US2008274665A1PendingUtilityA1

Building base plates assembled to build block sets in two or three dimensional configurations

Assignee: LONPOS BRAINTELLIGENT CO LTDPriority: May 2, 2007Filed: Aug 17, 2007Published: Nov 6, 2008
Est. expiryMay 2, 2027(~0.8 yrs left)· nominal 20-yr term from priority
A63H 33/08
55
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Claims

Abstract

The present invention relates to building base plates assembled to make two or three dimensional pyramids. Eight building base plates ( 1 A˜ 1 H) can be arranged as a rectangular plane ( 50 ) with seven cubic units in longitudinal direction, five cubic units in transversal direction; or assembled to build a five-layer ( 61˜65 ) pyramid ( 60 ) on a triangular frame each side arrayed five cubic units, a first layer arrayed fifteen cubic units. Furthermore, four building base plates ( 1 I˜ 1 L) with different shapes added to the eight building base plates ( 1 A˜ 1 H), totally fifty six cubic units of those twelve building base plates make a rectangular shape ( 70 ) with eight cubic units in longitudinal direction, seven cubic units in transversal direction, or assembled to build a six-layer ( 81˜86 ) pyramid ( 80 ) on a triangular frame, each side arrayed six cubic units, a first layer of the pyramid arrayed twenty one cubic units.

Claims

exact text as granted — not AI-modified
1 . Building base plates assembled to build block sets in two or three dimensional pyramids characterized in that: a block sets ( 10 ) comprising eight building base plates ( 1 A˜ 1 H) each contains three to five cubic units connected together to form two dimensional plates compatible with a coordinated system with X axis and Y axis to define orientations, shapes of the building base plates ( 1 A˜ 1 H) as following:
 a building base plate ( 1 A) has four cubic units (a 1 ˜a 4 ) shaped as the first to the third cubic units (a 1 ˜a 3 ) are connected in a row vertically, the fourth cubic unit (a 4 ) is connected horizontally to a lateral side of the third cubic unit (a 3 );   a building base plate ( 1 B) has five cubic units (b 1 ˜b 5 ) shaped as the first to the third cubic units (b 1 ˜b 3 ) are connected in a row vertically, the fourth and the fifth cubic units are also connected in a row vertically, but the fourth and the fifth cubic units (b 4 ,b 5 ) are connected horizontally to a lateral side of the first and second cubic units (b 1 ,b 2 );   a building base plate ( 1 C) has five cubic units (c 1 ˜c 5 ) shaped as the first to the fourth cubic units (c 1 ˜c 4 ) are connected in a row vertically, the fifth cubic unit (c 5 ) is connected horizontally to a lateral side of the third cubic unit (c 3 );   a building base plate ( 1 D) has three cubic units (d 1 ˜d 3 ) shaped as the first and second cubic units (d 1 ,d 2 ) are connected in a row vertically, the third cubic unit (d 3 ) is connected to a lateral side of the first cubic unit (d 1 );   a building base plate ( 1 E) has five cubic units (e 1 ˜e 5 ) shaped as the first and second cubic units (e 1 ,e 2 ) are connected in a row vertically, the third and fourth cubic units (e 3 ,e 4 ) are connected in a row vertically, and the third cubic unit (e 3 ) is connected horizontally to the left side of the second cubic unit (e 2 ), while the fifth cubic unit (e 5 ) is connected horizontally to the left side of the fourth cubic unit (e 4 );   a building base plate ( 1 F) has four cubic units (f 1 ˜f 4 ) shaped as the first and second cubic units (f 1 ,f 2 ) are connected in a row vertically, the third and fourth cubic units (f 3 ,f 4 ) are connected in a row vertically, and the third cubic unit (f 3 ) is connected horizontally to the lateral side of the second cubic unit (f 2 );   a building base plate ( 1 G) has four cubic units (g 1 ˜g 4 ) shaped as the first to the third cubic units (g 1 ˜g 3 ) are connected in a row vertically, the fourth cubic unit (g 4 ) are connected horizontally to the lateral side of the second cubic unit (g 2 ); and   a building base plate ( 1 H) has five cubic units (h 1 ˜h 5 ) shaped as the first to the third cubic units (h 1 ˜h 3 ) are connected in a row vertically, the fourth cubic unit (h 4 ) are connected horizontally to the left side of the second cubic unit (h 2 ), while the fifth cubic unit (h 5 ) is connected horizontally to the right side of the second cubic unit (h 2 ).   
   
   
       2 . Building base plates assembled to build block sets in two or three dimensional configurations according to  claim 1  wherein a bottom seat ( 30 A) received seven cubic units in a longitudinal direction, five cubic units in a transversal direction, totally thirty five cubic units of eight building base plates ( 1 A˜ 1 H) assembled to fill the bottom seat ( 30 A) to make a rectangular plane ( 50 ). 
   
   
       3 . Building base plates assembled to build block sets in two or three dimensional configurations according to  claim 2  wherein an upper surface of bottom seat ( 30 A) has thirty five grooves ( 32 ), opposite to the grooves, each cubic unit of eight building base plates ( 1 A˜ 1 H) has a block ( 11 ) projected outward can be embedded in the groove ( 32 ). 
   
   
       4 . Building base plates assembled to build block sets in two or three dimensional configurations according to  claim 1  wherein a triangular frame ( 40 A) with five grooves on each side, totally fifteen grooves ( 42 ) on an upper surface of the triangular frame ( 40 A), eight building base plates ( 1 A˜ 1 H) assembled on the triangular frame ( 40 A) to build a five-layer ( 61 ˜ 65 ) pyramid ( 60 ). 
   
   
       5 . Building base plates assembled to build block sets in two or three dimensional configurations characterized in that: four building base plates ( 10 ′) added to the eight building base plates ( 10 ) of  claim 1  increased to twelve building base plates ( 20 ), the eight building base plates each contains three to five cubic units, the added four building base plates ( 10 ′) each contains five or six cubic units, the twelve building base plates assembled compatible with a coordinate system with X axis and Y axis to define orientations, shapes of twelve building base plates ( 1 A˜ 1 L) as following:
 a building base plate ( 1 A) has four cubic units (a 1 ˜a 4 ) shaped as the first to the third cubic units (a 1 ˜a 3 ) are connected in a row vertically, the fourth cubic unit (a 4 ) is connected horizontally to a lateral side of the third cubic unit (a 3 );   a building base plate ( 1 B) has five cubic units (b 1 ˜b 5 ) shaped as the first to the third cubic units (b 1 ˜b 3 ) are connected in a row vertically, the fourth and the fifth cubic units are also connected vertically, but the fourth and the fifth cubic units (b 4 ,b 5 ) are connected horizontally to a lateral side of the first and second cubic units (b 1 ,b 2 );   a building base plate ( 1 C) has five cubic units (c 1 ˜c 5 ) shaped as the first to the fourth cubic units (c 1 ˜c 4 ) are connected in a row vertically, the fifth cubic unit (c 5 ) is connected horizontally to the lateral side of the third cubic unit (c 3 );   a building base plate ( 1 D) has three cubic units (d 1 ˜d 3 ) shaped as the first and second cubic units (d 1 ,d 2 ) are connected in a row vertically, the third cubic unit (d 3 ) is connected to the lateral side of the first cubic unit (d 1 );   a building base plate ( 1 E) has five cubic units (e 1 ˜e 5 ) shaped as the first and second cubic units (e 1 ,e 2 ) are connected in a row vertically, the third and fourth cubic units (e 3 ,e 4 ) are connected in a row vertically, and the third cubic unit (e 3 ) is connected horizontally to the left side of the second cubic unit (e 2 ), while the fifth cubic unit (e 5 ) is connected horizontally to the left side of the fourth cubic unit (e 4 );   a building base plate ( 1 F) has four cubic units (f 1 ˜f 4 ) shaped as the first and second cubic units (f 1 ,f 2 ) are connected in a row vertically, the third and fourth cubic units (f 3 ,f 4 ) are connected in a row vertically, and the third cubic unit (f 3 ) is connected horizontally to a lateral side of the second cubic unit (f 2 );   a building base plate ( 1 G) has four cubic units (g 1 ˜g 4 ) shaped as the first to the third cubic units (g 1 ˜g 3 ) are connected in a row vertically, the fourth cubic unit (g 4 ) is connected horizontally to the lateral side of the second cubic unit (g 2 ); and   a building base plate ( 1 H) has five cubic units (h 1 ˜h 5 ) shaped as the first to the third cubic units (h 1 ˜h 3 ) are connected in a row vertically, the fourth cubic unit (h 4 ) are connected horizontally to the left side of the second cubic unit (h 2 ), while the fifth cubic unit (h 5 ) is connected horizontally to the right side of the second cubic unit (h 2 );   a building base plate ( 1 I) has five cubic units (i 1 ˜i 5 ) shaped as the first to the fourth cubic units (i 1 ˜i 4 ) are connected in a row vertically while the fifth cubic unit (i 5 ) is connected horizontally to a lateral side of the first cubic unit (i 1 );   a building base plate ( 1 J) has five cubic units (j 1 ˜j 5 ) shaped as the first to the third cubic units (j 1 ˜j 3 ) are connected in a row vertically, the fourth and the fifth cubic units (j 4 ˜j 5 ) are connected in a row vertically, while the fourth cubic unit (j 4 ) is connected horizontally to the lateral side of the third cubic unit (j 3 );   a building base plate ( 1 K) has five cubic units (k 1 ˜k 5 ) shaped as the first to the third cubic units (k 1 ˜k 3 ) are connected in a row vertically, the fourth cubic unit (k 4 ) is connected horizontally to the left side of second cubic unit (k 2 ) while the fifth cubic unit (k 5 ) is connected horizontally to the right side of the first cubic unit (k 1 ); and   a building base plate ( 1 L) has six cubic units (l 1 ˜l 6 ) shaped as the first to the third cubic units are connected in a row vertically, the fourth and the fifth cubic units (l 4 ,l 5 ) are connected in a row vertically as well as connected horizontally to the left side of the second and third cubic units (l 2 ,l 3 ) respectively, the six cubic unit (l 6 ) is connected horizontally to the left side of the fifth cubic unit (l 5 ).   
   
   
       6 . Building base plates assembled to build block sets in two and three dimensional configurations according to  claim 5  wherein an upper surface of bottom seat ( 30 B) accommodates eight cubic units in longitudinal direction, seven cubic units in transversal direction, thereby fifty six cubic units of the twelve building base plates ( 1 A˜ 1 L) fulfill an upper surface of the bottom seat ( 30 B) in a rectangular shape. 
   
   
       7 . Building base plates assembled to build block sets in two and three dimensional configurations according to  claim 6  wherein an upper surface of bottom seat ( 30 B) has fifty six grooves ( 32 ), each of the fifty six cubic units of the twelve building base plates has a block projected outward from a surface, which is opposite to the groove ( 32 ), the cubic units can be embedded in the grooves ( 32 ). 
   
   
       8 . Building base plates assembled to build block sets in two and three dimensional configurations according to  claim 5  wherein a triangular frame ( 40 B) with six grooves on each side therefore totally twenty one grooves ( 42 ) on an upper surface of the triangular frame ( 40 B), twelve building base plates ( 1 A˜ 1 L) assembled on the triangular frame ( 40 B) to build a six-layer ( 81 ˜ 86 ) pyramid ( 80 ).

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