Abstract:
An enclosure includes a chassis and a bracket. The chassis includes a bottom panel, a rear panel and a side panel. The rear panel defines a latch hole. Two clamping pieces are located on the side panel. The bracket is engaged between the clamping pieces and includes a first sidewall and a second sidewall. A second hook and a resilient piece are located on the first sidewall. A first hook is located on the second sidewall. The first hook and the second hook are separately engaged with the two clamping pieces for preventing the bracket from moving along a first direction near to the bottom panel. The resilient piece is engaged in the latch hole to preventing the bracket from moving a second direction opposite to the first direction, and the resilient piece is elastically deformable to disengage from the lath hole.
Abstract:
An ESD device includes a first and second well regions disposed in a semiconductor substrate. The first well region comprises a plurality of N wells spaced at a predetermined length. A heavily doped P+ region and a heavily doped N+ region are disposed in each of the N wells. The heavily doped N+ region is coupled to Vdd and a heavily doped P+ region in an N well is electrically coupled to the heavily doped N+ region in an adjacent N well. The second well region comprises a P well abutting an N well. A heavily doped P+ region and a heavily doped N+ region are disposed in the P well. The heavily doped N+ region in the P well is electrically coupled to the heavily doped P+ region of the adjacent N well in common with an I/O circuit, and the heavily doped P+ region is coupled to Vss.
Abstract:
The disclosure provides a method for transmitting signaling trace command, comprising the steps of: carrying signaling trace configuration parameters corresponding to a plurality of signaling traces in signaling trace command; transmitting the signaling trace command to activate or maintain the signaling traces. The disclosure also provides an apparatus for transmitting signaling trace command. The method and apparatus can reduce the signaling interaction load of the S1 interface, thereby improving the performance of a system.
Abstract:
Disclosed herein are methods for the isolation, identification, and quantification of red blood cells and red blood cell precursors at different developmental stages. Also disclosed are methods for monitoring ex vivo proliferation and differentiation of red blood cells and red blood cell progenitors.
Abstract:
Devices for converting bio-kinetic energy into electrical energy. Devices may include a fluid conduit configured to contain a liquid conductive material, a transducer coupled to the fluid conduit and configured to drive flow of the liquid conductive material through the fluid conduit, and a magnetohydrodynamic (MHD) power generation unit operatively coupled to the fluid conduit, wherein the MHD power generation unit is configured to convert liquid conductive material flow through the fluid conduit into electrical power. Devices may be incorporated into a number of wearable articles and building articles for conversion of bio-kinetic energy into electrical energy.
Abstract:
A method and an Evolved Node Base-station (eNB) for avoiding an occurrence of a ping-pong handover between adjacent cells are provided. The eNB comprises: a statistics module, a storage module, a judging module and a parameter adjusting module. The method includes: during a statistics period, eNBs serving two adjacent cells involved in a ping-pong handover, making a statistics on times of the serving cell of the eNB being used as a source cell and a target cell in a second handover in a process of each ping-pong handover occurring between the two adjacent cells respectively; upon the end of the statistics period, if the eNB determines that the times of the serving cell of the eNB being used as the source cell in the second handover is greater than the times of as the target cell, the eNB increasing a value of a handover control parameter of this serving cell.
Abstract:
An ESD device includes a first and second well regions disposed in a semiconductor substrate. The first well region comprises a plurality of N wells spaced at a predetermined length. A heavily doped P+ region and a heavily doped N+ region are disposed in each of the N wells. The heavily doped N+ region is coupled to Vdd and a heavily doped P+ region in an N well is electrically coupled to the heavily doped N+ region in an adjacent N well. The second well region comprises a P well abutting an N well. A heavily doped P+ region and a heavily doped N+ region are disposed in the P well. The heavily doped N+ region in the P well is electrically coupled to the heavily doped P+ region of the adjacent N well in common with an I/O circuit, and the heavily doped P+ region is coupled to Vss.
Abstract:
A method, a device, and a system for establishing a security mechanism for an air interface are provided in embodiments of the present invention. The method includes: performing security processing for a shared key of an access link according to a shared key between a relay node and a mobility management entity; and sending the shared key of the access link after the security processing to the relay node to enable the relay node to obtain the shared key of the access link based on the shared key between the relay node and the mobility management entity. The present invention reduces the possibility at which the air interface link is hacked, thereby improving the security of the air interface link.
Abstract:
This invention provides an isolated stem cell modified to provide, enhance or contain the functional characteristics of the sarcoplasmic reticulum (SR) The isolated stem cells are modified by expressing a calcium channel protein, by expressing a calcium pump protein such as the sarcro/endoplasmic reticulum Ca2+-ATPase (SERCA) protein, by inhibiting or downregulating expression of the Na+/Ca2+ exchanger (NCX) protein, by expressing a calcium handling protein, by expressing a transverse (t)-tubule, and/or by expressing a transverse (t)-tubule biogenic protein The modified cells may be expanded to a substantially homogenous population of these cells or differentiated to a more mature cell type Compositions are also provided The cells and compositions can be administered to a host and used to regenerate cardiac tissue, improve cardiac function, restore action potential of cardiac tissue, and treat or prevent cardiac malfunction Use for diagnostic screening of therapeutic candidates is also provided
Abstract:
2-Aminopyrimidine compounds are described, which are useful as H4 receptor modulators. Such compounds may be used in pharmaceutical compositions and methods for the treatment of disease states, disorders, and conditions mediated by H4 receptor activity, such as allergy, asthma, autoimmune diseases, and pruritis.