EP0803361A2

Ink-jet head, ink-jet cartridge, and ink jet recording apparatus

Abstract

The present invention provides an ink-jet head having a plurality of heaters for one ejection outlet, wherein the heaters and the outlet are disposed so as to satisfy a specific relationship, and thereby errors in the path of ejected ink droplets concerning the driving positions of the heaters can be restricted.

EP0803361A2, drawing sheet 1
Sheet 1 of 28

Term

Term ended

Projected expiry passed 21 April 2017, 9.4 years ago.

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  5. Today

13 claims: 6 independent, 7 dependent

  1. 1
    An ink-jet head comprising:an ejection outlet portion which has an ejection outlet, and is convergent toward said outlet;an ink channel communicating with said outlet;a first heater and a second heater which are disposed in said ink channel and can be individually driven;and an element substrate equipped with said heaters, wherein: said first heater and second heater have different heating powers and are distantly disposed from each other;and the following formula: tan -1 S N S O (Sinθ 1 +Sinθ 2 ) S N ​ 2 -S O ​ 2 Sinθ 1 Sinθ 2 ≦ 5° is satisfied with the angle θ 1 formed between the areal center of said first heater and the projection point of the areal center of said ejection outlet onto the element substrate surface provided with said heaters via the areal center of said ejection outlet, the angle θ 2 similarly formed but using the areal center of said second heating member, the sectional area S N of said ink channel perpendicular to the ink-ejecting direction, and the area S O of said ejection outlet.
  2. 7
    An ink-jet head comprising:an ejection outlet portion which has an ejection outlet, and is convergent toward said outlet;a pressure chamber communicating with said outlet;a first heater and a second heater which are provided in said pressure chamber, disposed so as to oppose said ejection outlet, and can be individually driven;and an element substrate equipped with said heaters, wherein: said first heater and second heater have different heating powers and are distantly disposed;and the following formula: tan -1 S N S O (Sinθ 1 +Sinθ 2 ) S N ​ 2 -S O ​ 2 Sinθ 1 Sinθ 2 ≦ 5° is satisfied with the angle θ 1 formed between the areal center of said first heater and the projection point of the areal center of said ejection outlet onto the element substrate surface provided with said heaters via the areal center of said ejection outlet, the angle θ 2 similarly formed but using the areal center of said second heating member, the sectional area S N of said pressure chamber perpendicular to said element substrate equipped with said heating members, and the area S O of said ejection outlet.
  3. 9
    An ink-jet recording apparatus which achieves recording by ink-ejecting, and comprises an ink-jet head and a driving signal supplying circuit, said ink-jet head comprising:an ejection outlet portion which has an ejection outlet, and is convergent toward said outlet;an ink channel communicating with said outlet;a first heater and a second heater which are disposed in said ink channel and can be individually driven;and an element substrate equipped with said heaters, said circuit supplying individual driving signals for said first heater and second heater, wherein: said first heater and second heater have different heating powers and are distantly disposed;and the following formula: tan -1 S N S O (Sinθ 1 +Sinθ 2 ) S N ​ 2 -S O ​ 2 Sinθ 1 Sinθ 2 ≦ 5° is satisfied with the angle θ 1 formed between the areal center of said first heater and the projection point of the areal center of said ejection outlet onto the element substrate surface provided with said heaters via the areal center of said ejection outlet, the angle θ 2 similarly formed but using the areal center of said second heating member, the sectional area S N of said ink channel perpendicular to the ink-ejecting direction, and the area So of said ejection outlet.
  4. 10
    An ink-jet recording apparatus which achieves recording by ink-ejecting, and comprises an ink-jet head and a driving signal supplying circuit, said ink-jet head comprising:an ejection outlet portion which has an ejection outlet, and is convergent toward said outlet;a pressure chamber communicating with said outlet;a first heater and a second heater which are provided in said pressure chamber, disposed so as to oppose said ejection outlet, and can be individually driven;and an element substrate equipped with said heaters, said circuit supplying individual driving signals for said first heater and second heater, wherein: said first heater and second heater have different heating powers and are distantly disposed;and the following formula: tan -1 S N S O (Sinθ 1 +Sinθ 2 ) S N ​ 2 -S O ​ 2 Sinθ 1 Sinθ 2 ≦ 5° is satisfied with the angle θ 1 formed between the areal center of said first heater and the projection point of the areal center of said ejection outlet onto the element substrate surface provided with said heaters via the areal center of said ejection outlet, the angle θ 2 similarly formed but using the areal center of said second heating member, the sectional area S N of said pressure chamber perpendicular to said element substrate equipped with said heating members, and the area S O of said ejection outlet.
  5. 12
    An ink jet head or a recording apparatus or method using such a head wherein the relationship between the cross-sectional area S N of an ink channel, the area S O of an ink ejection outlet and the angles θ 1 and θ 2 of respective lines from a centre of each heating element to the centre of the ejection outlet to a centre line of the channel satisfy:tan -1 S N S O (Sinθ 1 +Sinθ 2 ) S N ​ 2 -S O ​ 2 Sinθ 1 Sinθ 2 ≦ 5°
  6. 13
    An ink jet head or recording apparatus using such an ink jet head having the features recited in any one or any combination of the preceding claims.