technology. In low-temperature environments, it boosts the refrigerant cycle to increase heating capacity by 30% at -15°C and maintain stable operation at -30°C. Conversely, in high-temperature conditions, it enhances the refrigerant cycle and subcooling to deliver powerful, efficient cooling even at 55°C ambient temperature.
Its U-shaped design features three-sided air exposure, this innovative structure increases the effective heat exchange area by 40% compared to a conventional single-row design, significantly enhancing thermal efficiency.
Three-Row Fin Structure: This configuration increases the contact area with the air while effectively reducing airflow resistance. The result is a 10% improvement in heat exchange efficiency.
Its U-shaped design features three-sided air exposure, this innovative structure increases the effective heat exchange area by 40% compared to a conventional single-row design, significantly enhancing thermal efficiency.
Three-Row Fin Structure: This configuration increases the contact area with the air while effectively reducing airflow resistance. The result is a 10% improvement in heat exchange efficiency.
A high-capacity DC motor pairs with a large biomimetic fan to redefine climate mastery, delivering powerful, efficient, quiet, and durable comfort.
A high-capacity DC motor pairs with a large biomimetic fan to redefine climate mastery, delivering powerful, efficient, quiet, and durable comfort.
With a standard 50Pa static pressure (customizable up to 80Pa), our outdoor unit enables long-distance airflow, prevents cross-interference, and ensures efficient heat dissipation. It operates reliably even in confined spaces.
With a standard 50Pa static pressure (customizable up to 80Pa), our outdoor unit enables long-distance airflow, prevents cross-interference, and ensures efficient heat dissipation. It operates reliably even in confined spaces.
In the event of a sudden power outage, the system automatically saves the unit's status prior to the shutdown. Once power is restored, it resumes operation to the pre-shutdown state (including operating mode, set temperature, fan speed, etc.) without requiring manual reconfiguration, delivering smarterservice.
In the event of a sudden power outage, the system automatically saves the unit's status prior to the shutdown. Once power is restored, it resumes operation to the pre-shutdown state (including operating mode, set temperature, fan speed, etc.) without requiring manual reconfiguration, delivering smarterservice.
If an indoor unit requires power outage for maintenance due to a malfunction, it can be independently powered off for repair without affecting the operation of the entire system. Other indoor units within the system can continue to operate normally.
If an indoor unit requires power outage for maintenance due to a malfunction, it can be independently powered off for repair without affecting the operation of the entire system. Other indoor units within the system can continue to operate normally.
The system automatically assigns addresses to indoor units, eliminating the need for manual DIP switch setting. one-touch address query and configuration via the controller, making operation smarter and more convenient.
The system automatically assigns addresses to indoor units, eliminating the need for manual DIP switch setting. one-touch address query and configuration via the controller, making operation smarter and more convenient.
One-touch test operation on the outdoor unit enables cooling/heating trial runs of the system, streamlining on-site debugging and improving installation quality.
One-touch test operation on the outdoor unit enables cooling/heating trial runs of the system, streamlining on-site debugging and improving installation quality.
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