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Schneider Electric Modicon 984 AS-S908-013

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AS-S908-013

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The AS-S908-013 is a Remote I/O Processor from Schneider Electric, part of the Modicon 984 series. This device integrates into remote I/O networks and supports up to 31 remote drops. It operates within a temperature range of 0°C to 60°C and can transmit data at a baud rate of 1.5 Mbps over a maximum distance of 10,000 feet (3,048 meters).

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Technical specifications for AS-S908-013

ManufacturerSchneider Electric
Product TypeRemote I/O Processor
Product LineModicon 984
Part NumberAS-S908-013
Weight1.00 lbs (0.45 kg)
Network TypeRemote I/O
Max Remote Drops31
Operating Temperature0°C to 60°C
Backplane Current300 mA
Baud Rate1.5 Mbps
Max Distance10,000 ft (3,048 m)
Storage Temperature-40°C to 85°C
Module Width1 slot (standard rack)
Power Supply Voltage5 VDC
Power Consumption1.2 W
Mounting TypeRack-mounted
Relative Humidity5% to 95% (non-cond.)

The Schneider Electric AS-S908-013 is designed as a Remote I/O Processor within the Modicon 984 series. This unit facilitates communication in remote I/O networks, enabling seamless integration with up to 31 remote drops. It works effectively in a temperature range from 0°C to 60°C, ensuring reliability in varied operational environments. For data transmission, the processor operates at a baud rate of 1.5 Mbps. It allows a maximum communication distance of 10,000 feet (3,048 meters), making it suitable for extensive setups.

In terms of storage capabilities, the AS-S908-013 can endure temperatures as low as -40°C and as high as 85°C, reflecting its versatility in storage conditions. The product requires a power supply of 5 VDC and has a power consumption of just 1.2 watts, which contributes to energy efficiency. This module is designed to fit into a standard rack width, occupying only one slot in the system. With a backplane current specification of 300 mA, it maintains efficient operation during function. Furthermore, the processor can handle relative humidity levels of 5% to 95% without condensation, supporting performance stability in humid environments.