Abstract:
A transmission apparatus which is capable of maintaining excellent EMC performances even if the number of cables to be connected thereto is increased. An electronic circuit unit is plugged into a subrack from the front of the subrack. A connector unit-receiving block is arranged on the rear surface of the subrack. A connector unit connectable with an external cable to be connected to the electronic circuit unit is plugged into the rear of the subrack at the rear of the electronic circuit unit, for being received within the connector unit-receiving block. The connector unit is configured such that a metal shield case covers a connector board having a connector mounted thereon.
Abstract:
The present disclosure relates to a rack for mounting telecommunication chassis each adapted for receiving cross-connect modules. The rack includes a frame defining a bay formed between two spaced-apart, vertical end walls. The bay is sized for receiving the telecommunication chassis. The rack also includes a cable management structure connected to the frame. The cable management structure defines first and second separate vertical channels. The first vertical channel defines a first passage area sized for receiving a plurality of cross-connect cables from the telecommunication chassis. The second vertical channel defines a second passage area sized for receiving power and ground wires from the telecommunication chassis. L-shaped tie brackets are positioned in vertical channels defined by the vertical end walls. The tie brackets assist an installer in installing and tying the input and output cables to the rack.
Abstract:
The present invention relates to a breaker apparatus and breaker unit. The breaker apparatus comprises a breaker unit including a power supply/cut-off breaker part, a power connecting part, a first unit connecting part, a ground connecting part and a second unit connecting part and further comprises a breaker unit mounting board including a mating power connecting part, a mating ground connecting part, a first connection mediating part and a second connection mediating part. This breaker apparatus is capable of constituting a power distributing apparatus with a necessary but minimized construction, and of extending the breaker unit in a minimum unit according to necessity. In addition, with this breaker apparatus, parts can be used in common irrespective of a change of a ground system, and further, can be replaced in the hot-line condition without cutting off the power supply to a system.
Abstract:
A distribution block for telecommunication and data transmission applications, in particular for the main distribution frame of telephone and data lines. The distribution block includes insulation displacement contact elements for the connection of the subscriber cables as well as of the exchange office cables. One-piece contact springs are disposed in the interior of the modular-design distribution block. A mounting bracket, in particular for receiving distribution blocks is provided including a U-shaped tub. A device for guiding cables is rotatably moved in a partial section, and with cable guide portions. A reduction in size, an improvement of connection tasks, the individual protection of double wires, a reliable grounding and a cable guiding which is substantially resistant to buckling and bending are secured, is achieved by that one-piece contact springs disposed in the interior of distribution block. These springs are formed by insulation displacement connection contacts at the front and rear sides of the block by a telephone contact in a central section, the phone contact being composed of at least two contact surfaces which may be double contacts, and by a support surface. A tongue acts on the support surface with a cam. A tapping contact is provided in the front section of contact spring. A mounting bracket is provided with a tub bottom and contact lugs for the establishment of an electrically conducting and of a mechanical connection and openings for the insertion of protection plugs or the like. A device for guiding cables is provided including a rack frame or the like rigidly disposed cable guide portions that are positioned upwardly and downwardly offset to cable guide portions.
Abstract:
A grounding assembly for use with an electrical distribution panel for grounding electrical cables which includes a support bar that extends generally longitudinally with respect to the panel and which is connected to a grounding block mounted on the panel. A plurality of grounding clips are mounted on the support bar, each of which includes mounting flanges formed with an opening for receiving the support bar, and each of which includes a plurality of flexible arms carried on the mounting flange, with each arm being movable to receive one of the electrical cables and to clamp such cable in place against the support bar.
Abstract:
A voltage protector and ground bar arrangement is provided for use with a telephone terminal block having at least two rows of terminals which are spaced apart from each other so as to form an elongated opening therebetween, The arrangement includes a housing for receiving a voltage suppressor, four terminal/fuse contacts, and a ground contact, A plug-in fuse carrier is disposed in the upper fuse portion of the housing, A grounding bar is disposed within the elongated opening of the terminal block between the at least two rows of terminals and extends generally throughout the length of the terminal block. The ground contact includes prongs which extend vertically and externally of the housing for connection to a hole in the grounding bar.
Abstract:
A cable head includes a plurality of modular connection units, the insulating base of which bears rear and front connection members, and one earthing component. The cable head includes, in addition for each connection unit, at least one protection module which can be plugged into the base from the front, the module comprising a body of insulating material exhibiting two side-housings intended to each receive one lightning arrester, and of two pairs of wrap-around contact components arranged on the body and effecting on the one hand the contact between the front and rear connection members arranged face to face and on the other hand the contact with earth, each pair of contact components associated with a lightning arrester ensuring both the retention of the lightning arrester in its housing and reinforcement of the clamping onto the tails of the lightning arrester upon plugging in the module.
Abstract:
Systems and methods for a wireless station supporting wireless communications with an associated wireless access point (WAP) on a wireless local area network (WLAN) where the wireless station can include hardware processing circuitry to perform hybrid spatial mapping feedback operations for multi-user (MU) multiple-input multiple-output (MIMO) downlinks from the WAP to a group of associated stations. An exemplary implementation includes a channel estimation circuit to determine a communication channel responsive to an explicit sounding from the WAP, and to transmit channel sounding feedback to the WAP indicating the determined communication channel; and a crosstalk tracking circuit to determine an amount of crosstalk from portions of a downlink MU-MIMO communication packet targeted for other stations in the group of associated stations, and to transmit crosstalk feedback to the WAP as to the determined amount of crosstalk.
Abstract:
An enclosure apparatus comprises a single receptacle comprising a patch member connected to electrical equipment in a remote location and at least one communication device. The communication device may comprise a microprocessor for processing data received from the electrical equipment in the remote location. The enclosure apparatus is often used in connection with building automation equipment.
Abstract:
Aspects of a distribution connecting module for teleconununications and data systems technology include a housing inside of which input and output contacts are arranged to be accessible from the exterior of the housing. The housing is provided with a cavity inside of which at least one printed circuit board is arranged. The input and output contacts are situated on the opposing faces of the housing. The input contacts are provided in the form of at least one connector strip with insulation displacement contacts. The input and output contacts can be detachably connected to the printed circuit board. The connector strip supporting the input contacts is detachably connected to the housing via a front part. When the connection between the front part and the housing is released, the connector strip, which is connected to the front part, is, together with the fork contacts, moved away from the printed circuit board. Attachment of the front part to the housing includes inserting a screw into an opening in the front part and then sliding the screw into a slotted region of the front part.