Abstract:
According to one embodiment, a receiving device includes an amplifier for amplifying signals received from the outside, a decimation filter for decimating signals converted to digital signals, a channel selection filter for selecting a desired wave included in signals from the decimation filter, and a DAGC for amplifying the desired wave selected by the channel selection filter.
Abstract:
A pouched liquid food product from which a delicious dish can be cooked with a microwave oven without the color, smell, texture and the like of the food ingredients being harmed has a pouch having a zipper portion and a steam venting mechanism. The pouch is filled with a liquid food and sealed, and a liquid substance in the liquid food has a viscosity at 60° C. of 0.1 to 10 Pa·s. The relationship between the liquid food and a solid ingredient satisfies at least one of the following conditions (a) to (d): (a) the liquid food has a salt concentration which is 110 to 400% of the salt concentration of the whole contents after addition of the solid ingredient; (b) a liquid surface of the liquid substance in the pouch, when the pouched liquid food product is made to have a posture for cooking with a microwave oven after adding the solid ingredient into the pouch, is at a height of 1/10 to ½ the height from a lower edge of the contents to an upper edge of the contents; (c) a maximum filling volume of the pouch is 2 to 10 times the volume of the filled amount of the liquid food; and (d) an expected addition amount of the solid ingredient is 0.1 to 5 parts by mass based on 1 part by mass of the liquid substance included in the liquid food.
Abstract:
The present invention relates to [1] a method for keeping a quality of 2-methyl-3-(3,4-methylenedioxyphenyl)propanal useful as a perfume, which comprises incorporating from 50 to 3000 ppm of 1-acetyl-3,4-methylenedioxybenzene in the 2-methyl-3-(3,4-methylenedioxyphenyl)propanal; [2] a process for producing 2-methyl-3-(3,4-methylenedioxyphenyl)propanal having a content range from 50 to 3000 ppm of 1-acetyl-3,4-methylenedioxybenzene; and [3] 2-methyl-3-(3,4-methylenedioxyphenyl)propanal having a content range from 50 to 3000 ppm of 1-acetyl-3,4-methylenedioxybenzene.
Abstract:
A clutch mechanism for a hydrostatic continuously variable transmission has a hydraulic circuit including a high pressure oil path for feeding working oil from a hydraulic pump to a hydraulic motor and a low pressure oil path for feeding working oil from the hydraulic motor to the hydraulic pump. The clutch mechanism is located between the hydraulic pump and the hydraulic motor. A clutch valve is arranged on the transmission shaft and is slid by a centrifugal governor to cause the oil paths to be shortened. A cam plate member is arranged on the transmission shaft. A roller is engaged with the cam plate member and is moved outwardly in a diametrical direction by a centrifugal force. A roller bearing member receives a roller pressing force through outward motion of the roller. A pressure plate and shaft of the roller bearing member are separately formed and thereafter integrally formed.
Abstract:
A hydrostatic continuously variable transmission is configured by connecting a swash plate type plunger hydraulic pump P and a swash plate type plunger hydraulic motor via a hydraulic closed circuit. A continuous shift control is executed by variably controlling an inclined angle of the swash plate of the hydraulic motor. A valve spool movably arranged in a spool hole axially extends in a shaft that supports the hydraulic pump and the hydraulic motor and is configured by coupling a first spool member provided with a guide land fitted in a guide member and a second spool member provided with a central land and a left land and provided with a valve that connects and cuts off a clutch oil passage on the high pressure side and a clutch oil passage on the low pressure side according to axial movement by a coupling pin.
Abstract:
To provide a short connection hydraulic path structure with a sufficiently large diameter to adequately lower the pressure in a high-pressure hydraulic path while the clutch is off, in a static hydraulic continuously variable transmission for sliding a clutch valve installed within the transmission shaft, to change the power being transmitted and shorten the high-pressure hydraulic path and low-pressure hydraulic path. A high-pressure fluid path is provided for sending hydraulic fluid from the hydraulic pump side to the hydraulic motor side with a low-pressure fluid path for sending hydraulic fluid from the hydraulic motor side to the hydraulic pump side. A hydraulic circuit includes a switching valve for switching the plungers to the high-pressure path or the low-pressure path as a dual structure within a valve body between the hydraulic pump made from multiple plungers, and a hydraulic motor made from multiple motors.
Abstract:
A wiring pattern-forming apparatus, includes a transfer plate 15 for transferring a wiring material 11 arranged to form a wiring pattern onto a substrate 10, a wiring material feeder 2 for feeding the wiring material 11 onto the transfer plate 15, and an energy feeder 6, 7 to feed energy to the wiring material 11 fed to the transfer plate 15 by the wiring material feeder 6. By utilizing the energy fed from the energy feeder 6, 7, the viscosity of the wiring material 11 when the material 11 is fed from the material feeder 2 to the transfer plate 15 is made different from that of the wiring material 11 when the material 11 is transferred from the transfer plate 15 to the substrate 10.
Abstract:
The compounds represented by the formula (I) are produced by reacting benzene compound of the formula (IV) or (V) with alkenylidene diacetate of the formula (VI) in the presence of a catalyst comprising one or more members selected from (a) halogenated boron compounds, (b) triflate compounds of Group 11 elements, (c) halogenated compounds of Group 12 elements, and (d) triflate and halogenated compounds of tin and atomic numbers 58 and 66 to 71 elements. R1, R2=H or C1–C10 alkyl group A=Substituted phenyl group corresponding to a compound of formula (IV) or (V), R3, R4=H or C1–C4 alkyl group, m=0 or 1–4, n=1 to 5, k=1 or 2.
Abstract:
A clutch mechanism for a hydrostatic continuously variable transmission has a hydraulic circuit including a high pressure oil path for feeding working oil from a hydraulic pump to a hydraulic motor and a low pressure oil path for feeding working oil from the hydraulic motor to the hydraulic pump. The clutch mechanism is located between the hydraulic pump and the hydraulic motor. A clutch valve is arranged on the transmission shaft and is slid by a centrifugal governor to cause the oil paths to be shortened. A cam plate member is arranged on the transmission shaft. A roller is engaged with the cam plate member and is moved outwardly in a diametrical direction by a centrifugal force. A roller bearing member receives a roller pressing force through outward motion of the roller. A pressure plate and shaft of the roller bearing member are separately formed and thereafter integrally formed.
Abstract:
An electronic component mounting apparatus which employs a first air feed device connected to an air passage at one end part of a spline shaft, and a second air feed device connected to the air passage in the vicinity of the other end of the spline shaft. The first and second air feeds function to supply air to the air passage to return an interior thereof to atmospheric pressure. The time required to return the vacuum pressure in the air passage to atmospheric pressure can be shortened by the use of the two separate air feeds.