High-temperature oil temperature controller
High-temperature oil temperature controller
High-temperature oil temperature controller
High-temperature oil temperature controller
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  • High-temperature oil temperature controller
  • High-temperature oil temperature controller
  • High-temperature oil temperature controller
  • High-temperature oil temperature controller

High-temperature oil temperature controller

◆Explosion-proof device (optional) ◆Oil-blowing and oil-return function (optional) ◆Oil-return temperature display (optional) ◆Automatic air-venting upon power-up ◆Heating-power switching function ◆RS485 communication interface for automated management (optional) ◆Power-on delayed cooling function (optional) ◆Isolated electrical control cabinet to extend the service life of electrical components ◆Hot-oil BY-PASS pressure-relief circuit ◆Multi-point temperature-control units available as custom orders ◆Oil-pump horsepower and heating power available as custom orders ◆Electrical components from SIEMENS, Weidmuller, LS, JUMO, ABB, and WEST (optional) ◆Temperature control range: inlet water temperature +45°C to 300°C ◆CE-certified ◆Control method: imported microcomputer control or (optional) PLC control ◆Comprehensive safety protection with fault display; maintenance and servicing require no specialized personnel

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Keywords

  • Product Description
  • Specifications
    • Commodity name: High-temperature oil temperature controller

    ◆Explosion-proof device (optional) ◆Oil-blowing and oil-return function (optional) ◆Oil-return temperature display (optional) ◆Automatic air-venting upon power-up ◆Heating-power switching function ◆RS485 communication interface for automated management (optional) ◆Power-on delayed cooling function (optional) ◆Isolated electrical control cabinet to extend the service life of electrical components ◆Hot-oil BY-PASS pressure-relief circuit ◆Multi-point temperature-control units available as custom orders ◆Oil-pump horsepower and heating power available as custom orders ◆Electrical components from SIEMENS, Weidmuller, LS, JUMO, ABB, and WEST (optional) ◆Temperature control range: inlet water temperature +45°C to 300°C ◆CE-certified ◆Control method: imported microcomputer control or (optional) PLC control ◆Comprehensive safety protection with fault display; maintenance and servicing require no specialized personnel

    ◆Explosion-proof device (optional)
    ◆ Blow-Back Oil Recovery Function (Optional)
    ◆ Oil return temperature display (optional)
    ◆ Automatic air venting upon power-up
    ◆ Heating Power Switching Function
    ◆ RS485 communication function for automated management (optional)
    ◆ Power-on delay cooling function (optional)
    ◆ Isolated electrical control box, extending the service life of electrical equipment
    ◆Hot Oil BY-PASS Pressure-Relief Circuit
    ◆ Multi-point temperature control units are available for custom order.
    ◆ Oil pump horsepower and heating power can be customized.
    ◆Electrical components are sourced from SIEMENS, Weidmuller, LS, JUMO, ABB, and WEST (optional).
    ◆ Temperature control range: Inlet water temperature +45℃ to 300℃
    ◆CE certified
    ◆Control Method: Employs an imported microcomputer or (optional) PLC control.
    ◆ Comprehensive safety protection, fault display, and no need for professional personnel for repair and maintenance.

    Project Unit KTC-18/24H KTC-36H KTC-48H KTC-72H KTC-100H KTC-120H
    Temperature control range degrees Celsius Oil inlet temperature: +45℃ to -300℃
    Temperature control accuracy degrees Celsius PID ±1℃
    Power supply   AC 3-phase 380 V 50 Hz (3-phase + Earth); AC 3-phase 440 V 60 Hz; AC 3-phase 460 V 60 Hz
    Heat transfer medium   Heat transfer oil
    Cooling method   Indirect cooling
    Expansion tank capacity L 24 30 50 60 80 100
    Heating capacity Keyword 18/24 36 48 72 100 120
    Pump power Keyword 1.5 2.2 3 4 5.5 7.5
    Pump flow L/min 100 166 208 333 416 500
    Pump pressure kg/cm² 2.7 2.8 3 3.2 4 4.8
    Maximum Power Consumption Keyword 20/26 39 52 78 107 130
    Alarm Function   Phase loss / Oil shortage / Overtemperature / Overload / Oil overflow / Heating anomaly alarm
    Cooling water piping inch 1/2 1/2 1/2 1/2 - -
    Circulating Oil Piping inch 1 1.25 1.25 1.25 2 2
    Overall Reference Dimensions mm 1220×400×1160 1220×400×1160 1600×500×1360 1600×500×1360 1720×650×1450 1720×650×1450
    The above specifications are subject to change without prior notice; custom designs and modifications can be provided for special requirements.

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Product Details

◆Explosion-proof device (optional)
◆ Blow-Back Oil Recovery Function (Optional)
◆ Oil return temperature display (optional)
◆ Automatic air venting upon power-up
◆ Heating Power Switching Function
◆ RS485 communication function for automated management (optional)
◆ Power-on delay cooling function (optional)
◆ Isolated electrical control box, extending the service life of electrical equipment
◆Hot Oil BY-PASS Pressure-Relief Circuit
◆ Multi-point temperature control units are available for custom order.
◆ Oil pump horsepower and heating power can be customized.
◆Electrical components are sourced from SIEMENS, Weidmuller, LS, JUMO, ABB, and WEST (optional).
◆ Temperature control range: Inlet water temperature +45℃ to 300℃
◆CE certified
◆Control Method: Employs an imported microcomputer or (optional) PLC control.
◆ Comprehensive safety protection, fault display, and no need for professional personnel for repair and maintenance.

Project Unit KTC-18/24H KTC-36H KTC-48H KTC-72H KTC-100H KTC-120H
Temperature control range degrees Celsius Oil inlet temperature: +45℃ to -300℃
Temperature control accuracy degrees Celsius PID ±1℃
Power supply   AC 3-phase 380 V 50 Hz (3-phase + Earth); AC 3-phase 440 V 60 Hz; AC 3-phase 460 V 60 Hz
Heat transfer medium   Heat transfer oil
Cooling method   Indirect cooling
Expansion tank capacity L 24 30 50 60 80 100
Heating capacity Keyword 18/24 36 48 72 100 120
Pump power Keyword 1.5 2.2 3 4 5.5 7.5
Pump flow L/min 100 166 208 333 416 500
Pump pressure kg/cm² 2.7 2.8 3 3.2 4 4.8
Maximum Power Consumption Keyword 20/26 39 52 78 107 130
Alarm Function   Phase loss / Oil shortage / Overtemperature / Overload / Oil overflow / Heating anomaly alarm
Cooling water piping inch 1/2 1/2 1/2 1/2 - -
Circulating Oil Piping inch 1 1.25 1.25 1.25 2 2
Overall Reference Dimensions mm 1220×400×1160 1220×400×1160 1600×500×1360 1600×500×1360 1720×650×1450 1720×650×1450
The above specifications are subject to change without prior notice; custom designs and modifications can be provided for special requirements.
  • Strong safety performance: Provide multiple anti-theft designs to ensure the safety of home and property.
  • High durability: Made of high-quality materials, corrosion-resistant and wear-resistant, with a long service life.
  • Appearance diversity: Rich design styles, perfect match with various decorations.
  • Easy operation: Intelligent design, no key required, simple and efficient to use.
  • Multifunctionality: With alarm prompts and networking functions, it meets the needs of multiple scenarios.
  • Easy installation: Compatible with a variety of door types, quick installation, and strong adaptability.

Certificate


Certificate
Certificate
Certificate

FAQ


Q

What are the common reasons for the mold temperature controller alarming and shutting down?


A

Common reasons include high-temperature protection, low liquid level alarm, overload protection, heating element failure, or pump malfunction.

Q

Why is the cooling performance of the chiller poor?


A

Possible causes include insufficient refrigerant, blocked condenser, compressor failure, or pipeline leakage. Inspections and repairs are needed.

Q

What is the working principle of a mold temperature controller (MTC)?


A

The MTC heats or cools the medium (such as water or thermal oil) to a set temperature and then circulates it through the mold or equipment via a pump to achieve precise temperature control.

Q

Why is the mold temperature controller heating up slowly?


A

Possible reasons include insufficient heating power, pump failure, pipeline blockage, or insufficient medium. These should be checked and resolved step by step.

Q

What is the difference between a mold temperature controller and a chiller?


A

The MTC is used for heating and maintaining the temperature of equipment or molds, while the chiller is mainly used for quickly cooling equipment or molds to lower the temperature.

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