Abstract:
A patch panel includes a back plane having front mounted pairs of termination locations, and an interconnect location electrically connected to each pair of termination locations. The termination locations connect to two patch cords. The interconnect location defines an access device for selectively accessing the termination locations. An interconnect module interfaces with the interconnect location. The module can include test access, power over Ethernet, or circuit protection features.
Abstract:
A patch panel includes a back plane having front mounted pairs of termination locations, and an interconnect location electrically connected to each pair of termination locations. The termination locations connect to two patch cords. The interconnect location defines an access device for selectively accessing the termination locations. An interconnect module interfaces with the interconnect location. The module can include test access, power over Ethernet, or circuit protection features.
Abstract:
A device for the covering of the position of the module within the modular distribution frame is provided. The device comprises a covering unit (76) that can be placed onto the position. The module is designed that it can be arranged side-by-side with other modules on the frame-body and the construction of the module allows the introduction of the wires (72) with their wire ends (74), which are intended to be connected to the module. The covering unit (76) as such is designed so that it provides protection to the wires (72) and the wire ends (74) and to maintain the defined positions of the wires (72).
Abstract:
A communication system is adapted to accommodate changes to bandwidth demand through the use of communiucation interface modules, such as radio modules (121-124), are coupled to a communication signal processor, such as a multi-port modem (110), in order to serve an initial bandwidth demand. Thereafter, additional communication signal processors may be added, being coupled to one or more of the communication interface modules (121-124) decoupled from the initially deployed communication signal processor (110), to serve an increased bandwidth demand. Preferably, an expansion chassis architecture is used to accomodatea number of communication signal processors atleast equivalent to the number of communication information interfaces of the plurality. In preferred embodiments, the communication interface modules operate upon different channels, such as radio frequency channels, although coupling to the communication signal processor upon a same channel, sucha as a common intermediate frequency channel.
Abstract:
A modular expandible bidirectional connection board comprises a plurality of ports, each of an average converting type, i.e. designed for individually coupling, through an impedance matching assembly, lengths of different transmissive media, the board being characterized in that it comprises a box-like construction, a casing (13) preferably made of a plastics material, including two casing portions, i.e. a front side (4) and a rear side (5), defining therebetween a chamber for housing an electronic card (6) and related components such as coaxial connector (15) N3 (1.0/2.3), three-way mini wire-wrap contacts (14) and the impedance matching elements (18).
Abstract:
Die Erfindung betrifft eine Verteilereinrichtung (1) für die Kommunikations- und Datentechnik, umfassend mindestens ein Verteileranschlussmodul (7), wobei das Verteileranschlussmodul (7) ein Gehäuse (16, 17) umfasst, in dem von aussen zugänglich Eingangs- und Ausgangskontakte zum Anschliessen von Leitungen, Kabeln oder Adern angeordnet sind, wobei die Verteilereinrichtung (1) mindestens ein weiteres Anschlussmodul (2) umfasst, wobei das Anschlussmodul (2) mindestens eine SDH/SONET-Transport-Schnittstelle (6) und Ausgänge für elektrische Signale umfasst, wobei die Ausgänge des Anschlussmoduls (2) mit den Eingängen des Verteileranschlussmoduls (7) verbunden sind, wobei das Anschlussmodul (2) mindestens einen Konverter zur Umsetzung von SDH/SONET-Transport-Signalen in E1-Signale und umgekehrt umfasst, sowie ein zugehöriges Anschlussmodul (2) und ein zugehöriges Verteileranschlussmodul (7).
Abstract:
A system of pots-splitter filter modules for ADSL comprises a support (12) consisting of a basement (14) with a pair of parallel rows of transversal fins (16, 18) rising from it, and a plurality of flat cases (22) each containing a plurality of pots-splitter filters, whose bases (32) have seats (34, 36) in which are receivable two respective side-by-side fins (16, 18) of the support (12). Each case (22) is provided, for each filter, with a port (26) for connection to the ADSL system, and a port (30) for connection to the user line, in which are removably insertable respective connectors (60) to which are connected the leads (76) from the user line and/or from the ADSL system.
Abstract:
A device for the covering of the position of the module within the modular distribution frame is provided. The device comprises a covering unit that can be placed onto the position. The module is designed that it can be arranged side-by-side with other modules on the frame-body and the construction of the module allows the introduction of the wires with their wire ends, which are intended to be connected to the module. The covering unit as such is designed so that it provides protection to the wires and the wire ends and to maintain the defined positions of the wires.