Abstract:
The invention provides a system for a smart address assignment. The system includes: a host, including an MCU controller which executes address assignment function, a communication module, a memory and an initialization switch; a slave, including an MCU controller which executes address assignment function, a communication module, an electronic physical switch, a memory and an initialization switch; wherein the network is formed in the following manner: after being lead out from the host, the twisted pair lines are lead into the input terminal of the electronic physical switch of the first slave, then are lead from the output terminal of the electronic physical switch of the first slave to the input terminal of the electronic physical switch of the second slave.
Abstract:
A device control apparatus in a video image display system including a plurality of connected devices. The apparatus includes an obtaining unit which obtains a logical address of a first device connected to the device control apparatus as a control object, a specifying unit which specifies the device type of the first device if the obtained logical address of the first device is not a logical address according to the device type, a selection unit which selects a second device which is connected to the device control apparatus and is of the same device type as the first device, and a control unit which controls a logical address assigned to the selected second device according to the device type thereof so that the first device obtains a logical address.
Abstract:
Es wird ein System zur Adressierung einer Mehrzahl von Sende- und Empfangseinheiten (1) einer Ultraschallabstandsmesseinrichtung vorgeschlagen, welches eine Adressen-Zuweisungseinrichtung (AZ) umfasst zum Zuweisen einer eindeutigen Adresse an jede der Sende- und Empfangseinheiten (1) entweder auf Grundlage eines Unterschiedes in einer Empfangseigenschaft des Empfangs von Ultraschallpulsen, welche von den Sende- und Empfangseinheiten (1) ausgesandt werden, in einer externen Empfangseinheit (E), oder auf Grundlage eines Unterschiedes in einer Empfangseigenschaft der Sende- und Empfangseinheiten (1) untereinander bezüglich der von einer externen Sendeeinheit (S) ausgesandten Ultraschallsignale.
Abstract:
Selbst initialisierende serielle Schnittstelle, umfassend eine serielle Schnittstelle und mindestens zwei weitere Leitungen, für Geräte, wobei die erste der weiteren Leitungen zur sukzessiven Weitergabe eines Spannungssignals nach jeweils erfolgter Adressvergabe an ein Gerät und die zweite der weiteren Leitungen zur Rückmeldung der erfolgten Adressvergabe an das letzte der Geräte vorgesehen ist.
Abstract:
Exemplary embodiments of the present invention provide a method comprisingreceiving, at a node, an address assignment message, allocating, by the node, a predetermined address interval of an available address space to a respective port of the node which predetermined address interval isdefined in the address assignment message, and assigning at least one address for performing communication via a respective port starting with a center address of the predetermined address interval of the available address space allocated for the port concerned. Further, exemplary embodiments of the present invention also relate to respective devices and system.
Abstract:
Ein portabler Datenträger (3) umfasst zumindest einen Prozessor (15), einen Speicher (13), eine Schnittstelleneinrichtung (14) und einen Adressgenerator (16), der zumindest einen Teil einer individuellen Adressierung erzeugt (S12, S13; S22a), über die der Datenträger (3) von einer über die Schnittstelleneinrichtung (14) mit dem Datenträger (3) verbundene Schreibvorrichtung (2) zum Einschreiben von Daten (6) in den Speicher (13) eindeutig adressierbar ist (S17; S24a; S26b, S26c). Die erzeugte individuelle Adressierung ist paarweise verschieden zu anderen individuellen Adressierungen, die für andere mit der Schreibvorrichtung (2) jeweils gleichzeitig verbundene Datenträger (3) erzeugt werden.
Abstract:
There are a method and a system for implementing the inter-accession of the stack members. The method includes the following steps: the stack control module assigns stack device numbers and fixed IP addresses for the stack members; after the user logs on a stack member, the session command for accessing the destination stack member is performed, and an access request for the destination stack member is initiated based on the stack device number of the destination stack member; the stack member on which the user logs acquires the IP address of the destination stack member based on the stack device number in the session command, and forwards the access request to the destination stack member in the form of TELNET based on the IP address of the destination stack member; after the destination stack member receives the access request, it assigns a terminal number for the stack member on which the user logs as the TELNET server end, and informs the OAM module of the destination stack member; the OAM module sends the operation feedback information of the destination stack member back to the stack member on which the user logs.
Abstract:
The present invention provides a method for assigning network addresses comprising advertising a type of a device in a network towards neighboring devices, determining the type of at least one device in the network with said advertising, and defining, by the at least one device with the type determined, network addresses for the other devices. Further, the present invention also provides respective devices of the network.
Abstract:
A method for distributing the device number in a stacking system includes: when the device leaves the stacking system, the device number of the device is preserved; when the device is joined the stacking system, the preserved device number is used. By using the above method for distributing the device number in a stacking system, the rationalisation and reliability for distributing the device number are improved, and the device number could indicate the priority information and so on. It could be controlled by a person, so the controllability is improved. The enough device numbers are preserved, so it is applied to extend the stacking systemwell. And it has preserving performance, the device number consistency could be maintained and the information stability of the stacking system could be ensured when the stacking device is oscillating. Thus the reliability and stability of the stacking system are improved greatly, then the management of the stacking system is easier, and the controllability is higher.