Abstract:
Tunneling-enhanced, floating gate semiconductor devices and methods for forming such devices are described. In one embodiment, a p-n junction device is formed with a floating gate that is partially doped with n- and p-type impurities. Two regions on either side of an n+ doped region in the floating gate and a surface region on a substrate are implanted with the impurities based on a number of predetermined configurations. In another embodiment, a transistor type semiconductor device is configured with implanted impurities in two regions of its floating gate as well as two surface regions in its substrate. Enhanced tunneling junction enables use of lower tunneling voltages in applications such as programming NVM cells.
Abstract:
The present invention provides compounds, including resolved enantiomers, diastereomers, solvates and pharmaceutically acceptable salts thereof, comprising the Formula: A-L-CR where CR is a cyclical core group, L is a linking group and A is as defined herein. Also provided are methods of using the compounds of this invention as AKT protein kinase inhibitors and for the treatment of hyperproliferative diseases such as cancer.
Abstract:
With analysis data in the prior art, it is difficult to find out if a change regarded as a judgmental standard of the completion of seasoning has come from a change due to the seasoning, namely, change in condition of the interior of a processing container or come from another change based on a temperature change among respective dummy wafers and furthermore, it is difficult to judge whether the seasoning has been completed or not. Therefore, a plasma processing method of the present invention, which is a method for detecting the completion of seasoning in performing the seasoning by loading dummy wafers W into a processing container 2 of a plasma processing apparatus 1, includes a process of creating a predictive formula for predicting the completion of seasoning and another process of detecting the completion of seasoning in performing the seasoning, based on the predictive formula. The creation of the predictive formula is accomplished by performing a multivariate analysis against a plurality of measured data that can be obtained by first supplying dummy wafers W into the processing container 2, cooling down the interior of the processing container 2 and supplying a plurality of dummy wafers W into the processing container 2 again.
Abstract:
Methods of inducing genetic material into cells of an individual and compositions and kits for practicing the same are disclosed. The methods comprise the steps of contacting cells of an individual with a polynucleotide function enhancer and administering to the cells, a nucleic acid molecule that is free of retroviral particles. The nucleic acid molecule comprises a nucleotide sequence that encodes a protein that comprises at least one epitope that is identical or substantially similar to an epitope of a pathogen antigen or an antigen associated with a hyperproliferative or autoimmune disease, a protein otherwise missing from the individual due to a missing, non-functional or partially functioning gene, or a protein that produces a therapeutic effect on an individual. Methods of prophylactically and therapeutically immunizing an individual against HIV are disclosed. Pharmaceutical compositions and kits for practicing methods of the present invention are disclosed.
Abstract:
FIG. 1 is a front, left and bottom perspective view of an automatic soap dispenser showing my new design; FIG. 2 is a rear, right and top perspective view thereof; FIG. 3 is a front view thereof; FIG. 4 is a rearview thereof; FIG. 5 is a left view thereof; FIG. 6 is a right view thereof; FIG. 7 is a top view thereof; FIG. 8 is a bottom view thereof; FIG. 9 is a perspective view thereof, showing the foldable part in a closed position; and, FIG. 10 is a perspective view thereof, showing in an exploded position. The broken lines shown in the figures are for the purpose of illustrating portions of the automatic soap dispenser, which form no parts of the claimed design.
Abstract:
A multimedia broadcast multicast service counting method is provided in the present invention, comprising: after receiving Multimedia Broadcast Multicast Service (MBMS) Counting Initiation information sent by a network side, a base station sending MBMS counting indication information to a User Equipment (UE) via an air interface; and the base station reporting the counting information about the MBMS to the network side according to a received MBMS counting result reported by the UE. A multimedia broadcast multicast service counting system for implementing the method is further provided in the present invention. The present invention can timely and accurately count the MBMS correspondingly, which can enable the network side to timely and accurately learn the application situation of the current MBMS and make it convenient for the network side to make relevant deployment regarding the MBMS.
Abstract:
A block-request streaming system provides for improvements in the user experience and bandwidth efficiency of such systems, typically using an ingestion system that generates data in a form to be served by a conventional file server (HTTP, FTP, or the like), wherein the ingestion system intakes content and prepares it as files or data elements to be served by the file server. The system might include controlling the sequence, timing and construction of block requests, time based indexing, variable block sizing, optimal block partitioning, control of random access point placement, including across multiple presentation versions, dynamically updating presentation data, and/or efficiently presenting live content and time shifting.