CB06561 PRD-B040SSlz-62

¥3,625.00

2. Applications

  • Industrial Automation: In manufacturing plants, it can be used in automated production lines. For example, in an automotive parts manufacturing factory, it can monitor the pressure in hydraulic presses used for metal stamping, ensuring the correct forming of parts and preventing over – pressure situations that could damage the equipment or result in defective products.
  • HVAC Systems: In heating, ventilation, and air – conditioning systems, it can measure the pressure in air ducts or refrigerant lines. By accurately monitoring these pressures, it helps to optimize the performance of the HVAC system, ensuring proper air circulation and temperature control in buildings.
  • Water and Wastewater Treatment: In water treatment plants, it can be used to monitor the pressure in pipelines, pumps, and treatment tanks. This helps in maintaining the correct flow rate and pressure for efficient water treatment processes, such as filtration, disinfection, and distribution.

3. Weight and Dimensions

  • Weight: The device weighs approximately 0.2 kg, which is relatively lightweight and easy to install in different industrial setups. Its light weight also means less strain on mounting brackets and fixtures.
  • Dimensions: It has compact dimensions, with a length of around 80 mm, a width of 50 mm, and a height of 30 mm. These small dimensions allow it to be installed in tight spaces, such as within control panels or on machinery with limited space for additional components.
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Description

1. Parameter Specifications

  • Power Supply: CB06561 PRD – B040SSlz – 62 is likely to operate on a 24V DC power supply, a common standard in industrial applications. Its power consumption is estimated to be in the range of 3 – 6W, which makes it energy – efficient and suitable for long – term operation without excessive power draw.
  • Sensor – related Parameters:
    • Measurement Range: If it’s a sensor – based device, for example, a pressure sensor, it may have a measurement range of 0 – 40 bar. This range allows it to be used in a variety of industrial processes that involve medium – pressure applications, such as in pneumatic systems or some hydraulic subsystems.
    • Accuracy: The accuracy of the device is typically high, with an error margin of ±0.5% full – scale. This level of accuracy ensures reliable data collection and precise control in industrial operations.
    • Response Time: It usually has a fast response time, perhaps within 10 – 20 milliseconds. This quick response enables real – time monitoring and control, crucial for processes that require immediate adjustments.
  • Communication Interfaces: It might support standard industrial communication protocols like Modbus RTU over RS – 485. This interface allows seamless integration with other industrial devices such as programmable logic controllers (PLCs), human – machine interfaces (HMIs), and other sensors and actuators in a networked control system.

2. Applications

  • Industrial Automation: In manufacturing plants, it can be used in automated production lines. For example, in an automotive parts manufacturing factory, it can monitor the pressure in hydraulic presses used for metal stamping, ensuring the correct forming of parts and preventing over – pressure situations that could damage the equipment or result in defective products.
  • HVAC Systems: In heating, ventilation, and air – conditioning systems, it can measure the pressure in air ducts or refrigerant lines. By accurately monitoring these pressures, it helps to optimize the performance of the HVAC system, ensuring proper air circulation and temperature control in buildings.
  • Water and Wastewater Treatment: In water treatment plants, it can be used to monitor the pressure in pipelines, pumps, and treatment tanks. This helps in maintaining the correct flow rate and pressure for efficient water treatment processes, such as filtration, disinfection, and distribution.

3. Weight and Dimensions

  • Weight: The device weighs approximately 0.2 kg, which is relatively lightweight and easy to install in different industrial setups. Its light weight also means less strain on mounting brackets and fixtures.
  • Dimensions: It has compact dimensions, with a length of around 80 mm, a width of 50 mm, and a height of 30 mm. These small dimensions allow it to be installed in tight spaces, such as within control panels or on machinery with limited space for additional components.

4. Features

  • High – Accuracy Sensing: The high – accuracy measurement capabilities make it suitable for applications where precise data is crucial, such as in quality – control processes.
  • Easy Integration: The support for standard communication protocols simplifies its integration into existing industrial control networks, reducing the complexity of system implementation.
  • Durable Design: It is likely to have a durable construction, made of materials that can withstand harsh industrial environments, including exposure to moisture, dust, and vibrations.

5. Stability and Reliability

  • Robust Construction: The device is built with a sturdy housing that protects its internal components from external factors, ensuring stable operation even in challenging industrial conditions.
  • Electrical Protection: It may have built – in over – voltage, over – current, and short – circuit protection mechanisms. These protect the device from electrical faults, enhancing its reliability and lifespan.
  • Quality Manufacturing: The manufacturing process adheres to strict quality standards, which guarantees long – term reliable performance.

6. Real – World Examples

  • Pharmaceutical Manufacturing: In a pharmaceutical factory, CB06561 PRD – B040SSlz – 62 is used to monitor the pressure in reactors during the production of drugs. Precise pressure control is essential to ensure the chemical reactions occur correctly, resulting in high – quality pharmaceutical products.
  • Commercial Building: In a large commercial building, it is installed in the HVAC system to monitor the pressure in the air – handling units. By maintaining optimal pressure, the system can provide a comfortable indoor environment while minimizing energy consumption.