XM2100.01-01-31-31-301-NN-111NNNN Bosch Rexroth Indramat
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MPN: R911391313
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The Bosch Rexroth Indramat XM2100.01-01-31-31-301-NN-111NNNN is part of the XM21 IndraControl Systems series and features an Intel E620T 600 MHz CPU with 512 MB DRAM. This controller operates at a nominal voltage of 24 V DC, offers one Ethernet port and two Sercos ports, and provides IP20 protection. It supports a maximum power consumption of 36 W and includes a 128 kB remanent memory.
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Product Description:
The XM2100.01-01-31-31-301-NN-111NNNN is an embedded controller manufactured by Bosch Rexroth Indramat within the XM21 IndraControl Systems series. It merges PLC sequencing and multi-axis motion control in one DIN-rail unit, allowing Sercos drives and modular S20 I/O to be coordinated from a single platform in industrial automation lines that need deterministic timing and high-speed data exchange.
Its processing core is a Intel E620T 600 MHz CPU that executes IEC-61131 logic and kinematic calculations. The device carries 512 MB DRAM for volatile program storage, while 128 kB of remanent memory safeguards machine parameters during power loss. A nominal supply of 24 V DC energises the electronics, and a 2.5 A internal fuse limits fault current. Plant networks connect through 1 x RJ45 (10/100/1000) Ethernet, and drive axes interface by means of 2 x RJ45 (Master/Slave) Sercos ports that sustain real-time cycle updates. The right-hand S20 backplane transfers 100 Mbit/s and can source 2 A to attached slices, while a single USB host port supports firmware or recipe download tasks.
The controller’s energy demand reaches 36 W under maximum load, with core electronics drawing 1.0 A separately for logic functions. Cabinet installation is simplified because the housing meets the IP20 protection type, requiring only standard airflow for cooling. Up to 63 S20 I/O modules may be stacked without exceeding the backplane limits, and the bus current ceiling of 2 A helps prevent wiring damage during shorts. These features let the XM2100 maintain deterministic response across distributed sensors, valves, and motion axes while keeping overall power consumption and panel space moderate.