H01P5/18

DIRECTIONAL COUPLER, HIGH-FREQUENCY MODULE, AND COMMUNICATION APPARATUS
20230208003 · 2023-06-29 ·

A directional coupler includes a main line, a first sub-line, a second sub-line, a termination circuit, a selector switch, and a short-circuiting switch. The termination circuit terminates at least one of the first sub-line and the second sub-line. The selector switch connects the first sub-line and the termination circuit in a first mode and connects the second sub-line and the termination circuit in a second mode. The short-circuiting switch short-circuits both ends (a first end and a second end) of the second sub-line in the first mode.

DIRECTIONAL COUPLER, HIGH-FREQUENCY MODULE, AND COMMUNICATION APPARATUS
20230208003 · 2023-06-29 ·

A directional coupler includes a main line, a first sub-line, a second sub-line, a termination circuit, a selector switch, and a short-circuiting switch. The termination circuit terminates at least one of the first sub-line and the second sub-line. The selector switch connects the first sub-line and the termination circuit in a first mode and connects the second sub-line and the termination circuit in a second mode. The short-circuiting switch short-circuits both ends (a first end and a second end) of the second sub-line in the first mode.

Directional coupler
09847567 · 2017-12-19 · ·

The embodiments relate to a directional coupler including, in each case, one connection for a first, a second, a third, and a fourth port. The coupler includes a first coupling network for providing the connection for the first port and a second coupling network for providing the connection for the second port. The first and second coupling networks are both connected to the connections for the third and fourth ports, wherein the second coupling network has a first inductance connected between the third port and an electrical reference potential, a first capacitance connected between the fourth port and the electrical reference potential, a second capacitance connected between the third port and the second port, and a second inductance connected between the fourth port and the second port.

Directional coupler
09847567 · 2017-12-19 · ·

The embodiments relate to a directional coupler including, in each case, one connection for a first, a second, a third, and a fourth port. The coupler includes a first coupling network for providing the connection for the first port and a second coupling network for providing the connection for the second port. The first and second coupling networks are both connected to the connections for the third and fourth ports, wherein the second coupling network has a first inductance connected between the third port and an electrical reference potential, a first capacitance connected between the fourth port and the electrical reference potential, a second capacitance connected between the third port and the second port, and a second inductance connected between the fourth port and the second port.

Three-dimensional microstructures

An apparatus comprising a first power combiner/divider network and a second power combiner/divider network. The first power combiner/divider network splits a first electromagnetic signal into split signals that are connectable to signal processor(s). The second power combiner/divider network combines processed signals into a second electromagnetic signal. The apparatus includes a three-dimensional coaxial microstructure.

Antenna system for transmitting and receiving mm-wave signal

Disclosed in an electronic device, which includes a housing that includes a first plate and a second plate facing a direction opposite the first plate, a conductive plate that is disposed in a first plane between the first plate and the second plate, and is parallel to the second plate, a wireless communication circuit that is disposed within the housing and is configured to transmit and/or receive a signal having a frequency ranging from 20 GHz to 100 GHz, a first electrical path having a first end electrically connected with the wireless communication circuit and a second end floated, the first electrical path including a first portion between the first end and the second end, a second electrical path having a third end electrically connected with the conductive plate and a fourth end floated, the second electrical path including a second portion between the third end and the fourth end.

ELECTROMAGNETIC RESONANT COUPLER INCLUDING INPUT LINE, FIRST RESONANCE LINE, SECOND RESONANCE LINE, OUTPUT LINE, AND COUPLING LINE, AND TRANSMISSION APPARATUS INCLUDING THE ELECTROMAGNETIC RESONANT COUPLER
20170353056 · 2017-12-07 ·

An electromagnetic resonant coupler includes an input line to which a transmission signal is input; a first resonance line connected to the input line; a second resonance line opposing the first resonance line, the second resonance line undergoing resonant coupling with the first resonance line to thus wirelessly transmit the transmission signal between the first resonance line and the second resonance line; an output line connected to the second resonance line, the transmission signal being output through the output line; a coupling line that electromagnetically couples with at least one selected from the group consisting of the first resonance line and the second resonance line; and a terminator connected to one end of the coupling line.

SOLID-STATE HYPERFREQUENCY AMPLIFIER AND POWER COMBINER COMPRISING FOUR SUCH SOLID-STATE AMPLIFIERS
20230188107 · 2023-06-15 ·

A solidstate amplifier includes at least one interconnection, between a microstrip and a linearized impedance matching waveguide ridge, the interconnection being provided with a clamping device.

Directional coupler and wireless communication device
09838055 · 2017-12-05 · ·

A directional coupler including a main line, a sub-line, an input terminal, an output terminal, a coupling terminal and an isolation terminal, wherein the main line includes a first main-line section formed on a first layer, and a second main-line section formed on a second layer; the first and the second main-line sections are connected in parallel between the input and the output terminals; the sub-line includes a first sub-line section formed on the first layer, and a second sub-line section formed on the second layer; the first and the second sub-line sections are connected in parallel between the coupling and the isolation terminals; the first main-line section and the first sub-line section are disposed in close proximity to each other to generate electromagnetic coupling; and the second main-line section and the second sub-line section are disposed in close proximity to each other to generate electromagnetic coupling.

Directional power detector with low loss coupling network
11674984 · 2023-06-13 · ·

A directional power detector device includes a directional coupling network including a first transmission path connected between a radio frequency (RF) input and an RF output, the first transmission path having a voltage transmission gain A, phase θ and characteristic impedance Zo, a second transmission path having the same voltage transmission gain A, phase θ and characteristic impedance Zo, and a resistor connected between the first transmission path at the RF output and the second transmission path, where the resistor has a value including the characteristic impedance Zo. The directional power detector device further includes a detector diode including an anode connected to the second transmission path and a cathode, a capacitor connected between the cathode of the detector diode and the RF input port, and a detector output connected to the cathode of the detector diode. The detector outputs a DC detector voltage when a forward RF signal is applied to the RF input, and outputs zero DC detector voltage when reverse RF signal is applied to the RF output.