{"id":3966,"date":"2019-03-05T16:25:07","date_gmt":"2019-03-05T16:25:07","guid":{"rendered":"https:\/\/www.adssl.com\/\/?p=3966"},"modified":"2020-12-31T11:36:34","modified_gmt":"2020-12-31T10:36:34","slug":"com-funciona-un-microxip","status":"publish","type":"post","link":"https:\/\/www.adssl.com\/es\/com-funciona-un-microxip\/","title":{"rendered":"Com funciona un microxip?"},"content":{"rendered":"<h4 class=\"wp-block-heading\"><strong>Es compleixen 60 anys de la patent del primer circuit integrat per\u00f2, sabem com funcionen de deb\u00f2?<\/strong><\/h4>\n\n\n\n<p><\/p>\n\n\n\n<p>El 6 de febrer de 1949 a l&#8217;enginyer alemany 1949 Werner Jacobi se li va atorgar la patent d&#8217;un circuit integrat, el &#8220;\u00e0nima&#8221; dels futurs ordinadors. Va ser un dels invents que va propiciar l&#8217;arribada de l&#8217;era inform\u00e0tica gr\u00e0cies als microxips que avui estan presents en ordinadors, tel\u00e8fons, mascotes, dispositius m\u00e8dics i fins a en el nostre cos. Per\u00f2, sabem de veritat com funcionen? El primer que se&#8217;ns ocorre en pensar en microxips \u00e9s que treballen amb el sistema binari. De la mateixa manera que el sistema decimal ens permet representar tots els nombres, utilitzant del 0 al 9 com la seva base, i col\u00b7locant-los en ordre per assenyalar unitats, desenes, centenes, etc., el sistema binari fa servir nom\u00e9s 0 i 1 per el mateix. I, en lloc de multiplicar per 10, es fa per 2. Aix\u00ed, mentre que al nombre 2019, l&#8217;un representa les desenes, en el sistema binari, el segon lloc representaria un 2, el tercer (el de les centenes al decimal ) seria el 4, el quart lloc el 8 i aix\u00ed. D&#8217;aquesta manera, en sistema binari, 2019 seria 11111100011.<\/p>\n\n\n\n<p>L&#8217;avantatge del sistema binari sobre el decimal \u00e9s que nom\u00e9s contempla dues opcions, zeros i uns. Si b\u00e9 per al dia a dia aix\u00f2 \u00e9s molt complex, a l&#8217;hora d&#8217;emmagatzemar o representar informaci\u00f3 usant electricitat, \u00e9s el m\u00e8tode m\u00e9s efica\u00e7: el sistema binari treballa basant-se en On \/ Off, Vertader \/ Fals, Blanc \/ Negre. De la mateixa manera que les neurones del nostre cervell, que connecten o interrompen el corrent el\u00e8ctric per comunicar-se, els transistors en un microxip (l&#8217;equivalent a les neurones del cervell) s&#8217;activen o desactiven per processar la informaci\u00f3. L&#8217;estat On \/ Off a un transistor \u00e9s la pe\u00e7a m\u00e9s petita d&#8217;informaci\u00f3 i es diu bit (Binary digit, \u00e9s a dir, d\u00edgit binari).&nbsp;Aqu\u00ed cal fer una mica d&#8217;hist\u00f2ria. Quan van comen\u00e7ar a ser m\u00e9s freq\u00fcents els ordinadors, cada fabricant operava amb un nombre diferents de bits, entre 5 i 12, per\u00f2 la necessitat que els diferents ordinadors poguessin intercanviar informaci\u00f3 feia necessari que hi hagu\u00e9s un est\u00e0ndard. Aix\u00ed, el 1963, es crea el codi ASCII (American Standard Code for Information Interchange o Codi Est\u00e0ndard Americ\u00e0 per a Intercanvi d&#8217;Informaci\u00f3) que va comen\u00e7ar a treballar amb 8 bits, \u00e9s a dir 8 &#8220;espais&#8221; per zeros i uns. Amb 8 bits, el nombre m\u00e0xim que es pot representar \u00e9s 255, que en binari equival a 8 uns. Per aix\u00f2 l&#8217;antic Pac-man es congelava en arribar a la fase 256. Operava en 8 bits i no podia anar m\u00e9s enll\u00e0 del 255.&nbsp;El codi ASCII va utilitzar aquestes 255 possibilitats per assignar, a cadascuna d&#8217;elles, una lletra, un s\u00edmbol, un signe de puntuaci\u00f3 o un nombre. D&#8217;aquesta manera, quan premem la tecla J, per exemple, l&#8217;ordinador el converteix en nombres binaris = 1001010. Aquests 8 bits inicials ha anat augmentant a 16, 32, 64, etc. a mesura que hi havia m\u00e9s i m\u00e9s transistors en els microxips.<\/p>\n\n\n\n<figure class=\"wp-block-gallery columns-1 is-cropped wp-block-gallery-1 is-layout-flex wp-block-gallery-is-layout-flex\"><ul class=\"blocks-gallery-grid\"><li class=\"blocks-gallery-item\"><figure><img fetchpriority=\"high\" decoding=\"async\" width=\"480\" height=\"241\" src=\"https:\/\/www.adssl.com\/wp-content\/uploads\/2020\/04\/MICROCHIP2.jpg\" alt=\"\" data-id=\"3971\" data-full-url=\"https:\/\/www.adssl.com\/wp-content\/uploads\/2020\/04\/MICROCHIP2.jpg\" data-link=\"https:\/\/www.adssl.com\/2020\/04\/29\/com-funciona-un-microxip\/microchip2\/\" class=\"wp-image-3971\" srcset=\"https:\/\/www.adssl.com\/wp-content\/uploads\/2020\/04\/MICROCHIP2.jpg 480w, https:\/\/www.adssl.com\/wp-content\/uploads\/2020\/04\/MICROCHIP2-300x151.jpg 300w\" sizes=\"(max-width: 480px) 100vw, 480px\" \/><\/figure><\/li><\/ul><\/figure>\n\n\n\n<p>\u00d2bviament el text \u00e9s f\u00e0cil, per\u00f2 les imatges i els sons necessiten m\u00e9s &#8220;neurones&#8221;. El 1971, Intel va llan\u00e7ar el seu processador Intel 4004, el primer disponible de manera comercial. Tenia tot just 2.300 transistors o &#8220;neurones&#8221; per processar informaci\u00f3. Gaireb\u00e9 mig segle despr\u00e9s, l&#8217;\u00faltim model presentat per Intel, el i9-9900K, ronda els 10.000 milions de transistors. I no nom\u00e9s t\u00e9 m\u00e9s &#8220;neurones&#8221;, sin\u00f3 que estan m\u00e9s juntes i la informaci\u00f3 triga menys a viatjar, per aix\u00f2 els microxips poden ser m\u00e9s petits, per\u00f2 m\u00e9s r\u00e0pids.&nbsp;D&#8217;altra banda, a l&#8217;hora d&#8217;emmagatzemar o processar fotos, els microxips tamb\u00e9 treballen amb zeros i uns. I ho fan d&#8217;aquesta manera. Les imatges estan compostes per petits punts coneguts com p\u00edxels. Cada p\u00edxel ocupa 3 bytes (un byte equival a 8 bits), d&#8217;aquesta manera, a cada p\u00edxel li corresponen una s\u00e8rie de 0 i 1 que el distingeixen d&#8217;altres colors. I, amb la m\u00fasica m\u00e9s del mateix: b\u00e0sicament cada so \u00e9s una s\u00e8rie de vibracions en el nostre sentit que poden ser representades en forma d&#8217;ona. Qualsevol punt en aquesta ona es pot representar amb un nombre. Per tant, si volem millorar la nostra experi\u00e8ncia auditiva, sempre hem de triar un sistema d&#8217;\u00e0udio de 32 bits per sobre d&#8217;un de 8 bits, ja que hi haur\u00e0 m\u00e9s informaci\u00f3 i matisos. I el mateix passa amb els colors.<\/p>\n\n\n\n<p>B\u00e0sicament, un microxip busca fer el mateix que un cervell biol\u00f2gic: processar la informaci\u00f3 mitjan\u00e7ant electricitat servint-se de l&#8217;interruptor propi de les neurones. Com m\u00e9s neurones o transistors, m\u00e9s informaci\u00f3 pot processar. I, igual que ocorre amb el cervell, tamb\u00e9 els microxips tenen un l\u00edmit f\u00edsic a partir del qual ja no poden sumar m\u00e9s &#8220;neurones&#8221;.&nbsp;La soluci\u00f3 a aix\u00f2 \u00e9s la computaci\u00f3 qu\u00e0ntica. En termes molt senzills, un ordinador qu\u00e0ntic se serveix d&#8217;una propietat de la mec\u00e0nica qu\u00e0ntica que fa que el qubit (el bit qu\u00e0ntic) pugui ser 0, 1 o tots dos alhora. Quina \u00e9s la difer\u00e8ncia? Fins a la data, l&#8217;ordinador qu\u00e0ntic m\u00e9s potent es troba a Holanda i \u00e9s una iniciativa de la Universitat de Delft i Intel. T\u00e9 &#8220;a penes&#8221; 49 qubits, per\u00f2 seria suficient per, en teoria, superar en capacitat de processament als superordinadors m\u00e9s potents del moment.<\/p>","protected":false},"excerpt":{"rendered":"<p>Es compleixen 60 anys de la patent del primer circuit integrat per\u00f2, sabem com funcionen de deb\u00f2? El 6 de febrer de 1949 a l&#8217;enginyer alemany 1949 Werner Jacobi se li va atorgar la patent d&#8217;un circuit integrat, el &#8220;\u00e0nima&#8221; dels futurs ordinadors. Va ser un dels invents que va propiciar l&#8217;arribada de l&#8217;era inform\u00e0tica [&hellip;]<\/p>","protected":false},"author":4,"featured_media":5242,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[17],"tags":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v23.2 - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>Com funciona un microxip? - ADS, An\u00e0lisi\/Disseny de Soft<\/title>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/www.adssl.com\/es\/com-funciona-un-microxip\/\" \/>\n<meta property=\"og:locale\" content=\"es_ES\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"Com funciona un microxip? - ADS, An\u00e0lisi\/Disseny de Soft\" \/>\n<meta property=\"og:description\" content=\"Es compleixen 60 anys de la patent del primer circuit integrat per\u00f2, sabem com funcionen de deb\u00f2? 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