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PRETEC electronic measuring inductive probes — Swiss precision contact measurement
PRETEC Swiss Made

Electronic Measuring
Inductive Probes

Half-bridge inductive probes with ≤ 0.02 μm repeatability. TESA compatible, switchable bridge configuration, and built to perform under the harshest production conditions.

🎯
≤ 0.02 μm
Repeatability
🔄
TESA Compatible
Switchable Bridge
🇨🇭
Swiss Made
Ø 8mm Standard
Overview

What Are PRETEC Inductive Probes?

PRETEC electronic measuring probes are half-bridge inductive displacement sensors designed for high-precision dimensional inspection. They work by detecting the change in position of a ferromagnetic core within a coil system. When the measuring bolt contacts the workpiece, the core moves, altering the inductance of the coil, and this change is converted into an extremely precise displacement reading.

Unlike LVDT (Linear Variable Differential Transformer) probes that use three coils, the PRETEC half-bridge design uses two active coils arranged differentially. When the core moves in one direction, one coil's inductance increases while the other decreases. This differential arrangement provides inherent temperature compensation and doubles the sensitivity compared to a single-coil design.

The coils form two arms of a Wheatstone bridge circuit, with the other two arms completed inside the display unit. PRETEC probes are uniquely switchable, the bridge configuration can be changed at the customer site by switching inside the connector, providing direct compatibility with TESA and other manufacturers' readout systems without replacing the probe itself.

All PRETEC probes share a standard Ø 8 mm body diameter and are mechanically interchangeable with probes from TESA, Mahr, Marposs, and other manufacturers using the same form factor. One probe, multiple display systems.

Key Advantages

Sub-Micron Precision

Repeatability ≤ 0.02 μm across all models. Linearity ± 0.3% of measuring range.

TESA Compatible

Switchable bridge inside connector. Works with TESA, Mahr, and other display systems.

Carbide-Chromed Body

Hardened Ø 8 mm body withstands continuous production use without dimensional drift.

Ball-Bearing Guided

Measuring bolt on precision ball bearing. Roller bearing prevents rotation and distortion.

Adjustable Travel

Pre-travel and post-travel continuously adjustable from the back of the probe.

3 Actuation Types

Spring push, pneumatic push, or vacuum retract, matched to your application.

Axial or Radial Cable

Both cable exit configurations available. Radial kit included with universal model 2940.

Customizable

Custom springs, cable length up to 20m, logo engraving, special contact points available.

Product Range

PRETEC Probe Models

Six standard models cover the full range of production measurement needs, from universal spring-push to specialized pneumatic and low-force parallelogram designs.

2940
Universal - Spring Push

The most versatile PRETEC probe. Best universal model with a total range of 4 mm. Configurable to axial or radial cable connection, radial kit included in every package.

Measuring travel± 2 mm
Overall travel4.2 mm
ActuationSpring
Cable exitAxial + Radial
ProtectionIP 64
2922
Vacuum Retract- Axial

Vacuum-retracted probe for automated gauging applications where the measuring bolt must retract during part loading/unloading. Axial cable connection.

Measuring travel± 1 mm
Overall travel3.2 mm
ActuationVacuum
Cable exitAxial
ProtectionIP 64
2923
Vacuum Retract — Radial

Same vacuum retraction as the 2922 but with radial cable and pneumatic input connections. Ideal for tight fixture configurations.

Measuring travel± 1 mm
Overall travel3.2 mm
ActuationVacuum
Cable exitRadial
ProtectionIP 64
2924
Spring - IP 65 Splash Proof

Enhanced protection rating for wet environments. Spring-actuated with IP 65 splash-waterproof body, suitable for measurements near coolant exposure.

Measuring travel± 1 mm
Overall travel3.2 mm
ActuationSpring
Cable exitAxial
ProtectionIP 65
2980
Pneumatic Push - Axial

Pneumatically actuated probe for automated systems. Adjustable measuring force via air pressure (0.6–1.1 bar). Total range of 4 mm, axial cable connection.

Measuring travel± 2 mm
Overall travel4.2 mm
ActuationPneumatic
Cable exitAxial
ProtectionIP 64
2952
Parallelogram - Low Force

Parallelogram spring mechanism for ultra-low measuring force (0–0.25 N). Designed for thin-walled, delicate, or easily deformable workpieces. Adjustable force knob.

Measuring travel± 1 mm
Overall travel2 mm
ActuationParallelogram
Force range0 – 0.25 N
Repeatability0.01 – 0.05 μm
Technical Data

Electrical Specifications

All PRETEC probes share the same electrical characteristics, ensuring full interchangeability across the product range.

13 kHz
Carrier Frequency
73.75 mV/V/mm
Sensitivity
3 Vrms
Drive Voltage
2
Output Resistive Load
Model Travel (± mm) Pretravel Total Travel Repeat. [μm] Linearity Actuation IP Cable
2940± 2 mm2.1–2.3 mm (var.)4.2 mm< 0.02 μm± 0.3%Spring64Axial + Radial
2922± 1 mm1.5–1.7 mm (fix)3.2 mm< 0.02 μm± 0.3%Vacuum64Axial
2923± 1 mm1.5–1.7 mm (fix)3.2 mm< 0.02 μm± 0.3%Vacuum64Radial
2924± 1 mm1.5–1.7 mm (fix)3.2 mm< 0.02 μm± 0.3%Spring65Axial
2980± 2 mm2.1–2.3 mm (fix)4.2 mm< 0.02 μm± 0.3%Pneumatic64Axial
2981± 2 mm2.1–2.3 mm (fix)4.2 mm< 0.02 μm± 0.3%Pneumatic64Radial
2952± 1 mm1.05–1.1 mm (fix)2 mm0.01–0.05 μm± 0.3%Parallelogram64Axial

Standard supply: All probes include 2 m PUR cable, NBR rubber gaiter (dust shield), and DIN connector. Custom options: Cable length up to 20 m, cable insulation types (PUR, PVC, PE, PP, Silicone), gaiter materials (NBR, SBR, Viton), custom engraving with your logo and serial numbers.

Product Catalogue

Browse the Full Catalogue

All PRETEC probe models, dimensional drawings, and accessories, page by page. Navigate with the arrows or click any thumbnail below.

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Download PDF Catalogue PRETEC Electronic Measuring Inductive Probes - v2410241 © 2024 Groupe PFL
Construction

Built for Harsh Conditions

PRETEC probes are designed to maintain sub-micron repeatability even in aggressive production environments, surrounded by coolant mist, metal chips, vibration, and continuous thermal cycling.

Precision ball-bearing guided bolt — the measuring shaft rides on miniature ball bearings for frictionless, repeatable linear motion. No hysteresis, no stiction.
Anti-rotation roller bearing — a secondary bearing locks the probe head against torsion, preventing the measuring bolt from spinning under side loads.
Continuously adjustable pre/post-travel — set from the back of the probe without disassembly. Fine-tune the measuring position to match your fixture geometry.
Half-bridge differential coil design — inherent temperature compensation. When one coil's inductance increases, the other decreases, canceling thermal drift.
RT 135A — Spherical measuring tip with 4 interchangeable pins
RT 130 — Standard measuring tip
PRETEC probe accessories
RT 116 — Clamping sleeve
RT 113 — Clamping sleeve

Typical Measurement Applications

Depth
Height
Length
Position
Flatness
Parallelism
Runout
Perpendicularity
True Position
Accessories

Accessories & Options

A comprehensive range of standard and custom accessories allows you to adapt PRETEC probes to any measurement configuration. All items available from stock or manufactured to your specification.

RT 130 — Standard measuring tip
RT 135A — Spherical tip with 4 pins
RT 137 — Extension rods (10–30 mm)
RT 113 / RT 116 — Clamping sleeves
RT 200 — Measuring tip for 2952
RT 201 — Adjustable offset tip
RT 203 — Cylindrical radial face
RT 225 — Clamping shaft Ø 8 for 2952
Extension cables (1 m, 5 m, 10 m, to 20 m)
Custom tips, inserts & supports
PRETEC probe accessories and measuring tips
How to Order

Selecting the Right Probe

PRETEC probes are application-matched. Here is what we need to recommend the correct model and configuration.

01

Define Your Application

Tell us what you need to measure and how the probe will be used.

  • Feature type: depth, height, length, position?
  • Manual, semi-auto, or fully automated?
  • Existing display system brand (TESA, Mahr, etc.)?
  • Environmental conditions (coolant, temperature)
02

Choose Actuation Type

Select the probe model based on your fixture and automation requirements.

  • Spring push — for manual and semi-auto gauging
  • Pneumatic push — for automated systems with controlled force
  • Vacuum retract — for fixtures requiring bolt retraction
  • Low-force parallelogram — for delicate parts
03

Specify Options

Configure cable, protection, and accessories to complete your setup.

  • Cable exit: axial or radial
  • Cable length (standard 2 m, up to 20 m)
  • Measuring tip geometry and material
  • IP rating requirement (IP 64 or IP 65)
FAQ

Frequently Asked Questions

Technical answers about PRETEC half-bridge inductive probes, compatibility, specifications, and applications.

Need help choosing the right probe model? Our engineers are ready to assist.

Ask a Technical Question
What is the difference between half-bridge and LVDT probes?

An LVDT (Linear Variable Differential Transformer) uses three coils: one primary and two secondaries. The core's position determines the ratio of voltage induced in each secondary. A half-bridge uses two active coils arranged as two arms of a Wheatstone bridge, with the other two arms inside the display unit. The half-bridge design is simpler, provides inherent temperature compensation, and is the standard used by TESA, making PRETEC probes directly compatible with TESA readout systems.

Can I use PRETEC probes with my existing TESA display?

Yes. All PRETEC probes are designed with TESA compatibility as a core feature. They operate at the same carrier frequency (13 kHz), use the same sensitivity standard (73.75 mV/V/mm), and feature a switchable bridge inside the DIN connector that can be set to match the TESA pin configuration. You can swap a TESA probe for a PRETEC probe on your existing TESATRONIC display without any reconfiguration of the readout electronics — just set the bridge switch and recalibrate.

What does "switchable bridge" mean practically?

Different probe manufacturers wire the half-bridge coils to different pins in the DIN connector. This means a probe designed for one brand's display won't work correctly on another brand's display, even though the connector fits physically. PRETEC solves this with a small switch inside the connector body that reconfigures the pin assignment. By changing the switch position, the same PRETEC probe can work with TESA, or with PRETEC's own display units, or with other compatible systems — without changing any hardware.

Which model should I choose for automated gauging?

For automated systems, choose based on how the workpiece is loaded. If the probe must retract during part loading, use the 2922/2923 (vacuum retract). If you need controlled and adjustable measuring force, use the 2980/2981 (pneumatic push) — the force varies with air pressure (0.6 to 1.1 bar). For integration into parallel guiding fixtures, any Ø 8 mm PRETEC probe fits directly.

What measuring force does a PRETEC probe exert on the workpiece?

For spring-actuated probes (2940, 2924), the measuring force at electrical zero is typically 0.45 to 0.75 N. For pneumatic probes (2980/2981), the force depends on the applied air pressure: 0.5–0.7 N at 0.6 bar or 0.85–1.15 N at 1.1 bar. For ultra-delicate parts, the low-force parallelogram model 2952 provides 0 to 0.25 N with a manual adjustment knob. The total contact force is composed of spring force + rubber gaiter resistance + shaft weight + tip weight.

How long can the probe cable be?

Standard supply is 2 meters of PUR cable. Extension cables are available in 1 m, 5 m, and 10 m lengths, and any custom length up to 20 meters is possible. Cable insulation options include PUR (standard), PVC, PE, PP, and Silicone — selected based on your environmental requirements (temperature, chemical exposure, flexibility).

Can I use PRETEC probes in wet or coolant-rich environments?

Standard probes carry an IP 64 rating, protecting against dust and water splashes. For applications with direct coolant exposure, choose the model 2924 with IP 65 splash-waterproof protection. The rubber gaiter (dust shield) material can also be upgraded from standard NBR to Viton for improved chemical resistance against aggressive coolants and cutting fluids.

How does the 2952 parallelogram probe differ from standard models?

The 2952 uses a parallelogram spring mechanism instead of a conventional coil spring. This provides extremely low and precisely adjustable measuring force (0 to 0.25 N via a knob), making it suitable for thin-walled, elastic, or easily deformable workpieces where even 0.5 N of contact force would cause measurable deflection. Note that the 2952 does not use ball-bearing guidance — the parallelogram itself provides the linear motion.

Can PRETEC probes be customized with our company logo?

Yes. PRETEC offers OEM customization including laser engraving with your company logo, custom product names, and serial numbering. Beyond cosmetic customization, we can also modify the measuring force (custom springs), cable insulation type and length, and gaiter material. Contact us with your specifications for a quotation.

What is the expected service life of a PRETEC probe?

With proper use and maintenance, PRETEC probes deliver reliable performance for millions of measuring cycles. The primary wear components are the ball bearings and the spring — both designed for extended service. The carbide-chromed body shows negligible dimensional change. Periodic repeatability checks using calibrated gauge blocks will indicate when a probe is approaching the end of its service life.

How do PRETEC probes compare to TESA probes on price?

PRETEC probes are competitively positioned against established brands while offering the unique advantage of switchable bridge compatibility. Because they are manufactured in-house by PFL Group in Switzerland using the same quality standards and materials as premium competitors, you receive equivalent or superior performance with more flexibility and customization options. Contact us for a detailed quotation based on your volume and specifications.

Where are PRETEC probes manufactured?

All PRETEC probes are designed and manufactured in Switzerland by PFL Antralux SA in Le Landeron. The complete production chain — from coil winding and body machining to final assembly, calibration, and testing — is performed in-house. This vertical integration ensures consistent quality control and allows rapid customization. The PFL Group also has sales and engineering offices in France, Romania, Serbia, and Slovakia.

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