Abstract:
There is provided a nucleic acid analysis apparatus including a heating unit configured to apply heat by contacting a microchip, and a chip holding unit configured to change a position between a first holding position that holds the microchip in midair and a second holding position that holds the microchip in contact with the heating unit.
Abstract:
PROBLEM TO BE SOLVED: To provide a jet flow generator capable of generating composed jet flow by discharging gas as a pulsating flow and reducing its thickness without reducing an amount of discharge of gas and to provide an electronic apparatus loaded with it. SOLUTION: This jet flow generator 10 is provided with blades 3a and 3b moved by a motor 4 arranged at a substantially center inside a cylindrical case body 5. When the blades 3a and 3b swing by the motor 4, pressure in two chambers formed inside the case body 5 by a partition plate 6 is increased and reduced, and air is discharged as a pulsating flow through openings 11 to 14 in accordance with it. The blades 3a and 3b move in the horizontal direction being different from the direction of thickness (Z-direction) of the case body 5 in this way. Consequently, an amount of travel of a traveling plate is made large when compared with thickness of the case body 5, and amplitudes of the blades 3a and 3b are large when compared with amplitude of a conventional vibration plate. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a sample liquid injection tool for simply performing pretreatment of a sample liquid.SOLUTION: There is provided a sample liquid injection tool including a reservoir section configured to store a sample liquid, a channel having one end protruding from an outer surface and configured to discharge the sample liquid therein from a protrusion end to an outside, and a heating unit and a filter installed between the reservoir section and the channel to enable passage of the liquid. The sample liquid injection tool enables simple heat treatment and filtration of a sample liquid.
Abstract:
PROBLEM TO BE SOLVED: To switch a display apparatus from a two-dimensional display to a three-dimensional display, and also to switch the three-dimensional display from a naked eye system to an eyeglass system. SOLUTION: The two-dimensional display is provided by setting the lens effect of a variable lens array element 1 at an OFF-state while displaying an image for two-dimensional display on a two-dimensional display part (display panel 2). The three-dimensional display by the naked eye system is provided by setting the lens effect of the variable lens array element 1 at an ON-state while an image for left eye and an image for right eye for the three-dimensional display are displayed on the two-dimensional display part. The three-dimensional display by the eyeglass system is provided by setting the lens effect of the variable lens array element 1 at the OFF-state while an image for left eye and an image for right eye for the three-dimensional display are displayed on the two-dimensional display part, transforming and emitting the light of the image for left eye to a first light polarization state and the light of the image for right eye to a second light polarization state with a light polarization state transforming part 5, and observing the transformed image for left eye and the transformed image for right eye through polarization eye glasses. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PURPOSE:To provide an image storage device which speeds up image processing. CONSTITUTION:This device has a multiple-valued image storage part 30 which sections information one pixel into >=2 state values D and stores the state values D and a binary image storage part 20 which sections the information on one pixel into two state values D2 and stores the state values D2. Further, this device is equipped with a control part 50 which can write the pieces D2 and D of image information in both the multiple-valued image storage part 30 and binary image storage part 20 at the same time at the time of writing and read the pieces D2 and D of image information out of one of the multiple- valued image storage part 30 and binary image storage part 20 at the time of reading.
Abstract:
PROBLEM TO BE SOLVED: To achieve an excellent stereoscopic vision with less color unevenness and less luminance unevenness in both first and second arrangement states different by 90° in the arrangement direction. SOLUTION: In a display panel, a two-dimensional image is displayed by optionally changing two arrangement states different by 90° in the arrangement direction. When the display panel is in the first arrangement state, a plurality of first cylindrical lenses are arranged in parallel so as to be in an obliquely inclined state within a plane parallel with a display surface 2A. When the display panel is in the second arrangement state, a plurality of second cylindrical lenses 31X are arranged in parallel in a horizontal direction within the plane parallel with the display surface 2A. The combined positions of sub-pixels 41R, 41G, 41B used as unit pixels for a color display are changed between the first arrangement state and the second arrangement state. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a lens array device and an image display device, which allow a lens effect characteristic different from that of a single variable lens array to be easily obtained. SOLUTION: As a lens array device 1, a variable lens array 3 and a fixed lens array 4 which offsets the lens effect of the variable lens array 3 are provided. Thereby, the whole lens effect when combining the variable lens array 3 and the fixed lens array 4 together becomes in the off-state (the state of no refracting power) when the lens effect of the variable lens array 3 is in the on-state (the state where the prescribed refracting power occurs). Also, when the lens effect of the variable lens array 3 becomes in the off-state, the whole lens effect is in the on-state. That is, the electric ON/OFF characteristics of the lens effect of the whole lens array device 1 is in the reversed state of the characteristics of the variable lens array 3 alone. COPYRIGHT: (C)2010,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To correctly perform decoding such as Viterbi decoding without any adverse influence of disorder of reproduced data when data reproduced from a magnetic tape, etc., are processed. SOLUTION: This processor is equipped with a sampling means 4 which samples reproduced data, a quality decision means 10 which decides whether or not the eye pattern of the data sampled by a sampling means 4 is good, and a decoding means 5 which decodes the data sampled by the sampling means 4 by using the quality decision result obtained by the decision means 10.
Abstract:
PROBLEM TO BE SOLVED: To easily correct positional deviation between an optical system and an imaging unit without changing the driving timing of the imaging unit.SOLUTION: An image sensor performs imaging by acquiring light from a subject through the optical system. An extraction unit outputs, as image data of a captured image, image data in a predetermined range determined on the basis of the positional deviation between the optical system and the imaging unit, out of image data obtained as the imaging result by the image sensor. This technique can be applied to an imaging apparatus, for example.