1. Temperatura ambientis: +5℃~+40℃, temperatura media intra 24h non excedit +35℃
2. Altitudo: non excedit 2000m
3. Status atmosphaericus: cum temperatura maxima +40℃ est, humiditas relativa 50% non excedit: humiditatem relative altam permittere potest cum temperatura relative humilis est, exempli gratia, 90% attingit cum +20℃ est, mensuram capere debet cum condensatio propter variationem temperaturae facta est.
4. Gradus pollutionis: 3
5. Categoria institutionis: III
6. Situs institutionis: inclinatio superficiei institutionis ad superficiem verticalem nonexcedere ±5°
7. Impactus et vibratio: productum in locis sine manifesta quassatione, impactu et vibratione institui et adhiberi debet.
Specificatio principalis
Currens nominalis: 115, 150, 185, 225, 265, 330, 400, 500, 630, 780A
Tensio potentiae moderandae aestimatae spirae Us: Ac 50Hz, 36, 48, 110, 220, 380, 415, 440, 660V (tensio specialis adaptari potest)
Parametrum principalem et indicem effectuum technicorum contactoris in tabula 1 vide.
| Exemplar (Tabula 1) | CJX2-115 | CJX2-150 | CJX2-185 | CJX2-225 | CJX2-265 | CJX2-330 | CJX2-400 | CJX2-500 | CJX2-630 | CJX2-780 | |||
| Praecipuus contactus | Currens calefactionis conventionalis (≤40℃) Ith A | ducenti | ducenti | 275 | 275 | CCCXV | 380 | 450 | DCXXX | DCCC | 1500 | ||
| Currens nominalis (A) | AC-3 | 380V | 115 | CL | CLXXXV | 225 | 265 | 330 | quadringenti | quingenti | DCXXX | DCCLXXX | |
| Maxima potentia motoris triphasici generis caveae sciuri regulabilis kW | AC-3 | 380V | 63 | 80 | centum | 110 | 140 | CLXXX | ducenti | 250 | 335 | quadringenti | |
| 660V | 80 | centum | 110 | 129 | CLX | 220 | 280 | 335 | 450 | 470 | |||
| 1000V | 63 | 75 | centum | 132 | CLX | ducenti | 250 | trecenti | 450 | 450 | |||
| Frequentia operationis tempora/h (AC-3) | 1200 | DC | |||||||||||
| Vita electrica (100000 vicibus/h) (AC-3) | CXX | centum | |||||||||||
| Vita mechanica (10000 vicibus/h) | mille | DC | |||||||||||
| Spira | Tensio moderandi Us | AC 36, 48, 110, 220, 380, 415, 440, 660V | |||||||||||
| Tensio inductionis 50/60Hz V | (0.85~1.1) Nos | ||||||||||||
| Tensio emissionis 50/60Hz V | (0.2~0.7) Nos | ||||||||||||
| Potentia spiralis | 50Hz | VA trahens | DCCLX | DCCLX | 966 | 966 | DCCCXL | DCCCXL | 1380 | 1380 | 2076 | 2100 | |
| Tene VA | 54 | 54 | 66 | 66 | 12 | 12 | XXII | XXIV | 30 | 50 | |||
| Fusibilis aptus (SCPD) | Modellum | RDT16 (NT)-1 | RDT16 (NT)-1 | RDT16 (NT)-2 | RDT16 (NT)-2 | RDT16 (NT)-2 | RDT16 (NT)-3 | RDT16 (NT)-3 | RDT16 (NT)-3 | RDT16 (NT)-3 | RDT16 (NT)-4 | ||
| Current aestimatus | ducenti | 250 | CCCXV | CCCXV | quadringenti | quingenti | quingenti | quingenti | DCXXX | mille | |||
| Contactus auxiliares | Addi potest cum contactibus morae aeris generis F4, LA2-D/LA3-D. | ||||||||||||
Dimensiones generales et dimensiones institutionis vide tabulam 2 et figuras 1~4
| mm (Tabula II) | CJX2-115 | CJX2-150 | CJX2-185 | CJX2-225 | CJX2-265 | CJX2-330 | CJX2-400 | CJX2-500 | CJX2-630 | |||||||||
| 3P | 4P | 3P | 4P | 3P | 4P | 3P | 4P | 3P | 4P | 3P | 4P | 3P | 4P | 3P | 4P | 3P | 4P | |
| Maximus | CLXVII | 204 | CLXVII | 204 | CLXX | 211 | CLXX | 211 | 202 | 247 | 218 | 261 | 215 | 261 | 235 | 288 | CCCX | 389 |
| B maximus | CLXIII | CLXIII | CLXXI | CLXXI | CLXXV | CLXXV | CLXXV | CLXXV | 203 | 203 | 210 | 210 | 210 | 210 | 240 | 240 | 304 | 304 |
| C maxima | CLXXII | CLXXII | CLXXII | CLXXII | CLXXXIII | CLXXXIII | CLXXXIII | CLXXXIII | 215 | 215 | 223 | 223 | 223 | 223 | 235 | 235 | 257 | 257 |
| P | 37 | 37 | 40 | 40 | 40 | 40 | 48 | 48 | 48 | 48 | 48 | 48 | 48 | 48 | 55 | 55 | 80 | 80 |
| S | viginti | viginti | viginti | viginti | viginti | viginti | XXV | XXV | XXV | XXV | XXV | XXV | XXV | XXV | 30 | 30 | 40 | 40 |
| Ø | M6 | M6 | M8 | M8 | M8 | M8 | M10 | M10 | M10 | M10 | M10 | M10 | M10 | M10 | M10 | M10 | M12 | M12 |
| f | 131 | 131 | 131 | 131 | 131 | 131 | 131 | 131 | 147 | 147 | 147 | 147 | 147 | 147 | CL | CL | CLXXXI | CLXXXI |
| M | 147 | 147 | CL | CL | CLIV | CLIV | CLXXII | CLXXII | CLXXVIII | CLXXVIII | CLXXXI | CLXXXI | CLXXXI | CLXXXI | 208 | 208 | 264 | 264 |
| H | 124 | 124 | 124 | 124 | 127 | 127 | 127 | 127 | 147 | 147 | CLVIII | CLVIII | CLVIII | CLVIII | CLXXII | CLXXII | 202 | 202 |
| L | 107 | 107 | 107 | 107 | 113.5 | 113.5 | 113.5 | 113.5 | 141 | 141 | 145 | 145 | 145 | 145 | 146 | 146 | CLV | CLV |
| X1 200~500V | 10 | 10 | 10 | 10 | 10 | 10 | 10 | 10 | 10 | 10 | 10 | 10 | 15 | 15 | 15 | 15 | viginti | viginti |
| X1 660~1000V | 15 | 15 | 15 | 15 | 15 | 15 | 15 | 15 | 15 | 15 | 15 | 15 | viginti | viginti | viginti | viginti | 30 | 30 |
| Ga | 80 | 80 | 80 | 80 | 80 | 80 | 80 | 80 | 96 | 96 | 96 | 96 | 80 | 80 | 80 | 80 | CLXXX | CLXXX |
| Ha | 106~119 | 106~119 | 106~119 | 106~119 | 106~119 | 106~119 | CLXX~CLXXX | CLXX~CLXXX | CLXXX~CLXC | |||||||||
Nota:1.f: Minima distantia a singulis spiralibus requisita.
2. X1: distantia arcus quae a tensione nominali et capacitate interrumpenda determinatur.
4.1 Specificatio principalis
4.1.1 Cursus electricus: 115, 150, 185, 225, 265, 330, 400, 500, 630A
4.1.2 Tensio nominalis potentiae moderandae spirae contactoris (Us): AC 50Hz, 110, 127, 220, 380, 415, 440V; tensio specialis adaptari potest.
42 Parametrus technicus principalis contactoris
4.2.1 Actionis proprietates
Tensio attractionis 85% ~ 110% Us
Tensio emissionis CJX2-115~265 s 20%~75% Us
4.2.2 Parametri principales et index effectuum technicarum contactoris vide tabulam I
| Modellum | Constitutio cursus thermalis A | Currens operandi aestimatus A | Maxima potentia moderabilis motoris triphasici generis caveae sciuri (KW) | Cyclus operationis frequentia tempora/h (AC-3) | Vita electrica cum AC-3 decies milies | Vita mechanica (decies milies) | Fusibilis aptus (SCPD) | |||||
| AC-3 | AC-3 | Modellum | Current aestimatus | |||||||||
| 380V | 660V | 1000V | 380V | 660V | 1000V | |||||||
| CJX2-115 | ducenti | 115 | 86 | 46 | 63 | 80 | 63 | 1200 | CXX | mille | RT16-2 | 250 |
| CJX2-150 | ducenti | CL | 108 | 50 | 80 | centum | 75 | RT16-2 | 355 | |||
| CJX2-185 | 275 | CLXXXV | 118 | 71 | centum | 110 | centum | DC | centum | DC | RT16-3 | 425 |
| CJX2-225 | 275 | 225 | 137 | 90 | 110 | 129 | 132 | RT16-3 | quingenti | |||
| CJX2-265 | CCCXV | 265 | CLXX | 112 | 140 | CLX | CLX | / | RT16-3 | DCXXX | ||
| CJX2-330 | 380 | 330 | 235 | CLV | CLXXX | 220 | ducenti | RT16-4 | DCCC | |||
| CJX2-400 | 450 | quadringenti | 303 | ducenti | ducenti | 280 | 250 | RT16-4 | DCCC | |||
| CJX2-500 | DCXXX | quingenti | 353 | 232 | 250 | 335 | trecenti | RT16-4 | mille | |||
| CJX2-630 | DCCC | DCXXX | 462 | 331 | 335 | 450 | 475 | RT16-4 | 1250 | |||
4.2.3 Specificatio exemplaris et parametri gregis contactuum auxiliarium vide tabulam 2
4.3 Specificatio principalis spirae vide in tabula 3
6.1 Contactor praecipue constat ex systemate arcus, systemate contactus, basi et systemate magnetico (inclusa nucleo ferreo et spira) vide figuram 1.
| In imagine: | |
| 1. Systema arcus | |
| 2. Systema contactus | |
| 3. Basis | |
| 4. Systema magneticum |
Figura 1 Structura generalis delineata contactoris CJX2-115~265
6.2 Systema contactus contactoris est directum agens, cum ordinatione duplici puncti fractionis; pars inferior materiam aluminii recipit, spira structuram plasticam obturantem habet, et spira cum iugo magnetico in totum coniungitur, quod directe extrahi vel inseri potest, quod commodissimum et conservandum est. Vide figuram 1.
6.3 Intra spiram contactoris par contactuum NO invenitur, qui vel ut contactus auto-localis vel ut contactus signalis adhiberi possunt; praeterea, duobus gregibus contactuum auxiliarium, octo parium contactuum in summa, instructi iungi potest, vide tabulam 2. Informationes de combinatione contactuum auxiliarium in tabula 2 invenies.
6.4 Parva distantia arcus contactoris, exempli gratia, distantia arcus CIX2-115-330 fere 10 mm est (200-500 V), quae sexta pars alterius contactoris eiusdem capacitatis est. Adhibetur ad apparatum completum spatium usus minuere potest, et est elementum adiuvans egregium in apparatu moderationis electricae potentiae.
6.5 Grex contactuum auxiliarium, contactus morae aeris, et alia accessio per modum institutionis typi lateris aedificandi, ut in Figura 2 apparet, adjungi possunt.
6.6 Contactor inter duos contactores verticales iungi potest per interclusionem mechanicam horizontalem vel verticalem et interclusionem reciprocam.
6.7 Contactor derivabilis bipolaris/quadripolaris
5.1 Dimensio externa et dimensiones institutionis contactoris vide tabulam 4
| CJX2-115~330 | CJX2-400~500 | CJX2-630 |
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| Unitas: mm | CJX2-115 | CIX2-150 | CJX2-185 | CJX2-225 | CJX2-265 | CJX2-330 | CJX2-400 | CJX2-500 | CJX2-630 | |||||||||||||
| Tres pali | Quattuor pali | Tres pali | Quattuor pali | Tres pali | Quattuor pali | Tres pali | Quattuor pali | Tres pali | Quattuor pali | Tres pali | Quattuor pali | Duo pali | Tres pali | Quattuor pali | Duo pali | Tres pali | Quattuor pali | Duo pali | Tres pali | Quattuor pali | ||
| A | CLXVII | 204 | CLXVII | 204 | CLXXI | 211 | CLXXI | 211 | 202 | 247 | 213 | 261 | 213 | 213 | 261 | 233 | 233 | 288 | 309 | 309 | 309 | |
| B | CLXIII | CLXIII | CLXXI | CLXXI | CLXXIV | CLXXIV | 197 | 197 | 203 | 203 | 206 | 206 | 206 | 206 | 206 | 238 | 238 | 238 | 304 | 304 | 304 | |
| C | CLXXII | CLXXII | CLXXII | CLXXII | CLXXXIII | CLXXXIII | CLXXXIII | CLXXXIII | 215 | 215 | 220 | 220 | 220 | 220 | 220 | 233 | 233 | 233 | 256 | 256 | 256 | |
| P | 37 | 37 | 40 | 40 | 40 | 48 | 48 | 48 | 48 | 48 | 48 | 48 | 48 | 48 | 48 | 55 | 55 | 55 | 80 | 80 | 80 | |
| S | viginti | viginti | viginti | viginti | viginti | viginti | XXV | XXV | XXV | XXV | XXV | XXV | XXV | XXV | XXV | 30 | 30 | 30 | 40 | 40 | 40 | |
| Φ | M6 | M6 | M8 | M8 | M8 | M8 | M10 | M10 | M10 | M10 | M10 | M10 | M10 | M10 | M10 | M10 | M10 | M10 | M12 | M12 | M12 | |
| f① | 131 | 131 | 131 | 131 | 131 | 131 | 131 | 131 | 147 | 147 | 147 | 147 | 146 | 146 | 146 | CL | CL | CL | CLXXXI | CLXXXI | CLXXXI | |
| M | 147 | 147 | CL | CL | CLIV | CLIV | CLXXIV | CLXXIV | CLXXVIII | CLXXVIII | CLXXXI | CLXXXI | CLXXXI | CLXXXI | CLXXXI | 208 | 208 | 208 | 264 | 264 | 264 | |
| H | 124 | 124 | 124 | 124 | 127 | 127 | 127 | 127 | 147 | 147 | CLVIII | CLVIII | CLVIII | CLVIII | CLVIII | CLXXII | CLXXII | CLXXII | 202 | 202 | 202 | |
| L | 107 | 107 | 107 | 107 | 113.5 | 113.5 | 113.5 | 113.5 | 141 | 141 | 145 | 145 | 145 | 145 | 145 | 146 | 146 | 146 | CLV | CLV | CLV | |
| X1② 200~500V 660~1000V | 10 | 10 | 10 | 10 | 10 | 10 | 10 | 10 | 10 | 10 | 10 | 10 | 10 | 10 | 10 | 10 | 10 | 10 | viginti | viginti | viginti | |
| 15 | 15 | 15 | 15 | 15 | 15 | 15 | 15 | 15 | 15 | 15 | 15 | 15 | 15 | 15 | 15 | 15 | 15 | 30 | 30 | 30 | ||
| Ga | 80 | 96 | 80 | 140 | CLXXX | 240 | ||||||||||||||||
| Ha | 110~120 | CLXX~CLXXX | CLXXX~CLXC | |||||||||||||||||||
Nota:
1) Bobinam compone et disiunge. Spatium minimum arcus secundum tensionem operativam et capacitatem interrumpentem requiritur.