See how stored parameter templates enable wireless batch configuration of combustion devices, r
See how a notification management device uses beacon signal strength to select the nearest term
See how a cloud-based mobile app uses server intermediation to enable remote grill control beyo
See how an air conditioner management device uses infrared feedback to detect operation failure
See how segmented transmission channels with impedance-based isolation prevent short-circuit pr
See how a fixed infrared output device receives voice commands to control infrared-operable app
See how a unified screen merges device identification, drive indicators, and controls to reduce
See how an intermediary processing device unifies infrared and network apparatus control with f
See how a mixed radiator automatically switches between electric and water heating based on tar
See how a unified control system uses feedback mechanisms to reliably operate both infrared and
See how a monitoring apparatus detects voltage loss and tracks device location without galvanic
See how an air conditioner management device uses feedback from infrared-controlled apparatuses
See how a voice-controlled infrared output device with feedback and intermediary logic prevents
See how a cloud server intermediary enables mobile apps to remotely control outdoor grills beyo
See how a separate distraction device uses obstructer characteristic data to generate tailored
See how cloud intermediary architecture enables remote grill control from any internet location
See how a touch panel terminal replaces mechanical buttons with adaptive display formats to imp
See how a wireless intermediary module extends grill control beyond Bluetooth limits, enabling
See how a notification control device switches between sound and image notifications based on u
See how electromagnetic wave emission units and mobile terminals simplify device registration b
See how a hot-water supply system notifies all associated devices when a new terminal is added,
See how a separable IoT accessory with remote control and sensor modules enables smart function
See how a cloud server intermediary enables long-range internet control of pellet smokers, over
See how a cloud-based intermediary enables remote grill control from any internet-connected dev
See how time-limited connection information and password authentication prevent unauthorized te
See how time-based permission and contactless communication prevent unauthorized setting change
See how a ceiling-mounted infrared output device with feedback verification controls both infra
See how a cloud service intermediary extends wireless grill control beyond Bluetooth range, ena
See how a cloud computing platform enables remote grill control beyond Bluetooth limits using i
See how a piezoelectric sensor detects biological tremors and bending forces to accurately dete
See how a communication adapter uses selective password verification to prevent inadvertent hig
See how dividing control software into multiple pieces enables efficient transmission between r
See how segmented display regions separate cooling data from energy and food tracking, improvin
See how overlaying curtain operation screens on floor plans enables pinch-gesture control, redu
See how a floor plan interface with swipe-enabled shutter icons reduces operation steps and ena
See how a cloud intermediary platform enables remote grill control beyond Bluetooth proximity,
See how operable period information and preliminary authentication prevent unauthorized remote
See how a mobile terminal replaces dedicated master devices to monitor refrigerator food freshn
See how NFC-enabled home appliances integrate with mobile terminals to unify control interfaces
See how back-EMF pulse evaluation replaces Hall sensors in furniture drives, reducing complexit
An actuator-driven sliding cover and controller secure medication drawers while giving authorized staff fast, selective access.
A mobile terminal switches between local router and internet relay paths to avoid control delays while keeping remote appliance access.
A motor-driven belt opens only authorized drawer compartments, improving secure medication retrieval while blocking unauthorized access.
A segmented laundry display and remote controller show power cost, support error diagnosis, and enable smart-grid-aware operation.
A cloud intermediary extends grill app control beyond Bluetooth range, enabling remote temperature, cooking cycle, and recipe functions.
Wireless pairing in the pump unit links adjustable foundations and mattress pads for firmness control, device coordination, and firmware updates.
A universal gauge master algorithm replaces per-battery fuel gauges to cut cost and deliver consistent, accurate battery state results.
An LC network lets a slave BMS transmit AC signals as an inverted-F antenna, cutting PCB size and cost across ISM bands.
Cross-correlating e-field and current signals detects downed conductor breaks in real time, enabling alerts and wildfire risk reduction.
Customizable wall-plate controls add wireless access to local, remote, and cloud-connected smart devices without complex installation.
A relay classifies vehicle and parking-assist data, converting model-specific signals into standard commands to simplify multi-vehicle integration.
Formal assignment requests and operator acknowledgment clarify remote control responsibility while reducing time loss during mobile body handover.
Multiple filters split one vehicle sensor signal into different frequency bands, letting several controllers share it without adding sensors.
Object position, size, and properties define an adaptive airbag hazard zone, reducing unnecessary warnings while securing dangerous cabin items.
NFC first captures a target sensor ID, then wireless communication retrieves only that device's data, even in crowded sensor environments.
A relay unit boosts BMU-CSC communication over long battery harnesses, reducing attenuation and distortion across split battery casings.
A relay unit filters, amplifies, and adjusts baud rate to preserve battery status signals over long BMS wiring runs.
Switching from wheel sensor output to motor rotation data keeps vehicle speed detection reliable and accurate at conveyor-like low speeds.
Turns a wall plate into a configurable wireless control surface for local, remote, and cloud-connected IoT automation.
Integrated PCB connectors and a standard harness stabilize fuel cell current and voltage transmission for accurate current density mapping.
Detecting supervisor input lets an autonomous moving body continue under relaxed driving conditions, reducing remote intervention burden while maintaining safety.
Critical battery event data is selectively backed up to protected storage before module damage, preserving evidence for root cause analysis.
When a battery event signals possible damage, critical measurement data is selected and moved to safe storage for later root-cause analysis.
Unified short- and long-cycle sensor messages let a remote model handle complex multimodal data while preserving fast vehicle control response.
Resistance-based MCU detection adapts battery pack cell and sensor settings without software rewrites, improving monitoring and diagnosis.
Ambient vibration or sound powers sensing only when needed, cutting standby energy use while preserving remote signal monitoring.
Light powers separable sensor units through a container wall, enabling secure monitoring in explosive or EMI-sensitive environments without radio or batteries.
One-to-one whisper wireless links between battery cell monitors reduce collisions and jamming while simplifying high-voltage pack assembly.
A cloud BMS flags battery risk from standard data, then triggers richer high-frequency collection for more accurate fault-level diagnosis.
Multiple in-vehicle communication routes let anomaly results reach an offboard server even when the primary path is hindered.
Sensor-based damping adjusts vehicle speed and steering to suppress symmetric and asymmetric boom oscillations without adding structural weight.
Selective calibration checks whether remote and machine operation factors already match, cutting work machine startup delay.
Machine learning event models flag only unexpected vehicle events, cutting telematics bandwidth use and reducing unmanageable alerts.
Short-cycle unified sensor messages and long-cycle remote triggers balance real-time response with smarter vehicle control in complex scenarios.
Sensors and wireless links track grounding clamp status in real time, reducing missed grounding events and electrical hazard risk.
A switchable single receiver uses one antenna coil and frequency separation to handle wireless communication and charging with lower circuit complexity.
Distributed line sensors combine e-field, current, and energy harvesting to detect faults early and alert utilities to wildfire risk.
Switching between wheel sensor output and motor rotational speed keeps unattended vehicle speed detection reliable at low and normal speeds.
Inductive parameterization through fixed strain gage wires and a magnetic barrier cuts setup errors and installation time in large structures.
An accelerometer detects lid opening to trigger battery status display only when needed, improving convenience while limiting energy use.
When slave BMS links or AFE ICs fail, master board temperature provides a backup path to detect battery pack thermal runaway.
Selective RF frequency, power, and beam-width control lets one AEPH reader trigger chip functions while managing harvested and transmitted energy.
A transistor reuses the sensor output line to trigger and verify vehicle sensor calibration, avoiding extra pins or CAN channels.
Integrated tower and antenna sensing automates status collection and sharing to cut manual inspection effort and improve network stability.
By switching the sensor output to ground or an external voltage, the ECU triggers and verifies calibration without extra vehicle wiring.
Micro-masters filter subgroup cell data to keep high sampling accuracy while scaling battery monitoring without overloading the BMS.
A reference clock aligns timestamps across multiple sensors, improving fusion accuracy for road sensing and autonomous driving safety.
A trigger point starts gait authentication before vehicle door unlocking, so failure is flagged early and alternative authentication can be used.
Selective metrology targets the structural parameters that most affect semiconductor electrical properties, improving prediction speed and throughput.
Mode-based gateway sleep control cuts in-vehicle sensor network power use by idling relay paths not needed in each operating mode.
A master-slave wireless setup adds distance measurement to vehicle authentication without major redesign, improving access security.
Radio strength threshold setting keeps the wireless key communication area appropriate and supports reliable vehicle authentication.
A support controller checks factor matching before recalibration, cutting remote work machine startup delays while preserving control accuracy.
One vehicle sensor feeds multiple controllers by splitting its signal into different frequency bands and outputting them simultaneously.
A programmable OBD II telematics unit enables low-installation, two-way cellular fleet communication and mode switching across rental and sharing use.
Vehicle state and external conditions are used to rank remote monitoring priority, cutting operator load while surfacing critical driverless vehicles.
Passive mode detection and actuator replay let a second operator feel and see a skilled operator’s remote machine actions for faster learning.
Multiple vibrators along a sensing fiber raise DFOS data transfer rates while radio control and wireless power enable remote operation.