Fuse-links type CEF-S Rated voltages: 6/12 kv 30/40.5 kv Rated currents: 6.3 A 63 A

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DISTRIBUTION SOLUTIONS Fuse-links type CEF-S Rated voltages: 6/12 kv 30/40.5 kv Rated currents: 6.3 A 63 A Superior performance versus standard fuses ensuring up to 40% faster protection in case of low fault currents Robust design suitable for harsh conditions, proven by tests according to the latest IEC standards, secures continuous protection and reliable operation Compatibility with other ABB products provides fast and accurate product selection Fuse-links type CEF-S are designed for fast acting protection of distribution transformers, increasing safety on low voltage side of the transformer Key features: Designed and type tested acc. to IEC 60282-1 Low power losses, generating additional savings during product life-cycle Top level fault current limitation and interruption performance up to 63kA RMS Outdoor sealing included in standard version, designed and tested for harsh conditions Welded current path Contacts made from silver coated coopper Striker 80N (medium type) Equipped with Temperature Control Unit enabling the additional protection against thermal stresses in small enclosures Low switching voltages secure safe operation in wide voltage range, e.g. from 10kV to 24kV marked as 10/24kV

2 FUSE-LINKS TYPE CEF-S Ordering table of fuse-links type CEF-S: Catalog number Fuse name Rated voltage U n [kv] Rated current I n [A] Length e [mm] Diameter D [mm] EAN 13 Code 1YMB741216M2611 CEF-S 6/12 10 292 65 5908270808034 1YMB741218M2611 CEF-S 6/12 16 292 65 5908270808041 1YMB741219M2611 CEF-S 6/12 20 292 65 5908270808058 1YMB741221M2611 CEF-S 6/12 25 292 65 5908270808065 1YMB741225M2611 CEF-S 6/12 40 292 65 5908270808072 1YMB741227M2611 CEF-S 6/12 50 292 65 5908270808089 1YMB741229M2611 CEF-S 6/12 63 292 65 5908270807495 1YMB742416M4611 CEF-S 10/24 10 442 65 5908270808096 1YMB742418M4611 CEF-S 10/24 16 442 65 5908270808102 1YMB742419M4611 CEF-S 10/24 20 442 65 5908270808119 1YMB742421M4611 CEF-S 10/24 25 442 65 5908270808126 1YMB742425M4611 CEF-S 10/24 40 442 65 5908270808133 1YMB742427M4611 CEF-S 10/24 50 442 65 5908270807501 1YMB744014M5611 CEF-S 30/40.5 6.3 537 65 5908270805682 1YMB744016M5611 CEF-S 30/40.5 10 537 65 5908270805699 1YMB744018M5611 CEF-S 30/40.5 16 537 65 5908270805705 1YMB744019M5611 CEF-S 30/40.5 20 537 65 5908270805712 1YMB744021M5611 CEF-S 30/40.5 25 537 65 5908270805729 1YMB744024M5611 CEF-S 30/40.5 31.5 537 65 5908270805736 1YMB744025M5811 CEF-S 30/40.5 40 537 87 5908270805743 1YMB744027M5811 CEF-S 30/40.5 50 537 87 5908270805750 1YMB744029M5811 CEF-S 30/40.5 63 537 87 5908270805385 Technical data fuse-links type CEF-S: Fuses are meeting requirements of the standards: IEC 60282-1, DIN 43625. All ratings are back-up type, equipped with 80N striker (medium type) and sealed for indoor/outdoor application. Fuse name Rated voltage U n [kv] Rated current I n [A] Fuse breaking capacity I 1 [ka] Fuse minimal breaking current I 3 [A] Breaking current at ms I 0.1s [A] Diameter D [mm] Length e [mm] Rated power P w [W] Fuse-link cold resistance [mω] CEF-S 6/12 10 50 55 48 65 292 25 187 CEF-S 6/12 16 50 55 80 65 292 38 108.5 CEF-S 6/12 20 50 72 120 65 292 38 72.3 CEF-S 6/12 25 50 72 160 65 292 36 46.5 CEF-S 6/12 40 50 240 65 292 54 24.5 CEF-S 6/12 50 50 190 330 65 292 71 18.8 CEF-S 6/12 63 63 190 440 65 292 82 14.1 CEF-S 10/24 10 25 55 48 65 442 54 373.2 CEF-S 10/24 16 25 55 80 65 442 58 186.6 CEF-S 10/24 20 25 72 120 65 442 66 124.4 CEF-S 10/24 25 25 72 160 65 442 74 93.3 CEF-S 10/24 40 25 110 240 65 442 107 48.7 CEF-S 10/24 50 63 220 330 65 442 125 32.5 CEF-S 30/40.5 6.3 20 50 43 65 537 49 927 CEF-S 30/40.5 10 20 66 54 65 537 51 615 CEF-S 30/40.5 16 20 52 87 65 537 112 313 CEF-S 30/40.5 20 20 77 122 65 537 125 207 CEF-S 30/40.5 25 20 134 118 65 537 143 175 CEF-S 30/40.5 31.5 20 265 202 65 537 121 89.56 CEF-S 30/40.5 40 20 172 324 87 537 130 60.3 CEF-S 30/40.5 50 20 251 500 87 537 128 39.76 CEF-S 30/40.5 63 20 334 655 87 537 165 29.7 The breaking current at ms I 0.1 s values refer to total clearing time. Fuse minimal breaking current I 3 data are pre-arcing values.

FUSE-LINKS TYPE CEF-S 3 Dimension drawing of fuse-links type CEF-S: Choice of fuse-links for transformer protection: Transformer rating (kva) Transformer rated voltage [kv] 25 50 75 125 160 200 6 10 16 20 25 40 40 50 10 10 * 10 16 20 20 25 40 40 50 11 10 * 10 16 20 20 25 40 40 40 50 12 10 * 10 16 16 20 20 25 40 40 50 250 315 400 500 Fuse-link rating I n (A) 15 10 * 10 * 10 16 16 20 20 25 40 40 20 10 * 10 * 10* 10 16 16 20 20 25 40 40 22 10 * 10 * 10* 10 16 16 20 20 20 40 40 40 24 10 * 10 * 10 * 10 16 16 16 20 20 25 40 40 30 6.3 * 6.3 * 6.3 * 6.3* 6.3 10 16 16 20 40 40 40 40 40 40 50 63 63 36 6.3 * 6.3 * 6.3 * 6.3* 6.3 6.3 10 16 16 20 40 40 40 40 40 50 50 63 63 38.5 6.3 * 6.3 * 6.3 * 6.3* 6.3* 6.3 10 16 16 20 20 40 40 40 40 40 50 50 63 40.5 6.3 * 6.3 * 6.3 * 6.3* 6.3* 6.3 10 16 16 20 20 40 40 40 40 40 50 50 63 630 800 0 1250 1600 2000 2500 3000 Fuse rated voltage [kv] 6/12 10/24 30/40.5 Max. gg use-link at LV side (A) 40 80 125 160 160 200 250 250 300 400 400 800 0 0 0 0 1250 1250 1250 Recommended fuse rating is on the crossing of transformer rating and line voltage. For different line voltage level, please use closest smaller value from the table. The table was calculated according to standards IEC 60787 and IEC 62271-105 with following assumptions: Maximum long lasting transformer overload 120% Magnetizing transformer inrush current 12 x I n during ms (up to 800 kva) or 10 x I n during ms (800 kva and above) Transformer short-circuit voltage according to IEC 60076-5 No fuse derating due to small enclosures assumed For ratings marked with * fuse is not able to clear independently transformer s secondary side terminals short-circuit current For different working conditions fuse selection has to be recalculated.

4 FUSE-LINKS TYPE CEF-S CEF-S 6/12 kv, 10/24 kv fuses time-current characteristics: 0 10A 16A 20A 25A 40A 50A 63A 10 Pre-arcing time [s] 1 0,1 0,01 10 0 Prospective current [A] Characteristics show the average melting time as a function of the prospective current and are recorded from cold condition of fuse-link. The tolerance is ± 10% referred to the current.

FUSE-LINKS TYPE CEF-S 5 CEF-S 6/12 kv, 10/24 kv cut-off current characteristics: 1,8 x 2 x Ik 10 63A Maximum cut-off current I peak [ka] 50A 25A 20A 10A 1 0,1 0,1 1 10 Prospective short circuit current I rms [ka] Characteristics show the cut-off current corresponding to a prospective short circuit current. Characteristics are valid for frequency 50Hz.

6 FUSE-LINKS TYPE CEF-S CEF-S 30/40.5 kv time-current characteristics: 0 6,3A 10A 20A 16A 40A 63A 31,5A 50A 25A 10 Virtual pre-arcing time [s] 1 0,1 0,01 10 0 00 Prospective current [A] Characteristics show the average melting time as a function of the prospective current and are recorded from cold condition of fuse-link. The tolerance is ± 10% referred to the current.

FUSE-LINKS TYPE CEF-S 7 CEF-S 30/40.5kV cut-off characteristics: 1,8 x 2 x Ik 10 Maximum cut-off current I peak [ka] 63A 31,5A 25A 20A 16A 10A 6,3A 50A 40A 1 0,1 0,1 1 10 Prospective short circuit current I rms [ka] Characteristics show the cut-off current corresponding to a prospective short circuit current. Characteristics are valid for frequency 50Hz.

Fuse-link striker force and dimensions: Maximum striker travel 30 Ø9 90 Striker nominal force [N] 80 70 60 50 40 30 0 5 10 15 20 25 30 Distance from fuse-link s end cap [mm] Temperature Control Unit: The Temperature Control Unit (TCU) is tripping device which is integrated with the striker of high-voltage (HV) fuses. It is activated when the allowable temperature in the switchgear is exceeded. When the temperature is too high the TCU activates the striker by releasing the switch disconnector, which in turn opens the electric circuit and avoids further temperature increases. The high temperatures inside the switchgear interior may be caused by external conditions or by a high current passing through the fuse link. List of possible reasons of too high temperatures inside fuse compartment: reduced heat transfer inside the switchgear over-heating of degraded conducting contacts long-term fuse overloads improper selection of the fuse rating local melting of fuse elements caused by transformer inrush currents, starting currents of motors etc Safety is significantly increased when fuses are equipped with a TCU. This is especially true in devices where fuses are located inside closed fuse compartments, as is the case of SF6 switchgear. In gas insulated switchgear fuse canisters or in narrow panels of air switchgear the risk of overheating is high because cooling is limited. High temperatures in switchgears cause degradation and oxidation of the metal contacts, degradation of switchgear equipment or enclosures, and insulator ageing. Unfavorable effects, i.e. temperature rise inside the switchgear, leads to internal short-circuit and further temperature increases. In case of reaching too high temperature, TCU will be activated, releasing a striker and opening associated switch, thus eliminating the threat. ABB Contact Center tel.: +48 22 22 37 777 e-mail: kontakt@pl.abb.com ABB Sp. z o.o. branch Office in Przasnysz ul. Leszno 59, 06-300 Przasnysz tel.: +48 22 22 38 900 fax: +48 22 22 38 953 www.abb.pl We reserve the right to make technical changes or modify the contents of this document without prior notice. With regard to purchase orders, the agreed particulars shall prevail. ABB AG does not accept any responsibility whatsoever for potential errors or possible lack of information in this document. We reserve all rights in this document and in the subject matter and illustrations contained therein. Any reproduction, disclosure to third parties or utilization of its contents in whole or in parts is forbidden without prior written consent of ABB AG. Copyright 2018 ABB All rights reserved 2401PL1561-W1-en. Edition 05.2018