
UV701/705 sensors for SAC and UVT
UV 700 IQ SAC: Low-cost probe (integrated ultrasonic cleaning, turbidity compensation) for the maintenance-free and reagent-free SAC measurement according to DIN 38404 C3

UV 700 IQ SAC: Low-cost probe (integrated ultrasonic cleaning, turbidity compensation) for the maintenance-free and reagent-free SAC measurement according to DIN 38404 C3

Optimal for the measurement of TOC and DOC in the inlet/effluent of municipal wastewater treatment plants.

NiCaVis® 700 IQ NI: UV probes with integrated ultrasonic cleaning for the reagent-free measurement of nitrate, nitrite and carbon parameters directly in the process

NitraVis® 700 IQ (TS): Sensor with integrated ultrasonic cleaning for the reagent-free measurement of nitrate and suspended solids (optional) – optimized for municipal wastewater treatment systems

NitraVis 700 IQ NI: Sensor with maintenance-free ultrasonic cleaning for measurement of nitrate and nitrite directly in the process – optimized for municipal wastewater treatment systems

Sensor with integrated ultrasonic cleaning for the reagent-free measurement of nitrate and suspended solids (optional) – optimized for municipal wastewater treatment systems

Spectral UV-VIS sensor to measure color in wastewater, incl. integrated ultrasonic cleaning; available wavelengths (selectable): 340 nm, 350 nm, 390 nm, 410 nm, 445 nm, 455 nm, 465 nm; including turbidity compensation

UV 700 IQ NOx: Low-cost probe with integrated ultrasonic cleaning for the maintenance-free and reagent-free measurement of nitrate

Digital pH/ORP armature to be used with electrodes, connectable to the IQ SENSOR NET

TetraCon 700 IQ – digital 4 electrode conductivity measuring cell with flow-free operation, especially with high conductivit Very large measuring range from 10 µS/cm … 500 mS/cm

TriOxmatic® IQ: Reliable and proven digital electro-chemical oxygen sensors with 3 electrode system (ECDO) for precise and accurate measurements

ViSolid®: Optical sensors for the in-situ use to measure suspended solids via scattered light and direct back-scattering with ultrasonic cleaning system