Embedded sensors and active learning let a smart garment adapt heating and cooling to user preferences while reducing manual control and battery drain.
Machine tool warm-up is evaluated with learned temperature, time, and power data to choose adaptive program parameters for current conditions.
Sensors and closed-loop coolant control stabilize decoater temperature by adjusting flow, pressure, and spray angle in real time.
Automatic control of nearby lights, temperature, sound, and scent creates a personalized shopping environment from user interaction data.
Multi-stage power control heats the vaporizer quickly, then holds and lowers temperature to improve aerosol consistency while limiting harmful byproducts.
Humidity and temperature sensing trigger post-cycle heating only when needed, helping sterilizers maintain reliable instrument drying.
Timed print bar heating based on print speed keeps printing material ejectable, reducing nozzle blockage and wasted energy.
Machine learning maps temperature and voltage conditions to adapt IoT sensor operation, preserving performance while reducing monitoring and battery drain.
Historical weather, forecasts, and heater data are used to predict start times and adjust pool or spa heating to hit setpoints with less energy waste.
A lockout register and damper request register prevent gas burner fuel delivery until the damper is fully open over a serial interface.
Temperature feedback adjusts heating power from resistance or sensor signals to prevent e-cigarette overheating and harmful substance formation.
Derives rack-level external temperature from server sensors to detect recirculated heat, prevent overheating, and guide data center cooling control.
Closed-loop step motor control adjusts hot-cold mixing and water volume quickly, reducing trial-and-error water waste.
A controlled thermal profile in an authentication IC helps image forming apparatuses distinguish genuine toner replacement parts from imitations.
Sensors and coolant control stabilize decoater temperature during high-organic scrap processing, preventing thermal damage and capacity loss.
A valve-controlled bypass adjusts secondary-loop flow with workload changes to keep warmed fluid at reusable temperature in data center cooling.
A thermal output element uses user-perceptible temperature changes to replace distracting audio or vibration feedback in aerosol devices.
Predictive temperature adjustment cuts thermal drift when sensitive components move between systems, improving microlithography accuracy.
Motion-triggered sensor blocks estimate occupancy from detected people and human effects, reducing power use and raw image transmission.
Impedance-based temperature estimation lets an ultrasonic lens cleaner remove contaminants while keeping the piezoelectric transducer within safe limits.
Measured DUT temperature is used first, then forced cooling or heating takes over to prevent overshoot during rapid self-heating tests.
Only a fraction of HDDs are powered, cooled, and given full bandwidth at once, cutting storage cost and energy for rarely read data.
Low-airflow HALE aircraft use a heat pipe and skin-integrated exchangers to remove electronics heat without heavy pumps or added drag.
Opto-isolators and solid-state relays let one PLC temperature module keep inter-channel isolation, cut PCB complexity, and preserve PID control.
Joint reinforcement learning coordinates IT resources and cooling controls to cut data center power use while maintaining workload performance.
Heater resistance is read in a closed loop to hold constant temperature and lower power loss in gas sensing and infrared emission.
Neighbor-based temperature replacement filters print agent distortion, enabling more accurate heat source control in additive manufacturing.
Measured finger temperature drives Peltier surface adjustment, keeping warm or cold sensations consistent despite small temperature differences.
Dynamic temperature settings and load clustering improve dispatchable capacity calculation and response precision for grid adjustment.
A processor uses sensor feedback to adjust battery power, keeping the e-cigarette heating element within a safe temperature range.
Ambient sensing and valve control redirect compressor bleed heat to the inlet, preventing ice buildup while maintaining turbine efficiency.
Active heat addition and removal keeps space apparatus near a mechanical reference state despite thermal and mechanical perturbations.
Prebuilt rack modules with rear-door heat exchangers and closed-loop cooling cut deployment time and energy use in compact data centers.
Electronic lock and reservation data automate thermostat and pool heater settings to reduce vacant-property energy use and staff intervention.
A sealed dock uses separate intake and exhaust blowers to boost airflow, cooling compact information handling systems without enlarging them.