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Linear Position Sensor

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KTC11 Pull Rod Linear Displacement Sensor KTC1/LWHPull Rod Linear Displacement Sensor KTF Slider Displacement Sensor KTC2/KTC21 Pull Rod Linear Displacement Sensor KTF1 Slider Displacement Sensor KTR11/12,KTR2 Spring Self-return Position Potentiometer KTF2 Slider Displacement Sensor KTM Miniature Pull Rod Displacement Sensor KTR3/KTR4 Spring Self-return Position Potentiometer TR Spring Self-return Position Potentiometer KPC1H Hersman Plug out Pull-rod Resistance KPC1 Articulated Electronic Ruler KPM23 Small Articulated Resistance Sensor KPM22 Small Articulated Resistance Sensor KPM18 Small Articulated Resistance Sensor KPM16 Shock Travel Sensor KPM12 Shock Travel Sensor KPM12R1/KPM12R2 Self-reset Resistance Sensor WY Series High sealing Class of Resistive Displacement Sensor WDL Rod Type Displacement Sensor KSE Pull Rod Displacement Sensor KPF Flange Displacement Sensor KFM Micro Slider Type Resistance Sensor KSP Circular Tube Miniature Self-reset KSC Square Tube Miniature Self-reset Displacement sensor KS8X Micro Self-resetting Displacement Sensor KS8 S8FLP10A 8FLP10D,5k Mini Type Linear Position Micro Self-resetting Displacement Sensor KST Self resetting displacement sensor KSD Linear Position Sensor 13FLP KPFZ Flange-mounted self-resetting resistance ruler LEP displacement sensorwith Waterproof and dustproof KEP Brushless Sensor with Waterproof and Dustproof LEPF Brushless Sensor with Waterproof and Dustproof(Stroke can be customized) KPM9 Mini Type Pull Rod Displacement Sensor KSE Rod type displacement sensor KSF Micro Slide Type Displacement Sensor KSN Self-resetting Displacement Sensor
Rope/wire displacement sensor

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MPS-XXXS Pull Wire Displacement Sensor MPS-XXS Pull Wire Displacement Sensor MPS-XS Pull Wire Displacement Sensor MPS-S Pull Wire Displacement Sensor MPS-M Pull Wire Displacement Sensor MPS-L Pull Wire Displacement Sensor MPS-XL Pull Wire Displacement Sensor MPSFS2-S Waterproof Absolute Wire Rope Sensor MPSFS2-M Waterproof Absolute Wire Rope Sensor MPSFS2-L Waterproof Absolute Wire Rope Sensor MFB-MPSFS2-S Waterproof and Explosion-proof Type Wire Rod Sensor MFB-MPSFS2-M Waterproof and Explosion-proof Type Wire Rod Sensor MFB-MPSFS2-L Waterproof and Explosion-proof Type Wire Rod Sensor MBA-MPS-XXXS Intrinsically Safe Explosion-proof Pull Wire Displacement Sensor MBA-MPS-XXS Intrinsically Safe Explosion-proof Pull Wire Displacement Sensor MBA-MPS-XS Intrinsically Safe Explosion-proof Pull Wire Displacement Sensor MBA-MPS-S Intrinsically Safe Explosion-proof Pull Wire Displacement Sensor MBA-MPS-M Intrinsically Safe Explosion-proof Pull Wire Displacement Sensor MBA-MPS-L Intrinsically Safe Explosion-proof Pull Wire Displacement Sensor SM-S Pull Wire Displacement Sensor SM-M Pull Wire Displacement Sensor WEP-S Pull Wire Displacement Sensor WEP-M Pull Wire Displacement Sensor WS-S Pull Wire Displacement Sensor MDS-S Pull Wire Displacement Sensor MPS-XS Magnetic Mounting Rope Displacement Sensor MPS-L Magnetic Draw Wire Displacement Sensor MPS-M Plastic Protective Cover Pull Wire Displacement Sensor MPS-M Aluminum Alloy Protective Cover Pull Wire Displacement Sensor MPS-M Stainless Steel Protective Cover Pull Wire Displacement Sensor
Magnetostrictive displacement/liquid level sensor

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Fully Automatic Lubricating Oil Pump

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Electric Automatic Oil Pump / Manual Oil Pump

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Waterproof/explosion-proof/intrinsically safe series magnetostrictive (displacement/liquid level) sensors

Waterproof/explosion-proof/intrinsically safe series magnetostrictive (displacement/liquid level) sensors the principle is to generate a strain pulse signal when two different magnetic fields intersect, and then calculate the time period required for this signal to be detected to convert the exact position. The two magnetic fields are one from a permanent magnet in the magnetic ring and the other from an excitation pulse generated by the electronic component in the sensor bin. The excitation pulse operates at the speed of sound along a waveguide wire made with a magnetostrictive material inside the sensor. When crossing with the permanent magnetic field in the magnetic ring, the mechanical vibration generated by the waveguide wire forms a strain pulse due to the magnetostrictive phenomenon. The strain pulse is quickly detected by the sensing circuit in the electronic bin. From the time when the excitation pulse is generated to the total time when the strain pulse is detected multiplied by the fixed speed of sound, we can accurately calculate the position change of the magnet. This process is continuous, so that whenever the magnetic ring position changes, the new position is rapidly measured. Since the output signal is a true value, not proportional or needs to be reamplified, there is no signal drift or variation, let alone the need for regular remarking as in other sensors.

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