FAC2000-23
3-Channel Networked AC Current Sensor
The 3-Channel Networked AC Current Sensor from Fidar Electronics measures RMS alternating current from 0 to 5 A, and reaches much larger feeders through a current transformer. It runs standalone on its own IP address with a built-in web page.
Measures RMS alternating current, 0 to 5 A
Three independent input channels in one unit
Extendable to higher currents with a CT
Fast response to load changes and current swings
Own IP address and built-in web page
Powered by PoE or a 48 V adapter
DHCP or a static IP address
SNMP monitoring in PRTG and SolarWinds
An AC current sensor continuously measures the RMS current flowing in a line and hands it to your monitoring system for logging, trending and alarms. It reads 0–5 A directly, and with a current transformer the same sensor covers feeders of tens or hundreds of amps — the CT ratio is applied in software so the reading comes back in the line's real amps. Current is the most telling health signal an electrical load has: its trend shows a motor's loading, whether a machine is actually running, and the onset of mechanical wear well before it stops the line.
Key features
Measures RMS alternating current, 0 to 5 A
Three independent input channels in one unit
Extendable to higher currents with a CT
Fast response to load changes and current swings
Own IP address and built-in web page
Powered by PoE or a 48 V adapter
DHCP or a static IP address
SNMP monitoring in PRTG and SolarWinds
Connectivity
Own IP, built-in web page, HTTP/HTTPS
PoE or 48 V adapter over a single network cable
SNMP output for PRTG, Zabbix and SolarWinds
Where it is used
Motor and pump load monitoring, catching overload before burnout
Consumption measurement on distribution boards and feeders
Proving a machine is running from the current it draws
Server-room, UPS and backup-circuit load monitoring
Energy management and per-line consumption breakdown
Street-lighting circuits and pumping stations
Installation
Mount the sensor on the panel wall or rail and keep the signal cable away from power conductors so induced noise does not disturb the reading.




