Abstract:
FIG. 1 is a front perspective view of a wireless microphone set, showing my new design; FIG. 2 is a rear perspective view thereof; FIG. 3 is a front view thereof; FIG. 4 is a rear view thereof; FIG. 5 is a left side view thereof; FIG. 6 is a right side view thereof; FIG. 7 is a top view thereof; FIG. 8 is a bottom view thereof; and, FIG. 9 is an enlarged view of an enclosed portion of the wireless microphone set labeled 9 in FIG. 1. The evenly-dashed broken lines in the drawings illustrate portions of the wireless microphone set that form no part of the claimed design. The dash-dot broken lines in the drawings enclosing portions of the wireless microphone set illustrated in enlargements form no part of the claimed design.
Abstract:
A method of preparing a compound of formula (I): is disclosed. The compound of formula (I) can be used as an antioxidant agent. The compound can also be used as an antibacterial agent to inhibit Staphylococcus aureus MRSA 18-222 and Pseudomonas aeruginosa MDR-PA 18-1774.
Abstract:
The present invention relates to a coating composition, especially, relates to an aqueous coating composition with improved liquid stain repellency, it has a fraction of critical pigment volume concentration of from 35% to 110%, and comprises (i) pigment composition, including 15 wt. %-100 wt. %, in percentage by weight based on the dry weight of the pigment composition, polymer-encapsulated pigment; and 0-85 wt. %, in percentage by weight based on the dry weight of the pigment composition, un-encapsulated pigment; and (ii) 0.01 wt. %-5 wt. %, in percentage by dry weight based on the wet weight of the aqueous coating composition, at least one paraffin wax emulsion.
Abstract:
A mounting apparatus includes a chassis, an expansion member attached to a first end of the expansion card and a mounting tray. The chassis includes a front plate and a rear plate opposite to the front plate. The expansion member is engaged with the rear plate. The mounting tray includes a first section and a second section connected to the first section. A retaining slot is defined in the first section. An engaging portion is disposed on the second section, and a positioning slot defined in the engaging portion. The positioning slot and the retaining slot are located in a longitudinal line. The first section is engaged with the front plate, and the retaining slot and the positioning slot receive a second end of the expansion card.
Abstract:
A microchannel heat exchanger. The heat exchanger includes two parallel collecting pipes on two sides, and a group of microchannel flat pipes between the two sides, and both ends of every microchannel flat pipe are connected to the collecting pipes. Tube walls of the microchannel flat pipe are tightly fit and fixed on the plate shaped heat conducting fin. A microchannel heat exchanger according to the invention gives good strength to the microchannel flat pipes, so as to avoid bending. Additionally, it increases the thickness of microchannel flat pipe, which can substantially prevent it from being worn or exposed. Moreover, the gap due to length error can be eliminated. Lastly, the thermal conduction capability is improved, which reduces the usage of silicone grease, and makes its application becomes more convenient.
Abstract:
An electronic device enclosure which is able to resist damage from jolts or bumping includes a frame, a limiting member located in the frame, a cover secured to the frame, a mounting bracket and a blocking member. The frame includes a side plate. The mounting bracket is adapted to receive a data storage device and includes a first sidewall and a second sidewall opposite to the first sidewall. The second sidewall is secured to the side plate. A first end of the first sidewall is rotatably received in the limiting member and located between the limiting member and the second sidewall. A second end of the first sidewall opposite to the first end is hung on the frame. The blocking member is secured to the cover and abuts the second end. The second end is located between the blocking member and the second sidewall.
Abstract:
Provided is an anti-reductive high-frequency ceramic dielectric material sintered at low temperature and matched with copper internal electrode, which can be used for producing multi-layer ceramic capacitor with a copper internal electrode. The ceramic dielectric material consists of main crystalline phase, modifying additive and sintering flux. The formula of the main crystalline phase is MgxBa(1−x)ZrySi(1−y)O3, wherein 0.8≦0.95, 0.05≦y≦0.2. The modifying additive is one or more of MnO2, CaO, Li2O, Bi2O3 and TiO2, and the sintering flux is one or more of B2O3, SiO2, ZnO, CuO, K2O and BaO. The ceramic dielectric material meets the requirements of COG characteristics by EIA standard, has such characteristics as uniform particle size distribution, high dispersiveness, optimized molding process, eco-friendliness and excellent dielectric properties.
Abstract:
An assembly includes a power supply unit, a base, and an enclosure. The base includes a bottom plate. The enclosure includes a bottom panel. A flexible piece is connected to the bottom panel. The power supply unit is located on the bottom panel. The bottom panel is located on the bottom plate of the base. The flexible piece is located between the power supply unit and the bottom plate, and is elastically bent.