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Magnetostrictive and Magnetic Displacement Sensor
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The principle of MFTS split-type magnetostrictive displacement sensor 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, so as to convert the ...
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The principle of MPM articulated magnetostrictive displacement sensor 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, thus calculating the ...
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The principle of MTL3 magnetic ring magnetostrictive displacement sensor 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, so as to calculate...
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The principle of the MTL2 magnetostrictive displacement/level sensor 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 calculate the exact ...
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The principle of the MTM3 Suspension slider magnetostrictive sensor 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, thus calculating the ex...
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The principle of the MTM2 slider magnetostrictive sensor 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, thus calculating the exact positio...
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The principle of MTF slide-type magnetostrictive displacement sensor is to generate a strain pulse signal when two different magnetic fields meet, and then calculate the time period required for this signal to be detected, so as to calculate the exac...