2IF101.60-1 B & R Automation
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The B & R Automation 2IF101.60-1 is part of the System 2010 Controllers series and features five communication interfaces, including RS232, RS485/RS422, and Ethernet with an AM79C960 controller. The unit has a power consumption of 7 watts, supports a maximum CAN distance of 1000 meters, and comes with 108 KByte of system RAM and 404 KByte of user RAM. Its dimensions are 285 by 40 by 185 millimeters.
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Product Description:
The 2IF101.60-1 interface card belongs to the System 2010 Controllers series from B&R Automation. It installs in a backplane slot of a System 2010 CPU rack and provides fieldbus and serial links for remote I/O, operator terminals, and higher-level networks in automated machinery. Measuring 285 × 40 × 185 mm, the module follows the mechanical outline used across the series and fits the corresponding rack configuration. Its power consumption is only 7 W, which helps limit the heat generated inside the enclosure.
The card provides five onboard communication ports for connecting equipment through several industrial communication standards. Its Ethernet segment uses an AM79C960 controller and a 10BASE2 BNC socket that supports data rates up to 10 Mbit/s for peer-to-peer traffic. A dedicated RS-232 terminal reaches 64 kbaud, allowing point-to-point service access without affecting the real-time bus. Internal resources include 108 KB of system RAM for operating variables, 256 KB of flash PROM for the operating kernel, a separate 256 KB area for user software, and 64 KB of dual-ported RAM. The dual-ported memory buffers telegrams exchanged between the CPU and peripheral logic.
The remaining connections support communication with equipment installed at greater distances from the controller rack. The RS-485/RS-422 port sustains 347 kbaud over balanced wire pairs and supports cable runs of up to 1,200 m for drives or distributed sensors. The CAN interface permits cable runs of up to 1,000 m, allowing nodes to be distributed across large conveyor lines and other automated systems. For legacy devices, a TTY channel supports current-loop signaling over distances of up to 300 m. User applications can allocate up to 404 KB of battery-backed RAM for retained information while leaving the fixed system memory available for controller operations.