摘要:
A strip loop resonator, comprising: a loop-shaped strip line (187, 193, 214, 225, 235) for resonating a microwave in a single mode according to a line impedance thereof; an input strip line (185) for inputting the microwave to an input point of the loop-shaped strip line in electromagnetic coupling; and an output strip line (186) for outputting the microwave resonated in the loop-shaped strip line from an output point of the loop-shaped strip line in electromagnetic coupling, characterized in that the loop-shaped strip line has an electric length shorter than a wavelength of the microwave and comprises: a pair of coupling partial lines (182a; 182b, 192a; 192b, 222a; 222b, 232a; 232b) arranged in parallel to each other to couple the coupling partial lines to each other in electromagnetic coupling, the line impedance of the loop-shaped strip line being dependent on the electromagnetic coupling between the coupling partial lines; a first side strip line of which both ends are connected to first side ends of the coupling partial lines, the input point of the loop-shaped strip line being placed at the first side strip line; and a second side strip line of which both ends are connected to second side ends of the coupling partial lines, the output point of the loop-shaped strip line being placed at the second side strip line, and the output point of the loop-shaped strip line being spaced a half wavelength of the microwave apart from the input point of the loop-shaped strip line.
摘要:
Disclosed is a radio frequency circuit having a membrane structure and manufacturing method for the same. The radio frequency circuit has a circuit element formed on an insulating material plate having copper bonded on both surfaces or one surface thereof whereby a metal substrate having a hollow bore and the insulating material plate forming the circuit element are bonded together. The circuit element is mounted with an active element on which a lid having a partition wall is bonded for packaging. The hollow bore in the metal substrate, for forming a membrane structure, is formed by press-blanking. Because the metal substrate is not wet-etched, dimensions control can be easily, precisely made on a hollow bore region of the metal substrate. Furthermore, it is possible to shorten the working time on the hollow bore region.
摘要:
The present invention has a purpose to obtain an FSK data receiving system which is capable of constituting a direct-conversion receiver suitable for realizing an integrated circuit, is capable of decoding in a wide receiving band width, and is capable of realizing a small-sized and less-electric power consumption data receiving. The FSK-modulated local oscillator signal 3 is applied to the local oscillator 2, and there is provided the decode circuit 15 which obtains the decode signal 14 by judging whether the FSK-modulated frequency deviation of the carrier wave signal 1 is a positive deviation or a negative deviation on the basis of the comparison result of the voltage change in the frequency-voltage conversion circuit 16 for the base-band signal 8; i.e. the output signal of the frequency mixer 6. The offset amount of the local oscillator frequency is judged by the voltage judging means 17 to produce the control signal 18, And further, there is provided the another decode circuit 22 which makes the judgement of frequency change of the base-band signal 8 and the judgement of in-phase/opposite-phase relationship from the decode signal 14 and the output of the voltage judging means 17 so as to obtain the decode signal 23. Moreover, there is provided the decode signal processing circuit 25 which obtains the decode signal 24 from the decode signals 14, 23 in response to the control signal 18.
摘要:
A millimeter waveguide is disclosed which includes: a first single crystal substrate having a groove therein; a conductor film on a surface of said groove and a surface of said first single crystal substrate connected to said surface of said groove; a second single crystal substrate covering said conductor film; and a microstrip line on a surface of said second single crystal substrate, exposed to a cavity in said groove. A protruding portion may be formed on a bottom surface of the groove. The microstrip line including foundation (nickel chromium) and conductive (gold) layers may be formed on a surface of the groove. A protruding portion may be formed on the second single crystal substrate, wherein the height of this protruding portion is less than the depth of the groove. A millimeter waveguide for a resonator is also disclosed wherein a cavity is formed in substrates with grounding conductive layers on surfaces of the cavity, a probe extending from a microstrip line on a top surface of the substrates. Similar millimeter waveguide is also disclosed wherein the probe is replaced by magnetic field coupling structure. A circuit apparatus is also disclosed which comprises the millimeter waveguide apparatus mentioned above mentioned and an active circuit fixed on the millimeter waveguide apparatus.
摘要:
A strip dual mode filter consists of a strip line ring resonator (33) having an electric length equivalent to a resonance wavelength λ o for resonating microwaves at the resonance wavelength λ o according to a characteristic impedance thereof, an input coupling capacitor (34) for transmitting the microwaves from an input terminal (32) to a coupling point A of the ring resonator, an output coupling capacitor (38) for outputting the microwaves resonated in the ring resonator from a coupling point B of the ring resonator to an output terminal (38), and a phase-shifting circuit (37) connected to a coupling point C and a coupling point D of the ring resonator for changing the characteristic impedance of the ring resonator by shifting a phase of the microwave by a multiple of a half-wave length of the microwaves. The coupling point B is spaced a quarter-wave length of the microwaves apart from the coupling point A, the coupling point C is spaced the half-wave length of the microwaves apart from the coupling point A, and the coupling point D is spaced the half-wave length of the microwaves apart from the coupling point B.
摘要:
A strip dual mode loop resonator (31) consists of a loop-shaped strip line (33) having a pair of straight strip lines arranged in parallel, an electric length of the loop-shaped strip line being equivalent to a wavelength of a microwave circulated in the loop-shaped strip line in two difference directions according to a characteristic impedance of the loop-shaped strip line, and the straight strip lines being coupled to each other in electromagnetic coupling to change the characteristic impedance of the loop-shaped strip line. The microwave is transferred from an input strip line (32) to the loop-shaped strip line through electromagnetic field induced by the microwave. Thereafter, the microwave is reflected in the straight strip lines of the loop-shaped strip line to produce reflected microwaves circulated in opposite directions. Thereafter, the reflected waves are resonated and filtered in dual mode in the loop-shaped strip line. Thereafter, the microwave formed of the reflected waves is transferred from the loop-shaped strip line to an output strip line (34) through electromagnetic field induced by the microwave.
摘要:
The present invention has a purpose to obtain an FSK data receiving system which is capable of constituting a direct-conversion receiver suitable for realizing an integrated circuit, is capable of decoding in a wide receiving band width, and is capable of realizing a small-sized and less-electric power consumption data receiving. The FSK-modulated local oscillator signal 3 is applied to the local oscillator 2, and there is provided the decode circuit 15 which obtains the decode signal 14 by judging whether the FSK-modulated frequency deviation of the carrier wave signal 1 is a positive deviation or a negative deviation on the basis of the comparison result of the voltage change in the frequency-voltage conversion circuit 16 for the base-band signal 8; i.e. the output signal of the frequency mixer 6. The offset amount of the local oscillator frequency is judged by the voltage judging means 17 to produce the control signal 18, And further, there is provided the another decode circuit 22 which makes the judgement of frequency change of the base-band signal 8 and the judgement of in-phase/opposite-phase relationship from the decode signal 14 and the output of the voltage judging means 17 so as to obtain the decode signal 23. Moreover, there is provided the decode signal processing circuit 25 which obtains the decode signal 24 from the decode signals 14, 23 in response to the control signal 18.