Thermal recording head driving control system
First Claim
1. A system for controlling the activation of a heat-producing element mounted on a substrate of a thermal recording head, comprising:
- detecting means for detecting the temperature of said substrate;
first storing means for temporarily storing image data in the form of a binary number to be recorded;
pulse forming means connected to receive said image data from said first storing means for forming an activation pulse to be applied to said heat-producing element for activation thereof, said activation pulse being indicative of the level of activation energy to be supplied to said heat-producing element when activated; and
control means connected to said pulse forming means for controlling the level of activation energy of said activation pulse formed by said pulse forming means in response to a temperature signal indicating the temperature of said substrate supplied from said detecting means and said image data supplied from said first storing means, said control means including measuring means for measuring an elapsing time t after the last preceding activation of said heat-producing element, wherein said control means controls the energy level Ein of said activation pulse according to the following relation;
space="preserve" listing-type="equation">E.sub.in =E.sub.0 (1-AΔ
T.sub.p)(1-exp(-t/ C.sub.1 R.sub.1))where,C1 ;
thermal capacity of said heat-producing element,R1 ;
thermal resistance from said heat-producing element to said substrate,E0 ;
energy level required to obtain a recorded image of desired quality when said substrate is at a reference temperature,A;
constant, andΔ
Tp ;
temperature difference from said reference temperature.
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Abstract
A thermal recording head driving control system for controlling the activation of heat-producing elements mounted on a substrate is provided. The driving control system includes a shift register having a number of bits corresponding to the heat-producing elements. The image data stored in the shift register is serially supplied to one input terminal of an AND gate which has its the other input terminal connected to receive a control pulse and its output terminal connected to supply an activation pulse to the thermal recording head. The activation pulse is formed from the image signal depending upon the condition of the control pulse which is determined by the temperature of the substrate on which the heat-producing elements are mounted and the activation history of each of the heat-producing elements. Specifically, the same image data is repetitively supplied to the shift register over a predetermined number of times at a speed much faster than the line scanning speed along the linear array of heat-producing elements, wherein the number of activation pulses produced is controlled by changing the binary state of the control pulse.
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Citations
13 Claims
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1. A system for controlling the activation of a heat-producing element mounted on a substrate of a thermal recording head, comprising:
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detecting means for detecting the temperature of said substrate; first storing means for temporarily storing image data in the form of a binary number to be recorded; pulse forming means connected to receive said image data from said first storing means for forming an activation pulse to be applied to said heat-producing element for activation thereof, said activation pulse being indicative of the level of activation energy to be supplied to said heat-producing element when activated; and control means connected to said pulse forming means for controlling the level of activation energy of said activation pulse formed by said pulse forming means in response to a temperature signal indicating the temperature of said substrate supplied from said detecting means and said image data supplied from said first storing means, said control means including measuring means for measuring an elapsing time t after the last preceding activation of said heat-producing element, wherein said control means controls the energy level Ein of said activation pulse according to the following relation;
space="preserve" listing-type="equation">E.sub.in =E.sub.0 (1-AΔ
T.sub.p)(1-exp(-t/ C.sub.1 R.sub.1))where, C1 ;
thermal capacity of said heat-producing element,R1 ;
thermal resistance from said heat-producing element to said substrate,E0 ;
energy level required to obtain a recorded image of desired quality when said substrate is at a reference temperature,A;
constant, andΔ
Tp ;
temperature difference from said reference temperature. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10)
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11. A thermal recording system comprising;
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a substrate; a plurality of heat-producing elements arranged in the form of an array as mounted on said substrate; pulse forming means for forming energy pulses to be applied to said plurality of heat-producing elements on the basis of image data of a predetermined number of bits to be recorded, said pulse forming means forming said energy pulses more than once for the same image data; a shift register having like plurality of bits for receiving said energy pulses; a latch having like plurality of bits and connected to receive said energy pulses from said shift register, each bit of said latch being connected to the corresponding one of said plurality of heat-producing elements, whereby said energy pulses formed by said pulse forming means are applied to said plurality of heat-producing elements more than once. - View Dependent Claims (12, 13)
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Specification