Phoenix Contact Mini MCR-2-UNI-UI-UIRO 4-way signal conditioner

Thursday, 02 October, 2014 | Supplied by: Phoenix Contact Pty Ltd

Phoenix Contact Mini MCR-2-UNI-UI-UIRO 4-way signal conditioner

Phoenix Contact has added a freely adjustable 4-way signal conditioner, the Mini MCR-2-UNI-UI-UIRO, to the Mini Analog Pro range. On the input side, current and voltage signals of up to 24 mA or 12 V can be applied. The required signal range can be freely set. On the output side, signals of up to 10.5 V or 21 mA can be freely selected. As such, when replacing field instruments, the signals can be adjusted to the existing control systems or vice versa.

An integrated threshold value output combines the functions of a signal conditioner and threshold value switch in one unit. This enables alarms to be triggered without a digital output on the PLC. No complex programming is required at the controller.

Due to the highly visible, easily accessible terminal points and plug-in connection terminal blocks, the device offers a high degree of convenience during installation. Large-surface marking areas enable complete loop identification despite the compact 6 mm design. Current signals can be measured during operation without disconnecting the current loop, and high signal quality is ensured by the latest transmission technology and safe electrical isolation with 3 kV test voltage. The extended supply voltage range of 9.6-30 VDC and the wide operating temperature range of -40 to +70°C also open up a wide range of possible applications.

Online: www.phoenixcontact.com.au
Phone: 1300 786 411
Related Products

Lumberg Automation BEETLE Lite SPE managed switch

The BEETLE switch is designed to help reduce network complexity by deploying thinner, lighter...

ADLINK Technology MXA-200 Arm-based 5G IIoT gateway

The MXA-200 offers high-performance graphics, virtualisation and security for AI, graphics and...

Emerson PACSystems IPC 2010 compact industrial PC

The IPC 2010 can be used as a communications gateway in a variety of topologies, and...


  • All content Copyright © 2024 Westwick-Farrow Pty Ltd