摘要:
The present disclosure discloses a nasogastric tube used to insert into a patient's body from nose to stomach. The patient's body from nose to stomach comprises a posterior pharyngeal wall, an inferior conch, a nasopharynx rear-upper wall, and a soft palate; the nasogastric tube comprises a tube body and a pressurized structure. The tube body has a longitudinal direction and includes a proximal end and a distal end. A distance is between and the posterior pharyngeal wall. The pressurized structure is disposed on the tube body along the longitudinal direction and near the distal end. The pressurized structure comprises a cavity. When a fluid is filled into the cavity, the pressurized structure is pressurized; and the distal end is lifted to reduce the distance to the posterior pharyngeal wall.
摘要:
A method for reducing current leakage in a battery in communication with an information handling system (IHS). The method includes providing a battery management unit (BMU) in the battery, the BMU in communication with an embedded controller (EC), the BMU in a standby mode while the battery is coupled to the IHS, and configuring the BMU to exit the standby mode if an external power supply is coupled to the IHS. Also disclosed is an IHS which includes an EC in communication with a BMU, a power switch in communication with the EC and the BMU, and a control switch configured to be switched on if an external power supply is coupled to the IHS or if the power switch is activated without the external power supply, wherein the BMU unit exits the standby mode if the control switch is switched on.
摘要:
An image capturing device includes a camera housing configured to house a set of electronic modules for generating a video stream from captured light. The camera housing includes a camera opening configured to let light enter the camera housing to be captured by the set of electronic modules. The webcam further includes a camera-housing base rotationally coupled to the camera housing, and includes a mounting base rotationally coupled to the camera-housing base. The camera housing is configured to rotate with respect to the camera-housing base to face the camera opening toward the mounting base or face the camera housing opening away from the mounting base. The webcam further includes a first hinge rotationally coupling the mounting base to the camera-housing base. With the camera opening facing toward the mounting base, the first hinge is configured such that the mounting base is foldable onto the camera opening to cover the camera opening.
摘要:
An optical touch module includes a screen and at least one optical positioning device disposed on the screen. The optical positioning device includes a case, at least one light emitting unit, a circuit board, a transparent diffusing part and an image capturing unit. The light emitting unit is disposed on case for emitting invisible light. The circuit board is electrically connected to the light emitting unit for controlling the light emitting unit. The transparent diffusing part is disposed at a light emitting side of the light emitting unit. A bar structure is formed on a light entrance surface of the transparent diffusing part for scattering the invisible light to be distributed over a touch surface of the screen. The image capturing unit is disposed on the case to capture an optical image for a touch object on the touch surface when the touch object is illuminated by the invisible light.
摘要:
Methods and systems are described for utilizing multi-mode dongles with peripheral devices. The multi-mode dongles are configured to provide standard mode signals for a standard mode of operation and alternate mode signals for an alternate mode of operation, for example, where a host information handling system is unable to provide the alternate mode signals to the peripheral device. The multi-mode dongle receives mode control signals from a host information handling system and automatically switches from a standard mode of operation to an alternate mode of operation, where the alternate mode signals are provided to the peripheral device, based upon the mode control signals. In one embodiment, the multi-mode dongle can be configured for a universal serial bus (USB) port, and the alternate mode signals can be associated with charging a consumer electronics (CE) device.
摘要:
Methods and systems are described for utilizing multi-mode dongles with peripheral devices. The multi-mode dongles are configured to provide standard mode signals for a standard mode of operation and alternate mode signals for an alternate mode of operation, for example, where a host information handling system is unable to provide the alternate mode signals to the peripheral device. The multi-mode dongle receives mode control signals from a host information handling system and automatically switches from a standard mode of operation to an alternate mode of operation, where the alternate mode signals are provided to the peripheral device, based upon the mode control signals. In one embodiment, the multi-mode dongle can be configured for a universal serial bus (USB) port, and the alternate mode signals can be associated with charging a consumer electronics (CE) device.
摘要:
The present invention provides a method for enhancing the reliability of a dielectric layer of a semiconductor wafer. The dielectric layer is formed above a silicon element. First, the method implants argon ions with a dosage of around 1015˜1016 ions/cm3 and an energy of around 3˜50 KeV into the silicon element to form an ion implantation layer. Then, the dielectric layer is formed on a predetermined area of the silicon element. The ion implantation layer prevents oxygen ions, impurities and charge carriers from converging on the surface of the silicon element so as to enhance the reliability of the dielectric layer.
摘要翻译:本发明提供一种提高半导体晶片的电介质层的可靠性的方法。 电介质层形成在硅元件上方。 首先,该方法将约1015〜1016个离子/ cm 3的量的氩离子和约3〜50KeV的能量注入到硅元件中以形成离子注入层。 然后,在硅元件的预定区域上形成电介质层。 离子注入层防止氧离子,杂质和电荷载流子会聚在硅元件的表面上,从而提高电介质层的可靠性。
摘要:
An elastic band may include an elastic weaving body, and a three-dimensional protruding surface is knitted on a front surface of the elastic weaving body while a flat plush surface is knitted on a rear surface thereof. The three-dimensional protruding surface comprises a plurality protruding portions separated with the same interval. When the elastic band is in use, the protruding portions not only can improve the friction coefficient of the surface so as to avoid the elastic band from loosen, but also can be used as ribs on the elastic weaving body to prevent the elastic band from being folded and to keep the elastic band smooth. Also, the three-dimensional protruding surface and the flat plush surface can provide extra soft touch for skin and have the effect of reducing pressure, which greatly improves comfort to wear.
摘要:
An elastic band may include an elastic weaving body, and a three-dimensional protruding surface is knitted on a front surface of the elastic weaving body while a flat plush surface is knitted on a rear surface thereof. The three-dimensional protruding surface comprises a plurality protruding portions separated with the same interval. When the elastic band is in use, the protruding portions not only can improve the friction coefficient of the surface so as to avoid the elastic band from loosen, but also can be used as ribs on the elastic weaving body to prevent the elastic band from being folded and to keep the elastic band smooth. Also, the three-dimensional protruding surface and the flat plush surface can provide extra soft touch for skin and have the effect of reducing pressure, which greatly improves comfort to wear.
摘要:
The present invention provides a surge protection module which comprises a carrier board and a probe set. The carrier board is used to carry an electronic component. The probe set is disposed on the carrier board and has a plurality of probes and a short-circuit unit. Each probe is used for contacting the electronic component, and the short-circuit unit is selectively moved to a first position or a second position. When the short-circuit unit is moved to the first position, the short-circuit unit simultaneously contacts and shorts the plurality of probes. When the short-circuit unit is moved to the second position, the short-circuit unit is away from at least one of the plurality of probes.