Schmersal Z4V7H 335-11Z-M20-RMS | Cảm biến hành trình Schmersal Z4V7H 33-11Z-M20-RMS | Limit Sensor

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Schmersal Z4V7H 335-11Z-M20-RMS | Cảm biến hành trình Schmersal Z4V7H 33-11Z-M20-RMS | Limit Sensor Schmersal Z4V7H 33-11Z-M20-RMS

Schmersal Z4V7H 335-11Z-M20-RMS | Cảm biến hành trình Schmersal Z4V7H 33-11Z-M20-RMS | Limit Sensor Schmersal Z4V7H 33-11Z-M20-RMS

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Z4V7H 335-11Z-M20-RMS

Schmersal Việt Nam

Schmersal Z4V7H 335-11Z-M20-RMS | Cảm biến hành trình Schmersal Z4V7H 33-11Z-M20-RMS | Limit Sensor Schmersal Z4V7H 33-11Z-M20-RMS

Alternative Energy

 

Hydraulic systems play a crucial role in wind turbines by controlling blade pitch and yaw to maximize the amount of power generated under any wind condition while protecting the wind turbine from damage. Monitoring these and other hydraulic systems is critical to the performance and durability of wind turbines. Leading edge pressure switches and transducers from Gems Sensors deliver the accuracy and reliability needed to help meet the rapidly growing demand for economical and reliable wind energy.

Importance of hydraulic systems

In most turbines, the angle of a wind turbine blade is pitched at a specific angle in order to optimize its power output at any given wind speed. Leading wind turbine manufacturers use hydraulic pitch control because a hydraulic system uses fewer components than a mechanical system making it easier to maintain.

Critical role for sensors 

Pressure transducers or pressure switches are used to monitor the hydraulic pressure in accumulators and other areas.

  • Switches provide simple setpoint on-off safety
  • Pressure Transducers enable sophisticated predictive control

Level switches also play an important role in most wind turbines by monitoring the level of the hydraulic fluid reservoir. The aggressive nature of hydraulic fluid makes it essential to use a corrosion-resistant level switch. Gems manufactures many level switches made of stainless steel and other materials that provide reliable operation in hydraulic fluids.

Applications Include:

  • Hydraulic Blade Parking Brake
  • Hydraulic Pitch Control System
  • Yaw Control

 

Alternative Energy

 

Hydraulic systems play a crucial role in wind turbines by controlling blade pitch and yaw to maximize the amount of power generated under any wind condition while protecting the wind turbine from damage. Monitoring these and other hydraulic systems is critical to the performance and durability of wind turbines. Leading edge pressure switches and transducers from Gems Sensors deliver the accuracy and reliability needed to help meet the rapidly growing demand for economical and reliable wind energy.

Importance of hydraulic systems

In most turbines, the angle of a wind turbine blade is pitched at a specific angle in order to optimize its power output at any given wind speed. Leading wind turbine manufacturers use hydraulic pitch control because a hydraulic system uses fewer components than a mechanical system making it easier to maintain.

Critical role for sensors 

Pressure transducers or pressure switches are used to monitor the hydraulic pressure in accumulators and other areas.

  • Switches provide simple setpoint on-off safety
  • Pressure Transducers enable sophisticated predictive control

Level switches also play an important role in most wind turbines by monitoring the level of the hydraulic fluid reservoir. The aggressive nature of hydraulic fluid makes it essential to use a corrosion-resistant level switch. Gems manufactures many level switches made of stainless steel and other materials that provide reliable operation in hydraulic fluids.

Applications Include:

  • Hydraulic Blade Parking Brake
  • Hydraulic Pitch Control System
  • Yaw Control

 

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