Claims
- 1. A segmented waveguide for a fiber optic rotary joint, the fiber optic rotary joint including a rotor and an existing stator surface, the rotor having one of a plurality of light transmitters and light receivers connected to a first circumference of the rotor, said segmented waveguide mountable to the existing stator surface, said segmented waveguide capable of reflecting optical energy transmitted from the plurality of light transmitters on the rotor, comprising:a reflective waveguide surface shaped to match a portion of the existing stator surface; at least one waveguide support supporting said reflective waveguide surface and connectable to the existing stator; and at least one of a light transmitter or light receiver optically coupled to said reflective waveguide surface.
- 2. The segmented waveguide for a fiber optic rotary joint of claim 1, wherein at least one light transmitter or light receiver is positioned at one end of said reflective waveguide surface.
- 3. The segmented waveguide for a fiber optic rotary joint of claim 1, wherein said reflective waveguide surface extends for approximately an arc of 135° of the existing stator surface.
- 4. The segmented waveguide for a fiber optic rotary joint of claim 1, wherein said waveguide support is located at one end of said reflective waveguide surface.
- 5. The segmented waveguide for a fiber optic rotary joint of claim 1, wherein said at least one of a light transmitter or light receiver is a parallelogram.
- 6. The segmented waveguide for a fiber optic rotary joint of claim 4, further comprising a second waveguide support located at an opposite end of said waveguide surface.
- 7. The segmented waveguide for a fiber optic rotary joint of claim 5, further comprising an optical fiber associated with said at least one light transmitter and receiver, said optical fiber extending generally tangentially relative to said reflective waveguide surface.
- 8. The waveguide section mountable in an existing circular bore of claim 1, wherein the existing stator surface is non-reflective.
- 9. A waveguide section mountable in an existing circular bore, comprising:an arcuate reflective waveguide surface extending up to a 135° arc of the existing circular bore; and a waveguide section supporting structure for mounting said reflective waveguide surface in the existing circular bore and including one of a light transmitter and a light receiver each of which either transmit or receive light in a tangential direction which is reflected by said reflective waveguide surface.
- 10. The waveguide section mountable in an existing circular bore of claim 9, wherein at least one light transmitter or light receiver is positioned at one end of said reflective waveguide surface.
- 11. A method of retrofitting an existing gantry with a fiber optic rotary joint, comprising:securing at least one reflective segmented waveguide surface to an inner diameter of the existing gantry using a segmented waveguide structure; securing one of a light transmitting device and light receiving device to the reflective waveguide; and securing a plurality of light transmitters or light receivers to a rotor positioned concentrically in the gantry.
RELATED APPLICATIONS
The present application is related to a patent application entitled “Parallel Data Transmission Through Segmented Waveguides of Large Diameter”, filed on even date herewith, and is related to U.S. patent application Ser. No. 09/531,772, filed Mar. 21, 2000, pending, entitled “Multi-Channel On-Axis Fiber Optic Rotary Joint”, and assigned to the instant assignee. Both of these patent applications are hereby incorporated by reference into this specification in their entirety. The present application also relates to U.S. Pat. No. 5,991,478 issued Nov. 23, 1999 entitled “Fiber Optic Rotary Joint”, and U.S. patent application Ser. No. 09/115,946 filed Jul. 15, 1998, entitled “Fiber Optic Rotary Joint”, both of which are assigned to the instant assignee and are hereby incorporated by reference into the specification in their entirety.
US Referenced Citations (11)
Foreign Referenced Citations (2)
Number |
Date |
Country |
2441359 |
Aug 1974 |
DE |
5738228 |
Feb 1981 |
EP |