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    Magnetic Scale Linear Encoder for Flexible Wires, SSI/BISS-C/TAMA/RS485

    SKU: SUCH-LE-TMS512
    $261.19
    ● Pole width 2mm ● Repeat accuracy<2μm ● Power supply from 4.75V to 5.5V ● Communication interface SSI/BISS-C/TAMA/RS485
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    🚚 Free shipping
    🕒 Delivery date: 6-12 days
    🔁 30-day Returns
    Overview

    This high-quality magnetic scale linear encoder is designed specifically for flexible wires. The SUCH non-contact absolute magnetic linear encoder has a magnetic pitch of 2+2mm, and its position data communication interface is selectable via SSI/BISS-C/TAMA/RS485. It is available with optional 9-pin/15-pin/26-pin D-type connectors, a power supply voltage range of 4.75V to 5.5V, and features reverse polarity protection, making it suitable for high-speed, multi-motor pulley operation scenarios.

    Features

    • Featuring a widened exterior design and IP67 epoxy resin potting, the encoder boasts an extremely small detection blind zone.
    • The linear encoder uses a dual-track absolute magnetic grating encoder feedback system, which is suitable for high-speed operation scenarios.
    • During the crossing process, the encoder automatically switches between zeroing and absolute position information while maintaining smooth communication.
    • This non-contact absolute magnetic scale linear encoder supports communication protocols such as BISS-C, SSI, Tamagawa, and RS-485.

    Dimension (Unit:mm)

    Magnetic scale linear encoder dimension

    Connector Types

    Magnetic scale linear encoder connector

    Specs
    Technical Parameters
    Pole Width 2mm
    Maximum Measuring Length 482mm
    Repeat Accuracy <2μm
    Unidirectional Repeatability <1μm
    Maximum Speed 5m/s
    Electrical Parameters
    Power Supply from 4.75V to 5.5V (on the connector), reverse polarity protection
    Power Consumption <250mA (5V power supply, 15m cable length, no load)
    Setup Time After Power-On <350ms (after the setup time, the encoder will start responding according to the communication protocol)
    Position Delay <62.5μs
    Position Data Communication Interface SSI/BISS-C/TAMA/RS485 (optional)
    Connector Type 9-way D-type connector (male)/15-way D-type connector (male)/26-way D-type connector (male) (optional)
    Wiring Method Direct lead output
    Structural Parameters
    Material Encoder: aluminum alloy
    Weight 125g (read head with 0.5m cable, DB9 connector)
    Cable Parameters
    Cable Type Black, PUR high bending cable, UL AWM identification, drag chain compatible, tinned braided shield, RoHS approved
    Number of Wires 8
    Cable Outer Diameter 5.0 +0.15mm
    Wire AWG Red-grey, white-blue, brown-yellow, green-black 4x2x0.05mm2
    Cable Bending Radius Fixed installation: 35mm, free movement: 69mm, continuous bending: 83mm
    Cable Mass 31g/m
    Cable Torsion Continuous torsion is not allowed
    Ambient Temperature Parameters
    Operating Temperature -10°C~+55°C
    Storage Temperature -20C~+ 85°C
    Vibration (55Hz to 2000 Hz) 300 m/s2 (iec60068-2-6: 2007)
    Shock (11ms) 300 m/s2 (iec60068-2-6: 2007)
    Humidity 100%RH (condensation allowed)
    EMC Static Electricity EN IEC 61000-6-2: 2019
    EMC Radiation EN IEC 61000-6-4: 2019
    Environmental Sealing IP67 (according to IEC 60529: 1992+A2: 2013)
    External Magnetic Field Allowed in Working State <1 mT
    Application
    Linear encoder for assembly line



    Assembly Line

    Linear encoder for escalator



    Escalator

    Linear encoder for lifting platform



    Lifting Platform

    FAQ

    Yes. By analyzing the frequency of the pulse signals, the control system can calculate the speed of movement in addition to position.

    Magnetic scale encoders can measure from a few centimeters to several meters depending on the length of the magnetic tape or scale installed.

    A magnetic scale with alternating magnetic poles is installed along the measurement path. As the read head moves along the scale—often driven by the motion of a cable, pulley, or wire mechanism—it detects magnetic field changes and converts them into position signals.

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