Abstract:
An FM signal demodulating circuit comprises a peak differential type amplifier having two input terminals, a resonance circuit network connected between the two input terminals of the peak differential type amplifier, and a capacitor between the resonance circuit network and the ground. The resonance circuit network comprises a plurality of parallel resonance circuits which are connected in series and have respectively different parallel resonance frequencies. The demodulating circuit has a demodulating characteristic curve for demodulating FM signals having different carrier frequencies.
Abstract:
It is an object of the present invention to provide a similar composition metal type welding solid wire capable of forming a welded joint having excellent cryogenic characteristics, such as ensuring a low-temperature toughness equivalent to that of the cryogenic base metal, and in addition, further having a high crack initiation resistance, and a weld metal thereof. The welding solid wire of the present invention is an iron base welding solid wire including carbon: 0.10 mass % or less (not inclusive of 0%), silicon: 0.15 mass % or less (not inclusive of 0%), nickel: 8.0 to 15.0 mass %, manganese: 0.10 to 0.80 mass %, and Al: 0.1 mass % or less (not inclusive of 0%), and oxygen in an amount of 150 ppm or less (inclusive of 0), characterized by including: a REM: 0.005 to 0.040 mass %, or chromium: 4.0 mass % or less (not inclusive of 0%).
Abstract:
It is an object of the present invention to provide a similar composition metal type welding solid wire capable of forming a welded joint having excellent cryogenic characteristics, such as ensuring a low-temperature toughness equivalent to that of the cryogenic base metal, and in addition, further having a high crack initiation resistance, and a weld metal thereof. The welding solid wire of the present invention is an iron base welding solid wire including carbon: 0.10 mass % or less (not inclusive of 0%), silicon: 0.15 mass % or less (not inclusive of 0%), nickel: 8.0 to 15.0 mass %, manganese: 0.10 to 0.80 mass %, and Al: 0.1 mass % or less (not inclusive of 0%), and oxygen in an amount of 150 ppm or less (inclusive of 0), characterized by including: a REM: 0.005 to 0.040 mass %, or chromium: 4.0 mass % or less (not inclusive of 0%).
Abstract:
In a video recording system the chroma components of a color television signal are applied to a multiplexer where they are interleaved in frequency with each other so that the energy concentration of each chroma component occurs at frequencies interleaved with the frequencies at which the energy concentration of the other chroma component occurs. The interleaved chroma components and the luminance component are supplied respectively to frequency modulators each producing an output having energies distributed over the full range of the passband of the system. The outputs of the modulators are fed to first and second transducers for recording the luminance and chroma components on adjacent tracks of a recording medium.
Abstract:
A seat pad and a method for manufacturing the same are provided, wherein molding failure is prevented at the periphery of a horizontal groove. In the seat pad, a groove structure 7 for containing a part of a seat cover material is provided on a seat surface for seating. At least a part of the groove structure is formed as a horizontal groove which extends in a horizontal direction. The seat pad is manufactured by foam molding in a mold with the seat surface maintained to face in a downward direction, and a first end of the seat surface, in terms of a longitudinal direction of the seat pad which crosses the horizontal direction thereof at right angle, positioned lower than a second end thereof. The seat pad has at least one concavity 10 positioned between the first end and the horizontal groove, so as to face the horizontal groove.
Abstract:
A seat pad and a method for manufacturing the same are provided, wherein molding failure is prevented at the periphery of a horizontal groove. In the seat pad, a groove structure 7 for containing a part of a seat cover material is provided on a seat surface for seating. At least a part of the groove structure is formed as a horizontal groove which extends in a horizontal direction. The seat pad is manufactured by foam molding in a mold with the seat surface maintained to face in a downward direction, and a first end of the seat surface, in terms of a longitudinal direction of the seat pad which crosses the horizontal direction thereof at right angle, positioned lower than a second end thereof. The seat pad has at least one concavity 10 positioned between the first end and the horizontal groove, so as to face the horizontal groove.
Abstract:
Provided is a mold configured to properly exhaust gas from a cavity and to prevent resin from entering into a vent hole, and a method for molding resin foamed molding using the mold. The mold (1) includes lower mold (2), upper mold (4), and core mold (3). The core mold (3) is provided at wall portions (3b), (3c) thereof with respective vent holes (6). Annexed members (7) are detachably attached to the outer surface sides of wall portions (3b), (3c). Each of the annexed members (7) has a tubular shape having an air passage in communication with the vent hole, and a sectional dimension smaller than that of vent hole (6). A nonwoven cloth (10) is attached to core mold (3) so as to cover each surface thereof facing the cavity, and cover wall portions (3b), (3c), thereby covering vent hole (6) from the cavity side.
Abstract:
Provided is a mold which can be configured to be able to properly exhaust gas from a cavity and to prevent resin from entering into a vent hole, and a method for molding resin foamed molding using the mold. The mold 1 includes a lower mold 2, an upper mold 4, and a core mold 3 mounted directly under the upper mold 4. The core mold 3 is provided at wall portions 3b, 3c thereof with respective vent holes 6. Annexed members 7 are detachably attached to the outer surface sides of the wall portions 3b, 3c. Each of the annexed members 7 has a tubular shape having an air passage with a shape of a small passage which is in communication with the vent hole, and the sectional dimension of the passage of at least a part of the air passage is smaller than that of the vent hole 6. A nonwoven cloth 10 is attached to the core mold 3 so as to cover each surface thereof facing the cavity. The end portions of the nonwoven cloth 10 also cover the wall portions 3b, 3c, thereby covering the vent hole 6 from the cavity side.
Abstract:
An FM demodulating circuit demodulates a frequency-modulated signal of a predetermined channel of frequency-modulated signals of respectively different channels, where the frequency-modulated signals are obtained by frequency-modulating carriers of respectively different frequencies by information signals of respectively different channels and transmitting the frequency-modulated signals in a mutually multiplexed state. The FM demodulating circuit has a demodulated output characteristic such that a frequency at which a differential value describing the slope of a demodulated output characteristic curve becomes maximum, is substantially equal to a center frequency of the frequency-modulated signal of the above predetermined channel, and a frequency at which the differential value becomes minimum is equal to a center frequency of a frequency-modulated signal of a channel other than the above predetermined channel.
Abstract:
The hue of a color image is controlled by a detector which monitors the luminance signal level to produce a gain control signal when it exceeds a predetermined level to effect reduction in the relative proportion of the red content in a whitish area in the color image without sacrifice to adversely affect the faithful reproduction of flesh tones. The detector may be arranged to monitor the output level of red primary color so as to effect control in the amount of the red color output so that redish cast in the color image is effectively suppressed without sacrifice in the reproduction of flesh tones.