Claims
- 1. An apparatus comprising:
- an ink-jet print head including:
- a head base having defined therein a plurality of individual ink passages; and
- a vibrating plate constructed and arranged to cover said ink passages;
- the head base and the vibrating plate formed of materials which cannot be bonded directly to each other by anodic bonding,
- the vibrating plate having a surface of a glass material, and
- the head base having an electrically conductive surface, the glass surface and the electrically conductive surface attaching said head base and said vibrating plate by anodic bonding; and
- means for conveying a medium past the ink-jet head for receiving printing thereon.
- 2. An apparatus as defined in claim 1 wherein said apparatus is an ink-jet printer.
- 3. The apparatus of claim 1, wherein the vibrating plate is plastic, and wherein said glass material is a bonding layer of glass disposed on said vibrating plate.
- 4. The apparatus of claim 1, wherein the vibrating plate is glass.
- 5. The apparatus of claim 1, wherein the head base is glass.
- 6. An ink jet print head comprising:
- a head base having defined therein a plurality of individual ink passages; and
- a vibrating plate constructed and arranged to cover said ink passages; and
- the head base and the vibrating plate formed of materials which cannot be bonded directly to each other by anodic bonding, wherein
- a surface of the head base is formed of glass material, and
- a surface of the vibrating plate is formed of a conductive material, the glass and the conductive material cooperating to join the head base to the vibrating plate by anodic bonding.
- 7. The ink jet print head of claim 6, wherein the head base is plastic, and wherein the glass material is a glass layer disposed on said head base.
- 8. The ink jet print head of claim 6, wherein the vibrating plate is glass.
- 9. The ink jet print head of claim 6, wherein the head base is glass.
- 10. The ink jet print head of claim 6, wherein said glass material has a low melting point, said glass material located on a surface of the head base.
- 11. The ink jet print head of claim 10, wherein said anodic bonding is conducted at a temperature between room temperature and 150 C degree.
- 12. The ink jet print head of claim 11, wherein said head base and vibrating plate are subjected to a pressure between 200 g/cm.sup.2 to 400 g/cm.sup.2 during said anodic bonding.
- 13. An apparatus comprising:
- an inkjet print head including:
- a head base having defined therein a plurality of individual ink passages; and
- a vibrating plate constructed and arranged to cover said ink passages;
- the head base and the vibrating plate formed of materials which cannot be bonded directly to each other by anodic bonding,
- the head base having a surface of a glass, material and
- the vibrating plate having an electrically conductive surface, the glass surface and the electrically conductive surface attaching said head base and said vibrating plate by anodic bonding; and
- means for conveying a medium past the ink-jet head for receiving printing thereon.
- 14. An apparatus as defined in claim 13 wherein said apparatus is an ink-jet printer.
- 15. The apparatus of claim 13, wherein the head base is plastic, and wherein said glass material is disposed on said head base.
- 16. The apparatus of claim 13, wherein the vibrating plate is glass.
- 17. The apparatus of claim 13, wherein the head base is glass.
- 18. An ink jet print head comprising:
- a head base having defined therein a plurality of individual ink passages; and
- a vibrating plate constructed and arranged to cover said ink passages; and
- the head base and the vibrating plate formed of materials which cannot be bonded directly to each other by anodic bonding; wherein
- a surface of the vibrating plate is formed of glass material, and
- a surface of the head base is formed of a conductive material, the glass material and the conductive material cooperating to join the head base to the vibrating plate by anodic bonding.
- 19. The ink jet print head of claim 18, wherein the vibrating plate is plastic, and wherein the glass material is a glass layer disposed on said vibrating plate.
- 20. The ink jet print head of claim 18, wherein the vibrating plate is glass.
- 21. The ink jet print head of claim 18, wherein the head base is glass.
- 22. The ink jet print head of claim 18, wherein said glass material has a low melting point, said glass material located on a surface of the vibrating plate.
- 23. The ink jet print head of claim 22, wherein said anodic bonding is conducted at a temperature between room temperature and 150 C degree.
- 24. The ink jet print head of claim 23, wherein said head base and vibrating plate are subjected to a pressure between 200 g/cm.sup.2 to 400 g/cm.sup.2 during said anodic bonding.
Priority Claims (1)
Number |
Date |
Country |
Kind |
3-341681 |
Dec 1991 |
JPX |
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Parent Case Info
This application is a continuation of application Ser. No. 08/328,727, filed Oct. 25, 1994, now abandoned, entitled INK-JET PRINT HEAD HAVING PARTS ANODICALLY BONDED, which is a divisional of application Ser. No. 07/994,544, filed Dec. 21, 1992, issued as U.S. Pat. No. 5,396,042 on Mar. 7, 1995, entitled ANODIC BONDING PROCESS AND METHOD OF PRODUCING AN INK-JETPRINT HEAD USING THE SAME PROCESS.
US Referenced Citations (20)
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DEX |
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JPX |
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Entry |
Patent Abstracts of Japan, Apr. 17, 1991, JP-3-92353A,(Fuji Electric Co LTD) T. Saito. |
Patent Abstracts of Japan, Dec. 10, 1980,JP-55-158985A,(Suwa Seikosha KK), S. Okada. |
Patent Abstracts of Japan, Jun. 12, 1990, JP-2-80252A (Alps Electric co LTD), Sato et al. |
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"Room Temperature Anodic Bonding with Low Melting point Glass Film," H. Hebiguchi, et. al., Technical Digest of the 9th Sensor Symposium, 1990 pp. 31-34. |
Divisions (1)
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Number |
Date |
Country |
Parent |
994544 |
Dec 1992 |
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Continuations (1)
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Number |
Date |
Country |
Parent |
328727 |
Oct 1994 |
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