Abstract:
The present disclosure relates to an experimental apparatus for a biochip comprising: an enclosure within which a chamber configured to hold the biochip and a solution is disposed, wherein the enclosure is provided with an observation area, for observing a reaction process of the biochip and the solution in the chamber during an experiment.
Abstract:
Embodiments of the present disclosure provide a target capturing apparatus and a manufacturing method thereof, and a target detecting method. The target capturing apparatus includes a cavity structure, the cavity structure includes: an inlet portion, an outlet portion and a capture region positioned between the inlet portion and the outlet portion, and the capture region includes a capture component, and a combination specifically combined with a to-be-captured target is included in the capture component so as to capture the target in a sample entering the cavity structure.
Abstract:
The present application provides a thin film transistor, a method for fabricating the same, a method for driving the same, and a display device. The thin film transistor includes a gate pattern, a gate insulation layer, an active layer pattern, a source/drain pattern, and a passivation layer. The active layer pattern is made of a carbon nanotube material, and the passivation layer is made of a charge-resistant material capable of reducing mobile charges on a surface of the carbon nanotube material.
Abstract:
A microfluidic particle sorting apparatus for capturing targets from fluid containing the targets is disclosed. The apparatus includes an inlet for receiving the fluid; a sorting chamber allowing the fluid to flow through; a first outlet for discharging the fluid after flowing through the sorting chamber; a capturing structure for capturing the cells, wherein the capturing structure is upstream of the first outlet, and includes obstacles in an array, each extending through the sorting chamber in a lateral direction with respect to a fluid flow of the fluid; and a second outlet upstream of the capturing structure comprising a plurality of openings; wherein a gap between two adjacent obstacles is equal to or greater than each opening of the second outlet.
Abstract:
The present disclosure provides a virtual reality (VR) system, including: a display device for displaying a VR scene and being wearable; a manned mobile device for adjusting a position of a viewer according to the VR scene; and an auxiliary device for providing auxiliary functions according to the VR scene.
Abstract:
A signal acquiring device, including: a sensor, a signal converter and a signal transmitter, wherein the sensor is connected with the signal converter that is connected with the signal transmitter, and the sensor, the signal converter and the signal transmitter are all disposed on the body of a virtual reality apparatus; the sensor is used to detect action signals of the part of the wearer on which the virtual reality apparatus is worn, the signal converter is used to convert the action signals into electrical signals, and the signal transmitter is used to send the electrical signals to the virtual reality apparatus. The device has a high accuracy and improves experience of the wearer. A virtual reality apparatus and a control method thereof are also provided.
Abstract:
The embodiments of present invention disclose a circuit board and a manufacturing method thereof and a display apparatus comprising the circuit board. The circuit board comprises a base substrate, a device to be soldered, a bonding pad and a support, wherein the bonding pad and the support are provided on the base substrate, and the device to be soldered is provided on the support and is connected with the bonding pad. By providing the device to be soldered on the support, the embodiments of present invention can effectively prevent the short circuit of the device to be soldered during the process of soldering and thus improve product yield.
Abstract:
A microfluidic particle sorting apparatus for capturing targets from fluid containing the targets is disclosed. The apparatus includes an inlet for receiving the fluid; a sorting chamber allowing the fluid to flow through; a first outlet for discharging the fluid after flowing through the sorting chamber; a capturing structure for capturing the cells, wherein the capturing structure is upstream of the first outlet, and includes obstacles in an array, each extending through the sorting chamber in a lateral direction with respect to a fluid flow of the fluid; and a second outlet upstream of the capturing structure comprising a plurality of openings; wherein a gap between two adjacent obstacles is equal to or greater than each opening of the second outlet.
Abstract:
A thin film transistor, a method for manufacturing the same, an array substrate, and a display device are provided. The thin film transistor includes a substrate; a gate electrode, a gate insulating layer, an active layer, a source electrode, and a drain electrode provided on the substrate; wherein the active layer includes a source region, a drain region, and a channel region between the source region and the drain region, the channel region having a bending pattern.
Abstract:
A portable physiological parameter detection device comprises: a detection module, configured to detect physiological parameters of a human body, and a power supply module, configured to supply power to the detection module, wherein the power supply module comprises a power generation unit, the power generation unit comprises two electrode layers arranged opposite to each other, an insulation layer is provided on each of surfaces that face each other of the two electrode layers, and the two insulation layers are in close contact with each other. The detection device produces relatively low pollution when being discarded. A portable physiological parameter detection method is further provided.