Claims
- 1. A micro-injecting device, comprising:a substrate made of silicon; a protective layer of SiO2 disposed on said substrate; a cohesion promoting layer disposed on said protective layer, for enhancing the cohesion of said protective layer with a heating chamber barrier layer; a heating resistor layer disposed on a portion of the cohesion promoting layer, for heating a heating chamber; an electrode layer disposed on a portion of the cohesion promoting layer and contacting the heating resistor layer, for providing electricity from an external source to the heating resistor layer; a heating chamber barrier layer disposed on the cohesion promoting layer, said heating chamber barrier layer defining a heating chamber surrounding the heating resistor; a membrane layer overlaying the heating chamber barrier layer, for transmitting a volume change of working fluid in the heating chamber upon heating of the working fluid; a liquid chamber barrier layer disposed on the membrane, said liquid chamber barrier layer defining a liquid chamber coaxial with the heating chamber; and a nozzle plate disposed on the liquid chamber barrier layer, said nozzle plate having a nozzle aligned with the liquid chamber.
- 2. The micro-injecting device of claim 1, said cohesion promoting layer being formed by treatment of said protective layer with a treatment liquid comprising an isooctane.
- 3. The micro-injecting device of claim 2, said treatment further comprising spin-coating the treatment liquid on said protective layer.
- 4. The micro-injecting device of claim 2, said isooctane being 2,2,4-trimethylpentane.
- 5. The micro-injecting device of claim 2, said treatment liquid further comprising γ-aminopropyltriethoxysilane.
- 6. The micro-injecting device of claim 5, said treatment liquid being a solution of γ-aminopropyltriethoxysilane in an isooctane solvent.
- 7. The micro-injecting device of claim 6, said treatment liquid being a solution of γ-aminopropyltriethoxysilane in 2,2,4-trimethylpentane.
- 8. The micro-injecting device of claim 6, the concentration of γ-aminopropyltriethoxysilane in the solution being in the range of approximately 3 to 4% by weight.
- 9. The micro-injecting device of claim 7, the concentration of γ-aminopropyltriethoxysilane in the solution being in the range of approximately 3 to 4% by weight.
- 10. The micro-injecting device of claim 1, said cohesion promoting layer comprising an aminopropyl derivative of the SiO2 of said protective layer.
- 11. A micro-injecting device, comprising:a substrate made of silicon; a protective layer of SiO2 disposed on said substrate; a layer of isooctane disposed on said protective layer, forming a cohesion promoting layer for enhancing the cohesion of said protective layer with a heating chamber barrier layer; a heating resistor layer disposed on a portion of the cohesion promoting layer, for heating a heating chamber; an electrode layer disposed on a portion of the cohesion promoting layer and contacting the heating resistor layer, for providing electricity from an external source to the heating resistor layer; a heating chamber barrier layer disposed on the cohesion promoting layer, said heating chamber barrier layer defining a heating chamber surrounding the heating resistor; a membrane layer overlaying the heating chamber barrier layer, for transmitting a volume change of working fluid in the heating chamber upon heating of the working fluid; a liquid chamber barrier layer disposed on the membrane, said liquid chamber barrier layer defining a liquid chamber coaxial with the heating chamber; and a nozzle plate disposed on the liquid chamber barrier layer, said nozzle plate having a nozzle aligned with the liquid chamber.
- 12. The micro-injecting device of claim 11, said isooctane being 2,2,4-trimethylpentane.
- 13. The micro-injecting device of claim 11, said isooctane layer being formed on the protective layer by a spin-coating process.
- 14. The micro-injecting device of claim 13, said spin-coating process comprising spin-coating a liquid comprising 2,2,4-trimethylpentane on the protective layer.
- 15. The micro-injecting device of claim 14, said liquid further comprising γ-aminopropyltriethoxysilane.
- 16. The micro-injecting device of claim 15, the concentration of γ-aminopropyltriethoxysilane in 2,2,4-trimethylpentane being in the range of approximately 3 to 4% by weight.
Priority Claims (1)
Number |
Date |
Country |
Kind |
98120457 |
Nov 1998 |
RU |
|
CLAIM OF PRIORITY
This application makes reference to, incorporates the same herein, and claims all benefits accruing under 35 U.S.C. §119 from an application for MICRO-INJECTING DEVICE earlier filed in the Russian Federation Patent Office on the Nov. 3rd 1998 and there duly assigned Ser. No. 98120457.
US Referenced Citations (10)