High cycle life
		High radiation resistance
		High temperature survival
		Submersible
		Stainless steel
		Infinite resolution
	
		
		These transducers are for displacement / position measurement. They make an accurate position measurement of the movement of the armature (the sliding part) relative to the body of the displacement transducer.
The LIN differential-inductance LVDTs are inductive (similar to an LVDT sensor) and because there is no contact across the sensor element it is very robust. The LVDTs are available as either unguided or spring return versions.
This sensor is appropriate for high temperature, high pressure and high nuclear radiation position measurement applications. Many applications in turbines, in nuclear power stations and in research labs are appropriate for this sensor.
	
					
											The LIN differential-inductance LVDTs are inductive (similar to an LVDT sensor) and because there is no contact across the sensor element it is very robust. The LVDTs are available as either unguided or spring return versions.
This sensor is appropriate for high temperature, high pressure and high nuclear radiation position measurement applications. Many applications in turbines, in nuclear power stations and in research labs are appropriate for this sensor.
				
					Unguided version.
				
				
					On our LIN unguided LVDTs the armature assembly is a separate component, to make a measurement the user must guide the armature inside the body without touching the sides. Our LIN unguided position measurement transducers are appropriate where external guidance is available and give truly non-contact operation
				
			
		End (axial) exit cable.
	
	
	
			D1=15.0mm (±0.12mm)
		
		
			D3=3.5mm
		
		
			D4=4.0mm
		
		
			ID=4.5mm
		
		
			TF=M3 x 0.5, 10mm
		
		
			X=Centre of range
		
				
					Spring return version.
				
				
					Our LIN spring displacement transducer has bearings to guide the armature inside the measurement sensor and a spring which pushes the armature to the fully out position.  Our LIN spring return LVDTs are appropriate where it is not possible to connect the transducer armature to the moving component being measured.
				
			
		End (axial) exit cable.
	
	
	
			D1=15.0mm (±0.12mm)
		
		
			SRD=15mm
		
		
			TF=M3 x 0.5, 13mm
		
		
			X=Centre of range
		
Specification
	| Excitation/supply (acceptable) | 0.5V to 5V rms, 2.4kHz to 9.6kHz (sinusoidal) | 
|---|---|
| Temperature coefficient (combined zero and span) | ±0.02% F.S. /℃ (typical) | 
| Electrical termination | 2m (integral cable) Longer available to order. | 
| Maximum static pressure | 20MPa (250℃ maximum) | 
Options and accessories
	
	
                
