Abstract:
An audio jack connector adapted for receiving a plug has a base having a socket. The base has a first terminal groove and a second terminal groove opened at one side of the socket. The second terminal groove is located between the socket and the first terminal groove and connects with the socket by means of a first connecting passage. A stationary switch terminal has a first fixing slice fastened in the second terminal groove, a first contacting end projected in the first connecting passage and an opening opened in first fixing slice. A resilient switch terminal has a second fixing slice fastened in the first terminal groove, a second contacting end projected into the socket through the first connecting passage and elastically received in the opening when the second contacting end is biased by the plug to be disconnected from the first contacting end.
Abstract:
An electrical connector includes a first insulating body having a base board and a first tongue board extending rearward from a bottom of the base board, first terminals each having a first contact portion disposed on the base board, a second insulating body having a base portion and a second tongue board extending forward from a bottom of the base portion, and second terminals each having a second contact portion stretching out of a front of the base portion and disposed above the second tongue board. Two opposite sides of the first tongue board protrude upward to form two clipping walls defining a receiving space therebetween. The second insulating body is received in the receiving space of the first insulating body with the base portion being clipped between the clipping walls and a front end of the second tongue board abutting against a rear end of the base board.
Abstract:
An audio jack adapted to be inserted into an audio plug for switch an audio function includes a housing, a switch contact and a signal contact. The housing includes a main portion, a mating portion projected from a front of the main portion and a tunnel longitudinally formed in the housing. The switch contact includes an engaging portion engaged with the housing, and a first contact portion extended to the tunnel. The signal contact includes an engaging portion engaged with the housing, and a second contact portion extended into the tunnel. The first contact portion and second contact portion connect to different positions of a lateral surface of the audio plug for switching the audio function while the audio plug is completely plugged into the tunnel of the housing.
Abstract:
An electrical connector includes an insulating body having a mouth and fastening passages connected with the mouth, first terminals disposed in the fastening passages with soldering tails stretching into the mouth and abutting against the bottom side of the mouth, and a lid mounted in the mouth. The lid has a restraining board abutting against a front side of the mouth to seal up the fastening passages for stopping solder flowing forward along the fastening passages, and a plurality of separating arms protruding rearward from a bottom of the restraining board and spaced from one another along a length direction of the restraining board to abut against the bottom side of the mouth. The soldering tails are respectively restrained between two adjacent separating arms and separated by the separating arms to make easier for being soldered with cables and avoid a short circuit among the soldering tails.
Abstract:
A card connector adapted for receiving a SIM card includes an insulating housing having a front surface and two opposite lateral surfaces. The front surface has at least one receiving recess extending rearward. Each of the lateral surfaces has a propping portion which passes through a top surface of the insulating housing. A plurality of connecting terminals is received in the insulating housing. The metal shell coupled with the insulating housing has a covering plate and two lateral plates extending downwards from two opposite sides of the covering plate. A front edge of the covering plate has at least one first mating portion of L shape of which a bottom is received in the receiving recess. A bottom of the lateral plate curves inwards to form a resistive portion resting against the propping portion for forming a chamber for receiving the SIM card.
Abstract:
A method of assigning phases to shifters on a layout is provided. The method includes creating a link between any two shifters within a predetermined distance from each other. In one embodiment, the predetermined distance is larger than a minimum feature size on the layout, and smaller than a combined minimum pitch and regulator width. A weight can be assigned to each created link. Phases can be assigned to the shifters, wherein if a phase-shift conflict exists on the layout, then one or more links can be broken based on their weight.
Abstract:
A method of assigning phases to shifters on a layout is provided. The method includes creating a link between any two shifters within a predetermined distance from each other. In one embodiment, the predetermined distance is larger than a minimum feature size on the layout, and smaller than a combined minimum pitch and regulator width. A weight can be assigned to each created link. Phases can be assigned to the shifters, wherein if a phase-shift conflict exists on the layout, then one or more links can be broken based on their weight.
Abstract:
Systems and methods for generating an image are provided. These systems and methods include generating multiple light beams from a light source by controlling at least one parameter of the light source to be different among each of the multiple light beams. The systems and methods further include forming multiple light patterns of circuit structures that are separated in frequency by directing each of the light beams at a mask of circuit features. The systems and methods, when used in lithography for example, further include directing each of the light patterns toward a silicon substrate. The silicon substrate includes a silicon wafer having a surface at least partially covered with at least one of a photoresist material and a reversible contrast enhancement material (R-CEM).