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mcDSA-E27XC-PROFINET

Article number: 1513852

Category: Servo amplifier

Certification: UL, CE, UKCA *1

 Logo_UL-CE-UKCA.png

Picture similar
 motor_bldc.png  feedback_sincos.png  features_controller.png  features_mpu.png  io_din.png  io_dout.png  io_ain.png  interface_can.png  interface_profinet.png

 

Features

  • Motor controller up to 160A
  • Compact four-quadrant controller for: BLDC motors, Linear motors
  • PROFINET interface
  • CAN interface (Protocol DS301, Device profile DS402)
  • integrated digital inputs
  • integrated digital outputs
  • integrated analog inputs
  • Overvoltage, undervoltage and overtemperature monitoring
  • Device status notification with the help of 3 LEDs (Power, Status, Error)
  • Hex switches to set the device node id
  • Easily programmable due to built-in MPU (Motion Process Unit)

Technical data

Name Value
   Supply voltages
      - Electronic supply voltage Ue*2    9..30 V
      - Electronic current consumption@ Ue=24V*3    typ. 120 mA
      - Power supply voltage Up*4    9..60 V


   Output current
      - Max. output current    160 A
      - Continuous output current (certified UL/CE)*5
        @Up=24V
        @Up=60V
   
  54 A
  49 A
      - Continuous output current (not certified)*6 @Up=24V
        with Heatsink (Art.No. 1511832)
   65 A
  70 A
      - Continuous output current (not certified)*6 @Up=48V
        with Heatsink (Art.No. 1511832)
   55 A
  65 A


   PWM
      - Output voltage    100% Up
      - PWM frequency    25, 32*7, 50 kHz
      - PWM mode    symmetrical / asymmetrical


   Motor types
      - DC motors    no
      - BLDC motors    yes
      - Linear motors    yes
      - Stepper motors    no


   Mechanical
      - Size LxWxH    111 x 100 x 55 mm


   CAN bus
      - Protocol    DS301
      - Device profile    DS402
      - Galvanically isolated    yes


   PROFINET
      - Type    Slave
      - Physical layer    100 Base-Tx
      - Max. baudrate    100 Mbit/s
      - Number of ports    2xRJ45 (PORT1, PORT2)


   Functional safety
      - Safety function
         refer safety manual
   Safe Torque Off (STO)
      - Safety Integrity Level (SIL)    up to SIL 3
      - Performance Level (PL)    up to PL e


   Sensor supply (Encoder)
      - Output voltage    5 V
      - Max. output current    0.2 A


   Encoder
      - Type    sin / cos
      - Input voltage    1 V peak-peak, differential
      - Signal type    sine/cosine, analog, differential


   Digital inputs
      - Number - digital inputs    6 (Din0..5)
      - Notice    Din5 parallel with Dout2*8


   STO channels (ST0-A..B)
      - Low voltage    0..5 V
      - High voltage    8..30 V


   Digital outputs
      - Number    3 (Dout0..2)
      - Continuous output current (certified UL/CE)    1 A
      - Continuous output current (not certified)    1.5 A
      - Load Dout0..1    resistive, low inductive
      - Load Dout2    resistive, inductive
      - Notice    Dout2 parallel with Din5


   Analog inputs
      - Number    2 (Ain0..1)
      - Signal type - Ain0    +/- 10 V, 12 Bit, differential
      - Signal type - Ain1    +/- 10 V, 12 Bit, single ended


Modifications and errors excepted.

*1 The certified performance data must be observed (see UL Instruction Note and Safety Manual (CE))
*2 No reverse polarity protection, the destruction limit is at overvoltage of >= 33V or short-term peak voltage of 37V < 1s
*3 power amplifier switched off, 5V output (sensor supply) is free, STO active
*4 No reverse polarity protection, the destruction limit is at overvoltage of >= 80V
*5 connector cable with max. possible cable cross-section, PWM frequency 32 kHz (asymmetrical), ambient temperature 40 °C, I/O's and 5V output active, RMS current: 54 A → 44 Aeff, 49 A → 40 Aeff
*6 connector cable with max. possible cable cross-section, PWM frequency 32 kHz (asymmetrical), ambient temperature 40 °C, I/O's and 5V output free, RMS current: 55 A → 45 Aeff, 65 A → 53 Aeff, 70 A → 57 Aeff no guarantee, since value is determined empirical, please consider the application notes to determine the continuous current
*7 default value
*8 Input voltage must not exceed Electronic supply voltage Ue

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