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    Incremental Shaft Rotational Encoder, 1200~3000 ppr

    SKU: SUCH-IRE-BM
    $152.96
    ● Resolution 1200~3000 ppr ● Maximum shaft speed 5000 r/min ● Voltage 5VDC/+8~30VDC ● Starting torque<0.03Nm
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    🚚 Free shipping
    🕒 Delivery date: 6-12 days
    🔁 30-day Returns
    Overview

    Cheap incremental shaft rotational encoder for sale online. SUCH incremental rotational encoder offers optional resolutions of 1200 ppr/1600 ppr/2500 ppr/3000 ppr, optional voltages of +5VDC/+8~30VDC, and 6 output modes to meet different usage needs. The shaft rotary encoder has an IP51 protection rating, uses cable edge output, has a maximum shaft speed of 5000 r/min, a starting torque of <0.03Nm, ​​and an operating temperature of -30~+85℃ (-22~+185℉).

    Feature

    • Compact and Practical: IP51 protection rating, lightweight, compact structure, and lightweight design facilitate integration and installation.
    • Stable and Reliable: Excellent anti-interference capability, stable operation in complex electromagnetic environments, and stable signal output.
    • Portable to Use: The incremental rotary encoder uses an internal ASIC chip, making assembly simple and the debugging process efficient and convenient.

    Dimension (Unit:mm)

    Incremental rotary shaft encoder dimension

    Wiring

    Color Signal
    Red Vcc
    Black GND
    Green A
    White B
    Yellow Z
    Brown A-
    Gray B-
    Orange Z-
    Specs
    Maximum Shaft Speed 5000 r/min
    Starting Torque <0.03Nm (25℃)
    Maximum Shaft Load Radial load: 50N, axial load: 20N
    Shock Resistance 50G/11ms
    Anti-vibration 10G (10~2000Hz)
    Rotational Inertia 4*10-8kgm2
    Operating Temperature -30~+85℃ (-22~+185℉)
    Storage Temperature -35~+95℃ (-31~+203℉)
    Protection Level IP51
    Weight 100g


    Electrical Parameters

    Output Circuit Open-collector Voltage
    Supply Voltage Vcc DC 5V±0.2 DC 5~24V DC 5V±0.2/DC 5~24V
    Current Consumption ≤60mA ≤60mA
    Output High Level ≥3.5V ≥Vcc-2.5V -
    Output Low Level ≤0.5V ≤0.5V -
    Rise Time Tr ≤500ns ≤1500ns -
    Fall Time Tf ≤100ns ≤300ns -
    Maximum Frequency Response 0 ~ 100kHz

     

    Output Circuit Push-pull Line Driver
    Supply Voltage Vcc DC 5V±0.2/DC 5~24V DC 5V±0.2 DC 5~24V
    Current Consumption ≤60mA ≤100mA
    Output High Level - ≥2.5V ≥Vcc-2.5V
    Output Low Level - ≤0.5V ≤1.0V
    Rise Time Tr - ≤200ns ≤500ns
    Fall Time Tf - ≤200ns ≤200ns
    Maximum Frequency Response 0 ~ 100kHz


    Model Selection

    Shaft Type S: Shaft
    Diameter of Shell 52: 52mm
    58: 58mm
    Diameter of Shaft 08: 8mm
    10: 10mm
    Connection Type G: Cable edge output
    Cable Length* 1: 1m
    2: 2m
    3: 3m
    4: 4m
    Resolution 1200: 1200 ppr
    1600: 1600 ppr
    2500: 2500 ppr
    3000: 3000 ppr
    Production Identifier B
    Z Signal M: Output 1 if receiving Z signal
    Z Signal Wavelength Default: 1T
    Output Mode * C: Open-collector NPN
    CP: Open-collector PNP
    T: Voltage output NPN+R
    P: Push-pull output NPN+PNP
    L: Line driver 26LS31
    K: Line driver 7272
    Voltage * 5: +5VDC
    830: +8~30VDC

    Note: * indicates optional parameters. You can select parameters from the drop-down list. Some custom parameters cannot be selected directly from the list. Please contact us for assistance.

    Application
    Incremental encoder for displacement measurement



    Displacement Measurement

    Incremental encoder for position measurement



    Position Measurement

    Incremental encoder for speed control



    Speed Control

    FAQ

    Encoder reproducibility (repeatability) is mainly affected by mechanical installation accuracy (coaxiality, radial runout), bearing quality, code disk machining accuracy, signal electrical noise, temperature changes, and vibration and shock. Eccentric installation or axial movement will directly reduce repeatability.

    Rotary encoders can be used in conjunction with ball screws, synchronous pulleys, or measuring wheels to convert rotary motion into linear motion. Linear displacement = distance moved per revolution × number of revolutions. For example, if the lead screw is 5 mm, then each revolution corresponds to a 5 mm displacement; the actual distance moved can be calculated using the number of pulses.

    Push-pull output is a drive method that can output both high and low levels, offering strong driving capability and good anti-interference performance. It is suitable for short to medium distance signal transmission and is more stable than open collector output.

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