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    Incremental Rotary Encoder, Hollow Shaft, 5400 ppr

    $926.16
    Favourable price optical incremental encoder adopts hollow shaft, can sleeve-jointed on motor output shaft, high resolution, high reliability, high quality, several output modes to choose, manufacturer direct sale.
    SKU: ATO-IRE-5400PH
    Free shipping
    Delivery date: 6-12 days

    Incremental rotary encoders with 5400 ppr can be used for robots, workbenches, injection molding machines, electronic equipment, printing and packaging machinery, non-standard equipment and CNC machine, a variety of office automation systems, industrial automation control and measurement fields.

    Features:

    • Incremental rotary encoder internal adopts ASIC devices
    • High reliability, long life
    • Anti-jamming performance
    • Small size, light weight, compact structure
    • High pulse
    • Easy installation

    Specification:

    Basics Model ATO-IRE5400PH
    Weight 400 g
    Wiring Color White Black Red Green Yellow Brown Gray Orange Shielded wire
    Signal Vcc 0V A B Z A- B- Z- GND
    Mechanical properties Maximum speed per minute (r/min) 5000
    Starting torque 1.5*10-3Nm (25℃)
    Maximum load Radial load: 20N, axial load: 10N
    Shock resistance 980m/s2
    Anti-vibration 50m/s2 (10~200Hz)
    Rotational inertia 4X10-8kgm2
    Operating temperature -30~85℃
    Storage temperature -35~95℃
    Protection Level IP50
    Electrical characteristics Output circuit Open-collector output Voltage output Push-pull output Line driver output
    Supply voltage Vcc DC 5V±0.2 DC 5~24V DC 5V±0.2 DC 5~24V DC 5V±0.2 DC 5~24V DC5V±0.2 DC 5~24V
    Current consumption ≤80mA ≤80mA ≤80mA ≤150mA
    Output high level ≥3.5V ≥Vcc-2.5V - - ≥2.5V ≥Vcc-2.5V
    Output low level ≤0.5V ≤0.5V - - ≤0.5V ≤1.0V
    Rise time Tr ≤500ns ≤1500ns - - ≤200ns ≤500ns
    Fall time Tf ≤100ns ≤300ns - - ≤200ns ≤200ns
    Maximum frequency response 0~300kHz 0~300kHz 0~300kHz 0~300kHz 0~300kHz 0~300kHz

    Tips: How to determine whether the rotary encoder is interfered and fails?

    1. Exclude the sources of interference (remove, close, isolate).
    2. Determinate whether the mechanical gap cumulative error.
    3. Determine whether the control system matches with the encoder circuit interface (encoder selection error).

    Try all the three methods and then trouble are eliminated, the reason can be initially determined. If not, then it needs to be further analyzed.

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