Yi-Jan
Yi-Jan Chen, Taipei City TW
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20100219873 | SIGNAL SOURCE DEVICES - A signal source device is provided and includes a plurality of latch units, an inverter unit, and a voltage-shifting unit, which may include a capacitance unit. The plurality of latch units are substantially cascaded. The inverter unit is coupled to the latch units. The voltage-shifting unit has a first terminal coupled to the inverter unit and one of the latch units and a second terminal receiving a first input signal, for shifting a voltage level at the first terminal according to the first input signal. | 09-02-2010 |
20120252395 | RECEIVER CAPABLE OF CONCURRENTLY COLLECTING DUAL BAND SIGNALS, AND METHOD THEREOF - A receiver of a GNSS system is provided. The receiver comprises two mixers and a processing circuit. The first mixer down-converts an input radio-frequency signal comprising a first GNSS signal and a second GNSS signal into a first low-frequency signal. The second mixer down-converts the input radio-frequency signal into a second low-frequency signal. The processing circuit generates at least one phase-shifted low-frequency signal according to at least the first low-frequency signal, extract signal components of the first GNSS signal by rejecting signal components of the second GNSS signal according to the second low-frequency signal and the at least one phase-shifted low-frequency signal, and extract signal components of the second GNSS signal by rejecting signal components of the first GNSS signal according to the second low-frequency signal and the at least one phase-shifted low-frequency signal. The first and second GNSS signals are situated in different frequency ranges. | 10-04-2012 |
Yi-Jan Chen, Taipei TW
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20150318877 | MODULATION METHOD FOR IMPROVING SIGNAL CONVERSION GAIN AND HIGH-GAIN MODULATOR THEREOF - A modulation method includes sampling the first input signal by using the first local oscillation signal and the second local oscillation signal to generate the first sampled signal, sampling the second input signal by using the third local oscillation signal and the fourth local oscillation signal to generate the second sampled signal, sampling the second input signal by using the first local oscillation signal and the second local oscillation signal to generate the third sampled signal, sampling the first input signal by using the third local oscillation signal and the fourth local oscillation signal to generate the fourth sampled signal, adding the first sampled signal and the second sampled signal to produce the first modulation signal, adding the third sampled signal and the fourth sampled signal to generate the second modulation signal, and adding the first modulation signal and the second modulation signal to generate an output signal. | 11-05-2015 |
Yi-Jan Wang, New Taipei City TW
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20150043600 | CIRCUITRY AND METHOD FOR DRIVING LASER WITH TEMPERATURE COMPENSATION - A temperature-compensated laser driving circuit for driving a laser component is provided. The temperature-compensated laser driving circuit includes: a temperature compensation circuit, configured to generate a second current based on a first current and a temperature-independent current; and a modulation current generating circuit, configured to generate a modulation current based on the second current, and calibrate optical power output of the laser component based on the modulation current. The first current is proportional to the absolute temperature. The second current and the first current have a slope relative to the absolute temperature respectively, and the slope of the second current relative to the absolute temperature is larger than of the slope of the first current relative to the absolute temperature. | 02-12-2015 |
Yi-Jan Wu, Tainan City TW
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20140153465 | PORTABLE ROUTING DEVICE AND A ROUTING METHOD - The present invention discloses a portable routing device. One of the main features of the present invention is that the present invention utilizes a domain name signal as a switch on signal of a routing module of the portable routing device to maintain the off status of the routing module so as to saving power thereby. In another way, the present invention further capable of switching off the routing function thereof by determining if any network source having a higher priority exists so as to save the unnecessary waste of power. By avoiding the unnecessary routing action, the present invention is capable of saving power without affecting the normal use of the user. | 06-05-2014 |