The 4–20 mA Current Sensor from Fidar Electronics reads the standard 4–20 mA output of any industrial transmitter and maps it back to engineering units. It connects to a FIDAQUIRE data logger over a daisy-chained CANopen bus.
The 3-Channel 4–20 mA Current Sensor from Fidar Electronics reads the standard 4–20 mA output of any industrial transmitter and maps it back to engineering units. It connects to a FIDAQUIRE data logger over a daisy-chained CANopen bus.
The Wireless 4–20 mA Current Sensor from Fidar Electronics reads the standard 4–20 mA output of any industrial transmitter and maps it back to engineering units. It links over a LoRa radio with no cabling at all.
The Wireless 3-Channel 4–20 mA Current Sensor from Fidar Electronics reads the standard 4–20 mA output of any industrial transmitter and maps it back to engineering units. It links over a LoRa radio with no cabling at all.
The 3-Channel Networked 4–20 mA Current Sensor from Fidar Electronics reads the standard 4–20 mA output of any industrial transmitter and maps it back to engineering units. It runs standalone on its own IP address with a built-in web page.
The 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 connects to a FIDAQUIRE data logger over a daisy-chained CANopen bus.
The DC Current Sensor from Fidar Electronics measures direct current in a circuit across a 0 to 5 A range. It connects to a FIDAQUIRE data logger over a daisy-chained CANopen bus.
The 3-Channel 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 connects to a FIDAQUIRE data logger over a daisy-chained CANopen bus.
The 3-Channel DC Current Sensor from Fidar Electronics measures direct current in a circuit across a 0 to 5 A range. It connects to a FIDAQUIRE data logger over a daisy-chained CANopen bus.
The Wireless 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 links over a LoRa radio with no cabling at all.
The Wireless DC Current Sensor from Fidar Electronics measures direct current in a circuit across a 0 to 5 A range. It links over a LoRa radio with no cabling at all.
The Wireless 3-Channel 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 links over a LoRa radio with no cabling at all.
The Wireless 3-Channel DC Current Sensor from Fidar Electronics measures direct current in a circuit across a 0 to 5 A range. It links over a LoRa radio with no cabling at all.
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.
The 3-Channel Networked DC Current Sensor from Fidar Electronics measures direct current in a circuit across a 0 to 5 A range. It runs standalone on its own IP address with a built-in web page.
The Fidar Electronics FAM4400-01 analogue input card offers four voltage and four current channels at 24-bit resolution, logging in real time into a FIDAQUIRE data logger.
The 0–10 V Sensor from Fidar Electronics reads the 0–10 V analogue signal of industrial and building equipment and turns it into a logged, alarmable value. It connects to a FIDAQUIRE data logger over a daisy-chained CANopen bus.
The 3-Channel 0–10 V Sensor from Fidar Electronics reads the 0–10 V analogue signal of industrial and building equipment and turns it into a logged, alarmable value. It connects to a FIDAQUIRE data logger over a daisy-chained CANopen bus.
The Wireless 0–10 V Sensor from Fidar Electronics reads the 0–10 V analogue signal of industrial and building equipment and turns it into a logged, alarmable value. It links over a LoRa radio with no cabling at all.
The Wireless 3-Channel 0–10 V Sensor from Fidar Electronics reads the 0–10 V analogue signal of industrial and building equipment and turns it into a logged, alarmable value. It links over a LoRa radio with no cabling at all.
The 3-Channel Networked 0–10 V Sensor from Fidar Electronics reads the 0–10 V analogue signal of industrial and building equipment and turns it into a logged, alarmable value. It runs standalone on its own IP address with a built-in web page.
The AC Voltage Level Sensor from Fidar Electronics measures mains RMS voltage from 50 to 250 V and records every sag and surge. It connects to a FIDAQUIRE data logger over a daisy-chained CANopen bus.
The DC Voltage Level Sensor from Fidar Electronics reads DC voltage from 0 to 24 V and records how it sags over time. It connects to a FIDAQUIRE data logger over a daisy-chained CANopen bus.
The 3-Channel AC Voltage Detector from Fidar Electronics reports whether an AC line up to 220 V is live and timestamps every loss and restore. It connects to a FIDAQUIRE data logger over a daisy-chained CANopen bus.