Abstract:
A press-contacting conductive terminal device comprises a non-conductive enclosure, a base, a contact member and a resilient member. The non-conductive enclosure defines a cylindrically shaped through hole. A front end and a rear end of the through hole having a first opening and a second opening, respectively. The contact member having a front end portion and a rear end portion, the rear end portion of the contact member and the resilient member being received in the through hole. One end of the resilient member abutting against the rear end portion of the contact member and the front end portion of the contact member extending through the first opening and beyond a front end of the non-conductive enclosure. The base including two side wings and a base portion, the base closing the second opening of the rear end of the through hole. The rear end of the contact member being set between the two side wings of the base and the outer wall of the rear end of the contact member sliding within the inner walls and the two side wings. Thereby, the assembled press-contacting conductive terminal device omits the need for the previous metal shell, saving material, reducing weight, and saving cost.
Abstract:
Disclosed are carboxamide, sulfonamide and amine compounds, as well as pharmaceutical compositions and methods of use. One embodiment is a compound having the structure in which R1, R2, R4, E, T, n and x are as described herein. In certain embodiments, a compound disclosed herein activates the AMPK pathway, and can be used to treat metabolism-related disorders and conditions.
Abstract:
Disclosed are carboxamide, sulfonamide and amine compounds, as well as pharmaceutical compositions and methods of use. One embodiment is a compound having the structure in which R1, R2, R4, D, E, J, T, p, q and x are as described herein. In certain embodiments, a compound disclosed herein activates the AMPK pathway, and can be used to treat metabolism-related disorders and conditions.
Abstract:
A method and apparatus for communicating traffic information, that in certain embodiments performs the actions of associating (215) with a traffic group that corresponds to a traffic region, determining (220) at least one traffic related parameter of the mobile communication device while operating within the traffic region, and transmitting (235) to the traffic group a transmit traffic information message that includes the at least one traffic related parameter. In certain embodiments, the following actions are performed: receiving (225) one or more receive traffic information messages from mobile communication devices associated with the traffic group, wherein each receive traffic information message includes at least one traffic related parameter and preparing (240) a local traffic report using the receive traffic information messages.
Abstract:
An electrical terminal includes first and second contact members having outer pressure contacting end portions for pressure engaging a pair of spaced electrical devices. The contact members have enlarged inner end portions. A sleeve includes a through hole for slidably receiving the inner end portions of the contact members at opposite ends thereof. The through hole has opposite open ends through which the pressure contacting end portions of the contact members project. Restricted stops are formed at the open ends of the through holes for abutting the enlarged inner ends of the contact members to define outer limit positions of the pressure contacting end portions of the contact members. A biasing member is disposed in the through hole to resiliently bias the contact members in opposite directions. The invention contemplates that an outside diameter of the sleeve at a first end thereof be smaller than an out-side diameter of the sleeve at a second end thereof. Thereby, the smaller diameter end is easily formed into a restricted stop, and the larger diameter end of the sleeve can be used for clamping and disassembling the terminal from an electrical device without damaging the sleeve.
Abstract:
An advanced structural foam molding technology for improving the dispersion of the blowing agent in the polymer matrix has been invented. This technological innovation is an improvement on the well-known existing low-pressure structural foam molding technology based on the preplasticating-type (so-called piggy-bag) injection-molding machines. By introducing means for continuing the polymer matrix melt flow stream, preferably an additional accumulator and a gear primp, the processing conditions become more consistent to disperse the injected gas more uniformly in the polymer matrix. By using this technology, the structural foams have a smaller cell size, a more uniform cell structure, a larger void fraction (i.e., more material saving), less surface swirl, and less weld line contrast.
Abstract:
The invention relates to methods for identifying and using agents, including small organic molecules, antibodies, peptides, cyclic peptides, nucleic acids, antisense nucleic acids, sphingolipid analogs, and ribozymes, that modulate cell activation or migration, e.g., lymphocyte migration, via modulation of the expression and/or activity of migration molecules such as, for example, EDG molecules (e.g., EDG1 and EDG3), selectins, integrins, cadherins, certain members of the immunoglobulin superfamily of molecules, or chemokine receptor molecule. The methods of the invention are efficient and readily amenable to high-throughput drug screening protocols. High-throughput screening (HTS) methods, compositions, and kits for performing the assays are also provided.
Abstract:
An electrical connector (1) comprises an insulating housing (10) defining a number of terminal receiving channels (140) and a first and a second openings (102, 104) in communication with the receiving channels, and a pair of terminal inserts (20, 30) respectively inserted into the first and the second openings. Each terminal insert includes an insulating portion (22, 32) and a number of terminals (24, 34) retained in the insulating portion. Each terminal has a mating portion (240, 340) received in a corresponding terminal receiving channel of the housing.