Abstract:
An electrical connector assembly includes: a first module including a mounting plate and a plurality of first electrical connectors; a second module including a housing and a plurality of second electrical connectors; wherein the electrical connector assembly has a locking device including at least one first interlocking member disposed on the first module and at least one second interlocking member disposed on the second module, wherein one of the first interlocking member and the second interlocking member is provided with a protrusion, and the other of the first interlocking member and the second interlocking member is provided with a hole for receiving the protrusion, wherein one of the projection and the hole is elastically actuatable so as to lock or unlock the first module and the second module.
Abstract:
In a coaxial connector and a board-to-board connector assembly, the coaxial connector includes: a first coaxial connector portion including a first outer conductor, a first inner conductor, and a first dielectric spacer disposed between the first outer conductor and the first inner conductor; a second coaxial connector portion including a second outer conductor, a second inner conductor, and a second dielectric spacer disposed between the second outer conductor and the second inner conductor; and a first elastic element disposed between the first outer conductor of the first coaxial connector portion and the second outer conductor of the second coaxial connector portion. The first elastic element is configured such that the second coaxial connector portion is floatable axially and radially relative to the first coaxial connector portion, and the first elastic element is adapted to form an electrical connection between the first outer conductor and the second outer conductor.
Abstract:
An optical fiber connector includes: a cylindrical connector body; an optical fiber connection assembly disposed within the connector body proximate to a proximal end of the connector body, the optical fiber connection assembly including a support and at least one elongate member fixed to and extending through the support, the elongate member being configured to couple an optical fiber of an optical fiber cable; a locking assembly for holding the optical fiber cable, the locking assembly being disposed proximate to a distal end of the optical fiber connection assembly; and a sealing element disposed at a distal end of the optical fiber connector, the sealing element being configured to seal the connection between the distal end of the optical fiber connector and an outer periphery of the optical fiber cable.
Abstract:
A coaxial connector includes: a first joint and a second joint, a locking flange arranged at one end portion of the second joint; and a quick locking and separating mechanism that includes: a locking member fixedly arranged on a first end portion of the first joint and provided with a depression for accommodating the locking flange of the second joint; and a sliding sleeve arranged around the first joint and being slidable between a locking position in which the sliding sleeve locks the locking flange of the second joint in the depression of the locking member so as to connect the first joint and the second joint and an unlocking position in which the sliding sleeve allows the locking flange of the second joint to disengage from the depression of the locking member so as to allow the first joint to be separated from the second joint.
Abstract:
A coaxial bias T-connector includes: first and second coaxial cables; a rear body electrically connected to the first cable outer conductor; a first inner contact positioned within the rear body and electrically connected with the first inner conductor; a front body connected with the rear body and including a forward portion; a second inner contact positioned within the front body and electrically connected with the first inner contact; a spring basket including a plurality of spring fingers and electrically connected with the forward portion of the front body and electrically isolated from the second inner contact, the forward portion of the front body, the spring fingers and the second inner contact forming a 4.3/10 interface; a third inner contact electrically connected with the second cable inner conductor; and a coaxial fitting electrically connected with the front body and with the second cable outer conductor. The third inner contact is in electrical connection with the second inner contact.
Abstract:
The present disclosure discloses an anti-misplug coaxial connector assembly for preventing the misplug of a 4.1-9.5 type connector that includes a female connector and a male connector. The female connector includes: a first inner conductor provided with an accommodation cavity defining a longitudinal axis; a first outer conductor; and a first insulator arranged between the first inner conductor and the first outer conductor. The male connector includes: a second inner conductor, a second outer conductor, and a second insulator arranged between the second inner conductor and the second outer conductor. The first outer conductor and the second outer conductor form radial contact by means of a resilient finger-shaped element, and the resilient finger-shaped element surrounds the second insulator. The first insulator includes a main body portion circumferentially surrounding the first inner conductor, the first insulator includes a shoulder portion on an end portion opposite to the free end portion, and the shoulder portion protruding outwardly along the radial direction relative to the main body portion so as to engage the first outer conductor, and the outer diameter of the main body portion of the first inner conductor is greater than the inner diameter of the outer conductor of a male connector of the 4.1-9.5 type connector.
Abstract:
An assembly includes a coaxial male connector and a coaxial female connector. The coaxial male connector includes: an inner contact; a monolithic outer body having a plurality of spring fingers and a shoulder that is located radially outward of the spring fingers; a dielectric spacer disposed between the inner contact and the outer body such that the outer body is coaxial with the inner contact; and a coupling nut that at least partially overlies the outer body. The coaxial connector includes: an inner contact having a plurality of spring fingers mated with the spring fingers of the inner contact of the male connector; an outer body having an inner surface and a contact surface at one end, the contact surface contacting the shoulder of the outer body of the male connector; and a dielectric spacer disposed between the inner contact and the outer body such that the outer body is coaxial with the inner contact, the spacer being configured so that a gap is present between an outer surface of the spacer and the inner surface of the outer body. The spring fingers of the outer body of the male connector contact the inner surface of the outer body and apply radial pressure thereto.
Abstract:
The corrugated cable co-axial connector includes a connection body (1), having an internal thread (12) in a connector through hole (11); a clamping nut (2), having a central through hole (21), having a cable end and a clamping end in an axial direction of the central through hole (21) which are opposite to each other, and having an external thread (22) at the clamping end; an annular elastic clip (3) which is axially slidingly fitted into the central through hole (21) of the clamping nut (2); and a resilient ring (4) sleeved around the annular elastic clip (3) and located between the clamping end of the clamping nut (2) and the annular elastic clip (3). When a corrugated cable (10) having a corrugated outer conductor (102) is received in the central through hole (21) of the clamping nut (2), the connector body (1) applies at least a radial inward force to the annular elastic clip (3) by the engagement of the external thread (22) and the internal thread (12), to lock the corrugated cable (10) in the annular elastic clip (3). The connector is simple to manufacture and is convenient to use. At the same time, it is able to ensure the reliable cable connection and is suitable for repeated use.
Abstract:
A quick self-locking thread coupling connector interface with an inner contact inside the insulator, the insulator inside the outer contact, the coupling nut has at least one convex tooth and a first protruding part on the inner side, the elastic claw has slots corresponding to the convex teeth, a second protruding part and thread are provided on the outer side and the inner side of the elastic claw. The outer contact and the cable connector body are connected fixedly, the elastic claw surrounds rotatably outside the outer contact and is limited axially at the left end by the outer contact. The push nut surrounds the cable connector body and is limited axially, the elastic component is located between the elastic claw, the push nut, and props against the elastic claw and the push nut. The coupling nut surrounds the elastic claw and is connected fixedly with the push nut.
Abstract:
A method of induction soldering an inner conductor of a coaxial cable to an inner contact of a right angle coaxial connector includes: (a) providing a coaxial connector, the coaxial connector including an outer conductor body and an inner contact, the inner contact defining a mating axis, the inner contact further comprising a blind hole with an open end; (b) providing a coaxial cable, the coaxial cable including an inner conductor, a dielectric circumferentially surrounding the inner conductor, and an outer conductor circumferentially surrounding the dielectric; (c) inserting the coaxial cable into the coaxial connector such that an end of the inner conductor is positioned in the blind hole of the inner contact and perpendicular to the mating axis; and (d) heating the blind hole of the inner conductor to melt solder present in the blind hole to form a solder joint between the inner conductor and the inner contact.