Abstract:
The present disclosure discloses a method for synchronizing data between a Qualcomm platform terminal and a Personal Computer (PC) side, which comprises the following steps: the DIAG module of the Qualcomm platform terminal receives a request packet from the PC side, converts the request packet into a pseudo request packet, and transmits the pseudo request packet to an application layer module of the Qualcomm platform terminal via an Original Equipment Manufacturer (OEM) layer module of the Qualcomm platform terminal; the application layer module fills a pseudo response packet according to the pseudo request packet transmitted from the OEM layer module and then transmits the pseudo response packet to the DIAG module via the OEM layer module; and the DIAG module converts the pseudo response packet transmitted from the OEM layer module into a real response packet and then transmits the real response packet to the PC side. The present disclosure also discloses a system for synchronizing data between a Qualcomm platform terminal and a PC side. In the present disclosure, the implementations of a bottom layer and an application layer are not mixed together any more, which reduces code coupling degree, avoids the occurrence of a fault in a data synchronization process and facilitate the extension of new functions.
Abstract:
A negative-working lithographic printing plate precursor can be imaged with infrared radiation and processed in a single step using a single processing solution that has a pH of from about 2 to about 11 and contains an anionic surfactant. This single processing solution both develops the imaged precursor and provides a protective coating that need not be rinsed off before lithographic printing. The lithographic printing plate precursor contains a particulate polymeric binder.
Abstract:
Negative-working imageable elements that can be imaged using infrared radiation comprise an imageable layer and a protective overcoat on a hydrophilic substrate. The imageable layer includes an IR-sensitive cyanine dye. The protective overcoat predominantly comprises one or more poly(vinyl alcohol) resins, each of which has a hydrolysis level of 85% or less. The use of this particular overcoat composition used in combination with the IR-sensitive cyanine dye provides improved tolerance to fogging by white light while maintaining desired imaging speed.
Abstract:
Negative-working imageable elements that can be imaged using infrared radiation comprise an imageable layer and a protective overcoat on a hydrophilic substrate. The imageable layer includes an IR-sensitive cyanine dye. The protective overcoat predominantly comprises one or more poly(vinyl alcohol) resins, each of which has a hydrolysis level of 85% or less. The use of this particular overcoat composition used in combination with the IR-sensitive cyanine dye provides improved tolerance to fogging by white light while maintaining desired imaging speed.
Abstract:
A radiation-sensitive composition includes an initiator composition, a radiation absorbing compound, and a particulate primary polymeric binder that has a backbone comprising multiple urethane moieties and further comprises side chains comprising free radically polymerizable groups attached to the backbone. This primary polymeric binder can be used in place of or in addition to a conventional free radically polymerizable component. This composition can be used to provide negative-working imageable elements that can be imaged and developed to provide lithographic printing plates.
Abstract:
The disclosure discloses an image copying method, which includes the steps of: copying, an image to be copied, to a destination address line by line, in the case of the image to be copied having a width of one pixel; copying, the image to be copied, to the destination address by a number of bytes according to a size of the image to be copied, in the case of the image to be copied not having a width of one pixel. The image copying method can save the image copying time and deduce the Central Processing Unit (CPU) occupation rate.
Abstract:
The disclosure discloses an image copying method, which includes the steps of: copying, an image to be copied, to a destination address line by line, in the case of the image to be copied having a width of one pixel; copying, the image to be copied, to the destination address by a number of bytes according to a size of the image to be copied, in the case of the image to be copied not having a width of one pixel. The image copying method can save the image copying time and deduce the Central Processing Unit (CPU) occupation rate.
Abstract:
A negative-working imageable element has an imageable layer and a topcoat layer that contains a composition that will change color upon exposure to imaging infrared radiation. The imageable element can be imaged and developed on-press to provide images with improved contrast for print-out.
Abstract:
A negative-working imageable element has an imageable layer that includes an initiator composition including an iodonium cation and a borate anion, an infrared radiation absorbing compound, a particulate primary polymeric binder, and a phosphate (meth)acrylate adhesion promoter. The element also includes a polymeric overcoat disposed over the imageable layer and can be developed on-press to provide a lithographic printing plate with high run length. The element also has improved shelf-life.
Abstract:
A radiation-sensitive composition and negative-working imageable element includes a free radically polymerizable component, an initiator composition capable of generating radicals sufficient to initiate polymerization of the free radically polymerizable component upon exposure to imaging radiation, a radiation absorbing compound, and particles of a poly(urethane-acrylic) hybrid that are distributed throughout the composition forming an imageable layer in the element. Imaging can be accomplished at a wide range of wavelengths from about 150 to about 1500 nm, and development can be accomplished using an organic solvent-based developer, warm water, plate cleaner, or on-press using a combination of a lithographic printing ink and a fountain solution.