Abstract:
Devices for providing protection against intrusion in order to protect at least one electronic component. One example of the device includes an enclosure, surrounding the electronic component, which is proof against a specific type of radiation, and at least one piece of equipment selected from a receiver and a transmitter of radiation of that specific type, which is arranged inside the enclosure and substantially tuned to another piece of equipment that is complementary and disposed outside the enclosure. The device also includes a detection module suitable for detecting an intrusion if at least one receiver receives radiation of that specific type.
Abstract:
Described are examples of a device for providing protection against intrusion in order to protect at least one electronic component, the device comprising an enclosure surrounding the electronic component and proof against a type of radiation, at least one piece of equipment selected from a receiver and a transmitter of radiation of said type arranged inside the enclosure and substantially tuned to another piece of equipment that is complementary and disposed outside the enclosure, and a detection module suitable for detecting an intrusion if at least one receiver receives radiation of said type.
Abstract:
An electronic assembly for an electronic device may include a detection module to detect a security anomaly of a Rich-OS operating system and a disabling module to disable at least one secure function of the electronic device in response to the detection. The disablement nevertheless allows use of the electronic device in fail-soft mode. The electronic assembly may be implemented such that these two modules are dependent on a trusted operating system, and the trusted operating system and the Rich-OS operating system may be stored in a memory of the electronic assembly and executed on the electronic assembly.
Abstract:
An electronic assembly for an electronic device may include a detection module to detect a security anomaly of a Rich-OS operating system and a disabling module to disable at least one secure function of the electronic device in response to the detection. The disablement nevertheless allows use of the electronic device in fail-soft mode. The electronic assembly may be implemented such that these two modules are dependent on a trusted operating system, and the trusted operating system and the Rich-OS operating system may be stored in a memory of the electronic assembly and executed on the electronic assembly.
Abstract:
An electronic assembly for an electronic device may include a detection module to detect a security anomaly of a Rich-OS operating system and a disabling module to disable at least one secure function of the electronic device in response to the detection. The disablement nevertheless allows use of the electronic device in fail-soft mode. The electronic assembly may be implemented such that these two modules are dependent on a trusted operating system, and the trusted operating system and the Rich-OS operating system may be stored in a memory of the electronic assembly and executed on the electronic assembly.
Abstract:
A method for routing at least one message, this method being implementation-dependent on a trusted operating system of an electronic device comprising an electronic assembly on which the trusted operating system and a Rich-OS operating system are executed. The method may include operations for consulting a trusted memory of a terminal, which may be called a first memory, and when the first memory contains a message, determining the operating system targeted by the message from among at least the Rich-OS operating system and the trusted operating system. And when the message targets the Rich-OS system, transferring the message from the first memory to a memory accessible to the Rich-OS system, which may be called a second memory.
Abstract:
A method for routing at least one message, this method being implementation-dependent on a trusted operating system of an electronic device comprising an electronic assembly on which the trusted operating system and a Rich-OS operating system are executed. The method may include operations for consulting a trusted memory of a terminal, which may be called a first memory, and when the first memory contains a message, determining the operating system targeted by the message from among at least the Rich-OS operating system and the trusted operating system. And when the message targets the Rich-OS system, transferring the message from the first memory to a memory accessible to the Rich-OS system, which may be called a second memory.
Abstract:
A secure element for a telecommunications terminal, the secure element including means for performing a trusted services management application to manage at least one trusted application to he run by the telecommunications terminal.
Abstract:
An electronic module that includes means for determining an operating system targeted by a message received by a transmitter-receiver of an electronic device, from among at least a Rich-OS operating system and a trusted operating system executed on a chipset of the electronic device, so that the message becomes accessible to the targeted operating system. The determining means may be set in operation in response to receipt of the message by the transmitter-receiver.
Abstract:
An electronic module that includes means for determining an operating system targeted by a message received by a transmitter-receiver of an electronic device, from among at least a Rich-OS operating system and a trusted operating system executed on a chipset of the electronic device, so that the message becomes accessible to the targeted operating system. The determining means may be set in operation in response to receipt of the message by the transmitter-receiver.