M.1017.3101 Danaher
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The M.1017.3101 is an analog module from the Block IO Analog Modules series by Danaher. It operates with an external supply of 24 VDC and has a max output current of 20 mA across 4 output channels. The module features a 15-bit resolution with 32,768 steps and uses screw terminals for connections.
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Product Description:
The M.1017.3101 analog output module is produced by Danaher for the Block IO Analog Modules series. Designed for distributed control architectures, it converts controller data into field currents that drive actuators or transmit process values. With a width of 4.05 in, a height of 4.825 in, and a depth of 3 in, the module occupies little DIN rail space while leaving clearance for adjacent slices. Screw terminals along the front edge provide straightforward wiring and allow individual conductors to be removed without disturbing the rest of the block.
The module offers 4 independent output channels. At power-up, each channel asserts a preset bias of 4 mA × RLOAD so downstream instruments recognize a healthy startup condition, and the circuitry reverts to a 4 mA fallback if a scan loss is detected. Signal resolution reaches 15 bits, yielding 32,768 discrete steps across the operating span to support precise loop adjustments. A per-channel ceiling of 20 mA accommodates standard 0–20 mA and 4–20 mA loops without overdriving connected converters. The analog section is energized by a dedicated external source rated at 24 VDC, isolating it from noisy logic rails. Internal regulation keeps drift low under varying field loads, while normal operation draws 200 mA from the external supply.
During startup, capacitive charging draws a brief surge of 2.5 A. This surge lasts only 250 µs, allowing the upstream power supply and fusing to accommodate the short inrush period before current settles to its normal operating level. The module has a shock rating of 15 g for 11 ms, permitting installation on moving machinery frames or transportable skids without additional damping. Its compact enclosure leaves room for neighboring equipment, while the front screw terminals keep field wiring accessible after installation. The startup fallback behavior also helps connected instruments distinguish a valid low-level output from a lost scan condition.