Abstract:
A method for making a semiconductor device is provided. The method comprises (a) providing a semiconductor stack comprising a semiconductor substrate (203), a first semiconductor layer (205), and a first dielectric layer (207) disposed between the substrate and the first semiconductor layer; (b) forming a first trench in the first dielectric layer which exposes a portion of the substrate; (c) forming a first doped region (209) in the exposed portion of the substrate; and (d) forming anode (211) and cathode (213) regions in the first implant region.
Abstract:
A semiconductor device (201) is provided which comprises (a) a substrate (203) having a first dielectric layer (205) disposed thereon, (b) a second dielectric layer (207) disposed over a first region of the first dielectric layer, and (c) an implant region (209), disposed on the substrate, which extends through the first dielectric layer and the second dielectric layer and which has cathode (211) and anode (213) regions defined therein.
Abstract:
A control circuit of a DC-DC converter is provided. A mode selection section selects an ACF or LLC mode. A soft start section generates a soft start signal in the ACF and LLC modes. A PWM comparison section compares a current detection signal with a feedback signal, a feedback reference signal and the soft start signal in the ACF mode, and generates a PWM signal based on a comparison result. A selection section selects the PWM signal of the PWM comparison section in the ACF mode. A clock generation section generates a clock signal having a fixed frequency in the ACF mode, and generates a clock signal having a frequency based on an operating current and the soft start signal in the LLC mode. A latch section maintains the PWM signal in response to the clock signal in the ACF mode and maintains the clock signal in the LLC mode.
Abstract:
Disclosed herein is an absorbent for separating acid gases, such as CO2, H2S and COS, from a gas mixture containing the acid gases wherein the absorbent comprises sodium glycinate. Further disclosed is a method for separating acid gases from a gas mixture using the absorbent.
Abstract translation:本文公开了一种用于从含有酸性气体的气体混合物中分离酸性气体如CO 2 H 2 S和COS的吸收剂,其中吸收剂包含甘氨酸钠。 还公开了使用吸收剂从气体混合物中分离酸性气体的方法。
Abstract:
A driving method of external electrode fluorescent lamp inverter for backlight. In the driving method, a square wave voltage frequency for driving the external electrode fluorescent lamp is applied to the primary side of a transformer in the region whose frequency is substantially ½ of the resonant frequency which is determined by the capacitance of the external electrode fluorescent lamp and the leakage inductance of the transformer. Then, the external electrode fluorescent lamp is caused to emit light by the self-discharge to thereby obtain high efficiency and high luminance. The driving method of external electrode fluorescent lamp inverter for backlight includes applying a square wave voltage for driving an external electrode fluorescent lamp to the primary side of a transformer; and applying the square wave voltage to the primary side of transformer in a region where the frequency thereof is substantially ½ of a resonant frequency, which is determined by the capacitance of the external electrode fluorescent lamp and the leakage inductance of the transformer, and thus causing the external electrode fluorescent lamp to emit light by the self-discharge.
Abstract:
A LCD backlight inverter including: a dimming control unit comparing a level of a triangle wave with a level of a dimming control signal and controlling a dimming control current to be supplied or interrupted according to a comparison result; an error amplification unit having an input end to which a detection voltage corresponding to the dimming control current and a current flowing through a lamp are inputted, comparing the detection voltage with a predetermined reference voltage, and outputting an error voltage corresponding to a difference via an output end thereof, the output end working as a ground when the dimming control current is not inputted; and a time constant circuit unit comprising a resistor connected between the output end of the error amplification unit and a voltage source and a capacitor connected between the output end of the error amplification unit and a ground.
Abstract:
Provided are a motor and a washing machine using the motor. The motor has a stator, a rotor, a rotor frame, a permanent magnet, and a comb polarizing ring. The rotor rotates against the stator. The permanent magnet is installed on the rotor frame and has protrusions with alternating North and South polarities. The comb polarizing ring includes a plurality of teeth disposed between the protrusions of the permanent magnet, and is formed of a material with a magnetism that is weaker than a magnetism of the protrusions.
Abstract:
A method for making a semiconductor device is provided. The method includes forming a first transistor with a vertical active region and a horizontal active region extending on both sides of the vertical active region. The method further includes forming a second transistor with a vertical active region. The method further includes forming a third transistor with a vertical active region and a horizontal active region extending on only one side of the vertical active region.
Abstract:
The present invention relates to a frequency-control-type piezo actuator driving circuit. The frequency-control-type piezo actuator driving circuit includes a piezo actuator that is driven by a constant amplitude of driving voltage pulse; a piezo driver that is connected to the piezo actuator so as to drive the piezo actuator; a frequency controller that is connected to the piezo driver so as to measure currents consumed when the piezo driver drives the piezo actuator, to detect a frequency corresponding to the maximum current among the measured currents, and to generate a frequency control signal corresponding to the detected frequency; and a frequency synthesizer that fixes a frequency of the piezo actuator in accordance with the frequency control signal of the frequency controller and generates the fixed frequency to the piezo driver.
Abstract:
A back side body contact for a transistor that extends through an opening in an insulating layer located adjacent to the backside of the body. The backside contact is coupled to an interconnect on the backside. In some examples, the interconnect is coupled to an interconnect located with respect the other side of an active layer which is coupled to a body voltage bias source.