Image forming apparatus
US-2020244838-A1 · Jul 30, 2020 · US
US2016337552A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2016337552-A1 |
| Application number | US-201615219900-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jul 26, 2016 |
| Priority date | Mar 17, 2014 |
| Publication date | Nov 17, 2016 |
| Grant date | — |
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N is defined to be an integer of 2 or more, and K is a positive integer that satisfies K<N. An arithmetic operation unit performs 2 K ways of processing, which are a sum of 2 K −1 ways of processing for obtaining converted gradation data based on addition of high-order gradation data composed of high-order (N−K) bits of N-bit original gradation data and low-order K-bit data of the original gradation data, and processing directly using the high-order gradation data as the converted gradation data. A selector selects, in response to each of a plurality of heating resistors, any of the converted gradation data as gradation data for performing gradation recording by using a line thermal head including the plurality of heating resistors, the converted gradation data being obtained by the 2 K ways of processing.
Opening claim text (preview).
What is claimed is: 1 . A gradation data generation device comprising: an arithmetic operation unit configured, when N is an integer of 2 or more and K is a positive integer that satisfies K<N, to perform 2 K ways of processing, which are a sum of 2 K -1 ways of processing for obtaining converted gradation data based on addition of high-order gradation data composed of high-order (N−K) bits of N-bit original gradation data and low-order K-bit data of the original gradation data, and processing directly using the high-order gradation data as the converted gradation data; and a selector configured to select, in response to each of a plurality of heating resistors, any of the converted gradation data as gradation data for performing gradation recording by using a line thermal head including the plurality of heating resistors, the converted gradation data being obtained by the 2 K ways of processing. 2 . The gradation data generation device according to claim 1 , further comprising a data select table configured to store a table in which a correspondence relationship is set so that the 2 K ways of processing and 2 K pieces of the successive heating resistors in the line thermal head are allowed to correspond to each other in a one-to-one relationship, wherein the selector selects the converted gradation data based on the correspondence relationship set in the table. 3 . The gradation data generation device according to claim 2 , wherein, in the table, the correspondence relationship is set so that the 2 K ways processing is not repeated in heating resistors having the same pixel address on 2 K pieces of successive lines. 4 . The gradation data generation device according to claim 1 , wherein N is 8 or 10, and K is 1 or 2. 5 . A gradation data generation method comprising: obtaining high-order gradation data composed of high-order (N−K) bits of N-bit original gradation data, where N is an integer of 2 or more, and K is a positive integer that satisfies K<N; executing 2 K ways of processing, which are a sum of 2 K -1 ways of processing for obtaining converged gradation data and processing of directly using the high-order gradation data as the converted gradation data, based on addition of the obtained high-order gradation data and low-order K-bit data of the original gradation data; and selecting, in response to each of a plurality of heating resistors, any of the converted gradation data as gradation data for performing gradation recording by using a line thermal head including the plurality of heating resistors, the converted gradation data being obtained by the 2 K ways of processing.
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