Abstract:
A cable assembly (100), comprises a housing (10) formed by a base portion (101) having a first top surface (1011) and a mating portion (102) having a second top surface (1021), and the housing has a receiving space therein. A plurality of conductive contacts (311, 331) are retained in the housing. A cable (7) is entered into the receiving space and electrically connected with the conductive contacts. A pulling member (52) is moveable relative to the housing in a horizontal direction, and comprises a cooperating portion (524) at a front end thereof. And a latching member (51) is cooperated with the pulling member and assembled to the housing for latching with a complementary connector. The latching member comprises an engaging section (513) assembled to the housing, a latching section (515) disposed on the top of the base portion and an actuating section (5140) disposed between the engaging section and the latching section. The actuating section is interconnected with the cooperating portion and capable of being actuated by the cooperating portion of the pulling member.
Abstract:
An electrical connector (100) for mating with a mating connector (800) along a mating direction includes an insulative housing (1), a pair of latches (7) and a number of terminals (5) received in the insulative housing. The insulative housing has a front face (11), a pair of side walls (13) each defining an opening (131), a pair of receiving spaces (12, 14) defined between the pair of side walls, and a partition (16) disposed between the pair of receiving spaces. The pair of latches are mounted in the openings and each formed with an engaging portion (75). The latch resiliently yields in the opening along a moving direction perpendicular to the mating direction to permit the engaging portion moveable between a locked position and an unlocked position.
Abstract:
A cable connector assembly (100) comprises an insulative housing (1), a plurality of contacts (2) received in the housing (1), a plurality of wires (3) electrically connecting to the contacts (2) and a fastening device (7). The housing (1) defines at least a through hole (107) in a lateral side thereof. The fastening device (7) comprises a bolt (71) matching with a nut (72) received in the through hole (107), the nut (72) has an engaging portion (723) split into at least two deformable pieces (7230), and the bolt (71) is slidably received in the nut (72) to urge the deformable pieces (7230) splaying when the bolt is pushed in; a stopper is arranged between the bolt and the nut to prevent the bolt from sliding out of the nut.
Abstract:
An electrical connector assembly comprises a receptacle connector (100) and a plug connector (200) mating with the receptacle connector. The receptacle connector (100) has a receptacle housing (10) and a plurality of receptacle contacts (12) received in the receptacle housing, and the receptacle housing comprises a base portion (102) and an expansion portion (104) extending outwards from the base portion. The plug connector comprises a plug housing (20) and a plurality of plug contacts (21) retained in the plug housing. Each of the receptacle contacts and the plug contacts define a mating portion (121, 211), a retention portion (123, 213) retained with associated housing and a tail portion (124, 214) extending beyond the associated housing. The receptacle contacts and the plug contacts are divided into two groups respectively, each group of contacts comprises two pairs of differential signal contacts (12a, 12b, 12d, 12e, 21a, 21b, 21d, 21e) transmitting signal and a grounding contact (12c, 21c) arranged between the two pairs of differential signal contacts, and one of the two pairs of the differential signal contacts (12d, 12e, 21d, 21e) are located on an outer side of the group of contacts.
Abstract:
One embodiment may take the form of an apparatus for providing separate user classifications and interfaces to multiple users of a set-top box of the television system. Each user classification may be configurable to provide different interfaces, menus and available features to the users of the set-top box. Further, each user classification may include several sub-classifications to further personalize the set-top box to the various users of the system. Also, each user classification may also monitor the habits and usage of each class and store such information for use by the set-top box to suggest settings of the set-top box that the user may be interested in, such as a favorite channel list.
Abstract:
The present invention relates to a method and apparatus of precise first-path detection in CDMA mobile communications systems, comprising the steps of: a. calculating the noise threshold for the first-path detection according to the multi-path profile; b. judging whether there is a maximum point exceeding the noise threshold in the multi-path profile, if yes, carrying out side-lobe suppression at this maximum point and obtaining the candidate first path; otherwise, setting the flag of no first path existing, and exiting the entire process of first-path detection; c. judging according to the location of the candidate first path whether the first path is ambiguous, if yes, carrying out correction of first-path ambiguity, obtaining the corrected location of final first path, and exiting the entire first-path detection process; otherwise, outputting the location of candidate first path as the location of final first path. The apparatus in accordance with this invention comprises at least a module for noise threshold calculation, a module for side-lobe suppression, and a module for first-path ambiguity detection and correction.
Abstract:
A cable assembly (1) includes an insulated housing (2) having a base portion (21) and a mating portion (22) extending forwardly from the base portion; a plurality of terminals (3) received in the insulated housing; a retainer (214) formed on the base portion, said retainer defining a cavity (215) with a rear outlet; a sensor (7) accommodated in the cavity of the retainer; and a lid member (8) covering the rear outlet of the retainer.
Abstract:
A cable connector assembly (100) according to the present invention includes an insulator (2), a PCB (5) and a wire management member (4). The insulator includes a front side, a rear side, a number of terminal passages (24) between the front side and the rear side, and a number of terminals (3) respectively mounted in the terminal passages, each of the terminals has a tail (33) extended out of the rear side of the insulator. The PCB is located behind the insulator and includes a number of first conductive pads (51) which connect with the corresponding terminals and a number of second conductive pads (52) which is soldered to a number of wires (6), the first conductive pads electrically connect with the corresponding second conductive pads. The wire management member is held by the insulator, and defines a number of wire management grooves (421) above the PCB and adjacent to the second conductive pads, the wire management grooves receives the corresponding wires for enabling the wires to be respectively soldered to the second conductive pads.
Abstract:
An audio system and method of generating an amplified audio signal comprises a class-D audio amplifier; and a battery directly connected to the class-D audio amplifier, wherein the direct connection between the battery and the class-D audio amplifier achieves a power efficiency greater than approximately 90%. The audio system may further comprise an analog-to-digital converter (ADC) adapted to digitize an output voltage of the battery and digital signal processing to maintain constant audio volume regardless of the battery voltage drift.