Abstract:
An information processing apparatus including: a processor to receive data transmitted via an electronic mail; to detect time-limit information representing a reply time-limit of the electronic mail from the received data; to display the electronic mail; and to display the reply time-limit in the way of being associated with the displayed electronic mail on the basis of the time-limit information and the present date-time.
Abstract:
It is judged whether the abnormal current is due to the electric leakage or not by a detection step detecting the abnormal current by the leakage current detection board and comparing a threshold value of predetermined items stored in a storing unit and actual values corresponding to the items at the time of when a compressor is stopped by detecting the abnormal current in the detection step. Specifically, the abnormal current is recognized as the electric leakage to be displayed on a display unit when at least one of the operating time at the time of detecting the abnormal current, the inner pressure of a motor, and a discharge pipe temperature is lower than the corresponding threshold value.
Abstract:
A subject image is formed on a CCD through an imaging optical system including a focusing lens. The output from the CCD is input, through an A/D converter and the like, to an AE processor circuit for performing an auto-exposure control processing and an AF processor circuit for obtaining an evaluation value for auto-focusing through a gate circuit. When a release operation is performed, a CPU drives the focusing lens and operates the AF processor circuit and the like at a high speed frame rate if the CPU determines, on the basis of brightness evaluation values from the AE processor circuit, that the brightness of the subject is equal to or higher than predetermined brightness, and drives the focusing lens and operates the AF processor circuit and the like with high precision at an ordinary frame rate if the CPU determines that the brightness of the subject is lower than the predetermined brightness, thereby performing auto-focusing.
Abstract:
In an electronic still camera where the signal charges accumulated corresponding to the image of a subject formed by an imaging optical system 1 are read from a CCD and displayed on an LCD via an imaging circuit, an A/D converter, a buffer memory, and a D/A converter, or recorded on a recording memory via a compression/expansion circuit, the photoelectric conversion elements of the CCD are divided into groups composed of combinations of lines spaced at specific intervals, charge accumulation start timing is controlled in such a manner that the elements belonging to the same group start to accumulate charges with the same timing and the elements belonging to another group start to accumulate charges with different timing, an AF processing section finds an in-focus position from the image signal read from each of the photoelectric conversion element groups in the CCD 5, and on the basis of the in-focus position, a focus lens group is driven.
Abstract translation:在电子静态照相机中,对应于由成像光学系统1形成的被摄体的图像累积的信号电荷从CCD读取并经由成像电路,A / D转换器,缓冲存储器和 D / A转换器,或通过压缩/扩展电路记录在记录存储器上,CCD的光电转换元件被分成由以特定间隔间隔的线的组合组成的组,电荷积累开始定时以这种方式被控制 属于同一组的元件开始以相同的定时累积电荷,并且属于另一组的元件开始以不同的定时累积电荷,AF处理部从从每个的每个读取的图像信号中找到对焦位置 CCD 5中的光电转换元件组,并且基于对焦位置,驱动聚焦透镜组。
Abstract:
In an electronic camera according to the present invention, an electric charge is stored in a CCD as a light receiving signal having at least color information with respect to received light beams. Standard color information is acquired by an imaging circuit and a main CPU from the light receiving signal obtained by driving the CCD in such a manner that a stored electric charge quantity to be stored in the CCD becomes a predetermined quantity. On the other hand, reference color information is acquired from light receiving information obtained by driving the CCD. An application range of an amplification ratio of the light receiving signal determined based on the reference color information with respect to the standard color information is stored in a detachable memory.
Abstract:
An autofocusing system is comprised of an image pickup device which performs a photoelectric conversion of an image of a subject, formed through an imaging optical system, to produce an electric image signal. An image pickup unit, including the imaging optical system, produces the subject image. A driving device drives the image pickup unit through one of a first range and a second range the second range being smaller than the first range. A high-frequency component detecting device detects a high-frequency component in an image signal obtained while at least a portion of the image pickup device is shifted by a predetermined quantity through the use of the driving device. A focusing drive device adjusts a focal condition of an image by an image signal on the basis of an output of the high-frequency component detecting device. An infrared light detecting device includes a light-emitting device for radiating infrared light toward the subject and a light-receiving device for receiving reflected light produced by a reflection of the infrared light from the subject. The infrared light detecting device includes an output signal corresponding to a subject distance on the basis of an output of the light-receiving device. A calculating device calculates a subject distance on the basis of an output of the infrared light detecting device. A control unit drives the image pickup unit in the first range when the subject distance calculated by said calculating device is shorter than a predetermined distance and drives the image pickup unit in the second range when the subject distance is longer than the predetermined distance.
Abstract:
In an electronic imaging system, the focal point control is performed on the basis of the output of the high frequency component detecting means 14 when the brightness of the scene is higher than a predetermined brightness, and the focal point control is performed on the basis of the output of the light detecting means 30 when the brightness of the scene is lower than the predetermined brightness. The output of the light detecting means 30 is obtained by controlling a power supply to cut off current or supply a relatively low current flowing in the imaging means 5 and then driving the light detecting means 30 for emission of light toward the scene and reception of light reflected light from the scene.
Abstract:
An electronic camera is disclosed, which comprises a CCD image pick-up device 3, a CCD driver 19 for setting the photoelectric charge accumulation time of the CCD image pick-up device, an image pick-up circuit 4 including gain control means, for processing a signal from the CCD image pick-up device to obtain an image signal, and CPU 17 for sequentially executing an AE, an AF and an AWB process according to an AE, an AF and an AWB evaluation values obtained by using the image signal. The gain of the image signal is updated by adding ⅓ of the change in a gain setting value obtained in the AE process executed by the CPU for each frame. The image brightness is thus varied smoothly to provide movie images not giving any sense of uncomfortability.
Abstract:
In a method for preparing multiple glucosyl branched-cyclodextrins, a debranching enzyme is contacted to a mixture of maltose or a substance containing maltooligosaccharide such as maltose with a cyclodextrin to obtain a reaction product from which a branched-cyclodextrin is then separated; said branched-cyclodextrin is converted to glycosyl-cyclodextrin under the action of glucoamylase, which is thereafter mixed with maltose or a substance containing maltooligosaccharide such as maltose; and the resulting mixture is successively acted on by a debranching enzyme and glucoamylase.
Abstract:
A machine tool comprises an upstanding column, a tool-driving unit vertically movable on the column, and a pair of guide rails on a front surface of the column to extend vertically thereon and horizontally spaced apart from each other for guiding the upward and downward movement of the tool-driving unit. The tool-driving unit includes a lift frame on the guide rails and a tilting-type turret head which is supported on a front surface of the lift frame and is rotatable about an axis inclined relative to the longitudinal direction of the frame in a horizontal plane. One of the pair of guide rails is relatively disposed forwardly of the other guide rail, so that the individual guide rails both assume positions close to the turret head thereby to minimize the amount of overhang of the tool-driving unit.