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Image ATV212WD45N4C

Gamme: Altivar 212

Solutions CVC

ATV212WD45N4C

Image ATV212WD45N4C
Gamme: Altivar 212

Solutions CVC

ATV212WD45N4C

ATV212 45KW 60HP 460V TRI IP54 VARIATEUR

  • Prix*
    6560,47 EUR
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  • FAQ techniques

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  • Dimensions Drawings

    Dimensions


    Dimensions in mm

    ATV212W

    a

    b

    c

    G

    H

    K

    ø

    D11N4, D15N4

    D11N4C, D15N4C

    290

    560

    315

    250

    544

    8

    6

    D18N4

    D18N4C

    310

    665

    315

    270

    650

    10

    6

    D22N4, D30N4

    D22N4C, D30N4C

    284

    720

    315

    245

    700

    10

    7

    D37N4, D45N4

    D37N4C, D45N4C

    284

    880

    343

    245

    860

    10

    7

    D55N4, D75N4

    D55N4C, D75N4C

    362

    1000

    364

    300

    975

    10

    9

    Dimensions in in.

    ATV212W

    a

    b

    c

    G

    H

    K

    ø

    D11N4, D15N4

    D11N4C, D15N4C

    11.42

    22.05

    12.40

    9.84

    21.42

    0.31

    0.24

    D18N4

    D18N4C

    12.20

    26.18

    12.40

    10.63

    25.59

    0.39

    0.24

    D22N4, D30N4

    D22N4C, D30N4C

    11.18

    28.35

    12.40

    9.65

    27.56

    0.39

    0.27

    D37N4, D45N4

    D37N4C, D45N4C

    11.18

    34.65

    13.50

    9.65

    33.86

    0.39

    0.27

    D55N4, D75N4

    D55N4C, D75N4C

    14.25

    39.37

    14.33

    11.81

    38.39

    0.39

    0.35


  • Mounting and Clearance

    Mounting Recommendations
    Clearance

    Depending on the conditions in which the drive is to be used, its installation will require certain precautions and the use of appropriate accessories.

    Install the unit vertically:

    • Do not place it close to heating elements.

    • Leave sufficient free space to ensure that the air required for cooling purposes can circulate from bottom to the top of the unit.

    Type A Mounting



  • Connections and Schema

    Recommended Wiring Diagram
    3-Phase Power Supply


    A1:
    ATV 212 drive
    KM1:
    Contactor
    Q1:
    Circuit breaker
    Q2:
    GV2 L rated at twice the nominal primary current of T1
    Q3:
    GB2CB05
    S1, S2:
    XB4 B or XB5 A pushbuttons
    T1:
    100 VA transformer 220 V secondary
    (1)
    Fault relay contacts for remote signalling of the drive status
    (2)
    Connection of the common for the logic inputs depends on the positioning of the switch (Source, PLC, Sink)
    (3)
    Reference potentiometer SZ1RV1202

    NOTE: All terminals are located at the bottom of the drive. Install interference suppressors on all inductive circuits near the drive or connected on the same circuit, such as relays, contactors, solenoid valves, fluorescent lighting, etc.

    Switches (Factory Settings)

    Voltage/current selection for analog I/O (VIA and VIB)


    Voltage/current selection for analog I/O (FM)


    Selection of logic type


    (1)
    negative logic
    (2)
    positive logic


    Other Possible Wiring Diagrams
    Logic Inputs According to the Position of the Logic Type Switch

    “Source” position


    “Sink” position


    “PLC” position with PLC transistor outputs


    (1)
    PLC


    (1)
    PLC

    2-wire control


    F:
    Forward
    R:
    Preset speed
    (2)
    ATV 212 control terminals

    3-wire control


    F:
    Forward
    R:
    Stop
    RES:
    Reverse
    (2)
    ATV 212 control terminals

    PTC probe


    (2)
    ATV 212 control terminals
    (3)
    Motor

    Analog Inputs

    Voltage analog inputs

    External +10 V


    (2)
    ATV 212 control terminals
    (4)
    Speed reference potentiometer 2.2 to 10 kΩ


    (2)
    ATV 212 control terminals

    Analog input configured for current: 0-20 mA, 4-20 mA, X-Y mA


    (2)
    ATV 212 control terminals
    (5)
    Source 0-20 mA, 4-20 mA, X-Y mA

    Analog input VIA configured as positive logic input (“Source” position)


    (2)
    ATV 212 control terminals

    Analog input VIA configured as negative logic input (“Sink” position)


    (2)
    ATV 212 control terminals


  • Performance Curves

    Derating Curves

    The derating curves for the drive nominal current (In) depend on the temperature and the switching frequency.

    For intermediate temperatures (45°C for example), interpolate between 2 curves.


    X
    Switching frequency