Abstract:
Vorgeschlagen wird ein Verfahren zur Herstellung eines Elektronikgerätes (100), insbesondere zur Verwendung innerhalb eines Schaltschrankes, mit in einem Gerätegehäuse (300) enthaltener Leiterpiatte (200) sowie damit verbundenen Änschlusselementen (400) zum Anschließen von elektrischen Anschlussleitern (500), indem die für ein Elektronikgerät (100) vorgesehenen Anschlusselemente (400) zunächst innerhalb eines für das Elektronikgerät (100) vorgesehenen Gerätegehäuse (300) integriert werden und anschließend eine für das Elektronikgerät (100) vorgesehene Leiterplatte (200) in das Gerätegehäuse (300) eingesetzt wird und die Anschlusselemente (400) mit der Leiterplatte (200) verbunden werden.
Abstract:
Food waste disposer systems and related systems for coupling food waste disposer systems to electrical power sources, and related coupling and configuration methods, are disclosed herein. In at least one example embodiment, a food waste disposer system includes a motor, a switch module, a housing, and an appliance inlet power cord connection structure supported at least indirectly upon the housing, where the connection structure is either connected to or integrally formed with the switch module. Further, the food waste disposer system also includes a power cord including a first end with a first plug and a second end with a second plug, where the first plug is configured to be coupled to the connection structure. Additionally, the food waste disposer includes an adapter or first lead wires that are coupled at least indirectly to the connection structure.
Abstract:
A compression connector comprises a connector body comprising an inner surface and a threaded clamp at least partially positioned within the connector body and configured to slide relative to the connector body. A contact cone is positioned within the connector body and comprises an outer surface configured to engage with the inner surface of the connector body. An insulator is positioned proximate the contact cone and defines an aperture. An inner conductor comprises a contact component comprising an inner conductor basket and a cylindrical portion extending from the conductor basket, and an interface component defining an opening configured to engage with the cylindrical portion of the contact component. The contact component, the interface component, and the insulator are held together such that they form a rigid three-piece assembly when the threaded clamp couples an end of a cable.
Abstract:
An electrical connection structure for a PCB and an electroplating frame, and a modular lamp. The modular lamp comprises a plurality of light-emitting modules (100, 200, 300, 400, 500). Each light-emitting module comprises a housing (110) and a lamp plate (130) arranged within the housing, a light source and conductive connectors electrically connected to the light source being arranged on the lamp plate, an outer plate of the housing being provided with two sets of conductive strips (102) surrounding the outer side wall and protruding from the outer side wall, the two sets of conductive strips being respectively electrically connected to two electrodes of the lamp plate via the conductive connectors. After the plurality of light-emitting modules have been assembled and joined together, adjacent light-emitting modules are in contact and electrically connected via the conductive strips. The modular lamp is provided with the plurality of light-emitting modules, the shapes of the light-emitting modules are flexible and variable, each module is designed independently, and after the light-emitting modules have been joined together, adjacent light-emitting modules are electrically connected via the conductive strips on the outer side walls and may be combined to form a variety of shapes. The present invention is simple in operation, and strong in combination operability.
Abstract:
A system and method for replaceable machine-mounted male input power connections includes a power connection unit that is at least partially arranged within a housing (502) and configured to transfer power received from a power source to drive a welding process. The power connection unit includes an input configured to receive power from the power source, an output configured to deliver the power received at the input to drive the welding process, and a bus system, configured to connect the input and the output. The power connection unit also includes a male connector (418) having a conductive post extending to a threaded cylindrical shaft. The male conductor forms at least a portion of the input or the output and extends from the housing through a coupling assembly (500). The coupling assembly (500) includes a correspondingly threaded portion (538) configured to engage the threaded cylindrical shaft (536) of the male connector to the bus system.
Abstract:
The present invention relates to an electrical contact comprising a cable (20) comprising at least one conductive wire (22) and an insulating sheathing (21), whereby the cable comprises a dismantled portion where the sheathing is dismantled from the wire, and the dismantled portion is in longitudinal direction of the cable enclosed by two sheathed portions (21, 24) in which the wire (22) is fully surrounded by the sheathing; and a contact terminal (30) with a crimping portion (31) crimped to the dismantled portion and at least partially to both sheathed portions (21, 24) to cover the dismantled portion.
Abstract:
Refere-se a presente Patente de Invenção a um conector acoplado a aparelhos de telecomunicações (9) com elemento de travamento, de engate rápido, sendo que o dito sistema de conector (1) possui um formato cilíndrico, onde internamente o cabo coaxial (8) irá ser fixado, por meio da garra (4) interna do sistema de conector (1), e ainda possui um dispositivo de travamento e destravamento (5), que quando pressionado faz uma deformação elástica temporária na garra (4) para que o cabo coaxial (8) possa ser removido dos aparelhos de telecomunicações exemplificado em (9), e após a retirada do cabo (8), a garra (4) volta a sua posição original, assim dispensa-se o uso de ferramentas específicas, conector tradicional de compressão ou crimpagem e ainda de mão-de-obra especializada na conexão dos aparelhos de telecomunicação (9).
Abstract:
A terminal device used in grounding direct current electrical components, such as audio amplifiers, having a metal contact plate provided with a first opening sized to receive a securing screw and having a second opening sized to receive a locking screw used to attach the terminal device to a metal member of another structure, wherein the first opening is positioned relative to the second opening so that with the securing screw attaching the metal contact plate to a grounding surface, the head of the locking screw will contact and apply anti-rotational forces against the head of the securing screw when the locking screw is also screwed into the grounding surface.
Abstract:
The current application is related to environmental-conditioning systems controlled by intelligent controllers and, in particular, to an intelligent-thermostat-controlled HVAC system that detects and ameliorates control coupling between intelligent thermostats. Control coupling can lead to inefficient HVAC operation. When control coupling is detected, a settings-adjustment directive is sent to at least one intelligent thermostat to adjust one or more intelligent-thermostat settings, including an HVAC-cycle-initiation delay paramter, swing parameter, and a parameter that indicates whether or not an intelligent thermostat should first obtain confirmation or permission before initiating an HVAC cycle.
Abstract:
Terminal structures for wiring devices, such as receptacle assemblies, are disclosed having first and second spring assemblies constructed of a first metal and each having at least one spring finger with the first and second spring assemblies being connected to respective first and second conductive contacts that are constructed of a second metal, wherein the terminal structures are configured for push-in termination of conductive stripped ends of respective first and second wires between the at least one spring finger of the respective first and second spring assemblies and the respective first and second conductive contacts, and wherein the first and second conductive contacts are configured to be connected to respective first and second separate conductive elements. Such a terminal structure is shown for example within a receptacle assembly in the form of a grounding duplex plug outlet.