Abstract:
A toothbrushing monitoring device for a user includes a sensor coupled with the toothbrush for measuring toothbrushing patterns, a recording device coupled with the sensor, and a comparator. The recording device records data relating to the user's preferred toothbrushing patterns in a first mode, which is used to establish toothbrushing pattern reference data. The comparator compares toothbrushing patterns measured by the sensor and the toothbrushing pattern reference data, which may be output to an output device. In one example, the sensor consists of only an accelerometer.
Abstract:
The invention relates to a toothbrushing monitoring device (18). In order to obtain an efficient monitoring device, the monitoring device comprises: an input device (21), an acceleration sensor, a signal conditioner, a memory, a comparator which compares the numbers of brushing cycles registered by each teeth surface specific counter during brushing with corresponding reference values maintained in said memory, and an output device (27) which indicates that the brushing of the teeth region (L-U) in question is accepted.
Abstract:
In a method for transmitting data, the step of transmitting the data representing a measured pressure or pressure variation is repeated with a first repetition rate if no pressure variation has been detected or repeated with a second repetition rate if a specific pressure variation has been detected. The second repetition rate is higher than the first repetition rate. The different repetition frequencies can be used in a method for determining a tire position in a tire pressure measurement system to switch between a first mode of operation and a second mode of operation. The method for determining a tire position evaluates the repetition rate between the received data packets of transmitted data and extracts a pressure variation out of the received data packets.
Abstract:
In a method for transmitting data, the step of transmitting the data representing a measured pressure or pressure variation is repeated with a first repetition rate if no pressure variation has been detected or repeated with a second repetition rate if a specific pressure variation has been detected. The second repetition rate is higher than the first repetition rate. The different repetition frequencies can be used in a method for determining a tire position in a tire pressure measurement system to switch between a first mode of operation and a second mode of operation. The method for determining a tire position evaluates the repetition rate between the received data packets of transmitted data and extracts a pressure variation out of the received data packets.
Abstract:
The invention relates to a method and a circuit system for controlling an appliance used in lighting electronics, especially an electronic ballast or an electronic light controller included in a discharge lamp. An analog or digital type of signal for controlling the operation of an appliance to be controlled is connectable to a common control circuit and. The appliance to be controlled identifies the type of control signal and deciphers the contents of information received thereby on the basis of the signal type.
Abstract:
The invention relates to a toothbrushing monitoring device (18). In order to obtain an efficient monitoring device, the monitoring device comprises: an input device (21), an acceleration sensor, a signal conditioner, a memory, a comparator which compares the numbers of brushing cycles registered by each teeth surface specific counter during brushing with corresponding reference values maintained in said memory, and an output device (27) which indicates that the brushing of the teeth region (L-U) in question is accepted.
Abstract:
A suppressor for an electronic ballast in a discharge lamp, which is connected between a ballast (A2) and a mains supply, including a supply-voltage rectifier (D2-D5) and a charging capacitor (C6). The suppressor includes at least one energy-storing inductance (L1) and at least two electronic switch elements (Q1, Q2) connected such that, when said switch elements are conducting simultaneously, a current path extends from the positive terminal of the rectifier through said switches and inductance to its negative terminal as well as two diodes (D6, D7) connected such that, when the switches (Q1, Q2) are non-conducting, a current path extends from the negative terminal of the rectifier through said diodes and inductance to its positive terminal.
Abstract:
The invention relates to a control device for an appliance consuming electric power, especially for the control of lighting or heating. The control element includes a sensor element (V8) for producing a control current or voltage as a result of a light or heat flux received thereby. An amplifier element (V4-V1) boosts the control current of said sensor element (V8) to a sufficient level for controlling one or a plurality of electronic ballasts, which is e.g. a current limiter for a discharge lamp, a regulator for a filament lamp or a heating effect regulator. The electric power required by the amplifier element (V4-V1) of the control device is supplied from said ballast by means of conductors, which also serve as a control line between the control device and the ballast.
Abstract:
The invention relates to a method and apparatus for wireless remote control. A transmitter (1) with no batteries receives its operating power from a generator (3) which produces electrical energy inductively upon turning or pressing an operating element (4) manually. The same operating element can also be used for determining the direction and degree of control.