Claims
- 1. An optical interference coating for reflecting infrared radiation and transmitting visible radiation comprising:
- three spectrally adjacent multiperiod stacks each having a respective stack wavelength, a first and a second of said stacks being shortwave pass stacks, said first and second shortwave pass stacks each having very low reflectance at wavelengths less than said respective stack wavelength and then a region of substantial reflectance at wavelengths greater than said respective stack wavelength;
- the third of said spectrally adjacent multiperiod stacks containing seven alternating layers of high and low refractive index materials and having a period of the form
- (L/a H/b L/c H/d L/c H/b L/a)
- wherein a, b, c and d are predetermined values, and wherein L and H are a low and high index of refraction material, respectively, L and H each being defined as having an optical thickness of a multiple of a quarterwave of the third stack wavelength.
- 2. The optical interference coating of claim 1 wherein said low refractive index material is silica and said high refractive index material is tantala.
- 3. The optical interference coating of claim 1 wherein said third stack is spectrally located at a wavelength longer than the wavelengths said first and second shortwave pass stacks.
- 4. The optical interference coating of claim 1 wherein each of said stacks has at least three periods.
- 5. The optical interference coating of claim 1 wherein the values of a, b, c and d are defined as 2.ltoreq.a.ltoreq.4; 5.ltoreq.b.ltoreq.15; 5.ltoreq.c.ltoreq.15 and 1.ltoreq.d.ltoreq.2.5.
- 6. An electric lamp comprising:
- an envelope of light-transmitting material containing a filament, at least a portion of a surface of said envelope having an optical interference coating disposed thereon for reflecting infrared radiation and transmitting visible radiation;
- said optical interference coating comprising three spectrally adjacent multiperiod stacks each having a respective stack wavelength, a first and a second of said stacks being shortwave pass stacks, said first and second shortwave pass stacks each having very low reflectance at wavelengths less than said respective stack wavelength and then a region of substantial reflectance at wavelengths greater than said respective stack wavelength;
- the third of said spectrally adjacent multiperiod stacks containing seven alternating layers of high and low refractive index materials and having a period of the form
- (L/a H/b L/c H/d L/c H/b L/a)
- wherein a, b, c and d are predetermined values, and wherein L and H are a low and a high index of refraction material, respectively, L and H each being defined as having an optical thickness of a multiple of a quarterwave of the third stack wavelength.
- 7. The electric lamp of claim 1 wherein said low refractive index material is silica and said high refractive index material is tantala.
- 8. The electric lamp of claim 1 wherein said third stack is spectrally located at a wavelength longer than the wavelengths said shortwave pass stacks.
- 9. The electric lamp of claim 1 wherein each of said stacks has at least three periods.
- 10. The electric lamp of claim 1 wherein the values of a, b, c and d are defined as 2.ltoreq.a.ltoreq.4; 5.ltoreq.b.ltoreq.15; 5.ltoreq.c.ltoreq.15 and 1.ltoreq.d.ltoreq.2.5.
Parent Case Info
This application is a continuation of application Ser. No. 08/546,520 filed on Oct. 20, 1995, now U.S. Pat. No. 5,550,423.
US Referenced Citations (9)
Continuations (1)
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Number |
Date |
Country |
Parent |
546520 |
Oct 1995 |
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