JS1000-80KW/100KW/120KW/140KW/160KW
jiangxin/Jonson
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The 100KW~160kW series water-cooled variable frequency electromagnetic Induction control cabinet is a mature high-power control system of our company. It has a floor standing design and a luxurious appearance. Users do not need to make a distribution cabinet anymore. It comes with an intelligent temperature controller, ammeter, voltmeter, and three-phase power indicator, providing intuitive working status. Widely used in granulators, plastics, rubber, thermal oil, boilers, high-power and high-efficiency heating applications. The main circuit adopts a full bridge design, with a power of 100-160KW, using a three-phase four wire system, wide voltage use, and strong protection functions such as heating coil short circuit, open circuit, phase loss, overheating, overcurrent, overvoltage, and misconnection. The control system is our company's fifth generation full digital processing platform, a dual core 32-bit operating system, faster and more stable response, supports Modbus universal protocol, and facilitates the development and connection of secondary applications. 32-bit MCU digital control technology provides powerful digital processing capabilities. It can be widely used in industries such as plastic machinery, chemical machinery, petroleum machinery, hardware processing, wood machinery, food machinery, boilers, heating, etc.
There are several reasons for choosing to use Cabinet Type Induction Heater in industrial heating:
1. Rapid heating: Cabinet Type Induction Heater can achieve rapid heating because electromagnetic induction heating directly generates heat energy inside the heated object through electromagnetic action, without the need for traditional conduction or convection methods, avoiding heat loss during the heat transfer process and thus improving heating speed. For applications that require extensive heating and periodic operations in industrial production, electromagnetic heaters can significantly shorten heating time and improve production efficiency.
2. Efficient and energy-saving: The energy utilization efficiency of Cabinet Type Induction Heater is relatively high. It directly converts electrical energy into thermal energy without the need for intermediate conversion through other heat sources, thus reducing energy loss. Compared to traditional methods such as gas heating or resistance heating, electromagnetic heaters can provide higher energy utilization efficiency and save energy costs.
3. Uniform heating: Industrial Induction Heater can achieve uniform heating inside the heated object. Due to electromagnetic induction, eddy currents are generated inside an object through the action of a magnetic field, resulting in uniform heating distribution. This uniform heating characteristic helps improve product quality and avoid problems caused by local overheating or temperature gradients.
4. Temperature control accuracy: Electromagnetic Induction heaters can achieve precise control of the heating process by controlling parameters such as current and frequency. Due to its fast response and high thermal control performance, electromagnetic induction heating can achieve more precise temperature control and meet the needs of different heating processes.
5. Clean and environmentally friendly: Electromagnetic Induction heaters are smoke-free and dust-free during operation, with no exhaust emissions and no environmental pollution. Compared to traditional gas heating methods, electromagnetic heaters are more environmentally friendly, especially suitable for industrial production fields with high environmental requirements.
Overall, Industrial Induction Heater have the advantages of high efficiency, speed, and uniform heating in industrial heating, as well as energy-saving, environmental protection, and high temperature control accuracy. This makes it an important heating method choice in many industrial production processes.
The 100KW~160kW series water-cooled variable frequency electromagnetic Induction control cabinet is a mature high-power control system of our company. It has a floor standing design and a luxurious appearance. Users do not need to make a distribution cabinet anymore. It comes with an intelligent temperature controller, ammeter, voltmeter, and three-phase power indicator, providing intuitive working status. Widely used in granulators, plastics, rubber, thermal oil, boilers, high-power and high-efficiency heating applications. The main circuit adopts a full bridge design, with a power of 100-160KW, using a three-phase four wire system, wide voltage use, and strong protection functions such as heating coil short circuit, open circuit, phase loss, overheating, overcurrent, overvoltage, and misconnection. The control system is our company's fifth generation full digital processing platform, a dual core 32-bit operating system, faster and more stable response, supports Modbus universal protocol, and facilitates the development and connection of secondary applications. 32-bit MCU digital control technology provides powerful digital processing capabilities. It can be widely used in industries such as plastic machinery, chemical machinery, petroleum machinery, hardware processing, wood machinery, food machinery, boilers, heating, etc.
There are several reasons for choosing to use Cabinet Type Induction Heater in industrial heating:
1. Rapid heating: Cabinet Type Induction Heater can achieve rapid heating because electromagnetic induction heating directly generates heat energy inside the heated object through electromagnetic action, without the need for traditional conduction or convection methods, avoiding heat loss during the heat transfer process and thus improving heating speed. For applications that require extensive heating and periodic operations in industrial production, electromagnetic heaters can significantly shorten heating time and improve production efficiency.
2. Efficient and energy-saving: The energy utilization efficiency of Cabinet Type Induction Heater is relatively high. It directly converts electrical energy into thermal energy without the need for intermediate conversion through other heat sources, thus reducing energy loss. Compared to traditional methods such as gas heating or resistance heating, electromagnetic heaters can provide higher energy utilization efficiency and save energy costs.
3. Uniform heating: Industrial Induction Heater can achieve uniform heating inside the heated object. Due to electromagnetic induction, eddy currents are generated inside an object through the action of a magnetic field, resulting in uniform heating distribution. This uniform heating characteristic helps improve product quality and avoid problems caused by local overheating or temperature gradients.
4. Temperature control accuracy: Electromagnetic Induction heaters can achieve precise control of the heating process by controlling parameters such as current and frequency. Due to its fast response and high thermal control performance, electromagnetic induction heating can achieve more precise temperature control and meet the needs of different heating processes.
5. Clean and environmentally friendly: Electromagnetic Induction heaters are smoke-free and dust-free during operation, with no exhaust emissions and no environmental pollution. Compared to traditional gas heating methods, electromagnetic heaters are more environmentally friendly, especially suitable for industrial production fields with high environmental requirements.
Overall, Industrial Induction Heater have the advantages of high efficiency, speed, and uniform heating in industrial heating, as well as energy-saving, environmental protection, and high temperature control accuracy. This makes it an important heating method choice in many industrial production processes.
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