CHINT Moulded Case Circuit Breaker MCCB

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16 / 12 / 2019
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Specification of CHINT Moulded Case Circuit Breaker MCCB

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NM1 series Breaking Capacity Type C 10kA 3P. Icu( kA) = 10 * NM1-100E/ 3300. In( A) = 16, 20, 25, 32, 40, 50, 63; Rp_ * NM1-125C/ 3300. In( A) = 80, 100; Rp_ * NM1-125C/ 3300. In( A) = 125; Rp_ Breaking Capacity Type S 15-35kA 3P * NM1-63S/ 3300. In( A) = 10, 16, 20, 25, 32, 40, 50, 63. Icu( kA) = 15; Rp_ * NM1-125S/ 3300. In( A) = 80, 100. Icu( kA) = 25/ 3; Rp_ * NM1-125S/ 3300. In( A) = 125. Icu( kA) = 25/ 3; Rp_ * NM1-250S/ 3300. In( A) = 160, 180, 200, 25/ 5. Icu( kA) = 25/ 5; Rp_ * NM1-250S/ 3300. In( A) = 250. Icu( kA) = 25/ 5; Rp_ * NM1-400S/ 3300. In( A) = 315, 350, 400. Icu( kA) = 35/ 10; Rp_ * NM1-630S/ 3300. In( A) = 500, 630. Icu( kA) = 35/ 12; Rp_ 4P * NM1-400S/ 4300. In( A) = 350, 400. Icu( kA) = 35/ 10; Rp_ * NM1-630S/ 4300. In( A) = 500, 630. Icu( kA) = 35/ 12; Rp_ Breaking Capacity Type H 35-65kA 2P Icu( kA) = 50/ 8 * NM1-125H/ 2300. In( A) = 80, 100, 125; Rp_ * NM1-250H/ 2300. In( A) = 160, 180, 225; Rp_ * NM1-250H/ 3300. In( A) = 250; Rp_ 3P * NM1-63H/ 3300. In( A) = 10, 16, 20, 25, 32, 40, 50, 63. Icu( kA) = 35; Rp_ * NM1-125H/ 3300. In( A) = 80, 100. Icu( kA) = 50/ 8; Rp_ * NM1-250H/ 3300. In( A) = 160, 180, 200, 225. Icu( kA) = 50/ 8; Rp_ * NM1-250H/ 3300. In( A) = 250. Icu( kA) = 50/ 8; Rp_ * NM1-400H/ 3300. In( A) = 315, 350, 400. Icu( kA) = 50/ 12. Rp_ * NM1-630H/ 3300. In( A) = 500, 630. Icu( kA) = 50/ 12; Rp_ * NM1-800H/ 3300. In( A) = 800. Icu( kA) = 60; Rp_ * NM1-1250H/ 3300. In( A) = 1000, 1250. Icu( kA) = 65; Rp_ 4P * NM1-63H/ 4300. In( A) = 10, 16, 20, 25, 32, 40, 50, 63. Icu( kA) = 35; Rp_ * NM1-100H/ 4300. In( A) = 80, 100. Icu( kA) = 50/ 8; Rp_ * NM1-225H/ 4300. In( A) = 160, 180, 200, 225. Icu( kA) = 50/ 8; Rp_ * NM1-225H/ 4300. In( A) = 250. Icu( kA) = 50/ 8; Rp_ * NM1-800H/ 4300. In( A) = 800. Icu( kA) = 60/ 8; Rp_ NM8 series Breaking Capacity tipe S 50-70kA 3P * NM8-125S/ 3300. In( A) ( .8-1 xIn) 16, 20, 25, 32, 40, 50, 63, 80, 100, 125. Icu( kA) = 50; Rp_ * NM8-250S/ 3300. In( A) ( .8-1 xIn) 160, 180, 200, 225, 250. Icu( kA) = 50; Rp_ * NM8-400S/ 3300. In( A) ( .8-1 xIn) 315, 350, 400. Icu( kA) = 70; Rp_ * NM8-630S/ 3300. In( A) ( .8-1 xIn) 500. Icu( kA) = 70; Rp_ * NM8-800S/ 3300. In( A) ( .8-1 xIn) 800. Icu( kA) = 50; Rp_ * NM8-1250S/ 3300. In( A) ( .8-1 xIn) 1000, 1250. Icu( kA) = 50; Rp_ 4P * NM8-125S/ 4300. In( A) ( .8-1 xIn) 16, 20, 25, 32, 40, 50, 63, 80, 100, 125. Icu( kA) = 50; Rp_ * NM8-250S/ 4300. In( A) ( .8-1 xIn) 160, 180, 200, 225, 250. Icu( kA) = 50; Rp_ * NM8-400S/ 4300. In( A) ( .8-1 xIn) 315, 350, 400. Icu( kA) = 70; Rp_ * NM8-630S/ 4300. In( A) ( .8-1 xIn) 500. Icu( kA) = 70; Rp_ * NM8-800S/ 4300. In( A) ( .8-1 xIn) 800. Icu( kA) = 50; Rp_ * NM8-1250S/ 4300. In( A) ( .8-1 xIn) 1000, 1250. Icu( kA) = 50; Rp_ Breaking Capacity tipe H 70-100kA 2P * NM8-125H/ 2300. In( A) ( .8-1 xIn) 16, 20, 25, 32, 40, 50, 63, 80, 100, 125. Icu( kA) = 100; Rp_ 3P * NM8-125H/ 3300. In( A) ( .8-1 xIn) 16, 20, 25, 32, 40, 50, 63, 80, 100, 125. Icu( kA) = 100; Rp_ * NM8-250H/ 3300. In( A) ( .8-1 xIn) 160, 180, 200, 225, 250. Icu( kA) = 100; Rp_ * NM8-400H/ 3300. In( A) ( .8-1 xIn) 315, 350, 400. Icu( kA) = 100; Rp_ * NM8-630H/ 3300. In( A) ( .8-1 xIn) 500. Icu( kA) = 100; Rp_ * NM8-800H/ 3300. In( A) ( .8-1 xIn) 800. Icu( kA) = 70; Rp_ * NM8-1250H/ 3300. In( A) ( .8-1 xIn) 1000, 1250. Icu( kA) = 70; Rp_ 4P * NM8-125H/ 4300. In( A) ( .8-1 xIn) 16, 20, 25, 32, 40, 50, 63, 80, 100, 125. Icu( kA) = 100; Rp_ * NM8-250H/ 4300. In( A) ( .8-1 xIn) 160, 180, 200, 225, 250. Icu( kA) = 100; Rp_ * NM8-400H/ 4300. In( A) ( .8-1 xIn) 315, 350, 400. Icu( kA) = 100; Rp_ * NM8-630H/ 4300. In( A) ( .8-1 xIn) 500. Icu( kA) = 100; Rp_ * NM8-800H/ 4300. In( A) ( .8-1 xIn) 800. Icu( kA) = 70; Rp_ * NM8-1250H/ 4300. In( A) ( .8-1 xIn) 1000, 1250. Icu( kA) = 70; Rp_ NM8S series Breaking Capacity tipe S 50-70kA 3P * NM8S-125S/ 3300. In( A) ( .4-1 xIn) 40, 100, 125. Icu( kA) = 50; Rp_ * NM8S-250S/ 3300. In( A) ( .4-1 xIn) 160, 200, 250. Icu( kA) = 50; Rp_ * NM8S-400S/ 3300. In( A) ( .4-1 xIn) 315, 350, 400. Icu( kA) = 70; Rp_ * NM8S-630S/ 3300. In( A) ( .4-1 xIn) 500, 630. Icu( kA) = 70; Rp_ * NM8S-800S/ 3300. In( A) ( .4-1 xIn) 800. Icu( kA) = 50; Rp_ * NM8S-1250S/ 3300. In( A) ( .4-1 xIn) 1000, 1250. Icu( kA) = 50; Rp_ 4P * NM8S-125S/ 4300. In( A) ( .4-1 xIn) 40, 100, 125. Icu( kA) = 50; Rp_ * NM8S-250S/ 4300. In( A) ( .4-1 xIn) 160, 200, 250. Icu( kA) = 50; Rp_ * NM8S-400S/ 4300. In( A) ( .4-1 xIn) 315, 350, 400. Icu( kA) = 70; Rp_ * NM8S-630S/ 4300. In( A) ( .4-1 xIn) 500, 630. Icu( kA) = 70; Rp_ * NM8S-800S/ 4300. In( A) ( .4-1 xIn) 800. Icu( kA) = 50; Rp_ * NM8S-1250S/ 4300. In( A) ( .4-1 xIn) 1000, 1250. Icu( kA) = 50; Rp_ Breaking Capacity tipe H 70-100kA 3P * NM8S-125H/ 3300. In( A) ( .4-1 xIn) 16, 20, 25, 32, 40, 50, 63, 80, 100, 125. Icu( kA) = 70; Rp_ * NM8S-250H/ 3300. In( A) ( .4-1 xIn) 160, 180, 200, 225, 250. Icu( kA) = 70; Rp_ * NM8S-400H/ 3300. In( A) ( .4-1 xIn) 315, 350, 400. Icu( kA) = 100; Rp_ * NM8S-630H/ 3300. In( A) ( .4-1 xIn) 500, 630. Icu( kA) = 100; Rp_ * NM8S-800H/ 3300. In( A) ( .4-1 xIn) 800. Icu( kA) = 70; Rp_ * NM8S-1250H/ 3300. In( A) ( .4-1 xIn) 1000, 1250. Icu( kA) = 70; Rp_ 4P * NM8S-125H/ 4300. In( A) ( .4-1 xIn) 16, 20, 25, 32, 40, 50, 63, 80, 100, 125. Icu( kA) = 70; Rp_ * NM8S-250H/ 4300. In( A) ( .4-1 xIn) 160, 180, 200, 225, 250. Icu( kA) = 70; Rp_ * NM8S-400H/ 4300. In( A) ( .4-1 xIn) 315, 350, 400. Icu( kA) = 100; Rp_ * NM8S-630H/ 4300. In( A) ( .4-1 xIn) 500, 630. Icu( kA) = 100; Rp_ * NM8S-800H/ 4300. In( A) ( .4-1 xIn) 800. Icu( kA) = 70; Rp_ * NM8S-1250H/ 4300. In( A) ( .4-1 xIn) 1000, 1250. Icu( kA) = 70; Rp_ Pls email to dktwell@ yahoo.com for specs & pricing. Kami menyediakan jasa interior / lighting design berikut instalasi untuk rumah, kantor, gedung & outdoor. Kami juga menyediakan jasa pembuatan panel listrik & instalasi lift / elevator. Terima kasih
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