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Article | Description | T (50/60Hz) [Nm] | n (50/60Hz) [rpm] | L [mm] | D [mm] | P (50/60Hz) [kW] | I (@ Y) (50/60Hz) [A] | I (@ Δ) (50/60Hz) [A] | m [kg] |
P.GW10.3.400.26.KW | GW10 2.6 3ph 400V with CW+CH 10B z16 | 100 / 80 | 2,6 / 3,1 | 168 | 124 | 0,09 / 0,11 | 0,4 / 0,4 | 0,7 / 0,7 | 21 |
2 P.GW10.3.400.26.KW 11 GW10 2.6 3ph 400V with CW+CH 10B z16 12 13 P.GW10.400.26.KW.jpg 14 15 CAT_P.GW10.400.26.KW_2D.gif 17 16 10 | |||||||||
P.GW10.3.400.52.KW | GW10 5.2 3ph 400V with CW+CH 10B z16 | 100 / 80 | 5,2 / 6,2 | 191 | 124 | 0,18 / 0,22 | 0,7 / 0,7 | 1,2 / 1,2 | 24 |
2 P.GW10.3.400.52.KW 11 GW10 5.2 3ph 400V with CW+CH 10B z16 12 13 P.GW10.400.26.KW.jpg 14 15 CAT_P.GW10.400.26.KW_2D.gif 17 16 10 | |||||||||
P.GW30.400.26.KW | GW30 2.6 3ph 400V with CW+CH 10B z16 | 300 / 240 | 2,6 / 3,1 | 220 | 145 | 0,25 / 0,30 | 0,8 / 0,8 | 1,4 / 1,4 | 24 |
2 P.GW30.400.26.KW 11 GW30 2.6 3ph 400V with CW+CH 10B z16 12 13 P.GW30.400.26.KW.jpg 14 15 CAT_P.GW30.400.26.KW_2D.gif 17 16 10 | |||||||||
P.GW30.400.52.KW | GW30 5.2 3ph 400V with CW+CH 10B z16 | 300 / 240 | 5,2 / 6,2 | 220 | 145 | 0,37 / 0,44 | 1,2 / 1,2 | 2,1 / 2,1 | 27 |
2 P.GW30.400.52.KW 11 GW30 5.2 3ph 400V with CW+CH 10B z16 12 13 P.GW30.400.26.KW.jpg 14 15 CAT_P.GW30.400.26.KW_2D.gif 17 16 10 | |||||||||
P.GW40.400.26.KW | GW40 2.6 3ph 400V with CW+CH 10B z16 | 400 / 320 | 2,6 / 3,1 | 220 | 159 | 0,37 / 0,44 | 1,0 / 1,0 | 1,7 / 1,7 | 29 |
2 P.GW40.400.26.KW 11 GW40 2.6 3ph 400V with CW+CH 10B z16 12 13 P.GW80.400.26.KW.jpg 14 15 CAT_P.GW80.400.26.KW_2D.gif 17 16 10 | |||||||||
P.GW40.3.400.52.KW | GW40 5.2 3ph 400V with CW+CH 10B z16 | 400 / 320 | 5,2 / 6,2 | 220 | 137 | 0,55 / 0,66 | 1,5 / 1,5 | 2,6 / 2,6 | 29 |
2 P.GW40.3.400.52.KW 11 GW40 5.2 3ph 400V with CW+CH 10B z16 12 13 P.GW80.400.26.KW.jpg 14 15 CAT_P.GW80.400.26.KW_2D.gif 17 16 10 | |||||||||
P.GW80.400.26.KW | GW80 2.6 3ph 400V with CW+CH 10B z16 | 800 / 640 | 2,6 / 3,1 | 218 | 159 | 0,55 / 0,66 | 1,5 / 1,5 | 2,6 / 2,6 | 31 |
2 P.GW80.400.26.KW 11 GW80 2.6 3ph 400V with CW+CH 10B z16 12 13 P.GW80.400.26.KW.jpg 14 15 CAT_P.GW80.400.26.KW_2D.gif 17 16 10 | |||||||||
P.GW80.2.400.40.KW | GW80 4.0 3ph 400V with CW+CH 10B z16 d25 | 800 / 640 | 4,0 / 4,8 | 242 | 159 | 0,75 / 0,90 | 2,0 / 2,0 | 3,5 / 3,5 | 38 |
2 P.GW80.2.400.40.KW 11 GW80 4.0 3ph 400V with CW+CH 10B z16 d25 12 13 P.GW80.400.26.KW.jpg 14 15 CAT_P.GW80.400.26.KW_2D.gif 17 16 10 |
Article | Description | Chain | Shaft | Tmax [Nm] | Db [mm] | D [mm] | L [mm] | m [kg] |
P.LKWL10B.Z16.D100 | Weld sprocket 10B z16 - 1" and 2" | 10B z16 | D100 | 420 | 34 | 96 | 30 | 0,5 |
2 P.LKWL10B.Z16.D100 11 Weld sprocket 10B z16 - 1" and 2" 12 13 P.LKWL10B.Z16.D100.jpg 15 16 CAT_P.LKWL10B.Z16.D100_2D.gif 17 10 |
Article | Description | Chain | Shaft | Tmax [Nm] | Db [mm] | D [mm] | L [mm] | m [kg] |
P.BBKWL10B.Z16.D100 | Tube bolt sprocket 10B z16 - 1" | 10B z16 | D100 | 420 | 34 | 96 | 150 | 0,8 |
2 P.BBKWL10B.Z16.D100 11 Tube bolt sprocket 10B z16 - 1" 12 13 P.BBKWL10B.Z16.D100.jpg 15 16 CAT_P.BBKWL10B.Z16.D125_2D.gif 17 10 |
Article | Description | A [mm] | H [mm] | D1 [mm] | d [mm] | m [kg] |
P.KL100.H.A107 | Ball bearing plate 1" H A107 H153 | 107 | 153 | 34,5 | 3 | 0,7 |
2 P.KL100.H.A107 11 Ball bearing plate 1" H A107 H153 12 13 P.KL000.H.A000.jpg 14 10 CAT_P.KL000.H.A000_2D.gif |
Article | Description | D1 [mm] | D2 [mm] | m [kg] |
P.KABELRING | Cable clamp 1" d36 D50 4xØ4,5 | 50 | 36 | 0,09 |
To achieve optimum utilisation of the cultivation area and optimal strawberry cultivation and working conditions during harvesting, movable cultivation gutters are the solution. For the desired growth and production, the cultivation gutters are hung at the ideal distance from each other. During harvesting, space is created between the growing gutters for the harvesting staff and harvesting trolleys. With the swing system, this is done by alternately lowering or tightening the pulling cables at half of the cultivation gutters towards the centrally positioned motor gearbox and winding shaft. In this system, the winding shaft runs in the direction of the gutter. With the high/low system, half of the cultivation gutters are alternately raised and the other half lowered with cables. When the cultivation gutters are hanging low, harvesting can take place at the optimum height. The high/low system is driven by worm gearboxes and high-speed geared motors that drive winding shafts mounted in a trellis direction. We are happy to offer you our knowledge and expertise to come up with a good drive system for strawberry growing gutters.
De Gier Drive Systems
+ 31 174 29 20 89
Westlandseweg 9
2291 PG Wateringen
Netherlands
+31 174 29 20 89
sales@degierdrivesystems.com
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