Abstract:
A method for improving circuit stability is disclosed. In the method of the present invention, the circuit is analyzed to find the frequency band in which the input impedance at a target node behaves as a negative resistance, and then find the signal path of the frequency band in the matching circuit in front of the target node and add an attenuator in the signal path. This prevents the circuit from oscillation and improves the stability of the circuit. Furthermore, the signal on the main signal path will not be attenuated and the performance of the circuit will be maintained.
Abstract:
The present invention relates to a low loss antenna switch. The antenna switch comprises a plurality of switch module and a plurality of transmitting/receiving terminals, wherein one end of each switch module is connected to an antenna unit and the other end of each switch module is connected to each transmitting and receiving end respectively. Further, each switch module comprises a plurality of switch units in series, wherein the width of at least one switch unit is smaller than other switch units of each switch module. Thus, the parasitic capacitance of the off-stage switch modules can be reduced, and VSWR (Voltage Standing Wave Ratio) of the antenna switch also can be improved.
Abstract:
A voice enhancement method for distributed system is disclosed. In the method of the present invention, a plurality of picking devices are disposed in a space for picking voice signal. The picking devices communicate with each other and have an enhancement operation on the voice information from each picking device to generate an enhanced voice signal.
Abstract:
A multi-mode and multi-band front-end device comprises at least one amplifier unit, at least one switching unit, at least one control unit, a plurality of transmission paths, and a plurality of frequency matching networks. The switching unit comprises at least input end and a plurality of connecting ends. Wherein the input end is electrically connected to the amplifier unit, and each of connecting ends is connected to each of transmission paths, respectively. Each of frequency matching networks is configured on each of transmission paths, and achieves impedance matching at different frequency bands, respectively. The multi-mode and multi-band front-end device is able to select one of transmission paths to transmit RF signal according to the frequency band of RF signal to be transmitted so as to improve the output power of the multi-mode and multi-band front-end device.
Abstract:
A switching device having a good isolation characteristic is disclosed. The switching device comprises a switch unit and a control unit, wherein the control unit is connected to a power supply terminal, and connected to the switch unit via a control line and a power line. The control unit comprises a voltage regulator unit that is electrically connected to the power supply terminal and the power line of the switch unit. When the switch unit enters standby mode, the control unit provides an isolation voltage to the switch unit to effectively enhance the isolation characteristic of the switching device in the standby mode.
Abstract:
The present invention is related to an adjustable harmonic filtering device, mainly comprising a first connecting port, a second connecting port, a harmonic filtering unit, and an adjusting unit, in which a passive network is presented between the first connecting port and the second connecting port, as well as the harmonic filtering unit is connected to the passive network. The harmonic filtering unit comprises a first inductor and a first capacitor. The adjusting unit is adjacent to the first inductor of the harmonic filtering unit, and induced electromagnetically therewith. Thus, frequency-band of the harmonic, to be filtered out by the harmonic filtering unit, may be changed, allowing for reducing loss of signal occurring in the process of transmission between the first connecting port and the second connecting port effectively.
Abstract:
A method or a system for acoustic channel information detection includes at least one speaker and at least one microphone within an environment. The microphone receives a CDMA modulated audio training signal from the speaker via a plurality of acoustic channels within the environment, wherein the CDMA modulated audio training signal is a pre-known CDMA modulated audio training signal, and comprises a data signal, a spreading code and/or a continuous frequency code. Thus, the microphone is able to estimate the acoustic channel information including frequency dependence according to the received CDMA modulated audio training signal and the pre-known CDMA modulated audio training signal.
Abstract:
An electronic device includes a first circuit block and a second circuit block. The first circuit block is allocated in a first power domain, and includes a first clock counter and an updating circuit. The first clock counter is arranged to generate a first counter value according to a first reference clock. The updating circuit is arranged to receive a second counter value, and update the first counter value according to the second counter value. The second circuit block is allocated in a second power domain, and includes a second clock counter arranged to generate the second counter value according to a second reference clock. The first power domain and the second power domain are controlled independently.
Abstract:
An Ethernet physical-layer transceiver includes a control circuit and a processing circuit. The control circuit sequentially employs a plurality of different phase combinations of a transmitter clock and a receiver clock for transmission and reception of data over a cable, and obtains a plurality of sets of samples from the cable under the plurality of different phase combinations of the transmitter clock and the receiver clock, respectively. The processing circuit performs channel characteristic analysis according to the plurality of sets of samples provided by the control circuit.
Abstract:
The invention relates to methods, non-transitory computer-readable storage medium, and apparatus for transmitting and receiving a wireless multi-source packet. A processing unit of a first audio-data transmitter device obtains data-slot assignments indicating that a first data slot is assigned to a second audio-data transmitter device and a second data slot is assigned to first audio-data transmitter device for data transmission from a audio-data receiver device; tunes in a first physical channel in the first data slot to obtain a first frame from the second audio-data transmitter device; obtains a second frame including a chunk of second audio data originated by the first audio-data transmitter device; encapsulates the first frame and the second frame into a payload of a media packet; and transmits the media packet at a second physical channel to the audio-data receiver device in the second data slot.