A data processing apparatus measures ink-unapplied and ink-applied regions to generate reliable color profiles.
Constructing a laser scan path model allows electronic image warping to correct bow and skew caused by optical element imprecision and component aging.
A signal generating circuit aligns horizontal and vertical synchronization signals to maintain frame timing during image conversion.
Digital pseudo-random patterns replicate UV and IR security features using standard printing materials, eliminating costly special inks.
A printer driver combines drawing instructions based on specific conditions to reduce data size and improve processing speed.
Suspends original data updates until all group users access reference information, preventing inconsistent data versions during image processing.
A color conversion LUT selecting section chooses a fundamental lookup table based on ink colors and feature points information.
Variable pass count ink jet printing switches particular color ink use to balance speed and quality.
A web-based printing system eliminates driver installation costs by converting user content into binary data for sliding print on handheld devices.
A software application interface module provides remote control of specialty devices through a computer network.
A print mediator acquires printer color rendering data to generate visual document representations for user review.
Automated color matching resolves inconsistency across devices by converting captured images into standardized CIE L*a*b* values.
A print control apparatus selectively rasterizes target pages within a specified range to skip unnecessary processing.
A carriage module uses a cam and pin mechanism to adjust the distance between the lens and image sensor.
Authentication requesting means initiates network verification before print process starts, preventing throughput deterioration during data reception.
Drainage openings in the cup post terminal sidewall remove oil contaminants from the pocket, maintaining reliable energy transfer at the spark plug interface.
Neugebauer primary area coverages map ink states to a convex hull, expanding the addressable color gamut beyond traditional visual inspection limits.
Segmenting merchandise and index labels prevents inappropriate information display while maintaining accurate data correlation.
A printing machine extracts speed ratio data from transfer belt rollers to control image formation timing.
Sequential drive control initiates downstream image forming units to eliminate feeding belt sag and prevent color shifts.
A data structure for Blu-ray discs uses byte-unit identification in control information fields to manage recording attributes and address units.
A dual-stage gradation correction system manages total toner amount control to preserve image quality.
A display control device generates specific images and controls their animation state to visualize print processing steps.
Control sections segment intermediate language data to enable parallel analysis processing across multiple cores.
Pre-lamination forms a raised portion on the inner layer that fills the transparent window opening, preventing material collapse and uneven surfaces.
An information processing device searches for network-connected image output devices and discloses available options to users.
A print driver manages scan job retrieval through a unified interface.
A data reception apparatus uses separate main and sub processing sections to detect communication errors when connection signals are missed.
Segmenting images into regions allows applying seam carving only to important areas, reducing computational complexity while preserving visual quality.
A color management system preserves K-only grays using a virtual RGB intermediary for direct mapping.
Digital barcode credentials on mobile devices enable automated scanning stations to verify access levels without manual intervention.
Pre-converting targeted data into reduced-size images eliminates server upload delays and protects user privacy during icon generation.
A mediator bridges separate printer systems to unify monitoring, resolving the trade-off between ease of operation and system complexity.
Transferring screen data to local storage before operational readiness reduces system bus contention and maintains image forming apparatus performance.
A control section adjusts image data transfer rates based on real-time reading states to maintain continuous communication.
A Linux printing option setting apparatus accepts text input for configuration parameters and stores the data in memory.
A printing device control unit manages data storage units to receive image data through separate transfer paths.
A human-body communication unit reads user data through the operator's body to enable function-specific access control.
A software system organizes diverse data sources into flexible page layouts for efficient hardcopy output.
A selection unit routes packets from multiple communication interfaces to a shared response processing unit.
A print control device arranges drawing data to adapt available sheet sizes for post-processing workflows.
Staggered pixel insertion minimizes texture irregularities and density ununiformity during image scaling by reversing separation direction at short intervals.
A printer driver selects job and drawing command modules to match specific printer specifications.
A touch panel display differentiates its appearance based on unfinished job presence to guide user interaction.
A print ratio setting unit adjusts forward and backward scan ratios based on multi-value image data to generate optimized binary print data.
Tracking ejected ink droplets determines color correction parameter generation needs, eliminating test pattern recording and measurement time.
Cloud intermediary routes print jobs securely to remote printers, resolving security and ease-of-operation trade-offs without local IT assets.
Segmenting core processes into a universal driver reduces plug-in development complexity while maintaining function expansion capability.
A dimension correction image reading section generates correction data using mark distances to adjust image formation.