OEM pressure sensor for mobile working machines WIKA Model MH-4. With constant performance stability throughout the entire life cycle, the model MH-4 ensures the greatest possible operational reliability.
Description
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Applications for this product
Load monitoring
Hydraulic drive control
Working pressure measurement
Control pressure measurement
Features of this product
For extreme operating conditions
Compact and robust design
Diagnostic function (option)
Signal clamping (option)
Customer-specific customisation and adaptations
Developed for the extreme operating conditions in mobile working machines
Reliability and highest accuracy over the entire life cycle
High production capacities
Description
The model MH-4 is a powerful, reliable and extremely resilient pressure sensor. The challenges in practice are high: For safe machine operation, the sensor must deliver high-precision measured data, even under the most demanding conditions. With constant performance stability throughout the entire life cycle, the model MH-4 ensures the greatest possible operational reliability. Thanks to numerous interfaces, customer-specific adaptations and individualisation, the model MH-4 is ideal as an OEM pressure sensor. Since it never needs maintenance, the total cost of ownership is minimal.
Overload safety ≤ 400 bar [≤ 5,000 psi]: 3 times 600 bar [8,000 psi, 10,000 psi]: 2 times 1,000 bar: 1.5 times
Signal clamping (option) The range of the output signal can be limited. For this purpose, a lower and an upper signal threshold are defined in the sensor electronics. If the output signal reaches these threshold values, the sensor outputs a defined, constant signal value. Therefore, in operation, unwanted pressure or signal ranges are filtered out.
Diagnostic function (option) Permanent errors in the sensor electronics and temporary system overpressures can be output through defined constant output signals. A permanent error signal signifies a sensor defect and cannot be reset. The temporary error signal is reset as soon as the system pressure once again lies under the error threshold. In the application, one can therefore realise an efficient system diagnosis.
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Applications for this product
Load monitoring
Hydraulic drive control
Working pressure measurement
Control pressure measurement
Features of this product
For extreme operating conditions
Compact and robust design
Diagnostic function (option)
Signal clamping (option)
Customer-specific customisation and adaptations
Developed for the extreme operating conditions in mobile working machines
Reliability and highest accuracy over the entire life cycle
High production capacities
Description
The model MH-4 is a powerful, reliable and extremely resilient pressure sensor. The challenges in practice are high: For safe machine operation, the sensor must deliver high-precision measured data, even under the most demanding conditions. With constant performance stability throughout the entire life cycle, the model MH-4 ensures the greatest possible operational reliability. Thanks to numerous interfaces, customer-specific adaptations and individualisation, the model MH-4 is ideal as an OEM pressure sensor. Since it never needs maintenance, the total cost of ownership is minimal.
Overload safety ≤ 400 bar [≤ 5,000 psi]: 3 times 600 bar [8,000 psi, 10,000 psi]: 2 times 1,000 bar: 1.5 times
Signal clamping (option) The range of the output signal can be limited. For this purpose, a lower and an upper signal threshold are defined in the sensor electronics. If the output signal reaches these threshold values, the sensor outputs a defined, constant signal value. Therefore, in operation, unwanted pressure or signal ranges are filtered out.
Diagnostic function (option) Permanent errors in the sensor electronics and temporary system overpressures can be output through defined constant output signals. A permanent error signal signifies a sensor defect and cannot be reset. The temporary error signal is reset as soon as the system pressure once again lies under the error threshold. In the application, one can therefore realise an efficient system diagnosis.