MONNIT Wireless 0-20 mA Interface Sensor with AA Battery
MONNIT Wireless 0-20 mA Interface Sensor with AA Battery is a wireless 0-20 mA current meter designed to collect current signals from compatible devices and sensors for remote monitoring. It can be connected to equipment such as current transducers, pH sensors, dissolved oxygen sensors, pressure sensors and magnetic flow sensors. The sensor transmits collected data wirelessly to a compatible Monnit monitoring system, helping users monitor process signals without relying on manual readings.
The MONNIT Wireless 0-20 mA Interface Sensor with AA Battery is part of Monnit's ALTA wireless sensor range and is designed to measure a 0-20 mA current signal from another device or sensor. The model uses a 433 MHz radio frequency and an AA battery enclosure configuration, as identified by its Monnit part number.
It can be used to add wireless monitoring capability to equipment that provides a compatible current output. Monnit lists applications including current transducers, pH sensors, dissolved oxygen sensors, pressure sensors and magnetic flow sensors.
How it works
- The current meter is connected to the positive and ground terminals of a compatible device or sensor.
- It measures the current signal up to 20 mA.
- The collected data is transmitted wirelessly to the Monnit monitoring platform through a compatible gateway or system.
- Data can be reviewed and exported, while notification thresholds can be configured within the monitoring system.
Why choose this product
- Adds wireless monitoring capability to compatible 0-20 mA devices.
- Helps bring data from existing sensors and equipment into a central monitoring system.
- Uses the 433 MHz ALTA Generation 2 radio configuration associated with this specific model number.
- Uses an AA battery-powered enclosure format.
Benefits
The sensor can reduce the need for manual collection of readings by transmitting measured current data to a remote monitoring platform. This makes it useful where operators need regular visibility of process signals from distributed equipment or sensors. The wireless design can also support the monitoring of existing devices that provide a compatible current output.

