Abstract:
An adsorption type heat exchanger includes a heat exchange part, in which a thermal medium circulates, and adsorbents made of particles. The adsorbents are fixed on an outer surface of the heat exchange part, to adsorb refrigerant vapor when a temperature of the thermal medium is low, and to desorb the adsorbed refrigerant vapor when the temperature of the thermal medium is high. In addition, percents of the adsorbents having particle sizes about in a range from 0 to 42 μm are about 90% and over of the whole adsorbents.
Abstract:
A waste heat collecting apparatus has a loop-type heat pipe, which has a vaporizing portion arranged in an area for exhaust gas passage and a condensing portion provided in a water tank, through which coolant foran engine flows. Working fluid is circulated from the vaporizing portion to the condensing portion and back to the vaporizing portion. A valve device is provided at a downstream side of the condensing portion, wherein the valve device is operated to open or close a fluid passage for the working fluid depending on an inner pressure of the heat pipe.
Abstract:
An ejector having a nozzle portion having openings provided at a distal end and a proximal end thereof, respectively, for injecting drive-stream gas, a diffuser portion provided on a distal end side of the nozzle portion for drawing in auxiliary gas by negative pressure which is generated in the drive-stream gas by injection from the nozzle portion so as to join the auxiliary-stream gas together with the drive-stream and discharge the drive-stream gas and the auxiliary gas, a needle slidably inserted into an interior of the nozzle portion in an axial direction of the nozzle portion for adjusting an opening area of the nozzle portion in accordance with an inserted position thereof, a drive unit for moving the needle axially and an auxiliary stream introducing portion comprising at least two openings for introducing the auxiliary-stream gas into the diffuser portion therefrom.
Abstract:
The present invention aims to manufacture a large size semiconductor device with the inter-substrate transcription technology of thin film circuits. Enlargement is enabled by disposing a plurality of second substrates (21) in a tile shape. As the second substrate (21), a print substrate or flexible print circuit having double-sided wiring or multilayer wiring is employed. The plurality of second substrates (21) is driven independently, and the plurality of second substrates (21) is made to mutually overlap, and a drive circuit (23) is disposed at such overlapping portion. Moreover, the plurality of second substrates (21) is made to mutually overlap, and the mutual circuits are connected at such overlapping portion.
Abstract:
In contrast to conventional semiconductor components formed on a silicon substrate, the present invention aims at providing a transistor component functioning as a semiconductor component by being placed on an insulating substrate made of plastic and the like. The transistor component according to the present invention comprises a silicon grain 100A with a drain area 402 and a source area 401 formed via a channel area 403, an oxidation film 101 covering the surface of the silicon grain 100A, a gate electrode 300A connecting with the channel area 403 via the oxidation film 101, and a drain electrode 200A electrically connecting with the drain area 402, and a source electrode 400A electrically connecting with the source area 401.
Abstract:
An organic EL display unit is manufactured in an efficient manner. A light emission device (1000) is manufactured by bonding together a driving circuit substrate (100) formed with driving circuit constituted by thin film transistors 11, and a light emission substrate (300) comprising a successively laminated transparent electrode layer 31, bank layer 32 made from insulating material, positive hole injection layer 33, organic EL layer 34 and cathode layer 36.
Abstract:
In a TFT including on the surface side of a substrate a channel region opposed to a gate electrode, with a gate insulating film provided therebetween, and a source-drain region connected to the channel region, and a TFT including a source-drain wiring layer electrically connected to the source-drain region, and a gate wiring layer electrically connected to the gate electrode, at least one component part composed of a conductive film or a semiconductor film, among the component parts of each TFT, is provided with a heat-radiating extension extended from the component part itself for enhancing the heat-radiating efficiency from the component part.
Abstract:
A luminance signal Ya and a color-difference signal Ua/Va constituting an input image signal is transferred to a frame memory (first memory) in the unit of line synchronously with its horizontal synchronous signal and written therein. A memory TG211 reads out a read-out request RRQ. The cycle of this request RRQ is a time computed based on a single vertical effective period of an output image signal Sc and the number of lines objective for rate conversion of an input image signal Sa. The luminance signal Ya and color-difference signal Ua/Va are transferred in the unit of line from the frame memory to rate conversion units (second memory) through buffers. There occurs no deflection in this transfer cycle and in each transfer cycle, the stable data transmission band can be secured.
Abstract:
A separation layer is provided on a substrate, and a thin film device, such as TFT, is formed thereon. Separation accelerating ions such as hydrogen ions are implanted into the separation layer in the course of the process for forming the thin film device. After the formation of the thin device, the thin film device is preferably joined to a transfer material through an adhesive layer, and irradiated with laser light from the substrate side. This causes separation in the separation layer by also using the action of the separation acceleration ions. The thin film device is separated from the substrate. This permits transfer of a desire thin film device to any substrate.
Abstract:
This invention relates to a multi-component absorbance monitor, and the object is to provide a general-purpose and highly accurate compact absorbance monitor. Disclosed is an absorbance monitor including a light source, a sample cell and a plurality of detectors as elements, wherein a light collecting member is arranged between the light source and one detector, and an inside wall of the light collecting member has a site for guiding a part of light from the light source, that is, a light guiding opening, and light from the light guiding opening enters another detector. Preferably, the light collecting member lies between the light source and the sample cell. Preferably, an optical element used for another detector described above is arranged in the light guiding opening and adjacently to a light path formed by the light collecting member.