Abstract:
Described herein is a process for manufacturing an interaction structure for a storage medium, which envisages forming a first interaction head provided with a first conductive region having a sub-lithographic smaller dimension (W 1 ). The step of forming a first interaction head (7) envisages: forming on a surface (14) a first delimitation region (15) having a side wall; depositing a conductive portion (16b) having a deposition thickness substantially matching the sub- lithographic smaller dimension (W 1 ) on the side wall; and then defining the conductive portion. The sub- lithographic smaller dimension (W 1 ) is between 1 and 50 nm, preferably 20 nm.
Abstract:
A switching device having a first and a second electronic switch connected in a half-bridge configuration and each having a control terminal for receiving a switching signal alternatively having a turn-on value and a turn-off value for taking the first and second electronic switches to an on state and to an off state, respectively; the switching device includes, for each switch, means for detecting the state of the switch and means for keeping the switching signal at the turn-off value for one of the electronic switches when the detected state of the other electronic switch is the on state.
Abstract:
A phase-locked loop circuit (100) is proposed for providing an output signal having a frequency depending on the frequency of a reference signal, the circuit including means (105-110) for deriving a feedback signal from the output signal, means (115-120) for providing a control signal indicative of a phase difference between the reference signal and the feedback signal, means (140-145) for controlling the frequency of the output signal according to the control signal, and means (125-135) for conditioning the control signal through at least one conditioning signal; in the circuit of the invention, the means for conditioning includes means (135) for accumulating an energy provided by the control signal and the at least one conditioning signal during a first phase and for transferring the accumulated energy to the means for controlling the frequency of the output signal during a second phase.
Abstract:
A switching device having a first and a second electronic switch connected in a half-bridge configuration and each having a control terminal for receiving a switching signal alternatively having a turn-on value and a turn-off value for taking the first and second electronic switches to an on state and to an off state, respectively; the switching device includes, for each switch, means for detecting the state of the switch and means for keeping the switching signal at the turn-off value for one of the electronic switches when the detected state of the other electronic switch is the on state.
Abstract:
A driving circuit for piezoelectric actuators comprises a chip of semiconductor material integrating both an interface circuit receiving at input a control signal generated by a control logic unit, and a power circuit driving the piezoelectric actuators. The power circuit is directly connected to the output of the interface circuit.
Abstract:
A driving circuit for piezoelectric actuators comprises a chip of semiconductor material integrating both an interface circuit receiving at input a control signal generated by a control logic unit, and a power circuit driving the piezoelectric actuators. The power circuit is directly connected to the output of the interface circuit.
Abstract:
A dual supply device having a reference terminal, an input terminal for the application of a substantially constant input voltage relative to the reference terminal, a first output terminal for supplying a first supply voltage different from the input voltage, a second output terminal for supplying a second supply voltage substantially opposite to the first supply voltage a direct-current/direct-current converter connected between the input terminal and the first output terminal for converting the input voltage into the first supply voltage, and a capacitive translator connected between the first and second output terminals for translating the first supply voltage into the second supply voltage.
Abstract:
A driving circuit for piezoelectric actuators comprises a chip of semiconductor material integrating both an interface circuit receiving at input a control signal generated by a control logic unit, and a power circuit driving the piezoelectric actuators. The power circuit is directly connected to the output of the interface circuit.
Abstract:
A dual supply device having a reference terminal, an input terminal for the application of a substantially constant input voltage relative to the reference terminal, a first output terminal for supplying a first supply voltage different from the input voltage, a second output terminal for supplying a second supply voltage substantially opposite to the first supply voltage a direct-current/direct-current converter connected between the input terminal and the first output terminal for converting the input voltage into the first supply voltage, and a capacitive translator connected between the first and second output terminals for translating the first supply voltage into the second supply voltage.