M.1300.7372 Danaher
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The Danaher M.1300.7372 is part of the Block IO Analog Modules series and features 16 input points with a nominal input signal of 24 VDC. This module uses two 18-pin screw terminals for input connections and has maximum input values of 30 VDC and 7.5 mA. Its physical dimensions are 122.6 mm in height, 102.9 mm in width, and 76.2 mm in depth.
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Product Description:
The M.1300.7372 is an industrial I/O module produced by Danaher for the Block IO Analog Modules series. It provides field-side signal acquisition so 24 VDC devices such as proximity sensors, limit switches, or operator contacts can be connected directly at the machine and their states conveyed to a central controller. Integrating this block into a distributed architecture minimizes homerun cabling and concentrates diagnostic LEDs and fuse protection in a single enclosure.
The module presents 16 input points arranged on two 18-pin screw terminals, allowing uncluttered wiring looms. Each channel operates around a 24 VDC nominal level and tolerates up to 30 VDC without component stress. When supply voltage is first applied the assembly draws an inrush of 2.5 A, yet that surge lasts only 250 µs, permitting power supplies with modest headroom. Per-channel current consumption peaks at 7.5 mA, while off-state leakage is limited to 0.75 mA so inactive devices remain below the 5 VDC off threshold. This arrangement mitigates contact bounce errors and helps the controller discriminate true state changes in electrically noisy zones.
The enclosure measures 102.9 mm wide, 76.2 mm deep, and 122.6 mm high, supporting high-density mounting alongside other DIN-rail blocks. Internal electronics require a steady 100 mA from the back-plane power bus, leaving ample capacity for adjacent modules. Logic transitions are consistent, with inputs switching on above the 15 VDC threshold and turning off within a 1 ms delay once voltage falls. A matching 1 ms turn-on delay aligns the module with fast-cycle PLC scans, and screw-terminal retention resists vibration-induced intermittency in factory environments. Combined, these electrical and physical characteristics allow the block to meet millisecond response demands while occupying only a narrow portion of cabinet real estate.