摘要:
A photoelectric conversion element, a photoelectric conversion device and a method for manufacturing a photoelectric conversion element are disclosed. The photoelectric conversion element includes a lower electrode layer, a light absorption layer on the lower electrode layer and a semiconductor layer on the light absorption layer. The light absorption layer includes a group I-III-VI compound containing a group I-B element, a group III-B element, and Se. The semiconductor layer includes a group III-VI compound containing a group III-B element, S, and Se. The composition in atomic percent of Se of the group III-VI compound of the semiconductor layer at a side of the light absorption layer is higher than that at a side opposite to the light absorption layer. The photoelectric conversion device includes the aforementioned photoelectric conversion element.
摘要:
[Problem] In the case of further stacking a window layer or the like on a buffer layer, the buffer layer and the light absorption layer are likely to be damaged during the formation of the window layer due to inferior moisture resistance and plasma resistance, and photoelectric conversion elements sometimes fail to achieve any satisfactory conversion efficiency in terms of reliability.[Solving Means] Provided is a photoelectric conversion element including: a light absorption layer containing a I-B group element, a III-B group element, and a VI-B group element, which is provided on a lower electrode layer; a first semiconductor layer containing a III-B group element and a VI-B group element, which is provided on the light absorption layer; and a second semiconductor layer containing an oxide of a II-B group element, which is provided on the first semiconductor layer, wherein the light absorption layer comprises a doped layer region containing the II-B group element, on the first semiconductor layer side.
摘要:
An organic EL display of the present invention includes a plurality of organic EL devices, each including a first electrode, an intermediate insulating film disposed on the first electrode so as to have an exposed portion in which the first electrode is partially exposed, an organic layer disposed on the exposed portion, and a second electrode disposed on the organic layer. The organic layer has, on a part disposed on the exposed portion, a thick film portion disposed around the center of the exposed portion and a thin film portion disposed around the end of the exposed portion and having a smaller thickness than the thick film portion, and the thin film portions of the adjacent organic EL devices are substantially equal in width.
摘要:
There is provided a light emitting device having a plurality of luminous elements emitting with different colors respectively being improved in a luminous intensity deviation and a color deviation without deterioration of a luminous efficiency. In the light emitting device having a plurality of luminous elements respectively emitting with different colors, both a traveling wave of light and a reflected wave of light enhance intensity of light.
摘要:
An organic EL drive circuit includes a reset voltage generator circuit for generating a predetermined constant voltage for constant voltage resetting, reset switches provided between an output of the reset voltage generator circuit and terminal pins of an organic EL display panel and ON/OFF controlled by one of the timing control signal, a reset control signal similar to the timing control signal, a reset pulse, other pulse generated in the reset period in synchronism with these signal, and the pulse and an output terminal for outputting the predetermined constant voltage to other organic EL drive circuits, which have identical circuit constructions to that of the organic EL drive circuit and arranged adjacently to the organic EL drive circuit, as a voltage for constant voltage resetting.
摘要翻译:有机EL驱动电路包括用于产生用于恒定电压复位的预定恒定电压的复位电压发生器电路,设置在复位电压发生器电路的输出和有机EL显示面板的端子引脚之间的复位开关和由一个控制的ON / OFF 定时控制信号的复位控制信号,与定时控制信号类似的复位控制信号,复位脉冲,与这些信号同步的复位期间产生的其他脉冲,以及用于将预定恒定电压输出到其他有机物的输出端子 EL驱动电路具有与有机EL驱动电路相同的电路结构,并且与有机EL驱动电路相邻配置,作为恒压复位的电压。
摘要:
A cooling system includes a first cooling system in which coolant is supplied from a radiator to a motor so as to cool the motor, and then the coolant is supplied to banks of an engine through a circulation passage and split flow passages so as to cool the engine; and a second cooling system in which the coolant delivered from the radiator through a branch passage is further cooled by a radiator, and the cooled coolant is supplied to a drive circuit so as to cool the drive circuit. With this configuration, it is possible to efficiently cool the motor, the engine, and the drive circuit whose suitable operating temperatures are different from each other, and to make the configuration of the cooling system simple.
摘要:
[Problem]To provide an organic EL drive circuit including D/A converter circuits capable of reducing the number of elements, which are proof against relatively high voltage, restricting an increase of circuit size and restricting variation of luminance of a display screen and an organic EL display device using the organic EL drive circuit. [Means for Solving the Problem]An organic EL drive circuit for generating, in response to a predetermined current inputted to an input terminal of a D/A converter circuit constructed with a current mirror circuit, drive currents to be outputted to terminal pins of the organic EL display panel or a current, on which the drive currents are generated, by converting digital display data into analog signal by the D/A converter circuit, comprises a first transistor provided between an input side transistor of the current mirror circuit and the input terminal, a second transistor provided between an output side transistor of the current mirror circuit and an output terminal and a third transistor provided between the output terminal and a power source line, wherein proof voltages of the input side transistor, the output side transistor and the third transistor are lower than proof voltage of the first and second transistors.
摘要:
An organic EL element drive circuit comprises a plurality of peak current generator circuits provided correspondingly to terminal pins of an organic EL display panel, for adding peak currents corresponding to pulse widths of predetermined pulse signals and a pulse generator circuit for generating the predetermined pulse signal including a first, second and third pulses having pulse widths thereof determined according to data, which are set externally of the pulse generator circuit. The pulse generator circuit sends the first pulse to the terminal pins of the peak current generator circuits provided for R display color as the predetermined pulse, the second pulse to the peak current generator circuits provided for G display color as the predetermined pulse and the third pulse to the peak current generator circuits provided for B display color as the predetermined pulse.
摘要:
There is provided a resistor unit 115 for bypassing an output cell 107 of an interrupt request signal and an input cell 108 of an external interrupt factor, and the output cell 107 of the interrupt request signal is controlled to a high impedance when an internal power source is broken. Thus, an interrupt request signal sent from the external interrupt factor is given to a CPU when the internal power source is broken.
摘要:
Provided herein are a drive apparatus that includes an internal combustion engine capable of operating with a high expansion ratio by reducing an effective compression ratio through advancement of an intake valve closing timing, and a control method of the drive apparatus, and a motor vehicle equipped with the apparatus and method. The drive apparatus further includes a torque output device capable of outputting a torque to an output shaft of the internal combustion engine. Upon a command to stop operation of the internal combustion engine, the apparatus controls the driving of the torque output device so that the internal combustion engine stops at a target stop position which is set outside a region that leads to an increased compression ration in an initial compression stroke when the internal combustion engine is next stated.