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Categoria di prodotto: Sistemi con Motion Control
Productfamily: FAULHABER MCS
Tensione nominale: UN 12 V
Resistenze termiche: R 0.92 Ω
Tensione d'alimentazione per l'elettronica, min.: 12 V DC
Tensione d'alimentazione per l'elettronica, max.: 50 V DC
Tensione d'alimentazione per il motore, min.: 0 V DC
Rendimento, max.: ηmax 78 %
Tensione d'alimentazione per il motore, max.: 50 V DC
Velocità a vuoto fino a: n0 4700 min⁻¹
Coppia nominale fino a: MN 74 mNm
Corrente a vuoto: I0 0.179 A
Coppia di stallo fino a: MH 268.7 mNm
Rendimento dell'elettronica: η 95 %
Coppia d'attrito statico: C0 1.3 mNm
Coefficiente d'attrito dinamico: CV 4.1 ·10⁻⁴ mNm/min⁻¹
Costante di velocità: kn 461 min⁻¹/V
Constante FEM: kE 2.168 mV/min⁻¹
Costante di coppia: kM 20.7 mNm/A
Costante di corrente: kI 0.048 A/mNm
Pendenza della curva n/M: 20.5 min⁻¹/mNm
Induttanza ai morsetti: L 60 µH
Costanti di tempo meccanica: Tm 6.4 ms
Inerzia del rotore: J 30 gcm²
Accelerazione angolare, max.: αmax. 90 ·10³ rad/s²
Resistenze termiche Rth1: Rth1 2.3 K/W
Resistenze termiche Rth2: Rth2 5 K/W
Thermal resistance (external plastic flange): Rth2 p 4.8 K/W
Thermal resistance (external metal flange): Rth2 m 1.97 K/W
Costante di tempo termiche: τw1 13 s
Costante di tempo termiche: τw2 880 s
Thermal time constant (external plastic flange): τw2 p 880 s
Thermal time constant (external metal flange): τw2 m 880 s
Materiale della carcassa: alluminio, acciaio inossidabile
Temperature di funzionamento, min.: -40 °C
Temperature di funzionamento, max.: 85 °C
– rotore max. ammissibile: 125 °C
Massa: 356 g
Velocità fino a: nmax. 12300 min⁻¹

Operating Area

MCS 3242G012BX4 ET
The display shows the range of possible operation points of the drives at a given ambient temperature of 22°C.
The diagram indicates the recommended speed in relation to the available torque at the output shaft.
It includes the assembly on a plastic- as well as on a metal flange (assembly method: IM B 5).
The nominal voltage linear slope describes the maximal achievable operating points at nominal voltage. Any points of operation above this linear slope will require a supply voltage Umot > UN.

Characteristic curves

MCS 3242G012BX4 ET

Download

Accessories Manual
Accessory Combination
Communications Manual EtherCAT
Drive functions
Programming Manual
Technical Information
Technical Manual

Software

FAULHABER Motion Manager Programmi di gestione e configurazione

Application note

AN 149 - Beckhoff TwinCAT 3 and FAULHABER MC V2.5/V3.0 CANopen
AN 150 - Getting started with FAULHABER EtherCAT
AN 151 - Feedback Control Tuning with Motion Manager 6.3 or higher
AN 154 - Updating FAULHABER EtherCAT controller
AN 155 - Support of Third Party BLDC motors
AN 158 - Support of Absolute Encoders with SSI / BiSS-C interface
AN 159 - Position encoder on the load-side of a gearbox
AN 161 - Omron PLC and FAULHABER V3.0 EtherCAT
AN 162 - Analog Hall Sensors
AN 164 - Codesys and FAULHABER V3.0 EtherCAT
AN 165 - Using BASIC Scripts of a FAULHABER Motion Controller V3.0
AN 169 - TwinCAT 3 NC Axes and FAULHABER MC V3.0 EtherCAT
AN 171 - Kendrion and FAULHABER MC V3.0 EtherCAT
AN 174 - Setup and configuration of a CANopen sub-system
AN 176 - Tutorial on the MomanLib
AN 178 - Reduction of PWM motor power losses using additional inductances
AN 182 - Using a separately activatable motor supply
AN 183 - Equivalent DC-current in FAULHABER SC and MC
AN 184 - Adapter settings for Motion Control Systems
AN 185 - Operating a MC V3.0 EtherCAT driver as a CODESYS SoftMotion drive
AN 186 - Operating a FAULHABER CO driver out of a CODESYS environment
AN 187 - Grounding, shielding and filtering - Installation of the drive system in the machine
AN 188 - Settings for a RS232 network of Motion Controllers
AN 189 - Designing a motherboard for a MC3001 Motion Controller
AN 191 - Control MC V3.0 MotionController via RS232 an Arduino Library
AN 195 - Change from Motion Controllers V2.5 to V3.0 - CANopen interface
AN 196 - Change from Motion Controllers V2.5 to V3.0 - Control via RS232 interface
AN 197 - Best practice RS232 communication
AN 205 - Condition Monitoring using the IoT ready functionality

Declarations of Conformity

EG-00026-001 - MCS 32xx RS/CO, MCS 32xx ET

Declarations of Incorporation

EG-00027-001 - MCS 32xx RS/CO, MCS 32xx ET