Abstract:
A thermally stable phosphor made of the M-Si—O—N system, having a cation M and an activator D, M being represented by Ba or Sr alone or as a mixture and optionally also being combined with at least one other element from the group Ca, Mg, Zn, Cu. The phosphor is activated with Eu or Ce or Tb alone or as a mixture, optionally in codoping with Mn or Yb. The activator D partially replaces the cation M. The phosphor is produced from the charge stoichiometry MO—SiO2—SiN4/3 with an increased oxygen content relative to the known phosphor MSi2O2N2:D, where MO is an oxidic compound.
Abstract translation:由M-Si-O-N系统制成的具有阳离子M和活化剂D的热稳定荧光体,M由单独的Ba或Sr表示或作为混合物表示,并且任选地还与至少一种其它元素 组Ca,Mg,Zn,Cu。 荧光体单独或作为混合物用Eu或Ce或Tb活化,任选地与Mn或Yb共掺杂。 活化剂D部分地取代阳离子M.荧光体是从电荷化学计量MO-SiO2-SiN4 / 3生成的,相对于已知的荧光体MSi 2 O 2 N 2:D,其中MO是氧化化合物,氧含量增加。
Abstract:
A red-emitting phosphor composed of an M-Al—Si—N system, comprising a cation M, wherein M is represented by at least one of the elements Ca or Ba or Sr and, if appropriate, can additionally be combined with at least one further element from the group Mg, Zn, Cd, wherein the phosphor is activated with Eu, which partly replaces M, and wherein the phosphor additionally contains LiF.
Abstract:
A red-emitting phosphor composed of an M-Al—Si—N system, comprising a cation M, wherein M is represented by at least one of the elements Ca or Ba or Sr and, if appropriate, can additionally be combined with at least one further element from the group Mg, Zn, Cd, wherein the phosphor is activated with Eu, which partly replaces M, and wherein the phosphor additionally contains LiF.
Abstract:
A red-emitting luminescent material that belongs to the class of nitridosilicates and is doped with at least one activator D, in particular Eu, wherein the material is a modified D-doped alkaline earth nitridosilicate M2Si5N8, where M=one or more elements belonging to the group Sr, Ca, Ba, with the nitridosilicate having been stabilized by an oxidic or oxinitridic—in particular alkaline earth—phase
Abstract:
A system and associated method for distributing signals with efficiency over a microprocessor. A performance monitoring unit (PMU) sends configuration signals to a unit to monitor an event occurring on the unit. The unit is attached to a configuration bus and an event bus that are daisy-chained from PMU to other units in the microprocessor. The configuration bus transmits configuration signals from the PMU to the unit to set the unit to report the event. The unit sends event signals to the PMU through the event bus. The unit is configured upon receiving configuration signals comprising a base address of a bus ramp of the unit. A number of units and a number of events for monitoring is flexibly selected by adjusting a length of bit fields within configuration signals.
Abstract:
A phosphor from the class of nitridosilicates from the M-Al—Si—N system, comprising a cation M, wherein M is represented by Ca alone or is represented by a mixture of Ca with at least one further element from the group Ba, Sr, Mg, Zn, Cd, Li, Na, Cu, wherein the phosphor is activated with at least one element from the group Eu, Ce which partly replaces M, characterized in that the phosphor forms a phase that is to be assigned to the system M3N2-AlN-Si3N4, wherein the atomic ratio of the constituents M:Al ≧0.375 and the atomic ratio Si/Al ≧1.4.
Abstract:
Reduction of power consumption and chip area of a microprocessor employing speculative performance counting, comprising splitting a counter and a backup register of a speculative counting mechanism performing the speculative performance counting into first and second parts each, re-using an available storage within the microprocessor as first parts respectively; integrating at least one dedicated pre-counter into the microprocessor as second parts respectively; splitting the data handled by the speculative counting mechanism in high-order and low-order bits; storing the high order bits in the first parts; storing the low order bits in the second parts; updating the first parts periodically; and saving and propagating the carry-out from the second parts to high-order bits when a corresponding first part of the second parts is next updated respectively.
Abstract:
The invention relates to an installation (1) for guiding a gas for devices (44) used to treat granular products (56) by drying, film-coating or coating, especially an air intake unit, comprising a central distribution channel (2) that can be connected to a gas supplying device and is connected to outlets (6.1, 6.n) for the gas, that are arranged at a distance from the central distribution channel in an axial direction, by means of connection channels (3, 4). According to the invention, the installation comprises a functional channel (5) which is arranged at a distance from the distribution channel (2) and has a plurality of outlets (6.1, 6.n). Said functional channel comprises at least two axially interspaced inlet regions (11, 12). Each inlet region (11, 12) is connected to the distribution channel (2) by means of a connection channel (3, 4). The outlets (6.1, 6.n) are arranged, in the axial direction on the functional channel (5), between the mouth of two connection channels (3, 4), which are adjacently arranged in the axial direction, in the functional channel (5).
Abstract:
A cordless power tool battery pack including an onboard circuit configured to electronically communicate with an associated battery charging system. The onboard circuit communicates information relating to the batter pack to a microprocessor or the like within the battery charging system and charging of the battery pack is controlled based on such communication.
Abstract:
A treatment process is disclosed that comprises administering an effective amount of an aromatic sulfone hydroxamic acid that exhibits excellent inhibitory activity of one or more matrix metalloprotease (MMP) enzymes, such as MMP-2, MMP-9, and MMP-13, while exhibiting substantially less inhibition at least of MMP-1 to a host having a condition associated with pathological matrix metalloprotease activity. The administered enzyme inhibitor corresponds in structure to formula (I), below, or a pharmaceutically acceptable salt thereof, wherein R1 and R2 are both hydrido or R1 and R2 together with the atoms to which they are bonded form a 5- to 8-membered ring containing one, two, or three heteroatoms in the ring that are oxygen, sulfur, or nitrogen. R3 in formula (I) is an optionally substituted aryl or optionally substituted heteroaryl radical. Also disclosed are metalloprotease inhibitor compounds having those selective activities, processes for manufacture of such compounds and pharmaceutical compositions using an inhibitor.