Claims
- 1. A crystalline isotactic propylene polymer comprising from 0.05 to 15 wt % comonomer units based on the total weight of the polymer, wherein the molecular weight distribution of the polymer is characterized as being bimodal, the propylene having a Mz value of from 400,000 to 2,000,000 and a MWD value of less than 3.0.
- 2. The polymer of claim 1, wherein the Mn value of the polymer is from 90,000 to 120,000.
- 3. The polymer of claim 1, wherein the hexane extractables level of the polymer is less than 2 wt % as measured by 21 CFR 177.1520(d)(3)(ii).
- 4. The polymer of claim 1, wherein the hexane extractables level of the polymer is less than 3 wt % as measured by 21 CFR 177.1520(d)(3)(ii).
- 5. The polymer of claim 1, wherein the comonomer wt % is in the range of from 0.1 to 10.0.
- 6. The polymer of claim 1, wherein the comonomer wt % is in the range of from 0.5 to 5.0.
- 7. The polymer of claim 1, wherein the Mz value is from 500,000 to 1,500,000 molecular weight units.
- 8. The polymer of claim 1, wherein the Mz value is from 600,000 to 800,000 molecular weight units.
- 9. A crystalline propylene polymer comprising from 0.05 to 15 wt % comonomer units based on the total weight of the polymer, wherein the polymer is generated from at least two polymerization steps conducted in the presence of a catalyst system comprising at least two different metallocene catalysts, and wherein the molecular weight distribution of the polymer is characterized as being bimodal, the propylene having a Mz value of from 400,000 to 2,000,000.
- 10. The polymer of claim 9, wherein the metallocene catalyst system comprises two metallocenes each independently represented by the formula:
- 11. The polymer of claim 9, wherein the metallocene is selected from the group consisting of:
dimethylsilandiylbis(2-methylindenyl) zirconium dichloride, dimethylsilandiylbis(2-methyl-4-phenyl-1-indenyl) zirconium dichloride, dimethylsilandiylbis(2,4-dimethylindenyl) zirconium dichloride, dimethylsilandiylbis(2,5,6-trimethylindenyl) zirconium dichloride, dimethylsilandiylbis indenyl zirconium dichloride, dimethylsilandiylbis(4,5,6,7-tetrahydroindenyl) zirconium dichloride, dimethylsilandiylbis(2-methyl-4,5-benzoindenyl) zirconium dichloride, dimethylsilandiylbis(2-methyl-4-phenyl-1-indenyl) zirconium dimethyl, dimethylsilandiylbis(2-methyl-4,5-benzoindenyl) zirconium dimethyl, dimethylsilandiylbis(2-methyl-4,6-diisopropylindenyl) zirconium dimethyl, dimethylsilandiylbis(2-ethyl-4-phenyl-1-indenyl) zirconium dimethyl, dimethylsilandiylbis(2-ethyl-4-naphthyl-1-indenyl) zirconium dimethyl, phenyl(methyl)silandiylbis(2-methyl -4-phenyl-1-indenyl) zirconium dimethyl, dimethylsilandiylbis(2-methyl-4-(1-naphthyl)-1-indenyl) zirconium dimethyl, dimethylsilandiylbis(2-methyl-4-(2-naphthyl)-1-indenyl) zirconium dimethyl, and dimethylsilandiylbis(2-methyl-indenyl) zirconium dimethyl, and mixtures thereof.
- 12. The polymer of claim 9, wherein the hexane extractables level of the polymer is less than 3 wt % as measured by 21 CFR 177.1520(d)(3)(ii).
- 13. The polymer of claim 9, wherein the comonomer wt % is in the range of from 0.1 to 10.0.
- 14. The polymer of claim 9, wherein the Mz value is from 500,000 to 1,500,000 molecular weight units.
- 15. The polymer of claim 9, wherein the Mz value is from 600,000 to 800,000 molecular weight units.
- 16. The polymer of claim 10, wherein one metallocene catalyst is a 4-phenyl-1-indenyl substituted metallocene catalyst.
- 17. A crystalline propylene polymer comprising from 0.05 to 15 wt % comonomer units based on the total weight of the polymer, wherein the polymer is generated from at least two polymerization steps conducted in the presence of a catalyst system comprising at least two different metallocene catalysts, and wherein the molecular weight distribution of the polymer is characterized as being bimodal, the polymer having a Mz value of from 500,000 to 1,500,000 molecular weight units.
- 18. The polymer of claim 17, wherein the metallocene catalyst system comprises two metallocenes each independently represented by the formula:
- 19. The polymer of claim 17, wherein the metallocene is selected from the group consisting of:
dimethylsilandiylbis(2-methylindenyl) zirconium dichloride, dimethylsilandiylbis(2-methyl-4-phenyl-1-indenyl) zirconium dichloride, dimethylsilandiylbis(2,4-dimethylindenyl) zirconium dichloride, dimethylsilandiylbis(2,5,6-trimethylindenyl) zirconium dichloride, dimethylsilandiylbis indenyl zirconium dichloride, dimethylsilandiylbis(4,5,6,7-tetrahydroindenyl) zirconium dichloride, dimethylsilandiylbis(2-methyl-4,5-benzoindenyl) zirconium dichloride, dimethylsilandiylbis(2-methyl-4-phenyl-1-indenyl) zirconium dimethyl, dimethylsilandiylbis(2-methyl-4,5-benzoindenyl) zirconium dimethyl, dimethylsilandiylbis(2-methyl-4,6-diisopropylindenyl) zirconium dimethyl, dimethylsilandiylbis(2-ethyl-4-phenyl-1-indenyl) zirconium dimethyl, dimethylsilandiylbis(2-ethyl-4-naphthyl-1-indenyl) zirconium dimethyl, phenyl(methyl)silandiylbis(2-methyl-4-phenyl-1-indenyl) zirconium dimethyl, dimethylsilandiylbis(2-methyl-4-(1-naphthyl)-1-indenyl) zirconium dimethyl, dimethylsilandiylbis(2-methyl-4-(2-naphthyl)-1-indenyl) zirconium dimethyl, and dimethylsilandiylbis(2-methyl-indenyl) zirconium dimethyl, and mixtures thereof.
- 20. The polymer of claim 17, wherein the hexane extractables is less than 3 wt % as measured by 21 CFR 177.1520(d)(3)(ii).
- 21. The polymer of claim 17, wherein the comonomer wt % is in the range of from 0.1 to 10.0.
- 22. The polymer of claim 17, wherein the comonomer wt % is in the range from 0.5 to 5.
- 23. The polymer of claim 18, wherein one metallocene catalyst is a 4-phenyl-1-indenyl substituted metallocene catalyst.
- 24. The polymer of claim 17, wherein the comonomer is present from 0.5 to 5 wt % relative to the total weight of the polymer.
- 25. A crystalline isotactic propylene polymer comprising:
a) from 10 to 90 wt % crystalline propylene homopolymer; and b) from 90 to 10 wt % of a crystalline propylene copolymer, the copolymer comprising units derived from propylene and units derived from at least one other comonomer, wherein the wt % of the comonomer based on the total weight of the polymer is in the range of from 0.05 to 15, and wherein the hexane extractables level of the polymer is less than 3 wt % as measured by 21 CFR 177.1520(d)(3)(ii).
- 26. The polymer of claim 25, wherein the hexane extractables level of the polymer is less than 2 wt % as measured by 21 CFR 177.1520(d)(3)(ii).
- 27. The polymer of claim 25, wherein the hexane extractables level of the polymer is less than 1 wt % as measured by 21 CFR 177.1520(d)(3)(ii).
- 28. The polymer of claim 25, wherein the comonomer wt % is in the range of from 0.1 to 10.0.
- 29. The polymer of claim 25, wherein the comonomer is selected from the group consisting of ethylene, 1-butene, 1-pentene, 1-hexene, and 1-octene.
- 30. The polymer of claim 25, wherein the wt % of the crystalline propylene homopolymer is in the range of from 20 to 80.
- 31. The polymer of claim 25, wherein the molecular weight distribution is in the range of from 2.5 to 7.0.
- 32. The polymer of claim 25, wherein the homopolymer is isotactic.
- 33. The polymer of claim 25, wherein the polymer is prepared using a metallocene catalyst system.
- 34. The polymer of claim 25, wherein the metallocene catalyst system comprises two metallocenes each independently represented by the formula:
- 35. The polymer of claim 34, wherein the metallocene system also includes an activator.
- 36. The polymer of claim 25, wherein the molecular weight distribution of the polymer is characterized as being bimodal, the Mz value being from 500,000 to 1,500,000 molecular weight units.
- 37. The polymer of claim 25, wherein the molecular weight distribution of the polymer is characterized as being bimodal, the Mz value being from 600,000 to 800,000 molecular weight units.
- 38. The polymer of claim 34, wherein at least one metallocene is a 4-phenyl-1-indenyl substituted metallocene.
- 39. A crystalline isotactic propylene polymer comprising:
a) from 10 to 90 wt % isotactic crystalline propylene homopolymer having a molecular weight distribution of less than 3.0; and b) from 90 to 10 wt % crystalline propylene copolymer having a molecular weight distribution of less than 3.0, wherein the wt % of the comonomer based on the total weight of the polymer is in the range of from 0.05 to 15, wherein the polymer has a MWD less than 3.0, and wherein the hexane extractables level of the polymer is less than 3 wt % as measured by 21 CFR 177.1520(d)(3)(ii).
- 40. The polymer of claim 39, wherein the hexane extractables level of the polymer is less than 2 wt % as measured by 21 CFR 177.1520(d)(3)(ii).
- 41. The polymer of claim 39, wherein the hexane extractable level of the polymer is less than 1 wt % as measured by 21 CFR 177.1520(d)(3)(ii).
- 42. The polymer of claim 39, wherein the comonomer wt % is in the range of from 0.1 to 10.0.
- 43. The polymer of claim 39, wherein the comonomer is selected from the group consisting of ethylene, 1-butene, 1-pentene, 1-hexene, and 1-octene.
- 44. The polymer of claim 39, wherein the wt % of the crystalline propylene homopolymer is in the range of from 20 to 80.
- 45. The polymer of claim 39, wherein the molecular weight distribution is in the range of from 2.5 to 2.9.
- 46. The polymer of claim 39, wherein the homopolymer is isotactic.
- 47. The polymer of claim 39, wherein the polymer is prepared using a metallocene catalyst system.
- 48. The polymer of claim 39, wherein the metallocene catalyst system comprises two metallocenes each independently represented by the formula:
- 49. The polymer of claim 48, wherein the metallocene system also includes an activator.
- 50. The polymer of claim 39, wherein the molecular weight distribution of the polymer is characterized as being bimodal, the Mz value being from 500,000 to 1,500,000 molecular weight units.
- 51. The polymer of claim 39, wherein the molecular weight distribution of the polymer is characterized as being bimodal, the Mz value being from 600,000 to 800,000 molecular weight units.
- 52. The polymer of claim 48, wherein at least one metallocene is a 4-phenyl-1-indenyl substituted metallocene.
- 53. A process for preparing a crystalline polypropylene composition comprising the steps of:
(a) polymerizing propylene in one stage; (b) copolymerizing propylene and a comonomer in a separate stage; and (c) recovering crystalline propylene polymer comprising from 0.5 to 8 wt % comonomer units based on the total weight of the polymer, wherein the polymerization steps (a) and (b) are conducted in the presence of a metallocene catalyst system comprising two different metallocene catalyst components, and wherein the molecular weight distribution of the polymer is characterized as being bimodal, the polymer having a Mz value of from 500,000 to 1,500,000 molecular weight units.
- 54. The process of claim 53, wherein a comonomer is copolymerized with the propylene in step (a).
- 55. The process of claim 53, wherein the comonomer is selected from the group consisting of ethylene, 1-butene, 1-pentene, 1-hexene, and 1-octene.
- 56. The process of claim 53, wherein the crystalline propylene polymer comprises from 0.5 to 5 wt % comonomer units based on the total weight of the polymer.
- 57. The process of claim 53, wherein the metallocene catalyst system is comprised of two metallocenes each independently represented by the formula:
- 58. The process of claim 57, wherein at least one metallocene is a 4-phenyl-1-indenyl substituted metallocene.
- 59. The process of claim 57, wherein the metallocene catalyst system further comprises a porous support material and alkylalumoxane activator.
- 60. The process of claim 53, wherein the molecular weight distribution of the polymer is characterized as being bimodal, the Mz value being from 600,000 to 800,000 molecular weight units.
- 61. The process of claim 53, wherein the metallocene is selected from the group consisting of:
dimethylsilandiylbis(2-methylindenyl) zirconium dichloride, dimethylsilandiylbis(2-methyl-4-phenyl-1-indenyl) zirconium dichloride, dimethylsilandiylbis(2,4-dimethylindenyl) zirconium dichloride, dimethylsilandiylbis(2,5,6-trimethylindenyl) zirconium dichloride, dimethylsilandiylbis indenyl zirconium dichloride, dimethylsilandiylbis(4,5,6,7-tetrahydroindenyl) zirconium dichloride, dimethylsilandiylbis(2-methyl-4,5-benzoindenyl) zirconium dichloride, dimethylsilandiylbis(2-methyl-4-phenyl-1-indenyl) zirconium dimethyl, dimethylsilandiylbis(2-methyl-4,5-benzoindenyl) zirconium dimethyl, dimethylsilandiylbis(2-methyl-4,6-diisopropylindenyl) zirconium dimethyl, dimethylsilandiylbis(2-ethyl-4-phenyl-1-indenyl) zirconium dimethyl, dimethylsilandiylbis(2-ethyl-4-naphthyl-1-indenyl) zirconium dimethyl, phenyl(methyl)silandiylbis(2-methyl-4-phenyl-1-indenyl) zirconium dimethyl, dimethylsilandiylbis(2-methyl-4-(1-naphthyl)-1-indenyl) zirconium dimethyl, dimethylsilandiylbis(2-methyl-4-(2-naphthyl)-1-indenyl) zirconium dimethyl, and dimethylsilandiylbis(2-methyl-indenyl) zirconium dimethyl, and mixtures thereof.
- 62. The process of claim 53, wherein the hexane extractables level of the polymer is less than 2 wt % as measured by 21 CFR 177.1520(d)(3)(ii).
- 63. The process of claim 53, wherein the hexane extractable level of the polymer is less than 1 wt % as measured by 21 CFR 177.1520(d)(3)(ii).
- 64. A process for preparing a crystalline polypropylene comprising the steps of:
(a) polymerizing propylene in a first stage; then (b) copolymerizing propylene and a comonomer in a second stage in the presence of the product of the first stage; and (c) recovering crystalline propylene polymer comprising from 0.05 to 15 wt % comonomer units based on the total weight of the polymer and wherein the hexane extractables is less than 3 wt % as measured by 21 CFR 177.1520(d)(3)(ii), and wherein the polymerization steps (a) and (b) are conducted in the presence of a metallocene catalyst system comprising two different metallocene catalyst components.
- 65. The process of claim 64, wherein the hexane extractables level of the polymer is less than 2 wt % as measured by 21 CFR 177.1520(d)(3)(ii).
- 66. The process of claim 64, wherein the hexane extractable level of the polymer is less than 1 wt % as measured by 21 CFR 177.1520(d)(3)(ii).
- 67. The process of claim 64, wherein the comonomer is selected from the group consisting of ethylene, 1-butene, 1-pentene, 1-hexene, and 1-octene.
- 68. The process of claims 64, wherein the crystalline propylene polymer comprises from 0.5 to 8 wt % comonomer units based on the total weight of the polymer.
- 69. The process of claim 64, wherein the crystalline propylene polymer comprises from 0.5 to 5 wt % comonomer units based on the total weight of the polymer.
- 70. The process of claim 64, wherein the metallocene catalyst system is comprised of two metallocenes each independently represented by the formula:
- 71. The process of claim 70, wherein the metallocene catalyst system further comprises a porous support material and alkylalumoxane activator.
- 72. The process of claim 70, wherein at least one metallocene is a 4-phenyl-1-indenyl substituted metallocene.
- 73. A process for preparing a crystalline polypropylene comprising the steps of:
(a) polymerizing propylene in a first stage; then (b) copolymerizing propylene and a comonomer in a second stage in the presence of the product of the first stage; and (c) recovering crystalline propylene polymer comprising from 0.05 to 15 wt % comonomer units based on the total weight of the polymer, wherein the hexane extractables is less than 3 wt % as measured by 21 CFR 177.1520(d)(3)(ii), and wherein the polymerization steps (a) and (b) are conducted in the presence of a metallocene catalyst system comprising two different metallocene catalyst components, and wherein the molecular weight distribution of the polymer is characterized as being bimodal, having a Mz value of from 500,000 to 1,500,000 molecular weight units.
- 74. The process of claim 73, wherein the hexane extractables level of the polymer is less than 2 wt % as measured by 21 CFR 177.1520(d)(3)(ii).
- 75. The process of claim 73, wherein the hexane extractable level of the polymer is less than 1 wt % as measured by 21 CFR 177.1520(d)(3)(ii).
- 76. The process of claim 73, wherein the comonomer is selected from the group consisting of ethylene, 1-butene, 1-pentene, 1-hexene, and 1-octene.
- 77. The process of claims 73, wherein the crystalline propylene polymer comprises from 0.5 to 8 wt % comonomer units based on the total weight of the polymer.
- 78. The process of claim 73, wherein the crystalline propylene polymer comprises from 0.5 to 5 wt % comonomer units based on the total weight of the polymer.
- 79. The process of claim 73, wherein the metallocene catalyst system is comprised of two metallocenes each independently represented by the formula:
- 80. The process of claim 79, wherein the metallocene catalyst system further comprises a porous support material and alkylalumoxane activator.
- 81. The process of claim 79, wherein at least one metallocene is a 4-phenyl-1-indenyl substituted metallocene.
- 82. The process of claim 73, wherein the molecular weight distribution of the polymer is characterized as being bimodal, the Mz value being from 600,000 to 800,000 molecular weight units.
- 83. A process for preparing crystalline isotactic propylene polymer comprising the steps of:
(a) copolymerizing propylene and a comonomer in one stage; and (b) recovering crystalline propylene polymer comprising from 0.5 to 8 wt % comonomer units based on the total weight of the polymer; wherein the polymerization steps (a) and (b) are conducted in the presence of a metallocene catalyst system comprising two different metallocene catalyst components, and wherein the molecular weight distribution of the polymer is characterized as being bimodal, the polymer having a Mz value of from 400,000 to 2,000,000 molecular weight units.
- 84. The process of claim 83, wherein a comonomer is copolymerized with the propylene in step (a).
- 85. The process of claim 83, wherein the comonomer is selected from the group consisting of ethylene, 1-butene, 1-pentene, 1-hexene, and 1-octene.
- 86. The process of claim 83, wherein the crystalline propylene polymer comprises from 0.5 to 5 wt % comonomer units based on the total weight of the polymer.
- 87. The process of claim 83, wherein the metallocene catalyst system is comprised of two metallocenes each independently represented by the formula:
- 88. The process of claim 87, wherein at least one metallocene is a 4-phenyl-1-indenyl substituted metallocene.
- 89. The process of claim 83, wherein the metallocene catalyst system further comprises a porous support material and alkylalumoxane activator.
- 90. The process of claim 83, wherein the molecular weight distribution of the polymer is characterized as being bimodal, the Mz value being from 600,000 to 800,000 molecular weight units.
- 91. The process of claim 87, wherein the metallocene is selected from the group consisting of:
dimethylsilandiylbis(2-methylindenyl) zirconium dichloride, dimethylsilandiylbis(2-methyl-4-phenyl-1-indenyl) zirconium dichloride, dimethylsilandiylbis(2,4-dimethylindenyl) zirconium dichloride, dimethylsilandiylbis(2,5,6-trimethylindenyl) zirconium dichloride, dimethylsilandiylbis indenyl zirconium dichloride, dimethylsilandiylbis(4,5,6,7-tetrahydroindenyl) zirconium dichloride, dimethylsilandiylbis(2-methyl-4,5-benzoindenyl) zirconium dichloride, dimethylsilandiylbis(2-methyl-4-phenyl-1-indenyl) zirconium dimethyl, dimethylsilandiylbis(2-methyl-4,5-benzoindenyl) zirconium dimethyl, dimethylsilandiylbis(2-methyl-4,6-diisopropylindenyl) zirconium dimethyl, dimethylsilandiylbis(2-ethyl-4-phenyl-1-indenyl) zirconium dimethyl, dimethylsilandiylbis(2-ethyl-4-naphthyl-1indenyl) zirconium dimethyl, phenyl(methyl)silandiylbis(2-methyl -4-phenyl-1indenyl) zirconium dimethyl, dimethylsilandiylbis(2-methyl-4-(1-naphthyl)-1-indenyl) zirconium dimethyl, dimethylsilandiylbis(2-methyl-4-(2-naphthyl)-1-indenyl) zirconium dimethyl, and dimethylsilandiylbis(2-methyl-indenyl) zirconium dimethyl, and mixtures thereof.
- 92. The process of claim 83, wherein the hexane extractables of the polymer is less than 2 wt % as measured by 21 CFR 177.1520(d)(3)(ii).
- 93. The process of claim 83, wherein the hexane extractable level of the polymer is less than 1 wt % as measured by 21 CFR 177.1520(d)(3)(ii).
- 94. A process for preparing crystalline isotactic propylene polymer comprising the steps of:
(a) polymerizing propylene and a comonomer in one stage; (b) copolymerizing propylene and a comonomer in a separate stage; and (c) recovering crystalline propylene polymer comprising from 0.5 to 8 wt % comonomer units based on the total weight of the polymer; wherein the polymerization steps (a) and (b) are conducted in the presence of a metallocene catalyst system comprising two different metallocene catalyst components, and wherein the molecular weight distribution of the polymer is characterized as being bimodal, the polymer having a Mz value of from 400,000 to 2,000,000 molecular weight units.
- 95. The process of claim 94, wherein a comonomer is copolymerized with the propylene in step (a).
- 96. The process of claim 94, wherein the comonomer is selected from the group consisting of ethylene, 1-butene, 1-pentene, 1-hexene, and 1-octene.
- 97. The process of claim 94, wherein the crystalline propylene polymer comprises from 0.5 to 5 wt % comonomer units based on the total weight of the polymer.
- 98. The process of claim 94, wherein the metallocene catalyst system is comprised of two metallocenes each independently represented by the formula:
- 99. The process of claim 98, wherein at least one metallocene is a 4-phenyl-1-indenyl substituted metallocene.
- 100. The process of claim 94, wherein the metallocene catalyst system further comprises a porous support material and alkylalumoxane activator.
- 101. The process of claim 94, wherein the molecular weight distribution of the polymer is characterized as being bimodal, the Mz value being from 600,000 to 800,000 molecular weight units.
- 102. The process of claim 98, wherein the metallocene is selected from the group consisting of:
dimethylsilandiylbis(2-methylindenyl) zirconium dichloride, dimethylsilandiylbis(2-methyl-4-phenyl-1-indenyl) zirconium dichloride, dimethylsilandiylbis(2,4-dimethylindenyl) zirconium dichloride, dimethylsilandiylbis(2,5,6-trimethylindenyl) zirconium dichloride, dimethylsilandiylbis indenyl zirconium dichloride, dimethylsilandiylbis(4,5,6,7-tetrahydroindenyl) zirconium dichloride, dimethylsilandiylbis(2-methyl-4,5-benzoindenyl) zirconium dichloride, dimethylsilandiylbis(2-methyl-4-phenyl-1-indenyl) zirconium dimethyl, dimethylsilandiylbis(2-methyl-4,5-benzoindenyl) zirconium dimethyl, dimethylsilandiylbis(2-methyl-4,6-diisopropylindenyl) zirconium dimethyl, dimethylsilandiylbis(2-ethyl-4-phenyl-1-indenyl) zirconium dimethyl, dimethylsilandiylbis(2-ethyl4-naphthyl-1-indenyl) zirconium dimethyl, phenyl(methyl)silandiylbis(2-methyl -4-phenyl-1-indenyl) zirconium dimethyl, dimethylsilandiylbis(2-methyl-4-(1-naphthyl)-1-indenyl) zirconium dimethyl, dimethylsilandiylbis(2-methyl-4-(2-naphthyl)-1-indenyl) zirconium dimethyl, and dimethylsilandiylbis(2-methyl-indenyl) zirconium dimethyl, and mixtures thereof.
- 103. The process of claim 94, wherein the hexane extractables of the polymer is less than 2 wt % as measured by 21 CFR 177.1520(d)(3)(ii).
- 104. The process of claim 94, wherein the hexane extractable level of the polymer is less than 1 wt % as measured by 21 CFR 177.1520(d)(3)(ii).
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a Continuation-in-Part of U.S. application Ser. No. 08/916,699 filed Aug. 22, 1997, which is based on U.S. Provisional Application Ser. No. 60/025,398, filed Sep. 4, 1996.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60025398 |
Sep 1996 |
US |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
08916699 |
Aug 1997 |
US |
Child |
09800238 |
Mar 2001 |
US |