Codeur HEIDENHAIN ROD426.000B-1000-ID295434EV - Contacteur,disjoncteur,onduleur solaire,compteur électrique,batteries solaires

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Codeur HEIDENHAIN ROD426.000B-1000-ID295434EV - Contacteur,disjoncteur,onduleur solaire,compteur électrique,batteries solaires

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Codeur HEIDENHAIN ROD426.000B-1000-ID295434EV

HEIDENHAIN ROD426.000B-1000-ID295434EV est un codeur rotatif incrémental appartenant à la série de codeurs à arbre plein ROD400. Le code ID 295434EV est son numéro d'identification unique du produit.. Model Parameter Breakdown Model Part Description ROD426 Product series: incremental rotary encoder with independent bearings, requiring separate shaft coupling 000B Product version: basic type with TTL signal output 1000 Line count ...

  • Détails du produit

HEIDENHAIN ROD426.000B-1000-ID295434EV is an incremental rotary encoder belonging to the ROD400 series solid-shaft encoders. Le code ID 295434EV est son numéro d'identification unique du produit..

  1. Model Parameter Breakdown
Pièce du modèleDescription
ROD426Série de produits: incremental rotary encoder with independent bearings, requiring separate shaft coupling
000BProduct version: basic type with TTL signal output
1000Line count / resolution: 1000 lines per revolution, corresponding to 1000 pulses
ID295434EVHEIDENHAIN official product ID for precise ordering and reference
  1. Principales spécifications techniques
ParamètreSpécification
Encoder typeIncremental optical rotary encoder
Type d'arbreSolid shaft, diamètre 6 mm, longueur 9.5 mm
Flange typeSynchronous flange (Ø58 mm), centering ring 50 mm, bolt circle Ø42 mm, 3 M4 threaded holes
Output signalTTL (push-pull output), three-phase signals A, B, Z
Supply voltage5 V ±10% DC
Max scanning frequency300 kHz
Max rotational speed16,000 tr/min
Classe de protectionIP64 (conforme à la norme EN 60529)
Température de fonctionnement-40°C to +100°C
ConnexionM23 connector, 12 épingles
PoidsEnviron. 0.42 kilos
  1. Caractéristiques du produit & Applications

Fonctionnalités principales

  1. Independent bearing design: Built-in precision bearings, independent of the measured shaft for support
  2. Shaft coupling compensation: Connected via dedicated coupling to compensate axial movement and radial/angular misalignment
  3. Haute fiabilité: Fully sealed structure, IP64 protection, adapté aux environnements industriels difficiles
  4. Signal quality: TTL push-pull output with strong anti-interference performance, ideal for high-speed motion control

Applications typiques

Servo motor feedback systems

Spindle position detection in CNC machine tools

Transmission control in automated production lines

Speed and position feedback for printing, woodworking and textile machinery

Robot joint motion control

  1. Commande & Informations de remplacement
  2. Precise ordering: Contact an authorized HEIDENHAIN distributor using the full modelROD426.000B-1000or ID code “295434EV
  3. Replacement compatibility: Mechanically interchangeable with other line-count versions of the ROD426 series (par exemple. 2000 lines), differing only in electrical parameters
  4. Remarques: Use a dedicated coupling during installation to ensure concentricity and avoid excessive bearing load that shortens service life
  5. Additional Notes

This model is a standard HEIDENHAIN ROD426 series product, not custom-made

For higher resolution, alternatives include 2000-line, 2048-line versions and others

For different output signals (par exemple. 1 Vpp sine wave or HTL), consider the ROD486 (1 Vpp) or ROD436 (HTL) série

Coupling Selection & Installation Guide for HEIDENHAIN ROD426.000B-1000-ID295434EV

  1. Officially Recommended Coupling Models

For HEIDENHAIN ROD426 series encoders (solid shaft, diamètre 6 mm), the officially specified couplings are:

Coupling TypeModèleSpécificationApplication
Disk couplingK 17 (original HEIDENHAIN)Bore 6 mm × 6 mm, longueur 25 mm, high torsional stiffness, moderate misalignment compensationHigh-precision applications such as servo motors and CNC machine tools
Oldham couplingCPG series (par exemple. MIKI PULLEY)Bore 6 mm × 6 mm, good flexibility, minimal shaft reaction forceHigh-speed rotation and applications requiring vibration absorption
Bellows coupling6 mm × 6 mmHigh flexibility, zero backlash, suitable for high-precision positioning systemsRobot joints and precision transmission devices

Critères de sélection clés

  1. Matching bore diameter: Both ends must be 6 mm (consistent with encoder shaft diameter)
  2. Recommended length: 20–30 mm (avoid insufficient torsional stiffness from excessive length)
  3. Connection type: Clamping type (recommandé) or set-screw type (ensure no damage to encoder shaft)
  4. Matériel: Aluminum alloy (lightweight, good heat dissipation) or stainless steel (high strength, corrosion resistance)
  5. Coupling Installation Procedure

2.1 Préparation

Clean the encoder shaft and motor shaft, removing oil, burrs and rust

Prepare appropriate tools (clé dynamométrique, dial indicator, cleaning agent)

Check flatness of encoder flange and mounting base (flatness error ≤ 0.02 mm)

2.2 Installation Flow

  1. Mount the encoder

Secure the encoder synchronous flange (Ø58 mm) to the equipment end cover using 3 M4 bolts at a torque of 1.5 Nm

Ensure tight, gap-free contact between flange and mounting base

  1. Install the coupling

First mount one end of the coupling onto the motor shaft and pre-tighten clamping bolts (torque 0.8–1.2 Nm)

Align the two shafts by adjusting the motor/encoder position, then attach the other end to the encoder shaft

Tighten all clamping bolts evenly and symmetrically to the torque specified in the coupling manual

  1. Concentricity calibration (critical step)

Measure radial runout (≤ 0.03 mm) and axial play (≤ 0.02 mm) using a dial indicator

Angular misalignment must be limited to ≤ 0.5° (disk coupling) or ≤ 1.0° (Oldham coupling)

Adjust motor position until the above accuracy is achieved

  1. Critical Installation Notes (Key Limits)
Misalignment TypeMaximum Allowable ValueConsequence of ExceedanceCorrection Method
Radial misalignment≤ 0.05 mmExtra load on encoder bearings, reduced service life, signal fluctuationAdjust motor position, compensate with flexible coupling
Angular misalignment≤ 0.5° (disk) / ≤ 1.0° (Oldham)Coupling fatigue failure, encoder shaft bendingRealign, increase coupling length or use more flexible coupling
Axial misalignment± 0.5 mmGap variation between code disk and scanning head, signal lossControl motor axial play, select coupling with axial compensation
BacklashZero backlash (recommandé)Reduced positioning accuracy, lag during reverse motionSelect zero-backlash coupling (par exemple. bellows type)

Important Warnings

  1. Rigid connection is forbidden: Always use a flexible coupling. Never directly rigidly connect the encoder shaft to the motor shaft.
  2. Shaft load limits: Maximum permissible radial load 10 N, axial load 5 N; exceeding these will damage bearings.
  3. Installation sequence: Mount the encoder flange first, then the coupling, then calibrate concentricity. Reverse order is strictly forbidden.
  4. Protection: Install a protective cover after mounting to prevent dust and oil ingress and maintain IP64 rating.
  5. Entretien & Dépannage

4.1 Entretien courant

-Regularly check coupling bolt tightness (every 3 mois)

Clean encoder housing to avoid poor heat dissipation

Monitor encoder output signals; inspect coupling if abnormalities occur

4.2 Défauts courants & Solutions

SymptomCause possibleSolution
Signal fluctuation / missing pulsesLoose coupling or excessive concentricity errorRetighten bolts and recalibrate concentricity within limits
Excessive encoder heatingExcessive radial load, bearing wearCheck alignment, replace damaged coupling and bearings
Coupling breakageExcessive angular misalignment beyond compensationUse more flexible coupling and perform precise realignment
  1. Selection Advice & Alternatives

Recommendations by Application

High-precision positioning: Prefer original HEIDENHAIN K17 disk coupling for maximum accuracy and stability

High-speed rotation (>8000 tr/min): Recommended Oldham coupling (par exemple. CPG series) with low shaft reaction force to protect encoder bearings

Harsh environments: Stainless steel couplings for improved corrosion resistance

Cost-sensitive projects: High-quality domestic 6 mm × 6 mm disk couplings with performance close to original parts

Complete List of HEIDENHAIN Encoders

  1. Encoder Classification Overview

HEIDENHAIN encoders are mainly divided into three categories: rotary encoders (with built-in bearings / separate bearings), angle encoders (modular / enclosed), and linear encoders (scellé / ouvrir), used for position and speed feedback in various industrial scenarios.

  1. Rotary Encoder Series List

2.1 Rotary Encoders with Separate Bearings (Require Independent Shaft Coupling)

SérieTaperShaft TypeSignal OutputTypical Model ExamplesPrincipales fonctionnalités
ROD 400 SérieIncrementalSolid shaft 6mmTTL/HTL/1VppROD426.000B-1000-ID295434EVMax speed 16,000 tr/min, IP64 protection, 58mm synchronous flange
ROD436/ROD486
ROD 1000 SérieIncrementalSolid shaft 6mmTTL/HTL/1VppROD1050/ROD1080Conception compacte, haute résolution, suitable for servo motors
ROC 1000 SérieAbsoluteSolid shaft 6mmEnDat 2.2ROC1150/ROC1180Single-turn absolute position, haute fiabilité
ROQ 1000 SérieAbsoluteSolid shaft 6mmEnDat 2.2ROQ1150/ROQ1180Multi-turn absolute position, battery backup

Detailed Specifications of ROD426.000B-1000-ID295434EV:

Line count: 1000 lines/rev, 1000 pulses

Shaft diameter: 6mm solid shaft, length 9.5mm

Flange: Ø58mm synchronous flange, centering ring 50mm

Signal: TTL push-pull output (3 phases A, B, Z)

Power supply: 5V±10% DC, max scanning frequency 300kHz

Classe de protection: IP64, operating temperature -40°C to +100°C

Connexion: M23 connector, 12 épingles, weight approx. 0.42kilos

2.2 Rotary Encoders with Built-in Bearings (With Stator Coupling)

SérieTaperShaft TypeInterfaceModèle typiqueApplication
ERN 1000 SérieIncrementalTapered shaft / blind hollow shaftTTL/HTLERN1387/ERN1381Servo motor feedback, high positioning accuracy
ERN 400 SérieIncrementalTapered shaft / blind hollow shaftTTL/HTLERN420/ERN430Conception compacte, suitable for small motors
ECN 1000 SérieAbsoluteBlind hollow shaftEnDat 2.2ECN1313/ECN1325Single-turn absolute, stator coupling, housing diameter 35mm
EQN 1000 SérieAbsoluteBlind hollow shaftEnDat 2.2EQN1325/EQN1337Multi-turn absolute, battery backup, suitable for CNC machine tools
ECN 400 SérieAbsoluteBlind hollow shaftEnDat 2.2ECN413/ECN423Compact absolute encoder
ExN 400 SérieAbsoluteTapered shaft / blind hollow shaftDRIVE-CLiQExN413/ExN423Compatible replacement for Siemens systems

2.3 Inductive Rotary Encoders

SérieTaperScanning PrincipleCaractéristiquesModèle typique
KCI 100 SérieAbsoluteInductive scanningNon-contact, contamination-resistantKCI120Dplus/KCI419Dplus
KBI 100 SérieIncrementalInductive scanningHaute fiabilité, longue durée de vieKBI120/KBI419
  1. Angle Encoder Series List

3.1 Modular Angle Encoders

SérieTaperScanning MethodClasse de précisionModèle typiqueApplication
ECA 4000 SérieAbsoluteOptical±1.5to ±3ECA4400/ECA4200High-precision positioning, functional safety options
ERA 4000 SérieIncrementalOptical±2to ±5ERA4400/ERA4200Angle measurement, haute résolution
ECM 2400 SérieAbsoluteMagneticMedium accuracyECM2410/ECM2430Contamination-resistant, robust design
ERM 2000 SérieIncrementalOpticalMedium accuracyERM2280/ERM2200Large-diameter measurement, 1Vpp sinusoidal output

3.2 Enclosed Angle Encoders

SérieTaperMontagePrécisionModèle typique
RCN SeriesAbsoluteCenter mounting±3to ±10RCN2001/RCN5001Multi-turn absolute, suitable for machine tool spindles
RON SeriesAbsoluteCenter mounting±1to ±3RON285/RON786Ultra-high accuracy, glass code disk
RPN SeriesAbsoluteCenter mounting±5to ±15RPN2000/RPN5000Large bore, suitable for large rotary axes
ERP SeriesIncrementalCenter mounting±5to ±15ERP2000/ERP5000Angle measurement, haute fiabilité
  1. Linear Encoder Series List

4.1 Sealed Linear Encoders

SérieMeasuring LengthClasse de précisionInterfaceModèle typiqueApplication
LC 100 Série50–1020mm±3μmEnDat 2.2LC183/LC193Compact, suitable for small machine tools
LC 200 Série50–3020mm±3μmEnDat 2.2LC283/LC293Modèle standard, general-purpose applications
LC 400 Série50–3020mm±1μmEnDat 2.2LC483/LC493High precision, suitable for precision machine tools
LS 100 Série50–1020mm±5μmTTL/HTLLS186/LS196Economic type, for general industrial use
LS 400 Série50–3020mm±3μmTTL/HTLLS486/LS496High protection class, adapté aux environnements difficiles

4.2 Open Linear Encoders

SérieCaractéristiquesModèle typiqueApplication
LIC 3100 SérieHigh precision, long measuring lengthLIC3190Coordinate measuring machines, inspection equipment
LIC 4100 SérieUltra-high precision, functional safetyLIC4190Semiconductor equipment, precision manufacturing
LIDA 400 SérieUltra-compact, high precisionLIDA477Micro-positioning systems, medical equipment
  1. Key Parameter Comparison Table for Encoder Selection
Catégorie de paramètrePoints de sélectionRecommended Range
Signal TypeIncremental (position change) or Absolute (absolute position)Incremental for continuous motion
Absolute for positioning control
RésolutionLines / Pulses / BitsGeneral application: 1000–2048 lines
High precision: 4096–16384 lines
Shaft TypeSolid shaft / Hollow shaft / Tapered shaftTapered/hollow shaft for motor feedback
Solid shaft for independent mounting
Type d'interfaceTTL/HTL/1Vpp/EnDat/DRIVE-CLiQDRIVE-CLiQ for Siemens systems
EnDat for general control
Classe de protectionIP54/IP64/IP67Industrial environment ≥ IP64
Humid environment ≥ IP67
Maximum SpeedKey index for rotary applicationsMotor application ≥ 6000 tr/min
Spindle application ≥ 10,000 tr/min
  1. List of Couplings Suitable for ROD426 (User Priority)
Coupling TypeModèle recommandéSpécificationApplication
Disk CouplingHEIDENHAIN K176mm×6mm, length 25mmHigh-precision positioning, high torsional stiffness
Oldham CouplingMIKI PULLEY CPG Series6mm×6mmHigh-speed rotation, vibration absorption
Bellows CouplingStandard 6mm version6mm×6mm, zero backlashRobot joints, precision drives
  1. Ordering and Replacement Guide
  2. Precise Ordering: Contact an authorized HEIDENHAIN distributor using the full model (par ex., ROD426.000B-1000) or ID number (par ex., 295434EV).
  3. Series Compatibility: ROD400 series share the same mechanical dimensions and differ only in electrical parameters, allowing interchangeable installation.
  4. Replacement Suggestions:

Incremental to Absolute: ROD series → ROC/ROQ series

TTL to 1Vpp: ROD426 → ROD486

Higher protection: Standard type → Enhanced sealed type (IP67)

Cross-Brand Model Cross-Reference for HEIDENHAIN Encoders

(ROD426.000B-1000-ID295434EV)

ArticleStandard Value (ROD426.000B-1000)
TaperIncremental optical rotary encoder (with separate bearings)
Résolution1000 lines/rev, 1000 pulses
ShaftSolid shaft, diamètre 6 mm, longueur 9.5 mm
FlangeSynchronous flange Ø58 mm, centering ring 50 mm, bolt circle Ø42 mm, 3×M4
Output SignalTTL push-pull output (3 channels: UN, B, Z)
Supply Voltage5 V ±10% DC
Max. Speed16,000 tr/min
Classe de protectionIP64
ConnexionM23 connector, 12 épingles

Cross-Reference Table for Replacement Models of Major Brands

  1. Pepperl+Fuchs
ModèleParamètres de correspondance clésNotes on Differences
RVI50P-09BAAA3TN-00100Incremental, 1000 pulses, 6 mm solid shaft, TTL output, Ø58 mm housing, IP65Higher protection (IP65), slight flange differences; mounting holes to be verified
RHI58N-0BAK1R61N-00100Incremental, 1000 pulses, 6 mm solid shaft, TTL output, synchronous flange, IP6558 mm housing diameter, strong anti-interference, adapté aux environnements difficiles
  1. Hengstler
ModèleParamètres de correspondance clésNotes on Differences
RI58-O/1000EK.42KBIncremental, 1000 pulses, 6 mm solid shaft, TTL output, Ø58 mm synchronous flange, IP64Multi-voltage compatible (5V/12V/24V), maximum. vitesse 12,000 tr/min (slightly lower than standard)
RI58-H/1000AK.42KBIncremental, 1000 pulses, 6 mm solid shaft, TTL output, synchronous flange, IP65Higher protection, long bearing life, suitable for frequent start-stop applications
  1. Baumer
ModèleParamètres de correspondance clésNotes on Differences
OG71 DN 1000 CIIncremental, 1000 pulses, 6 mm solid shaft, TTL output, Ø58 mm synchronous flange, IP66Higher protection (IP66), 5V/24V selectable, maximum. vitesse 10,000 tr/min
OG71 DN 1000 COIncremental, 1000 pulses, 6 mm solid shaft, TTL output, synchronous flange, IP64Fully matched mechanical dimensions, 5V supply, idéal pour un remplacement direct
  1. MALADE
ModèleParamètres de correspondance clésNotes on Differences
VFS60A-THK10000Incremental, 1000 pulses, 6 mm solid shaft, TTL output, Ø58 mm housing, IP65Advanced optical scanning, strong vibration resistance, maximum. vitesse 12,000 tr/min
DFS60B-T8PK10000Incremental, 1000 pulses, 6 mm solid shaft, TTL output, synchronous flange, IP645V supply, M23 connector, fully compatible mounting dimensions
  1. Omron
ModèleParamètres de correspondance clésNotes on Differences
E6B2-CWZ6C 1000P/RIncremental, 1000 pulses, 6 mm solid shaft, TTL output, IP64Housing diameter 40 mm (smaller than 58 mm), mounting bracket required, maximum. vitesse 6,000 tr/min (low)
E6B2-CWZ1X 1000P/RIncremental, 1000 pulses, 6 mm solid shaft, TTL output, IP6458 mm housing, synchronous flange, 5V supply, maximum. vitesse 10,000 tr/min
  1. Keyence
ModèleParamètres de correspondance clésNotes on Differences
EV5003Incremental, 1000 pulses, 6 mm solid shaft, TTL output, Ø58 mm housing, IP65High-speed response (jusqu'à 200 kHz), built-in diagnostics, higher cost
EV5103Incremental, 1000 pulses, 6 mm solid shaft, TTL output, synchronous flange, IP65High protection, strong anti-interference, suitable for precision positioning
  1. Other Brands
MarqueModèleParamètres de correspondance clés
BaumerGXMMW.A203PA1Incremental, 1000 pulses, 6 mm solid shaft, TTL output, synchronous flange, IP67
ifmRV3100-APKG/US-1000Incremental, 1000 pulses, 6 mm solid shaft, TTL output, Ø58 mm housing, IP65
MALADEDFS60A-BDCP10000Incremental, 1000 pulses, 6 mm solid shaft, TTL output, synchronous flange, IP64
TurckRI360-01BAA0C-00100Incremental, 1000 pulses, 6 mm solid shaft, TTL output, Ø58 mm housing, IP65

Key Notes for Replacement Selection

  1. Mechanical Compatibility Priorities
  2. Shaft diameter and length: Must strictly match 6 mm × 9.5 mm, otherwise coupling installation will be difficult or bearings may be damaged
  3. Flange dimensions: Verify centering ring diameter (50 mm) and mounting holes (3×M4 on Ø42 mm circle)
  4. Housing diameter: Ø58 mm is standard; ensure sufficient installation space
  5. Electrical Parameter Matching
ParamètreMust Be IdenticalCompatible Range
Signal TypeTTL push-pull output (UN, B, Z channels)Cannot be changed, otherwise the control system cannot recognize
Supply Voltage5 V ±10% DCSome models support auto-adapt 5V/12V/24V; native 5V models preferred
Pulses1000 P/RAdjustable via system settings, but consistency recommended
Max. Speed≥16,000 rpmLower values may restrict equipment performance
  1. Installation and Application Recommendations
  2. Coupling selection: All replacement models require 6 mm × 6 mm flexible couplings (par exemple. HEIDENHAIN K17 or equivalent)
  3. Concentricity calibration: Après l'installation, radial runout ≤ 0.03 mm and angular misalignment ≤ 0.5° must be verified
  4. Protection: Ensure replacement model has IP ≥ IP64; IP65/IP67 recommended for harsh environments
  5. Signal testing: After replacement, perform signal integrity test to ensure no pulse loss or interference

Recommended Best Replacements

ApplicationModèle recommandéReason
High-precision positioningPepperl+Fuchs RHI58N-0BAK1R61N-00100Fully matched mechanical dimensions, stable TTL signal, strong anti-interference
Harsh environmentsBaumer OG71 DN 1000 CIProtection IP66, dust and moisture resistant, suitable for outdoor or washdown conditions
Cost-sensitive projectsOmron E6B2-CWZ1X 1000P/RRentable, stable performance, matched mechanical dimensions
High-speed applicationsKeyence EV5003Max. speed up to 18,000 tr/min, exceeding standard, fast signal response

Important Note: Before formal use, all replacement models are recommended to undergo mechanical fitting and electrical compatibility verification to ensure perfect matching with the original system. For critical applications, contact the brand’s technical support for professional selection guidance.

 

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