Abstract:
An electrical connector includes a plastic base on which one connection space is formed, terminals disposed in the plastic base, and a metal housing covering the plastic base and having one surface formed with an opening through which the connection space is exposed. The metal housing includes a main body and an upper cover. The main body is fixed to the plastic base and has a front surface, two side surfaces and an upper edge formed with one upward fixing piece having one elastic locking piece. The upper cover has downward connection flanges formed on two sides. An inner surface of each flange corresponding to the elastic locking piece is formed with an engaging slot. The upper cover covers the upper edge. The flanges are connected to and located outside the fixing piece, and engage with the elastic locking piece through the engaging slot.
Abstract:
A terminal structure of a ZIF (Zero Insertion Force) electrical connector includes a U-shaped main body, two first plates and two second plates. The U-shaped main body has two side plate surfaces facing each other with a gap formed therebetween. The first plates are disposed at a top front section of the U-shaped main body and face each other with a first gap formed therebetween. The second plates are disposed at a top rear section of the U-shaped main body and face each other with a second gap formed therebetween, and the second gap is smaller than the first gap.
Abstract:
In a multi-card connector assembly with a movable multi-card connector, a mounting seat has a sliding region and a mounting portion. A multi-card connector is disposed in the sliding region. The multi-card connector can be moved only back and forth in the sliding region. The multi-card connector includes a common seat having a plurality of slots into which different electrical cards may be individually inserted, a plurality of terminals disposed on the common seat, and a flexible circuit connection interface electrically connected to the terminals. The flexible circuit connection interface may be connected to an external interface. An elastic member has one end fixed to the mounting seat and the other end fixed to the multi-card connector. A positioning device is disposed on the mounting seat and the multi-card connector and for positioning the multi-card connector, which slides in the sliding region, at at least one positioning point.
Abstract:
A stacked card connector includes a base, a row of first terminals, a row of second rear terminals, and a row of second front terminals. The base is formed with a first slot and a second slot for receiving a first card and a second card which are inserted into the slots along the same direction. The first and second terminals are located in the first and second slots to contact the first and second cards, respectively. The second terminals have arced contacts flush with each other, pins extending out of a bottom surface of the base from a side opposite to an insert port of the second slot, and extensions connecting the contacts to the pins, respectively.
Abstract:
An electric connector includes an insulation housing formed with a plurality of terminal slots, two positioning slots formed at two sides of the insulation housing, a plurality of terminals inserted into the terminal slots of the insulation housing, respectively, and two lateral fasteners arranged along and rotatable about a horizontal axis, each of which including a main body having a first end engaged with the corresponding positioning slot of the insulation housing. The first end of the main body is formed with an engagement structure. The insulation housing is formed with resilient members within the positioning slots. Each of the resilient members is formed with an engagement block. When the lateral fastener is inserted into the positioning slot, the engagement block engages with the engagement structure of the lateral fastener.
Abstract:
A card connector includes a base and a row of first upper terminals. The base has a top surface and a bottom surface and is formed with a card slot for receiving an electric card. The card slot has an insert port from which the electric card may be inserted. The upper terminals are arranged on the base. Each upper terminal has a contact positioned within the card slot for elastically contacting the inserted electric card, a pin extending out of the bottom surface of the base, and an extension connecting the contact to the pin. Each contact is convex toward the bottom surface of the base. Each contact is elastically biased toward the top surface of the base when contacting the electric card. Each pin extends out of the bottom surface of the base from a side opposite to the insert port of the card slot.
Abstract:
A terminal structure to be assembled in a terminal slot is integrally formed by pressing a metal plate having first and second surfaces. The terminal structure includes a fixing portion and an elastic arm. The first surface of the fixing portion is fixed in the slot and is wider. The arm is connected to the fixing portion. Over 70% of the first surface of the arm are disposed on the same plane and the first surface of the arm has a curved shape. The first surface of the arm is narrower than the first surface of the fixing portion. An angle smaller than 30 degrees is formed between the first surfaces of the arm and the fixing portion. A top end of the arm exceeds a top end of the fixing portion, and is formed with a movable contact.
Abstract:
A terminal structure to be assembled in a terminal slot is integrally formed by pressing a metal plate having first and second surfaces. The terminal structure includes a fixing portion and an elastic arm. The first surface of the fixing portion is fixed in the slot and is wider. The arm is connected to the fixing portion. Over 70% of the first surface of the arm are disposed on the same plane and the first surface of the arm has a curved shape. The first surface of the arm is narrower than the first surface of the fixing portion. An angle smaller than 30 degrees is formed between the first surfaces of the arm and the fixing portion. A top end of the arm exceeds a top end of the fixing portion, and is formed with a movable contact.
Abstract:
An electrical connector includes a base and terminals. The base is formed with terminal slots in which the terminals are disposed. Each terminal slot has first and second walls, and third and fourth walls. Each terminal includes a fixing portion, an elastic arm and a pin portion. The fixing portion presses against and is positioned by the terminal slot. The fixing portion has first and second plates that are folded. The first plate contacts the first wall of the terminal slot. The elastic arm is connected to a top of the second plate. The elastic arm extends upward in a direction toward the fixing portion. A connection point is formed on the elastic arm close to a free end of the elastic arm. The pin portion, which is formed by prodding and pressing the fixing portion, extends toward a bottom of the base.
Abstract:
An electrical connector includes a plastic base, a plurality of terminals and a metal housing. One connection space is formed on the plastic base. The terminals each having a pin portion extending out of the plastic base are disposed in the plastic base. The metal housing has a top surface, two side surfaces, a front surface and a rear surface and covers the plastic base. One of the top, side, front and rear surfaces is formed with an opening for exposing the connection space of the plastic base to the outside. A locking device is formed on the rear surface and one of the side surfaces of the metal housing. The locking device includes a first engaging piece and a second engaging piece corresponding to the first engaging piece. The first engaging piece is formed with a longitudinal slot through which the second engaging piece passes.