Abstract:
A thermoacoustic device includes a first electrode, a second electrode and a sound wave generator. The first electrode includes a first electrical conductor and a first conductive adhesive layer located on the first electrical conductor. The second electrode includes a second electrical conductor and a second conductive adhesive layer located on the second electrical conductor. The sound wave generator includes a carbon nanotube structure, and the sound wave generator is electrically connected to the first electrical conductor and the second electrical conductor via the first and second conductive adhesive layers. The adhesive layers permeate into the carbon nanotube structure.
Abstract:
A thermoacoustic device includes a base, a plurality of first fasteners, at least one first electrode, at least one second electrode and a sound wave generator. Each of the first fasteners includes a body engaging with the base and a flexible element extending from the body. The at least one first electrode has a first end and a second end. The first end engages with the flexible element of the plurality of first fasteners, and the second end is secured on the base. The at least one second electrode has a third end and a fourth end. The third end engages with the flexible element of the plurality of first fasteners, and the fourth end is secured on the base. The sound wave generator is electrically connected to the at least one first electrode and the at least one second electrode.
Abstract:
A TEM micro-grid is provided. The TEM micro-grid includes a carrier, a carbon nanotube structure, and a protector. The carrier defines a first through opening. The provided defines a second through opening. The carbon nanotube structure is located between a surface of the carrier and a surface of the protector. The carbon nanotube structure covers at least part of the first through opening.
Abstract:
A method for manufacturing a transmission electron microscope (TEM) micro-grid is provided. A sheet of carbon nanotube structure comprising a plurality of carbon nanotubes is first provided. Some carbon nanotubes are removed from selected portions of the sheet of carbon nanotube structure to form a plurality of electron transmission portions. Each of the electron transmission portions includes a hole defined in the sheet of carbon nanotube structure and a plurality of residual carbon nanotubes in the hole. The sheet of carbon nanotube structure having the electron transmission portions is cut into pieces to form the TEM micro-grid.
Abstract:
A burn-in socket (100) includes an insulative main body (1) defines a plurality of passageways; a slider (2) and a bottom plate (3) fits to the insulative main body; a plurality of contacts (16) receives in the insulative main body and the slider. The actuator frame (4) attached to the insulative main body forms a plurality of posts (44) positioning in the slots of the insulative body, the actuator frame includes a pair of opposing walls, each opposing wall has an upper guiding surface (45) protruding into the receiving room and a lower guiding surface (46) returns back towards the opposite wall both along the mating direction.
Abstract:
Techniques for providing type (and/or mode) conversion of parameters for software applications are provided. In general, a type conversion utility accesses a template that defines type and mode conversions for parameters between different components. The type conversion utility utilizes information stored in the template for that direct how the parameters will be converted. Additionally, techniques are provided for returning output values.
Abstract:
A burn-in socket for electrically connecting IC package to a printed circuit board, comprises a base, a sliding plate mounted to the base, and a plurality of contacts retained to the base and the sliding plate. The base has a plurality of protruding portions on a top surface thereof, the sliding plate is formed with a plurality of projecting portions on a bottom surface thereof, the protruding portions of the base abut against the bottom surface of the sliding plate, and the projecting portions of the sliding plate abut against the top surface of the base, so that the base and the sliding plate of the burin-in socket have an intensity.
Abstract:
A thermoacoustic device includes first electrodes, a first conductive element, second electrodes, a second conductive element, first insulators, second insulators and a thermoacoustic film. The first conductive element is electrically connected with the first electrodes. The second conductive element is electrically connected with the second electrodes. The first insulators connect the first electrodes to the second conductive element while insulating them from each other, and the second insulators connect the second electrodes with the first conductive element while insulating them from each other. The thermoacoustic film is electrically connected with the first electrodes and the second electrodes.
Abstract:
The present invention is intended to protect an industrial wireless communication method based on self-adaptive channel hopping within timeslot, which belongs to industrial wireless communication technology field. Aiming to solving existing problem that wireless devices can not correspondingly self-adaptive channel hopping according to environment changing, a method for making the two communication sides self-generate and execute channel switch when the preferred channel was interfered. The sender will monitor whether the channel is idle within SWTW before sending data through mechanisms such as CCA or non-persistent CSMA. If the channel is still busy till the SWTW times out, the sender will give up sending data and implement channel switching control command by considering this communications channel as interfered. If no packets were received till the RWTW time-outs, the receiver will thinks the communication channel was interfered and automatically implement channel switching control commands. Thus, the receiver will change its backup channel into communication channel. So far, the sender and receiver all independently hop to the backup channel for new communication process after a channel switching cycle. Different time synchronization algorithm will be used in accordance with whether channel switch is carried out or not. The present invention can fully enhance the channel utilization and communication success rate, improve the reliability and real-time of data communication, reduce additional network load by means of reduced retransmission, and perfectly satisfy the requirement of industrial wireless application.
Abstract:
A media content distribution system for distributed multimedia streaming communicates over a network and incorporates multiple independent media stations, each having a media director for control and a number of media engines for storage, retrieval and streaming of media content. A middleware system employing a execution engine for service platform middleware and a presentation engine for terminal middleware is provided for flexible interfacing with network transport and home network elements respectively and the IPTV applications supported.