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In SC (B) series epoxy resina arida genus Transformers habere commoda flammae retardant, Fireproof, CREPITUS-probationem, sustentacionem liberum, et parva magnitudine ex suis ut encapsulated in epoxy resinae. They can be directly installed in load centers and are widely used in power transmission and transformation systems, as important places as commercial residences, public buildings, airports, as well as in harsh environments like subways, smelters, ships, and marine drilling.
Card:Iec60076-1, Iec60076-11.
I. Ambiens Temperature: Maximum Temperature: + XL ° C, Minimum Temperature: -25 ℃.
II. Mediocris temperatus de calidissimus mensis: + XXX ℃, mediocris temperatus in calidissimus Year: + XX ℃.
III. Altitude non nimis 1000m.
IV. Quod waveform de potentia copia voltage est similis sinus fluctus.
V. Tres-tempus copia voltage sit circiter symmetrical.
VI. Et relativum humiditas in circuitu caeli debet esse minus quam XCIII%.
VII. Nec aqua droplets superficiei
VIII. Ubi ad uti: domesticas vel foris.
I. In sollicite disposito coil structuram et vacuum immersionem curatio ut sg (b) X TRANSFERNER OPERATIVUS sine
Partiales missionem et non exhibent resiliunt perficientur per suum muneris vitae. Et in sese gradu in bonam condicionem sicut prius.
II. High-intentione partis adoptat continua filum curva, humilis, voltage ffilturum, vacuo immersionem, curatio curatio et summus viribus tellus, quae resistentia est repentina brevis circuitu excursus.
III. Flamma retardant, explosion-probationem, non-toxicus, auto-exstinguunt, et fireproof
IV. Et SG (b) X TRANSFERNER FORUM Fere non fumus cum combusserit in summus temperatus aperto flamma
V. Intellectum est in Verto est genus H (CLXXX ℃).
VI. Et SINQUINUS Layer est ipsum tenuis, cum fortis brevis-term onerare facultatem, sine necessitate ad coactus refrigerationem, et can outload per CXX% ad diu terminus usus, CXL% per III horas. Ex suo elasticitate
Et non senescit proprietatibus, haec huiusmodi materia potest plene onusto tempore ad ± L ℃.
■ Ferrum Core:
Ferrum Core est de summus qualitas orientatur frigus, advolvit Silicon ferro sheet, cum
Laminated structuram de XLV ° plenus obliquus, et core columnae tenetur cum insulating tape.
● superficies ferrum core signatum cum insulating resin pingere ne humorem et rubigo, et fibula et fasteners sunt superficies, tractata ne rubigo.
■ humilis voltage aeris ffoyle coil:
● humilis-voltage curva est vulnus cum altus-species aeris ffoyle, ut nulla axialiter brevi-circuitu accentus potest esse in casu brevi circuitu. Et tendens et tendens finem in insulatas cum thermosetting epoxy prepreg panno. Clibano positus est totum. Post calefacere, et curvis aggregatur in solidum totum. Scientific et rationabile consilium et effundere processus facere productum partialis missionem minus, sonitus inferior et calor dissipatio facultatem fortis.
■ High voltage curva:
● est summus voltage curva adoptat enamelled aeris filum aut film-iactaret aeris filum et speculum fibra et epoxy resinae compositum materia sunt propter velit. Eius expansion coefficiens est similis, ut aeris conductor et habet bonum impulsum resistentia, temperatus mutare resistentia, et resistentia. Omnes components speculum fibra et epoxy resinae sunt auto-exstinguunt, flamma retardant et non-polluat. Epoxy resinae habet bonum velit proprietatibus et maxime idoneam faciens summus voltage lupit.
■ temperatus imperium fabrica et aer refrigerationem ratio:
● est temperatus imperium fabrica habet munera defectum metum, super-temperatus metum, super-temperatus trinus, automatic / manual in satus et control, et quod est in curuam temperatus et quod potest recordarentur in Temperature et in Turning est in vertente et in vertente in vertice, quod potest recordarentur in Temperature de Turn.
● Aeris-refrigerationem ratio adoptat crucem-fluxus summo-flante refrigerationem fan, quae habet characteres de low strepitu, excelsum ventus pressura et pulcher. Potest currere diu sub conditione coactus aer refrigerationem ad CXXV% de rated onus.
■ Crusta:
● Protegat testa et providere ulterius salutem praesidio ad Transformer, cum tutela campester ut IP20, ip23, etc.
● Crusta materiae includit frigus-advolvit ferro laminam, immaculatam ferro laminam, aluminium mixta, etc. pro users eligere a.
■ De Factory configuratione SCB sine tutela testa (IP00) est ut sequitur
● IV bi-directional flat rotae (cum rogatus a elit)
● IV lugs
● towing foramina in basi
● II House Points
● I Nameplate
● II "Electric aleam" Monitum Signa
● non onus voltage regulating ICTUS, operated cum transformator est powered off, ut aptet transfigurator ad ipsam copia voltage
● High voltage latus connectens virga cum connectens filum de desuper
● humilis-voltage outgoing Busbar cum supra outlet
■ De Factory configuratione de SCB cum IP21, IP23 Metallum tutela testa est ut sequitur
● Omnes contenta supra de SCB sine tutela Casting (IP00)
● I paro of IP21 metallum tutela habitationi, vexillum anti-corrosio praesidium
Rated facultas (KVA) | Voltage combination | Connection Group Label | Non-onus damnum (W) | Lond damnum (W) CXX ℃ | Non-onus Current (%) | SIRORUM INTERMEDance (%) | Dimensiones | Summa pondus (KG) | ||||
Altum voltage (KV) | Tapping range | Humilis voltage (KV) | L | W | H | |||||||
30 | VI 6,3 6,6 10 10,5 11 | ± V ± II × 2.5 | 0,4 | Dyn11 yyn0 | CCXX | DCCL | 2.4 | IV | DCC | CCCL | DCXX | CCL |
50 | CCCX | MLX | 2.4 | DCCX | CCCL | DCXXXV | CCXCV | |||||
80 | CDXX | MCDLX | 1.8 | DCCCLX | DCCXXX | DCCLXXX | CDXXX | |||||
C | CDL | MDCLXX | 1.8 | CMXL | DCCX | DCCXCV | DXX | |||||
CXXV | DXXX | MCMLX | 1.6 | M | DCCX | DCCCLX | DCLXX | |||||
CLX | DCX | MMCCL | 1.6 | MLXXX | DCCX | MXX | DCCCXL | |||||
CC | DCC | MMDCLXXX | 1.4 | MC | DCCX | MLX | CMLX | |||||
CCL | DCCCX | MMCMXX | 1.4 | MCL | DCCX | MC | MCXX | |||||
CCCXV | CMXC | MMMDCLXX | 1.2 | MCL | DCCLXX | MCXXV | MCCXXX | |||||
CD | MC | (IV) CCXX | 1.2 | MCXC | DCCCLXX | MCLXXV | MCDLXXXV | |||||
D | MCCCX | (V) CLXX | 1.2 | MCCXXX | DCCCLXX | MCCLXV | MDLXXX | |||||
DCXXX | MDX | (VI) CCXX | I | MCDLXV | DCCCLXX | MCCXLV | MDCCCXL | |||||
DCXXX | MCDLX | (VI) CCCX | I | VI | MCDLXV | DCCCLXX | MCCXLV | MDCCCXL | ||||
DCCC | MDCCX | (VII) CCCLX | I | MCDXX | DCCCLXX | MCCCXCV | MMCXXXV | |||||
M | MCMXC | (VIII) DCX | I | MCDLX | DCCCLXX | MCDXX | MMD | |||||
MCCL | MMCCCL | (X) CCLX | I | MDLXXX | CMLXX | MCDLXXXV | MMCMLXX | |||||
MDC | MMDCCLX | (XII) CD | I | MDCXL | MCXX | MDCCXV | MMMCM | |||||
MM | MMMCD | (XV) CCC | 0,8 | MDCCLXXX | MCXX | MDCCX | (IV) CCXXV | |||||
MMD | (IV) | (XVIII) CLXXX | 0,8 | MDCCCL | MCXX | MDCCLXX | (IV) DCCXC |
Rated facultas (KVA) | Voltage combination | Connection Group Label | Non-onus damnum (W) | Lond damnum (W) CXX ℃ | Non-onus Current (%) | SIRORUM INTERMEDance (%) | Dimensiones | Summa pondus (KG) | ||||
Altum voltage (KV) | Tapping range | Humilis voltage (KV) | L | W | H | |||||||
30 | VI 6,3 6,6 10 10,5 11 | ± V ± II × 2.5 | 0,4 | Dyn11 yyn0 | CXC | DCCX | II | IV | DLXXX | CDL | DCL | CCC |
50 | CCLXX | M | II | DC | CDL | DCL | CCCLXXX | |||||
80 | CCCLXX | MCCCLXXX | 1.5 | DCCCLXXX | D | DCCC | CDLXX | |||||
C | CD | MDLXX | 1.5 | CMLXX | D | DCCCXX | DLX | |||||
CXXV | CDLXX | MDCCCL | 1.3 | CMLXX | D | DCCCLX | DCL | |||||
CLX | DXL | MMCXXX | 1.3 | CMLXXX | DCL | CML | DCCLXXX | |||||
CC | DCXX | MMDXXX | 1.1 | M | DCL | CMLXX | DCCCLXXX | |||||
CCL | DCCXX | MMDCCLX | 1.1 | MXL | DCCLX | MLXX | MXXX | |||||
CCCXV | DCCCLXXX | MMMCDLXX | I | MC | DCCLX | MCX | MCCL | |||||
CD | CMLXXX | MMMCMXC | I | MCLXX | DCCLX | MCCXXXV | MCD | |||||
D | MCLX | (IV) DCCCLXXX | I | MCXC | DCCLX | MCCL | MDC | |||||
DCXXX | MCCCXL | (V) DCCCLXXX | 0,85 | MCCXX | DCCLX | MCCL | MCM | |||||
DCXXX | MCCC | (V) CMLX | 0,85 | VI | MCCXX | DCCLX | MCCL | MCM | ||||
DCCC | MDXX | (VI) CMLX | 0,85 | MCCCXXX | DCCLX | MCCCXXX | MMDLXXX | |||||
M | MDCCLXX | (VIII) CXXX | 0,85 | MCCCL | CMXX | MCDL | MMDCCCL | |||||
MCCL | MMXC | (IX) DCXC | 0,85 | MCDXL | CMXX | MDL | MMMCC | |||||
MDC | MMCDL | (XI) DCC | 0,85 | MDX | MCLXX | MDCXX | MMMDCCC | |||||
MM | MMMLX | (XIV) CD | 0,7 | MDXXX | MCLXX | MDCCLXXXV | (IV) CCLXXX | |||||
MMD | MMMDC | (XVII) C | 0,7 | MDLX | MCLXX | MCMXXX | (V) CCL |
Rated facultas (KVA) | Voltage combination | Connection Group Label | Non-onus damnum (W) | Lond damnum (W) CXX ℃ | Non-onus Current (%) | SIRORUM INTERMEDance (%) | Dimensiones | Summa pondus (KG) | ||||
Altum voltage (KV) | Tapping range | Humilis voltage (KV) | L | W | H | |||||||
30 | VI 6,3 6,6 10 10,5 11 | ± V ± II × 2.5 | 0,4 | Dyn11 yyn0 | CLXX | DCCX | 2.3 | IV | CMLV | DCCL | DCCCXL | CCLXX |
50 | CCXL | M | 2.2 | CMLXX | DCCL | DCCCLX | CCCXL | |||||
80 | CCCXXX | MCCCLXXX | 1.7 | MXV | DCCL | CMXXV | CDLX | |||||
C | CCCLX | MDLXX | 1.7 | MXXX | DCCL | CMLX | DXXX | |||||
CXXV | CDXX | MDCCCL | 1.5 | MLX | DCCL | M | DCV | |||||
CLX | CDLXXX | MMCXXX | 1.5 | MXC | CM | MXLV | DCCXXX | |||||
CC | DL | MMDXXX | 1.3 | MCV | CM | MLXXX | DCCCXXV | |||||
CCL | DCXL | MMDCCLX | 1.3 | MCLXXX | CM | MCXXV | MX | |||||
CCCXV | DCCXC | MMMCDLXX | 1.1 | MCCXXV | CM | MCXL | MCLXV | |||||
CD | DCCCLXXX | MMMCMXC | 1.1 | MCCCXXX | CM | MCXCV | MCDXC | |||||
D | MXL | (IV) DCCCLXXX | 1.1 | MCCCXLV | CM | MCCLV | MDCL | |||||
DCXXX | MCC | (V) DCCCLXXX | 0,9 | MDXL | MCL | MCLXXV | MCMXV | |||||
DCXXX | MCLXX | (V) CMLX | 0,9 | VI | MDXL | MCL | MCLXXV | MCMXV | ||||
DCCC | MCCCLX | (VI) CMLX | 0,9 | MDC | MCL | MCCXX | MMCCCV | |||||
M | MDXC | (VIII) CXXX | 0,9 | MDCXLV | MCL | MCCLXXXV | MMDCXC | |||||
MCCL | MDCCCLXXX | (IX) DCXC | 0,9 | MDCCV | MCL | MCCCXLV | MMMCCXXV | |||||
MDC | MMCC | (XI) DCC | 0,9 | MDCCLXV | MCL | MCDV | MMMDCCCV | |||||
MM | MMDCCXL | (XIV) CD | 0,7 | MDCCCXL | MCL | MCDLXXV | (IV) CDXXXV | |||||
MMD | MMMCCXL | (XVII) C | 0,7 | MCM | MCL | MDLX | (V) CCC | |||||
MDC | MMCC | (XII) CM | 0,9 | 8 | MDCCLXV | MCL | MCDV | MMMDCCCV | ||||
MM | MMDCCXL | (XV) CM | 0,7 | MDCCCXL | MCL | MCDLXXV | (IV) CDXXXV | |||||
MMD | MMMCCXL | (XVIII) DCCC | 0,7 | MCM | MCL | MDLX | (V) CCC |
Rated facultas (KVA) | Voltage combination | Connection Group Label | Non-onus damnum (W) | Lond damnum (W) CXX ℃ | Non-onus Current (%) | SIRORUM INTERMEDance (%) | Dimensiones | Summa pondus (KG) | ||||
Altum voltage (KV) | Tapping range | Humilis voltage (KV) | L | W | H | |||||||
30 | VI 6,3 6,6 10 10,5 11 | ± V ± II × 2.5 | 0,4 | Dyn11 yyn0 | CL | DCCX | 2.3 | IV | CMLV | DCCL | DCCCXL | CCLXX |
50 | CCXV | M | 2.2 | CMLXX | DCCL | DCCCLX | CCCXL | |||||
80 | CCXCV | MCCCLXXX | 1.7 | MXV | DCCL | CMXXV | CDLX | |||||
C | CCCXX | MDLXX | 1.7 | MXXX | DCCL | CMLX | DXXX | |||||
CXXV | CCCLXXV | MDCCCL | 1.5 | MLX | DCCL | M | DCV | |||||
CLX | CDXXX | MMCXXX | 1.5 | MXC | CM | MXLV | DCCXXX | |||||
CC | CDXCV | MMDXXX | 1.3 | MCV | CM | MLXXX | DCCCXXV | |||||
CCL | DLXXV | MMDCCLX | 1.3 | MCLXXX | CM | MCXXV | MX | |||||
CCCXV | DCCV | MMMCDLXX | 1.1 | MCCXXV | CM | MCXL | MCLXV | |||||
CD | DCCLXXXV | MMMCMXC | 1.1 | MCCCXXX | CM | MCXCV | MCDXC | |||||
D | CMXXX | (IV) DCCCLXXX | 1.1 | MCCCXLV | CM | MCCLV | MDCL | |||||
DCXXX | MLXX | (V) DCCCLXXX | 0,9 | MDXL | MCL | MCLXXV | MCMXV | |||||
DCXXX | MXL | (V) CMLX | 0,9 | VI | MDXL | MCL | MCLXXV | MCMXV | ||||
DCCC | MCCX | (VI) CMLX | 0,9 | MDC | MCL | MCCXX | MMCCCV | |||||
M | MCDX | (VIII) CXXX | 0,9 | MDCXLV | MCL | MCCLXXXV | MMDCXC | |||||
MCCL | MDCLXX | (IX) DCXC | 0,9 | MDCCV | MCL | MCCCXLV | MMMCCXXV | |||||
MDC | MCMLX | (XI) DCC | 0,9 | MDCCLXV | MCL | MCDV | MMMDCCCV | |||||
MM | MMCDXL | (XIV) CD | 0,7 | MDCCCXL | MCL | MCDLXXV | (IV) CDXXXV | |||||
MMD | MMDCCCLXXX | (XVII) C | 0,7 | MCM | MCL | MDLX | (V) CCC | |||||
MDC | MCMLX | (XII) CM | 0,9 | 8 | MDCCLXV | MCL | MCDV | MMMDCCCV | ||||
MM | MMCDXL | (XV) CM | 0,7 | MDCCCXL | MCL | MCDLXXV | (IV) CDXXXV | |||||
MMD | MMDCCCLXXX | (XVIII) DCCC | 0,7 | MCM | MCL | MDLX | (V) CCC |
Rated facultas (KVA) | Voltage combination | Connection Group Label | Non-onus damnum (W) | Lond damnum (W) CXX ℃ | Non-onus Current (%) | SIRORUM INTERMEDance (%) | Dimensiones | Summa pondus (KG) | ||||
Altum voltage (KV) | Tapping range | Humilis voltage (KV) | L | W | H | |||||||
30 | VI 6,3 6,6 10 10,5 11 | ± V ± II × 2.5 | 0,4 | Dyn11 yyn0 | CXXXV | DCXL | 2.3 | IV | CMLV | DCCL | DCCCXL | CCLXX |
50 | CXCV | CM | 2.2 | CMLXX | DCCL | DCCCLX | CCCXL | |||||
80 | CCLXV | MCCXL | 1.7 | MXV | DCCL | CMXXV | CDLX | |||||
C | CCXC | MCDX | 1.7 | MLX | DCCL | CMLX | DLX | |||||
CXXV | CCCXL | MDCLX | 1.5 | MLXXV | DCCL | M | DCXXX | |||||
CLX | CCCLXXXV | MCMX | 1.5 | MCV | CM | MXLV | DCCLXX | |||||
CC | CDXLV | MMCCLXX | 1.3 | MCXX | CM | MCV | DCCCLXXV | |||||
CCL | DXV | MMCDLXXX | 1.3 | MCXCV | CM | MCXXV | MLV | |||||
CCCXV | DCXXXV | MMMCXX | 1.1 | MDLV | MCL | MCLXXV | MCXC | |||||
CD | DCCV | MMMDXC | 1.1 | MCCXXV | CM | MCXL | MD | |||||
D | DCCCXXXV | (IV) CCCXC | 1.1 | MCCCXV | CM | MCXC | MDCC | |||||
DCXXX | CMLXV | (V) CCXC | 0,9 | MCCCXLV | CM | MCCLXV | MCMLXXXV | |||||
DCXXX | CMXXXV | (V) CCCLX | 0,9 | VI | MDLV | MCL | MCLXXV | MCMLXXXV | ||||
DCCC | MXC | (VI) CCLX | 0,9 | MDC | MCL | MCCXX | MMCCCLX | |||||
M | MCCLXX | (VII) CCCX | 0,9 | MDCLX | MCL | MCCLXXXV | MMDCCLXXV | |||||
MCCL | MD | (VIII) DCCXX | 0,9 | MDCCXX | MCL | MCCCL | MMMCCCX | |||||
MDC | MDCCLX | (X) D | 0,9 | MDCCLXXX | MCL | MCDV | MMMCMXL | |||||
MM | MMCXC | (XIII) | 0,7 | MDCCCXL | MCL | MCDLXXV | (IV) DXCV | |||||
MMD | MMDXC | (XV) CD | 0,7 | MCM | MCL | MDLXV | (V) CDXCV | |||||
MDC | MDCCLX | (XI) DC | 0,9 | 8 | MDCCLXXX | MCL | MCDV | MMMCMXL | ||||
MM | MMCXC | (XIV) CCC | 0,7 | MDCCCXL | MCL | MCDLXXV | (IV) DXCV | |||||
MMD | MMDXC | (XVII) | 0,7 | MCM | MCL | MDLXV | (V) CDXCV |
● transformator est instructa cum tutum tractantem cogitationes.
●Transformers sine clausulis et Transformers cum Top ostium Openings, uti quatuor elevatio lugs de transformatorem ad elevationem (debet elevari perpendiculariter, non obliquus); Nam Transformers cum II elevatio lugs in centro summo de armamentis, uti II elevatio lugs ad elevans. Et angulus formatae per fundamendum non excedunt LX °.
● Uno modo, in forklift ad facultatem in forklift cohibetur. Si convenientem, in furca brachium debet inserendum in basi channel ferro post removere volutpat.
● trahens et movere transferri debet esse ferri ex basi. Ad hanc rem, foramina cum diameter XXVII mm sunt in utraque parte basi. Trahens fieri potest in duas directiones axis basi et directionem perpendicularis axis.