摘要:
A fluid discharge device, a printing device, and a control method for a fluid discharge device enable accurately detecting an empty fluid state and suppressing fluid waste. An inkjet printer 1 has an ink cartridge in which ink is stored, a subtank that draws ink from the ink cartridge, an inkjet head to which ink is supplied from the subtank, a movable carriage on which the inkjet head and subtank are mounted, an ink pump unit that draws the ink supplied to the inkjet head from the ink cartridge by movement of the carriage, and a control unit that determines if ink is in the ink cartridge based on the load required to move the carriage.
摘要:
A fluid discharge device, a printing device, and a control method for a fluid discharge device enable accurately detecting an empty fluid state and suppressing fluid waste. An inkjet printer 1 has an ink cartridge in which ink is stored, a subtank that draws ink from the ink cartridge, an inkjet head to which ink is supplied from the subtank, a movable carriage on which the inkjet head and subtank are mounted, an ink pump unit that draws the ink supplied to the inkjet head from the ink cartridge by movement of the carriage, and a control unit that determines if ink is in the ink cartridge based on the load required to move the carriage.
摘要:
A fluid storage container enables the easy removal of recovered fluid and reuse of the container without incurring the added costs of disassembly and replacing an absorbent material. In one exemplary embodiment, an ink cartridge 17 can have an ink storage unit 45 that stores waste ink, an ink inlet/outlet 55 disposed in a frame part 52 that can be the outside wall of the ink storage unit 45, an ink path 53 of which one end 53a communicates with the ink inlet/outlet 55 and the other end 53b is disposed opening into the ink storage unit, wall parts 54 that divide the ink storage unit 45 into an upper air chamber 61 and a lower fluid chamber 62 that communicate with each other through a communication path 58, and an outside air channel 87, of which one end 87a communicates with the air chamber 61 and the other end 87b enables communication with the outside at a position further from the air chamber 61 than the fluid chamber 62. Other embodiments of fluid storage containers are also disclosed.
摘要:
In one exemplary embodiment of a fluid storage container or cartridge that can be reused, the ink cartridge can have an ink storage unit that stores waste ink, an ink inlet/outlet disposed in a frame part that can be the outside wall of the ink storage unit, an ink path of which one end communicates with the ink inlet/outlet and the other end is disposed opening into the ink storage unit, wall parts that divide the ink storage unit into an upper air chamber and a lower fluid chamber that communicate with each other through a communication path, and an outside air channel, of which one end communicates with the air chamber and the other end enables communication with the outside at a position further from the air chamber than the fluid chamber. Other embodiments of fluid storage containers and methods of removing fluid therefrom are also disclosed.
摘要:
A fluid storage container enables the easy removal of recovered fluid and reuse of the container without incurring the added costs of disassembly and replacing an absorbent material. In one exemplary embodiment, an ink cartridge 17 can have an ink storage unit 45 that stores waste ink, an ink inlet/outlet 55 disposed in a frame part 52 that can be the outside wall of the ink storage unit 45, an ink path 53 of which one end 53a communicates with the ink inlet/outlet 55 and the other end 53b is disposed opening into the ink storage unit, wall parts 54 that divide the ink storage unit 45 into an upper air chamber 61 and a lower fluid chamber 62 that communicate with each other through a communication path 58, and an outside air channel 87, of which one end 87a communicates with the air chamber 61 and the other end 87b enables communication with the outside at a position further from the air chamber 61 than the fluid chamber 62. Other embodiments of fluid storage containers are also disclosed.
摘要:
Disclosed is a non-aqueous electrolyte secondary battery using a polyanion compound or a lithium nickelate as a positive electrode active material, suppressing the elution of a transition metal from the polyanion compound or ameliorating the deterioration of a binder by a residual alkali component, and provides a non-aqueous electrolyte secondary battery having a negative electrode intercalating and deintercalating lithium ions, a positive electrode containing a lithium-containing compound as a positive electrode active material, and a non-aqueous electrolyte with a lithium salt dissolved in organic solvent. The lithium-containing compound is a polyanion compound or a lithium nickelate. The non-aqueous electrolyte contains a fluorosilane compound: R1 to R3: alkyl group having 1-8 carbon(s), an alkenyl group having 2-8 carbons, a cycloalkyl group having 5-8 carbons, an aryl group having 6-8 carbons or a fluorine atom. R4: alkylene group having 1-8 carbon(s) or an alkylene group having 4-8 carbons having an ether group.
摘要:
According to one embodiment, a method of manufacturing a camera module includes, disposing a first member on the image sensor, the first member includes a first non-conductor, a first metal film covering the first non-conductor, and a first insulation film covering the first metal film, disposing a second member on or above the first member, the second member includes a second non-conductor, a second metal film covering the second non-conductor, and a second insulation film covering the second metal film, and applying a predetermined voltage between the first member and the second member or between the image sensor and the second member, thereby breaking at least parts of the first insulation film and the second insulation film.
摘要:
A simulation device includes an input unit which receives an input of simulation data including material information of the irradiation target and irradiation information of a charged particle beam, and an arithmetic unit which calculates the dose distribution of the charged particle beam in the irradiation target on the basis of simulation data received by the input unit and the dose distribution kernel. The arithmetic unit segments the charged particle beam spread to a predetermined range at an intermediate portion in the traveling direction of the charged particle beam, hypothesizes a plurality of virtual shapes having conical spread with a segmented position as a start point, and calculates the dose distribution of the charged particle beam in the irradiation target on the basis of simulation data received by the input unit and a plurality of virtual shapes of the charged particle beam.