X-MIND K - RTA PAVIA X-MIND K Series Stepping Motor Drives | 2.3-6...
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- Part Number:
- X-MIND K
- Model Number:
- X-MIND K
- Make:
- RTA PAVIA
- Lead Time:
- Available
- Qty In Stock:
- Available
RTA PAVIA X-MIND K Series Stepping Motor Drives | 2.3-6 Amps Phase Current Range | AC (110-230VAC) | 180x173x53 mm Dimensions Simple Type: Stepping Motor Drive
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Features
- 11 inputs and 6 outputs, all optically insulated. Among them 3 inputs and 4 outputs are freely programmable. Output O3 can be set to switch at a programmed motor position.
- A utility working in Windows is available in order to ease motion programs development by the user.
- Availability of instructions to develop motion programs as, for example: conditional jump, time delay, program block and recovery, I/O management, FOR NEXT loop.
- Communication through RS485 serial line; up to 48 drives can be connected on a single serial line. One instruction can be broadcasted to all drives.
- Electronic resonance damping circuit to ensure acoustic noise and mechanical vibrations reduction at low and medium speed.
- Memory of 128 instructions kept also at drive switched-off and three run time instructions.
- Number of steps for indexed ramp up to r 8.338.607 in relative or absolute mode, speed from 1 to 24.000 Hz in standard and increased resolution, ramp times from 16 to 1440 msec.
- Operation at 400, 800, 1600, 3200 and 500, 1000, 2000, 4000 steps/revolution set by means of serial line.
- Possibility to control all programs previously stored or single instructions through the serial line.
- Possibility to control the execution of 16 previously stored motion programs through hardware inputs. Accordingly, the drive can be used in stand-alone applications, without serial connection.
- Various types of available instructions, as for example: indexed run with ramp, free run with ramp, indexed run without ramp, run with a programmable braking distance, zero research. Space can be prog
- Wide range of operating voltages and motor phase currents setting. Up to 4 possible equidistant values, between INF min. and INF max., can be set by means of a serial line.
Specifications
Applications
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Aliases
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