See how onboard Peltier cooling in transport pucks maintains sample temperature during IVD auto
See how duty-cycle control and DC power conversion enable a single recirculating bath to operat
See how dual independent fluid level sensors and cold-leg temperature monitoring prevent overhe
Dual fluid level sensors and a high-limit switch shut off the heater before thermal lag causes overheating in compact circulating baths.
Precise electronic temperature control and underwater diode lighting improve histology water bath consistency, sample assessment, and safe handling.
Large refrigeration chambers can create uneven temperatures; porous platforms, directed airflow, and drainage improve hydrogel consistency during freeze-thaw preparation.
A movable manifold connects or disconnects flow cells on demand, simplifying reagent control during parallel sequencing.
Integrated cartridge chambers maintain multiple reagent temperatures in compact testing setups.
This field-deployable assay chamber maintains constant temperature while limiting contamination and capturing visual amplification results.
Dynamic temperature zones in the automated specimen system prevent evaporation and ensure test accuracy across varying storage phases.
Convection from a Peltier-heated air jacket eliminates conduction hot spots in bead baths for 0.1°F precision.
Flexible elastomeric storage mat holds rigid cylindrical containers against planar heating elements to maintain stable positioning during thermal processing.
A thermal cycling apparatus directs air streams over heating elements to transfer heat from biological samples.
Circulating heated air warms the probe tip, maintaining reagent dispensing temperature while extending storage lifetime in sealed containers.
A portable device uses segmented Peltier baths to control multiple hydrocarbon samples simultaneously.
A multiwell microplate carrier uses a moat with hydration compartments to stabilize humidity, eliminating edge effects and data inconsistency in border wells.
Direct contact Peltier heating eliminates temperature variability during incubation, ensuring consistent reaction kinetics and higher diagnostic throughput.
A nucleic acid analysis device segments a thermostat bath into independent temperature zones for parallel protocol execution.
Support feet on the rack deploy to drain working fluid directly into the reservoir, preventing contamination and conserving liquid during vessel access.