1 00:00:00,333 --> 00:00:01,800 One of the most interesting points it has 2 00:00:01,900 --> 00:00:03,333 is that this house is completely 3 00:00:03,533 --> 00:00:04,933 backed by solar energy 4 00:00:08,300 --> 00:00:08,866 This is the 5 00:00:08,900 --> 00:00:09,900 electrical cabinet 6 00:00:10,500 --> 00:00:11,366 we have 7 00:00:11,533 --> 00:00:12,266 for the inverter 8 00:00:12,266 --> 00:00:13,200 The inverter generates 9 00:00:13,366 --> 00:00:14,166 quite a lot of heat 10 00:00:14,200 --> 00:00:16,000 so it must always be designed 11 00:00:16,166 --> 00:00:17,700 to be placed in an electrical area 12 00:00:17,900 --> 00:00:18,633 ventilated 13 00:00:18,633 --> 00:00:20,866 in this case, we have an extractor 14 00:00:21,033 --> 00:00:21,400 installed 15 00:00:21,433 --> 00:00:22,300 One of the 16 00:00:22,333 --> 00:00:24,000 most interesting features of this house 17 00:00:24,066 --> 00:00:24,866 is that it is completely 18 00:00:25,000 --> 00:00:26,366 backed by solar energy 19 00:00:26,366 --> 00:00:27,400 So the system 20 00:00:28,100 --> 00:00:30,333 does have its own installation com 21 00:00:30,500 --> 00:00:32,900 however, in general, it consists of 22 00:00:32,900 --> 00:00:36,533 a solar panel system, batteries, and an inverter 23 00:00:36,666 --> 00:00:37,200 Then, 24 00:00:37,233 --> 00:00:38,066 during the day, 25 00:00:38,200 --> 00:00:39,466 it is responsible for 26 00:00:39,633 --> 00:00:42,466 storing energy in the batteries and compensating 27 00:00:43,000 --> 00:00:43,700 for the use 28 00:00:43,700 --> 00:00:45,433 of public energy, which comes from ICE, 29 00:00:45,966 --> 00:00:48,666 offsetting it to reduce electricity consumpt 30 00:00:48,900 --> 00:00:49,366 In this way 31 00:00:49,366 --> 00:00:51,700 the battery is 100% charged, 32 00:00:51,700 --> 00:00:53,666 which indicates that if at this moment 33 00:00:53,833 --> 00:00:54,633 the power goes out, 34 00:00:54,700 --> 00:00:55,666 we would only 35 00:00:56,100 --> 00:00:58,366 be consuming energy from the battery 36 00:00:58,433 --> 00:00:59,966 but it is very interesting to see how 37 00:01:00,000 --> 00:01:02,633 of the 0.66 kilowatts we are consuming 38 00:01:02,900 --> 00:01:05,200 0.62 come from 39 00:01:05,633 --> 00:01:07,633 the solar panels, and 40 00:01:07,633 --> 00:01:10,300 0.07 come from the ICE power grid 41 00:01:10,500 --> 00:01:12,400 which means that we are paying 42 00:01:12,466 --> 00:01:13,100 perhaps a 43 00:01:13,100 --> 00:01:15,300 only about 10% to ICE, 44 00:01:15,300 --> 00:01:16,366 and the rest comes from solar energy 45 00:01:16,700 --> 00:01:17,766 So it is a great alternative 46 00:01:17,766 --> 00:01:19,266 to reduce electricity costs 47 00:00:00,333 --> 00:00:01,800 Uno de los puntos más interesantes que tiene 48 00:00:01,900 --> 00:00:03,333 esta vivienda es que está completamente 49 00:00:03,533 --> 00:00:04,933 respaldada por energía solar 50 00:00:08,300 --> 00:00:08,866 Este es el 51 00:00:08,900 --> 00:00:09,900 el gabinete eléctrico 52 00:00:10,500 --> 00:00:11,366 que tenemos para 53 00:00:11,533 --> 00:00:12,266 para el inversor 54 00:00:12,266 --> 00:00:13,200 El inversor genera 55 00:00:13,366 --> 00:00:14,166 bastante calor 56 00:00:14,200 --> 00:00:16,000 siempre tiene que estar diseñado en una zona 57 00:00:16,166 --> 00:00:17,700 ojalá que sea como una zona eléctrica 58 00:00:17,900 --> 00:00:18,633 ventilada 59 00:00:18,633 --> 00:00:20,866 bueno en este caso nosotros tenemos un extractor 60 00:00:21,033 --> 00:00:21,400 instalado 61 00:00:21,433 --> 00:00:22,300 uno de los puntos 62 00:00:22,333 --> 00:00:24,000 más interesantes que tiene esta vivienda 63 00:00:24,066 --> 00:00:24,866 es que está completamente 64 00:00:25,000 --> 00:00:26,366 respaldada por energía solar 65 00:00:26,366 --> 00:00:27,400 pues el sistema 66 00:00:28,100 --> 00:00:30,333 sí tiene su complejidad de instalación 67 00:00:30,500 --> 00:00:32,900 sin embargo de manera general consiste en 68 00:00:32,900 --> 00:00:36,533 en un sistema de paneles solares, baterías e inversor 69 00:00:36,666 --> 00:00:37,200 Entonces 70 00:00:37,233 --> 00:00:38,066 durante el día 71 00:00:38,200 --> 00:00:39,466 él se encarga de 72 00:00:39,633 --> 00:00:42,466 almacenar energía en las baterías y compensar 73 00:00:43,000 --> 00:00:43,700 el uso 74 00:00:43,700 --> 00:00:45,433 de la energía pública la que viene del ICE trata de 75 00:00:45,966 --> 00:00:48,666 compensarla para bajar el consumo eléctrico 76 00:01:16,700 --> 00:01:17,766 Es una gran alternativa 77 00:01:17,766 --> 00:01:19,266 para reducir costos eléctricos