The Schneider TM3AQ2 is a high-precision analogue output module designed to cater to a diverse range of industrial automation needs. This compact module is part of the Modicon TM3 range and is compatible with Modicon M221, M241, M251, and M262 controllers, ensuring seamless integration into existing systems.
Equipped with two analogue outputs, the TM3AQ2 can handle both current signals from 4 to 20 mA and voltage signals from 0 to 10 V or -10 to 10 V, providing the flexibility required for various control tasks. The module boasts an 11-bit resolution plus sign or a 12-bit resolution without sign, ensuring accurate and reliable data conversion for critical processes.
The TM3AQ2 is designed with a focus on durability and performance. It features a robust construction that can withstand harsh industrial environments, with resistance to electrostatic discharge, electromagnetic fields, and fast transients as per international standards. The module's stabilisation and conversion times are swift, at 1 ms, which is crucial for time-sensitive applications.
Installation and maintenance are straightforward, thanks to the removable screw terminal block with a pitch of 5.08 mm, which allows for easy wiring and connection adjustments. The module also includes a green LED for power status indication, adding to its user-friendly design.
With its compact dimensions of 23.6 x 90 x 70 mm and a net weight of 0.115 kg, the TM3AQ2 is an excellent choice for space-constrained applications. It operates within a supply voltage range of 20.4 to 28.8 V DC, catering to a wide array of power supply standards.
The TM3AQ2 is a Green Premium product, reflecting Schneider Electric's commitment to sustainability and environmental responsibility. It is free from toxic heavy metals and mercury, ensuring that it meets the highest standards for environmental safety and can be disposed of responsibly at the end of its life cycle.
Overall, the Schneider TM3AQ2 analogue output module is a reliable and efficient solution for industrial automation systems requiring precise control and signal conversion.