EP0260992A2

Gradation control device for thermal ink-transfer type printing apparatus.

Abstract

A gradation control device for a thermal ink-transfer type printing apparatus controls an applying time of a current to each of heating elements (R1-Rn) of a thermal printing head (16) depending on a voltage drop introduced between a power source and the thermal printing head, so that it is possible to constantly print the same gradation level with the same printing dot size regardless of the printing data.

EP0260992A2, drawing sheet 1
Sheet 1 of 7

Term

Term ended

Projected expiry passed 18 September 2007, 19 years ago.

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7 claims: 4 independent, 3 dependent

  1. 1
    A gradation control device for a thermal ink-transfer type printing apparatus, said printing apparatus comprising a power source and a thermal printing head (16) coupled to said power source through a transmission path and provided with n heating elements (R1-Rn) arranged in line, said n heating elements heating an ink film (12) coated with a kind of ink which melts due to heat and transferring the melted ink onto a recording sheet (14) which makes contact with the ink sheet to print images line by line, said gradation control device comprising memory means (20) for storing at least n digital data of natural binary code which represent gradation levels with which the printing is to be carried out; converting means (21, 24, 25, 31) including means (21) for repeatedly reading out the n digital data from said memory means in response to a clock pulse signal having a constant repetition frequency m times in a time period in which one line is printed and means (25) for generating a reference printing density datum a value of which is changed every time the n digital data are read out once, said converting means producing control data in a form of a serial n-bit data signal having a constant bit rate in accordance with said constant repetition frequency every time the n digital data are read out once, each control datum constituting. the serial n-bit data signal having a logic value "1" or "0" depending on whether or not each value of the n digital data is greater than or equal to the value of said reference printing datum; and serial-to-parallel converting means (26, 27) for converting said n-bit data signal into a parallel n-bit data signal, characterized in that there are provided:voltage drop detecting means (42) for detecting a voltage drop in the transmission path between said power source and said thermal printing head and for producing a voltage drop datum dependent on the detected voltage drop;heating pulse generating means (28) for generating m heating pulses for printing one line, said m heating pulses having pulse widths which are variable as a function of the value of the reference printing density datum and said voltage drop datum;and driving means (G1-Gn, T1-Tn) supplied with said parallel n-bit data signal and said heating pulses for supplying to each of said n heating elements having a corresponding control datum with the logic value "1" a current having a predetermined magnitude for the widths of the heating pulses.
  2. 5
    A gradation control device as claimed in any of claims 1 to 4, characterized in that said voltage drop detecting means comprises a differential amplifier (53) for amplifying a voltage difference between a constant reference voltage and a terminal voltage of said thermal printing head, an integrating circuit (54) for integrating an output of said differential amplifier, a sample and hold circuit (56) for sampling and holding an output of said integrating circuit, and an analog-to-digital converter (58) for converting an output of said sample and hold circuit into a digital signal which is outputted as said voltage drop datum.
  3. 6
    A gradation control device as claimed in any of claims 1 to 4, characterized in that said voltage drop detecting means comprises a differential amplifier (53) for amplifying a voltage difference between a constant reference voltage and a terminal voltage of said thermal printing head, a peak detecting circuit (60) for detecting a peak of an output of said differential amplifier, and an analog-to-digital converter (62) for converting an output of said peak detecting circuit into a digital signal which is outputted as said voltage drop datum.
  4. 7
    A gradation control device as claimed in any of claims 1 to 4, characterized in that said voltage drop detecting means comprises a differential amplifier (53) for amplifying a voltage difference between a constant reference voltage and a terminal voltage of said thermal printing head, a sample and hold circuit (60) for sampling and holding a peak of an output of said differential amplifier, and an analog-to-digital converter (62) for converting an output of said sample and hold circuit into a digital signal which is outputted as said voltage drop datum.