Anvaya Synapse designs lab water purification systems that monitor themselves — tracking resistivity, filter life, and water chemistry in real time, so your results never depend on catching a failure in time.
We built Anvaya Synapse around the three requirements that matter most on the bench — and gave each one a way to prove itself, continuously.
Type I, II, and III systems built to ASTM D1193 and ISO 3696 standards, with resistivity up to 18.2 MΩ·cm and total organic carbon held below 5 ppb.
Every unit reports resin saturation, filter life, and water chemistry as it happens, so drift shows up on a dashboard before it shows up in an assay.
Predictive alerts flag wear before failure, and remote diagnostics mean a service visit is usually scheduled, not urgent.
From feedwater to ultrapure, each tier is built on the same monitored, modular platform.
For HPLC, mass spectrometry, cell culture, and molecular biology work where trace contamination changes results. Polished in-line with continuous resistivity tracking.
General lab use — buffer and reagent prep, media making, general chemistry, and glassware rinsing, with consistent quality batch to batch.
Pretreated RO water for general rinsing, autoclaves, and as feed for Type I and Type II systems further down the line.
The Synapse Layer sits on top of every unit — sensors reading water chemistry continuously, and software that turns that stream into a maintenance schedule instead of a support ticket.
Water chemistry is read continuously, compared against expected wear curves, and surfaced as an alert only when it needs your attention.
Different environments, different demands — the platform adapts, the monitoring doesn't change.
Consistent ultrapure water across shared equipment and rotating users, with usage logs by system.
Documented water quality with exportable records to support GMP and validation requirements.
Dependable uptime for diagnostic instruments, with remote alerts before quality drifts out of range.
Higher-volume systems built for continuous operation and predictable service scheduling.