LM15
Incremental Magnetic Encoder


The LM15 is a contactless high-speed magnetic encoder designed for linear motion sensing in harsh environments. The LM15 features a compact sealed readhead that rides at up to 3.0 mm from the self-adhesive magnetic scale.
Features & Benefits
- Ride height from 0.1 mm to 4 mm
- Resolutions from 625 µm to 5 µm
- Axis lengths of up to 100 m
- Industry standard digital outputs
- Bidirectional reference mark
- TRS track system compatible
- Distance coded reference mark compatible
- Easy to install with wide installation tolerances
- High speed operation
- Excellent dirt immunity
- Integral set-up LED
Product data
System
- Maximum measuring length
- 50 m (up to 150 m per request)
- Encoder type
- Incremental
- Reading type
- Linear
- Accuracy grade for MS scales
- ±100 µm
- Repeatability
- < 2.5 μm at 25°C (up to 3 mm ride height)
- Hysteresis
- < 12.5 µm up to 1 mm ride height
- Pole length
- 5 mm
Mechanical
- Mass
- Readhead (1 m cable, no connector) 57 g, Cable (1 m) 34 g
Environmental
- EMC Emission
- IEC 61000-6-4
- EMC Immunity
- IEC 61000-6-2
- Shocks (6 ms)
- 300 m/s2 (IEC 60068-2-27)
- Temperature
- Operating: –10 °C to +80 °C (cable under non-dynamic conditions: -20 °C to +85 °C), Storage: –40 °C to +85 °C
- Vibrations (55 Hz to 2000 Hz)
- 300 m/s2 (IEC 60068-2-6)
Applications
Downloads
- pdfData sheet: LM15 incremental magnetic encoder system (LM15D01)
- pdfData sheet: 軸方向磁気インクリメンタルリング
- pdfData sheet: MS Incremental Magnetic Scales (MSD01)
- pdfMaximum speed tables for axial magnetic rings
- zip3D model: MS05 Magnetic Scale
- zip3D model: LM15 linear encoder
- zip3D model: LM10ECL00 End Clamp
- zip3D model: MS10 Magnetic Scale with track system
- pdfDeclaration of conformity EU LM10_LM13_LM15
- pdfDeclaration of conformity EU cover foils
- pdfDeclaration of conformity EU MS AS WL HM MR FI
- pdfInstallation guide: LM10ECL00 end clamp kit installation
- pdfInstallation guide: Table of recommended fastener tightening torques
- zipInstallation Drawing: LM15 linear encoder
- pdfTechnical article: Accuracy of incremental linear encoder systems