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197results about How to "High transfer efficiency" patented technology

Inductive power supply with duty cycle control

An inductive power supply that maintains resonance and adjusts duty cycle based on feedback from a secondary circuit. A controller, driver circuit and switching circuit cooperate to generate an AC signal at a selected operating frequency and duty cycle. The AC signal is applied to the tank circuit to create an inductive field for powering the secondary. The secondary communicates feedback about the received power back to the primary controller. The power transfer efficiency may be optimized by maintaining the operating frequency substantially at resonance, and the amount of power transferred may be controlled by adjusting the duty cycle.
Owner:PHILIPS IP VENTURES BV

Black toner containing compound having azo skeleton

Provided is a black toner which has improved dispersibility of carbon black in a binding resin and has a high coloring power. Also provided is a black toner which suppresses fogging and has high transfer efficiency. The toner includes a toner particle containing a binding resin, a compound in which a polymer moiety is bound to an azo skeleton, and carbon black as a coloring agent.
Owner:CANON KK

Photoelectric cell and process for producing metal oxide semiconductor film for use in photoelectric cell

InactiveUS20030150485A1High photoelectric transfer efficiencyExcellent in photoelectric transfer efficiencyPigmenting treatmentMaterial nanotechnologyTitanium oxideElectron
The first photoelectric cell of the present invention comprises: an insulating base having on its surface an electrode layer (1), the electrode layer (1) having on its surface a metal oxide semiconductor film (2) on which a photosensitizer is adsorbed; an insulating base having on its surface an electrode layer (3), the electrode layer (1) and the electrode layer (3) arranged opposite to each other; and an electrolyte sealed between the metal oxide semiconductor film (2) and the electrode layer (3), wherein at least one of the electrode-having insulating bases is transparent; and the metal oxide semiconductor film (2) comprises anatase titanium oxide particles. This first photoelectric cell includes a semiconductor film comprising anatase titanium oxide particles, having a high proportion of photosensitizer adsorbed, so that the electron mobility in the semiconductor film is high to thereby realize excellent photoelectric transfer efficiency. The second photoelectric cell of the present invention comprises: an insulating base having on its surface an electrode layer (1), the electrode layer (1) having on its surface a metal oxide semiconductor layer (2) on which a photosensitizer is adsorbed; an insulating base having on its surface an electrode layer (3), the electrode layer (1) and the electrode layer (3) arranged opposite to each other; and an electrolyte sealed between the metal oxide semiconductor layer (2) and the electrode layer (3), wherein conductive protrusions (4) jutting from the surface of the electrode layer (1) exist, the metal oxide semiconductor layer (2) formed so as to cover the conductive protrusions (4) and the electrode layer (1), and at least one of the electrode-layer-having insulating bases is transparent. In this second photoelectric cell, conductive protrusions are provided on the electrode surface, so that generated electrons not only can rapidly move toward the electrode but also are free from recombining with the photosensitizer. Moreover, in this photoelectric cell, not only is the adsorption proportion of photosensitizer high but also the moving of generated electrons is smooth. Therefore, the second photoelectric cell exhibits excellent photoelectric transfer efficiency.
Owner:CATALYSTS & CHEM

Welded polyimide intermediate transfer belt and process for making the belt

A welded intermediate transfer belt and process for making the same having a substrate made primarily of at least one polyimide polymer. The weld may be ultrasonically or otherwise welded and may have favorable properties such as relatively thin seam thickness and small weld steps. The weld may be overlapped or miter cut.
Owner:XEROX CORP

Toner, production method thereof, developer and image forming method

ActiveUS20120122027A1High transfer efficiencyExcellent low temperature fixing abilityElectrographic process apparatusDevelopersWaxChemistry
To provide a toner, containing: a binder resin; a crystalline polyester resin; a colorant; and wax, wherein the toner has a fluidized powder characteristic value of 35% to 45%, and a BET specific surface area of 2.8 m2 / g to 4 m2 / g, and wherein the toner has an intensity ratio P2850 / P828 of 0.10 to 0.20, where P2850 is an intensity of a peak at 2850 cm−1 which is attributed from the wax and the crystalline polyester resin, and P828 is an intensity of a peak at 828 cm−1 which is attributed from the binder resin, as measured by total reflectance infrared spectroscopy.
Owner:RICOH KK

Photoelectric transfer material, manufacturing method thereof, photoelectric transfer element and manufacturing method thereof

ActiveUS20050211293A1Excellent transferabilityEfficiently collectOrganic chemistryFinal product manufactureEngineeringPorphyrin structure
A photoelectric transfer material, manufacturing method thereof, photoelectric transfer element and manufacturing method thereof are provided. In an organic photoelectric transfer element of an organic solar cell or other like device, the photoelectric transfer material is composed of a conductive polymer such as MEH-PPV, electronic acceptor such as a fullerene derivative and antenna porphyrin aggregate. The photoelectric transfer material can be made by coating a mixed solution of the conductive polymer, electron acceptor and antenna porphyrin aggregate by spin coating, for example. This photoelectric transfer material and a photoelectric transfer element using the material exhibit high photoelectric transfer efficiency because of small electric resistance and high sunlight usage efficiency, and simultaneously exhibit stability.
Owner:MURATA MFG CO LTD
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