Abstract:
A method and system for the remote control of devices having a secure self learn capability. The system includes an encoder and a decoder, the encoder encoding variable information including a user key using a non-linear algorithm to produce an encoded value transmitted to the decoder, the decoder decoding the value using the same algorithm. In a learning mode a new encoder is to be added to the system. The new encoder produces an encoded value using a key generation seed. The decoder, upon receiving the encoded key generation seed, produces a decoding key based upon the decoded key generation seed. The decoding key is stored in the decoder memory allowing valid recognition of the new encoder in a secure manner.
Abstract:
Un sistema de apertura de puerta de garaje que comprende un sistema de control de acceso que comprende: - un codificador y un descodificador, y - un medio de activación de modo de aprendizaje de descodificador por el que al activar dicho medio el descodificador se ajusta en el modo de aprendizaje, caracterizado porque dicho medio está físicamente alejado o separado del codificador y del descodificador, porque dicho medio alejado o separado incluye un conmutador de consola de pared para abrir y cerrar la puerta de garaje, porque dicho conmutador de consola de pared está situado en una pared del garaje y está en comunicación eléctrica con dicho descodificador, y porque el presionar un botón en dicho conmutador de consola de pared durante un periodo de tiempo corto inicia una función de apertura/cierre de puerta de garaje y el presionar dicho botón durante un periodo de tiempo prolongado inicia dicho modo de aprendizaje.
Abstract:
The present invention relates to a fail safe non-volatile memory programming system. The system uses a high voltage charging capacitor to store a charge for programming a memory device. A second charging capacitor is used for supplying power to the control logic used for programming the memory device. If power is removed during a programming cycle, the charge stored in the two capacitors is sufficient to complete the programming cycle.
Abstract:
A wireless security system combines encoded RF and encoded magnetic field operation into a base unit device and a remote unit device, overcoming the limitations of RF only or magnetic field only wireless security devices. The base unit is comprised of a power supply, a base processing unit, an RF receiver and a base inductor-capacitor (LC) transceiver. The base processing unit is capable of controlling both encoded RF and encoded magnetic field operation. The remote unit is comprised of a battery, a remote processing unit, an RF transmitter, a remote magnetic field converter circuit, manual control and an energy storage device. The remote processing unit, which is capable of controlling both encoded RF and encoded magnetic field operation, is implemented on a single, monolithic integrated circuit. The remote unit device can be miniaturized to relative smallness to the extent that it can be embedded, for example, within an automobile key. The remote unit device can convert magnetic field energy to DC electrical energy for the purposes of supplying power to the remote unit device, conserving battery power and re-charging the battery.
Abstract:
The present invention relates to a fail-safe non-volatile memory programming system. The system uses a high voltage charging capacitor (16) to store a charge for programming a memory device. A second charging capacitor (30) is used for supplying power to the control logic (26) used for programming the memory device. If power is removed during a programming cycle, the charge stored in the two capacitors is sufficient to complete the programming cycle.