Abstract:
PURPOSE: To suppress a write stroke proper to a plasma address display panel. CONSTITUTION: This display device is equipped with the plasma address display panel 1, a plasma driving circuit 2 and a display driving circuit 3. The plasma address display panel 1 is formed in such structure that a display cell equipped with a columnar signal electrode is superimposed on a plasma cell equipped with a row shape discharge channel via a common dielectric sheet. The plasma driving circuit 2 addresses the display cell in line sequence via the dielectric sheet by driving the discharge channel sequentially. The display driving circuit 3 supplies an image signal to the signal electrode in synchronism with a line sequential address, and writes the image signal on each pixel regulated on a cross part with the discharge channel. The display device 5 is also equipped with a correction circuit 4, and negates a crosstalk between the pixels due to the thickness of the dielectric sheet by supplying the image signal to the display driving circuit 3 after applying correction arithmetic processing. It is desirable that a correction arithmetic operation is adjusted adaptively corresponding to the luminance or saturation of a displayed image by the correction circuit 4, and the amplitude of the image signal can be kept constant.
Abstract:
PURPOSE:To enable driving a plasma address piecture display device by interlaced scanning in line sequentiality. CONSTITUTION:When a plasma address picture display device in which a picture signal is applied to an electro-optial material layer positioned at the crossing section of signal electrodes D1, D2, D3...Dm and a discharge plasma region with the scanning unit of the discharge plasma region consisting of pairs of cathodes K1, K2, K3...Kn and corresponding anodes A1, A2, A3...An is driven by interlaced scanning, the discharging plasma region is successively scanned with a period of 1/2 period H of a horizontal synchronizing signal HD while being synchronized with a vertical synchronizing signal and a piecture signal D is switched with the period H of the horizontal synchronizing signal H while being synchronized with a pulse of the horizontal synchronizing signal HD.
Abstract:
PURPOSE:To make plasma discharge uniform to the overall length of row scanning units. CONSTITUTION:This device is equipped with a glass substrate 4 which has signal electrodes D, a glass substrate 7 which has plasma electrodes 8, a liquid crystal layer 6 interposed between both the substrates, and a plasma chamber 11 which is formed between the liquid crystal layer 6 and glass substrate 7 and wherein ionizable gas can be charged. At least cathodes K of the plasma electrodes 8 are functionally differentiated and consist of discharge part (s) which participates in actual discharge, voltage supply part (v), and resistance parts (r) connecting the both. The voltage supply part (v) and resistance part (r) are covered with a partition wall. The gas is selectively ionized by discharge between the anode A and cathode K which adjoin to each other and the discharge area where the ionized gas is localized is regarded as a scanning unit to drive the liquid crystal layer 6 positioned at the intersection of the signal electrode D and discharge area. The plasma discharge is made uniform by the self-biasing function of the resistance part (r) to the overall length of the scanning unit.
Abstract:
PURPOSE:To converge an electron beam onto a point on a screen surface equalizing the magnification of a horizontal image and a vertical image. CONSTITUTION:In a cathode-ray tube in which a dynamic focus correcting means 5 and dynamic quadrupole correcting means 6 and 7 are provided together with a deflecting yoke 3, the dynamic quadrupole correcting means 6 and 7 are divided and provided in plural positions, and are controlled such that a virtual dynamic quadrupole correcting means 8, which is contained by correcting and synthesizing them, is located at the position of the deflecting yoke 3.
Abstract:
PURPOSE:To enable the formation of plural species of stripes in desired widths by one shot of exposure by performing the exposure on specific conditions when plural species of stripe widths are simultaneously formed on a sensitive film on a panel. CONSTITUTION:A mask 3 with slits 3S is disposed on an inner surface side of a panel 1p coated with a sensitive film 2, and exposure is performed to the sensitive film 2 on the inner surface of the panel 1p. Thereupon, assuming that a distance between the panel and the mask is b and a wavelength of a light source is lambda and a slit width of a mask is A in order to simultaneously form plural species of stripe widths on the sensitive film 2 on the panel 1p, a value F expressed in a formula I is selected to perform the exposure. Even if there is a finite distance between the panel 1P and the slit 3S, plural species of stripes in desired widths can be formed simultaneously on the panel 1p by one shot of exposure.
Abstract:
PURPOSE:To simply and quickly discriminate the shape of a beam spot of an image pickup tube by visual observation by picking up concentric or spiral contrast stripes whose spatial frequency is more lowered more apart from the center. CONSTITUTION:An object 1 is formed by stripes of concentric or spiral contrast stripes whose spatial frequency is more lowered more apart from the center. The object 1 is picked up by an image pickup tube 11 measuring the shape of beam spot. The video signal obtained from the image pickup tube 11 is fed to a nonlinar circuit 16 converting the amplitude change into the mean value change. Then the signal obtained by the nonlinear circuit 16 is fed to a monitor receiver 20. Since the image of the shape corresponding to the shape of the beam spot of the image pickup tube 11 is displayed on the receiver 20, the shape of the beam spot of the image pickup tube is discriminated simply and quickly from the image by visual observation.
Abstract:
PURPOSE:To prevent deterioration in characteristics due to charge-up, through getting off a focus gap, by making the total area of the arrow patterned gapped part which forms a deflection electrode, to be less than the preset percentage of the entire area of the deflection electrode. CONSTITUTION:An image pickup tube of electrostatic focusing.electrostatic deflecting type is formed as it meets a relational expression of 2phi
Abstract:
PURPOSE:To eliminate characteristic deterioration due to a deflection electric field, by forming an extension part from a complicated deflecting electrode in making an equal areal extension part from two opposed electrode parts adjoin to the former. CONSTITUTION:An extension part g4 from an electrode G4 is made up of each of extension parts g4V+ and g4V- from two electrode parts V+ and V- of the electrode G4, and these extension parts g4V+ and g4V- are formed as being adjoined with each other. And, in this case, each area of these extension parts g4V+ and g4V- is made equal. And, a set of these extension parts g4V+ and g4V- is formed into two sets, and they are made so as meader at an angle range of 180 deg. and to extend in a tube axial direction, while an extension part g6 of an electrode G6' is made so as to be insert between them. Doing like this, a deflecting component in the extension part is offset so that characteristic deterioration due to a deflecting electric field is eliminable.
Abstract:
PROBLEM TO BE SOLVED: To provide a separator capable of maintaining its slender holes even when expansion of an electrode takes place accompanying charge and discharge, to provide a battery equipped with the same, and to achieve both high safety and battery characteristics. SOLUTION: The separator is used which includes: a first layer having a first main face and a second main face and made of a fine porous film containing polymer resin; and a second layer formed at least on either the first main face or the second main face, containing inorganic particles and a polymer resin with electric insulation, and having the average particle size D20 of the inorganic particles larger than the average pore size of pores opening on the surface of the first layer. The average pore size of the pores opening on the surface of the first layer is preferably 0.03 μm or more and 2.00 μm or less. Furthermore, the average film thickness of the first layer is preferably 10.0 μm or more and less than 30.0 μm, and the average particle size D90 of the inorganic particles is preferably 1/3 or less of a film thickness of the first layer. A volume fraction of the particles in the second layer is preferably 60 vol% or more and 95 vol% or less, and an area density per unit area of the second layer is preferably 0.2 mg/cm 2 or more and 1.8 mg/cm 2 or less. COPYRIGHT: (C)2011,JPO&INPIT
Abstract translation:要解决的问题:即使当电极的膨胀伴随充放电而发生时,也能够提供能够保持其细长孔的隔膜,以提供配备有该电极的电池,并且实现高安全性和电池特性。 解决方案:使用分离器,其包括:第一层,具有第一主面和第二主面,并由含有聚合物树脂的细多孔膜制成; 以及至少形成在所述第一主面或所述第二主面上的第二层,所述第二主面包含无机颗粒和具有电绝缘性的聚合物树脂,并且所述无机颗粒的平均粒径D20大于孔的平均孔径 在第一层的表面上。 在第一层的表面上开口的孔的平均孔径优选为0.03μm以上且2.00μm以下。 此外,第一层的平均膜厚优选为10.0μm以上且小于30.0μm,无机粒子的平均粒径D90优选为第一层的膜厚的1/3以下。 第二层中的颗粒的体积分数优选为60体积%以上至95体积%以下,第二层的单位面积面积密度优选为0.2mg / cm 2以上 更多和1.8mg / cm 2 / SP以下。 版权所有(C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a surface light source device in which wrinkles do not occur in an optical functional sheet even when the optical functional sheet expands by a thermal expansion and the optical functional sheet does not contact a liquid crystal display device and, furthermore, a gap existing between the optical functional sheet and the liquid crystal display device can be made as narrow as possible. SOLUTION: The surface light source device 20 which illuminates a liquid crystal display device of a transmission type arranged in the front is provided with a case 30, a light source, a light diffusion plate, and an optical functional sheet 51 which is arranged in front of the light diffusion plate and installed at the upper part 32 of the front section in a state hung down from the upper part 32 of the front section of the case 30, and transmits the light emitted from the light diffusion plate, and is further provided with linear members 40 which are arranged in front of the optical functional sheet 51 and of which end parts are installed at both side parts 34, 35 of the front section of the case 30. COPYRIGHT: (C)2009,JPO&INPIT