Abstract:
Techniques, apparatus and systems that use an optical probe head to deliver light to a target and to collect light from the target for imaging and monitoring a target while a separate radiation is applied to treat the target.
Abstract:
A cable assembly, comprising a housing having a main portion, a plurality of conductive terminals received in the main portion of the housing, a cable having a plurality of wires and a metal shell with a no-joint-line surface enclosing the housing and comprising a front portion enclosing the housing and a rear portion enclosing the cable and a receiving space passing through the front portion and the rear portion.
Abstract:
A cable assembly (1000) includes an insulative housing (11); at least one contact module (13) mounted to the insulative housing, the contact module including a plurality of contacts combined with an insulator thereof, said contacts (1312) having mating portions (1315) disposed in front of the insulator and tail portions (1316) disposed behind the insulator; a cable (14) having an insulative jacket (141) and a plurality of wires (142) enclosed by the insulative jacket; and wherein the tail portions of the contacts are respectively penetrated into the wires along an axially direction.
Abstract:
A LED lamp assembly (100) includes a LED light (1); a lamp holder (2) having a body portion (21) enclosing a hollow portion (23) to partially retain the LED light therein; a lamp base (3) including a cylindrical peripheral wall (31) and rear wall (32) connecting to the peripheral wall to define a socket (30) with a front opening, said lamp base (3) further having two cable retainers (34) seated in the socket (30) and discrete from the peripheral wall (31); a pair of cables (4) respectively extending into the cable retainers via at least a cable passage (321) of the rear wall. The lamp holder is press-fit into space between the cable retainer and the peripheral wall of the lamp base to urge the cable retainers clamping the cables.
Abstract:
A cable assembly (100) includes a housing having a main portion (11, 21) and a mounting portion (12, 22) extending backwardly from the main portion, the mounting portion defining a positioning cavity (1202, 2202) in an inner side thereof; a cable (4) having a number of wires (41) and a jacket (40), the wires enclosed by the jacket; a strain relief member (7) having an inner ring (71, 72) and an outer ring connected with each other to form a one-piece structure; and the strain relief member mounted to a front segment of the cable, the wires of the cable forwardly extending through the inner ring, the jacket of the cable sandwiched between the outer ring and the inner ring, the outer ring accommodated in the positioning cavity of the mounting portion.
Abstract:
A cable assembly (100 comprises an insulative housing (1) having a recess (12) formed on a rear surface thereof; a plurality of contacts (2) disposed in the insulative housing; a printed circuit board (3) having a front portion received into the recess and electrically connected with the plurality of contacts, the printed circuit board having a first PCB and a second PCB stacked together in a manner of back to back; a shielding member (5) enclosing the housing and the printed circuit board; and a cable (4) having a plurality of conductive wires (41) extending into the shielding member and electrically connected to a rear portion of the printed circuit board.
Abstract:
An electrical adaptor (100) includes a first connection assembly (2) having a first printed circuit board (20), a first connector (21) mounted to a front segment of the first printed circuit board, a first variable resistor (24) mounted to a rear segment of the first printed circuit; a second connection assembly (3) having a second printed circuit board (30), a second connector (31) mounted to a front segment of the second printed circuit board, a second variable resistor (34) mounted to a rear segment of the first printed circuit board; a cover member (1, 6) enclosing the first connection assembly and the second connection assembly therein; and wherein the first printed circuit board and the second printed circuit board are disposed at different levels and partially overlapping each other.
Abstract:
Systems, apparatus and techniques for non-invasive optical probing of various substances, and systems, apparatus and techniques for detecting, diagnosing and treating a disease in lungs and other organs using the non-invasive optical probing, including mapping physiological functions of tissues in lungs and other organs.
Abstract:
An electrical connector (100) includes an insulative housing (1) having a receiving cavity (110) and a passageway (1130) in communication with the receiving cavity therein, and an electric contact (3) received in the passageway and extending into the receiving cavity for contacting with a complementary connector. The receiving cavity has a pair of surfaces opposite to each other, with one of said surfaces attached to said passageway and the other one standing far away from the passage. The contact has first and second elastic contact engaging portions (311, 313) for physically and electrically connecting with the complementary connector, and the first contact engaging portion is closer to said the other surface of the receiving cavity than the second contact engaging portion.
Abstract:
An electrical adaptor (100) includes a first connection assembly (2) having a first printed circuit board (20), a first connector (21) mounted to a front segment of the first printed circuit board, a first variable resistor (24) mounted to a rear segment of the first printed circuit; a second connection assembly (3) having a second printed circuit board (30), a second connector (31) mounted to a front segment of the second printed circuit board, a second variable resistor (34) mounted to a rear segment of the first printed circuit board; a cover member (1, 6) enclosing the first connection assembly and the second connection assembly therein; and wherein the first printed circuit board and the second printed circuit board are disposed at different levels and partially overlapping each other.