A double integration circuit adjusts time intervals to detect sample supply and measure response current in blood glucose sensors.
A dynamic material monitoring apparatus measures thermal effusivity during active mixing cycles using periodic sensor data.
Miniaturized thermal sensor design reduces measurement uncertainty by detecting specific heat capacity variations through pulsed heating.
A gas sensor uses a current detecting portion to identify high hydrogen concentrations through resistance variations.
A handheld gemstone tester uses an isolated LED unit to illuminate the probe without transmitting heat.
A nanotube array gas sensor detects gases using electrical resistance changes at room temperature.
A thermal gas sensor uses segmented heating members to maintain stable temperatures and improve measurement accuracy.
A dual-wavelength laser flash Raman spectroscopy system measures temperature rise in 2D nanomaterials using separate heating and detecting pulsed lasers.
A measurement system uses a segmented mask to direct heat for capturing radial and facial thermal diffusivity data.
A 3ω method uses metal strips to measure transverse thermal conductivity in thin films.
A thermal sensor device measures temperature and heat-transfer parameters to calculate gas properties like hydrogen concentration.
Control unit calculates heat transfer oil degradation index from temperature signals to prevent reliability loss from variable thermal cycles.