Abstract:
The present disclosure provides a semiconductor device that includes a semiconductor substrate and a transistor formed in the substrate. The transistor includes a gate stack having a high-k dielectric and metal gate, a sealing layer formed on sidewalls of the gate stack, the sealing layer having an inner edge and an outer edge, the inner edge interfacing with the sidewall of the gate stack, a spacer formed on the outer edge of the sealing layer, and a source/drain region formed on each side of the gate stack, the source/drain region including a lightly doped source/drain (LDD) region that is aligned with the outer edge of the sealing layer.
Abstract:
A three-dimensional switching device includes an image switching panel, at least a first and a second driver unit, and at least a signal connection circuit. The image switching panel has a plurality of first electrodes criss-crossing with a plurality of second electrodes. The first driver unit has a first flexible circuit board with a first driver circuit disposed thereon that connects to a side of the image switching panel, and has a first output terminal electrically connected to the first electrodes. The second driver unit similarly has a second flexible circuit board having a second driver circuit connecting to the other side of the image switching panel with a second output terminal electrically connected to the second electrodes. The signal connection circuit connects to the image switching panel. The first and second driver circuits respectively have a first and second input terminal electrically connected to the signal connection circuit.
Abstract:
A pulse width modulation regulator IC is provided for controlling a duty cycle of at least one switch to convert one input voltage signal into an output voltage. An input pin is provided for receiving an input signal different from the input voltage signal. The input signal has a lasting time substantially the same as the time that input voltage signal situated at a high level, but the waveforms of the two signals are different. The input signal is converted into a square wave signal by a conversion unit, and a PWM signal is generated by a PWM controller according to the square wave signal to control the duty cycle of the switch. Therefore, the input pin can be saved by adjusting an internal or external circuit of the IC for the usage of the different kinds of input signals without increasing the number of input pins of the IC.
Abstract:
Disclosed are a synchronous rectifier control device and a forward synchronous rectifier circuit. The synchronous rectifier control device is coupled with the secondary side of the forward synchronous rectifier circuit, comprising a condition detecting unit, a reference time circuit and a synchronous signal generator. The condition detecting unit receives at least one reference signal and a detecting signal in response to the condition of the secondary side of the forward synchronous rectifier circuit, and accordingly generates a first synchronous control signal. The reference time circuit is coupled with the condition detecting unit, and generates a reference time signal in response to the first synchronous control signal. The synchronous signal generator generates a second synchronous control signal in response to the first synchronous control signal and the reference time signal.
Abstract:
The present disclosure provides a semiconductor device that includes a semiconductor substrate and a transistor formed in the substrate. The transistor includes a gate stack having a high-k dielectric and metal gate, a sealing layer formed on sidewalls of the gate stack, the sealing layer having an inner edge and an outer edge, the inner edge interfacing with the sidewall of the gate stack, a spacer formed on the outer edge of the sealing layer, and a source/drain region formed on each side of the gate stack, the source/drain region including a lightly doped source/drain (LDD) region that is aligned with the outer edge of the sealing layer.
Abstract:
Disclosed is a gastrointestinal endoscope, including a deflectable direction-change tube, which consists of plural ring units, each having a hollow section. Adjacent ring units are spaced by a predetermined distance, having opposing end faces between which at least two integrally formed connectors are provided to connect the adjacent ring units together. An end of the deflectable direction-change tube is operatively coupled to a direction-change operation device and an opposite end coupled to a capsule endoscope clamping structure. At least one control wire extends through a bore of the deflectable direction-change tube and connected between the direction-change operation device and the capsule endoscope clamping structure. By operating an operation capstan to have the control wire pulling the capsule endoscope clamping structure, the deflectable direction-change tube is controlled to change direction, thereby changing direction of a capsule endoscope retained by the capsule endoscope clamping structure.
Abstract:
The present disclosure provides a multilayer wiring structure, including a plurality of dielectric layers, a plurality of conductive wiring layers interleaved with the plurality of dielectric layers, wherein the plurality of conductive wiring layers includes copper-phosphorous alloys (such as Cu3P).
Abstract:
The present disclosure provides a multilayer wiring structure, including a plurality of dielectric layers, a plurality of conductive wiring layers interleaved with the plurality of dielectric layers, wherein the plurality of conductive wiring layers includes copper-phosphorous alloys (such as Cu3P).
Abstract:
The present disclosure provides an interconnect structure and a method for forming an interconnect structure. The interconnect structure includes a first metal line, a first interlayer dielectric (ILD) layer over the first metal line, a first conductive feature over the first metal line, wherein at least a portion of the first conductive feature is laterally surrounded by the first ILD layer, and a sidewall of the first conductive feature has a corrugated profile.
Abstract:
A suitcase scale is bundled a suitcase for providing functions of scaling and anti-theft. The suitcase scale comprises a housing, a processing unit disposed in the housing, a weight sensor secured in the housing and electrically connected to the processing unit, a combination lock mounted into the housing, a buckle detachably engaged to the housing and a strap having two opposite ends respectively connected to the buckle and the housing. Consequently, the strap, the buckle and the housing form an endless ring for bundling the suitcase when the combination lock is in a locked condition. The suitcase scale immediately shows the total weight value of the suitcase to prevent the user from paying and excessive baggage charge and provides a function of anti-theft due to the combination lock such that a thief or a pickpocket can not steal the belongings in the locked suitcase.