摘要:
A micro flow device and a method for generating a fluid with pH gradient are provided. The micro flow device includes a first and second substrates, an ion exchange membrane, and at least an electrode unit. The second substrate having a second flow path is disposed corresponding to the first substrate that has a first flow path. The ion exchange membrane is disposed between the first substrate and the second substrate to separate an electrolyte solution inside the first and second flow paths. The electrode unit includes at least two electrodes disposed in the first and second flow paths respectively. When the pair of electrodes is driven to electrolyze the electrolyte solution, the ion exchange membrane retards the mixing of an anode product and a cathode product produced by electrolyzing the electrolyte solution, such that a liquid having pH gradient is generated inside the first and second flow paths.
摘要:
An eye module is provided. The eye module includes a casing, an eyeball and a first driving element. The eyeball having a surface is disposed in the casing. The first driving element leans against the surface and drives the eyeball to rotate by a first friction force generated by rotating the first driving element.
摘要:
An eye module at least including a body, a magnetic element, a casing and a plurality of magnet windings is provided. The body is a globe. The magnetic element is disposed on the body. The body is disposed in the casing in a rotatable manner. A plurality of magnet windings are disposed at the back of the body. The body is rotated by driving the magnet windings to function on the magnetic element.
摘要:
The present invention provides an optical disc which includes a substrate and a multi-layer structure. Furthermore, the multi-layer structure is formed above the substrate, and at least one layer of the multi-layer structure contains an anti-oxidant material.
摘要:
A portable electronic device is recharged by generating light from a light source of a wireless optical charger, converting the light from the charger into an electrical signal using a photovoltaic cell of the portable electronic device and charging the portable electronic device using the electrical signal. The wireless optical charger may include a proximity sensor that switches on the light source when a portable electronic device is close to the light source.
摘要:
An image sensor with a compound layer includes a substrate, a chip, wires, a compound layer, and a transparent layer. The substrate has an upper surface, which is formed with a central region and first electrodes arranged at the each side of the central region, and a lower surface, which is formed with second electrodes. The chip is mounted at the central region of the upper surface of the substrate. The chip has a sensor region and a plurality of bonding pads. The wires are electrically connected the bonding pads of the chip to the first electrodes of the substrate. The compound layer is located on the side of the chip and is covered on the wires. The transparent layer is arranged on the compound layer to cover the chip, so that the sensor region of the chip may be received optical signal through the transparent layer.
摘要:
The invention provides a microinjection apparatus for a fluid. The microinjection apparatus comprises a substrate, a manifold, at least one fluid chamber, and at least one thermal sensing film. The manifold is formed on the substrate for containing the fluid therein. The at least one fluid chamber is also formed on the substrate and in communication with the manifold. Furthermore, the fluid chamber has a respective orifice and a respective heater disposed adjacent to the orifice. In addition, the thermal sensing film corresponds to the fluid chamber and is formed on a surface adjacent to the orifice. It should be noticed that the thermal sensing film has a respective color changeable in response to a heat generated during operation of the corresponding heater.
摘要:
The invention pertains to an optical disc capable of storing the usage status of a label side of the optical disc. The optical disc includes a data side, the label side, and a plurality of partition marks. The data side is configured to read and write data thereon by utilizing an incident laser beam, and the label side is configured to form an image. The label side also has a plurality of partitions defined thereon. The partition marks are arranged on the label side and initially set in a first state. The partition marks are capable of converting from the first state into a second state. Each partition marks corresponds to one of the partitions. When the image is formed on the label side, the partition marks corresponding to the partitions where the image is formed are converted into the second state to indicate the usage status of the label side.
摘要:
An optical tweezers lifting apparatus is provided. The optical tweezers lifting apparatus includes an optical tweezers and a particle-lifting device. The particle-lifting device includes a substrate and a plurality of electrodes that are disposed on the bottom of a flow path in the substrate. When a dielectrophoresis (DEP) solution with a plurality of floating particles is conducted into the flow path and upon those electrodes and a voltage is applied to these electrodes, these particles would be driven by a negative DEP force to move upward to a specific depth in the flow path. Meanwhile, the optical tweezers of the apparatus is selectively focused at the specific depth in the flow path.
摘要:
An optical tweezers lifting apparatus is provided. The optical tweezers lifting apparatus includes an optical tweezers and a particle-lifting device. The particle-lifting device includes a substrate and a plurality of electrodes that are disposed on the bottom of a flow path in the substrate. When a dielectrophoresis (DEP) solution with a plurality of floating particles is conducted into the flow path and upon those electrodes and a voltage is applied to these electrodes, these particles would be driven by a negative DEP force to move upward to a specific depth in the flow path. Meanwhile, the optical tweezers of the apparatus is selectively focused at the specific depth in the flow path.