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Bürstenlose Gleichstrommotoren Baureihe BG - Dunkermotoren

Bürstenlose Gleichstrommotoren Baureihe BG - Dunkermotoren

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<strong>BG</strong> 75 MI, 220 - 450 WDimensions in mm / Maßzeichnung in mmrotatable/drehbarConnector/ SteckerM17, 4-pin (Power)1(+)0,06 A 20,033(-)Connector/SteckerM16, 12-pinConnector/SteckerM12, 5-pin65 ±0.2+0.012Ø 14 k6 +0.001AØ 32 -0.0545 Ø (M5, 9+2tief)4x Ø 5.23LØ 1531Woodruff key/PassfederA 5x5x222630 ±1Centring/ZentrierungDM4 DIN332BØ 32 -0.0556 Ø (M6, 9+2tief)Ø 45 (Ø 4.66, 13 tief)60 Ø (M6, 9+2tief)75 ±0.5Permissible shaft-load/Zulässige WellenbelastungF R [N]600500Ø 56 (Ø 5.61, 13 tief)Ø 60 (Ø 5.61, 13 tief)current/Strom I (A)3530N = f (M)Pin assignment / PinbelegungRadial-/ axialloads on the end of the shaftF A=Fr/3 for L h10= 20.000 hRadial-/ Axialkräfte am WellenendeF A=Fr/3 für L h10= 20.000 hϑ R =20°CΔϑ El = 80K40030020010000 1000 2000 3000 4000 5000 6000[rpm]Motor L<strong>BG</strong> 75x25 115±0.5<strong>BG</strong> 75x50 140±0.5<strong>BG</strong> 75x75 ϑ R =20°C 165±0.5Δϑ El = 80K25 100 5000η25 100 5000J = f (M)N = f (M)η J = f (M)12-Pin Signal 4-Pin Power / Signal 5-Pin CANA2080 IN04000G AI+ 1 20 80UPower 14000n.c.B IN1 H AI- 2 Ballast 2 n.c.15 60 300015 60 3000C IN2 J ULogic 3 GND Power 3 n.c.D IN3 K GNDLogic 4 Earth 4 CAN-H10 40 200010 40 2000E OUT1 L IN4 5 CAN-LF 5 20 OUT2 1000M OUT3I5 20 1000Limit =30A I Limit =50A I Limit =35A I Limit =50AM0N M maxM0 00 0NM max00 20 40 60 80 100 120 140 160 180 200In accordance with EN 60034Characteristic diagram / Belastungskennlinien NcmBelastungskennlinien gezeichnet nach EN 60034 Ncm35 35 7000 700035357000700035ϑ R ϑ=20°CR =20°CR =20°Cϑ 30 30 6000 6000Δϑ Δϑ El = El80K306000Δϑ R =20°C= 80K 306000W = 100KΔϑ El 30N = f (M)J = f (M)El = 80K25 25 100 100 5000 5000 N = f (M)η η251005000N = f N (M)J = f (M)25 100 5000 = f (M)J = f (M)N = f (M) η η J = f (M)25 100J = f (M)20 20 80 80 4000 4000202080804000400020 8015 15 60 60 3000 3000151560603000300015 6010 10 40 40 2000 2000101040402000200010 405 5 20 20 1000 1000I I Limit =35A Limit =30A I Limit =50A5I Limit =50A 5202010001000I Limit =35A I Limit =50A5 20Limit =30A I Limit =50AM0N M M maxM0 0NM0 0 0maxM M maxmax0 0 5020 10040 15060 20080 250100 300120 350140 400160 450180 5002000N M max0 025 40 50 80 75 120 100 160 125 200 150 240 175 280 200 320 225 360 250 400 0 00 20 40 60 80 100 120 140 160 180 200Ncm NcmNcm5202010001000I Limit =35A I Limit =50A5 20 1000mit =50A I Limit =35A I Limit =50A5 20 1000I Limit =35A I Limit =50A5 20M M maxM0 0 0NM maxM max0NM maxM0 0180 2000 50 40 100 80 150 120 200 160 250 200 300 240 350 280 400 320 450 360 5000 0 0N M max4000 25 50 75 100 125 150 175 200 225 2500 00 50 100 150 200 250 300 350 400 450 500NcmNcmNcm Ncm<strong>BG</strong> 75x25 MI, 24V<strong>BG</strong> 75x50 MI, 24 V35357000700035 35 7000 700035=20°Cϑ R =20°Cϑ R =20°Cϑ30306000R =20°Cϑ R =20°C6000Δϑ El 80K 30 30 6000 6000Δϑ W = 100KΔϑ El = 80KΔϑJ = f (M)El = 80KΔϑ El = 80K30252510010050005000 N = f (M)25 25 100 100 5000 5000f (M)J = f (M)J = f (M)N = f (M)η J = f (M)N = f (M) η η25 100202080804000400020 20 80 80 4000 400020 80151560603000300015 15 60 60 3000 300015 60101040402000200010 10 40 40 2000 200010 40current/Strom I (A)current/Strom I (A)efficiency/Wirkungsgrad η (%)efficiency/Wirkungsgrad η (%)rated speed/Drehzahl n (rpm)rated speed/Drehzahl n (rpm)current/Strom I (A) I (A)efficiency/Wirkungsgrad η (%)efficiency/Wirkungsgrad η (%)rated speed/Drehzahl n (rpm)70006000rated speed/Drehzahl n n (rpm)<strong>BG</strong> 75x50 MI, 40 Vcurrent/Strom I (A)3530current/Strom I (A) I (A)efficiency/Wirkungsgrad η (%)efficiency/Wirkungsgrad η (%)(%)rated speed/Drehzahl n (rpm)70006000rated speed/Drehzahl n n (rpm)M N0 40 80 120 160 200 240 280 320 360 400current/Strom I (A)current/Strom I (A)efficiency/Wirkungsgrad η (%)efficiency/Wirkungsgrad η (%)rated speed/Drehzahl n (rpm)rated speed/Drehzahl n (rpm)<strong>BG</strong> 75x75 MI, 40 Vcurrent/Strom I (A)current/Strom I (A)efficiency/Wirkungsgrad η (%)efficiency/Wirkungsgrad η (%)ϑ R =20°CΔϑ El = 80K353070006000ϑ R =20°CΔϑ W = 100K6925 100 5000 N = f (M) J = f (M)

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