Abstract:
Diagnostic system including a sensor device with a sensor for generating signals corresponding to a first operational condition, a control device with a timer and function for performance of measurements, and a signal transmission device. The system includes a device for determination of a second operational condition of the system component and configured where the sensor value of the signal transmission device corresponding to the first operational condition is furnished when the sensor value corresponding to a second operational condition of the transmission mechanism is higher or lower than a comparative value, and housing component of a lubricant container and in particular closure device for sealing an opening of such a housing component from a lubricant which is present in the operational use thereof in an internal space thereof, having arranged therein: at least one sensor device comprising at least one sensor for determining the water content in the lubricant.
Abstract:
The invention discloses a remote control system for electric devices, a signal conversion device, and a control method for signal conversion devices. The signal conversion device may control an electric device according to a remote control signal including an identification code and a control command. The signal conversion device may include a wireless receiving module, a control module, and a wireless transmission module. The wireless receiving module may receive the remote control signal. The control module may determine whether the identification code matches a default identification code stored in the signal conversion device, to decide whether to convert the control command to a control signal. The wireless transmission module may transmit the control signal to the electric device such that the electric device operates according to the control signal.
Abstract:
The invention relates to a system comprising at least one orthopedic device having at least one joint (4) and a resistance device associated with the respective joint (4), a control device and an actuator being associated with said resistance device. The joint can be moved or the resistance can be adjusted against a bending and/or stretching movement via the actuator. The system further comprises a remote control unit (6) which is coupled to the control device and via which the resistance behavior can be varied, wherein data for the remote control unit (6) are stored in the orthopedic device, the remote control (6) can be configured with said data and the data are transmitted via a pairing process to the remote control unit (6).
Abstract:
A wireless remote control comprising a sensor that generates an output signal as a function of its alignment that directly or indirectly activates or deactivates at least one electronic circuit, a plug socket, a first contact of the plug socket connected to a control input of a power supply device, an external plug that connects the first contact to a second contact when inserted into the plug socket and thus the power supply device is deactivated independently of the output signal of the sensor.
Abstract:
Systems and methods of extending battery life in inventory control devices are disclosed. A passive receiver configured to wirelessly receive an initiation signal having an associated energy field from a remote control system and to output a mode change signal is provided. The passive receiver is configured to be powered by an energy field associated with the initiation signal. A functional module coupled to the passive receiver and configured to be powered by a self-contained power source when the functional module is in an active mode is provided. The functional module is further configured to receive the mode change signal from the passive receiver and to change from an inactive mode to the active mode. The functional module draws more power from the power source in the active mode than in the inactive mode.
Abstract:
The invention relates to a system comprising at least one orthopedic device having at least one joint (4) and a resistance device associated with the respective joint (4), a control device and an actuator being associated with said resistance device. The joint can be moved or the resistance can be adjusted against a bending and/or stretching movement via the actuator. The system further comprises a remote control unit (6) which is coupled to the control device and via which the resistance behavior can be varied, wherein data for the remote control unit (6) are stored in the orthopedic device, the remote control (6) can be configured with said data and the data are transmitted via a pairing process to the remote control unit (6).
Abstract:
A two-way vehicle communication system has been developed that includes at least one vehicle, at least one vehicle data collection point, at least one operations data supply system, and at least one data communication system, wherein the data communication system is operatively coupled to the at least one vehicle, the at least one vehicle data collection point, the at least one operations data supply system or a combination thereof. A method of monitoring a vehicle using a two-way vehicle communication system has been developed that includes: providing at least one vehicle, providing at least one vehicle data collection point, providing at least one operations data supply system, and providing at least one data communication system, wherein the data communication system is operatively coupled to and communicates with the at least one vehicle, the at least one vehicle data collection point, the at least one operations data supply system or a combination thereof.
Abstract:
According to one embodiment, a communication device to be connected with an external device via a network includes a connection unit, a variable resistance unit, and a control unit. The connection unit is connected to the network. The variable resistance unit is connected to the connection unit such that a resistance value is detectable from the external device, the resistance value being variable. The control unit changes the resistance value according to an operation state.
Abstract:
A power block is provided having a plurality of individually, remotely controlled power ports switchable between an on state and an off state which users may connect electronic devices. The power block determines the desired power state for the particular power port that a particular electronic device is connected based on infrared codes used to power on or off the particular electronic device and switches the port between the on or off state accordingly.
Abstract:
A battery-free remote controller includes an antenna, a plurality of key switches, and at least one electronic tag. The antenna is electrically connected to the plurality of key switches, and each electronic tag is electrically connected to the antenna through at least one of the key switches. Each electronic tag is corresponding to a device classification code, and each key switch is corresponding to an operation code. When one of the key switches is turned on, the electronic tag connected to the key switch is electrically connected to the antenna. At this time, the electronic tag uses a radio frequency signal received by the antenna as a power supply to output a remote control code containing the device classification code corresponding to the electronic tag and the operation code corresponding to the key switch, and the antenna transmits the remote control code.