LVDT Transducers (Linear Variable Differential Transformer)

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02560440-000
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4403063885547-LVDT-FR-10-RS485
Milont Technology Co., Ltd
OUTPUT: 4-20MA CURRENT SIGNAL; R
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Milont LVDT FR
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-
10mm
4403063885547-LVDT-GS-5-RS485
Milont Technology Co., Ltd
OUTPUT: 4-20MA CURRENT SIGNAL; R
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Milont LVDT GS
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-
5mm
4403063885547-LVDT-GT-100-A2
Milont Technology Co., Ltd
OUTPUT: 4-20MA CURRENT SIGNAL; R
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Milont LVDT GT
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-
100mm
4403063885547-LVDT-GF-250-A2
Milont Technology Co., Ltd
OUTPUT : 4-20MA CURRENT SIGNAL;
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Milont LVDT GF
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-
250mm
4403063885547-LVDT-GF-5-RS485
Milont Technology Co., Ltd
OUTPUT : 4-20MA CURRENT SIGNAL;
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Milont LVDT GF
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5mm
02560443-000
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02560498-000
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02350500-000
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02560986-000
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282.4mm
General Purpose
0°C ~ 70°C
±50.8mm
ZX-TDS04T-L
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ZX
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0°C ~ 50°C
4mm
02350703-000
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LBB
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02560567-000
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02560984-000
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DC-EC
139.4mm
General Purpose
0°C ~ 70°C
±12.7mm
02560396-000
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254mm
General Purpose
-55°C ~ 150°C
±50.8mm
02560412-000
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MHR
142.2mm
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-55°C ~ 150°C (TA)
±25.4mm
02560406-000
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MHR
13.6mm
General Purpose
-55°C ~ 150°C
±0.254mm
02560541-000
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E
44.5mm
Economical
-55°C ~ 95°C
±2.54mm
04290454-000
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72290003-000
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LVDT Transducers (Linear Variable Differential Transformer)

Linear Variable Differential Transformer (LVDT) transducers are highly accurate devices utilized for measuring position or displacement with precision. These transducers operate on a fundamental principle that involves the movement of a magnetic core in response to the displacement being measured. This movement alters the coupling between transmitting and receiving coils, resulting in an electrically measurable change. The key advantage of LVDT transducers lies in their mechanism of action, which is not susceptible to wear and tear. Unlike mechanical systems that may experience friction and degradation over time, LVDT transducers rely solely on electromagnetic principles to detect and measure displacement. This inherent design feature ensures long-term reliability and durability, making them ideal for applications requiring consistent and precise measurements. The functioning of an LVDT transducer involves a primary coil that generates an alternating current, inducing a magnetic field. This magnetic field interacts with a movable ferromagnetic core, causing it to move within a cylindrical housing. The housing contains secondary coils wound in opposing directions, which act as receivers. As the core moves, it alters the magnetic coupling between the primary and secondary coils, resulting in a differential output voltage that is linearly proportional to the applied displacement. LVDT transducers find extensive application in industries such as aerospace, automotive, robotics, and manufacturing, where accurate position or displacement measurements are critical. They offer advantages such as high resolution, excellent linearity, and wide dynamic range. Furthermore, their non-contact design eliminates mechanical wear, ensuring long-term stability and reliability in demanding environments. By employing the reliable and precise measurement capabilities of LVDT transducers, engineers and scientists can obtain accurate data for tasks such as dimensional inspections, position feedback control, material testing, and motion control systems. The robustness and longevity of LVDT transducers make them indispensable tools in various industries where precise displacement measurements are essential for optimal performance and quality assurance.