Abstract:
A device can include a plurality of memory cells, each memory cell including at least one latch circuit coupled between two data nodes, a first nonvolatile section coupled to a first data node, and a second nonvolatile section coupled to a second data node; and each nonvolatile section including at least one switch element in series with a programmable nonvolatile element, the switch element configured to couple the nonvolatile element to the corresponding data node during a high reliability read operation of the memory cell.
Abstract:
A device is configured to establish first and second device power domains. Isolation circuits isolate signals from passing between circuits in the first device power domain and circuits in the second device power domain. During a transition between power domains, an n-bit value is stored in a particular storage location, and compared to a particular n-bit value. Isolation between the first and second device power domains is removed when the n-bit value stored in the particular storage location matches the particular n-bit value.
Abstract:
A memory circuit includes a controlled current source coupled to an input to a nonvolatile cell, and a second controlled current source coupled to a volatile cell, the volatile cell coupled to receive current from the controlled current source via the nonvolatile cell.
Abstract:
A verification circuit for a capacitor power supply measures at least two voltages across the terminals of the capacitor at two points in time, the two points in time defining a time interval dT. A change in voltage dV over the time interval dT is determined. An operation powered by the capacitor is initiated, or not, by deriving from the time interval dT and/or the voltage change dV, a total required time or a total required voltage for completing the operation, and comparing the total required time or total required voltage to a pre-determined necessary total time or predetermined necessary total voltage, respectively (a “time interval test”).
Abstract:
A memory circuit includes a controlled current source coupled to an input to a nonvolatile cell, and a second controlled current source coupled to a volatile cell, the volatile cell coupled to receive current from the controlled current source via the nonvolatile cell.
Abstract:
A verification circuit for a capacitor power supply measures at least two voltages across the terminals of the capacitor at two points in time, the two points in time defining a time interval dT. A change in voltage dV over the time interval dT is determined. An operation powered by the capacitor is initiated, or not, by deriving from the time interval dT and/or the voltage change dV, a total required time or a total required voltage for completing the operation, and comparing the total required time or total required voltage to a pre-determined necessary total time or predetermined necessary total voltage, respectively (a “time interval test”).
Abstract:
Techniques for redirecting a client request. The client request is received at a first server. The first server forwards the client request to a second server. The first server receives a result message from the second server. The first server identifies, in the result message, references to resources of the second server. The first server replaces, in the result message, all references to resources of the second server with translated references that reference the first server without replacing references to resources of any other entity other than the second server. The first server sends the translated references to the client as a response to the client request.