Claims
- 1. For use in hydronic heating systems, a modular transition adaptor, comprising:
a. a main loop pipe, having a main inlet, a branch outlet, a branch inlet, and a main outlet; wherein: b. the main inlet and the main outlet are side by side fixed in relation to each other and parallel to each other at a first set distance between them; c. the branch outlet and the branch inlet are side by side fixed in relation to each other and parallel to each other at a second set distance between them; and d. each of the inlets and outlets has a connection fitting adapted to be fitted to another modular hydronic component.
- 2. The transition adaptor of claim 1 wherein the main inlet and the main outlet are fixed in relation to each other at a center to center distance between them within a range of 2 inches to 12 inches.
- 3. The transition adaptor of claim 1 wherein the branch inlet and the branch outlet are fixed in relation to each other at a center to center distance between them less than 4 pipe diameters.
- 4. The transition adaptor of claim 1 wherein the branch inlet and the branch outlet are fixed in relation to each other at a center to center distance between them within a range of 2 inches to 6 inches.
- 5. The transition adaptor of claim 1 further comprising a pump between the main inlet and the main outlet.
- 6. The transition adaptor of claim 1 made of round metal pipes connected with melted and solidified metal.
- 7. For use in hydronic heating systems, a main loop pipe adapted for coupling to modular branch components, comprising:
a. a main loop pipe, having a main inlet, a branch outlet, a branch inlet, and a main outlet; wherein: b. the branch outlet and the branch inlet are side by side fixed in relation to each other and parallel to each other at a second set distance between them and each has a connection fitting adapted to be fitted to another modular hydronic heating component.
- 8. The main loop pipe of claim 7 wherein the branch inlet and the branch outlet are fixed in relation to each other at a center to center distance between them less than 4 pipe diameters.
- 9. The main loop pipe of claim 7 wherein the branch inlet and the branch outlet are fixed in relation to each other at a center to center distance between them within a range of 2 inches to 6 inches.
- 10. The main loop pipe of claim 7 further comprising a pump between the main inlet and the main outlet.
- 11. The main loop pipe of claim 7 made of round metal pipes connected with melted and solidified metal.
- 12. For use in hydronic heating systems, a modular supply-return connector in one rigid piece, comprising:
a. a rigid one-piece supply chamber, having a main inlet, a main outlet, and a branch outlet; and b. a rigid one-piece return chamber, having a main inlet, a main outlet, and a branch inlet; wherein: c. the supply main inlet and the return main outlet are fixed in relation to each other and parallel to each other at a set distance between them; d. the return main inlet and the supply main outlet are fixed in relation to each other and parallel to each other at the set distance between them; and e. the supply chamber and the return chamber are each at least 3 inches long from main inlet to main outlet; such that f. the supply main inlet may be directly coupled to a supply main outlet of a duplicate supply-return connector while the return main outlet is directly coupled to a return main inlet of the duplicate supply-return connector and center-to-center spacing between the supply-return connectors is at least 3 inches.
- 13. The supply-return connector of claim 12 wherein the branch inlet and the branch outlet are fixed in relation to each other and parallel to each other at a set distance between them; such that duplicate supply-return connectors according to this claim may each be directly coupled at both the branch outlet and the branch inlet to a modular secondary hydronic system component having an inlet and an outlet fixed in relation to each other.
- 14. The supply-return connector of claim 12 wherein the branch inlet and the branch outlet are fixed in relation to each other and parallel to each other at a center to center distance between them of at least 1½ inches.
- 15. The supply-return connector of claim 12 wherein the branch inlet and the branch outlet are fixed in relation to each other and parallel to each other at a center to center distance between them of approximately 4 inches.
- 16. The supply-return connector of claim 12 made of round metal pipes connected with melted and solidified metal.
- 17. The supply-return connector of claim 12 wherein a pipe that forms one of the branch inlet or the branch outlet forms a rigid connection between the supply chamber and the return chamber.
- 18. The supply-return connector of claim 12 further comprising a pump on one of the branch outlet or the branch inlet.
- 19. The supply-return connector of claim 12 further comprising a valve on one of the branch outlet or the branch inlet.
- 20. For use in hydronic heating systems, a modular supply-return connector for hydronic heating systems, comprising:
a. a supply chamber, having a main inlet and a main outlet defining a supply flow path, and having a branch outlet; and b. a return chamber, having a main inlet and a main outlet defining a return flow path that is substantially parallel to the supply flow path, and having a branch inlet; wherein: c. the branch inlet and the branch outlet are fixed in relation to each other and parallel to each other defining a plane that is substantially parallel to the supply flow path and the return flow path.
- 21 The supply-return connector of claim 20 wherein the chambers and the branch outlet and the branch inlet are each made of metal pipes connected together with melted and solidified metal.
- 22. The supply-return connector of claim 20 wherein a pipe that forms one of the branch inlet or the branch outlet forms a rigid connection between the supply chamber and the return chamber.
- 23. The supply-return connector of claim 20 further comprising a pump on one of the branch outlet or the branch inlet.
- 24. The supply-return connector of claim 20 further comprising a valve on one of the branch outlet or the branch inlet.
- 25. A method of making a modular supply-return connector, comprising:
a. forming a supply chamber, having a main inlet, a main outlet, and a branch outlet, by connecting together round metal pipes with melted and solidified metal; and b. forming a return chamber, having a main inlet, a main outlet, and a branch inlet, by connecting together round metal pipes with melted and solidified metal; and c. rigidly connecting the supply chamber and the return chamber.
- 26. The method of claim 25 wherein the supply chamber and the return chamber are connected together with melted and solidified metal.
- 27. The method of claim 25 wherein a pipe that forms one of the branch inlet or the branch outlet forms a rigid connection between the supply chamber and the return chamber.
Parent Case Info
[0001] This application claims priority from provisional patent application No. 60/467,433, filed May 2, 2003, which is incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60467433 |
May 2003 |
US |