| Availability: | |
|---|---|
| Quantity: | |
The SH-15II/TGW is a high-temperature water source commercial heat pump water heater designed for small-to-medium commercial and industrial heating demands. The system extracts low-temperature heat energy from water sources, and upgrades the heat grade through compression technology to produce high-temperature thermal energy. With a rated heating capacity of 15kW and a maximum outlet water temperature of 120℃, the unit delivers energy-efficient heating output and aligns with current environmental protection specifications. Its compact structure and balanced performance make it suitable for scenarios including small medical facilities, mid-sized hotels and local textile workshops.
Parameter Category | Details |
|---|---|
Type | SH-15II/TGW |
Power Supply | 380V 3N~50Hz |
Rated Operating Conditions - Heating Capacity | 15KW |
Rated Operating Conditions - Input Power | 7.6KW |
Rated Operating Conditions - COP | 1.97 |
Evaporator Temperature | 50℃ / 45℃ |
Condenser Temperature | 120℃ / 115℃ |
The unit is equipped with a custom microcomputer intelligent control system, which supports one-touch start, scheduled on/off, and automatic multi-temperature zone adjustment. It is also fitted with a 485 communication port for connection with centralized control systems. This design reduces manual operation frequency, and supports remote and centralized equipment management, which fits the operational configuration of small and medium-sized commercial sites.
The unit integrates an efficient waste heat recovery system, which captures low-temperature residual heat from commercial environments, such as exhaust air from hotel air conditioning systems and wastewater from laundry facilities. The recovered heat can be converted into usable thermal energy as an auxiliary heat source for heating, which reduces primary energy input and helps users control operational energy costs.
The unit comes with 11 self-inspection protection functions, including compressor discharge temperature protection, system high and low pressure protection, anti-freezing and anti-overheating protection, motor overload protection, frequent start limit protection, and power-off memory recovery. The multi-layer protection design reduces equipment failure risk and mitigates operational impact caused by unexpected shutdowns.
The unit adopts environmentally friendly high-efficiency refrigerants. There is no combustion process during operation, and no soot, exhaust gas or pollutants are generated. This operation mode complies with relevant environmental regulations and adapts to low-carbon operational demands.
For small-to-medium batch textile production, the unit provides continuous high-temperature hot water and temperature regulation, which adapts to the water temperature requirements of the dyeing process. The fully enclosed operation generates no pollutant emissions, reducing the risk of fabric contamination. Its modular structure supports equipment expansion when production scale increases, adapting to capacity adjustment demands.
Small and mid-sized medical facilities have demands for device sterilization and 24-hour hot water for inpatients. The unit can produce 120℃ high-temperature hot water to correspond to sterilization and daily water use scenarios. It is fitted with multiple safety protection functions such as over-temperature power cut and leakage protection, and also supports remote fault diagnosis to shorten fault handling time and reduce the impact of equipment shutdown on operations.
Small papermaking operations require thermal energy in the range of 60-120℃ for pulp processing. The 120℃ high-temperature water output mode of the unit can meet this heating demand. The COP of 1.97 helps reduce energy consumption cost per ton of paper production. The fully enclosed water circuit system reduces the risk of water pollution, complying with hygiene compliance requirements for small-scale production.
Remote Monitoring: Users can track real-time device data including temperature and power consumption, as well as operating status via a mobile application, to make timely adjustments for optimized operating efficiency.
Remote Maintenance: Engineers provide remote fault analysis, online troubleshooting and instant alarm notifications, to reduce on-site service time and corresponding costs for business users.
System Integration: The 485 port allows connection to remote service systems, to support ongoing technical support and reduce operational interruptions.
It is equipped with 11 self-inspection protection functions, including compressor discharge temperature protection, system high and low pressure protection, anti-freezing and anti-overheating protection, motor overload protection, frequent start limit protection, and power-off memory recovery, to support safe equipment operation.
The system manages equipment operation and protection logic, collects host operating parameters, and sends control instructions. It supports one-touch start, automatic temperature setting, and scheduled on/off functions, and can connect to remote systems via the 485 communication port.
Users can remotely control unit switches and temperature settings, and view real-time operating data via the mobile application. Engineers provide remote fault diagnosis, online troubleshooting and alarm notifications, to help reduce maintenance costs and extend equipment uptime.