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:
A fluorene-based pyrimidine-containing conjugated oligomer applied in six different layers in an OLED, respectively, used as an electron-transport emitting layer, an emitting layer, a host in the emitting layer, the ETL, a host in the electron-transport emitting layer, and a hole-blocking layer to upgrade light-emitting efficiency and regulate emitting color of the OLED.
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.
Abstract:
A touch panel includes a display module, a touch sensor, an anti-noise unit and a signal processing unit. The display module generates a noise. The touch sensor is disposed above the display module and outputs an abnormal signal, wherein the abnormal signal includes the noise and a sensing signal. The anti-noise unit is adapted to receive the abnormal signal and then reject the noise so as to form the sensing signal. The signal processing unit is adapted to process the sensing signal.
Abstract:
A touch-sensitive device includes a transparent substrate, a touch-sensing structure, a decorative layer, a trace layer, a passivation layer and a sheltering layer. The touch-sensing structure is disposed on the transparent substrate and located in a touch-sensitive region. The decorative layer is disposed on the transparent substrate and located in a non-touch-sensitive region, and the trace layer is disposed on the decorative layer. The passivation layer is disposed on the transparent substrate and at least covers the touch-sensing structure and the trace layer. The sheltering layer is disposed at least on the passivation layer and located in the non-touch-sensitive region.
Abstract:
A method includes performing a grinding on a backside of a semiconductor substrate. An image sensor is disposed on a front side of the semiconductor substrate. An impurity is doped into a surface layer of the backside of the semiconductor substrate to form a doped layer. A multi-cycle laser anneal is performed on the doped layer.
Abstract:
A mobile apparatus data sharing method includes the following steps: receiving a request for activating a sharing functionality on sharing data; obtaining context information of the mobile apparatus and a contact list which includes information of several candidate contacts; classifying the information of the candidate contacts into several candidate groups according to the context information; displaying the candidate groups via the mobile apparatus; determining a target contact group from the candidate contact groups according to a contact group selecting signal generated by the mobile apparatus; and transmitting the sharing data to the target contact group according to the information of the candidate contacts in the target contact group.