Abstract:
PURPOSE:To improve the efficiency of facsimile communication by inputting origin of call information to be added with the facsimile communication as origin of call information picture data, and storing it in a rewritable picture data memory part, and synthesizing it in original picture data, and inserting it into an optional designated position on a facsimile picture. CONSTITUTION:By inputting the origin of call information to be added in the facsimile communication as the origin of call information picture data from a scanner part 1, an optional original picture can be inputted as the origin of call information. Besides, the origin of call information from remote party facsimile equipment received at the beginning of facsimile reception is stored in the rewritable picture data memory part 4, and synthesized in succeeding reception original picture data at a reception side, and the origin of call information picture is inserted into the optional designated position on the facsimile reception picture. Thus, the facsimile communication can be efficiently executed.
Abstract:
PROBLEM TO BE SOLVED: To set radio communication standard information on another electronic apparatus, through direct communication centered about a single electronic apparatus. SOLUTION: On electronic apparatus which has a function of communicating with a radio network is mounted with a standard information acquiring unit which acquires radio communication standard information of the radio network and a standard information setting unit which reports the radio communication standard information that the one electronic apparatus acquires to the other electronic apparatus connected to the radio network. The other electronic apparatus is mounted with a standard information setting unit, which decides whether radio communication standard information matches the radio communication standard information stored in its apparatus, when the radio communication standard information is reported from another apparatus connected to the radio network and substitutes the reported radio communication standard information for the radio communication standard information stored in its apparatus, when matching of both is not obtained. COPYRIGHT: (C)2009,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To control only a transmitting function into an OFF state out of all available hardware interfaces. SOLUTION: Low power consumption mode corresponding type electronic equipment with a plurality of hardware interfaces installed for communication with external devices, is equipped with a return interface setting part for variably setting a part of a plurality of hardware interfaces, as a return interface which stands by to receive return signals. COPYRIGHT: (C)2008,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To solve the problem that a main power source loaded in a printer of an inkjet system becomes large consequent on the fact that a printing resolution is made highly fine and a printing speed is made high. SOLUTION: An electronic instrument loading a hard disk driving part is loaded with (a) the main power source which is connected to a commercial power supply and supplies a first power to the hard disk driving part, (b) a sub-power source of a charging type which supplies a second power that compensates for the first power to the hard disk driving part when the hard disk driving part starts, and (c) a switch part which is located on a feeding line of the power and electrically connects the sub-power source to the feeding line of the power when the hard disk driving part starts. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To realize high speed transfer of image data included in a digital broadcast program received by a receiver to a printer at low cost. SOLUTION: A receiver (STB 30) that receives a digital broadcast program, a display device 31 that displays the digital broadcast program received by the STB 30, and a printer 32 that prints out image data included in the digital broadcast program received by the STB 30 are interconnected by a 1st signal transmission means that transmits a digital signal. Then the printer 32 acquires the image data from the receiver 30 via the 1st signal transmission means.
Abstract:
PROBLEM TO BE SOLVED: To reduce a time period required for printing an image and to readily obtain a printed image having a sufficient composition. SOLUTION: A positional relationship between first digital image data inputted from an image data input section 1 at a human interface section 28 and an image printing range pattern is relatively varied and/or the image printing range pattern is varied, then an image printing range is confirmed. An expanding processing to the first digital image data is executed on an as-needed basis by a data processing section 5 by selecting image data in the image printing range pattern and/or an expanding processing by tuning an input position at an input position tuning section 29 when inputting an analog image signal, then the image data input section 1 is allowed to generate the first digital image data again and the first digital image data is printed out.
Abstract:
PROBLEM TO BE SOLVED: To easily obtain a printing image having sufficient composition. SOLUTION: A data processing part 5 extracts and judges at least either one of vertical and horizontal image components of a 1st prescribed digital picture data inputted from a picture data input part 1 and judges an angle formed by the extracted image component and its corresponding direction, an input position adjusting part 29 rotationally moves the input position of an original analog picture signal based on the judged result to generate 1st digital picture adjusted by the picture data input part 1 and/or generate 1st digital picture data changed by rotationally moving the contents of the 1st digital picture data by the data processing part 5. The data processing part 5 judges whether the contents of a prescribed image are included in a specific range or not, and when the contents are included, changes the contents so as to be arranged in a regulated area to generate rearranged 1st digital picture data.
Abstract:
PROBLEM TO BE SOLVED: To accurately control the density of ink liquid droplets by selecting a signal corresponding to the density of dots to be printed from a plurality of preset signals and changing the ratio of ink and a solvent corresponding to the selected signal to mix the ink and the solvent. SOLUTION: When ink liquid proplets are emitted for the purpose of printing, at first, a drive signal is applied to a second heating element 26 according to density data and ink 14 is extruded to a mixing part 22 from a second orifice 27. The amt. of the extruded ink is controlled by the drive signal applied to the second heating element 26. Next, a constant drive signal is applied to a first heating element 19 and a solvent 11 begins to jet from the first orifice 20 and the ink 14 extruded to the mixing part 22 is mixed with a solvent 11. At this time, the drive signal of the second heating element 26 is turned OFF. Thereafter, by the turning-OFF of the drive signal to the first heating element 19, a constriction is generated in the solvent 11 mixed with the ink 14 to emit ink liquid droplets.
Abstract:
PROBLEM TO BE SOLVED: To facilitate the position correction by storing the minimum correction value for correcting the driving timing of a print head in scanning in going and returning directions in a ROM, and finding a correction amount by multiplying the minimum correction value and an integer in a nonvolatile memory for correcting the printing position. SOLUTION: The minimum correction value for correcting the driving timing of a print head in going and returning directions is stored in a ROM 4, and an integer value n, which is a multiple of the minimum correction value is stored in an EE-PROM 21. Based on the signal of a discharging timing in the scanning printing in the going direction, the position where the signal of the scanning printing in the returning direction is to be printed in alignment with the scanning printing in the going direction is judged in a CPU 3 so as to measure the position of displacement caused by the mechanism of the print head in scanning in the going and returning directions. Based on the displacement position, a correction amount is found by multiplying the minimum correction value and the integer (n) so as to shift the timing of the driving signal for discharging the liquid drops for compensating the mechanical displacement of the print head.
Abstract:
PROBLEM TO BE SOLVED: To provide a printer and a printing head capable of printing out a high-grade image and character printing high in resolving power by single operation. SOLUTION: A printer is constituted of recording heads Y, M, C being first printing heads arranged in an X main scanning direction and a recording head Bk being a second printing head. Three (N=3) nozzle groups 10 are arranged to the recording heads Y, M, C in a Y sub-scanning direction and six (N'=6) nozzle groups 11 are arranged to the recording head Bk and the first printing heads and the second recording head are arranged stepwise in the Y sub- scanning direction so as to be shifted by a resolving power element interval. Printings different in resolving power are performed by using interleave operation using the first and second printing heads.