[{"data":1,"prerenderedAt":3365},["ShallowReactive",2],{"blog-post-fr-borne-recharge-rgie":3,"blog-alternates-ev-charger-installation-arei":742},{"id":4,"title":5,"articleId":6,"body":7,"category":718,"date":719,"description":720,"extension":721,"lastUpdated":722,"locale":723,"meta":724,"navigation":725,"path":726,"publishDate":719,"readTime":727,"refreshInterval":728,"seo":729,"slug":730,"stem":731,"tags":732,"__hash__":741},"blog\u002Fblog\u002Fborne-recharge-rgie.fr.md","Installer une borne de recharge selon le RGIE : Le guide complet pour la Belgique","ev-charger-installation-arei",{"type":8,"value":9,"toc":681},"minimark",[10,14,19,22,27,35,39,42,46,49,53,56,60,64,140,145,158,163,171,175,240,245,256,261,272,276,279,283,287,356,362,365,372,394,401,405,408,412,419,422,426,437,440,444,451,455,462,467,471,474,477,481,487,491,535,539,545,559,563,566,570,608,612,615,619,637,640,644,658,666,670],[11,12,13],"p",{},"L'installation d'une borne de recharge en Belgique relève du chapitre 7.22 du Livre 1 du RGIE. Ce guide explique les principales questions d'étude ; il ne remplace ni la notice du fabricant, ni les conditions du gestionnaire de réseau, ni l'appréciation de l'électricien et de l'organisme agréé.",[15,16,18],"h2",{"id":17},"exigences-rgie-pour-borne-de-recharge-art-722","Exigences RGIE pour borne de recharge (Art. 7.22)",[11,20,21],{},"Le RGIE pose les exigences de base suivantes pour les installations de bornes de recharge :",[23,24,26],"h3",{"id":25},"circuit-dédié","Circuit dédié",[11,28,29,30,34],{},"La borne de recharge ",[31,32,33],"strong",{},"doit"," disposer de son propre circuit dédié. Elle ne peut pas être raccordée à un circuit existant (par ex. prises dans le garage). Ce circuit dédié doit aller directement du coffret de distribution à la borne.",[23,36,38],{"id":37},"différentiel-protection-différentielle","Différentiel (protection différentielle)",[11,40,41],{},"Chaque borne de recharge nécessite son propre différentiel (RCD). Le type de différentiel dépend de la borne (plus de détails ci-dessous).",[23,43,45],{"id":44},"disjoncteur","Disjoncteur",[11,47,48],{},"Un disjoncteur (MCB) correctement dimensionné protège le circuit de la borne contre les surcharges et les courts-circuits.",[23,50,52],{"id":51},"protection-contre-les-surtensions-spd","Protection contre les surtensions (SPD)",[11,54,55],{},"L'art. 4.5.1 exige de manière générale la protection contre les surtensions selon les règles de l'art. En pratique, un SPD central est installé dans le coffret de distribution, protégeant tous les circuits y compris celui de la borne de recharge contre les surtensions transitoires causées par la foudre ou les commutations dans le réseau.",[15,57,59],{"id":58},"monophasé-vs-triphasé-quelle-borne","Monophasé vs. triphasé : Quelle borne ?",[23,61,63],{"id":62},"monophasé-37-kw-ou-74-kw","Monophasé — 3,7 kW ou 7,4 kW",[65,66,67,83],"table",{},[68,69,70],"thead",{},[71,72,73,77,80],"tr",{},[74,75,76],"th",{},"Caractéristique",[74,78,79],{},"3,7 kW (16A)",[74,81,82],{},"7,4 kW (32A)",[84,85,86,97,108,119,129],"tbody",{},[71,87,88,92,95],{},[89,90,91],"td",{},"Raccordement",[89,93,94],{},"Monophasé, 230V",[89,96,94],{},[71,98,99,102,105],{},[89,100,101],{},"Intensité",[89,103,104],{},"16A",[89,106,107],{},"32A",[71,109,110,113,116],{},[89,111,112],{},"Section de câble",[89,114,115],{},"2,5 mm²",[89,117,118],{},"6 mm²",[71,120,121,123,126],{},[89,122,45],{},[89,124,125],{},"20A type C",[89,127,128],{},"40A type C",[71,130,131,134,137],{},[89,132,133],{},"Temps de charge (batterie 50 kWh)",[89,135,136],{},"~14 heures",[89,138,139],{},"~7 heures",[11,141,142],{},[31,143,144],{},"Avantages monophasé :",[146,147,148,152,155],"ul",{},[149,150,151],"li",{},"Installation moins chère",[149,153,154],{},"Câblage plus simple",[149,156,157],{},"Suffisant pour la plupart des ménages (charge nocturne)",[11,159,160],{},[31,161,162],{},"Inconvénients monophasé :",[146,164,165,168],{},[149,166,167],{},"Puissance de charge limitée",[149,169,170],{},"À 7,4 kW : déséquilibre de phase possible (attention lors de la déclaration)",[23,172,174],{"id":173},"triphasé-11-kw-ou-22-kw","Triphasé — 11 kW ou 22 kW",[65,176,177,189],{},[68,178,179],{},[71,180,181,183,186],{},[74,182,76],{},[74,184,185],{},"11 kW (16A)",[74,187,188],{},"22 kW (32A)",[84,190,191,200,210,220,230],{},[71,192,193,195,198],{},[89,194,91],{},[89,196,197],{},"Triphasé, 400V",[89,199,197],{},[71,201,202,204,207],{},[89,203,101],{},[89,205,206],{},"3x 16A",[89,208,209],{},"3x 32A",[71,211,212,214,217],{},[89,213,112],{},[89,215,216],{},"2,5 mm² (5G2,5)",[89,218,219],{},"6 mm² (5G6)",[71,221,222,224,227],{},[89,223,45],{},[89,225,226],{},"20A tripolaire type C",[89,228,229],{},"32A tripolaire type C",[71,231,232,234,237],{},[89,233,133],{},[89,235,236],{},"~5 heures",[89,238,239],{},"~2,5 heures",[11,241,242],{},[31,243,244],{},"Avantages triphasé :",[146,246,247,250,253],{},[149,248,249],{},"Charge nettement plus rapide",[149,251,252],{},"Répartition de charge équilibrée (pas de déséquilibre)",[149,254,255],{},"Pérenne",[11,257,258],{},[31,259,260],{},"Inconvénients triphasé :",[146,262,263,266,269],{},[149,264,265],{},"Installation plus coûteuse",[149,267,268],{},"Raccordement triphasé au coffret nécessaire",[149,270,271],{},"Coûts de matériel plus élevés (câbles plus épais, dispositifs de protection plus chers)",[23,273,275],{"id":274},"choix-selon-le-projet","Choix selon le projet",[11,277,278],{},"Il n'existe pas de puissance universellement optimale pour une maison. Phases disponibles, puissance de raccordement, protection générale, charges simultanées, chargeur embarqué du véhicule, énergie quotidienne et gestion de charge doivent être étudiés ensemble. Une borne de puissance nominale supérieure ne charge pas plus vite si le véhicule ou le raccordement impose la limite.",[15,280,282],{"id":281},"câble-et-protection-le-bon-dimensionnement","Câble et protection : Le bon dimensionnement",[23,284,286],{"id":285},"aperçu-des-sections-de-câble","Aperçu des sections de câble",[65,288,289,304],{},[68,290,291],{},[71,292,293,296,299,302],{},[74,294,295],{},"Puissance",[74,297,298],{},"Type de câble",[74,300,301],{},"Section",[74,303,45],{},[84,305,306,318,330,343],{},[71,307,308,311,314,316],{},[89,309,310],{},"3,7 kW (1P, 16A)",[89,312,313],{},"XVB 3G2,5",[89,315,115],{},[89,317,125],{},[71,319,320,323,326,328],{},[89,321,322],{},"7,4 kW (1P, 32A)",[89,324,325],{},"XVB 3G6",[89,327,118],{},[89,329,128],{},[71,331,332,335,338,340],{},[89,333,334],{},"11 kW (3P, 16A)",[89,336,337],{},"XVB 5G2,5",[89,339,115],{},[89,341,342],{},"20A 3P type C",[71,344,345,348,351,353],{},[89,346,347],{},"22 kW (3P, 32A)",[89,349,350],{},"XVB 5G6",[89,352,118],{},[89,354,355],{},"32A 3P type C",[11,357,358,361],{},[31,359,360],{},"Important :"," Pour de longues longueurs de câble (>15m), la section doit éventuellement être augmentée pour limiter la chute de tension (RGIE Art. 5.2.5 — variation de tension ; Art. 5.2.1.2b — choix des canalisations). Planifiez le parcours du câble à l'avance et consultez les tableaux de chute de tension en cas de doute.",[23,363,298],{"id":364},"type-de-câble",[11,366,367,368,371],{},"En Belgique, on utilise habituellement du ",[31,369,370],{},"câble XVB"," pour les installations fixes :",[146,373,374,379,384,389],{},[149,375,376,378],{},[31,377,313],{}," pour monophasé 16A",[149,380,381,383],{},[31,382,325],{}," pour monophasé 32A",[149,385,386,388],{},[31,387,337],{}," pour triphasé 16A",[149,390,391,393],{},[31,392,350],{}," pour triphasé 32A",[11,395,396,397,400],{},"Pour une pose en tube Preflex, des ",[31,398,399],{},"conducteurs VOB individuels"," sont envisageables (H07V-U), à condition que le tube soit suffisamment dimensionné.",[15,402,404],{"id":403},"type-de-différentiel-le-dispositif-de-protection-le-plus-important","Type de différentiel : Le dispositif de protection le plus important",[11,406,407],{},"Le choix du bon différentiel est particulièrement important pour les bornes de recharge — et peut entraîner des différences de coût considérables.",[23,409,411],{"id":410},"type-a-avec-capteur-de-courant-résiduel-dc","Type A avec capteur de courant résiduel DC",[11,413,414,415,418],{},"Le chapitre 7.22 impose une protection contre les composantes continues lisses du courant de défaut. Un type A seul n'assure pas cette fonction. Lorsque le fabricant documente une détection DC 6 mA intégrée (RDC-DD) adaptée à la borne exacte, elle peut faire partie d'une solution avec ",[31,416,417],{},"différentiel type A 30 mA"," en amont. Ne présumez pas cette combinaison sans preuve du produit.",[11,420,421],{},"Le type A choisi doit correspondre au réseau, au nombre de pôles, au calibre et aux conditions documentées de la borne. Sans ces paramètres, une fourchette de prix n'est pas une estimation fiable.",[23,423,425],{"id":424},"type-b-si-pas-de-capteur-dc-dans-la-borne","Type B (si pas de capteur DC dans la borne)",[11,427,428,429,432,433,436],{},"Si votre borne ",[31,430,431],{},"n'a pas"," de capteur de courant résiduel DC intégré, vous avez besoin d'un ",[31,434,435],{},"différentiel type B",". Celui-ci détecte également les courants de défaut continus (DC), qui peuvent survenir avec les chargeurs AC\u002FDC.",[11,438,439],{},"Vérifiez la déclaration du fabricant concernant la détection des courants résiduels DC. Le nom commercial du produit ne prouve pas, à lui seul, que la borne et le différentiel amont forment un ensemble conforme.",[23,441,443],{"id":442},"type-a-si-alternative","Type A-SI (alternative)",[11,445,446,447,450],{},"Un ",[31,448,449],{},"différentiel type A-SI"," peut, selon le fabricant, mieux résister à certaines perturbations, mais il ne remplace pas à lui seul la détection requise des courants de défaut DC lisses. L'ensemble de protection documenté est déterminant.",[15,452,454],{"id":453},"protection-contre-les-surtensions-spd-centralisée-pour-toute-linstallation","Protection contre les surtensions (SPD) — centralisée pour toute l'installation",[11,456,457,458,461],{},"L'art. 4.5.1 exige de manière générale la protection contre les surtensions selon les règles de l'art. En pratique, un ",[31,459,460],{},"SPD (parafoudre)"," est installé dans le coffret de distribution, protégeant tous les appareils raccordés y compris la borne de recharge contre les surtensions transitoires. Le RGIE ne mentionne pas de « Type 2 » spécifique — la désignation de type provient de la norme produit (IEC 61643-11).",[11,463,464,466],{},[31,465,360],{}," Le SPD doit être protégé par un fusible amont (fusible gR ou MCB). Respectez les prescriptions du fabricant.",[15,468,470],{"id":469},"gestionnaire-de-réseau-et-sens-de-lénergie","Gestionnaire de réseau et sens de l'énergie",[11,472,473],{},"Cet article ne déduit pas de la puissance nominale un seuil universel de déclaration ou de raccordement. Avant la commande, consultez les conditions actuelles du gestionnaire responsable de l'adresse. Préparez code EAN, type de raccordement, puissance projetée, phases, gestion de charge et description exacte du produit.",[11,475,476],{},"Déterminez explicitement si l'énergie circule uniquement du réseau vers le véhicule ou dans les deux sens. Synergrid indique que les bornes bidirectionnelles ou techniquement bidirectionnelles relèvent de C10\u002F11 édition 2.4 et nécessitent une homologation C10\u002F26. Les chargeurs strictement réseau-vers-véhicule n'exigent pas C10\u002F26 au titre de cette règle. Cela ne supprime pas automatiquement d'autres formalités, limites de capacité ou conditions du gestionnaire.",[15,478,480],{"id":479},"mettre-à-jour-le-schéma-unifilaire","Mettre à jour le schéma unifilaire",[11,482,483,484,486],{},"Après l'installation d'une borne de recharge, le schéma unifilaire de votre installation électrique ",[31,485,33],{}," être mis à jour. La borne est représentée comme un départ propre dans le schéma :",[23,488,490],{"id":489},"que-doit-figurer-dans-le-schéma","Que doit figurer dans le schéma ?",[492,493,494,500,506,511,517,523,529],"ol",{},[149,495,496,499],{},[31,497,498],{},"Circuit propre"," depuis le coffret de distribution",[149,501,502,505],{},[31,503,504],{},"Différentiel"," avec indication du type (A ou B)",[149,507,508,510],{},[31,509,45],{}," avec courant nominal",[149,512,513,516],{},[31,514,515],{},"SPD"," (protection contre les surtensions)",[149,518,519,522],{},[31,520,521],{},"Symbole de borne de recharge"," avec indication de puissance",[149,524,525,528],{},[31,526,527],{},"Désignation du câble"," (par ex. XVB 5G2,5)",[149,530,531,534],{},[31,532,533],{},"Attribution des phases"," (en triphasé : L1\u002FL2\u002FL3)",[23,536,538],{"id":537},"planelec-simplifie-les-choses","PlanElec simplifie les choses",[11,540,541,544],{},[31,542,543],{},"PlanElec"," aide à documenter une borne de recharge dans le projet :",[146,546,547,550,553,556],{},[149,548,549],{},"Un symbole de borne est disponible pour la représentation sur le plan",[149,551,552],{},"L'auto-contrôle peut signaler certaines données prises en charge sur le circuit, le différentiel et le parafoudre",[149,554,555],{},"L'attribution des phases peut être saisie directement",[149,557,558],{},"L'export PDF reprend les données saisies dans le projet",[15,560,562],{"id":561},"comparer-les-coûts-sur-un-périmètre-technique-commun","Comparer les coûts sur un périmètre technique commun",[11,564,565],{},"Un devis utile distingue la borne, les protections, le chemin de câble, les travaux de terrassement, l'adaptation du tableau, la gestion de charge, l'étude, le contrôle et une éventuelle procédure réseau. Le prix varie selon le matériel, la longueur et l'accessibilité du parcours, la puissance de raccordement et l'état du tableau. Demandez donc aux entreprises de chiffrer la même description technique ; une fourchette fixe publiée en ligne n'est pas un budget de projet fiable.",[15,567,569],{"id":568},"éviter-les-erreurs-courantes","Éviter les erreurs courantes",[492,571,572,578,584,590,596,602],{},[149,573,574,577],{},[31,575,576],{},"Pas de circuit dédié :"," Brancher la borne sur une prise existante est non seulement dangereux, mais contraire au RGIE.",[149,579,580,583],{},[31,581,582],{},"Mauvais type de différentiel :"," Sans capteur DC dans la borne, un type B est obligatoire.",[149,585,586,589],{},[31,587,588],{},"Surtensions non évaluées :"," La nécessité et la réalisation du SPD s'évaluent pour l'ensemble de l'installation et se coordonnent selon les prescriptions du fabricant.",[149,591,592,595],{},[31,593,594],{},"Pas de schéma unifilaire mis à jour :"," Toute modification de l'installation doit être documentée dans le schéma.",[149,597,598,601],{},[31,599,600],{},"Conditions réseau non vérifiées :"," Les formalités dépendent du gestionnaire et de la fonction de recharge ; les appareils bidirectionnels ou techniquement bidirectionnels relèvent aussi de C10\u002F11 et C10\u002F26.",[149,603,604,607],{},[31,605,606],{},"Section de câble trop faible :"," Surtout pour les longs parcours (>15m), surveillez la chute de tension.",[15,609,611],{"id":610},"conclusion","Conclusion",[11,613,614],{},"Une borne en Belgique exige un circuit dédié par point de connexion, des protections différentielle complémentaire et DC adaptées, un dimensionnement propre au projet et des plans à jour. Une documentation soignée facilite le contrôle, sans garantir un rapport positif.",[15,616,618],{"id":617},"sources-officielles","Sources officielles",[146,620,621,630],{},[149,622,623],{},[624,625,629],"a",{"href":626,"rel":627},"https:\u002F\u002Feconomie.fgov.be\u002Fsites\u002Fdefault\u002Ffiles\u002FFiles\u002FPublications\u002Ffiles\u002FRGIE-Annexe-Livre-1-Installations-a-basse-tenstion-et-a-tres-basse-tension-2026.pdf",[628],"nofollow","Livre 1 du RGIE, édition 2026 — chapitre 7.22",[149,631,632],{},[624,633,636],{"href":634,"rel":635},"https:\u002F\u002Fwww.synergrid.be\u002Ffr\u002Fhomologation\u002Felectricite\u002Funites-de-production-decentralisee",[628],"Synergrid : champ C10\u002F26 des bornes bidirectionnelles ou techniquement bidirectionnelles",[638,639],"hr",{},[15,641,643],{"id":642},"articles-connexes","Articles connexes",[146,645,646,652],{},[149,647,648],{},[624,649,651],{"href":650},"\u002Ffr\u002Fblog\u002Fchute-de-tension-section-cable","Calculer la chute de tension d'une longue alimentation",[149,653,654],{},[624,655,657],{"href":656},"\u002Ffr\u002Fblog\u002Fcomparatif-cout-soi-meme-vs-electricien","Comparatif coût : dessiner soi-même vs. électricien",[146,659,660],{},[149,661,662],{},[624,663,665],{"href":664},"\u002Ffr\u002Fblog\u002Fplanelec-vs-excel-papier","PlanElec vs. Excel\u002Fpapier",[15,667,669],{"id":668},"documenter-votre-borne-dans-le-schéma-unifilaire","Documenter votre borne dans le schéma unifilaire",[11,671,672,673,675,676],{},"Avec ",[31,674,543],{},", documentez votre borne dans le schéma unifilaire et exportez le projet en PDF. L'auto-contrôle aide à la préparation, mais ne remplace ni le dimensionnement professionnel ni le contrôle officiel. ",[624,677,680],{"href":678,"rel":679},"https:\u002F\u002Fplanelec.be",[628],"Commencer maintenant →",{"title":682,"searchDepth":683,"depth":683,"links":684},"",2,[685,692,697,701,706,707,708,712,713,714,715,716,717],{"id":17,"depth":683,"text":18,"children":686},[687,689,690,691],{"id":25,"depth":688,"text":26},3,{"id":37,"depth":688,"text":38},{"id":44,"depth":688,"text":45},{"id":51,"depth":688,"text":52},{"id":58,"depth":683,"text":59,"children":693},[694,695,696],{"id":62,"depth":688,"text":63},{"id":173,"depth":688,"text":174},{"id":274,"depth":688,"text":275},{"id":281,"depth":683,"text":282,"children":698},[699,700],{"id":285,"depth":688,"text":286},{"id":364,"depth":688,"text":298},{"id":403,"depth":683,"text":404,"children":702},[703,704,705],{"id":410,"depth":688,"text":411},{"id":424,"depth":688,"text":425},{"id":442,"depth":688,"text":443},{"id":453,"depth":683,"text":454},{"id":469,"depth":683,"text":470},{"id":479,"depth":683,"text":480,"children":709},[710,711],{"id":489,"depth":688,"text":490},{"id":537,"depth":688,"text":538},{"id":561,"depth":683,"text":562},{"id":568,"depth":683,"text":569},{"id":610,"depth":683,"text":611},{"id":617,"depth":683,"text":618},{"id":642,"depth":683,"text":643},{"id":668,"depth":683,"text":669},"guide","2026-05-25","Exigences RGIE pour les bornes en Belgique : circuit dédié, protections différentielle et DC, dimensionnement, documentation et règles réseau.","md","2026-08-29","fr",{},true,"\u002Fblog\u002Fborne-recharge-rgie.fr","8 min",12,{"title":5,"description":720},"borne-recharge-rgie","blog\u002Fborne-recharge-rgie.fr",[733,734,735,736,737,738,739,740],"borne de recharge","wallbox","RGIE","voiture électrique","installation","protection différentielle","Belgique","schéma unifilaire","vq8GTIv3hYbuOLHOTBqXAm-hXBv2MsZk458hVFooIU8",[743,1240,1943,2648],{"id":4,"title":5,"articleId":6,"body":744,"category":718,"date":719,"description":720,"extension":721,"lastUpdated":722,"locale":723,"meta":1237,"navigation":725,"path":726,"publishDate":719,"readTime":727,"refreshInterval":728,"seo":1238,"slug":730,"stem":731,"tags":1239,"__hash__":741},{"type":8,"value":745,"toc":1203},[746,748,750,752,754,758,760,762,764,766,768,770,772,774,828,832,840,844,850,852,906,910,918,922,930,932,934,936,938,994,998,1000,1004,1022,1026,1028,1030,1032,1036,1038,1040,1046,1048,1050,1054,1056,1060,1064,1066,1068,1070,1072,1076,1078,1108,1110,1114,1124,1126,1128,1130,1156,1158,1160,1162,1174,1176,1178,1188,1194,1196],[11,747,13],{},[15,749,18],{"id":17},[11,751,21],{},[23,753,26],{"id":25},[11,755,29,756,34],{},[31,757,33],{},[23,759,38],{"id":37},[11,761,41],{},[23,763,45],{"id":44},[11,765,48],{},[23,767,52],{"id":51},[11,769,55],{},[15,771,59],{"id":58},[23,773,63],{"id":62},[65,775,776,786],{},[68,777,778],{},[71,779,780,782,784],{},[74,781,76],{},[74,783,79],{},[74,785,82],{},[84,787,788,796,804,812,820],{},[71,789,790,792,794],{},[89,791,91],{},[89,793,94],{},[89,795,94],{},[71,797,798,800,802],{},[89,799,101],{},[89,801,104],{},[89,803,107],{},[71,805,806,808,810],{},[89,807,112],{},[89,809,115],{},[89,811,118],{},[71,813,814,816,818],{},[89,815,45],{},[89,817,125],{},[89,819,128],{},[71,821,822,824,826],{},[89,823,133],{},[89,825,136],{},[89,827,139],{},[11,829,830],{},[31,831,144],{},[146,833,834,836,838],{},[149,835,151],{},[149,837,154],{},[149,839,157],{},[11,841,842],{},[31,843,162],{},[146,845,846,848],{},[149,847,167],{},[149,849,170],{},[23,851,174],{"id":173},[65,853,854,864],{},[68,855,856],{},[71,857,858,860,862],{},[74,859,76],{},[74,861,185],{},[74,863,188],{},[84,865,866,874,882,890,898],{},[71,867,868,870,872],{},[89,869,91],{},[89,871,197],{},[89,873,197],{},[71,875,876,878,880],{},[89,877,101],{},[89,879,206],{},[89,881,209],{},[71,883,884,886,888],{},[89,885,112],{},[89,887,216],{},[89,889,219],{},[71,891,892,894,896],{},[89,893,45],{},[89,895,226],{},[89,897,229],{},[71,899,900,902,904],{},[89,901,133],{},[89,903,236],{},[89,905,239],{},[11,907,908],{},[31,909,244],{},[146,911,912,914,916],{},[149,913,249],{},[149,915,252],{},[149,917,255],{},[11,919,920],{},[31,921,260],{},[146,923,924,926,928],{},[149,925,265],{},[149,927,268],{},[149,929,271],{},[23,931,275],{"id":274},[11,933,278],{},[15,935,282],{"id":281},[23,937,286],{"id":285},[65,939,940,952],{},[68,941,942],{},[71,943,944,946,948,950],{},[74,945,295],{},[74,947,298],{},[74,949,301],{},[74,951,45],{},[84,953,954,964,974,984],{},[71,955,956,958,960,962],{},[89,957,310],{},[89,959,313],{},[89,961,115],{},[89,963,125],{},[71,965,966,968,970,972],{},[89,967,322],{},[89,969,325],{},[89,971,118],{},[89,973,128],{},[71,975,976,978,980,982],{},[89,977,334],{},[89,979,337],{},[89,981,115],{},[89,983,342],{},[71,985,986,988,990,992],{},[89,987,347],{},[89,989,350],{},[89,991,118],{},[89,993,355],{},[11,995,996,361],{},[31,997,360],{},[23,999,298],{"id":364},[11,1001,367,1002,371],{},[31,1003,370],{},[146,1005,1006,1010,1014,1018],{},[149,1007,1008,378],{},[31,1009,313],{},[149,1011,1012,383],{},[31,1013,325],{},[149,1015,1016,388],{},[31,1017,337],{},[149,1019,1020,393],{},[31,1021,350],{},[11,1023,396,1024,400],{},[31,1025,399],{},[15,1027,404],{"id":403},[11,1029,407],{},[23,1031,411],{"id":410},[11,1033,414,1034,418],{},[31,1035,417],{},[11,1037,421],{},[23,1039,425],{"id":424},[11,1041,428,1042,432,1044,436],{},[31,1043,431],{},[31,1045,435],{},[11,1047,439],{},[23,1049,443],{"id":442},[11,1051,446,1052,450],{},[31,1053,449],{},[15,1055,454],{"id":453},[11,1057,457,1058,461],{},[31,1059,460],{},[11,1061,1062,466],{},[31,1063,360],{},[15,1065,470],{"id":469},[11,1067,473],{},[11,1069,476],{},[15,1071,480],{"id":479},[11,1073,483,1074,486],{},[31,1075,33],{},[23,1077,490],{"id":489},[492,1079,1080,1084,1088,1092,1096,1100,1104],{},[149,1081,1082,499],{},[31,1083,498],{},[149,1085,1086,505],{},[31,1087,504],{},[149,1089,1090,510],{},[31,1091,45],{},[149,1093,1094,516],{},[31,1095,515],{},[149,1097,1098,522],{},[31,1099,521],{},[149,1101,1102,528],{},[31,1103,527],{},[149,1105,1106,534],{},[31,1107,533],{},[23,1109,538],{"id":537},[11,1111,1112,544],{},[31,1113,543],{},[146,1115,1116,1118,1120,1122],{},[149,1117,549],{},[149,1119,552],{},[149,1121,555],{},[149,1123,558],{},[15,1125,562],{"id":561},[11,1127,565],{},[15,1129,569],{"id":568},[492,1131,1132,1136,1140,1144,1148,1152],{},[149,1133,1134,577],{},[31,1135,576],{},[149,1137,1138,583],{},[31,1139,582],{},[149,1141,1142,589],{},[31,1143,588],{},[149,1145,1146,595],{},[31,1147,594],{},[149,1149,1150,601],{},[31,1151,600],{},[149,1153,1154,607],{},[31,1155,606],{},[15,1157,611],{"id":610},[11,1159,614],{},[15,1161,618],{"id":617},[146,1163,1164,1169],{},[149,1165,1166],{},[624,1167,629],{"href":626,"rel":1168},[628],[149,1170,1171],{},[624,1172,636],{"href":634,"rel":1173},[62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Charger Installation According to AREI: The Complete Guide for Belgium",{"type":8,"value":1244,"toc":1894},[1245,1248,1252,1255,1259,1266,1270,1273,1277,1280,1284,1287,1291,1295,1363,1368,1379,1384,1392,1396,1456,1461,1472,1477,1488,1492,1495,1499,1503,1568,1574,1578,1585,1607,1614,1618,1621,1625,1632,1635,1639,1650,1653,1656,1663,1667,1674,1679,1683,1686,1689,1693,1699,1703,1745,1749,1754,1768,1772,1775,1779,1817,1826,1828,1831,1834,1838,1852,1854,1858,1872,1880,1884],[11,1246,1247],{},"Installing an EV charger in Belgium falls under chapter 7.22 of AREI\u002FRGIE Book 1. This guide explains the main design questions; it does not replace the manufacturer's instructions, distribution-grid conditions or assessment by a qualified electrician and approved inspection body.",[15,1249,1251],{"id":1250},"arei-requirements-for-ev-chargers-art-722","AREI Requirements for EV Chargers (Art. 7.22)",[11,1253,1254],{},"The AREI\u002FRGIE sets the following basic requirements for EV charger installations:",[23,1256,1258],{"id":1257},"dedicated-circuit","Dedicated Circuit",[11,1260,1261,1262,1265],{},"The EV charger ",[31,1263,1264],{},"must"," have its own dedicated circuit. It may not be connected to an existing circuit (e.g., sockets in the garage). This dedicated circuit must run directly from the distribution board to the charger.",[23,1267,1269],{"id":1268},"residual-current-device-rcd","Residual Current Device (RCD)",[11,1271,1272],{},"Each EV charger needs its own RCD (residual current device). The type of RCD depends on the charger (more on this below).",[23,1274,1276],{"id":1275},"circuit-breaker-mcb","Circuit Breaker (MCB)",[11,1278,1279],{},"A properly sized circuit breaker (MCB) protects the charger circuit against overload and short circuit.",[23,1281,1283],{"id":1282},"surge-protection-device-spd","Surge Protection Device (SPD)",[11,1285,1286],{},"Art. 4.5.1 requires protection against overvoltages according to good professional practice. In practice, a central SPD is installed in the distribution board, protecting all circuits including the EV charger circuit against transient overvoltages caused by lightning strikes or switching operations in the grid.",[15,1288,1290],{"id":1289},"single-phase-vs-three-phase-which-charger","Single-Phase vs. Three-Phase: Which Charger?",[23,1292,1294],{"id":1293},"single-phase-37-kw-or-74-kw","Single-Phase — 3.7 kW or 7.4 kW",[65,1296,1297,1310],{},[68,1298,1299],{},[71,1300,1301,1304,1307],{},[74,1302,1303],{},"Property",[74,1305,1306],{},"3.7 kW (16A)",[74,1308,1309],{},"7.4 kW (32A)",[84,1311,1312,1322,1331,1341,1352],{},[71,1313,1314,1317,1320],{},[89,1315,1316],{},"Connection",[89,1318,1319],{},"Single-phase, 230V",[89,1321,1319],{},[71,1323,1324,1327,1329],{},[89,1325,1326],{},"Current",[89,1328,104],{},[89,1330,107],{},[71,1332,1333,1336,1339],{},[89,1334,1335],{},"Cable cross-section",[89,1337,1338],{},"2.5 mm²",[89,1340,118],{},[71,1342,1343,1346,1349],{},[89,1344,1345],{},"Circuit breaker",[89,1347,1348],{},"20A Type C",[89,1350,1351],{},"32A Type C",[71,1353,1354,1357,1360],{},[89,1355,1356],{},"Charging time (50 kWh battery)",[89,1358,1359],{},"~14 hours",[89,1361,1362],{},"~7 hours",[11,1364,1365],{},[31,1366,1367],{},"Advantages of single-phase:",[146,1369,1370,1373,1376],{},[149,1371,1372],{},"Cheaper installation",[149,1374,1375],{},"Simpler wiring",[149,1377,1378],{},"Sufficient for most households (overnight charging)",[11,1380,1381],{},[31,1382,1383],{},"Disadvantages of single-phase:",[146,1385,1386,1389],{},[149,1387,1388],{},"Limited charging power",[149,1390,1391],{},"At 7.4 kW: possible phase imbalance (watch out during registration)",[23,1393,1395],{"id":1394},"three-phase-11-kw-or-22-kw","Three-Phase — 11 kW or 22 kW",[65,1397,1398,1408],{},[68,1399,1400],{},[71,1401,1402,1404,1406],{},[74,1403,1303],{},[74,1405,185],{},[74,1407,188],{},[84,1409,1410,1419,1427,1436,1446],{},[71,1411,1412,1414,1417],{},[89,1413,1316],{},[89,1415,1416],{},"Three-phase, 400V",[89,1418,1416],{},[71,1420,1421,1423,1425],{},[89,1422,1326],{},[89,1424,206],{},[89,1426,209],{},[71,1428,1429,1431,1434],{},[89,1430,1335],{},[89,1432,1433],{},"2.5 mm² (5G2.5)",[89,1435,219],{},[71,1437,1438,1440,1443],{},[89,1439,1345],{},[89,1441,1442],{},"20A 3-pole Type C",[89,1444,1445],{},"32A 3-pole Type C",[71,1447,1448,1450,1453],{},[89,1449,1356],{},[89,1451,1452],{},"~5 hours",[89,1454,1455],{},"~2.5 hours",[11,1457,1458],{},[31,1459,1460],{},"Advantages of three-phase:",[146,1462,1463,1466,1469],{},[149,1464,1465],{},"Significantly faster charging",[149,1467,1468],{},"Balanced load distribution (no phase imbalance)",[149,1470,1471],{},"Future-proof",[11,1473,1474],{},[31,1475,1476],{},"Disadvantages of three-phase:",[146,1478,1479,1482,1485],{},[149,1480,1481],{},"More expensive installation",[149,1483,1484],{},"Three-phase connection at distribution board required",[149,1486,1487],{},"Higher material costs (thicker cables, more expensive protection devices)",[23,1489,1491],{"id":1490},"selection-based-on-the-project","Selection based on the project",[11,1493,1494],{},"There is no universal best charging power for a detached home. Available phases, service capacity, main protection, simultaneous household demand, the vehicle's onboard charger, required daily energy and possible load management must be assessed together. A higher wallbox rating does not make charging faster when the vehicle or connection imposes the lower limit.",[15,1496,1498],{"id":1497},"cable-and-protection-proper-sizing","Cable and Protection: Proper Sizing",[23,1500,1502],{"id":1501},"cable-cross-section-overview","Cable Cross-Section Overview",[65,1504,1505,1520],{},[68,1506,1507],{},[71,1508,1509,1512,1515,1518],{},[74,1510,1511],{},"Power",[74,1513,1514],{},"Cable type",[74,1516,1517],{},"Cross-section",[74,1519,1345],{},[84,1521,1522,1534,1545,1557],{},[71,1523,1524,1527,1530,1532],{},[89,1525,1526],{},"3.7 kW (1P, 16A)",[89,1528,1529],{},"XVB 3G2.5",[89,1531,1338],{},[89,1533,1348],{},[71,1535,1536,1539,1541,1543],{},[89,1537,1538],{},"7.4 kW (1P, 32A)",[89,1540,325],{},[89,1542,118],{},[89,1544,1351],{},[71,1546,1547,1549,1552,1554],{},[89,1548,334],{},[89,1550,1551],{},"XVB 5G2.5",[89,1553,1338],{},[89,1555,1556],{},"20A 3P Type C",[71,1558,1559,1561,1563,1565],{},[89,1560,347],{},[89,1562,350],{},[89,1564,118],{},[89,1566,1567],{},"32A 3P Type C",[11,1569,1570,1573],{},[31,1571,1572],{},"Important:"," For long cable runs (>15m), the cross-section may need to be increased to limit voltage drop (AREI Art. 5.2.5 — voltage drop; Art. 5.2.1.2b — cable selection). Plan the cable route in advance and consult voltage drop tables if in doubt.",[23,1575,1577],{"id":1576},"cable-type","Cable Type",[11,1579,1580,1581,1584],{},"In Belgium, ",[31,1582,1583],{},"XVB cable"," is typically used for fixed installations:",[146,1586,1587,1592,1597,1602],{},[149,1588,1589,1591],{},[31,1590,1529],{}," for single-phase 16A",[149,1593,1594,1596],{},[31,1595,325],{}," for single-phase 32A",[149,1598,1599,1601],{},[31,1600,1551],{}," for three-phase 16A",[149,1603,1604,1606],{},[31,1605,350],{}," for three-phase 32A",[11,1608,1609,1610,1613],{},"When installed in a Preflex conduit, individual ",[31,1611,1612],{},"VOB conductors"," (H07V-U) can be used, provided the conduit is adequately sized.",[15,1615,1617],{"id":1616},"rcd-type-the-most-important-protection-device","RCD Type: The Most Important Protection Device",[11,1619,1620],{},"Choosing the right RCD is particularly important for EV chargers — and can cause significant cost differences.",[23,1622,1624],{"id":1623},"type-a-integrated-dc-6-ma-sensor-rdc-dd-in-the-charger","Type A + Integrated DC 6 mA Sensor (RDC-DD in the Charger)",[11,1626,1627,1628,1631],{},"Chapter 7.22 requires protection against smooth DC residual-current components. Type A alone does not provide that function. Where the manufacturer documents suitable integrated 6 mA DC detection (RDC-DD) for the exact charger, it can form part of a solution with an upstream ",[31,1629,1630],{},"30 mA Type A RCD",". Do not assume that combination without the product evidence.",[11,1633,1634],{},"The selected Type A must match the network, pole count, rating and the charger's documented conditions. A price range without those parameters is not a reliable project estimate.",[23,1636,1638],{"id":1637},"type-b-if-no-dc-sensor-in-the-charger","Type B (If No DC Sensor in the Charger)",[11,1640,1641,1642,1645,1646,1649],{},"If your charger does ",[31,1643,1644],{},"not"," have a built-in DC fault current sensor, you need an ",[31,1647,1648],{},"RCD Type B",". This also detects DC fault currents that can occur with AC\u002FDC chargers.",[11,1651,1652],{},"Check the manufacturer's declaration for DC residual-current detection. A product label alone does not prove that the charger and upstream RCD form a compliant combination.",[23,1654,1655],{"id":442},"Type A-SI (Alternative)",[11,1657,1658,1659,1662],{},"A ",[31,1660,1661],{},"Type A-SI RCD"," may be more resistant to certain disturbances, depending on the manufacturer, but it is not by itself a substitute for the required smooth-DC fault-current detection. The documented protective assembly is what matters.",[15,1664,1666],{"id":1665},"surge-protection-spd-central-for-the-entire-installation","Surge Protection (SPD) — Central for the Entire Installation",[11,1668,1669,1670,1673],{},"Art. 4.5.1 requires protection against overvoltages according to good professional practice. In practice, an ",[31,1671,1672],{},"SPD (surge protection device)"," is installed in the distribution board, protecting all connected devices including the EV charger against transient overvoltages. The AREI does not specify a concrete \"Type 2\" — that designation comes from the product standard (IEC 61643-11).",[11,1675,1676,1678],{},[31,1677,1572],{}," The SPD must be protected with an upstream fuse (gR fuse or MCB). Follow the manufacturer's specifications.",[15,1680,1682],{"id":1681},"grid-operator-and-direction-of-energy-flow","Grid operator and direction of energy flow",[11,1684,1685],{},"This article does not infer a universal notification or connection threshold from charger rating. Before ordering, check the current conditions of the distribution system operator responsible for the address. Have the EAN code, connection type, proposed charging power, phases, load management and exact product description available.",[11,1687,1688],{},"Establish explicitly whether energy can flow only from grid to vehicle or in both directions. Synergrid states that bidirectional or technically bidirectional chargers fall within C10\u002F11 edition 2.4 and require C10\u002F26 type approval. Pure grid-to-vehicle chargers do not require C10\u002F26 under that rule. This does not, by itself, remove any separate notification, capacity or connection condition imposed by the responsible operator.",[15,1690,1692],{"id":1691},"updating-the-single-line-diagram","Updating the Single-Line Diagram",[11,1694,1695,1696,1698],{},"After installing an EV charger, the single-line diagram of your electrical installation ",[31,1697,1264],{}," be updated. The charger is shown as its own branch in the diagram:",[23,1700,1702],{"id":1701},"what-must-be-in-the-diagram","What Must Be in the Diagram?",[492,1704,1705,1711,1717,1722,1727,1733,1739],{},[149,1706,1707,1710],{},[31,1708,1709],{},"Dedicated circuit"," from the distribution board",[149,1712,1713,1716],{},[31,1714,1715],{},"RCD"," with type indication (A or B)",[149,1718,1719,1721],{},[31,1720,1345],{}," with rated current",[149,1723,1724,1726],{},[31,1725,515],{}," (surge protection device)",[149,1728,1729,1732],{},[31,1730,1731],{},"EV charger symbol"," with power indication",[149,1734,1735,1738],{},[31,1736,1737],{},"Cable designation"," (e.g., XVB 5G2.5)",[149,1740,1741,1744],{},[31,1742,1743],{},"Phase assignment"," (for three-phase: L1\u002FL2\u002FL3)",[23,1746,1748],{"id":1747},"planelec-makes-it-easy","PlanElec Makes It Easy",[11,1750,1751,1753],{},[31,1752,543],{}," supports documenting an EV charger in the project:",[146,1755,1756,1759,1762,1765],{},[149,1757,1758],{},"An EV charger symbol is available for the plan",[149,1760,1761],{},"The self-check can flag supported data around the dedicated circuit, RCD protection, and SPD",[149,1763,1764],{},"Phase assignment can be entered directly",[149,1766,1767],{},"The PDF export includes the information recorded in the project",[15,1769,1771],{"id":1770},"compare-costs-on-a-common-technical-scope","Compare costs on a common technical scope",[11,1773,1774],{},"A useful quotation separates the charger, protective devices, cable route, excavation or civil work, board modifications, load management, design, inspection and any grid-operator procedure. Prices vary with equipment, route length, accessibility, service capacity and the existing board. Ask bidders to price the same technical specification; a fixed online range is not a dependable project budget.",[15,1776,1778],{"id":1777},"common-mistakes-to-avoid","Common Mistakes to Avoid",[492,1780,1781,1787,1793,1799,1805,1811],{},[149,1782,1783,1786],{},[31,1784,1785],{},"No dedicated circuit:"," Connecting the charger to an existing socket is not only unsafe but violates the AREI.",[149,1788,1789,1792],{},[31,1790,1791],{},"Wrong RCD type:"," Without a DC sensor in the charger, an RCD Type B is mandatory.",[149,1794,1795,1798],{},[31,1796,1797],{},"Surge protection not assessed:"," Whether and how an SPD is used must be assessed for the complete installation and coordinated to the manufacturer's instructions.",[149,1800,1801,1804],{},[31,1802,1803],{},"No updated single-line diagram:"," Every change to the installation must be documented in the diagram.",[149,1806,1807,1810],{},[31,1808,1809],{},"Grid conditions not checked:"," Notification and connection rules depend on the operator and charging function; bidirectional or technically bidirectional equipment also enters the C10\u002F11 and C10\u002F26 scope.",[149,1812,1813,1816],{},[31,1814,1815],{},"Cable cross-section too small:"," Especially for long cable runs (>15m), watch the voltage drop.",[1818,1819,1820],"blockquote",{},[11,1821,1822,1825],{},[31,1823,1824],{},"Earthing note:"," A prerequisite for a safe EV charger installation: the entire earthing chain (earth electrode, main equipotential bonding, protective conductor) must be intact. For older installations without proper earthing, remediation is required.",[15,1827,611],{"id":610},[11,1829,1830],{},"An EV charger in Belgium needs a dedicated circuit per connection point, suitable additional RCD and DC residual-current protection, project-specific cable and protective-device design, and updated drawings. Careful documentation improves inspectability but does not guarantee a positive report.",[11,1832,1833],{},"Before handover, archive the exact charger variant, firmware, configured current limit, phase assignment, load-management behaviour and evidence for integrated DC monitoring. Link those records to the diagram version and grid-operator response used for commissioning. A later settings or firmware change should reopen the affected protection, capacity and C10\u002F26 questions instead of being treated as an invisible software-only update.",[15,1835,1837],{"id":1836},"official-sources","Official sources",[146,1839,1840,1846],{},[149,1841,1842],{},[624,1843,1845],{"href":626,"rel":1844},[628],"AREI\u002FRGIE Book 1, 2026 edition — chapter 7.22",[149,1847,1848],{},[624,1849,1851],{"href":634,"rel":1850},[628],"Synergrid: C10\u002F26 scope for bidirectional or technically bidirectional charging infrastructure",[638,1853],{},[15,1855,1857],{"id":1856},"related-articles","Related Articles",[146,1859,1860,1866],{},[149,1861,1862],{},[624,1863,1865],{"href":1864},"\u002Fen\u002Fblog\u002Fvoltage-drop-cable-sizing","Calculate voltage drop for a long charger supply",[149,1867,1868],{},[624,1869,1871],{"href":1870},"\u002Fen\u002Fblog\u002Fcost-comparison-diy-vs-electrician","Cost Comparison: DIY vs. Hiring an Electrician",[146,1873,1874],{},[149,1875,1876],{},[624,1877,1879],{"href":1878},"\u002Fen\u002Fblog\u002Fplanelec-vs-excel-paper","PlanElec vs. Excel\u002FPaper",[15,1881,1883],{"id":1882},"document-your-ev-charger-in-the-single-line-diagram","Document Your EV Charger in the Single-Line Diagram",[11,1885,1886,1887,1889,1890],{},"With ",[31,1888,543],{},", document your EV charger in the single-line diagram and export the project as PDF. The self-check supports preparation but does not replace professional sizing or an official inspection. ",[624,1891,1893],{"href":678,"rel":1892},[628],"Get started now →",{"title":682,"searchDepth":683,"depth":683,"links":1895},[1896,1902,1907,1911,1916,1917,1918,1922,1923,1924,1925,1926,1927],{"id":1250,"depth":683,"text":1251,"children":1897},[1898,1899,1900,1901],{"id":1257,"depth":688,"text":1258},{"id":1268,"depth":688,"text":1269},{"id":1275,"depth":688,"text":1276},{"id":1282,"depth":688,"text":1283},{"id":1289,"depth":683,"text":1290,"children":1903},[1904,1905,1906],{"id":1293,"depth":688,"text":1294},{"id":1394,"depth":688,"text":1395},{"id":1490,"depth":688,"text":1491},{"id":1497,"depth":683,"text":1498,"children":1908},[1909,1910],{"id":1501,"depth":688,"text":1502},{"id":1576,"depth":688,"text":1577},{"id":1616,"depth":683,"text":1617,"children":1912},[1913,1914,1915],{"id":1623,"depth":688,"text":1624},{"id":1637,"depth":688,"text":1638},{"id":442,"depth":688,"text":1655},{"id":1665,"depth":683,"text":1666},{"id":1681,"depth":683,"text":1682},{"id":1691,"depth":683,"text":1692,"children":1919},[1920,1921],{"id":1701,"depth":688,"text":1702},{"id":1747,"depth":688,"text":1748},{"id":1770,"depth":683,"text":1771},{"id":1777,"depth":683,"text":1778},{"id":610,"depth":683,"text":611},{"id":1836,"depth":683,"text":1837},{"id":1856,"depth":683,"text":1857},{"id":1882,"depth":683,"text":1883},"AREI\u002FRGIE requirements for EV chargers in Belgium: dedicated circuits, RCD and DC residual-current protection, cable design, documentation and grid questions.","en",{},"\u002Fblog\u002Fev-charger-arei.en",{"title":1242,"description":1928},"ev-charger-arei","blog\u002Fev-charger-arei.en",[1936,734,1937,1938,737,1939,1940,1941],"EV charger","AREI","electric vehicle","RCD protection","Belgium","single-line diagram","lvf5IDuc1EFyYz7KtdVQ2YCS4KyK4yXbwZsXFkHD43E",{"id":1944,"title":1945,"articleId":6,"body":1946,"category":718,"date":719,"description":2633,"extension":721,"lastUpdated":722,"locale":2634,"meta":2635,"navigation":725,"path":2636,"publishDate":719,"readTime":727,"refreshInterval":728,"seo":2637,"slug":2638,"stem":2639,"tags":2640,"__hash__":2647},"blog\u002Fblog\u002Flaadpaal-arei.nl.md","Laadpaal installeren volgens AREI: De complete gids voor België",{"type":8,"value":1947,"toc":2597},[1948,1951,1955,1958,1962,1969,1973,1976,1980,1983,1987,1990,1994,1998,2061,2066,2077,2082,2090,2094,2153,2158,2169,2174,2185,2189,2192,2196,2200,2263,2269,2272,2279,2301,2308,2312,2315,2319,2326,2329,2333,2344,2347,2351,2358,2362,2369,2374,2378,2381,2384,2387,2390,2394,2397,2400,2404,2410,2414,2455,2459,2464,2478,2482,2485,2488,2492,2530,2534,2537,2541,2556,2558,2562,2576,2583,2587],[11,1949,1950],{},"De installatie van een laadpaal in België valt onder hoofdstuk 7.22 van Boek 1 van het AREI. Deze gids legt de belangrijkste ontwerpvragen uit; hij vervangt de handleiding van de fabrikant, de voorwaarden van de netbeheerder en de beoordeling door elektricien en erkend keuringsorganisme niet.",[15,1952,1954],{"id":1953},"arei-vereisten-voor-laadpaal-art-722","AREI-vereisten voor laadpaal (Art. 7.22)",[11,1956,1957],{},"Het AREI stelt volgende basisvereisten aan laadpaalinstallaties:",[23,1959,1961],{"id":1960},"eigen-kring","Eigen kring",[11,1963,1964,1965,1968],{},"De laadpaal ",[31,1966,1967],{},"moet"," over een eigen, toegewijde kring beschikken. Ze mag niet op een bestaande kring (bijv. stopcontacten in de garage) aangesloten worden. Deze toegewijde kring moet rechtstreeks van de verdeelkast naar de laadpaal lopen.",[23,1970,1972],{"id":1971},"aardlekschakelaar-differentieelbeveiliging","Aardlekschakelaar (differentieelbeveiliging)",[11,1974,1975],{},"Elke laadpaal heeft een eigen aardlekschakelaar (RCD) nodig. Het type aardlekschakelaar hangt af van de laadpaal (meer hierover verderop).",[23,1977,1979],{"id":1978},"automaat-disjoncteur","Automaat (disjoncteur)",[11,1981,1982],{},"Een juist gedimensioneerde automaat (MCB) beschermt de laadpaalkring tegen overbelasting en kortsluiting.",[23,1984,1986],{"id":1985},"overspanningsbeveiliging-spd","Overspanningsbeveiliging (SPD)",[11,1988,1989],{},"Art. 4.5.1 vereist algemeen de bescherming tegen overspanningen volgens de regels van het vak. In de praktijk wordt een centrale SPD in de verdeelkast geïnstalleerd, die alle kringen inclusief de laadpaalkring beschermt tegen overspanningen door blikseminslag of schakelingen in het net.",[15,1991,1993],{"id":1992},"eenfasig-vs-driefasig-welke-laadpaal","Eenfasig vs. driefasig: Welke laadpaal?",[23,1995,1997],{"id":1996},"eenfasig-37-kw-of-74-kw","Eenfasig — 3,7 kW of 7,4 kW",[65,1999,2000,2011],{},[68,2001,2002],{},[71,2003,2004,2007,2009],{},[74,2005,2006],{},"Eigenschap",[74,2008,79],{},[74,2010,82],{},[84,2012,2013,2023,2032,2041,2050],{},[71,2014,2015,2018,2021],{},[89,2016,2017],{},"Aansluiting",[89,2019,2020],{},"1-fasig, 230V",[89,2022,2020],{},[71,2024,2025,2028,2030],{},[89,2026,2027],{},"Stroomsterkte",[89,2029,104],{},[89,2031,107],{},[71,2033,2034,2037,2039],{},[89,2035,2036],{},"Kabeldoorsnede",[89,2038,115],{},[89,2040,118],{},[71,2042,2043,2046,2048],{},[89,2044,2045],{},"Automaat",[89,2047,125],{},[89,2049,128],{},[71,2051,2052,2055,2058],{},[89,2053,2054],{},"Laadtijd (50 kWh accu)",[89,2056,2057],{},"~14 uur",[89,2059,2060],{},"~7 uur",[11,2062,2063],{},[31,2064,2065],{},"Voordelen eenfasig:",[146,2067,2068,2071,2074],{},[149,2069,2070],{},"Goedkoper in installatie",[149,2072,2073],{},"Eenvoudigere bedrading",[149,2075,2076],{},"Voldoende voor de meeste huishoudens (nachtlading)",[11,2078,2079],{},[31,2080,2081],{},"Nadelen eenfasig:",[146,2083,2084,2087],{},[149,2085,2086],{},"Beperkt laadvermogen",[149,2088,2089],{},"Bij 7,4 kW: mogelijke scheefbelasting (let op bij aanmelding)",[23,2091,2093],{"id":2092},"driefasig-11-kw-of-22-kw","Driefasig — 11 kW of 22 kW",[65,2095,2096,2106],{},[68,2097,2098],{},[71,2099,2100,2102,2104],{},[74,2101,2006],{},[74,2103,185],{},[74,2105,188],{},[84,2107,2108,2117,2125,2133,2143],{},[71,2109,2110,2112,2115],{},[89,2111,2017],{},[89,2113,2114],{},"3-fasig, 400V",[89,2116,2114],{},[71,2118,2119,2121,2123],{},[89,2120,2027],{},[89,2122,206],{},[89,2124,209],{},[71,2126,2127,2129,2131],{},[89,2128,2036],{},[89,2130,216],{},[89,2132,219],{},[71,2134,2135,2137,2140],{},[89,2136,2045],{},[89,2138,2139],{},"20A 3-polig type C",[89,2141,2142],{},"32A 3-polig type C",[71,2144,2145,2147,2150],{},[89,2146,2054],{},[89,2148,2149],{},"~5 uur",[89,2151,2152],{},"~2,5 uur",[11,2154,2155],{},[31,2156,2157],{},"Voordelen driefasig:",[146,2159,2160,2163,2166],{},[149,2161,2162],{},"Aanzienlijk sneller laden",[149,2164,2165],{},"Gelijkmatige lastverdeling (geen scheefbelasting)",[149,2167,2168],{},"Toekomstbestendig",[11,2170,2171],{},[31,2172,2173],{},"Nadelen driefasig:",[146,2175,2176,2179,2182],{},[149,2177,2178],{},"Duurdere installatie",[149,2180,2181],{},"Driefasige aansluiting aan verdeelkast nodig",[149,2183,2184],{},"Hogere materiaalkosten (dikkere kabels, duurdere beveiligingstoestellen)",[23,2186,2188],{"id":2187},"keuze-volgens-het-project","Keuze volgens het project",[11,2190,2191],{},"Er bestaat geen universeel optimaal laadvermogen voor een eengezinswoning. Beschikbare fasen, aansluitvermogen, hoofdbeveiliging, gelijktijdige huislast, boordlader van het voertuig, dagelijkse energiebehoefte en eventueel lastbeheer moeten samen worden beoordeeld. Een hoger nominaal vermogen laadt niet sneller wanneer voertuig of aansluiting de lagere grens oplegt.",[15,2193,2195],{"id":2194},"kabel-en-zekering-de-juiste-dimensionering","Kabel en zekering: De juiste dimensionering",[23,2197,2199],{"id":2198},"overzicht-kabeldoorsnedes","Overzicht kabeldoorsnedes",[65,2201,2202,2217],{},[68,2203,2204],{},[71,2205,2206,2209,2212,2215],{},[74,2207,2208],{},"Vermogen",[74,2210,2211],{},"Kabeltype",[74,2213,2214],{},"Doorsnede",[74,2216,2045],{},[84,2218,2219,2230,2241,2252],{},[71,2220,2221,2224,2226,2228],{},[89,2222,2223],{},"3,7 kW (1F, 16A)",[89,2225,313],{},[89,2227,115],{},[89,2229,125],{},[71,2231,2232,2235,2237,2239],{},[89,2233,2234],{},"7,4 kW (1F, 32A)",[89,2236,325],{},[89,2238,118],{},[89,2240,128],{},[71,2242,2243,2246,2248,2250],{},[89,2244,2245],{},"11 kW (3F, 16A)",[89,2247,337],{},[89,2249,115],{},[89,2251,342],{},[71,2253,2254,2257,2259,2261],{},[89,2255,2256],{},"22 kW (3F, 32A)",[89,2258,350],{},[89,2260,118],{},[89,2262,355],{},[11,2264,2265,2268],{},[31,2266,2267],{},"Belangrijk:"," Bij lange kabellengtes (>15m) moet de doorsnede mogelijk verhoogd worden om de spanningsval te beperken (AREI Art. 5.2.5 — spanningsverandering; Art. 5.2.1.2b — keuze van de leidingen). Plan de kabelroute vooraf en raadpleeg bij twijfel de spanningsvaltabellen.",[23,2270,2211],{"id":2271},"kabeltype",[11,2273,2274,2275,2278],{},"In België wordt voor vast aangelegde installaties doorgaans ",[31,2276,2277],{},"XVB-kabel"," gebruikt:",[146,2280,2281,2286,2291,2296],{},[149,2282,2283,2285],{},[31,2284,313],{}," voor eenfasig 16A",[149,2287,2288,2290],{},[31,2289,325],{}," voor eenfasig 32A",[149,2292,2293,2295],{},[31,2294,337],{}," voor driefasig 16A",[149,2297,2298,2300],{},[31,2299,350],{}," voor driefasig 32A",[11,2302,2303,2304,2307],{},"Bij plaatsing in een Preflex-buis komen ",[31,2305,2306],{},"VOB-afzonderlijke aders"," in aanmerking (H07V-U), waarbij de buis voldoende gedimensioneerd moet zijn.",[15,2309,2311],{"id":2310},"type-aardlekschakelaar-het-belangrijkste-beveiligingstoestel","Type aardlekschakelaar: Het belangrijkste beveiligingstoestel",[11,2313,2314],{},"De keuze van de juiste aardlekschakelaar is bij laadpalen bijzonder belangrijk — en kan aanzienlijke kostenverschillen veroorzaken.",[23,2316,2318],{"id":2317},"type-a-ingebouwde-dc-6ma-sensor-rdc-dd-in-de-laadpaal","Type A + ingebouwde DC-6mA-sensor (RDC-DD in de laadpaal)",[11,2320,2321,2322,2325],{},"Hoofdstuk 7.22 vereist bescherming tegen gladde DC-foutstroomcomponenten. Type A alleen biedt die functie niet. Wanneer de fabrikant voor de exacte laadpaal geschikte ingebouwde 6-mA-DC-detectie (RDC-DD) documenteert, kan die deel uitmaken van een oplossing met voorgeschakelde ",[31,2323,2324],{},"differentieel type A 30 mA",". Neem die combinatie niet aan zonder productbewijs.",[11,2327,2328],{},"Het gekozen type A moet passen bij net, pooltal, nominale waarde en de gedocumenteerde voorwaarden van de laadpaal. Zonder die parameters is een prijsbereik geen betrouwbare raming.",[23,2330,2332],{"id":2331},"type-b-als-geen-dc-sensor-in-de-laadpaal","Type B (als geen DC-sensor in de laadpaal)",[11,2334,2335,2336,2339,2340,2343],{},"Als uw laadpaal ",[31,2337,2338],{},"geen"," ingebouwde DC-foutstroomsensor heeft, hebt u een ",[31,2341,2342],{},"aardlekschakelaar type B"," nodig. Deze detecteert ook gelijkstroomfoutstromen (DC), die bij AC\u002FDC-laders kunnen optreden.",[11,2345,2346],{},"Controleer de verklaring van de fabrikant over DC-foutstroomdetectie. Alleen een productbenaming bewijst niet dat laadpaal en voorgeschakelde differentieel samen een conforme beveiliging vormen.",[23,2348,2350],{"id":2349},"type-a-si-alternatief","Type A-SI (alternatief)",[11,2352,2353,2354,2357],{},"Een ",[31,2355,2356],{},"differentieel type A-SI"," kan volgens de fabrikant beter tegen bepaalde storingsimpulsen bestand zijn, maar vervangt op zichzelf niet de vereiste detectie van gladde DC-foutstromen. De gedocumenteerde beveiligingscombinatie is bepalend.",[15,2359,2361],{"id":2360},"overspanningsbeveiliging-spd-centraal-voor-de-gehele-installatie","Overspanningsbeveiliging (SPD) — centraal voor de gehele installatie",[11,2363,2364,2365,2368],{},"Art. 4.5.1 vereist algemeen de bescherming tegen overspanningen volgens de regels van het vak. In de praktijk wordt een ",[31,2366,2367],{},"SPD (overspanningsbeveiliging)"," in de verdeelkast geïnstalleerd, die alle aangesloten toestellen inclusief de laadpaal beschermt tegen transiënte overspanningen. Het AREI noemt geen concreet \"Type 2\" — de type-aanduiding stamt uit de productnorm (IEC 61643-11).",[11,2370,2371,2373],{},[31,2372,2267],{}," De SPD moet met een voorzekering (gR-zekering of MCB) beveiligd worden. Neem de fabrikantvoorschriften in acht.",[15,2375,2377],{"id":2376},"netbeheerder-en-richting-van-de-energiestroom","Netbeheerder en richting van de energiestroom",[11,2379,2380],{},"Dit artikel leidt geen universele meldings- of aansluitdrempel af uit het nominale laadvermogen. Controleer vóór bestelling de actuele voorwaarden van de netbeheerder voor het adres. Houd EAN-code, aansluitingstype, gepland vermogen, fasen, lastbeheer en exacte productbeschrijving bij de hand.",[11,2382,2383],{},"Leg expliciet vast of energie alleen van net naar voertuig of in beide richtingen kan stromen. Synergrid vermeldt dat bidirectionele of technisch bidirectionele laders onder C10\u002F11 editie 2.4 vallen en een C10\u002F26-typehomologatie vereisen. Zuiver unidirectionele net-naar-voertuigladers vereisen onder die regel geen C10\u002F26. Daaruit volgt niet automatisch dat geen andere melding, capaciteitsgrens of netbeheerdervoorwaarde geldt.",[11,2385,2386],{},"Leg het antwoord vast met exact model en fabrikantverklaring. Alleen teruglevering via software uitschakelen kan onvoldoende zijn wanneer het toestel technisch bidirectioneel blijft; Synergrid noemt ook die technische mogelijkheid uitdrukkelijk. Controleer de netvraag opnieuw na een wijziging van firmware, bedrijfsmodus of aansluitvermogen. Bewaar bevestiging, productgegevens en eventuele homologatiereferentie in het installatiedossier, zodat elektricien, netbeheerder en keuringsorganisme dezelfde variant beoordelen.",[11,2388,2389],{},"Documenteer vóór ingebruikname ook fasetoewijzing, ingestelde stroomgrens, lastbeheer en gedrag bij communicatie-uitval. Die bedrijfsparameters vervangen geen elektrische beveiliging, maar beïnvloeden wel het werkelijk gevraagde aansluitvermogen en moeten met het ontwerp overeenkomen.",[23,2391,2393],{"id":2392},"leg-de-opleverinstellingen-samen-vast","Leg de opleverinstellingen samen vast",[11,2395,2396],{},"Maak voor elektricien, gebruiker en latere controleur een beknopt ingebruiknameblad. Noteer exact toestelmodel, geïnstalleerde firmware, een- of driefasige werking, maximale stroom, voorbeveiliging, differentieelconcept, DC-foutstroomdetectie en kabeltype. Bij dynamisch lastbeheer vermeldt u ook meetpunt, communicatiepad, gedrag bij uitval en de werkelijk ingestelde begrenzing. Wijkt een van die gegevens af van handleiding, schema of bordopschrift, laat de afwijking dan vóór gebruik verklaren en oplossen.",[11,2398,2399],{},"Bepaal ook wie instellingen mag wijzigen en hoe zo'n wijziging in het dossier terechtkomt. Een later verhoogde laadstroom kan kabel, beveiliging, aansluitcapaciteit en selectiviteit anders belasten dan de beoordeelde configuratie. Bewaar daarom het instellingenbewijs samen met foto's van de labels, technische fiche, conformiteitsdocumenten en keuringsverslag. Een toestelvervanging is meer dan een nieuwe behuizing: beveiligingscombinatie, communicatiemethode, laadwijze en mogelijke teruglevercapaciteit moeten voor het nieuwe model opnieuw worden beoordeeld. Zo blijft een elektrisch relevante software- of toestelconfiguratie niet onzichtbaar naast de plannen bestaan.",[15,2401,2403],{"id":2402},"eendraadschema-actualiseren","Eendraadschema actualiseren",[11,2405,2406,2407,2409],{},"Na de installatie van een laadpaal ",[31,2408,1967],{}," het eendraadschema van uw elektrische installatie geactualiseerd worden. De laadpaal wordt als eigen aftakking in het schema weergegeven:",[23,2411,2413],{"id":2412},"wat-moet-in-het-schema-staan","Wat moet in het schema staan?",[492,2415,2416,2421,2427,2432,2437,2443,2449],{},[149,2417,2418,2420],{},[31,2419,1961],{}," vanaf de verdeelkast",[149,2422,2423,2426],{},[31,2424,2425],{},"Aardlekschakelaar"," met type-aanduiding (A of B)",[149,2428,2429,2431],{},[31,2430,2045],{}," met nominale stroom",[149,2433,2434,2436],{},[31,2435,515],{}," (overspanningsbeveiliging)",[149,2438,2439,2442],{},[31,2440,2441],{},"Laadpaalsymbool"," met vermogensaanduiding",[149,2444,2445,2448],{},[31,2446,2447],{},"Kabelaanduiding"," (bijv. XVB 5G2,5)",[149,2450,2451,2454],{},[31,2452,2453],{},"Fasetoewijzing"," (bij driefasig: L1\u002FL2\u002FL3)",[23,2456,2458],{"id":2457},"planelec-maakt-het-eenvoudig","PlanElec maakt het eenvoudig",[11,2460,2461,2463],{},[31,2462,543],{}," ondersteunt de documentatie van een laadpaal in het project:",[146,2465,2466,2469,2472,2475],{},[149,2467,2468],{},"Een laadpaalsymbool is beschikbaar voor de planweergave",[149,2470,2471],{},"De zelfcontrole kan ondersteunde gegevens over eigen kring, aardlekbeveiliging en SPD signaleren",[149,2473,2474],{},"De fasetoewijzing kan rechtstreeks ingevuld worden",[149,2476,2477],{},"De pdf-export neemt de in het project vastgelegde gegevens over",[15,2479,2481],{"id":2480},"kosten-vergelijken-op-dezelfde-technische-scope","Kosten vergelijken op dezelfde technische scope",[11,2483,2484],{},"Een bruikbare offerte splitst laadpaal, beveiligingstoestellen, kabelroute, grondwerken, aanpassing van het bord, lastbeheer, ontwerp, keuring en eventuele netprocedure uit. De prijs hangt sterk af van toestel, lengte en bereikbaarheid, aansluitvermogen en het bestaande bord. Laat aanbieders daarom dezelfde technische omschrijving begroten; een vaste online prijsvork is geen betrouwbare projectraming.",[11,2486,2487],{},"Bewaar die technische vergelijking bij het projectdossier.",[15,2489,2491],{"id":2490},"veelgemaakte-fouten-vermijden","Veelgemaakte fouten vermijden",[492,2493,2494,2500,2506,2512,2518,2524],{},[149,2495,2496,2499],{},[31,2497,2498],{},"Geen eigen kring:"," De laadpaal op een bestaand stopcontact aansluiten is niet alleen onveilig, maar AREI-strijdig.",[149,2501,2502,2505],{},[31,2503,2504],{},"Verkeerd type aardlekschakelaar:"," Zonder DC-sensor in de laadpaal is een type B dwingend vereist.",[149,2507,2508,2511],{},[31,2509,2510],{},"Overspanning niet beoordeeld:"," Of en hoe een SPD nodig is, wordt voor de volledige installatie beoordeeld en volgens de fabrikantvoorschriften gecoördineerd.",[149,2513,2514,2517],{},[31,2515,2516],{},"Geen geactualiseerd eendraadschema:"," Elke wijziging aan de installatie moet in het schema gedocumenteerd worden.",[149,2519,2520,2523],{},[31,2521,2522],{},"Netvoorwaarden niet nagegaan:"," Formaliteiten hangen af van netbeheerder en laadfunctie; bidirectionele of technisch bidirectionele toestellen vallen ook onder C10\u002F11 en C10\u002F26.",[149,2525,2526,2529],{},[31,2527,2528],{},"Te dunne kabeldoorsnede:"," Vooral bij lange leidingwegen (>15m) de spanningsval in het oog houden.",[15,2531,2533],{"id":2532},"conclusie","Conclusie",[11,2535,2536],{},"Een laadpaal in België vereist een eigen kring per aansluitpunt, geschikte bijkomende differentieel- en DC-foutstroombeveiliging, een projectgerichte kabel- en beveiligingskeuze en bijgewerkte plannen. Goede documentatie maakt de installatie controleerbaar, maar garandeert geen positief keuringsverslag.",[15,2538,2540],{"id":2539},"officiële-bronnen","Officiële bronnen",[146,2542,2543,2549],{},[149,2544,2545],{},[624,2546,2548],{"href":626,"rel":2547},[628],"AREI\u002FRGIE Boek 1, editie 2026 — hoofdstuk 7.22",[149,2550,2551],{},[624,2552,2555],{"href":2553,"rel":2554},"https:\u002F\u002Fwww.synergrid.be\u002Fnl\u002Fhomologatie\u002Felektriciteit\u002Fdecentrale-productie-eenheden",[628],"Synergrid: C10\u002F26 voor bidirectionele of technisch bidirectionele laadinfrastructuur",[638,2557],{},[15,2559,2561],{"id":2560},"gerelateerde-artikelen","Gerelateerde artikelen",[146,2563,2564,2570],{},[149,2565,2566],{},[624,2567,2569],{"href":2568},"\u002Fblog\u002Fspanningsval-berekenen-kabeldoorsnede","Spanningsval berekenen voor een lange laadkabel",[149,2571,2572],{},[624,2573,2575],{"href":2574},"\u002Fnl\u002Fblog\u002Fkostenvergelijking-zelf-vs-elektricien","Kostenvergelijking: zelf tekenen vs. elektricien",[146,2577,2578],{},[149,2579,2580],{},[624,2581,665],{"href":2582},"\u002Fnl\u002Fblog\u002Fplanelec-vs-excel-papier",[15,2584,2586],{"id":2585},"laadpaal-in-het-eendraadschema-documenteren","Laadpaal in het eendraadschema documenteren",[11,2588,2589,2590,2592,2593],{},"Met ",[31,2591,543],{}," documenteert u uw laadpaal in het eendraadschema en exporteert u het project als pdf. De zelfcontrole ondersteunt de voorbereiding, maar vervangt geen ontwerpberekening of officiële keuring. ",[624,2594,2596],{"href":678,"rel":2595},[628],"Nu starten →",{"title":682,"searchDepth":683,"depth":683,"links":2598},[2599,2605,2610,2614,2619,2620,2623,2627,2628,2629,2630,2631,2632],{"id":1953,"depth":683,"text":1954,"children":2600},[2601,2602,2603,2604],{"id":1960,"depth":688,"text":1961},{"id":1971,"depth":688,"text":1972},{"id":1978,"depth":688,"text":1979},{"id":1985,"depth":688,"text":1986},{"id":1992,"depth":683,"text":1993,"children":2606},[2607,2608,2609],{"id":1996,"depth":688,"text":1997},{"id":2092,"depth":688,"text":2093},{"id":2187,"depth":688,"text":2188},{"id":2194,"depth":683,"text":2195,"children":2611},[2612,2613],{"id":2198,"depth":688,"text":2199},{"id":2271,"depth":688,"text":2211},{"id":2310,"depth":683,"text":2311,"children":2615},[2616,2617,2618],{"id":2317,"depth":688,"text":2318},{"id":2331,"depth":688,"text":2332},{"id":2349,"depth":688,"text":2350},{"id":2360,"depth":683,"text":2361},{"id":2376,"depth":683,"text":2377,"children":2621},[2622],{"id":2392,"depth":688,"text":2393},{"id":2402,"depth":683,"text":2403,"children":2624},[2625,2626],{"id":2412,"depth":688,"text":2413},{"id":2457,"depth":688,"text":2458},{"id":2480,"depth":683,"text":2481},{"id":2490,"depth":683,"text":2491},{"id":2532,"depth":683,"text":2533},{"id":2539,"depth":683,"text":2540},{"id":2560,"depth":683,"text":2561},{"id":2585,"depth":683,"text":2586},"AREI-vereisten voor laadpalen in België: eigen kring, differentieel- en DC-foutstroombeveiliging, kabelontwerp, documentatie en netvoorwaarden.","nl",{},"\u002Fblog\u002Flaadpaal-arei.nl",{"title":1945,"description":2633},"laadpaal-arei","blog\u002Flaadpaal-arei.nl",[2641,734,1937,2642,2643,2644,2645,2646],"laadpaal","elektrisch voertuig","installatie","aardlekbeveiliging","België","eendraadschema","PTD6Pa1PbNxThqIkKzFMezV8ib_S5dsQ-QYUX-JV-1o",{"id":2649,"title":2650,"articleId":6,"body":2651,"category":718,"date":719,"description":3349,"extension":721,"lastUpdated":722,"locale":3350,"meta":3351,"navigation":725,"path":3352,"publishDate":719,"readTime":727,"refreshInterval":728,"seo":3353,"slug":3354,"stem":3355,"tags":3356,"__hash__":3364},"blog\u002Fblog\u002Fwallbox-arei.de.md","Wallbox installieren nach AREI: Der komplette Leitfaden für Belgien",{"type":8,"value":2652,"toc":3313},[2653,2656,2660,2663,2667,2674,2678,2681,2685,2688,2692,2695,2699,2703,2768,2773,2784,2789,2797,2801,2860,2865,2876,2881,2892,2896,2899,2903,2907,2968,2974,2977,2984,3006,3013,3017,3020,3024,3031,3034,3038,3049,3052,3056,3063,3067,3074,3079,3083,3086,3089,3092,3095,3099,3102,3105,3109,3115,3119,3160,3164,3169,3183,3187,3190,3193,3196,3200,3238,3246,3250,3253,3257,3271,3273,3277,3291,3299,3303],[11,2654,2655],{},"Die Installation einer Wallbox (Ladestation für Elektroautos) in Belgien fällt unter Kapitel 7.22 von Buch 1 des AREI. Dieser Leitfaden erklärt die zentralen Planungsfragen; er ersetzt weder Herstelleranleitung, Netzbetreiberbedingungen noch die Beurteilung durch Elektriker und zugelassenen Kontrollorganismus.",[15,2657,2659],{"id":2658},"arei-anforderungen-für-wallbox-art-722","AREI-Anforderungen für Wallbox (Art. 7.22)",[11,2661,2662],{},"Das AREI stellt folgende Grundanforderungen an Wallbox-Installationen:",[23,2664,2666],{"id":2665},"eigener-stromkreis","Eigener Stromkreis",[11,2668,2669,2670,2673],{},"Die Wallbox ",[31,2671,2672],{},"muss"," über einen eigenen, dedizierten Stromkreis verfügen. Sie darf nicht an einen bestehenden Stromkreis (z.B. Steckdosen in der Garage) angeschlossen werden. Dieser dedizierte Kreis muss vom Verteilerkasten direkt zur Wallbox führen.",[23,2675,2677],{"id":2676},"fi-schutzschalter-differentialschutz","FI-Schutzschalter (Differentialschutz)",[11,2679,2680],{},"Jede Wallbox benötigt einen eigenen FI-Schutzschalter (RCD). Die Art des FI hängt von der Wallbox ab (mehr dazu weiter unten).",[23,2682,2684],{"id":2683},"leitungsschutzschalter-automaat","Leitungsschutzschalter (Automaat)",[11,2686,2687],{},"Ein entsprechend dimensionierter Leitungsschutzschalter (MCB) schützt den Wallbox-Stromkreis vor Überlast und Kurzschluss.",[23,2689,2691],{"id":2690},"überspannungsschutz-spd","Überspannungsschutz (SPD)",[11,2693,2694],{},"Art. 4.5.1 verlangt allgemein den Schutz vor Überspannungen nach den Regeln des Fachs. In der Praxis wird ein zentraler SPD im Verteilerkasten installiert, der alle Kreise einschließlich des Wallbox-Kreises vor Überspannungen durch Blitzeinschlag oder Schaltvorgänge im Netz schützt.",[15,2696,2698],{"id":2697},"einphasig-vs-dreiphasig-welche-wallbox","Einphasig vs. Dreiphasig: Welche Wallbox?",[23,2700,2702],{"id":2701},"einphasig-37-kw-oder-74-kw","Einphasig — 3,7 kW oder 7,4 kW",[65,2704,2705,2716],{},[68,2706,2707],{},[71,2708,2709,2712,2714],{},[74,2710,2711],{},"Eigenschaft",[74,2713,79],{},[74,2715,82],{},[84,2717,2718,2728,2737,2746,2757],{},[71,2719,2720,2723,2726],{},[89,2721,2722],{},"Anschluss",[89,2724,2725],{},"1-phasig, 230V",[89,2727,2725],{},[71,2729,2730,2733,2735],{},[89,2731,2732],{},"Stromstärke",[89,2734,104],{},[89,2736,107],{},[71,2738,2739,2742,2744],{},[89,2740,2741],{},"Kabelquerschnitt",[89,2743,115],{},[89,2745,118],{},[71,2747,2748,2751,2754],{},[89,2749,2750],{},"Leitungsschutzschalter",[89,2752,2753],{},"20A Typ C",[89,2755,2756],{},"32A Typ C",[71,2758,2759,2762,2765],{},[89,2760,2761],{},"Ladezeit (50 kWh Akku)",[89,2763,2764],{},"~14 Stunden",[89,2766,2767],{},"~7 Stunden",[11,2769,2770],{},[31,2771,2772],{},"Vorteile einphasig:",[146,2774,2775,2778,2781],{},[149,2776,2777],{},"Günstiger in der Installation",[149,2779,2780],{},"Einfachere Verkabelung",[149,2782,2783],{},"Ausreichend für die meisten Haushalte (Nachtladung)",[11,2785,2786],{},[31,2787,2788],{},"Nachteile einphasig:",[146,2790,2791,2794],{},[149,2792,2793],{},"Begrenzte Ladeleistung",[149,2795,2796],{},"Bei 7,4 kW: Schieflast möglich (Achtung bei der Anmeldung)",[23,2798,2800],{"id":2799},"dreiphasig-11-kw-oder-22-kw","Dreiphasig — 11 kW oder 22 kW",[65,2802,2803,2813],{},[68,2804,2805],{},[71,2806,2807,2809,2811],{},[74,2808,2711],{},[74,2810,185],{},[74,2812,188],{},[84,2814,2815,2824,2832,2840,2850],{},[71,2816,2817,2819,2822],{},[89,2818,2722],{},[89,2820,2821],{},"3-phasig, 400V",[89,2823,2821],{},[71,2825,2826,2828,2830],{},[89,2827,2732],{},[89,2829,206],{},[89,2831,209],{},[71,2833,2834,2836,2838],{},[89,2835,2741],{},[89,2837,216],{},[89,2839,219],{},[71,2841,2842,2844,2847],{},[89,2843,2750],{},[89,2845,2846],{},"20A 3-polig Typ C",[89,2848,2849],{},"32A 3-polig Typ C",[71,2851,2852,2854,2857],{},[89,2853,2761],{},[89,2855,2856],{},"~5 Stunden",[89,2858,2859],{},"~2,5 Stunden",[11,2861,2862],{},[31,2863,2864],{},"Vorteile dreiphasig:",[146,2866,2867,2870,2873],{},[149,2868,2869],{},"Deutlich schnelleres Laden",[149,2871,2872],{},"Gleichmäßige Lastverteilung (keine Schieflast)",[149,2874,2875],{},"Zukunftssicher",[11,2877,2878],{},[31,2879,2880],{},"Nachteile dreiphasig:",[146,2882,2883,2886,2889],{},[149,2884,2885],{},"Teurere Installation",[149,2887,2888],{},"Dreiphasiger Anschluss am Verteilerkasten nötig",[149,2890,2891],{},"Höhere Materialkosten (dickere Kabel, teurere Schutzgeräte)",[23,2893,2895],{"id":2894},"auswahl-anhand-des-projekts","Auswahl anhand des Projekts",[11,2897,2898],{},"Die passende Ladeleistung ergibt sich nicht aus einer pauschalen Empfehlung. Netzanschluss, verfügbare Phasen, Hauptschutz, gleichzeitige Hauslast, Fahrzeug-Onboard-Lader, gewünschte Energiemenge und mögliches Lastmanagement müssen zusammen bewertet werden. Eine nominell leistungsfähigere Wallbox lädt nicht schneller, wenn Fahrzeug oder Anschluss den Strom begrenzen.",[15,2900,2902],{"id":2901},"kabel-und-sicherung-die-richtige-dimensionierung","Kabel und Sicherung: Die richtige Dimensionierung",[23,2904,2906],{"id":2905},"übersicht-kabelquerschnitte","Übersicht Kabelquerschnitte",[65,2908,2909,2924],{},[68,2910,2911],{},[71,2912,2913,2916,2919,2922],{},[74,2914,2915],{},"Leistung",[74,2917,2918],{},"Kabeltyp",[74,2920,2921],{},"Querschnitt",[74,2923,2750],{},[84,2925,2926,2936,2946,2957],{},[71,2927,2928,2930,2932,2934],{},[89,2929,310],{},[89,2931,313],{},[89,2933,115],{},[89,2935,2753],{},[71,2937,2938,2940,2942,2944],{},[89,2939,322],{},[89,2941,325],{},[89,2943,118],{},[89,2945,2756],{},[71,2947,2948,2950,2952,2954],{},[89,2949,334],{},[89,2951,337],{},[89,2953,115],{},[89,2955,2956],{},"20A 3P Typ C",[71,2958,2959,2961,2963,2965],{},[89,2960,347],{},[89,2962,350],{},[89,2964,118],{},[89,2966,2967],{},"32A 3P Typ C",[11,2969,2970,2973],{},[31,2971,2972],{},"Wichtig:"," Bei langen Kabellängen (>15m) muss der Querschnitt möglicherweise erhöht werden, um den Spannungsabfall zu begrenzen (AREI Art. 5.2.5 — Spannungsänderung; Art. 5.2.1.2b — Wahl der Leitungen). Planen Sie die Kabelstrecke vorab und konsultieren Sie bei Unsicherheit die Spannungsabfalltabellen.",[23,2975,2918],{"id":2976},"kabeltyp",[11,2978,2979,2980,2983],{},"In Belgien wird für fest verlegte Installationen üblicherweise ",[31,2981,2982],{},"XVB-Kabel"," verwendet:",[146,2985,2986,2991,2996,3001],{},[149,2987,2988,2990],{},[31,2989,313],{}," für einphasig 16A",[149,2992,2993,2995],{},[31,2994,325],{}," für einphasig 32A",[149,2997,2998,3000],{},[31,2999,337],{}," für dreiphasig 16A",[149,3002,3003,3005],{},[31,3004,350],{}," für dreiphasig 32A",[11,3007,3008,3009,3012],{},"Bei Verlegung in einem Preflex-Rohr kommen ",[31,3010,3011],{},"VOB-Einzeladern"," in Frage (H07V-U), wobei das Rohr ausreichend dimensioniert sein muss.",[15,3014,3016],{"id":3015},"fi-typ-das-wichtigste-schutzgerät","FI-Typ: Das wichtigste Schutzgerät",[11,3018,3019],{},"Die Wahl des richtigen FI-Schutzschalters ist bei Wallboxen besonders wichtig — und kann erhebliche Kostenunterschiede verursachen.",[23,3021,3023],{"id":3022},"typ-a-integrierter-dc-6ma-sensor-rdc-dd-in-der-wallbox","Typ A + integrierter DC-6mA-Sensor (RDC-DD in der Wallbox)",[11,3025,3026,3027,3030],{},"Kapitel 7.22 verlangt Schutz gegen glatte DC-Fehlerstromanteile. Ein Typ A allein genügt dafür nicht. Wenn der Hersteller für die konkrete Wallbox eine geeignete integrierte 6-mA-DC-Erkennung (RDC-DD) nachweist, kann sie Teil einer Lösung mit vorgeschaltetem ",[31,3028,3029],{},"FI Typ A (30 mA)"," sein. Ohne diesen dokumentierten Nachweis darf die Kombination nicht angenommen werden.",[11,3032,3033],{},"Der konkrete Typ A muss zum Netz, zur Polzahl, zur Bemessung und zu den Herstellerbedingungen der Wallbox passen. Ein Preisbereich ist ohne diese Angaben nicht belastbar.",[23,3035,3037],{"id":3036},"typ-b-wenn-kein-dc-sensor-in-der-wallbox","Typ B (wenn kein DC-Sensor in der Wallbox)",[11,3039,3040,3041,3044,3045,3048],{},"Wenn Ihre Wallbox ",[31,3042,3043],{},"keinen"," eingebauten DC-Fehlerstromsensor hat, benötigen Sie einen ",[31,3046,3047],{},"FI Typ B",". Dieser erkennt auch Gleichfehlerströme (DC), die bei AC\u002FDC-Ladegeräten auftreten können.",[11,3050,3051],{},"Prüfen Sie die Herstellererklärung zur DC-Fehlerstromerkennung. Die bloße Produktbezeichnung ersetzt nicht den Nachweis, dass die Kombination aus Wallbox und vorgeschaltetem FI die Anforderungen erfüllt.",[23,3053,3055],{"id":3054},"typ-a-si-alternative","Typ A-SI (Alternative)",[11,3057,3058,3059,3062],{},"Ein ",[31,3060,3061],{},"FI Typ A-SI"," kann je nach Hersteller robuster gegen bestimmte Störimpulse sein, ist aber allein kein Ersatz für die verlangte Erkennung glatter DC-Fehlerströme. Maßgeblich ist die dokumentierte Gesamtkombination.",[15,3064,3066],{"id":3065},"überspannungsschutz-spd-zentral-für-die-gesamte-installation","Überspannungsschutz (SPD) — zentral für die gesamte Installation",[11,3068,3069,3070,3073],{},"Art. 4.5.1 verlangt allgemein den Schutz vor Überspannungen nach den Regeln des Fachs. In der Praxis wird ein ",[31,3071,3072],{},"SPD (Überspannungsschutz)"," im Verteilerkasten installiert, der alle angeschlossenen Geräte einschließlich der Wallbox vor transienten Überspannungen schützt. Das AREI nennt keinen konkreten „Typ 2\" — die Typ-Bezeichnung stammt aus der Produktnorm (IEC 61643-11).",[11,3075,3076,3078],{},[31,3077,2972],{}," Der SPD muss mit einer Vorsicherung (gR-Sicherung oder MCB) abgesichert werden. Beachten Sie die Herstellerangaben.",[15,3080,3082],{"id":3081},"netzbetreiber-und-energiefluss","Netzbetreiber und Energiefluss",[11,3084,3085],{},"Melde-, Anschluss- und Kapazitätsbedingungen werden nicht pauschal aus der Nennleistung in diesem Artikel abgeleitet. Prüfen Sie vor Bestellung die aktuellen Bedingungen des für die Anschlussadresse zuständigen Netzbetreibers. Halten Sie EAN-Nummer, Anschlussart, geplante Ladeleistung, Phasen, Lastmanagement und die technische Produktbeschreibung bereit.",[11,3087,3088],{},"Klären Sie ausdrücklich, ob das Gerät nur Energie aus dem Netz zum Fahrzeug überträgt oder bidirektional arbeiten kann. Laut Synergrid fallen bidirektionale oder technisch bidirektionale Ladegeräte unter C10\u002F11 ed. 2.4 und benötigen eine C10\u002F26-Typzulassung. Rein unidirektionale Netz-zu-Fahrzeug-Lader benötigen nach dieser Synergrid-Regel keine C10\u002F26-Zulassung. Daraus folgt jedoch nicht automatisch, dass keine andere Meldung oder Netzbetreiberbedingung gilt.",[11,3090,3091],{},"Dokumentieren Sie die Antwort mit dem exakten Modell und der Herstellererklärung. Eine per Software deaktivierte Rückspeisung kann unzureichend sein, wenn das Gerät technisch bidirektional bleibt; Synergrid erfasst ausdrücklich auch diese technische Fähigkeit. Ändert sich später Firmware, Betriebsmodus oder Anschlussleistung, wird die Netzfrage erneut geprüft. Bewahren Sie Bestätigung, Produktdaten und gegebenenfalls Zulassungsreferenz im Installationsdossier auf, damit Elektriker, Netzbetreiber und Kontrollorganismus dieselbe Variante beurteilen.",[11,3093,3094],{},"Vor der Inbetriebnahme sollten außerdem Phasenzuordnung, eingestellte Stromgrenze, Lastmanagement und Verhalten bei Kommunikationsausfall dokumentiert sein. Diese Betriebsparameter ersetzen keine elektrische Schutzmaßnahme, beeinflussen aber die tatsächlich beanspruchte Anschlussleistung und müssen mit dem geplanten Konzept übereinstimmen.",[23,3096,3098],{"id":3097},"abnahmeparameter-gemeinsam-festhalten","Abnahmeparameter gemeinsam festhalten",[11,3100,3101],{},"Erstellen Sie für Elektriker, Betreiber und späteren Kontrolleur ein kurzes Inbetriebnahmeblatt. Darauf gehören das exakte Gerätemodell, die installierte Firmware, ein- oder dreiphasiger Betrieb, maximale Stromstärke, Vorsicherung, FI-Konzept, DC-Fehlerstromerkennung und verwendeter Kabeltyp. Bei dynamischem Lastmanagement kommen Messpunkt, Kommunikationsweg, Ausfallverhalten und die tatsächlich gesetzte Begrenzung hinzu. Stimmen diese Angaben nicht mit Herstellerunterlagen, Schema oder Verteilerbeschriftung überein, muss die Abweichung vor der Nutzung geklärt werden.",[11,3103,3104],{},"Prüfen Sie außerdem, wer Einstellungen verändern darf und wie eine Änderung dokumentiert wird. Ein später höher gesetzter Ladestrom kann Leitung, Schutzgerät, Anschlusskapazität und Selektivität anders beanspruchen als die geprüfte Konfiguration. Bewahren Sie deshalb den Einstellnachweis zusammen mit Fotos der Beschriftung, Datenblatt, Konformitätsunterlagen und Prüfbericht auf. Bei einem Gerätewechsel wird nicht nur das Gehäuse ersetzt: Schutzkombination, Kommunikationsschnittstelle, Ladeart und mögliche Rückspeisefähigkeit werden für das neue Modell erneut bewertet. Diese nachvollziehbare Übergabe verhindert, dass eine technisch relevante Software- oder Gerätekonfiguration außerhalb der Pläne weiterlebt.",[15,3106,3108],{"id":3107},"eindrahtschema-aktualisieren","Eindrahtschema aktualisieren",[11,3110,3111,3112,3114],{},"Nach der Installation einer Wallbox ",[31,3113,2672],{}," das Eindrahtschema Ihrer Elektroinstallation aktualisiert werden. Die Wallbox wird als eigener Abzweig im Schema dargestellt:",[23,3116,3118],{"id":3117},"was-muss-im-schema-stehen","Was muss im Schema stehen?",[492,3120,3121,3126,3132,3137,3142,3148,3154],{},[149,3122,3123,3125],{},[31,3124,2666],{}," ab dem Verteilerkasten",[149,3127,3128,3131],{},[31,3129,3130],{},"FI-Schutzschalter"," mit Typ-Angabe (A oder B)",[149,3133,3134,3136],{},[31,3135,2750],{}," mit Nennstrom",[149,3138,3139,3141],{},[31,3140,515],{}," (Überspannungsschutz)",[149,3143,3144,3147],{},[31,3145,3146],{},"Wallbox-Symbol"," mit Leistungsangabe",[149,3149,3150,3153],{},[31,3151,3152],{},"Kabelbezeichnung"," (z.B. XVB 5G2,5)",[149,3155,3156,3159],{},[31,3157,3158],{},"Phasenzuordnung"," (bei dreiphasig: L1\u002FL2\u002FL3)",[23,3161,3163],{"id":3162},"planelec-macht-es-einfach","PlanElec macht es einfach",[11,3165,3166,3168],{},[31,3167,543],{}," unterstützt die Dokumentation einer Wallbox im Projekt:",[146,3170,3171,3174,3177,3180],{},[149,3172,3173],{},"Ein Wallbox-Symbol steht für die Plandarstellung bereit",[149,3175,3176],{},"Der Selbstcheck kann unterstützte Angaben zu Stromkreis, FI-Schutz und Überspannungsschutz prüfen",[149,3178,3179],{},"Die Phasenzuordnung kann direkt eingetragen werden",[149,3181,3182],{},"Der PDF-Export übernimmt die im Projekt erfassten Angaben",[15,3184,3186],{"id":3185},"kosten-belastbar-vergleichen","Kosten belastbar vergleichen",[11,3188,3189],{},"Ein sinnvoller Kostenvoranschlag trennt Wallbox, Schutzgeräte, Leitungsweg, Erd- und Grabarbeiten, Anpassung des Verteilers, Lastmanagement, Planung, Prüfung und gegebenenfalls Netzbetreiberverfahren. Preise hängen stark von Produkt, Leitungslänge, Zugänglichkeit, Anschlussleistung und bestehendem Verteiler ab. Lassen Sie Angebote deshalb dieselbe technische Leistungsbeschreibung verwenden; starre Online-Spannen sind kein belastbarer Projektpreis.",[11,3191,3192],{},"Vergleichen Sie dabei auch Garantiebedingungen und die dokumentierte Schutzkombination, nicht nur den Gerätepreis.",[11,3194,3195],{},"Dokumentieren Sie diese Vergleichsgrundlage im Angebot.",[15,3197,3199],{"id":3198},"häufige-fehler-vermeiden","Häufige Fehler vermeiden",[492,3201,3202,3208,3214,3220,3226,3232],{},[149,3203,3204,3207],{},[31,3205,3206],{},"Kein eigener Stromkreis:"," Die Wallbox an eine bestehende Steckdose anzuschließen ist nicht nur unsicher, sondern AREI-widrig.",[149,3209,3210,3213],{},[31,3211,3212],{},"Falscher FI-Typ:"," Ohne DC-Sensor in der Wallbox ist ein FI Typ B zwingend erforderlich.",[149,3215,3216,3219],{},[31,3217,3218],{},"Überspannungsschutz nicht bewertet:"," Ob und wie ein SPD eingesetzt wird, muss für die gesamte Anlage fachlich bewertet und nach Herstellerangaben koordiniert werden.",[149,3221,3222,3225],{},[31,3223,3224],{},"Kein aktualisiertes Eindrahtschema:"," Jede Änderung an der Installation muss im Schema dokumentiert werden.",[149,3227,3228,3231],{},[31,3229,3230],{},"Netzanforderungen nicht geprüft:"," Melde- und Anschlussbedingungen hängen von Netzbetreiber und Ladefunktion ab; bidirektionale oder technisch bidirektionale Geräte fallen zusätzlich in den C10\u002F11-\u002FC10\u002F26-Bereich.",[149,3233,3234,3237],{},[31,3235,3236],{},"Zu dünner Kabelquerschnitt:"," Besonders bei langen Leitungswegen (>15m) den Spannungsabfall beachten.",[1818,3239,3240],{},[11,3241,3242,3245],{},[31,3243,3244],{},"Erdungshinweis:"," Voraussetzung für eine sichere Wallbox-Installation: Die gesamte Erdungskette (Erdungselektrode, Hauptpotentialausgleich, Schutzleiter) muss intakt sein. Bei älteren Installationen ohne ordnungsgemäße Erdung ist eine Nachbesserung erforderlich.",[15,3247,3249],{"id":3248},"fazit","Fazit",[11,3251,3252],{},"Eine Wallbox in Belgien verlangt einen eigenen Stromkreis je Anschlusspunkt, passenden zusätzlichen FI- und DC-Fehlerstromschutz, eine projektbezogene Leitungs- und Schutzgeräteauslegung sowie aktualisierte Pläne. Sorgfältige Dokumentation verbessert die Prüfbarkeit, garantiert aber keinen positiven Kontrollbericht.",[15,3254,3256],{"id":3255},"offizielle-quellen","Offizielle Quellen",[146,3258,3259,3265],{},[149,3260,3261],{},[624,3262,3264],{"href":626,"rel":3263},[628],"AREI\u002FRGIE Buch 1, Fassung 2026 — Kapitel 7.22",[149,3266,3267],{},[624,3268,3270],{"href":634,"rel":3269},[628],"Synergrid: C10\u002F26 für bidirektionale oder technisch bidirektionale Ladeinfrastruktur",[638,3272],{},[15,3274,3276],{"id":3275},"verwandte-artikel","Verwandte Artikel",[146,3278,3279,3285],{},[149,3280,3281],{},[624,3282,3284],{"href":3283},"\u002Fde\u002Fblog\u002Fspannungsfall-berechnen-kabelquerschnitt","Spannungsfall einer langen Wallbox-Zuleitung berechnen",[149,3286,3287],{},[624,3288,3290],{"href":3289},"\u002Fde\u002Fblog\u002Fkostenvergleich-selbst-vs-elektriker","Kostenvergleich: Selbst zeichnen vs. Elektriker",[146,3292,3293],{},[149,3294,3295],{},[624,3296,3298],{"href":3297},"\u002Fde\u002Fblog\u002Fplanelec-vs-excel-papier","PlanElec vs. Excel\u002FPapier",[15,3300,3302],{"id":3301},"wallbox-im-eindrahtschema-dokumentieren","Wallbox im Eindrahtschema dokumentieren",[11,3304,3305,3306,3308,3309],{},"Mit ",[31,3307,543],{}," dokumentieren Sie Ihre Wallbox im Eindrahtschema und exportieren das Projekt als PDF. Der Selbstcheck unterstützt die Vorbereitung, ersetzt aber weder Auslegung noch offizielle Prüfung. ",[624,3310,3312],{"href":678,"rel":3311},[628],"Jetzt starten →",{"title":682,"searchDepth":683,"depth":683,"links":3314},[3315,3321,3326,3330,3335,3336,3339,3343,3344,3345,3346,3347,3348],{"id":2658,"depth":683,"text":2659,"children":3316},[3317,3318,3319,3320],{"id":2665,"depth":688,"text":2666},{"id":2676,"depth":688,"text":2677},{"id":2683,"depth":688,"text":2684},{"id":2690,"depth":688,"text":2691},{"id":2697,"depth":683,"text":2698,"children":3322},[3323,3324,3325],{"id":2701,"depth":688,"text":2702},{"id":2799,"depth":688,"text":2800},{"id":2894,"depth":688,"text":2895},{"id":2901,"depth":683,"text":2902,"children":3327},[3328,3329],{"id":2905,"depth":688,"text":2906},{"id":2976,"depth":688,"text":2918},{"id":3015,"depth":683,"text":3016,"children":3331},[3332,3333,3334],{"id":3022,"depth":688,"text":3023},{"id":3036,"depth":688,"text":3037},{"id":3054,"depth":688,"text":3055},{"id":3065,"depth":683,"text":3066},{"id":3081,"depth":683,"text":3082,"children":3337},[3338],{"id":3097,"depth":688,"text":3098},{"id":3107,"depth":683,"text":3108,"children":3340},[3341,3342],{"id":3117,"depth":688,"text":3118},{"id":3162,"depth":688,"text":3163},{"id":3185,"depth":683,"text":3186},{"id":3198,"depth":683,"text":3199},{"id":3248,"depth":683,"text":3249},{"id":3255,"depth":683,"text":3256},{"id":3275,"depth":683,"text":3276},{"id":3301,"depth":683,"text":3302},"AREI-Anforderungen für Wallboxen in Belgien: eigener Stromkreis, FI- und DC-Fehlerstromschutz, Kabelauslegung, Dokumentation und Netzfragen.","de",{},"\u002Fblog\u002Fwallbox-arei.de",{"title":2650,"description":3349},"wallbox-arei","blog\u002Fwallbox-arei.de",[3357,3358,1937,3359,3360,3361,3362,3363],"Wallbox","Ladestation","Elektroauto","Installation","FI-Schutz","Belgien","Eindrahtschema","-wuHgW1Fh326RSRruR8vWR0udS0i1IogbxYQ5UkMTRg",1788389256929]