LZE-13 Series, Angle, Linear Position Measuring

Results:
8
Manufacturer
Series
Linear Range
Operating Temperature
Termination Style
Actuator Type
For Measuring
Resistance Tolerance
Grade
Mounting Type
Supplier Device Package
Rotation Angle - Electrical, Mechanical
Resistance
Qualification
Package / Case
Technology
Output Signal
Voltage - Supply
Linearity
Output
Results remaining8
Applied Filters:
LZE-13
Select
ImageProduct DetailPriceAvailabilityECAD ModelMounting TypeSupplier Device PackageOutput SignalSeriesFor MeasuringTechnologyRotation Angle - Electrical, MechanicalLinear RangeOutputActuator TypeLinearityResistance ToleranceVoltage - SupplyTermination StyleOperating TemperaturePackage / CaseGradeResistanceQualification
LZE-13-200-A-00-10-S
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Quantity
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PCB Symbol, Footprint & 3D Model
Chassis Mount
-
-
LZE-13
Linear Position
LVIT (Linear Variable Inductance Transducer)
-
0 ~ 200.00mm (0 ~ 7.87")
0V ~ 10V
Round Shaft
±0.15%
-
12V ~ 30V
Cable
-20°C ~ 105°C
Cylinder, Wire Leads
-
-
-
LZE-13-2.5-A-00-10-S
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Quantity
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PCB Symbol, Footprint & 3D Model
Chassis Mount
-
-
LZE-13
Linear Position
LVIT (Linear Variable Inductance Transducer)
-
0 ~ 2.54mm (0 ~ 0.10")
0V ~ 10V
Round Shaft
±0.15%
-
12V ~ 30V
Cable
-20°C ~ 105°C
Cylinder, Wire Leads
-
-
-
LZE-13-6.4-A-00-10-S
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Quantity
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PCB Symbol, Footprint & 3D Model
Chassis Mount
-
-
LZE-13
Linear Position
LVIT (Linear Variable Inductance Transducer)
-
0 ~ 6.35mm (0 ~ 0.25")
0V ~ 10V
Round Shaft
±0.15%
-
12V ~ 30V
Cable
-20°C ~ 105°C
Cylinder, Wire Leads
-
-
-
LZE-13-050-A-00-10-S
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Quantity
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PCB Symbol, Footprint & 3D Model
Chassis Mount
-
-
LZE-13
Linear Position
LVIT (Linear Variable Inductance Transducer)
-
0 ~ 50.00mm (0 ~ 1.97")
0V ~ 10V
Round Shaft
±0.15%
-
12V ~ 30V
Cable
-20°C ~ 105°C
Cylinder, Wire Leads
-
-
-
LZE-13-12.7-A-00-10-S
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Quantity
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PCB Symbol, Footprint & 3D Model
Chassis Mount
-
-
LZE-13
Linear Position
LVIT (Linear Variable Inductance Transducer)
-
0 ~ 12.70mm (0 ~ 0.50")
0V ~ 10V
Round Shaft
±0.15%
-
12V ~ 30V
Cable
-20°C ~ 105°C
Cylinder, Wire Leads
-
-
-
LZE-13-100-A-00-10-S
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Quantity
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PCB Symbol, Footprint & 3D Model
Chassis Mount
-
-
LZE-13
Linear Position
LVIT (Linear Variable Inductance Transducer)
-
0 ~ 100.00mm (0 ~ 3.94")
0V ~ 10V
Round Shaft
±0.15%
-
12V ~ 30V
Cable
-20°C ~ 105°C
Cylinder, Wire Leads
-
-
-
LZE-13-025-A-00-10-S
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Quantity
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PCB Symbol, Footprint & 3D Model
Chassis Mount
-
-
LZE-13
Linear Position
LVIT (Linear Variable Inductance Transducer)
-
0 ~ 25.00mm (0 ~ 0.98")
0V ~ 10V
Round Shaft
±0.15%
-
12V ~ 30V
Cable
-20°C ~ 105°C
Cylinder, Wire Leads
-
-
-
LZE-13-150-A-00-10-S
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Chassis Mount
-
-
LZE-13
Linear Position
LVIT (Linear Variable Inductance Transducer)
-
0 ~ 150.00mm (0 ~ 5.91")
0V ~ 10V
Round Shaft
±0.15%
-
12V ~ 30V
Cable
-20°C ~ 105°C
Cylinder, Wire Leads
-
-
-

About  Angle, Linear Position Measuring

Angle and linear position measuring sensors are designed to accurately determine the position of the sensor's actuator in relation to a reference point. These sensors utilize various technologies, including capacitive, Hall effect, inductive, LVDT (Linear Variable Differential Transformer), LVIT (Linear Variable Inductive Transducer), magnetoresistive, optical, or resistive technology. Angle position sensors are specifically designed to measure the rotational position of an actuator. They can be further classified based on their electrical or mechanical range and whether they allow for limited or continuous rotation. The electrical range refers to the angle measurement in degrees or radians, while the mechanical range specifies the physical limits of rotation. This differentiation allows for the selection of sensors that best match the application requirements. Linear position sensors, on the other hand, are used to measure linear displacement. They are categorized by their linear range, which can vary from 0 up to 400 inches or more. This range specification enables the selection of sensors that are suitable for different lengths of linear movement. When considering angle and linear position sensors, other factors come into play. These include the actuator type, output type and signal, mounting type, and percent linearity. Actuator types can vary, such as rotary shafts or linear sliders, depending on the specific application. The output type and signal may include analog voltage or current signals, digital signals, or even wireless communication protocols. Mounting options can include various configurations to suit different installation requirements. Lastly, percent linearity refers to the accuracy of the sensor's output relative to the actual position, with higher percentages indicating greater precision. Angle and linear position measuring sensors find applications across numerous industries, such as robotics, automotive systems, manufacturing, and aerospace. They provide accurate position feedback, enabling precise control and monitoring of moving parts or objects. These sensors contribute to improved efficiency, reliability, and safety in various systems and processes. In summary, angle and linear position measuring sensors employ a range of technologies to determine the position of an actuator. They are differentiated by their electrical or mechanical range, linear range, actuator type, output type and signal, mounting type, and percent linearity. These sensors play a crucial role in accurately measuring position in different applications, enhancing control and monitoring capabilities.