Abstract:
A flow control structure of a water hose joint has: a hose connector, a coupler, a control section, and a hose. The coupler is coupled with the hose connector, the control section is sleeved on the coupler, and the coupler is inserted into the hose, so as to complete a flow control structure of the hose connector. By combining the hose connector with a connecting pipe and rotating the control section to adjust the relative position of the control section and the coupler to change the water flow, which has the effect of simple flow adjustment.
Abstract:
A driving system of a display panel and a driving method thereof are provided, in which the display panel includes a plurality of pixel units, and the driving system includes a timing controller and a voltage generator. The timing controller is used for detecting data values of the pixel units, and calculating difference values between the data values of every two pixel units, in which the calculated pixel units are in successive rows. The timing controller obtains an aggregation value of absolute values of the difference values, and then provides a related control signal to the voltage generator according to whether the aggregation value reaches a threshold value. The voltage generator provides a common voltage or provides a compensation voltage to a common electrode according to content of the control signal.
Abstract:
A pixel array including a pixel electrode and an active device is provided. The active device includes a gate, a channel layer, a source, a drain, a connection electrode, a first branch portion and a second branch portion. The gate is electrically connected with a scan line. The channel layer located at a side of the gate is electrically isolated from the gate. The source, the drain and the connection electrode are disposed on a part region of the channel layer. The first branch portion disposed on a part region of the channel layer is connected with an end of the connection electrode. The first branch portion surrounds the source located on the channel layer. The second branch portion disposed on a part region of the channel layer is connected with the other end of the connection electrode. The second branch portion surrounds the drain located on the channel layer.
Abstract:
A method of forming an integrated circuit structure includes providing a wafer having a first semiconductor chip, a second semiconductor chip, and a scribe line between and adjoining the first semiconductor chip and the second semiconductor chip; forming a notch in the scribe line, wherein the notch has a bottom no higher than a top surface of a semiconductor substrate in the wafer; forming a first insulation film over the wafer, wherein the first insulation film extends into the notch; removing a portion of the first insulation film from a center of the notch, wherein a remaining portion of the first insulation film comprises an edge in the notch; and sawing the wafer to separate the first semiconductor chip and the second semiconductor chip.
Abstract:
A method for collaborative editing by a plurality of mobile devices including communicating with a plurality of mobile devices via a wireless network to receive packets from the mobile devices, respectively, and by the embedded processing unit, decoding the received packets to obtain an editing command for a collaborative editing file, editing the collaborative editing file and generating a display image according the editing command, and transmitting the display image to a display unit to display the display image.
Abstract:
A test structure to detect vertical leakage in a multi-layer flip chip pad stack or similar semiconductor device. The test structure is integrated into the semiconductor device when it is fabricated. A metal layer includes at least two portions that are electrically isolated from each other; one portion being disposed under a test pad, and another portion being disposed under a pad associated with a pad structure being tested. The metal layer in most cases is separated from a top metal layer directly underlying the pads by an inter-metal dielectric (IMD) layer. A metal layer portion underlying the pad to be tested forms a recess in which a conductive member is disposed without making electrical contact. The conductive line is electrically coupled to a test portion of the same or, alternately, of a different metal layer. The test structure may be implemented on multiple layers, with recesses portions underlying the same or different pads.
Abstract:
An integrated circuit includes a substrate having a bonding pad region and a non-bonding pad region. A relatively large via, called a “big via,” is formed on the substrate in the bonding region. The big via has a first dimension in a top view toward the substrate. The integrated circuit also includes a plurality of vias formed on the substrate in the non-bonding region. The plurality of vias each have a second dimension in the top view, the second dimension being substantially less than the first dimension.
Abstract:
The present invention is generally related to an anti-leaking cartridge and anti-leaking ink. The anti-leaking ink comprises: an organic solvent, which is selected from the group consisting of diethylene glycol, triethylene glycol, triethanolamine amine extra pure, polyethylene glycol 200, and ethylene glycol and functions with at least one seal member for avoiding leakage; at least one dye dissolved in the organic solvent; a buffer solution maintaining the pH value of the anti-leaking ink in between 6.0 to 8.0; an antibacterial avoiding that the properties of the ink is changed; surfactant, which homogenizes the aquas of ink and the organic solvent; and de-ionized water.
Abstract:
A magenta inkjet ink composition with good pH value stability including at least one reactive red colorant; at least one azo red dye (such as M377); and an aqueous solution medium.
Abstract:
An invisible ink composition and a method to ensure document confidentiality. The invisible ink composition includes a carrier as a solvent; and at least one leuco dye evenly dispersing in the carrier. The invisible ink becomes visible while the leuco dye is combined with a weak acidic developer.