Abstract:
The present invention includes an apparatus for and method of creating electrically modifiable images using a computer printer. In one embodiment, one or more ink reservoirs of a printer cartridge are filled with an electrochromic ink. The printer thus prepared can be used to print electrochromic patterns on a surface using standard ink application methods. In certain embodiments, more than one ink reservoir is filled with electrochromic ink. In these embodiments, separate reservoirs are filled with separate ink formulations so that the characteristics of the electrochromic pattern can be varied.
Abstract:
An image transfer system, including a member for supporting print media, the member including a pair of sidewalls depending therefrom, a pair of end caps, wherein one end cap is connected to the sidewalls at an end thereof and the other end cap is connected to the opposite end of the sidewalls, and a heating element disposed against the underside of the member and in contact with each of sidewalls and end caps.
Abstract:
In a serial recording apparatus having three recording modes, i.e., normal, high-quality, and high-speed recording mode, sheet feed control satisfying requirements in these modes is performed. More specifically, high-speed sheet feed control is performed in the normal or high-speed recording mode, and low-noise sheet feed control with improved precision is performed in the high-quality recording mode although the speed is low.
Abstract:
The ink-jet recording method and apparatus use an ink containing at least, a pigment self-dispersible in water, a water soluble organic solvent and water, and carry out printing with an amount of the ink of 20 ng or less per one droplet, and the ink satisfies the following conditions: a dynamic contact angle upon dropping 4 &mgr;L of the ink on plain paper is about 60° or less after one second from dropping; a volume average particle diameter mv of dispersed particles of the pigment in the ink is about from 150 to 250 nm; and in the dispersed particles, a number of particles having a particle diameter of from 0.5 to 5 &mgr;m is about from 25×104 to 2,000×104 per microliter, and a number of particles having a particle diameter of 5 &mgr;m or more is about 100 per microliter or less.
Abstract:
The present invention relates to anisotropic colorants and ink-jet ink compositions that include the anisotropic colorants. These anisotropic colorants are highly stable and can be designed to provide enhanced chroma, gloss, gloss uniformity, smearfastness, print quality, drytime, and improved resistance to water when applied to a media. Moreover, inks formulated with these new colorants are useful in ink-jet printing, including thermal ink jet printing, piezoelectric ink jet printing, and continuous ink jet printing.
Abstract:
It is an object of the present invention to provide an ink-jet print method which can uniformly distribute inks within each pixel array when a color filter is to be colored in a plurality of scanning operations. In order to achieve this object, there is provided an ink-jet print method of coloring each pixel array on a substrate by using an ink-jet head having a plurality of ink discharging nozzles while changing the ink discharging nozzle used to color one line for every scanning operation, including discharging the inks discharged in the plurality of scanning operations such that the inks are arranged at equal intervals within each pixel array.
Abstract:
Ink composition, especially for inkjet printing apparatus, which includes an aqueous liquid vehicle in which solid pigment particles are dispersed. To achieve improved functionality for producing water-resistant printouts, the pigment particles are made as continuously colored thermoplastic particles. Moreover, the subject matter of the invention is an ink printing process matched to this ink composition and as well as an ink printing apparatus therefore.
Abstract:
Method of printing with ultraviolet photosensitive resin-containing materials includes depositing at least one substance that includes an ultraviolet photosensitive resin on to a substrate, partially curing the substance by irradiating the substance with at least one ultraviolet light emitting device, and completely curing the substance. Substance curing system including a substrate, an applicator that deposits a substance that includes an ultraviolet photosensitive resin on to a substrate, and at least one ultraviolet light emitting device usable to irradiate the substance to partially cure and/or completely cure the substance.
Abstract:
A high quality printing of images such as photographs, designs, and the like, is effected without using special paper. The following is provided: a supply mechanism for supplying a recording medium; means for applying a surface modified for coating the surface modifier on the surface modification area, which is the area to be modified of the recording medium supplied with the aforementioned means for supplying; and means for drying for drying the surface modification area coated on the aforementioned surface modification area. An area can be printed on the surface modification area with high quality. As such, high quality printing is made possible with regular paper, without using special paper, as before.