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Precision Rotary Encoder
Magnetic Sensors
SKU: MS-PRE-013

Precision Rotary Encoder

精密码盘

A precision rotary encoder disk is a special magnetic-scale product engineered for high-accuracy angular displacement measurement. Unlike a single-track linear scale, the disk carries multiple tracks (dual-track or multi-track), each encoded with its own pole pattern and read by a dedicated sensor head — enabling simultaneous measurement of multiple angles, redundant cross-checking, or absolute-plus-incremental output on one disk.

AIC Engineering combines advanced magnetic encoding with signal-processing techniques to deliver high-precision rotary measurement. Multi-track disks support absolute zero-reference tracking alongside incremental high-resolution channels, eliminating the need for a separate homing routine and improving reliability in servo motors, robotics joints, CNC rotary tables, and aerospace control surfaces.

Because reading is magnetic, the disk is immune to oil mist, dust, and chips that defeat optical encoder wheels — a decisive advantage in machine-tool and industrial environments. Disk diameter, track count, pole count per track, and material are tuned per application to meet the required angular resolution, operating temperature, and mechanical envelope.

Key Features

Multi-Track Encoding

Dual- or multi-track disks — absolute reference + incremental high-resolution, or redundant cross-checking, on one disk.

No Homing Required

Absolute track provides true zero-reference — no power-on homing routine, faster startup for servo and robotics.

Immune to Contamination

Magnetic reading defeats oil mist, dust, and chips that blind optical encoder wheels — reliable in machine tools.

Customised per Application

Disk diameter, track count, pole count, and material tuned to your angular resolution and temperature requirement.

Track & Encoding Options

Configurable per application — send your angular resolution, mechanical envelope, and output protocol.

ConfigurationDescriptionTypical Use
Single-Track IncrementalOne track with periodic pole pattern; quadrature output.Simple speed / direction sensing, motor commutation.
Dual-Track (Absolute + Incremental)Absolute reference track + high-resolution incremental track.True zero-reference with high resolution, no homing.
Multi-Track RedundantMultiple tracks cross-read for redundancy.Safety-critical aerospace, robotics, medical — fault tolerance.
Multi-Pole High-ResolutionHigh pole count per track for fine angular steps.Servo motors, CNC rotary tables, precision gimbals.
Ring / Disc GeometryDisc or ring form to fit shaft or hollow-shaft mounting.Robotics joints, hollow-shaft servos, direct-drive tables.
Material SelectionNdFeB (high field) / SmCo (high temp) / bonded (complex shape).Match field strength, temperature, and geometry to the design.

Standard Dual-Track Disc Range

21 standard axially-magnetised dual-track disc models in three pole-pitch series — MU128 (≈1.28 mm), MU150 (≈1.5 mm) and MU200 (≈2.0 mm). The main track carries the incremental signal; the vernier track has one pole pair fewer, enabling single-turn absolute angle via the Nonius principle. Custom shaft sizes and mountings available on request.

Model (Order Code)Pole Pairs (Main / Vernier)Shaft Ø (mm)Carrier OD (mm)Height (mm)Carrier MaterialMounting
MU128 Series · pole pitch ≈ 1.28 mm
MU128-15-29-1.1 (22H097)32 / 3115 (H7)291.1SUS430 stainless steelPress-fit
MU128 SMD35-55-2.5 (21H095)64 / 6335 (H7)552.5SUS430 stainless steelPress-fit
MU128-35-56-2 (22H092)64 / 6335 (H7)562SUS430 stainless steelPress-fit
MU128 SMD37-56-12.6 (21H018)64 / 6337 (H7)5613Aluminium alloyPress-fit
MU150 Series · pole pitch ≈ 1.5 mm
MU150 SMD19.5-31.5-2 (22H002)32 / 3119.5 (H7)31.52.1SUS430 stainless steelPress-fit
MU150 SMD15-33.5-1.1 (22H055)32 / 3115 (H7)33.51.1SUS430 stainless steelPress-fit
MU150-20-33-2 (23H037)32 / 3120 (H7)332SUS430 stainless steelPress-fit
MU150-23-35-2 (22H113)32 / 3123 (H7)352SUS430 stainless steelPress-fit
MU150 SMD18.5-34-8 (22H041)32 / 3120.5 (H7)348SUS430 stainless steelPress-fit
MU150 SMD20-34-11 (21H017)32 / 3120 (H7)3411.5Aluminium alloyPress-fit
MU150 SMD18-34-5 (21H032)32 / 3118 (H7)345.2Aluminium alloyPress-fit
MU150 SMD20-33.5-8.7 (22H054)32 / 31M2033.58.7SUS430 stainless steelThreaded
MU150-14-34-2.2 (22H082)32 / 3114 (H7)346.2Aluminium alloyPress-fit
MU150-17-34-7.2 (22H083)32 / 3117 (H7)347.2Aluminium alloyPress-fit
MU150 SMD45-64-5 (22H050)64 / 6345 (H7)645Aluminium alloyPress-fit
MU150-44-64-7.5 (23H002)64 / 6344 (H7)647.5Aluminium alloyPress-fit
MU200 Series · pole pitch ≈ 2.0 mm
MU200 SMD25-44.5-1.4 (22H006)32 / 3125 (H7)44.51.4SUS430 stainless steelPress-fit
MU200 SMD25-49-2 (21H110)32 / 3125 (H7)492SUS430 stainless steelPress-fit
MU200-25-49-2 (23H003)32 / 3125 (H7)492SUS430 stainless steelPress-fit
MU200-35-48-2 (23H038)32 / 3135 (H7)482SUS430 stainless steelPress-fit
MU200 SMD42-52-5.5 (22H053)32 / 3142525.5SUS430 stainless steelThreaded

Full Model Specifications

Technical drawing, factory Nonius-calibration test data, and the complete dimensional parameter table for every standard model. Click a row to expand.

MU128 Series · pole pitch ≈ 1.28 mm

MU128-15-29-1.1(22H097)32 / 31 polesØ 15 (H7)29 × 1.1 mm

Dual-track axially-magnetised encoder disc: main track 32 pole pairs, vernier track 31 pole pairs; carrier OD 29 mm, shaft Ø 15 (H7) (Press-fit); carrier material: SUS430 stainless steel.

MU128-15-29-1.1 Technical Drawing
Technical Drawing
MU128-15-29-1.1 Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
CodeParameterNoteSizeToleranceUnit
A1Chip Center Radial PositionDistance from shaft center11.24—mm
A2Detection Air GapGap between magnet and chip surface0.4—mm
A3Total HeightProduct1.1+0.03mm
B1Vernier Track DiameterVernier track detection diameter18.88—mm
B2Main Track DiameterMain track detection diameter26.08—mm
B3Magnetic Material OD—29—mm
B4Magnetic Material ID—16—mm
B5Bore DiameterCarrier15H7mm
B6DiameterCarrier29—mm
M1Vernier Track Pole WidthAt vernier track detection diameter1.28—mm
M2Main Track Pole WidthAt main track detection diameter0.96—mm
MU128 SMD35-55-2.5(21H095)64 / 63 polesØ 35 (H7)55 × 2.5 mm

Dual-track axially-magnetised encoder disc: main track 64 pole pairs, vernier track 63 pole pairs; carrier OD 55 mm, shaft Ø 35 (H7) (Press-fit); carrier material: SUS430 stainless steel.

MU128 SMD35-55-2.5 Technical Drawing
Technical Drawing
MU128 SMD35-55-2.5 Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
CodeParameterNoteSizeToleranceUnit
A1Chip Center Radial PositionDistance from shaft center24.28—mm
A2Detection Air GapGap between magnet and chip surface0.4—mm
A3Total HeightProduct2.5+0.03mm
B1Vernier Track DiameterVernier track detection diameter44.95—mm
B2Main Track DiameterMain track detection diameter52.15—mm
B3Magnetic Material OD—55—mm
B4Magnetic Material ID—42—mm
B5Bore DiameterCarrier35H7mm
B6DiameterCarrier55—mm
M1Vernier Track Pole WidthAt vernier track detection diameter1.12—mm
M2Main Track Pole WidthAt main track detection diameter1.28—mm
N1Mounting HolesQty 8, evenly spacedΦ2.2—mm
MU128-35-56-2(22H092)64 / 63 polesØ 35 (H7)56 × 2 mm

Dual-track axially-magnetised encoder disc: main track 64 pole pairs, vernier track 63 pole pairs; carrier OD 56 mm, shaft Ø 35 (H7) (Press-fit); carrier material: SUS430 stainless steel.

MU128-35-56-2 Technical Drawing
Technical Drawing
MU128-35-56-2 Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
CodeParameterNoteSizeToleranceUnit
A1Chip Center Radial PositionDistance from shaft center24.28—mm
A2Detection Air GapGap between magnet and chip surface0.4—mm
A3Total HeightProduct2—mm
B1Vernier Track DiameterVernier track detection diameter44.95—mm
B2Main Track DiameterMain track detection diameter52.15—mm
B3Magnetic Material OD—55.5—mm
B4Magnetic Material ID—41.2—mm
B5Bore DiameterCarrier35H7mm
B6DiameterCarrier56—mm
M1Vernier Track Pole WidthAt vernier track detection diameter1.12—mm
M2Main Track Pole WidthAt main track detection diameter1.28—mm
MU128 SMD37-56-12.6(21H018)64 / 63 polesØ 37 (H7)56 × 13 mm

Dual-track axially-magnetised encoder disc: main track 64 pole pairs, vernier track 63 pole pairs; carrier OD 56 mm, shaft Ø 37 (H7) (Press-fit); carrier material: Aluminium alloy.

MU128 SMD37-56-12.6 Technical Drawing
Technical Drawing
MU128 SMD37-56-12.6 Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
CodeParameterNoteSizeToleranceUnit
A1Chip Center Radial PositionDistance from shaft center24.28—mm
A2Detection Air GapGap between magnet and chip surface0.4—mm
A3Total HeightProduct13+0.03mm
B1Vernier Track DiameterVernier track detection diameter44.95—mm
B2Main Track DiameterMain track detection diameter52.15—mm
B3Magnetic Material OD—55—mm
B4Magnetic Material ID—41.2—mm
B5Bore DiameterCarrier37H7mm
B6Shaft DiameterCarrier45—mm
B7DiameterCarrier56—mm
M1Vernier Track Pole WidthAt vernier track detection diameter1.12—mm
M2Main Track Pole WidthAt main track detection diameter1.28—mm
N1Tapped HolesQty 3M2——

MU150 Series · pole pitch ≈ 1.5 mm

MU150 SMD19.5-31.5-2(22H002)32 / 31 polesØ 19.5 (H7)31.5 × 2.1 mm

Dual-track axially-magnetised encoder disc: main track 32 pole pairs, vernier track 31 pole pairs; carrier OD 31.5 mm, shaft Ø 19.5 (H7) (Press-fit); carrier material: SUS430 stainless steel.

MU150 SMD19.5-31.5-2 Technical Drawing
Technical Drawing
MU150 SMD19.5-31.5-2 Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
CodeParameterNoteSizeToleranceUnit
A1Chip Center Radial PositionDistance from shaft center13—mm
A2Detection Air GapGap between magnet and chip surface0.4—mm
A3Total HeightProduct2.1+0.03mm
B1Vernier Track DiameterVernier track detection diameter22.4—mm
B2Main Track DiameterMain track detection diameter29.6—mm
B3Magnetic Material OD—31.5—mm
B4Magnetic Material ID—20.5—mm
B5Bore DiameterCarrier19.5H7mm
B6DiameterCarrier31.5—mm
M1Vernier Track Pole WidthAt vernier track detection diameter1.13—mm
M2Main Track Pole WidthAt main track detection diameter1.45—mm
MU150 SMD15-33.5-1.1(22H055)32 / 31 polesØ 15 (H7)33.5 × 1.1 mm

Dual-track axially-magnetised encoder disc: main track 32 pole pairs, vernier track 31 pole pairs; carrier OD 33.5 mm, shaft Ø 15 (H7) (Press-fit); carrier material: SUS430 stainless steel.

MU150 SMD15-33.5-1.1 Technical Drawing
Technical Drawing
MU150 SMD15-33.5-1.1 Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
CodeParameterNoteSizeToleranceUnit
A1Chip Center Radial PositionDistance from shaft center13.48—mm
A2Detection Air GapGap between magnet and chip surface0.4—mm
A3Total HeightProduct1.1+0.03mm
B1Vernier Track DiameterVernier track detection diameter23.36—mm
B2Main Track DiameterMain track detection diameter30.56—mm
B3Magnetic Material OD—33—mm
B4Magnetic Material ID—21.5—mm
B5Bore DiameterCarrier15H7mm
B6DiameterCarrier33.5—mm
M1Vernier Track Pole WidthAt vernier track detection diameter1.18—mm
M2Main Track Pole WidthAt main track detection diameter1.5—mm
MU150-20-33-2(23H037)32 / 31 polesØ 20 (H7)33 × 2 mm

Dual-track axially-magnetised encoder disc: main track 32 pole pairs, vernier track 31 pole pairs; carrier OD 33 mm, shaft Ø 20 (H7) (Press-fit); carrier material: SUS430 stainless steel.

MU150-20-33-2 Technical Drawing
Technical Drawing
MU150-20-33-2 Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
CodeParameterNoteSizeToleranceUnit
A1Chip Center Radial PositionDistance from shaft center13.48—mm
A2Detection Air GapGap between magnet and chip surface0.4—mm
A3Total HeightProduct2+0.03mm
B1Vernier Track DiameterVernier track detection diameter23.36—mm
B2Main Track DiameterMain track detection diameter30.56—mm
B3Magnetic Material OD—33—mm
B4Magnetic Material ID—20.4—mm
B5Bore DiameterCarrier20H7mm
B6DiameterCarrier33—mm
M1Vernier Track Pole WidthAt vernier track detection diameter1.18—mm
M2Main Track Pole WidthAt main track detection diameter1.5—mm
MU150-23-35-2(22H113)32 / 31 polesØ 23 (H7)35 × 2 mm

Dual-track axially-magnetised encoder disc: main track 32 pole pairs, vernier track 31 pole pairs; carrier OD 35 mm, shaft Ø 23 (H7) (Press-fit); carrier material: SUS430 stainless steel.

MU150-23-35-2 Technical Drawing
Technical Drawing
MU150-23-35-2 Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
CodeParameterNoteSizeToleranceUnit
A1Chip Center Radial PositionDistance from shaft center14.75—mm
A2Detection Air GapGap between magnet and chip surface0.4—mm
A3Total HeightProduct2+0.03mm
B1Vernier Track DiameterVernier track detection diameter25.9—mm
B2Main Track DiameterMain track detection diameter33.1—mm
B3Magnetic Material OD—35—mm
B4Magnetic Material ID—24—mm
B5Bore DiameterCarrier23H7mm
B6DiameterCarrier35—mm
M1Vernier Track Pole WidthAt vernier track detection diameter1.31—mm
M2Main Track Pole WidthAt main track detection diameter1.62—mm
MU150 SMD18.5-34-8(22H041)32 / 31 polesØ 20.5 (H7)34 × 8 mm

Dual-track axially-magnetised encoder disc: main track 32 pole pairs, vernier track 31 pole pairs; carrier OD 34 mm, shaft Ø 20.5 (H7) (Press-fit); carrier material: SUS430 stainless steel.

MU150 SMD18.5-34-8 Technical Drawing
Technical Drawing
MU150 SMD18.5-34-8 Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
CodeParameterNoteSizeToleranceUnit
A1Chip Center Radial PositionDistance from shaft center13.48—mm
A2Detection Air GapGap between magnet and chip surface0.4—mm
A3Total HeightProduct8+0.03mm
B1Vernier Track DiameterVernier track detection diameter23.36—mm
B2Main Track DiameterMain track detection diameter30.56—mm
B3Magnetic Material OD—34—mm
B4Magnetic Material ID—20.4—mm
B5Bore DiameterCarrier20.5H7mm
B6Shaft DiameterCarrier22.5—mm
B7DiameterCarrier34—mm
M1Vernier Track Pole WidthAt vernier track detection diameter1.18—mm
M2Main Track Pole WidthAt main track detection diameter1.5—mm
MU150 SMD20-34-11(21H017)32 / 31 polesØ 20 (H7)34 × 11.5 mm

Dual-track axially-magnetised encoder disc: main track 32 pole pairs, vernier track 31 pole pairs; carrier OD 34 mm, shaft Ø 20 (H7) (Press-fit); carrier material: Aluminium alloy.

MU150 SMD20-34-11 Technical Drawing
Technical Drawing
MU150 SMD20-34-11 Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
CodeParameterNoteSizeToleranceUnit
A1Chip Center Radial PositionDistance from shaft center13.48—mm
A2Detection Air GapGap between magnet and chip surface0.4—mm
A3Total HeightProduct11.5+0.03mm
B1Vernier Track DiameterVernier track detection diameter23.36—mm
B2Main Track DiameterMain track detection diameter30.56—mm
B3Magnetic Material OD—33—mm
B4Magnetic Material ID—20.4—mm
B5Bore DiameterCarrier20H7mm
B6Shaft DiameterCarrier25—mm
B7DiameterCarrier34—mm
M1Vernier Track Pole WidthAt vernier track detection diameter1.18—mm
M2Main Track Pole WidthAt main track detection diameter1.5—mm
N1Tapped Holes3, evenly spacedM2——
MU150 SMD18-34-5(21H032)32 / 31 polesØ 18 (H7)34 × 5.2 mm

Dual-track axially-magnetised encoder disc: main track 32 pole pairs, vernier track 31 pole pairs; carrier OD 34 mm, shaft Ø 18 (H7) (Press-fit); carrier material: Aluminium alloy.

MU150 SMD18-34-5 Technical Drawing
Technical Drawing
MU150 SMD18-34-5 Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
CodeParameterNoteSizeToleranceUnit
A1Chip Center Radial PositionDistance from shaft center13.48—mm
A2Detection Air GapGap between magnet and chip surface0.4—mm
A3Total HeightProduct5.2+0.03mm
B1Vernier Track DiameterVernier track detection diameter23.36—mm
B2Main Track DiameterMain track detection diameter30.56—mm
B3Magnetic Material OD—34—mm
B4Magnetic Material ID—20—mm
B5Bore DiameterCarrier18H7mm
B6Shaft DiameterCarrier20—mm
B7DiameterCarrier34—mm
M1Vernier Track Pole WidthAt vernier track detection diameter1.18—mm
M2Main Track Pole WidthAt main track detection diameter1.5—mm
MU150 SMD20-33.5-8.7(22H054)32 / 31 polesØ M2033.5 × 8.7 mm

Dual-track axially-magnetised encoder disc: main track 32 pole pairs, vernier track 31 pole pairs; carrier OD 33.5 mm, shaft Ø M20 (Threaded); carrier material: SUS430 stainless steel.

MU150 SMD20-33.5-8.7 Technical Drawing
Technical Drawing
MU150 SMD20-33.5-8.7 Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
CodeParameterNoteSizeToleranceUnit
A1Chip Center Radial PositionDistance from shaft center13.48—mm
A2Detection Air GapGap between magnet and chip surface0.4—mm
A3Total HeightProduct8.7+0.03mm
B1Vernier Track DiameterVernier track detection diameter23.36—mm
B2Main Track DiameterMain track detection diameter30.56—mm
B3Magnetic Material OD—33—mm
B4Magnetic Material ID—21.3—mm
B5Threaded Bore DiameterCarrierM20——
B6Shaft DiameterCarrier24.7—mm
B7DiameterCarrier33.5—mm
M1Vernier Track Pole WidthAt vernier track detection diameter1.18—mm
M2Main Track Pole WidthAt main track detection diameter1.5—mm
MU150-14-34-2.2(22H082)32 / 31 polesØ 14 (H7)34 × 6.2 mm

Dual-track axially-magnetised encoder disc: main track 32 pole pairs, vernier track 31 pole pairs; carrier OD 34 mm, shaft Ø 14 (H7) (Press-fit); carrier material: Aluminium alloy.

MU150-14-34-2.2 Technical Drawing
Technical Drawing
MU150-14-34-2.2 Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
CodeParameterNoteSizeToleranceUnit
A1Chip Center Radial PositionDistance from shaft center13.48—mm
A2Detection Air GapGap between magnet and chip surface0.4—mm
A3Total HeightProduct6.2+0.03mm
B1Vernier Track DiameterVernier track detection diameter23.36—mm
B2Main Track DiameterMain track detection diameter30.56—mm
B3Magnetic Material OD—34—mm
B4Magnetic Material ID—20.4—mm
B5Bore DiameterCarrier14H7mm
B6Shaft DiameterCarrier20—mm
B7DiameterCarrier34—mm
M1Vernier Track Pole WidthAt vernier track detection diameter1.18—mm
M2Main Track Pole WidthAt main track detection diameter1.5—mm
MU150-17-34-7.2(22H083)32 / 31 polesØ 17 (H7)34 × 7.2 mm

Dual-track axially-magnetised encoder disc: main track 32 pole pairs, vernier track 31 pole pairs; carrier OD 34 mm, shaft Ø 17 (H7) (Press-fit); carrier material: Aluminium alloy.

MU150-17-34-7.2 Technical Drawing
Technical Drawing
MU150-17-34-7.2 Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
CodeParameterNoteSizeToleranceUnit
A1Chip Center Radial PositionDistance from shaft center13.48—mm
A2Detection Air GapGap between magnet and chip surface0.4—mm
A3Total HeightProduct7.2+0.03mm
B1Vernier Track DiameterVernier track detection diameter23.36—mm
B2Main Track DiameterMain track detection diameter30.56—mm
B3Magnetic Material OD—34—mm
B4Magnetic Material ID—20.4—mm
B5Bore DiameterCarrier17H7mm
B6Shaft DiameterCarrier22h7mm
B7DiameterCarrier34—mm
M1Vernier Track Pole WidthAt vernier track detection diameter1.18—mm
M2Main Track Pole WidthAt main track detection diameter1.5—mm
MU150 SMD45-64-5(22H050)64 / 63 polesØ 45 (H7)64 × 5 mm

Dual-track axially-magnetised encoder disc: main track 64 pole pairs, vernier track 63 pole pairs; carrier OD 64 mm, shaft Ø 45 (H7) (Press-fit); carrier material: Aluminium alloy.

MU150 SMD45-64-5 Technical Drawing
Technical Drawing
MU150 SMD45-64-5 Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
CodeParameterNoteSizeToleranceUnit
A1Chip Center Radial PositionDistance from shaft center28.76—mm
A2Detection Air GapGap between magnet and chip surface0.4—mm
A3Total HeightProduct5+0.03mm
B1Vernier Track DiameterVernier track detection diameter53.92—mm
B2Main Track DiameterMain track detection diameter61.11—mm
B3Magnetic Material OD—64—mm
B4Magnetic Material ID—51—mm
B5Bore DiameterCarrier45H7mm
B6Shaft DiameterCarrier64h7mm
M1Vernier Track Pole WidthAt vernier track detection diameter1.34—mm
M2Main Track Pole WidthAt main track detection diameter1.5—mm
MU150-44-64-7.5(23H002)64 / 63 polesØ 44 (H7)64 × 7.5 mm

Dual-track axially-magnetised encoder disc: main track 64 pole pairs, vernier track 63 pole pairs; carrier OD 64 mm, shaft Ø 44 (H7) (Press-fit); carrier material: Aluminium alloy.

MU150-44-64-7.5 Technical Drawing
Technical Drawing
MU150-44-64-7.5 Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
CodeParameterNoteSizeToleranceUnit
A1Chip Center Radial PositionDistance from shaft center28.76—mm
A2Detection Air GapGap between magnet and chip surface0.4—mm
A3Total HeightProduct7.5+0.03mm
B1Vernier Track DiameterVernier track detection diameter53.92—mm
B2Main Track DiameterMain track detection diameter61.11—mm
B3Magnetic Material OD—64—mm
B4Magnetic Material ID—50—mm
B5Bore DiameterCarrier44H7mm
B6Shaft DiameterCarrier52—mm
B7DiameterCarrier64—mm
M1Vernier Track Pole WidthAt vernier track detection diameter1.34—mm
M2Main Track Pole WidthAt main track detection diameter1.5—mm

MU200 Series · pole pitch ≈ 2.0 mm

MU200 SMD25-44.5-1.4(22H006)32 / 31 polesØ 25 (H7)44.5 × 1.4 mm

Dual-track axially-magnetised encoder disc: main track 32 pole pairs, vernier track 31 pole pairs; carrier OD 44.5 mm, shaft Ø 25 (H7) (Press-fit); carrier material: SUS430 stainless steel.

MU200 SMD25-44.5-1.4 Technical Drawing
Technical Drawing
MU200 SMD25-44.5-1.4 Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
CodeParameterNoteSizeToleranceUnit
A1Chip Center Radial PositionDistance from shaft center18.37—mm
A2Detection Air GapGap between magnet and chip surface0.4—mm
A3Total HeightProduct1.4+0.03mm
B1Vernier Track DiameterVernier track detection diameter32.74—mm
B2Main Track DiameterMain track detection diameter40.74—mm
B3Magnetic Material OD—44—mm
B4Magnetic Material ID—29—mm
B5Bore DiameterCarrier25H7mm
B6DiameterCarrier44.5—mm
M1Vernier Track Pole WidthAt vernier track detection diameter2—mm
M2Main Track Pole WidthAt main track detection diameter1.66—mm
MU200 SMD25-49-2(21H110)32 / 31 polesØ 25 (H7)49 × 2 mm

Dual-track axially-magnetised encoder disc: main track 32 pole pairs, vernier track 31 pole pairs; carrier OD 49 mm, shaft Ø 25 (H7) (Press-fit); carrier material: SUS430 stainless steel.

MU200 SMD25-49-2 Technical Drawing
Technical Drawing
MU200 SMD25-49-2 Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
CodeParameterNoteSizeToleranceUnit
A1Chip Center Radial PositionDistance from shaft center20.45—mm
A2Detection Air GapGap between magnet and chip surface0.4—mm
A3Total HeightProduct2+0.03mm
B1Vernier Track DiameterVernier track detection diameter36.9—mm
B2Main Track DiameterMain track detection diameter44.9—mm
B3Magnetic Material OD—49—mm
B4Magnetic Material ID—32.8—mm
B5Bore DiameterCarrier25H7mm
B6DiameterCarrier49—mm
M1Vernier Track Pole WidthAt vernier track detection diameter1.87—mm
M2Main Track Pole WidthAt main track detection diameter2.2—mm
MU200-25-49-2(23H003)32 / 31 polesØ 25 (H7)49 × 2 mm

Dual-track axially-magnetised encoder disc: main track 32 pole pairs, vernier track 31 pole pairs; carrier OD 49 mm, shaft Ø 25 (H7) (Press-fit); carrier material: SUS430 stainless steel.

MU200-25-49-2 Technical Drawing
Technical Drawing
MU200-25-49-2 Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
CodeParameterNoteSizeToleranceUnit
A1Chip Center Radial PositionDistance from shaft center20.45—mm
A2Detection Air GapGap between magnet and chip surface0.4—mm
A3Total HeightProduct2+0.03mm
B1Vernier Track DiameterVernier track detection diameter36.9—mm
B2Main Track DiameterMain track detection diameter44.9—mm
B3Magnetic Material OD—49—mm
B4Magnetic Material ID—32.8—mm
B5Bore DiameterCarrier25H7mm
B6DiameterCarrier49—mm
M1Vernier Track Pole WidthAt vernier track detection diameter1.87—mm
M2Main Track Pole WidthAt main track detection diameter2.2—mm
MU200-35-48-2(23H038)32 / 31 polesØ 35 (H7)48 × 2 mm

Dual-track axially-magnetised encoder disc: main track 32 pole pairs, vernier track 31 pole pairs; carrier OD 48 mm, shaft Ø 35 (H7) (Press-fit); carrier material: SUS430 stainless steel.

MU200-35-48-2 Technical Drawing
Technical Drawing
MU200-35-48-2 Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
CodeParameterNoteSizeToleranceUnit
A1Chip Center Radial PositionDistance from shaft center20.85—mm
A2Detection Air GapGap between magnet and chip surface0.4—mm
A3Total HeightProduct2+0.03mm
B1Vernier Track DiameterVernier track detection diameter37.7—mm
B2Main Track DiameterMain track detection diameter45.7—mm
B3Magnetic Material OD—48—mm
B4Magnetic Material ID—35.4—mm
B5Bore DiameterCarrier35H7mm
B6DiameterCarrier48—mm
M1Vernier Track Pole WidthAt vernier track detection diameter1.91—mm
M2Main Track Pole WidthAt main track detection diameter2.24—mm
MU200 SMD42-52-5.5(22H053)32 / 31 polesØ 4252 × 5.5 mm

Dual-track axially-magnetised encoder disc: main track 32 pole pairs, vernier track 31 pole pairs; carrier OD 52 mm, shaft Ø 42 (Threaded); carrier material: SUS430 stainless steel.

MU200 SMD42-52-5.5 Technical Drawing
Technical Drawing
MU200 SMD42-52-5.5 Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
Factory Test Data — iC-MU Evaluation Software (Nonius Calibration)
CodeParameterNoteSizeToleranceUnit
A1Chip Center Radial PositionDistance from shaft center20.45—mm
A2Detection Air GapGap between magnet and chip surface0.4—mm
A3Total HeightProduct5.5+0.03mm
B1Vernier Track DiameterVernier track detection diameter36.9—mm
B2Main Track DiameterMain track detection diameter44.9—mm
B3Magnetic Material OD—48—mm
B4Magnetic Material ID—34—mm
B5Bore DiameterCarrier42—mm
B6Shaft DiameterCarrier45—mm
B7DiameterCarrier52—mm
M1Vernier Track Pole WidthAt vernier track detection diameter1.87—mm
M2Main Track Pole WidthAt main track detection diameter2.2—mm

Bonded NdFeB Incremental Discs (AB + Z)

Multipole bonded-NdFeB encoder rings with an incremental AB track and a Z index track, assembled on SUS304 stainless-steel hubs. Eight standard sizes from Φ39 to Φ207 mm.

PhotoOD (mm)ID (mm)Height (mm)PolesAB-Track Field (GS)Z-Track Field (GS)
NdFeB 64-pole encoder disc
Φ39.2 (±0.02)Φ20 (+0.03/+0.01)12 (±0.05)64600–800325–825
NdFeB 82-pole encoder disc
Φ50.7 (−0.1)Φ20 (+0.03/−0.01)10 (±0.05)82315–452325–825
NdFeB 102-pole encoder disc
Φ63.5 (−0.1)Φ40 (+0.03/−0.01)10 (±0.05)102315–452325–825
NdFeB 124-pole encoder disc
Φ77.4 (−0.1)Φ60 (+0.03/−0.01)10 (±0.05)124315–452325–825
NdFeB 162-pole encoder disc
Φ101.6 (±0.03)Φ82 (+0.03)10 (±0.1)162600–800500–700
NdFeB 192-pole encoder disc
Φ122.3 (±0.03)Φ90 (+0.03)10 (±0.1)192600–800500–700
NdFeB 242-pole encoder disc
Φ152.6 (±0.03)Φ125 (+0.03)10 (±0.1)242600–800500–700
NdFeB 326-pole encoder disc
Φ206.7 (+0.1)Φ160 (+0.05)10 (±0.1)326315–452325–825

Hub material: SUS304 stainless steel. Surface-field values are per-track factory inspection ranges; dimensional tolerances per drawing.

Magnetic Properties & Operating Conditions

Characteristics of the MU-series dual-track discs. NdFeB incremental discs are inspected against the surface-field ranges listed above.

170 kA/m

Coercivity (Hc)

at 20 °C

20 mT

Surface Field (Br)

at 20 °C

3 mT

Field Amplitude

at 0.4 mm air gap

0.4 mm

Detection Air Gap

magnet to chip surface

−35 … +120 °C

Operating Temperature

External Field Interference

External magnetic fields alter the disc's performance: fields ≥ 1 mT reduce system accuracy, and fields ≥ 20 mT can permanently damage the disc magnetisation. Avoid direct contact with magnetic clamps or other permanent magnets.

Disk Manufacturing

Magnetic ring or disc body with encoded multi-track pole pattern, precision-ground to concentricity, and paired with sensor-head specification.

1Disk Body
  1. Material selection (NdFeB / SmCo / bonded)
  2. Sintering or bonding to disc / ring shape
  3. Precision grinding to concentricity ±0.02 mm
  4. Surface coating for environmental protection
2Multi-Track Encoding
  1. Fixture design for track layout
  2. Pulse magnetising each track to its pole pattern
  3. Per-track field distribution measurement
  4. Absolute-reference index verification
3QC & Pairing
  1. Concentricity & runout inspection
  2. Angular-accuracy sampling per track
  3. Sensor-head interface specification
  4. Protective packaging for assembly

Typical Applications

Servo Motor FeedbackRobotics Joint EncodersCNC Rotary TablesAerospace Control SurfacesDirect-Drive Rotary StagesMedical Imaging GimbalsHollow-Shaft EncodersSafety-Critical Redundant Position Sensing

Need a Custom Precision Rotary Encoder Disk?

Send your angular resolution, mechanical envelope (shaft / hollow-shaft), operating temperature, and output protocol — our engineers will design the track layout, pole count, material, and sensor-head pairing.

Discuss Custom Requirements

Frequently Asked Questions

Answers to common questions about our magnets, customisation, ordering and shipping.

What is a magnetic rotary encoder magnet?
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It is a precision multi-pole or diametrically magnetised ring/disc that provides a uniform magnetic field to a Hall/AMR sensor for accurate angular position measurement.
What accuracy can magnetic rotary encoders achieve?
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With precision magnetised rings and tight concentricity, sub-degree angular accuracy is achievable; AIC tunes pole count, magnetisation, and runout to your encoder IC.
Can you supply matched magnet + sensor ring assemblies?
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Yes. AIC supplies the magnetised ring to match your encoder IC, with optional mounting hub and concentricity verification, for motor feedback and servo applications.