Abstract:
A superstoichiometric MgAl.sub.2 0.sub.4 spinel, which can be used, for example, as material for a high temperature crucible, is synthesized by, producing a precursor mixture comprising intimately mixed oxides of the corresponding metals in the spinel. Magnesium is added in a superstoichiometric amount to the precursor mixture. Prior to spinel formation, from one to five percent by weight of a reactive salt containing fluorine and/or boron, based on the metal oxides of the spinel, are added to the precursor mixture, and the doped precursor mixture is mixed for from 0.5 to 3 hours. Finally, the mixed precursor mixture is heated for between 0.5 and 4 hours at a temperature between 1150.degree. C. and 1400.degree. C. to synthesize the Mg.sub.(1+x) Al.sub.2 0.sub.4 spinel which is superstoichiometric with respect to magnesium.
Abstract translation:可以通过制备包含尖晶石中相应金属的紧密混合氧化物的前体混合物来合成可用作例如高温坩埚材料的超化学计量的MgAl 2 O 4尖晶石。 将镁以超化学计量的量加入到前体混合物中。 在尖晶石形成之前,将1-5重量%的基于尖晶石金属氧化物的含氟和/或硼的反应性盐加入前体混合物中,将掺杂的前体混合物混合0.5至 3小时。 最后,将混合的前体混合物在1150℃至1400℃的温度下加热0.5至4小时,以合成关于镁的超化学计量的Mg(1 + x)Al 2 O 4尖晶石。
Abstract:
An electrically programmable and erasable floating gate memory device has two substantially identical sections. Each section has a plurality of column address lines, a plurality of row lines and a plurality of source lines. A first plurality of floating gate memory cells has its drain connected to a different one of the column address line, its gate connected to the same first row line and its source connected to the same first source line. A second plurality of floating gate memory cells has its drain connected to a different one of the column address line, its gate connected to the same second row line, different from the first row line, and its source connected to the same first source line. Associated with each section is a plurality of bit latches, one for each column. Reprogramming data is stored in the bit latches. Data from the bit latches of one section are stored in the first plurality of floating gate memory cells. Data from the bit latches of the other section are stored in the second plurality of floating gate memory cells.
Abstract:
A solid state peripheral storage device receives an LSN address from a computer system and provides a mapping to a PSN data. The PSN data addresses memory units which are made out of solid state floating gate storage cells. In addition, a microsequencer controls the operation of the translation of the mapping of the LSN to PSN. Through the use of the mapping of LSN to PSN, defective sectors in the memory units can be mapped out and fresh, unused, defective-free sectors can then be replaced, all automatically, without user intervention. Finally, the microsequencer has error recovery routines to further enhance the reliability of the peripheral device.
Abstract:
A method for making bipolar transistors with a first and a second buried collectors that are separated wherein the first and second buried collectors are separated by a p buried layer that is made by depositing a heavily doped boron layer and subsequently diffusing boron from the boron layer into the area between the first and second buried collector.
Abstract:
FIG. 1 is a front, right and top perspective view of an unicorn pop keychain, showing my design. FIG. 2 is a rear, left and bottom perspective view thereof. FIG. 3 is a front elevation view thereof. FIG. 4 is a rear elevation view thereof. FIG. 5 is a left side elevation view thereof. FIG. 6 is a right side elevation view thereof. FIG. 7 is a top plan view thereof. FIG. 8 is a bottom plan view thereof; and, FIG. 9 is a cross-sectional view of the unicorn pop keychain of FIG. 1, taken along section line 9-9 as depicted in FIG. 3.
Abstract:
The present invention relates to compositions and a process in the field of self-cleaning system using digestive proteins. One composition includes a substrate, a digestive protein capable of decomposing a stain molecule, and a link moiety bound to both said digestive protein and said substrate. An alternative composition includes a digestive protein capable of decomposing a stain molecule and a coating substrate wherein said digestive protein may be dispersed in said coating substrate. The process claim includes binding a substrate to a surface and forming a linker moiety between a digestive protein and said substrate.
Abstract:
Disclosed herein are systems and methods that are directed to alleviating the hidden node problem occurring in wireless systems by using the simultaneous transmission and reception (STR) capability without increasing the medium access layer (MAC) overhead. Accordingly, a receiving device receiving a data packet from a transmitting device can simultaneously transmit a data packet, called a STR Clear to Send (CTS). This STR-CTS can create a guard zone around the receiving device to avoid collisions from unwanted transmissions from secondary devices, e.g., neighboring STAs and/or APs. In various embodiments, the STR-CTS packet transmitted by the receiving device can be decodable by legacy devices, e.g. legacy STAs and APs, as well as next generation devices, for example, those employing unlicensed technologies such as LAA.
Abstract:
The invention provides high enzyme loading nanofibers and processes utilized in their fabrication, the nanofibers suitable for use as a new class of highly sensitive and stable biosensors capable of monitoring glucose at low levels. The biosensors, comprising nanofiber enzyme materials fabricated from organic solvent-based polymer-enzyme systems, can be used effectively in non-invasive transdermal biosensing applications.
Abstract:
A trim assembly for covering an airbag, comprising: a carrier provided with a through-opening for the airbag; a surface decor; an inlay applied between the carrier and the surface decor and covering the through-opening, the inlay extending, on one side, beyond an edge of the through-opening to overlap a region of the carrier to form an hinge for an airbag flap formed by the surface decor and the inlay; and a fastening strap for fastening the inlay to the carrier at the overlapping region, wherein it comprises at least one retaining element arranged at the overlapping region, the retaining element cooperating with the inlay for retaining the airbag flap on the carrier upon an opening of the airbag flap.
Abstract:
Disclosed are a polymer solar cell and a preparation method thereof. The preparation method comprises: successively preparing on a clean glass substrate (1), a cathode (2), an electronic buffer layer (3) and an active layer (4) by the steps of dissolving poly(3,4-ethylenedioxythiophene) and polymerized p-styrene sulphonic acid, dissolving zinc oxide into acetic acid to obtain a zinc oxide solution, mixing the zinc oxide solution with the solution of poly(3,4-ethylenedioxythiophene) and polymerized p-styrene sulphonic acid to obtain a mixed solution, spin-coating the mixed solution on the active layer (4) and then by drying to obtain the anode (5), and finally obtain the polymer solar cell.