Claims
- 1. An ink jet head comprising:
- an electrothermal transducer having a heat-generating resistor of an amorphous alloy containing at least one selected from the group consisting of Ti, Zr, Hf, Nb, Ta, W, Fe, Ni and Cr and a pair of electrodes connected electrically to said heat-generating resistor, a heat-generating portion being formed by said heat generating resistor between said pair of electrodes wherein said amorphous alloy is represented by
- M.sub.x (Fe.sub.100-y-z Ni.sub.y Cr.sub.z).sub.100-x
- wherein M is at least one selected from Ti, Zr, Hf, Nb, Ta and W, and x is 10-30;
- a support for said electrothermal transducer; and
- a liquid path formed on said support corresponding to the heat-generating portion of said electrothermal transducer, said liquid path communicating with a discharge opening for discharging liquid.
- 2. An ink jet head according to claim 1, wherein said amorphous alloy is represented by
- M.sub.x (Fe.sub.100-y-z Ni.sub.y Cr.sub.z).sub.100-x
- wherein M is at least one selected from Ti, Zr, Hf, Nb, Ta and W, and x is 20-70.
- 3. An ink jet head according to claim 1, wherein said amorphous alloy is Ta.sub.50 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.50.
- 4. An ink jet head according to claim 1, wherein said amorphous alloy is Ti.sub.25 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.75.
- 5. An ink jet head according to claim 1, wherein said amorphous alloy is Zr.sub.28 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.72.
- 6. An ink jet head according to claim 1, wherein said amorphous alloy is Hf.sub.28 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.72.
- 7. An ink jet heat according to claim 1, wherein said amorphous alloy is Nb.sub.56 (Fe.sub.68 Ni.sub.11 Cr.sub.21).sub.44.
- 8. An ink jet head according to claim 1, wherein said amorphous alloy is W.sub.31 (Fe.sub.68 N.sub.11 Cr.sub.21).sub.69.
- 9. An ink jet head according to claim 1, wherein said amorphous alloy is Ta.sub.32 Ti.sub.18 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.50.
- 10. An ink jet head according to claim 1, wherein said amorphous alloy is Nb.sub.28 Zr.sub.20 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.52.
- 11. An ink jet head according to claim 1, wherein said amorphous alloy is Hf.sub.35 W.sub.22 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.43.
- 12. An ink jet head according to claim 1, wherein said amorphous alloy is Ta.sub.40 Ti.sub.13 Nb.sub.11 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.36.
- 13. An ink jet head according to claim 1, wherein the specific resistance of said heat-generating resistor is 150-300 .mu.ohm.cm.
- 14. An ink jet head according to claim 1, wherein said heat-generating resistor is formed between said support and said electrode.
- 15. An ink jet head according to claim 1, wherein said electrode is formed between said support and said heat-generating resistor.
- 16. An ink jet head according to claim 1, wherein said electrothermal transducer generates heat energy used for discharging liquid.
- 17. An ink jet head according to claim 1, wherein the direction of liquid discharge from said discharge opening is substantially same as the direction of ink supply to said heat-generating portion.
- 18. An ink jet head according to claim 1, wherein the direction of liquid discharge from said discharge opening is different from the direction of ink supply to said heat-generating portion.
- 19. An ink jet head according to claim 18, wherein said two directions form substantially right angle.
- 20. An ink jet head according to claim 1, wherein said discharge opening is provided in a plural number.
- 21. An ink jet head according to claim 1, wherein said discharge opening is provided in a plural number corresponding to the width of recording medium.
- 22. An ink jet head according to claim 1, wherein the member for forming said liquid path on said support is a covering member having a groove for forming said liquid path.
- 23. An ink jet head according to claim 1, wherein the member for forming said liquid path on said support comprises a wall-forming member forming the wall of said liquid path and a top plate bonded to said wall-forming member.
- 24. An ink jet head according to claim 23, wherein said wall-forming member is formed using a photosensitive resin.
- 25. An ink jet head according to claim 1, wherein said protective layer is formed on said electrothermal transducer.
- 26. An ink jet head according to claim 25, wherein said protective layer is formed by use of SiO.sub.2.
- 27. An ink jet head according to claim 25, wherein said protective layer is formed by use of SiN.
- 28. An ink jet head comprising:
- an electrothermal transducer having a heat-generating resistor of an amorphous alloy containing at least one selected from the group consisting of Ti, Zr, Hf, Nb, Ta, W, Fe, Ni and Cr and a pair of electrodes connected electrically to said heat-generating resistor, a heat-generating portion being formed in said heat generating resistor between said pair of electrodes wherein said amorphous alloy is represented by
- M.sub.x (Fe.sub.100-y-z Ni.sub.y Cr.sub.z).sub.100-x
- wherein M is at least one selected from Ti, Zr, Hf, Nb, Ta and W, and y is 5-30;
- a support for said electrothermal transducer; and
- a liquid path formed on said support corresponding to the heat-generating portion of said electrothermal transducer, said liquid path communicating with a discharge opening for discharging liquid.
- 29. An ink jet head comprising:
- an electrothermal transducer having a heat-generating resistor of an amorphous alloy containing at least one selected from the group consisting of Ti, Zr, Hf, Nb, Ta, W, Fe, Ni and Cr and a pair of electrodes connected electrically to said heat-generating resistor, a heat-generating portion being formed in said heat generating resistor between said pair of electrodes wherein said amorphous alloy is represented by
- M.sub.x (Fe.sub.100-y-z Ni.sub.y Cr.sub.z).sub.100-x
- wherein M is at least one selected from Ti, Zr, Hf, Nb, Ta and W, and z is 10-30;
- a support for said electrothermal transducer; and
- a liquid path formed on said support corresponding to the heat-generating portion of said electrothermal transducer, said liquid path communicating with a discharge opening for discharging liquid.
- 30. An ink jet head substrate comprising:
- an electrothermal transducer having a heat-generating resistor of an amorphous alloy containing at least one selected from the group consisting of Ti, Zr, Hf, Nb, Ta, W, Fe, Ni and Cr and a pair of electrodes connected electrically to said heat-generating resistor, wherein said amorphous alloy is represented by
- M.sub.x (Fe.sub.100-y-z Ni.sub.y Cr.sub.z).sub.100-x
- wherein M is at least one selected from Ti, Zr, Hf, Nb, Ta and W, and x is 10-70; and
- a support for said electrothermal transducer.
- 31. A substrate for ink jet head according to claim 30, wherein said amorphous alloy is represented by
- M.sub.x (Fe.sub.100-y-z Ni.sub.y Cr.sub.z).sub.100-x
- wherein M is at least one selected from Ti, Zr, Hf, Nb, Ta and W and x is 20-70.
- 32. A substrate for ink jet head according to claim 30, wherein said amorphous alloy is Ta.sub.50 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.50.
- 33. A substrate for ink jet head according to claim 30, wherein said amorphous alloy is Ti.sub.25 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.75.
- 34. A substrate for ink jet head according to claim 30, wherein said amorphous alloy is Zr.sub.28 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.72.
- 35. A substrate for ink jet head according to claim 30, wherein said amorphous alloy is Hf.sub.28 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.72.
- 36. A substrate for ink jet head according to claim 30, wherein said amorphous alloy is Nb.sub.56 (Fe.sub.68 Ni.sub.11 Cr.sub.21).sub.44.
- 37. A substrate for ink jet head according to claim 30, wherein said amorphous alloy is W.sub.31 (Fe.sub.68 Ni.sub.11 Cr.sub.21).sub.69.
- 38. A substrate for ink jet head according to claim 30, wherein said amorphous alloy is Ta.sub.32 Ti.sub.18 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.50.
- 39. A substrate for ink jet head according to claim 30, wherein said amorphous alloy is Nb.sub.28 Zr.sub.20 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.52.
- 40. A substrate for ink jet head according to claim 30, wherein said amorphous alloy is Hf.sub.35 W.sub.22 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.43.
- 41. A substrate for ink jet head according to claim 30, wherein said amorphous alloy is Ta.sub.40 Ti.sub.13 Nb.sub.11 (Fe.sub.73 N.sub.10 Cr.sub.17).sub.36.
- 42. A substrate for ink jet head according to claim 30, wherein the specific resistance of said amorphous alloy is 150.about.300 .mu.ohm.cm.
- 43. A substrate for ink jet head according to claim 30, wherein said heat-generating resistor is formed between said support and said electrode.
- 44. A substrate for ink jet head according to claim 30, wherein said electrode is formed between said support and said heat-generating resistor.
- 45. A substrate for ink jet head according to claim 30, wherein said protective layer is formed on said electrothermal transducer.
- 46. A substrate for ink jet head according to claim 45, wherein said protective layer is formed by use of SiO.sub.2.
- 47. A substrate for ink jet head according to claim 45, wherein said protective layer is formed by use of SiN.
- 48. An ink jet head substrate comprising:
- an electrothermal transducer having a heat-generating resistor of an amorphous alloy containing at least one selected from the group consisting of Ti, Zr, Hf, Nb, Ta, W, Fe, Ni and Cr and a pair of electrodes connected electrically to said heat-generating resistor, wherein said amorphous alloy is represented by
- M.sub.x (Fe.sub.100-y-z Ni.sub.y Cr.sub.z).sub.100-x
- wherein M is at least one selected from Ti, Zr, Hf, Nb, Ta and W, and y is 5-30; and
- a support for said electrothermal transducer.
- 49. An ink jet head substrate comprising:
- an electrothermal transducer having a heat-generating resistor of an amorphous alloy containing at least one selected from the group consisting of Ti, Zr, Hf, Nb, Ta, W, Fe, Ni and Cr and a pair of electrodes connected electrically to said heat-generating resistor, wherein said amorphous alloy is represented by
- M.sub.x (Fe.sub.100-y-z Ni.sub.y Cr.sub.z).sub.100-x
- wherein M is at least one selected from Ti, Zr, Hf, Nb, Ta and W, and z is 10-30; and
- a support for said electrothermal transducer.
- 50. An ink jet apparatus comprising an ink jet head, said ink jet head comprising:
- an electrothermal transducer having a heat-generating resistor of an amorphous alloy containing at least one selected from the group consisting of Ti, Zr, Hf, Nb, Ta, W, Fe, Ni and Cr and a pair of electrodes connected electrically to said heat-generating resistor, a heat-generating portion being formed in said heat generating resistor between said pair of electrodes wherein said amorphous alloy is represented by
- M.sub.x (Fe.sub.100-y-z Ni.sub.y Cr.sub.z).sub.100-x
- wherein M is at least one selected from Ti, Zr, Hf, Nb, Ta and W, and x is 10-30;
- a support for said electrothermal transducer; and
- a liquid path formed on said support corresponding to the heat-generating portion of said electrothermal transducer, said liquid path communicating with a discharge opening for discharging liquid.
- 51. An ink jet apparatus according to claim 50, further comprising a power switch.
- 52. An ink jet apparatus comprising ink jet head, said ink jet head comprising:
- an electrothermal transducer having a heat-generating resistor of an amorphous alloy containing at least one selected from the group consisting of Ti, Zr, Hf, Nb, Ta, W, Fe, Ni and Cr and a pair of electrodes connected electrically to said heat-generating resistor, said heat generating portion being formed between said pair of electrodes wherein said amorphous alloy is represented by
- M.sub.x (Fe.sub.100-y-z Ni.sub.y Cr.sub.z).sub.100-x
- wherein M is at least one selected from Ti, Zr, Hf, Nb, Ta and W, and y is 5-30;
- a support for said electrothermal transducer; and
- a liquid path formed on said support corresponding to the heat-generating portion of said electrothermal transducer, said liquid path communicating with a discharge opening for discharging liquid.
- 53. An ink jet apparatus according to claim 52, further comprising a power switch.
- 54. An ink jet apparatus comprising an ink jet head, said ink jet head comprising:
- an electrothermal transducer having a heat-generating resistor of an amorphous alloy containing at least one selected from the group consisting of Ti, Zr, Hf, Nb, Ta, W, Fe, Ni and Cr and a pair of electrodes connected electrically to said heat-generating resistor, a heat generating resistor being formed in said heat generating resistor said pair of electrodes wherein said amorphous alloy is represented by
- M.sub.x (Fe.sub.100-y-z Ni.sub.y Cr.sub.z).sub.100-x
- wherein M is at least one selected from Ti, Zr, Hf, Nb, Ta and W, and z is 10-30;
- a support for said electrothermal transducer; and
- a liquid path formed on said support corresponding to the heat-generating portion of said electrothermal transducer, said liquid path being formed between said pair of electrodes and communicating with a discharge opening for discharging liquid.
- 55. An ink jet apparatus according to claim 54, further comprising a power switch.
- 56. An ink jet head according to claim 54, wherein said protective layer is formed on said electrothermal transducer.
- 57. An ink jet head according to claim 56, wherein said protective layer is formed by use of SiO.sub.2.
- 58. An ink jet head according to claim 56, wherein said protective layer is formed by use of SiN.
- 59. An ink jet head comprising:
- an electrothermal transducer having a heat-generating resistor of an alloy containing at least one selected from the group consisting of Ti, Zr, Hf, Nb, Ta, W, Fe, Ni and Cr and a pair of electrodes connected electrically to said heat-generating resistor, a heat-generating portion being formed in said heat generating resistor between said pair of electrodes wherein said alloy is represented by
- M.sub.x (Fe.sub.100-y-z Ni.sub.y Cr.sub.z).sub.100-x
- wherein M is at least one selected from Ti, Zr, Hf, Nb, Ta and W, and x is 10-30;
- a support for said electrothermal transducer; and
- a liquid path formed on said support corresponding to the heat-generating portion of said electrothermal transducer, said liquid path communicating with a discharge opening for discharging liquid.
- 60. An ink jet head according to claim 59, wherein said alloy is represented by
- M.sub.x (Fe.sub.100-y-z Ni.sub.y Cr.sub.z).sub.100-x
- wherein M is at least one selected from Ti, Zr, Hf, Nb, Ta and W, and x is 20-70.
- 61. An ink jet head according to claim 59, wherein said alloy is Ta.sub.50 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.50.
- 62. An ink jet head according to claim 59, wherein said alloy is Ti.sub.25 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.75.
- 63. An ink jet head according to claim 59, wherein said alloy is Zr.sub.28 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.72.
- 64. An ink jet head according to claim 59, wherein said alloy is Hf.sub.28 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.72.
- 65. An ink jet head according to claim 59, wherein said alloy is Nb.sub.56 (Fe.sub.68 Ni.sub.11 Cr.sub.21).sub.44.
- 66. An ink jet head according to claim 59, wherein said alloy is W.sub.31 (Fe.sub.68 Ni.sub.11 Cr.sub.21).sub.69.
- 67. An ink jet head according to claim 59, wherein said alloy is Ta.sub.32 Ti.sub.18 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.50.
- 68. An ink jet head according to claim 59, wherein said alloy is Nb.sub.28 Zr.sub.20 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.52.
- 69. An ink jet head according to claim 59, wherein said alloy is Hf.sub.35 W.sub.22 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.43.
- 70. An ink jet head according to claim 59, wherein said alloy is Ta.sub.40 Ti.sub.13 Nb.sub.11 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.36.
- 71. An ink jet head according to claim 59, wherein the specific resistance of said heat-generating resistor is 150-300 .mu.ohm.cm.
- 72. An ink jet head according to claim 59, wherein said heat-generating resistor is formed between said support and said electrode.
- 73. An ink jet head according to claim 59, wherein said electrode is formed between said support and said heat-generating resistor.
- 74. An ink jet head according to claim 59, wherein said electrothermal transducer generates heat energy used for discharging liquid.
- 75. An ink jet head according to claim 59, wherein the direction of liquid discharge from said discharge opening is substantially same as the direction of ink supply to said heat-generating portion.
- 76. An ink jet head according to claim 59, wherein the direction of liquid discharge from said discharge opening is different from the direction of ink supply to said heat-generating portion.
- 77. An ink jet head according to claim 76, wherein said two direction form substantially right angle.
- 78. An ink jet head according to claim 59, wherein said discharge opening is provided in a plural number.
- 79. An ink jet head according to claim 59, wherein said discharge opening is provided in a plurality number corresponding to the width of recording medium.
- 80. An ink jet head according to claim 59, wherein the member for forming said liquid path on said support is a covering member having a groove for forming said liquid path.
- 81. An ink jet head according to claim 59, wherein the member for forming said liquid path on said support comprises a wall-forming member forming the wall of said liquid path and a top plate bonded to said wall-forming member.
- 82. An ink jet head according to claim 81, wherein said wall-forming member is formed using a photosensitive resin.
- 83. A substrate for ink jet head according to claim 59, wherein said protective layer is formed by use of SiN.
- 84. An ink jet head comprising:
- an electrothermal transducer having a heat-generating resistor of an alloy containing at least one selected from the group consisting of Ti, Zr, Hf, Nb, Ta, W, Fe, Ni and Cr and a pair of electrodes connected electrically to said heat-generating resistor, a heat-generating portion being formed in said heat generating resistor between said pair of electrodes wherein said alloy is represented by
- M.sub.x (Fe.sub.100-y-z Ni.sub.y Cr.sub.z).sub.100-x
- wherein M is at least one selected from Ti, Zr, Hf, Nb, Ta and W, and y is 5-30;
- a support for said electrothermal transducer; and
- a liquid path formed on said support corresponding to the heat-generating portion of said electrothermal transducer, said liquid path communicating with a discharge opening for discharging liquid.
- 85. An ink jet head comprising:
- an electrothermal transducer having a heat-generating resistor of an alloy containing at least one selected from the group consisting of Ti, Zr, Hf, Nb, Ta, W, Fe, Ni and Cr and a pair of electrodes connected electrically to said heat-generating resistor, a heat-generating portion being formed in said heat generating resistor between said pair of electrodes wherein said alloy is represented by
- M.sub.x (Fe.sub.100-y-z Ni.sub.y Cr.sub.z).sub.100-x
- wherein M is at least one selected from Ti, Zr, Hf, Nb, Ta and W, and z is 10-30;
- a support for said electrothermal transducer; and
- a liquid path formed on said support corresponding to the heat-generating portion of said electrothermal transducer, said liquid path communicating with a discharge opening for discharging liquid.
- 86. An ink jet head substrate comprising:
- an electrothermal transducer having a heat-generating resistor of an alloy containing at least one selected from the group consisting of Ti, Zr, Hf, Nb, Ta, W, Fe, Ni and Cr and a pair of electrodes connected electrically to said heat-generating resistor, wherein said alloy is represented by
- M.sub.x (Fe.sub.100-y-z Ni.sub.y Cr.sub.z).sub.100-x
- wherein M is at least one selected from Ti, Zr, Hf, Nb, Ta and W, and x is 10-70; and
- a support for said electrothermal transducer.
- 87. A substrate for liquid jet head according to claim 86, wherein said alloy is represented by
- M.sub.x (Fe.sub.100-y-z Ni.sub.y Cr.sub.z).sub.100-x
- wherein M is at least one selected from Ti, Zr, Hf, Nb, Ta and W and x is 20-70.
- 88. A substrate for ink jet head according to claim 86, wherein said alloy is Ta.sub.50 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.50.
- 89. A substrate for ink jet head according to claim 86, wherein said alloy is Ti.sub.25 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.75.
- 90. A substrate for ink jet head according to claim 86, wherein said alloy is Zr.sub.28 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.72.
- 91. A substrate for ink jet head according to claim 86, wherein said alloy is Hf.sub.28 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.72.
- 92. A substrate for ink jet head according to claim 86, wherein said alloy is Nb.sub.56 (Fe.sub.68 Ni.sub.11 Cr.sub.21).sub.44.
- 93. A substrate for ink jet head according to claim 86, wherein said alloy is W.sub.31 (Fe.sub.68 Ni.sub.11 Cr.sub.21).sub.69.
- 94. A substrate for ink jet head according to claim 86, wherein said alloy is Ta.sub.32 Ti.sub.18 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.50.
- 95. A substrate for ink jet head according to claim 86, wherein said alloy is Nb.sub.28 Zr.sub.20 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.52.
- 96. A substrate for ink jet head according to claim 86, wherein said alloy is Hf.sub.35 W.sub.22 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.43.
- 97. A substrate for ink jet head according to claim 86, wherein said alloy is Ta.sub.40 Ti.sub.13 Nb.sub.11 (Fe.sub.73 Ni.sub.10 Cr.sub.17).sub.36.
- 98. A substrate for ink jet head according to claim 86, wherein the specific resistance of said alloy is 150.about.300 .mu.ohm.cm.
- 99. A substrate for ink jet head according to claim 86, wherein said heat-generating resistor is formed between said support and said electrode.
- 100. A substrate for ink jet head according to claim 86, wherein said electrode is formed between said support and said heat-generating resistor.
- 101. A substrate for ink jet head according to claim 86, wherein said protective layer is formed on said electrothermal transducer.
- 102. A substrate for ink jet head according to claim 101, wherein said protective layer is formed by use of SiO.sub.2.
- 103. An ink jet head substrate comprising:
- an electrothermal transducer having a heat-generating resistor of an alloy containing at least one selected from the group consisting of Ti, Zr, Hf, Nb, Ta, W, Fe, Ni and Cr and a pair of electrodes connected electrically to said heat-generating resistor, wherein said alloy is represented by
- M.sub.x (Fe.sub.100-y-z Ni.sub.y Cr.sub.z).sub.100-x
- wherein M is at least one selected from Ti, Zr, Hf, Nb, Ta and W, and y is 5-30; and
- a support for said electrothermal transducer.
- 104. An ink jet head substrate comprising:
- an electrothermal transducer having a heat-generating resistor of an alloy containing at least one selected from the group consisting of Ti, Zr, Hf, Nb, Ta, W, Fe, Ni and Cr and a pair of electrodes connected electrically to said heat-generating resistor, wherein said alloy is represented by
- M.sub.x (Fe.sub.100-y-z Ni.sub.y Cr.sub.z).sub.100-x
- wherein M is at least one selected from Ti, Zr, Hf, Nb, Ta and W, and z is 10-30; and
- a support for said electrothermal transducer.
- 105. An ink jet apparatus comprising an ink jet head, said ink jet head comprising:
- an electrothermal transducer having a heat-generating resistor of an alloy containing at least one selected from the group consisting of Ti, Zr, Hf, Nb, Ta, W, Fe, Ni and Cr and a pair of electrodes connected electrically to said heat-generating resistor, a heat-generating portion being formed in said heat generating resistor between said pair of electrodes wherein said alloy is represented by
- M.sub.x (Fe.sub.100-y-z Ni.sub.y Cr.sub.z).sub.100-x
- wherein M is at least one selected from Ti, Zr, Hf, Nb, Ta and W, and x is 10-30;
- a support for said electrothermal transducer; and
- a liquid path formed on said support corresponding to the heat-generating portion of said electrothermal transducer, said liquid path communicating with a discharge opening for discharging liquid.
- 106. An ink jet apparatus according to claim 105, further comprising a power switch.
- 107. An ink jet apparatus comprising ink jet head, said ink jet head comprising:
- an electrothermal transducer having a heat-generating resistor of an alloy containing at least one selected from the group consisting of Ti, Zr, Hf, Nb, Ta, W, Fe, Ni and Cr and a pair of electrodes connected electrically to said heat-generating resistor, a heat-generating portion being formed in said heat generating resistor between said pair of electrodes wherein said alloy is represented by
- M.sub.x (Fe.sub.100-y-z Ni.sub.y Cr.sub.z).sub.100-x
- wherein M is at least one selected from Ti, Zr, Hf, Nb, Ta and W, and y is 5-30;
- a support for said electrothermal transducer; and
- a liquid path formed on said support corresponding to the heat-generating portion of said electrothermal transducer, said liquid path communicating with a discharge opening for discharging liquid.
- 108. An ink jet apparatus according to claim 107, further comprising a power switch.
- 109. An ink jet apparatus comprising an ink jet head, said ink jet head comprising:
- an electrothermal transducer having a heat-generating resistor of an alloy containing at least one selected from the group consisting of Ti, Zr, Hf, Nb, Ta, W, Fe, Ni and Cr and a pair of electrodes connected electrically to said heat-generating resistor, a heat-generating portion being formed in said heat generating resistor between said pair of electrodes wherein said alloy is represented by
- M.sub.x (Fe.sub.100-y-z Ni.sub.y Cr.sub.z).sub.100-x
- wherein M is at least one selected from Ti, Zr, Hf, Nb, Ta and W, and z is 10-30;
- a support for said electrothermal transducer; and
- a liquid path formed on said support corresponding to the heat-generating portion of said electrothermal transducer, said liquid path communicating with a discharge opening for discharging liquid.
- 110. An ink jet apparatus according to claim 109, further comprising a power switch.
Priority Claims (1)
Number |
Date |
Country |
Kind |
62-303712 |
Dec 1987 |
JPX |
|
Parent Case Info
This application is a continuation of application Ser. No. 643,681 filed Jan. 23, 1991, now abandoned which in turn is a continuation of application Ser. No. 512,561 filed Apr. 25, 1990, now abandoned, which in turn is a continuation of application Ser. No. 278,492 filed Dec. 1, 1988, now abandoned.
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3618533 |
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128467 |
Oct 1980 |
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194866 |
Nov 1984 |
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Continuations (3)
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Number |
Date |
Country |
Parent |
643681 |
Jan 1991 |
|
Parent |
512561 |
Apr 1990 |
|
Parent |
278492 |
Dec 1988 |
|