Electronic device
A device is configured to operate in a first mode of operation during which the device is configured to receive a first supply voltage in a contactless manner. The device includes a light emitting element and a first circuit. The first circuit is configured to receive a second supply voltage generated from the first supply voltage. A first current is generated from the first supply voltage, independent from the second voltage, and applied to the light emitting element which is selectively turned on.
1 . A device, comprising:
a command circuit configured, in connection with device operation in a first mode of operation, to receive a first supply voltage in a contactless manner;
a light emitting element;
a first circuit configured to receive a second supply voltage that is generated from the first supply voltage;
wherein the light emitting element is configured to receive a first current that is generated from the first supply voltage and independent from the second supply voltage and is selectively turned on; and
a calibration circuit configured to implement a calibration operation before each selective turning on of the light emitting element.
2 . The device according to claim 1 , wherein the light emitting element is a light emitting diode.
3 . The device according to claim 1 , wherein the first circuit is an authentication circuit, and wherein the light emitting element, when selectively turned on, indicates the result of an authentication performed by the authentication circuit.
4 . The device according to claim 1 , wherein the first circuit is a fingerprint sensor.
5 . The device according to claim 1 , further comprising an antenna coupled to the command circuit and wherein the first supply voltage is received from the antenna.
6 . The device according to claim 1 , wherein the command circuit includes a second circuit implemented as an integrated circuit and configured to generate the second supply voltage on a first pin of the integrated circuit and a third circuit configured to generate the first current on a second pin of the integrated circuit.
7 . The device according to claim 6 , further comprising a capacitor coupled between the first pin and a node of application of a reference voltage.
8 . The device according to claim 6 , further comprising a fourth circuit configured to generate a control voltage for the light emitting element, the light emitting element being coupled between an output of the fourth circuit and the second pin.
9 . The device according to claim 6 , wherein the third circuit comprises: a rectifier coupled between a first node of application of the first supply voltage and a second node; a first resistance; and a first transistor coupled in series between the second node and the second pin.
10 . The device according to claim 9 , further comprising at least one assembly of a second resistance, a second transistor and a switch coupled in series, the at least one assembly being coupled in parallel with the first resistance and the first transistor, wherein the switch of the at least one assembly is controlled by a calibration signal.
11 . The device according to claim 10 , further comprising a fifth circuit configured to generate the calibration signal based on a comparison of the first current and a reference current.
12 . The device according to claim 1 , wherein said calibration operation comprises generating a calibration signal based on a comparison of the first current and a reference current.
13 . The device according to claim 12 , further comprising at least one assembly of a resistance, a transistor and a switch coupled in series, the at least one assembly being coupled to the second pin, wherein the switch of the at least one assembly is controlled by said calibration signal.
14 . The device according to claim 12 , wherein the device is configured to operate in a second mode of operation during which the device is configured to receive a third supply voltage through a contact.
15 . The device according to claim 14 , wherein the device comprises a fourth circuit configured to generate the calibration signal based on the comparison of the first current and a reference current.
16 . A device, comprising:
a command circuit configured, in connection with device operation in a first mode of operation, to receive a first supply voltage in a contactless manner;
a light emitting element; and
a first circuit configured to receive a second supply voltage that is generated from the first supply voltage;
wherein the light emitting element is configured to receive a first current that is generated from the first supply voltage and independent from the second supply voltage and is selectively turned on;
wherein the command circuit includes a second circuit implemented as an integrated circuit and configured to generate the second supply voltage on a first pin of the integrated circuit and a third circuit configured to generate the first current on a second pin of the integrated circuit; and
wherein the third circuit comprises: a rectifier coupled between a first node of application of the first supply voltage and a second node; a first resistance; and a first transistor coupled in series between the second node and the second pin.
17 . The device according to claim 16 , further comprising at least one assembly of a second resistance, a second transistor and a switch coupled in series, the at least one assembly being coupled in parallel with the first resistance and the first transistor, wherein the switch of the at least one assembly is controlled by a calibration signal.
18 . The device according to claim 17 , further comprising a fifth circuit configured to generate the calibration signal based on a comparison of the first current and a reference current.
19 . The device according to claim 18 , wherein the calibration signal is selected to ensure that the first current is equal to the reference current.
20 . The device according to claim 16 , wherein the light emitting element is a light emitting diode, and further comprising an antenna coupled to the command circuit and wherein the first supply voltage is received from the antenna.
21 . The device according to claim 16 , wherein the first circuit is an authentication circuit, and wherein the light emitting element, when selectively turned on, indicates the result of an authentication performed by the authentication circuit.
22 . The device according to claim 16 , wherein the first circuit is a fingerprint sensor.
23 . A device, comprising:
a command circuit configured, in connection with device operation in a first mode of operation, to receive a first supply voltage in a contactless manner;
a light emitting element;
a first circuit configured to receive a second supply voltage that is generated from the first supply voltage;
wherein the light emitting element is configured to receive a first current that is generated from the first supply voltage and independent from the second supply voltage and is selectively turned on;
wherein the command circuit includes a second circuit implemented as an integrated circuit and configured to generate the second supply voltage on a first pin of the integrated circuit and a third circuit configured to generate the first current on a second pin of the integrated circuit; and
a fourth circuit configured to generate a control voltage for the light emitting element, the light emitting element being coupled between an output of the fourth circuit and the second pin.
24 . The device according to claim 23 , wherein the light emitting element is a light emitting diode, and further comprising an antenna coupled to the command circuit and wherein the first supply voltage is received from the antenna.
25 . The device according to claim 23 , wherein the first circuit is an authentication circuit, and wherein the light emitting element, when selectively turned on, indicates the result of an authentication performed by the authentication circuit.
26 . The device according to claim 23 , wherein the first circuit is a fingerprint sensor.
27 . The device according to claim 23 , further comprising a capacitor coupled between the first pin and a node of application of a reference voltage.