Abstract:
A system and method are provided for forming and implementing book binding geometries as a function of image receiving medium stack thicknesses for automated book binding in image forming devices. The disclosed schemes optimize book binding employing a plurality of strip-like binding elements to form loops in a process that employs heat and pressure to reduce residual stresses in the strips as they are formed into loops. The disclosed schemes mechanically modify a process of bending individual book-binding elements in a manner that more effectively employs less expensive material elements to provide consistent and durable “right-sized” book binding of finished documents. A combination of heat and pressure are introduced with a molded structure that results in controlling a radius of formation to be consistently followed by the “folded” binding elements in order to relieve the stress and preserve the integrity of those binding elements in the finished product.
Abstract:
A method, system, and apparatus for capturing information is disclosed. The method includes emitting energy of a first wavelength from a first energy source located proximate to a first end of a digital pen and forming a first set handwritten markings on the substrate by causing the substrate to image as a result of an exposure of the substrate to the energy emitted from the first energy source. The method also includes detecting by an image-capturing sensor of the digital pen a first detected portion of a position-identifying pattern on the substrate and storing in the memory a digital document file comprising the first set of handwritten markings and the first detected portion of the position-identifying data. An apparatus and system for performing the method is also disclosed.
Abstract:
A method, system, and apparatus for capturing information is disclosed. The method includes emitting energy of a first wavelength from a first energy source located proximate to a first end of a digital pen and forming a first set handwritten markings on the substrate by causing the substrate to image as a result of an exposure of the substrate to the energy emitted from the first energy source. The method also includes detecting by an image-capturing sensor of the digital pen a first detected portion of a position-identifying pattern on the substrate and storing in the memory a digital document file comprising the first set of handwritten markings and the first detected portion of the position-identifying data. An apparatus and system for performing the method is also disclosed.
Abstract:
A method, non-transitory computer readable medium, and apparatus for calculating a transaction quality score of a merchant are disclosed. For example, the method analyzes fraudulent transaction data in a fraudulent transaction data table for each one of a plurality of merchants, calculates a transaction quality score for the each one of the plurality of merchants based on the fraudulent transaction data, filters the plurality of merchants having a respective transaction quality score above a threshold and transmits the plurality of merchants having the respective transaction quality score above the threshold for display.
Abstract:
A method, non-transitory computer readable medium, and apparatus for calculating a transaction quality score of a merchant are disclosed. For example, the method analyzes fraudulent transaction data in a fraudulent transaction data table for each one of a plurality of merchants, calculates a transaction quality score for the each one of the plurality of merchants based on the fraudulent transaction data, filters the plurality of merchants having a respective transaction quality score above a threshold and transmits the plurality of merchants having the respective transaction quality score above the threshold for display.