An electrical connector assembly includes an electrical connector having a connector housing holding contacts and an outer housing receiving the electrical connector. A CPA device is coupled to the outer housing and movable between a pre-stage position and a seated position. The electrical connector assembly includes a data matrix that includes a first data matrix portion and a second data matrix portion coupled to the CPA device and movable with the CPA device. The first and second data matrix portions are separated from each other when the CPA device is in the pre-stage position to form a split data matrix. The first and second data matrix portions are aligned adjacent each other when the CPA device is in the seated position to form a united data matrix. The split data matrix is unscannable and the united data matrix is scannable by a data scanning device.
H01R 13/641 - Moyens pour empêcher, bloquer ou éviter le couplage incorrect par l'indication du couplage incorrectMoyens pour empêcher, bloquer ou éviter le couplage incorrect par l'indication d'un engagement complet ou correct
H01R 13/514 - SoclesBoîtiers formés comme un bloc ou un assemblage modulaire, c.-à-d. composés de parties coopérantes pourvues de pièces de contact ou maintenant entre elles des pièces de contact
H01R 13/629 - Moyens additionnels pour faciliter l'engagement ou la séparation des pièces de couplage, p. ex. moyens pour aligner ou guider, leviers, pression de gaz
H01R 13/645 - Moyens pour empêcher, bloquer ou éviter le couplage incorrect par des éléments interchangeables sur le boîtier ou sur le socle
2.
CABLE CONNECTOR ASSEMBLY HAVING CONNECTOR IDENTIFICATION MODULE
A communication system includes a cable connector assembly having a cable connector with a cable connector housing holding cable contact assemblies each having a cable contact holder holding a first signal contact and a first shield terminated to a cable to define data channels and a cable connector identification module having first identification contacts and an identification device having unique identification data stored on the identification device. The communication system includes a circuit card connector assembly having a board connector with board contact assemblies mounted to a circuit card with second signal contacts and second shields mating with the corresponding first signal contacts and the first shields and a circuit card connector identification module for transmitting the unique identification data from the identification device to the circuit card connector assembly.
H05K 7/14 - Montage de la structure de support dans l'enveloppe, sur cadre ou sur bâti
H01R 12/72 - Dispositifs de couplage pour circuits imprimés rigides ou structures similaires se couplant avec la bordure des circuits imprimés rigides ou des structures similaires
H01R 12/75 - Dispositifs de couplage pour circuits imprimés rigides ou structures similaires se raccordant à des câbles à l'exclusion des câbles plats ou à rubans
A clamping unit for a cable preparation tool used for stripping various layers from medium voltage or high voltage cables encompasses a cable having a longitudinal axis and includes a first support element for axially supporting the cable from a first direction across the longitudinal axis, a second support element for axially supporting the cable from a second direction across the longitudinal axis, a central unit being interconnected with the first support element and the second support element, and a linear slide bearing unit, the slide bearing unit connecting the first support element and the second support element movably to the central unit, so that they can be moved in parallel and simultaneously to change their distance with respect to the central unit.
H02G 1/12 - Méthodes ou appareils spécialement adaptés à l'installation, entretien, réparation, ou démontage des câbles ou lignes électriques pour supprimer l'isolant ou l'armature des câbles, p. ex. de leur extrémité
The invention relates to an electronics module (100), in particular a radio module, for a vehicle, comprising a module housing (101) and at least one printed circuit board (103), wherein the module housing (101) comprises a housing base (105) and a housing cover (107), wherein the housing base (105) defines a receiving space (109) for receiving the printed circuit board (103), wherein at least one support element (111) is formed in the receiving space (109), wherein the printed circuit board (103) can be placed at least partially on the support element (111), wherein the housing cover (107) comprises a contacting element (113) in the form of a spring element, wherein the contacting element (113) is designed to contact the printed circuit board (103) and to apply a pressing force (F1), and wherein the printed circuit board (103) can be pressed against the at least one support element (111) of the housing base (105) by the applied pressing force (F1) of the contacting element (113) and can be securely positioned in the module housing (101).
An electrical connector assembly includes a terminal assembly and a shell. The terminal assembly includes a conductive wire having a multi-strand wire harness having inner cores, and molded first and second housing portions fitting with each other to define a hollow accommodation portion for accommodating the inner cores from which a shielding layer has been removed. Conductive cores of the inner cores, from which insulating layers have been removed, extend out of a leading-out end of the accommodation portion. The shell includes first and second outer shells fitting with each other to define a space accommodating the terminal assembly. The second outer shell extends in a direction angled relative to a direction the first outer shell extends in. The multi-strand wire harness and the accommodation portion are bent and received within the shell. Terminals of the terminal assembly are electrically connected to the conductive cores at the leading-out end.
A plug connector support element is provided for supporting a plug on a mating plug arrangement connected to the plug, wherein the plug connector support element is designed to be mounted externally between the plug and the mating plug arrangement. The plug connector support element includes at least one plug support surface designed to rest on the outside of the plug, and at least one counter support surface opposite the at least one plug support surface, designed to rest on the outside of the mating plug arrangement. A plug system with such a plug connector support element and a plug connection with such a plug system are provided. The proposed means contribute to making plug connections more robust against relative movements between the plug and the mating plug arrangement and less susceptible to wear.
H01R 13/56 - Moyens pour empêcher l'usure ou la fracture des conducteurs flexibles de sortie contre les pièces de couplage
H01R 13/502 - SoclesBoîtiers composés de différentes pièces
H01R 13/508 - SoclesBoîtiers composés de différentes pièces assemblées par une bride ou par un ressort
H01R 13/533 - Socles ou boîtiers conçus pour l'emploi dans des conditions extrêmes, p. ex. haute température, rayonnements, vibrations, environnement corrosif, pression
7.
ELECTRICAL CONNECTOR ASSEMBLY HAVING A CONNECTOR POSITION ASSURANCE DEVICE
TE Connectivity Brasil Industria De Eletronicos Ltda. (Brésil)
Inventeur(s)
Stoyanov, Anton
Camargo, Rafael A.
Abrégé
An electrical connector assembly includes an outer housing holding first and second electrical connectors and a CPA. The CPA device is movable between a pre-stage position and a seated position and includes a main body, a first CPA element configured to interface with a first latch and the first electrical connector, and a second CPA element configured to interface with a second latch and the second electrical connector. Movement of the CPA device into the seated position provides a mechanical indication that both the first and second electrical connectors are properly positioned within the outer housing and movement of the CPA device is prevented when at least one of the first and second electrical connectors are not fully inserted in the outer housing.
H01R 13/641 - Moyens pour empêcher, bloquer ou éviter le couplage incorrect par l'indication du couplage incorrectMoyens pour empêcher, bloquer ou éviter le couplage incorrect par l'indication d'un engagement complet ou correct
An electrical connector includes a housing having a housing body being a layered structure with walls forming a contact channel. The housing includes a connector latch extending from a first wall of the walls having a fulcrum extending from the first wall. The connector latch includes a latch actuator extending from the fulcrum configured to be actuated to move the connector latch. The connector latch includes a latch arm extending from the actuator and a latch hook extending from the latch arm configured to be coupled to a latching element of a mating electrical connector. The connector latch includes slots between the latch arm and the fulcrum allowing movement of the latch arm relative to the fulcrum. The electrical connector includes a contact received in the contact channel configured to be mated with a mating contact of the mating electrical connector.
H01R 13/50 - SoclesBoîtiers formés comme un corps intégré
H01R 13/629 - Moyens additionnels pour faciliter l'engagement ou la séparation des pièces de couplage, p. ex. moyens pour aligner ou guider, leviers, pression de gaz
H01R 13/635 - Moyens additionnels pour faciliter l'engagement ou la séparation des pièces de couplage, p. ex. moyens pour aligner ou guider, leviers, pression de gaz pour la séparation uniquement par une pression mécanique, p. ex. par la force d'un ressort
9.
AUXILIARY POWER TAP ASSEMBLIES FOR BATTERY ENERGY STORAGE SYSTEMS AND BATTERY ENERGY STORAGE SYSTEMS AND METHODS INCLUDING SAME
A battery energy storage system (BESS) for connection to a power supply includes a BESS unit and an auxiliary power supply network. The BESS unit includes an energy storage battery and an auxiliary power unit including an auxiliary power connection terminal. The auxiliary power supply network includes an auxiliary power trunk cable electrically connected to the power supply, and an auxiliary power connection system including an auxiliary power tap assembly. The auxiliary power tap assembly includes a tap cable, an insulation piercing connector (IPC), and a fuse. The IPC is engaged with the auxiliary power trunk cable to electrically couple the tap cable to the auxiliary power trunk cable. The tap cable electrically connects the auxiliary power trunk cable to the auxiliary power connection terminal. The fuse is connected to the tap cable electrically in-line between the IPC and the auxiliary power connection terminal.
H02J 3/32 - Dispositions pour l'équilibrage de charge dans un réseau par emmagasinage d'énergie utilisant des batteries avec moyens de conversion
H01H 85/02 - Dispositifs de protection dans lesquels le courant circule à travers un organe en matière fusible et est interrompu par déplacement de la matière fusible lorsqu'il devient excessif Détails
H01R 4/2433 - Plaques planes, p. ex. plaques planes multi-couches montées sur un support isolant une partie du support pouvant être déplacée pour enfoncer le câble dans l’entaille
H01R 4/2475 - Connexions utilisant des organes de contact pénétrant dans, ou transperçant, l'isolation ou les brins du câble les organes de contact pénétrant dans l’isolation étant actionnés par des vis, des écrous ou des boulons
10.
COMBINED TERMINAL, CONNECTOR AND CONNECTOR ASSEMBLY
A combined terminal includes a terminal having a first elastic arm formed at the front of the terminal, and a shell sleeved on the front of the terminal. A contact protrusion or a second elastic arm protruding toward the first elastic arm is formed on a top wall of the shell, and the contact protrusion or the second elastic arm is oppositely spaced from the first elastic arm to clamp a mating terminal inserted between the contact protrusion or the second elastic arm and the first elastic arm. A conductive property of a manufacturing material for the terminal is distinct to a conductive property of a manufacturing material for the shell, and a mechanical property of the manufacturing material for the shell is distinct to a mechanical property of the manufacturing material for the terminal.
H01R 13/20 - Broches, lames ou alvéoles conformés ou ayant une pièce séparée en vue de retenir ensemble les parties en fonctionnement
H01R 4/18 - Connexions conductrices de l'électricité entre plusieurs organes conducteurs en contact direct, c.-à-d. se touchant l'un l'autreMoyens pour réaliser ou maintenir de tels contactsConnexions conductrices de l'électricité ayant plusieurs emplacements espacés de connexion pour les conducteurs et utilisant des organes de contact pénétrant dans l'isolation effectuées uniquement par torsion, enroulage, pliage, sertissage ou autre déformation permanente par sertissage
H01R 4/62 - Connexions entre des conducteurs constitués de matériaux différentsConnexions entre ou avec des conducteurs en aluminium avec ou sans âme en acier
H01R 11/11 - Pièces d'extrémité ou pièces de dérivation pour fils ou câbles, supportées par le fil ou le câble et munies de moyens pour faciliter la connexion électrique avec quelque autre fil, borne ou organe conducteur
H01R 13/03 - Contacts caractérisés par le matériau, p. ex. matériaux de plaquage ou de revêtement
An electrical connection assembly and a battery pack signal acquisition device. The battery pack signal acquisition device has: a signal transmission bus; and an electrical connection assembly for electrically connecting a battery cell to the signal transmission bus to collect an electrical parameter of the battery cell. The electrical connection assembly and the signal transmission bus are respectively formed and electrically connected with each other. In the present invention, the electrical connection assembly can be replaced separately without replacing the signal transmission bus, which improves the convenience of use and reduces the later maintenance cost.
H01M 50/503 - Interconnecteurs pour connecter les bornes des batteries adjacentesInterconnecteurs pour connecter les cellules en dehors d'un boîtier de batterie caractérisées par la forme des interconnecteurs
H01M 10/42 - Procédés ou dispositions pour assurer le fonctionnement ou l'entretien des éléments secondaires ou des demi-éléments secondaires
H01M 10/48 - Accumulateurs combinés à des dispositions pour mesurer, tester ou indiquer l'état des éléments, p. ex. le niveau ou la densité de l'électrolyte
H01M 50/204 - Bâtis, modules ou blocs de multiples batteries ou de multiples cellules
H01R 4/18 - Connexions conductrices de l'électricité entre plusieurs organes conducteurs en contact direct, c.-à-d. se touchant l'un l'autreMoyens pour réaliser ou maintenir de tels contactsConnexions conductrices de l'électricité ayant plusieurs emplacements espacés de connexion pour les conducteurs et utilisant des organes de contact pénétrant dans l'isolation effectuées uniquement par torsion, enroulage, pliage, sertissage ou autre déformation permanente par sertissage
H01R 12/69 - Connexions fixes pour circuits imprimés flexibles, câbles plats ou à rubans ou structures similaires caractérisées par les bornes bornes déformables, p. ex. bornes à sertir
A liquid cooling tube includes an arc-shaped peripheral wall and a flat bottom wall. The liquid cooling tube is approximately semi-circular in shape such that a cross-section of the liquid cooling tube is approximately semi-circular. When the liquid cooling tube is installed into a slot of a busbar, a heat of the busbar is transferred to a cooling liquid inside the liquid cooling tube through the arc-shaped peripheral wall to cool the busbar.
An electrical connector includes a housing having a housing body being a layered structure with walls forming a contact channel. The housing includes a contact retention feature extending from a first wall of the walls into the contact channel. The contact retention feature includes a first fulcrum extending from the first wall, a second fulcrum extending from the first wall, and a latch arm extending from at least one of the first fulcrum and the second fulcrum. The latch arm includes a retention seat. The electrical connector includes a contact received in the contact channel. The contact includes a catch surface configured to engage the retention seat to retain the contact in the contact channel.
A method of attaching a flat flexible cable (FFC) to a plurality of terminals is provided. The method includes arranging a plurality of terminals within a connector housing, each terminal defining a weld area adapted to be electrically connected to a conductor of the FFC. The FFC is positioned proximate the connector housing such that the weld area of each terminal is arranged directly adjacent a respective one of a plurality of exposed conductors of the FFC. A cable latch is fitted to the connector, the cable latch including an adhesive hot melt material applied thereon. The weld areas of the terminals are clamped against the exposed conductors of the FFC with the cable latch. Finally, the weld area of each of the plurality of terminals is heated with an inductive heating source for electrically connecting the plurality of conductors of the FFC to the plurality of terminals and melting the adhesive hot melt material.
H01R 43/02 - Appareils ou procédés spécialement adaptés à la fabrication, l'assemblage, l'entretien ou la réparation de connecteurs de lignes ou de collecteurs de courant ou pour relier les conducteurs électriques pour connexions soudées
H01R 12/77 - Dispositifs de couplage pour circuits imprimés flexibles, câbles plats ou à rubans ou structures similaires
15.
CONTACT BRIDGE ARRANGEMENT AND SWITCHING DEVICE WITH FIXED CONTACTS ARRANGED BETWEEN TWO CONTACT BRIDGES
A contact bridge arrangement for a switching device includes a first contact bridge movable along a switching direction between open and closed positions having a section for connecting to a drive system and at least two switching contacts and a second contact bridge with at least two auxiliary switching contacts. Two fixed-contact assemblies are provided which are located in the switching direction between the first and the second contact bridge, where each of the two fixed-contact assemblies comprises at least one fixed contact for contacting a switching contact and at least one fixed contact for contacting an auxiliary switching contact. In the open position, the fixed contacts, the switching contacts and the auxiliary switching contacts are disengaged from each other. In the closed position, the arrangement generates a magnetic force that presses the contacts together and counteracts a repulsion force acting between these contacts in the event of a short circuit.
A sealing arrangement for sealing an electrical connection, wherein the electrical connection has a plurality of interfaces at which a plug and a mating connector of the electrical connection are matable with each other along a mating direction, includes a first sealing section, which is assigned to a first interface of the plurality of interfaces and a second sealing section, which is assigned to a second interface of the plurality of interfaces. The first and the second sealing section each have a plurality of sealing projections arranged one behind the other in the mating direction. The sealing projections of the first sealing section are arranged offset in the mating direction to the sealing projections of the second sealing section. The sealing arrangement may be provided at a plug connector of an electrical connection.
The invention relates to a contact device (15), to a contact system (10) and to a method for assembling the contact system (10), wherein the contact device (15) has a contact assembly (55) having at least one first contact element (156) and a second contact element (157) which is disposed so as to be offset from the first contact element (156), and a housing (60) having a foil housing part (65) and a housing cover (70), wherein the first contact element (156) and the second contact element (157) each have a blade assembly (170) having at least one first blade element (200), wherein the foil housing part (65) has a foil housing wall (120) having a first foil housing opening (85), a first opening assembly (385), a second opening assembly (386), a receptacle region (155) and a bending space (260), wherein the first blade element (200) of the first contact element (156) engages at least in portions in the first blade receptacle (415) of the first opening assembly (385), and the first blade element (200) of the second contact element (157) engages at least in portions in the first blade receptacle (415) of the second opening assembly (385), wherein a cover portion (275) of the housing cover (70) is disposed on the first foil housing opening (85) and closes the first foil housing opening (85) at least in portions, wherein the cover web (295, 300) of the housing cover (70) engages in the bending space (260).
H01R 4/2433 - Plaques planes, p. ex. plaques planes multi-couches montées sur un support isolant une partie du support pouvant être déplacée pour enfoncer le câble dans l’entaille
H01R 12/67 - Connexions fixes pour circuits imprimés flexibles, câbles plats ou à rubans ou structures similaires caractérisées par les bornes bornes pénétrant dans l'isolant
A connector housing includes a housing body and a first snap lock. The housing body has a row of first insertion holes, and a first snap slot. The first snap slot is in communication with the row of first insertion holes. Each first insertion hole receives one first terminal of a row of first terminals. The first snap lock has a first cantilever connected to the housing body, and a first hook at a tail end of the first cantilever. The first snap lock moves between a locked position and an unlocked position. A row of first ribs respectively corresponding to the row of first insertion holes are formed on the first hook. The row of first ribs respectively abut against the row of first terminals when the first hook is engaged with the first snap slot.
H01R 12/77 - Dispositifs de couplage pour circuits imprimés flexibles, câbles plats ou à rubans ou structures similaires
H01R 13/422 - Fixation de manière démontable sur un socle ou dans un boîtier flexible en une seule pièceSocle ou boîtier en une seule pièce comportant des moyens de verrouillage élastiques
H01R 13/50 - SoclesBoîtiers formés comme un corps intégré
H01R 43/18 - Appareils ou procédés spécialement adaptés à la fabrication, l'assemblage, l'entretien ou la réparation de connecteurs de lignes ou de collecteurs de courant ou pour relier les conducteurs électriques pour la fabrication de socles ou de boîtiers pour pièces de contact
H01R 43/20 - Appareils ou procédés spécialement adaptés à la fabrication, l'assemblage, l'entretien ou la réparation de connecteurs de lignes ou de collecteurs de courant ou pour relier les conducteurs électriques pour assembler les pièces de contact avec le socle isolant, le boîtier ou le manchon ou pour les en désassembler
19.
ELECTRICAL SENSOR ASSEMBLY, SENSOR ARRANGEMENT INCLUDING MATING CONNECTOR, AND KIT
An electrical sensor assembly includes an electrical plug housing for mating a mating connector, a circuit board in the plug housing, a plurality of terminals which make electrical contact to a surface of the circuit board, and a sensor on the circuit board in electrical contact with a plurality of electrical connectors on the surface of the circuit board. The electrical connectors press against the respective terminals for making the electrical contact. A sensor arrangement can include the electrical sensor assembly and a mating connector that connects to the electrical plug housing. The mating connector includes a plurality of complementary terminals that electrically connect to the terminals.
A connector includes a housing that extends between a mating end and a wire end. The mating end configured to be mated with a mating connector. The housing includes a terminal channel. The housing includes a chamber at the wire end. The connector includes a terminal received in the terminal channel. The terminal includes a mating end configured to be mated to a mating terminal of the mating connector. The terminal includes a terminating end terminated to a wire. The wire extends from the wire end of the housing. The connector includes a TPA device received in the chamber. The TPA device includes a terminal blocking element rearward of the terminal for blocking and position assurance of the terminal in the terminal channel. The TPA device includes a sealing element for sealing the chamber of the housing.
H01R 13/52 - Boîtiers protégés contre la poussière, les projections, les éclaboussures, l'eau ou les flammes
H01R 12/78 - Dispositifs de couplage pour circuits imprimés flexibles, câbles plats ou à rubans ou structures similaires se raccordant à d'autres circuits imprimés flexibles, à des câbles plats ou à rubans ou à des structures similaires
H01R 13/422 - Fixation de manière démontable sur un socle ou dans un boîtier flexible en une seule pièceSocle ou boîtier en une seule pièce comportant des moyens de verrouillage élastiques
H01R 13/436 - Fixation de plusieurs pièces de contact par une seule pièce de verrouillage
H01R 13/502 - SoclesBoîtiers composés de différentes pièces
H01R 13/58 - Moyens pour atténuer l'effort de tension sur le câble de connexion, p. ex. serre-câble
A Low-voltage module of a DC charging dock includes an insulator and an electrical connection member. The electrical connection member includes a first contact part, a second contact part, and a connection part. The first contact part electrically contacts a PE terminal of the DC charging dock. The second contact part electrically contacts an A-terminal of the DC charging dock. The connection part is fixed to the insulator and electrically connects the first contact part and the second contact part. The Low-voltage module is installed in a plug-in manner into an insertion slot in a charging dock housing of the DC charging dock from an outside. The first contact part and the second contact part respectively electrically contact the PE terminal and the A-terminal when the Low-voltage module is installed in the insertion slot, to electrically connect the A-terminal to the PE terminal.
A power terminal for a charging dock comprises a cylindrical part, a welding part and a high-voltage cable. The cylindrical part is adapted to mate with a mating power terminal. The welding part is connected to a rear end of the cylindrical part and is adapted to be welded to a high-voltage cable. The welding part is flat and has first and second sides opposite in its thickness direction. The first side of the welding part is adapted to be welded to the high-voltage cable. A local protrusion is formed on the second side of the welding part and is adapted to be in thermal contact with a thermal pad of the charging dock, such that the heat of the power terminal can be transferred to a temperature sensor of the charging dock.
A temperature detection module includes an insulator, a thermal pad assembled onto the insulator for thermal contact with a power terminal of a charging dock, a temperature sensor provided in the thermal pad to detect a temperature of the power terminal, and a conductive lead provided in the insulator and electrically connected to the temperature sensor. The temperature detection module is installed in a plug-in manner from an outside into an insertion slot formed on a charging dock housing. The thermal pad is in thermal contact with the power terminal when the temperature detection module is installed in the insertion slot to transfer heat from the power terminal to the temperature sensor.
B60L 53/16 - Connecteurs, p. ex. fiches ou prises, spécialement adaptés pour recharger des véhicules électriques
G01K 1/14 - SupportsDispositifs de fixationDispositions pour le montage de thermomètres en des endroits particuliers
G01K 1/16 - Dispositions particulières pour conduire la chaleur de l'objet à l'élément sensible
H01R 13/422 - Fixation de manière démontable sur un socle ou dans un boîtier flexible en une seule pièceSocle ou boîtier en une seule pièce comportant des moyens de verrouillage élastiques
H01R 13/506 - SoclesBoîtiers composés de différentes pièces assemblées par enclenchement réciproque des pièces
H01R 13/52 - Boîtiers protégés contre la poussière, les projections, les éclaboussures, l'eau ou les flammes
A charging dock includes a housing, a terminal assembly and a temperature detection module. The housing has a terminal socket and an insertion slot in communication therewith. The terminal assembly includes a power terminal inserted into the terminal socket. The temperature detection module is inserted into the insertion slot for detecting the temperature of the power terminal. The temperature detection module comprises a connector interface located outside the charging dock housing for mating with a connector. A limiting feature is formed on the charging dock housing. When the temperature detection module is inserted into a predetermined installation position, the limiting feature does not interfere with a connector housing to allow the connector to mate with the connector interface. When the temperature detection module is not inserted into the predetermined installation position, the limiting feature interferes with the connector housing, preventing the connector from being mated with the connector interface.
A temperature detection module includes an insulation shell, a circuit board installed into the insulation shell, a thermal pad installed on the circuit board, a temperature sensor provided in the thermal pad and mounted on the circuit board, and an external pin installed on the circuit board. The temperature detection module is installed in a plug-in manner from an outside into an insertion slot in a charging dock housing. The thermal pad is in thermal contact with a power terminal inside the charging dock housing when the temperature detection module is installed in the insertion slot to transfer heat of the power terminal to the temperature sensor. The temperature sensor detects a temperature of the power terminal and is electrically connected to the external pin through a conductive trace on the circuit board. The external pin is electrically connected with a connector located outside the charging dock housing.
A cable assembly is provided and includes a primary twinaxial cable that includes a first conductor and a second conductor. The primary twinaxial cable includes a primary insulator holding the first and second conductors of the primary twinaxial cable. Exposed portions of the first and second conductors of the primary twinaxial cable protrude from the primary insulator. The primary twinaxial cable includes a primary cable shield surrounding the primary insulator to provide shielding for the first and second conductors of the primary twinaxial cable. The cable assembly includes a secondary twinaxial cable that includes a first conductor and a second conductor.
H02G 15/117 - Jonctions de câbles protégées par des coffrets, p. ex. par des boîtes de distribution, de connexion ou de jonction pour des câbles à conducteurs multiples
H02G 15/113 - Boîtes divisées longitudinalement dans la direction du câble principal
27.
MAGNETIC ANGLE SENSOR DEVICE AND METHOD USING THE MAGNETIC ANGLE SENSOR DEVICE
A magnetic angle sensor device includes a sensor array and an indication element, which is arranged to rotate about a rotational axis, wherein the indication element includes a first section arranged on the inside of a second section, wherein the first section includes a first arrangement of first permanent magnetic sections and the second section includes a second arrangement with at least a second permanent magnetic section. Each of the first permanent magnetic sections has a first magnetization and are arranged periodically in circumferential direction with respect to the rotational axis to provide a multi-pole magnetic field. The second permanent magnetic section has a second magnetization and provides a homogenous magnetic field that interacts with the multi-pole magnetic field to an overall magnetic field. The sensor array detects the overall magnetic field and generates a sensor signal in response to a circumferential orientation of the indication element.
G01B 7/30 - Dispositions pour la mesure caractérisées par l'utilisation de techniques électriques ou magnétiques pour mesurer des angles ou des cônesDispositions pour la mesure caractérisées par l'utilisation de techniques électriques ou magnétiques pour tester l'alignement des axes
G01D 5/14 - Moyens mécaniques pour le transfert de la grandeur de sortie d'un organe sensibleMoyens pour convertir la grandeur de sortie d'un organe sensible en une autre variable, lorsque la forme ou la nature de l'organe sensible n'imposent pas un moyen de conversion déterminéTransducteurs non spécialement adaptés à une variable particulière utilisant des moyens électriques ou magnétiques influençant la valeur d'un courant ou d'une tension
28.
VIBRATION-RESISTANT CONTACT ARRANGEMENT FOR HV CONNECTIONS
A contact arrangement for electrical HV connections includes a contact socket and a contact bolt that can be inserted into the contact socket along an insertion direction. The contact arrangement includes a spring arrangement comprising a spring which, when the contact bolt is inserted into the contact socket, is arranged and compressed between the contact socket and the contact bolt in a radial direction. The contact arrangement includes a support surface arrangement which has at least one support surface inclined relative to the insertion direction, wherein the compressed spring is supported on the support surface arrangement and an axial spring force pointing in the insertion direction is generated on the support surface arrangement by the compressed spring supported thereon. Such a contact arrangement is particularly wear-resistant.
A retention clip for mechanical strain relief of a cable tube surrounding a cable harness of a connector defines a cable channel for passing therethrough the cable harness along an insertion direction. The retention clip includes a catch section at least partially projecting into the cable channel and adapted to engage the cable tube inserted into the cable channel, an anchoring section for attachment of the retention clip to the connector, and a transition section located between the anchoring section and the catch section, wherein the transition section continuously surrounds the cable channel and is circumferentially monolithic with respect to the insertion direction. Due to the circumferentially monolithic nature, the retention clip more compact and easier to manufacture and install than existing strain relief structures with two halves. Further, a cable assembly, a connector and a connection assembly with such a retention clip are provided.
Stanley Black & Decker Engineered Fastening (Nantong) Co., Ltd. (Chine)
Inventeur(s)
Sun, Xiaoguang (field)
Yuan, Wei
Yang, Yuchen
Zhou, Xiao (nichee)
Li, Xiaobing
Shen, Kanwen
Ji, Xiaoan
Li, Jia
Xiao, Jian
Chang, Chengge
Wei, Shijie
Abrégé
A pull-type riveting assembly includes a riveting nut including a positioning end, a bolt and a washer. The bolt is threaded with the riveting nut, and the washer is fitted onto the positioning end of the riveting nut. The assembly adapted such that with the washer engaged with the positioning end of the riveting nut, the riveting nut cannot rotate relative to the washer. The washer is adapted to engage with a fixed sleeve of a riveting tool to prevent the riveting nut from being rotated when being riveted by the riveting tool.
A connector terminal includes a bottom plate and a pair of elastic arms. The bottom plate has two opposite sides in a width direction of the bottom plate. The pair of elastic arms are each connected to one side of the bottom plate. The connector terminal is an integral piece. The pair of elastic arms clamp a first busbar inserted between them. The bottom plate electrically contacts a second busbar.
A high voltage having a housing with a mating end and a mounting end. The housing has contact receiving slots with walls which extend between the contact receiving slots. Power contacts are provided in the contact receiving slots. First ribs extend from the walls toward the mating end of the housing. Second ribs extend from the mounting end of the housing. The first ribs, the walls and the second ribs provide a barrier between the power contacts to prevent arcing and provide an increased distance across the surface between adjacent contacts. the second ribs are positioned in slots of a mating substrate as the power connector is mounted on the substrate, allowing the isolation of the power contacts to be continued into the substrate.
33.
ELECTRICAL CONNECTOR WITH ALIGNMENT AND RETENTION PINS
An electrical connector assembly having a housing, signal contacts and ground contacts. The housing has a mounting side configured to face a circuit board. The signal contacts are provided in the housing and have signal contact circuit board mounting sections with signal contact compliant portions. The ground contacts are provided in the housing and have ground contact circuit board mounting sections with ground contact compliant portions. One or more of the signal contact compliant portions or the ground compliant portions have a larger width than the remainder of signal contact compliant portions and the ground compliant portions. The one or more of the signal contact compliant portions or the ground compliant portions cooperate with one or more enlarged vias of the circuit board to align the connector assembly with the circuit board.
34.
METHOD AND FIXTURE FOR PLATING ELECTRICAL COMPONENTS
A method for plating electrical components includes 3D printing a 3D printed element including a plating rack. The electrical components, and sacrificial spars are between the plating rack and the electrical components. The 3D printed element is a unitary, monolithic structure with the plating rack. The electrical components and the sacrificial spars are integral. The method positions the 3D printed element in a plating chamber. The method plates the 3D printed element in the plating chamber including plating the electrical components.
A power connector includes a connector housing having a plug at a mating end at a front and a base at a terminating end at a rear. The plug is configured to be plugged into a busbar assembly and includes a slot between plug walls that receives a busbar of the busbar assembly. The power connector includes first and second power contacts received in corresponding contact channels each having a mating end in the slot to mate with busbar contacts of the busbar and a sockets at the terminating ends configured to receive corresponding power pins.
H01R 25/14 - Rails ou barres omnibus réalisés de telle sorte que les pièces complémentaires puissent leur être connectées en tout point de leur longueur
H01R 13/04 - Broches ou lames destinées à coopérer avec des alvéoles
H01R 13/24 - Contacts pour coopération par aboutage élastiquesContacts pour coopération par aboutage montés élastiquement
H01R 13/631 - Moyens additionnels pour faciliter l'engagement ou la séparation des pièces de couplage, p. ex. moyens pour aligner ou guider, leviers, pression de gaz pour l'engagement uniquement
36.
Electrical Connector Interface Having Protrusions For Sealing Against A Gasket
An electrical connector with a dielectric housing which has a mating surface and an assembly surface. A plurality of terminal receiving passageways extends between the mating surface and the assembly surface. A plurality of terminals are positioned in the plurality of terminal receiving passageways. A plurality of protrusions extends from the mating surface in a direction away from the assembly surface. The protrusions surround openings of the terminal receiving passageways. As the connector mated with a mating connector, the plurality of protrusions are configured to engage and compress a flat elastomer gasket of the mating connector to provide a seal around each of the terminal receiving passageways and the terminals.
A system providing a haptic feedback improving its functionality includes a haptic feedback device and communicates with a catheter. In operation, the haptic feedback device forms a strap and each of the plurality of actuating regions is arranged along a circumference a of the haptic feedback device. Further, in operation spatial information is transmitted from at least one of a plurality of sensing locations to the haptic feedback device and in accordance with the transmitted spatial information at least one of the plurality of actuating regions is actuated to provide the haptic feedback.
A plug connector for being mated with a mating connector, to the mating connector, the connector assembly, and to a method of mating a connector assembly. A plug connector for being mated with a mating connector comprises a rotatable lever, which is operable to be rotated between an unlocked position and a locked position; and a first housing comprising a pivot bearing for rotatably supporting the rotatable lever. The lever comprises an actuating element, which is engageable with a driving element arranged at the mating connector, the actuating element being operable to un-mate the plug connector from the mating connector by rotating the lever from the locked position into the unlocked position, wherein the rotatable lever has latching means, which are operable to lock the plug connector at a corresponding locking element of the mating connector without rotating the lever, when the lever is in the locking position.
H01R 13/629 - Moyens additionnels pour faciliter l'engagement ou la séparation des pièces de couplage, p. ex. moyens pour aligner ou guider, leviers, pression de gaz
39.
ELECTRICAL CONNECTION ASSEMBLY AND CHARGING DEVICE
An electrical connection assembly includes an installation cylinder, a cable, a terminal, a temperature sensor, and a heat shrink tube. The installation cylinder has a front end and a rear end opposite each other in an axial direction of the installation cylinder. The cable passes through the installation cylinder and has a conductor end extending from the front end of the installation cylinder. The terminal has a connection end electrically connected to the conductor end. The temperature sensor is in thermal contact with the connection end and has leads passing through the installation cylinder. The heat shrink tube is fitted and heat shrunk onto the rear end of the installation cylinder, the cable, and the leads led out from the rear end of the installation cylinder. The heat shrink tube achieves sealing between the cable, the leads, and the installation cylinder. The temperature sensor detects a temperature of the terminal.
A charging dock heating element includes a body part. The body part is inserted into a slot of a housing of a charging dock. The charging dock heating element is electrically connected to a lead frame inside the housing of the charging dock. The charging dock heating element is electrically connected to a power supply via a first lead in the lead frame. The charging dock heating element generates heat when powered on to heat the charging dock.
A cooling box includes a box body with a bottom opening, a bottom cover installed on the bottom opening of the box body, a plurality of pipe joints integrally formed with the box body and communicated with an interior of the box body to allow a cooling liquid to flow into or out of the box body through the pipe joints, and a heat-conductive electric insulation layer wrapped around an outside of the box body. An exterior of the bottom cover is wrapped by the heat-conductive electric insulation layer or by a heat-conductive electric insulation cap that is fitted onto a lower part of the box body. The cooling box thermally contacts a charging terminal to transfer heat of the charging terminal to the cooling liquid inside the box body through the heat-conductive electric insulation layer and the bottom cover to cool the charging terminal.
An electrical connector which has a single unitary one-piece dielectric housing with a mating surface and an assembly surface. One or more terminal receiving passageways extend between the mating surface and the assembly surface. Contact retention clip receiving recesses are provided in the one or more terminal receiving passageways. The contact retention clip receiving recesses have larger diameters than diameters of remaining portions of the terminal receiving passageways. Contact retention clips are positioned in the contact retention clip receiving recesses. The contact retention clips have unstressed diameters which are larger than the diameters of the contact retention clip receiving passageways. The contact retention clips exert force on walls of the contact retention clip receiving recesses.
An electrical connector assembly having a housing, signal contacts and ground contacts. The housing has a mounting side configured to face a circuit board. The signal contacts are provided in the housing and have signal contact circuit board mounting sections with signal contact compliant portions. The ground contacts are provided in the housing and have ground contact circuit board mounting sections with ground contact compliant portions. One or more of the signal contact compliant portions or the ground compliant portions have a larger width than the remainder of signal contact compliant portions and the ground compliant portions. The one or more of the signal contact compliant portions or the ground compliant portions cooperate with one or more enlarged vias of the circuit board to align the connector assembly with the circuit board.
H01R 12/58 - Connexions fixes pour circuits imprimés rigides ou structures similaires caractérisées par les bornes bornes pour insertion dans des trous
An electrical connector having a housing with a mating end and a terminal receiving end. Housing side walls and housing releasable locking latches extend between the mating end and the terminal receiving end. A center terminal receiving member extends from the terminal receiving end to the mating end. A terminal is positioned in the center terminal receiving member. The terminal has a mating section and a wire receiving section. The connector can be mated at different orientations relative to a mating electrical connector.
H01R 13/52 - Boîtiers protégés contre la poussière, les projections, les éclaboussures, l'eau ou les flammes
H01R 13/631 - Moyens additionnels pour faciliter l'engagement ou la séparation des pièces de couplage, p. ex. moyens pour aligner ou guider, leviers, pression de gaz pour l'engagement uniquement
H05B 3/42 - Éléments chauffants ayant la forme de tiges ou de tubes non flexibles
A receptacle cage for shielding electrical connections between a receptacle connector and a pluggable module is provided. The receptacle cage includes cage walls extending between a front end and a rear end of the receptacle cage. The cage walls include a top wall, a first side wall, a second side wall, and a rear wall forms a cavity. The first and second side walls and the rear wall configured to be mounted to a circuit board. The cavity forms a connector channel configured to receive the receptacle connector. The cavity forms a module channel configured to receive the pluggable module configured to be coupled to the receptacle connector. The first side wall has a first edge configured to be mounted to the circuit board. The second side wall has a second edge configured to be mounted to the circuit board. The rear wall has a rear edge configured to be mounted to the circuit board. The first side wall includes a first EMI fence at the first edge configured to be coupled to the circuit board. The second side wall includes a second EMI fence at the second edge configured to be coupled to the circuit board. The rear wall includes a rear EMI fence at the rear edge configured to be coupled to the circuit board.
A sensor device, for a controlled mechanical device, such as a rotary device, is disclosed. A logic module of the device is configured to process sensor input and pass Manchester encoded data, determined by processing the sensor input, to a communication module. The communication module, configured for wired communication of binary data, is also configured for: transmitting differential Manchester encoded data onto a wired interface, the differential Manchester encoded data being based on the Manchester encoded data from the logic module; and receiving differential signals from the wired interface.
G01D 5/16 - Moyens mécaniques pour le transfert de la grandeur de sortie d'un organe sensibleMoyens pour convertir la grandeur de sortie d'un organe sensible en une autre variable, lorsque la forme ou la nature de l'organe sensible n'imposent pas un moyen de conversion déterminéTransducteurs non spécialement adaptés à une variable particulière utilisant des moyens électriques ou magnétiques influençant la valeur d'un courant ou d'une tension en faisant varier la résistance
47.
CONTACT BRIDGE FOR CONNECTING TWO BUSBARS AND CONNECTOR WITH A CONTACT BRIDGE
A contact bridge for connecting a first busbar to a second busbar includes a first clamp mouth for at least partially receiving the first busbar, a second clamp mouth facing away from the first clamp mouth for at least partially receiving the second busbar, and a spring assembly against which the first clamp mouth and the second clamp mouth are each configured to be openable, wherein the first clamp mouth is connected to the second clamp mouth in an electrically conductive and motion-transmitting manner. This ensures that compensating movements required to overcome positional tolerances between the busbars are distributed evenly between the first and second clamping jaws. Furthermore, a housing for the contact bridge and a connector with such a contact bridge is provided.
A connector includes an insulating frame and at least one cage slidably mounted on a corresponding guide of the insulating frame between a retracted position and a deployed position according to an insertion axis, wherein the cage includes a releasable clamping part arranged to maintain in deployed position a cooperation between a conductive bar and a wire, the guide presenting a contact location extending according to the insertion axis for receiving an extremity portion of the wire when said wire cooperates with the conductive bar, and wherein the cage is, in retracted position, out of a zone extending along the contact location according to the insertion axis.
A charging socket integrated with an electronic lock. The charging socket includes a socket housing and a socket assembly. The socket assembly is provided within the socket housing. The socket assembly includes a printed circuit board. The electronic lock is electrically connected to the printed circuit board of the socket assembly.
A clamp retainer for an electric connector includes an insulation housing defining at least one receptacle for inserting an electrical conductor along an insertion direction, and at least one clamping spring for clamping the electrical conductor upon insertion into the at least one receptacle, wherein the at least one clamping spring comprises a fixing portion, a clamping portion and an intermediate portion, wherein the fixing portion is held directly by the insulation housing, wherein the clamping portion is deflectable towards the fixing portion, wherein the clamping portion and the fixing portion are jointed by the intermediate portion, and wherein the intermediate portion is spaced apart from the insulation housing in the insertion direction.
H01R 4/48 - Connexions par serrageConnexions par ressort utilisant un ressort, un clip, ou un autre organe élastique
H01R 43/20 - Appareils ou procédés spécialement adaptés à la fabrication, l'assemblage, l'entretien ou la réparation de connecteurs de lignes ou de collecteurs de courant ou pour relier les conducteurs électriques pour assembler les pièces de contact avec le socle isolant, le boîtier ou le manchon ou pour les en désassembler
An angled subassembly of an angled connector includes an angled dielectric and a cable disposed in the angled dielectric. The angled dielectric has a first dielectric section and a second dielectric section extending at a bend angle with respect to the first dielectric section. The cable has a first portion positioned in the first dielectric section and a second portion positioned in the second dielectric section, the second portion extending at the bend angle with respect to the first portion.
H01R 13/6591 - Caractéristiques ou dispositions spécifiques de raccordement du blindage aux organes conducteurs
H01R 13/6593 - Caractéristiques ou dispositions spécifiques de raccordement du blindage aux organes conducteurs l'organe conducteur étant un câble blindé le blindage étant composé de différentes pièces
An arrangement for an electrical connector pluggable with a mating connector includes a housing, a lever attached to the housing movable between a pre-plugging disposition and a final plugging disposition, and a CPA movably attached to the lever movable from a delivery position through a ready-to-lock position to a locking position. The CPA secures the lever in the final plugging disposition to the housing when in the locking position. The lever is moved from the final plugging disposition to the pre-plugging disposition when the CPA is in the delivery position. The CPA is moved from the delivery position to the ready-to-lock position when the lever is in the pre-plugging disposition. The lever is moved to the final plugging disposition when the CPA is in the ready-to-lock position. The CPA is moved to the locking position when the lever is in the final plugging disposition and when the CPA is in the ready-to-lock position.
H01R 13/629 - Moyens additionnels pour faciliter l'engagement ou la séparation des pièces de couplage, p. ex. moyens pour aligner ou guider, leviers, pression de gaz
H01R 13/641 - Moyens pour empêcher, bloquer ou éviter le couplage incorrect par l'indication du couplage incorrectMoyens pour empêcher, bloquer ou éviter le couplage incorrect par l'indication d'un engagement complet ou correct
53.
HARNESS ASSEMBLY WITH AN END NODE HARNESS CONNECTOR FOR AN ELECTRICAL CONNECTOR SYSTEM
A harness assembly includes a cable assembly includes a plurality of wires and a harness connector with a harness connector housing and harness connector terminals terminated to the corresponding wires of the cable assembly. The harness connector housing includes a mating end for mating with a device connector of an electrical device and a cable end with the wires extending therefrom. The harness connector housing includes terminal channels holding the corresponding harness connector terminals. Each harness connector terminal includes a mating end and a terminating end. The mating end is configured to be mated with a device terminal of the device connector to create a signal path between the wire and the corresponding device terminal. The harness assembly includes bus terminals received in the harness connector housing each having mating beams configured to be electrically connected to the corresponding harness connector terminal for electrical bussing of corresponding signal paths.
H01R 13/432 - Fixation de manière démontable par des moyens de verrouillage élastiques situés sur les pièces de contactFixation de manière démontable par des moyens de verrouillage situés sur des pièces de contact élastiques par une lame élastique emboutie à enclenchement brusque derrière un épaulement du socle ou du boîtier
A charging lock assembly for a charging inlet assembly includes a charging lock housing having a cavity with a charging lock pin in the cavity configured to lock a charging connector to the charging inlet assembly during charging as the charging lock pin is moved between a locked position and an unlocked position. The charging lock assembly includes a release assembly having a release lever operably coupled to the charging lock pin to release the charging lock pin from the locked position to the unlocked position. The release assembly includes a release cable coupled to the release lever to actuate the release lever and a cable adapter supporting the release cable. The cable adapter has a cable channel receiving the release cable.
H01R 13/633 - Moyens additionnels pour faciliter l'engagement ou la séparation des pièces de couplage, p. ex. moyens pour aligner ou guider, leviers, pression de gaz pour la séparation uniquement
B60L 53/16 - Connecteurs, p. ex. fiches ou prises, spécialement adaptés pour recharger des véhicules électriques
A high voltage having a housing with a mating end and a mounting end. The housing has contact receiving slots with walls which extend between the contact receiving slots. Power contacts are provided in the contact receiving slots. First ribs extend from the walls toward the mating end of the housing. Second ribs extend from the mounting end of the housing. The first ribs, the walls and the second ribs provide a barrier between the power contacts to prevent arcing and provide an increased distance across the surface between adjacent contacts. the second ribs are positioned in slots of a mating substrate as the power connector is mounted on the substrate, allowing the isolation of the power contacts to be continued into the substrate.
H01R 13/53 - Socles ou boîtiers pour dures conditions de serviceSocles ou boîtiers avec des moyens pour éviter l'effet couronne ou l'amorçage d'un arc
H01R 12/73 - Dispositifs de couplage pour circuits imprimés rigides ou structures similaires se couplant avec la bordure des circuits imprimés rigides ou des structures similaires se raccordant à d'autres circuits imprimés rigides ou à des structures similaires
H01R 13/405 - Fixation d'une manière non démontable, p. ex. par moulage, rivetage
57.
ELECTRICAL TERMINAL, ELECTRICAL FEED-TROUGH TERMINAL, SYSTEM AND METHOD OF ASSEMBLING THE SYSTEM
An electrical terminal, an electrical feed-trough terminal, a system and a method of assembling the system, are provided wherein the electrical terminal includes a busbar, a spring clamp and a blade arrangement, wherein the blade arrangement has at least a first blade which adjoins a cutting groove with a groove base, wherein the blade arrangement is arranged in an inclined manner with regard to a plug-in axis, wherein the spring clamp comprises a conductor feed-through section with a first recess and a pressure bar, wherein the pressure bar is arranged between a free end of the conductor feed-through section and the first recess, wherein the busbar is connected to the blade arrangement and to the spring clamp, and wherein the spring clamp may be bent at least between a first spring shape and a second spring shape differing from the first spring shape.
H01R 4/48 - Connexions par serrageConnexions par ressort utilisant un ressort, un clip, ou un autre organe élastique
H01R 4/2429 - Plaques planes, p. ex. plaques planes multi-couches montées sur un support isolant
H01R 4/247 - Connexions utilisant des organes de contact pénétrant dans, ou transperçant, l'isolation ou les brins du câble les organes de contact pénétrant dans l’isolation étant actionnés par des ressorts
H01R 43/26 - Appareils ou procédés spécialement adaptés à la fabrication, l'assemblage, l'entretien ou la réparation de connecteurs de lignes ou de collecteurs de courant ou pour relier les conducteurs électriques pour engager ou séparer les deux pièces d'un dispositif de couplage
58.
POSITION RETAINING MEMBER, CONNECTOR AND CONNECTOR ASSEMBLY
A position retaining member is adapted to be inserted into a connector housing and adapted to be moved between a final lock position and a pre lock position. The position retaining member includes a cantilever part and a pressing part. When the position retaining member is in the final lock position, the cantilever part is adapted to be pressed against an elastic buckle of the connector housing to hold the elastic buckle in a locking position engaged with a protrusion of a mating housing of a mating connector. When the position retaining member is in the pre lock position, the pressing part is adapted to press the elastic buckle to an unlocking position separated from the protrusion of the mating housing, allowing the connector housing to be pulled out from the mating housing.
The present invention discloses a contactor detection circuit. The contactor detection circuit comprises: a comparator; a reference voltage generation circuit, whose output end is connected to the inverting input end of the comparator, for inputting a reference voltage V1 to the inverting input end of the comparator; a sampling circuit electrically connected to two static contacts of a contactor and its output end connected to the in-phase input end of the comparator, for inputting a sampling voltage V2 to the in-phase input end of the comparator; and a waveform generator, whose output end is connected to the input end of the sampling circuit, is used to input a periodically changing voltage signal V3 to the sampling circuit. When the contactor is in an open state, the sampling voltage V2 output by the sampling circuit is a periodic waveform, causing the comparator to output a periodic square wave signal; when the contactor is in a closed state, the sampling voltage V2 output by the sampling circuit is higher than the reference voltage V1, causing the comparator to output a high level. The present invention does not require the use of isolated power supplies and isolated operational amplifiers, nor does it require the use of MCUs or the development of specialized software, greatly reducing costs.
G01R 19/165 - Indication de ce qu'un courant ou une tension est, soit supérieur ou inférieur à une valeur prédéterminée, soit à l'intérieur ou à l'extérieur d'une plage de valeurs prédéterminée
G01R 19/25 - Dispositions pour procéder aux mesures de courant ou de tension ou pour en indiquer l'existence ou le signe utilisant une méthode de mesure numérique
G01R 31/327 - Tests d'interrupteurs de circuit, d'interrupteurs ou de disjoncteurs
A connector terminal includes a first terminal and a second terminal. The first terminal includes a first body in a form of a sheet and a first pin. The first body has an upper side and a lower side, and a front side and a rear side. The first pin is connected to the lower side of the first body. The second terminal includes a second body in a form of a sheet and a second pin. The second body has an upper side and a lower side, and a front side and a rear side. The second pin is connected to the lower side of the second body. The first body and the second body are stacked and fixed together. The first pin is combined with the second pin for simultaneous insertion into a socket formed in a circuit board.
H01R 12/58 - Connexions fixes pour circuits imprimés rigides ou structures similaires caractérisées par les bornes bornes pour insertion dans des trous
H01R 13/428 - Fixation de manière démontable par des moyens de verrouillage élastiques situés sur les pièces de contactFixation de manière démontable par des moyens de verrouillage situés sur des pièces de contact élastiques
A catheter sensor array includes a catheter, a plurality of sensor elements positioned at a distal end of the catheter, and a plurality of sensor controllers each connected to at least one of the sensor elements by a first connection. Each of the sensor controllers is positioned along a length of the catheter closer to the distal end of the catheter than to a proximal end of the catheter opposite the distal end.
A61B 5/00 - Mesure servant à établir un diagnostic Identification des individus
A61B 90/00 - Instruments, outillage ou accessoires spécialement adaptés à la chirurgie ou au diagnostic non couverts par l'un des groupes , p. ex. pour le traitement de la luxation ou pour la protection de bords de blessures
62.
ELECTRONIC ASSEMBLY HAVING A CABLE CONNECTOR MODULE
An electronic assembly includes a socket assembly including a cage mounted to a circuit board and a socket connector received in a cavity of the cage. The socket connector includes a substrate holding interposer contacts with compressible upper and lower contact portions. The electronic assembly includes a cable connector module received in the cavity of the cage and coupled to the socket connector. The cable connector module includes a housing coupled to the cage, a circuit card received in the cavity of the housing, and cable assemblies coupled to the circuit card. The circuit card is coupled to the socket connector.
H01R 12/71 - Dispositifs de couplage pour circuits imprimés rigides ou structures similaires
H01R 12/53 - Connexions fixes pour circuits imprimés rigides ou structures similaires se raccordant à des câbles à l'exclusion des câbles plats ou à rubans
H01R 12/58 - Connexions fixes pour circuits imprimés rigides ou structures similaires caractérisées par les bornes bornes pour insertion dans des trous
H01R 12/75 - Dispositifs de couplage pour circuits imprimés rigides ou structures similaires se raccordant à des câbles à l'exclusion des câbles plats ou à rubans
H01R 13/24 - Contacts pour coopération par aboutage élastiquesContacts pour coopération par aboutage montés élastiquement
A vehicle charging system for an electric vehicle includes a housing having a DC charging terminal held by the housing in an internal cavity with a mating end for mating with the charging component and connected to a power cable. The vehicle charging system includes a charging controller for controlling vehicle charging along the DC charging terminal. The vehicle charging system includes an arc sensor in the internal cavity configured to detect an arc event at the mating end of the DC charging terminal. The arc sensor includes a light detector having a multi-modal diversity detector configured in a first mode to detect light from the arc event and configured in a second mode to detect an arc noise signature from the arc event. The arc sensor is operably coupled to the charging controller to control the vehicle charging when the arc event is detected.
H01R 13/66 - Association structurelle avec des composants électriques incorporés
B60L 3/00 - Dispositifs électriques de sécurité sur véhicules propulsés électriquementContrôle des paramètres de fonctionnement, p. ex. de la vitesse, de la décélération ou de la consommation d’énergie
B60L 53/16 - Connecteurs, p. ex. fiches ou prises, spécialement adaptés pour recharger des véhicules électriques
B60L 53/60 - Surveillance et commande des stations de charge
G01R 31/12 - Test de la rigidité diélectrique ou de la tension disruptive
64.
RETENTION CAP FOR A CONNECTOR HOUSING, HOUSING ASSEMBLY, CONNECTOR AND CONNECTION ASSEMBLY
A retention cap for maintaining structural integrity of a connector including a housing and an internal component inserted into an opening of the housing, wherein the retention cap comprises an anchoring section for securing the retention cap to the housing around the opening; an abutment section for retaining the internal component inside the opening of the housing; and a through hole for passing at a wire to the at least one internal component along an insertion direction; wherein the anchoring section and the abutment section respectively extend around the through hole in a circumferential direction with respect to the insertion direction, and wherein the abutment section has a smaller inner circumference than the anchoring section. The abutment section can at least partly cover the opening of the housing to prevent the internal component from falling out, while the anchoring section with its larger inner circumference can cling onto the housing.
H01R 13/426 - Fixation de manière démontable par un dispositif de retenue indépendant et élastique porté par le socle ou par le boîtier, p. ex. par un collier
H01R 13/436 - Fixation de plusieurs pièces de contact par une seule pièce de verrouillage
65.
CHARGING CONTACT DEVICE AND METHOD FOR OPERATING THE CHARGING CONTACT DEVICE
A charging contact device includes a contact housing, a locking unit and a charging contact arrangement, wherein the first charging contact element comprises a first sub-section extending along a plug-in axis for making electrical contact with a mating contact element of a charging plug and a second sub-section offset from the first sub-section, wherein the contact housing comprises, on a first end face, a receiving contour with at least one receiving space and a mating contact receptacle, wherein the contact housing delimits a locking space and a housing interior away from the first end face, wherein the second sub-section of the first charging contact element is arranged in the housing interior, and the first charging contact element passes through the contact housing and protrudes into the housing interior with the second sub-section, wherein the contact housing comprises a pin opening which extends between the receiving space and the locking space, wherein the locking unit is arranged in the locking space of the contact housing and a locking pin of the locking device engages in the pin opening.
A contact system and an electromagnetic contactor include a movable contact that moves along a closing direction and a pair of stationary contacts disposed facing each other along a longitudinal direction transverse to the closing direction. Each of the stationary contacts has a C-shaped body with a first leg and a second leg oriented towards a center of the contact system and spaced apart along the closing direction. The movable contact has a first movable contact section disposed between the first and the second legs of the first stationary contact and a second movable contact section disposed between the first and the second legs of the second stationary contact. The first and the second stationary contacts each include a terminal section extending from the respective second leg towards a direction that forms a non-zero angle with the longitudinal direction.
An electrical connector includes a conductive terminal, an insulated terminal housing, a die-cast housing, a first sealing component and a second sealing component. The insulated terminal housing is at least partially accommodating the terminal. The die-cast housing is at least partially accommodating the terminal housing. The first sealing component is sleeved onto the terminal. The terminal is adapted to be axially inserted into the terminal housing in response to the first sealing component being sleeved onto the terminal, with the first sealing component being pressed against and sealed between the terminal and the terminal housing. The second sealing component is sleeved onto the terminal housing. The terminal housing is adapted to be inserted into the die-cast housing in response to the second sealing member being sleeved onto the terminal housing, with the second sealing component being pressed against and sealed between the terminal housing and the die-cast housing.
H01R 13/52 - Boîtiers protégés contre la poussière, les projections, les éclaboussures, l'eau ou les flammes
H01R 13/504 - SoclesBoîtiers composés de différentes pièces les différentes pièces étant moulées, collées, soudées, p. ex. par soudage à ultrasons, ou réunies par estampage
H01R 13/533 - Socles ou boîtiers conçus pour l'emploi dans des conditions extrêmes, p. ex. haute température, rayonnements, vibrations, environnement corrosif, pression
A charging dock housing includes a first insertion hole receiving a power terminal, a second insertion hole receiving a signal terminal, and a buckle feature. The charging dock housing is a one-piece molded part and is insertable into an inner cavity of a mounting seat of a charging dock. The buckle feature engages with a mating buckle feature on the mounting seat to lock the charging dock housing into the mounting seat.
H01R 13/428 - Fixation de manière démontable par des moyens de verrouillage élastiques situés sur les pièces de contactFixation de manière démontable par des moyens de verrouillage situés sur des pièces de contact élastiques
A charging dock housing assembly includes a housing which is formed with a terminal insertion hole and an installation slot. The charging dock housing assembly further includes a locking component which is installed into the installation slot of the housing. The locking component of the charging dock housing assembly includes a protruding tongue extending into the terminal insertion hole, the protruding tongue rests against a terminal inserted into the terminal insertion hole to lock the terminal in the terminal insertion hole.
A charging dock module includes a housing, a terminal, a temperature sensor, a cable, a sealing adhesive, and a heat shrink tube. The housing has a cylindrical part. The terminal is inserted into a terminal insertion hole of the cylindrical part. The temperature sensor is provided in the terminal insertion hole and its lead wires are led out from the cylindrical part. The cable is electrically connected to the terminal and is led out from the cylindrical part. The adhesive is disposed around the cable and the lead wires, and is located outside the cylindrical part. The heat shrink tube is fitted and heat shrunk onto the sealing adhesive and the cylindrical part. The sealing adhesive and the heat shrink tube form a sealing assembly sealing between the cable and the housing, as well as between the lead wires and the housing.
A charging terminal includes a mating part having a cylindrical shape that is matable with a columnar mating terminal, and a welding part capable of being welded onto a cable to electrically connect with the cable. The mating part is an integral stamped part. The welding part is an integral cold heading part. A front end of the welding part is welded, riveted or crimped to a rear end of the mating part.
H01R 4/58 - Connexions conductrices de l'électricité entre plusieurs organes conducteurs en contact direct, c.-à-d. se touchant l'un l'autreMoyens pour réaliser ou maintenir de tels contactsConnexions conductrices de l'électricité ayant plusieurs emplacements espacés de connexion pour les conducteurs et utilisant des organes de contact pénétrant dans l'isolation caractérisées par la forme ou le matériau des organes de contact
A terminal assembly configured to fit with a conductive member to form a conductive contact therebetween. The terminal assembly comprises a terminal base and a contact arm fixed to the terminal base. The contact arm includes a common base plate fixed to the terminal base. The contact arm further includes two sets of contact beams arranged in mirror symmetry with each other relative to a longitudinal axis of the common base plate, with each set of contact beams being constructed to extend from a respective side of the common base plate and to bend back.
An electrical connector includes a housing having walls forming a cavity. The housing includes a seal pocket at a mating end. The electrical connector includes a terminal received in the housing at a fully loaded position configured to be mated with the mating electrical connector in the fully loaded position. The electrical connector includes a peripheral seal received in the seal pocket sealed to the housing and configured to be sealed to the mating housing when mated with the mating housing. The electrical connector includes a seal retainer received in the seal pocket having an inner surface configured to interface with the peripheral seal and hold the peripheral seal in the seal pocket. The seal retainer includes a TPA device configured to interface with the terminal in the housing to assure positioning of the terminal in the housing at the fully loaded position.
An electrical plug connector contact and a terminal element. The electrical plug connector contact has a terminal section for contacting with a complementary further electrical plug connector contact. A first galvanic nickel layer is positioned atop the terminal section. A second galvanic nickel layer is positioned atop the first galvanic nickel layer. The terminal element has a housing, a printed circuit board positioned on the housing and at least one electrical plug connector contact positioned within the housing and connected to the printed circuit board. The terminal element is provided for connection to a complementary further terminal element having at least one further plug connector contact complementary to the electrical plug connector contact.
An electrical terminal for contacting a conductive core of an insulated wire includes first and second insulation displacement slots for receiving the insulated wire thus effecting insulation displacement termination of the received wire, wherein the first insulation displacement slot is spaced apart from the second insulation displacement slot. First and second support walls each extend from the first insulation displacement slot to the second insulation displacement slot. At least one of the first and second support wall is at least sectionally arched away from the respective other support wall.
A battery pack interconnect assembly for electrically connecting cell terminals of battery cells in a battery pack includes a busbar interconnect having busbars arranged rows and columns. The battery pack interconnect assembly includes a sensing assembly coupled to the busbars for sensing at least one parameter of the busbars. The sensing assembly includes a control assembly and a sensing harness coupled to the control assembly having sensing cables with sensing conductors coupled to the busbars at sensing points. The control assembly includes a control circuit board and control modules coupled to control circuits of the control circuit board. Each control module includes module terminals coupled between the control circuits and the corresponding sensing conductors.
H01M 50/569 - Détails de construction des connexions conductrices de courant pour détecter les conditions à l'intérieur des cellules ou des batteries, p. ex. détails des bornes de détection de tension
G01R 31/36 - Dispositions pour le test, la mesure ou la surveillance de l’état électrique d’accumulateurs ou de batteries, p. ex. de la capacité ou de l’état de charge
G01R 31/3835 - Dispositions pour la surveillance de variables des batteries ou des accumulateurs, p. ex. état de charge ne faisant intervenir que des mesures de tension
G01R 31/396 - Acquisition ou traitement de données pour le test ou la surveillance d’éléments particuliers ou de groupes particuliers d’éléments dans une batterie
H01M 50/507 - Interconnecteurs pour connecter les bornes des batteries adjacentesInterconnecteurs pour connecter les cellules en dehors d'un boîtier de batterie comprenant un arrangement de plusieurs barres omnibus réunies dans une structure de conteneur, p. ex. modules de barres omnibus
H01M 50/519 - Interconnecteurs pour connecter les bornes des batteries adjacentesInterconnecteurs pour connecter les cellules en dehors d'un boîtier de batterie comprenant des circuits imprimés
77.
CONNECTOR ASSEMBLY MACHINE FOR ELECTRICAL CONNECTOR INCLUDING GROMMETS
A connector assembly machine for an electrical connector that includes a grommet in a housing includes a feeder assembly having a feeder device for feeding a carrier, holding the housing and the grommet, to a grommet seating station. The connector assembly machine includes a grommet seating assembly at the grommet seating station with a grommet press. The grommet press includes a support wall, a ram movably coupled to the support wall, and an actuator operably coupled to the ram to move the ram between an upper position and a lower position. The ram includes a grommet press tool having a press surface configured to engage and press the grommet into the housing when the ram is moved from the upper position to the lower position to seat the grommet in the housing at a seated position.
H01R 13/52 - Boîtiers protégés contre la poussière, les projections, les éclaboussures, l'eau ou les flammes
H01R 13/66 - Association structurelle avec des composants électriques incorporés
H01R 43/20 - Appareils ou procédés spécialement adaptés à la fabrication, l'assemblage, l'entretien ou la réparation de connecteurs de lignes ou de collecteurs de courant ou pour relier les conducteurs électriques pour assembler les pièces de contact avec le socle isolant, le boîtier ou le manchon ou pour les en désassembler
78.
ELECTRICAL SHIELDING CONFIGURATION FOR HIGH-SPEED ELECTRICAL CONNECTOR
An electrical connector includes an inner housing received in a chamber of an outer housing. The inner housing has a conductive housing body extending between a mating end mated with a pluggable module and a mounting end mounted to a host circuit board. The electrical connector includes a contact assembly having contact inserts of contacts arranged in pairs and received in contact channels. The electrical connector includes a ground shield coupled to the inner housing to close the contact channels such that the ground shield and the conductive housing body provide electrical shielding for the contact inserts.
H01R 13/6594 - Caractéristiques ou dispositions spécifiques de raccordement du blindage aux organes conducteurs le blindage étant monté sur une carte de circuits imprimés et raccordé à des organes conducteurs
79.
ELECTRICAL SHIELDING CONFIGURATION FOR HIGH-SPEED ELECTRICAL CONNECTOR
An electrical connector includes an inner housing received in a chamber of an outer housing. The inner housing has a conductive housing body extending between a mating end mated with a pluggable module and a mounting end mounted to a host circuit board. The electrical connector includes a contact assembly having contact inserts of contacts arranged in pairs and received in contact channels. The electrical connector includes a ground shield coupled to the inner housing to close the contact channels such that the ground shield and the conductive housing body provide electrical shielding for the contact inserts.
H01R 13/6594 - Caractéristiques ou dispositions spécifiques de raccordement du blindage aux organes conducteurs le blindage étant monté sur une carte de circuits imprimés et raccordé à des organes conducteurs
H01R 13/6596 - Caractéristiques ou dispositions spécifiques de raccordement du blindage aux organes conducteurs l'organe conducteur étant un panneau métallique de mise à la terre
A snap-in bridge connector, comprising a housing having a housing base, multiple side walls and a housing lid with multiple insertion openings, a current rail positioned on an inside of opposing side walls of the housing, a contacting spring array with multiple contacting spring elements and a preloading spring array with multiple preloading spring elements. The contacting spring array has a ridge shape with a connection ridge connecting the multiple contacting spring elements. Each preloading spring element of the multiple preloading spring elements is set up to hold a respective contacting spring element of the multiple contacting spring elements in a preloaded position. Each preloading spring element is set up to be actuated by a wire inserted into the housing via an insertion opening of the housing lid and to release the respective contacting spring element from the preloaded position to contact the inserted wire to the current rail.
H01R 43/16 - Appareils ou procédés spécialement adaptés à la fabrication, l'assemblage, l'entretien ou la réparation de connecteurs de lignes ou de collecteurs de courant ou pour relier les conducteurs électriques pour la fabrication des pièces de contact, p. ex. par découpage et pliage
81.
AXIAL INSULATION DISPLACEMENT CONTACT AND CONNECTION ASSEMBLY
TE Connectivity Italia Distribution S.r.l. (Italie)
Inventeur(s)
Marsh, John
Daniele, Cretier
Lupo, Federico
Abrégé
An insulation displacement contact includes a plurality of guides placed radially around a receiving axis, the guides for receiving an end of a wire along the receiving axis. The guides include a blade, presenting a cutting edge for cutting, along the receiving axis, an insulator of the wire, as the wire is received; and at least one of a second blade or a spring. A connection assembly includes the insulation displacement contact and a wire.
H01R 4/2466 - Connexions utilisant des organes de contact pénétrant dans, ou transperçant, l'isolation ou les brins du câble les organes de contact étant munis d’arêtes coupant le matériau isolant, p. ex. de type diapason les organes de contact comportant des moyens supplémentaires agissant sur l’isolation ou le fil, p. ex. un ensemble supplémentaire de moyens pour pénétrer dans l’isolation, des moyens d’atténuation de la tension ou des couteaux coupe-fils les organes de contact comportant une portion en forme de canal, dont les parois opposées comprennent des moyens coupant l’isolation
An ultra-wideband (UWB) antenna includes a substrate having a first surface and a second surface. The UWB antenna includes a radiating patch at the first surface. The UWB antenna includes parasitic elements at the first surface adjacent the radiating patch and an antenna ground at the second surface. The UWB antenna includes shorting pins between the radiating patch and the antenna ground. The UWB antenna has a wide beam angle greater than 120°. The UWB antenna covers the UWB channel 9 and/or channel 10 frequency band(s).
A tube handling assembly for a slit tube manufacturing machine used to manufacture slit tubes each having a tube body and a slit extending a slit length along the tube body includes a base and a tube support movably coupled to the base. The tube handling assembly includes a pin actuator coupled to the tube support having a pin movable relative to the tube support between an extended position and a retracted position and configured to be inserted into an end of the tube body to hold the slit tube. The pin is retractable to release the slit tube. The tube handling assembly includes a tube linear actuator moving the tube support and the pin in a linear actuation direction. The tube handling assembly includes a tube rotation actuator moving the tube support and the pin relative to the base in a rotation actuation direction.
A communication system includes a first electrical component having a board connector mounted to a host circuit board and a heat transfer assembly with a thermal bridge mounted to a heat transfer element. The communication system includes a second electrical component received in a component space between the host circuit board and the heat transfer assembly being thermally and electrically coupled to the first electrical component. The second electrical component includes a receptacle connector mounted to a circuit card configured to be electrically connected to a pluggable module. The circuit card is electrically connected to the board connector. A receptacle cage of the second electrical component includes a module channel receiving the receptacle connector and the pluggable module. The receptacle cage includes a thermal opening open at the upper wall and the rear wall that receives the thermal bridge to allow the thermal bridge to interface with the pluggable module in the module channel.
A connector terminal includes a mating part. The mating part has a front ring part, a rear cylinder part opposite the front ring part in a longitudinal direction of the mating part, and an elastic part between the front ring part and the rear cylinder part. The elastic part includes an upper spring arm, a lower spring arm opposite the upper spring arm in a height direction of the mating part, a left spring arm, and a right spring arm opposite the left spring arm in a transverse direction of the mating part. The upper spring arm, the lower spring arm, the left spring arm, and the right spring arm simultaneously electrically contact a mating terminal inserted into the mating part.
H01R 13/436 - Fixation de plusieurs pièces de contact par une seule pièce de verrouillage
H01R 4/18 - Connexions conductrices de l'électricité entre plusieurs organes conducteurs en contact direct, c.-à-d. se touchant l'un l'autreMoyens pour réaliser ou maintenir de tels contactsConnexions conductrices de l'électricité ayant plusieurs emplacements espacés de connexion pour les conducteurs et utilisant des organes de contact pénétrant dans l'isolation effectuées uniquement par torsion, enroulage, pliage, sertissage ou autre déformation permanente par sertissage
H01R 13/50 - SoclesBoîtiers formés comme un corps intégré
H01R 43/16 - Appareils ou procédés spécialement adaptés à la fabrication, l'assemblage, l'entretien ou la réparation de connecteurs de lignes ou de collecteurs de courant ou pour relier les conducteurs électriques pour la fabrication des pièces de contact, p. ex. par découpage et pliage
A contactor control system includes a switch circuit, a control circuit, a current detection circuit, a DC/DC converter and a diode. The switch circuit is adapted to be connected between one end of a contactor coil and a positive electrode of a power supply, and to be switched between an on state and an off state. The control circuit controls the switch circuit to switch between the on state and the off state. During a start-up phase of the contactor coil, the control circuit controls the switch circuit to switch to the on state and maintain it for a predetermined time, and during a holding phase of the contactor coil, the control circuit controls the switch circuit to switch to the open state to cut off an electrical connection between one end of the contactor coil and a positive electrode of the power supply.
H03K 17/687 - Commutation ou ouverture de porte électronique, c.-à-d. par d'autres moyens que la fermeture et l'ouverture de contacts caractérisée par l'utilisation de composants spécifiés par l'utilisation, comme éléments actifs, de dispositifs à semi-conducteurs les dispositifs étant des transistors à effet de champ
G05F 1/46 - Régulation de la tension ou de l'intensité là où la variable effectivement régulée par le dispositif de réglage final est du type continu
H02M 3/145 - Transformation d'une puissance d'entrée en courant continu en une puissance de sortie en courant continu sans transformation intermédiaire en courant alternatif par convertisseurs statiques utilisant des tubes à décharge avec électrode de commande ou des dispositifs à semi-conducteurs avec électrode de commande utilisant des dispositifs du type triode ou transistor exigeant l'application continue d'un signal de commande
A terminal includes a terminal body, a first bottom plating layer and a first silver graphite plating layer. The terminal body includes a mating part adapted to mate with a mating terminal. The first bottom plating layer is formed on a contact surface of the mating part of the terminal body. The first silver graphite plating layer is formed on the first bottom plating layer. Graphite particles are uniformly dispersed in the first silver graphite plating layer and are adapted to improve the wear resistance and conductivity of the mating part of the terminal body.
H01R 13/03 - Contacts caractérisés par le matériau, p. ex. matériaux de plaquage ou de revêtement
H01R 43/16 - Appareils ou procédés spécialement adaptés à la fabrication, l'assemblage, l'entretien ou la réparation de connecteurs de lignes ou de collecteurs de courant ou pour relier les conducteurs électriques pour la fabrication des pièces de contact, p. ex. par découpage et pliage
88.
BUSBAR ASSEMBLY AND ELECTRICAL CONNECTION ASSEMBLY
A busbar assembly includes a busbar and a liquid cooling tube. The busbar has a busbar body, a groove formed on the busbar body and extending along a length direction of the busbar body, and a flexible bent part. The flexible bent part is connected to an end of the busbar body and is adapted to permit the busbar to undergo elastic deformation in the length direction. The liquid cooling tube is arranged in the groove of the busbar body and is adapted to cool the busbar.
A FFC harness assembly includes a main FFC having a main FFC cable and a main connector terminated to an end of the main FFC cable. The main FFC cable includes main flat wires and a main cable body. The FFC harness assembly includes a branch FFC separate and discrete from the main FFC. The branch FFC includes a branch FFC cable and a branch connector terminated to an end of the branch FFC cable. The branch FFC cable includes branch flat wires and a branch cable body. The FFC harness assembly includes an interconnect at a branch location between the main FFC and the branch FFC. The interconnect is located between the main FFC and the branch FFC and electrically connects at least one of the main flat wires with at least one of the branch flat wires to electrically connect the branch connector to the main connector.
An electrical terminal, in particular an IDC-terminal, with a housing, a contacting base positioned inside the housing and at least one contacting unit for contacting a conductor, wherein the contacting unit comprises a contacting body with a blade-structure comprising at least one blade with at least one cutting edge, wherein the contacting unit is movable inside the housing along a contacting direction between an neutral position and a contacting position, wherein the housing defines an accommodation space between the blade-structure and the conducting base, and wherein by moving the contacting unit from the neutral position to the contacting position a distance between the blade-structure and the contacting unit is reducible, and wherein in the contacting position the blade-structure is arranged to contact the contacting base.
H01R 4/2433 - Plaques planes, p. ex. plaques planes multi-couches montées sur un support isolant une partie du support pouvant être déplacée pour enfoncer le câble dans l’entaille
H01R 9/26 - Blocs de connexion à accrochage pour le montage côte à côte sur rail ou sur barrette
H01R 11/01 - Éléments de connexion individuels assurant plusieurs emplacements de connexion espacés pour des organes conducteurs qui sont ou qui peuvent être interconnectés de cette façon, p. ex. pièces d'extrémité pour fils ou câbles supportées par le fil ou par le câble et possédant des moyens pour faciliter la connexion électrique avec quelqu'autre fil, borne, ou organe conducteur, répartiteurs caractérisés par la forme ou par la disposition de l'interconnexion entre leurs emplacements de connexion
H01R 43/01 - Appareils ou procédés spécialement adaptés à la fabrication, l'assemblage, l'entretien ou la réparation de connecteurs de lignes ou de collecteurs de courant ou pour relier les conducteurs électriques pour connecter des conducteurs non dénudés à des pièces de contact ayant des bords coupant l'isolation
An electrical terminal, in particular an IDC-terminal, with a housing, a contacting base positioned inside the housing and at least one actuating unit, wherein the contacting base comprises a contacting body with at least one blade-structure comprising at least one blade with at least one cutting edge, wherein the actuating unit is movable inside the housing along a contacting direction between a neutral position and a contacting position defined by a position of the blade-structure, wherein the actuating unit comprises a positioning face facing the blade-structure, wherein the housing defines an accommodation space between the positioning face of the actuating unit and the blade-structure of the contacting base, and wherein by moving the actuating unit from the neutral position to the contacting position a distance between the positioning face and the blade-structure is reducible.
A user configurable keyable guide module having a housing with one or more keying guide pin receiving openings which extend from a mating face of the housing toward a rear face of the housing. First programmable keying surfaces are provided proximate the one or more keying guide pin receiving openings. One or more keying guide pins are configured to be positioned in the one or more keying guide pin receiving openings. The one or more keying guide pins have second programmable keying surfaces. A user selects the position of the first programmable keying surfaces and the second programmable keying surfaces.
94.
CONNECTOR POSITION ASSURANCE, POSITION-LIMIT MECHANISM THEREOF, AND CONNECTOR ASSEMBLY
A connector position assurance includes a base fixed on a connector, a flexible locking arm connected to the base, and a position-limit mechanism. The position-limit mechanism has a limiting base slidably connected with the base in an insertion direction of the connector, a locking position, and an unlocking position. A receiving space for receiving a locking part of a mated connector that mates with the connector is formed between the position-limit mechanism and the base. When the connector is inserted into the mated connector the flexible locking arm is located within the receiving space and engages with the locking part to lock the connector and the mated connector. The limiting base is formed with a pressing portion pressing the flexible locking arm downward to release an engagement between the flexible locking arm and the locking part of the mated connector when the position-limit mechanism is in the unlocking position.
H01R 13/44 - Moyens pour empêcher l'accès aux contacts actifs
H01R 13/50 - SoclesBoîtiers formés comme un corps intégré
H01R 13/635 - Moyens additionnels pour faciliter l'engagement ou la séparation des pièces de couplage, p. ex. moyens pour aligner ou guider, leviers, pression de gaz pour la séparation uniquement par une pression mécanique, p. ex. par la force d'un ressort
An electromechanical switch includes a switch housing having a main body forming a chamber with fixed contacts coupled to the switch housing each having a mating end in the chamber and a terminating end exterior of the switch housing. The electromechanical switch includes a movable contact in the chamber movable between an open position and a closed position. The movable contact includes movable mating surfaces configured to be coupled to fixed mating surfaces of the fixed contacts in the closed position and separated from the fixed contacts in the open position. The electromechanical switch includes an actuator with an armature operably coupled to the movable contact. The fixed mating surfaces and/or the movable mating surfaces include textured surface features such that mating interfaces between the fixed contacts and the movable contact each have numerous points of contact.
A high gain multiple input, multiple output antenna which has a feeding board; a ground plane; a low band patch radiator; a first printed circuit board; a second printed circuit board; and a high band dipole patch radiator. The high band dipole patch radiator is a co-located stacked array on top of the low band patch radiator. The high band dipole patch radiator and the low band patch radiator are proximity coupled with the first printed circuit board and the second printed circuit board. The low band patch radiator covers low band frequencies in the range of 2.4 GHz to 2.5 GHZ and the high band dipole patch radiator cover high band frequencies in the range of 4.9 GHZ to 7.125 GHz. The antenna assembly has a gain of above 7.5 dBi and a well-directed radiation patten with no side lobes.
H01Q 1/48 - Moyens de mise à la terreÉcrans de terreContrepoids
H01Q 5/20 - Dispositions pour faire fonctionner simultanément des antennes sur plusieurs gammes d'ondes, p. ex. dispositions bibandes ou multibandes caractérisées par les gammes d'ondes exploitées
H01Q 5/48 - Combinaisons de plusieurs antennes de type dipôle
H01Q 9/16 - Antennes résonnantes avec alimentation intermédiaire entre les extrémités de l'antenne, p. ex. dipôle alimenté par le centre
97.
CONTROL ASSEMBLY AND METHOD FOR AN APPLIANCE USING A NEAR INFRARED SPECTROSCOPE
A control assembly for an appliance includes a control panel for the appliance. The control panel includes inputs for controlling the appliance. The control assembly includes a control circuit board coupled to the control panel. The circuit board configured to be operably coupled to working components of the appliance to control operation of the appliance based on the inputs from the control panel. The control assembly includes a detergent sensor configured to sense wash characteristics of water in the appliance. The detergent sensor includes a near infrared spectroscope (NIRS) for determining optical properties of a sample of the water. The detergent sensor performs a chemical analysis to determine the contents of the sample based on the optical properties. The control circuit board is configured to control the working components of the appliance based on the chemical analysis performed by the detergent sensor.
D06F 34/22 - Caractéristiques du liquide de lavage, p. ex. turbidité
D06F 23/02 - Machines à laver avec réceptacles, p. ex. perforés, et avec un mouvement rotatif, p. ex. oscillant, le réceptacle servant aussi bien pour le lavage que pour l'essorage centrifuge et tournant ou oscillant autour d'un axe horizontal
D06F 33/38 - Commande des phases de fonctionnement, p. ex. optimisation ou amélioration des phases de fonctionnement en fonction de l’état du linge du rinçage
D06F 34/08 - Circuits de commande ou leurs dispositions
D06F 34/30 - Dispositions de choix du programme, p. ex. panneaux de commande à cet effetDispositions pour indiquer les paramètres du programme, p. ex. le programme choisi ou sa progression caractérisées par des composants mécaniques, p. ex. boutons ou cadrans rotatifs
D06F 105/46 - Vitesse de rotation du tambourActionnement des moteurs, p. ex. démarrage ou arrêt
D06F 105/52 - Changement de la séquence des phases de fonctionnementRéalisation de phases de fonctionnement supplémentairesModification des phases de fonctionnement, p. ex. en prolongeant la durée des phases
G01N 21/3577 - CouleurPropriétés spectrales, c.-à-d. comparaison de l'effet du matériau sur la lumière pour plusieurs longueurs d'ondes ou plusieurs bandes de longueurs d'ondes différentes en recherchant l'effet relatif du matériau pour les longueurs d'ondes caractéristiques d'éléments ou de molécules spécifiques, p. ex. spectrométrie d'absorption atomique en utilisant la lumière infrarouge pour l'analyse de liquides, p. ex. l'eau polluée
G01N 21/359 - CouleurPropriétés spectrales, c.-à-d. comparaison de l'effet du matériau sur la lumière pour plusieurs longueurs d'ondes ou plusieurs bandes de longueurs d'ondes différentes en recherchant l'effet relatif du matériau pour les longueurs d'ondes caractéristiques d'éléments ou de molécules spécifiques, p. ex. spectrométrie d'absorption atomique en utilisant la lumière infrarouge en utilisant la lumière de l'infrarouge proche
An electrical connector assembly having a housing with a mating connector receiving portion and a panel mounting portion. The mating connector receiving portion has side walls and end walls. The mating connector receiving portion extends from the panel mounting portion. The panel mounting portion has an oversized flange with a panel mounting surface. The panel mounting surface has a width which is greater than a width of the mating connector receiving portion and a length which is greater than the length of the mating connector receiving portion. First springs and second springs are provided about the periphery of the mating connector receiving portion. The first springs and second springs have panel engagement portions and securing portions. The electrical connector assembly is configured to float relative to the panel and to compensate for misalignment of a mating electrical connector.
H01R 13/64 - Moyens pour empêcher, bloquer ou éviter le couplage incorrect
H01R 13/631 - Moyens additionnels pour faciliter l'engagement ou la séparation des pièces de couplage, p. ex. moyens pour aligner ou guider, leviers, pression de gaz pour l'engagement uniquement
99.
CATHETER DISTAL TIP FOR PERFORMING SENSOR ASSISTED NAVIGATION, CATHETER ASSEMBLY, AND ROBOTICALLY ASSISTED INTERVENTIONAL DEVICES
A steerable catheter distal tip for performing sensor assisted navigation for a catheter assembly and a robotically assisted interventional device. The steerable catheter distal tip for performing sensor assisted navigation includes an ultrasonic transducer system arranged to surround a circumference of the catheter distal tip, wherein the ultrasonic transducer system is operable to generate distance signals indicative of distances between a plurality of sensing locations on the circumference of the catheter distal tip from walls of a cavity in which the catheter distal tip is located in operation; and a signal processing unit comprising a controller, which is operable to cause the catheter distal tip being steered along a defined navigation path based on the distance signals.
A61B 34/20 - Systèmes de navigation chirurgicaleDispositifs pour le suivi ou le guidage d'instruments chirurgicaux, p. ex. pour la stéréotaxie sans cadre
A61M 25/01 - Introduction, guidage, avance, mise en place ou maintien en position des cathéters
An electrical connector includes a housing, a pair of terminal assemblies, and a grounding member. Each of the terminal assemblies includes at least one set of conductive terminals extending parallel to a longitudinal direction of the housing, at least one cable, and a mounting base. Each set of conductive terminals has a pair of signal terminals and a pair of ground terminals. Each cable has a pair of signal conductors respectively conductively connected to the signal terminals in a respective set of conductive terminals. The at least one set of conductive terminals passes through the mounting base and is divided by the mounting base into a mounting segment on a side facing the at least one cable and a free end on an opposite side. The grounding member is conductively connected to respective ground terminals of one terminal assembly and integrally covers respective signal terminals of the one terminal assembly.