TEL:

180 3818 6775

Announcement:

Product

新泰Sensors

more+

Linear Position Sensor

more+

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

more+

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

more+

新泰MTM2 Slider Magnetostrictive Sensor 新泰MTM3 Suspension Slider Magnetostrictive Sensor 新泰GUC2500 Mine-Grade Intrinsically Safe Magnetostrictive Displacement Sensor 新泰GUC2800 Mine-Grade Intrinsically Safe Magnetostrictive Displacement Sensor 新泰MR1 Flexible Soft Cable Type Magnetostrictive Displacement Sensor 新泰MTL2 Magnetostrictive Displacement/level Sensor 新泰MTL3 Magnetostrictive Displacement Sensor with Magnetic Ring 新泰MTL3 Magnetostrictive Displacement Sensor with Ether CAT signal output 新泰MTL4 Magnetostrictive Liquid Level Sensor 新泰MTC Pull Rod Magnetostrictive Displacement Sensor 新泰MTF Slider Magnetostrictive Displacement Sensor 新泰MTF1/MTF2 slider type magnetostrictive 新泰MTF1/MTF2 Slider type Magnetostrictive Displacement Sensor with Ether CAT signal output 新泰MTS Magnetostrictive Displacement/level Sensor 新泰MTG Pull Rod Magnetostrictive Displacement Sensor 新泰MTL5 Reinforced Sealed Magnetostrictive 新泰MTL7 Magnetostrictive Liquid Level Sensor 新泰MFTS Split-type Magnetostrictive Displacement Sensor 新泰MTM5 Vulcanization Machine Special Magnetic Suspension Displacement Sensor 新泰MTM5 Magnetic Suspension Displacement Sensor with Ether CAT signal output 新泰MPM Articulated Magnetostrictive Displacement Sensor 新泰MF Anti-corrosion Magnetostrictive Displacement Sensor 新泰MR Flexible Cable Magnetostrictive Level Sensor 新泰MTM Low Power Guide Slide type Magnetostrictive Displacement Sensor 新泰MTL3 Low-power (two-wire) Magnetostrictive Displacement Sensor 新泰MFTS1 Split-type Magnetostrictive Displacement Sensor
新泰Fully Automatic Lubricating Oil Pump

more+

新泰Electric Automatic Oil Pump / Manual Oil Pump

more+

新泰MIRAN MR-2202-2(2L) Thin Oil Lubrication Pump Controlled by PLC Type 新泰MIRAN MR-2232-2(2L) Self-control Electric Oil Lubrication Pump 新泰MIRAN MR-2202-3(3L) Thin Oil Electric Lubrication Pump 新泰MIRAN MR-2232-3(3L)Self-control Electric Oil Lubrication Pump 新泰MIRAN MRG-2202(4L) Asynchronous Dynamo Grease and Thin Oil Lubrication Intergrated Pump by PLC Type 新泰MIRAN MRG-2232(4L) Asynchronous Dynamo Grease and Thin Oil Lubrication Intergrated Pump 新泰MIRAN MRG-3202(5L) Grease and Thin Oil Lubrication Intergrated Pump by PLC Type 新泰MGH-1205-100T Semi-automatic Butter Lubrication Pump 新泰MIRAN MRG-3205(5L) Grease and Thin Oil Intergratd Pump by PLC Type 新泰MIRAN MRG-3232(5L)Grease and Thin Oil Lubrication Intergrated Pump 新泰MRG-3202(3L) Grease and Thin Oil Lubrication Intergrated Pump by PLC Type 新泰MIRAN MRG-3235(5L) Grease and Thin Oil Lubrication Electric Intergrated Pump 新泰MRG-3232(3L) Self-control Grease and Thin Oil Lubrication Pump 新泰MIRAN MRG-5202(3L) Grease and Thin Oil Lubrication Intergrated Pump by PLC Type 新泰MRG-5232-41 Self-control Grease and Thin Oil Lubrication Pump 新泰MIRAN MRG-5202-41 (4L) Grease and Thin Oil Lubrication Intergrated Pump by PLC Type 新泰MRG-5202(5L) Self-control Grease and Thin Oil Lubrication Pump with PLC Type 新泰MRG-5232(5L) Self-control Grease and Thin Oil Lubrication Pump 新泰MRH-1202-100T Semi-automatic Grease Lubrication Pump 新泰MRH-1232-100TB Automatical Grease Lubrication Pump 新泰MGH-1202-100T Semi-automatic Butter Lubrication Pump 新泰MGH-1232-100TB Self-control Butter Pump
Your current location is:Home>>新泰Product>>新泰Sensors>>Eddy Current Displacement Sensor

新泰ML33HP High-precision Eddy Current Displacement Sensor

  • Product classification:Eddy Current Displacement Sensor
  • Number of views:501
  • QR code:
  • Release time:2025-12-20
  • Overview

I. Working Principle of ML33HP High-Precision Eddy Current Displacement Sensor

The working principle of the eddy current sensor system is the eddy current effect, which belongs to an inductive measurement principle. The eddy current effect originates from the energy of the oscillation circuit. However, eddy currents can only be formed within conductive materials. Introducing an alternating current into the coil inside the sensor probe can create a magnetic field around the probe coil. If a conductor is placed in this magnetic field, according to Faraday's law of electromagnetic induction, eddy currents will be excited within the conductor. According to Lenz's Law, the magnetic field direction of the eddy current is exactly opposite to that of the coil, and this will change the impedance value of the coil inside the probe. The variation of this impedance value is directly related to the distance between the coil and the object being measured. After the sensor probe is connected to the controller, the controller can obtain the change in voltage value from the sensor probe and calculate the corresponding distance value based on this. The eddy current measurement principle can measure all conductive materials.

Because eddy currents can penetrate insulators, even metal materials with insulators on their surfaces can be used as the objects to be measured by eddy current sensors. The unique coil winding design not only makes the sensor compact in shape but also meets the requirements for its operation in high-temperature measurement environments.

II. Application Fields of ML33HP High-precision Eddy Current Displacement Sensor

By measuring the relative position between the metal object to be measured and the probe end, the eddy current displacement sensor senses and processes it into the corresponding electrical signal output. The sensor can work reliably for a long time, has high sensitivity, strong anti-interference ability, non-contact measurement, fast response speed, and is not affected by media such as oil and water. It is widely used in the long-term real-time monitoring of parameters such as shaft displacement, shaft vibration, and shaft speed of large rotating machinery And it has been extended to application fields such as satellite launch, material identification, weighing measurement, metal plate thickness measurement, and material deformation.

III. Features of ML33HP High-Precision Eddy Current Displacement Sensor

★ High precision, high resolution, and high temperature stability

★ External non-contact measurement, no wear

It is particularly suitable for complex working conditions, such as oil stains, high and low temperature environments, etc

IV. Technical Parameters of ML33HP High-Precision Eddy Current Displacement Sensor

Measuring range

1mm

2mm

4mm

5mm

Probe diameter

Φ8mm

Φ8mm

Φ11mm

Φ17mm

Linear error(%FS)

≤±0.1%FS

≤±0.1%FS

≤±0.1%FS

≤±0.15%FS

Repeatability

0.5µm

0.5µm

1µm

1µm

Resolution

1µm

Frequency response

0~10KHz

0~8KHz

Output signal

4-20mA,0-5V,0-10V,RS485

Supply voltage

+12-24VDC

Working current

Voltage type < 45mA, current type < 25mA, RS485 type < 40mA

Operating temperature

Probe: -20℃ to +60℃, preamplifier: -20℃ to +80℃

Protection grade

Probe: IP67, preamplifier: IP65

Probe cable

Default: 2m, customizable

Power cable

Default: 2m, customizable

V. Wiring Definition: (The specific wiring method is subject to the actual product.)


Cable color

Current type

Voltage type

RS485

Brown

Power positive +24VDC

Power positive  +12~24VDC

Power positive  +12~24VDC

Black

None

Power negative  0V

Power negative  0V

Blue

Current output  OUT

Output Positive  OUT+

RS485   A+

White

None

Output negative  OUT-

RS485   B-

Shielded wire

GND

GND

GND

VI. Selection Guidance

 选型.png
VII. Installation Dimensions

1. Probe

A probe is usually composed of a coil, a head, a housing, a high-frequency cable and a high-frequency connector.

During the manufacturing process, the probe head body is generally made of high-temperature resistant PPS engineering plastic, and the coil is sealed inside through "secondary injection molding". Enable the probe to work reliably in harsh environments. Since the diameter of the head body coil determines the linear range of the sensor system, we usually classify and characterize each type of probe by the external diameter of the head body. Generally, the linear range of the sensor system is approximately 1/2 to 1/4 times the diameter of the probe head.

The probe housing is used to connect and fix the probe head and serves as the clamping structure when installing the probe. The shell is generally made of 304 stainless steel by process, with standard threads engraved on it and equipped with lock nuts. In order to adapt to different applications and installation scenarios, the probe housing comes in various forms, with different threads and size specifications.

Probe external dimension drawing

探头尺寸.png

2. Preamplifier

The preamplifier is the signal processing center of the entire sensor system. On the one hand, the preamplifier provides high-frequency alternating current excitation to the probe coil to make the probe work; On the other hand, the preamplifier senses the gap changes between the probe head body and the metal conductor in front of the head body through a special circuit. After processing by the preamplifier, a voltage or current output signal that varies linearly with the gap is generated.

Preamplifier external dimensions diagram

变送器尺寸.png

  • Application