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B&R X67SM2446-1

2 stepper motors, 24 to 48 VDC ±25%, 4 A (8 A peak)Resolution of current values at 1%Boost, nominal and holding current separately configurableSensorless, load-dependent current controlIntegrated moto…

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Description

2 stepper motors, 24 to 48 VDC ±25%, 4 A (8 A peak)Resolution of current values at 1%Boost, nominal and holding current separately configurableSensorless, load-dependent current controlIntegrated motor detection256 microsteps per stepStall detectionComplete integration in Automation Studio and CNC applications6 inputs, 24 VDC, configurable for ABR incremental encodersOpen-circuit detection for 2 push-pull encodersFunction model “Ramp” based on CANopen communication profile DS402NetTime timestamp: Position change, trigger time

The stepper motor module is used to control stepper motors with a nominal voltage of 24 to 48 VDC (±25%) at a motor current up to 4 A (8 A peak). In addition, this module has 6 digital inputs that can be used as limit switches or encoder inputs.Due to the individual adjustment of the coil currents, the motor is only operated with the current it actually needs. This simplifies the selection of the available motors and prevents unnecessary heating. Because this affects energy consumption and thermal load, the effects are positive on the service life of the complete system. Complete flexibility is achieved through the use of independently adjustable holding, maximum and nominal current values. The current for microsteps is automatically adjusted to the configured current values.In addition, the module contains a sensorless, load-dependent current control. Depending on the operating situation and load, the module controls the current downwards. Energy savings up to 75% are possible in this way. The automatic motor identification system is an enormous help during standstills. The stepper motor modules can identify the connected motors using their coil characteristics and generate feedback in the form of an analog value. This makes it possible to detect not only wiring errors, but also incorrect motor types being used mistakenly. “Stall detection” is integrated to analyze the motor load. Detection of the stall is defined via a configurable threshold. This allows an overload or motor standstill to be detected precisely in many different types of applications.

Specification

I/O moduleX67 2-channel stepper motor module 4 A, 48 VDC, 6 inputs, sink
B&R ID code0xF3EC
Status indicatorsI/O function per channel, supply voltage, bus function
Module run/errorYes, using LED status indicator and software
Open circuitYes, using LED status indicator and software
I/O power supplyM8, 4-pin
Motor statusYes, using LED status indicator and software
Inputs/Outputs4x M12, A-coded
At 48 VDC2 W
CEYes
UKCAYes
CRA (Cyber Resilience Act)In preparation
Quantity2
TypeStepper motor (full-bridge)
Nominal voltage24 VDC
Nominal current4 A
Max. current/motor8 A for 1 s (after a recovery time of at least 9 s at maximum 3.27 A)
Max. current/module8 A
Step resolution256 microsteps per full step
Reverse polarity protectionYes
Input characteristics per EN 61131-2Type 1
Input voltage24 VDC ±20%
Input current at 24 VDCApprox. 1.8 mA
Input circuitSink
Hardware<5 µs
Software
Input resistanceTyp. 15 kΩ
Additional functions2x ABR incremental encoderOpen-circuit detection
Low<5 VDC
High>15 VDC
Insulation voltage between channel and bus500 Veff
Encoder inputs24 V, asymmetrical
Counter size16-bit
Evaluation4x
Encoder power supplyModule-internal, max. 20 mA per encoder
Signal formSquare wave pulse
Counter 1Inputs 1 to 3
Counter 2Inputs 4 to 6
Counter frequencyMax. 50 kHz
Supply voltage24 VDC
Short-circuit proofYes
Min. voltage at 20 mA / group21 VDC
Electrical isolationChannel isolated from busChannel not isolated from channel
AnyYes
0 to 2000 mNo limitation
>2000 mReduction of ambient temperature by 0.5°C per 100 m
Degree of protection per EN 60529IP67
Operation-25 to 60°C
Derating
Storage-40 to 85°C
Transport-40 to 85°C
Width53 mm
Height85 mm
Depth42 mm
Weight195
M8Max. 0.4 Nm
M12Max. 0.6 Nm

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