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Ihre Systeme laufen im Dauerbetrieb unter extremen Temperaturen, protokollieren Daten rund um die Uhr und können keine Obsoleszenz von Komponenten mitten im Produktlebenszyklus akzeptieren. Consumer-Speicher kann diese Anforderungen nicht erfüllen.\u003C\u002Fp>\u003Cp>Diese Anforderungen erfordern eine andere Technologie. Nicht schnelleren oder günstigeren Speicher, sondern zuverlässigeren. Nicht maximale Kapazität, sondern planbare AusdauerLebensdauer. Nicht Komponenten der neuesten Generation, sondern langfristige Verfügbarkeit.\u003C\u002Fp>\u003Cp>Swissbit vereint NAND-Auswahl, Firmware-Entwicklung und System-in-Package-Fertigung in Berlin. 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Swissbit validiert das Verhalten von NAND an den Temperaturgrenzen und über Temperaturwechselzyklen hinweg. Wir entwickeln Leiterplatten mit geeigneter Lotpastenwahl und Bauteilplatzierung, die mechanischen Belastungen durch thermische Ausdehnung standhalten. Unsere Produkte in Industriequalität definieren Betriebs-Temperaturbereiche, die durch Tests über den gesamten Bereich verifiziert sind – nicht aus Messungen bei Raumtemperatur abgeleitet. 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Durch den Betrieb von Multi-Level-Cells im Single-Bit-Modus erreichen wir eine 10- bis 25-fache Verbesserung der Lebensdauer im Vergleich zum nativen TLC-Betrieb. Bei MLC bedeutet das, dass nur die Lower-Page genutzt wird. Bei TLC entspricht es echtem Single-Bit-Betrieb.\u003C\u002Fp>\u003Cp>Das Ergebnis: Anwendungen, die 10.000 bis 50.000 Schreibzyklen benötigen, können kostengünstigen 3D-TLC statt teurem SLC einsetzen und dennoch industrielle Endurance-Anforderungen erfüllen. pSLC-Operationen werden zudem schneller ausgeführt als MLC- oder TLC-Modi und verbessern damit die Reaktionsfähigkeit des Systems.\u003C\u002Fp>",{"icon":149,"title":151,"short-description":152},{"type":134,"svg":150,"sprite-id":36},"\u003C?xml version=\"1.0\" encoding=\"UTF-8\"?>\n\u003Csvg id=\"Produktion\" xmlns=\"http:\u002F\u002Fwww.w3.org\u002F2000\u002Fsvg\" viewBox=\"0 0 160 160\">\n  \u003Cpath d=\"M80.0334,56.4156h0c6.0276,0,10.9213,4.8937,10.9213,10.9213v25.2594c0,6.0645-4.9236,10.9881-10.9881,10.9881h0c-6.0276,0-10.9212-4.8936-10.9212-10.9212v-25.2594c0-6.0645,4.9236-10.9881,10.9881-10.9881Z\" transform=\"translate(79.9999 -33.1371) rotate(44.9999)\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cpath d=\"M123.2911,13.1579h0c6.0276,0,10.9213,4.8937,10.9213,10.9213v25.2594c0,6.0645-4.9236,10.9881-10.9881,10.9881h0c-6.0276,0-10.9213-4.8937-10.9213-10.9213v-25.2594c0-6.0645,4.9236-10.9881,10.9881-10.9881Z\" transform=\"translate(62.0821 -76.3948) rotate(45)\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cline x1=\"112.5083\" y1=\"47.4917\" x2=\"90.7494\" y2=\"69.2506\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cpath d=\"M36.7757,99.6733h0c6.0276,0,10.9213,4.8937,10.9213,10.9213v25.2594c0,6.0645-4.9236,10.9881-10.9881,10.9881h0c-6.0276,0-10.9213-4.8937-10.9213-10.9213v-25.2594c0-6.0645,4.9236-10.9881,10.9881-10.9881Z\" transform=\"translate(97.918 10.1206) rotate(45)\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cline x1=\"69.2506\" y1=\"90.7494\" x2=\"47.4917\" y2=\"112.5083\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n\u003C\u002Fsvg>","Lebensdauer (Endurance)","\u003Cp>Swissbit spezifiziert die Lebensdauer in TBW (Terabytes Written) und DWPD (Drive Writes Per Day), berechnet für industrielle Workloads. Unsere Endurance-Werte berücksichtigen sowohl die NAND-Technologie (SLC bietet 100.000 Löschzyklen, MLC und 3D TLC liefern 3.000 Zyklen, 3D QLC bietet 1.000 Zyklen) als auch Umsetzungsfaktoren wie die Effizienz des Flash-Translation-Layers, Overprovisioning-Verhältnisse und die Aktivierung des pSLC-Modus.\u003C\u002Fp>\u003Cp>Wir optimieren Firmware und Overprovisioning, um die effektive Lebensdauer für typische industrielle Schreibmuster zu maximieren: kontinuierliches Logging, sequenzielle Schreibvorgänge und vorhersehbare Workload-Charakteristika.\u003C\u002Fp>",{"icon":154,"title":156,"short-description":157},{"type":134,"svg":155,"sprite-id":36},"\u003C?xml version=\"1.0\" encoding=\"UTF-8\"?>\n\u003Csvg id=\"Produktion\" xmlns=\"http:\u002F\u002Fwww.w3.org\u002F2000\u002Fsvg\" viewBox=\"0 0 160 160\">\n  \u003Cline x1=\"152\" y1=\"143.1158\" x2=\"8\" y2=\"143.1158\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cline x1=\"18.333\" y1=\"16.8842\" x2=\"18.333\" y2=\"27.0725\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cline x1=\"18.333\" y1=\"42.258\" x2=\"18.333\" y2=\"128.9972\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cline x1=\"47.1984\" y1=\"137.117\" x2=\"47.1984\" y2=\"143.1158\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cline x1=\"18.333\" y1=\"137.117\" x2=\"18.333\" y2=\"143.1158\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cline x1=\"79.5537\" y1=\"137.117\" x2=\"79.5537\" y2=\"143.1158\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cline x1=\"109.9716\" y1=\"137.117\" x2=\"109.9716\" y2=\"143.1158\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cline x1=\"140.9707\" y1=\"137.117\" x2=\"140.9707\" y2=\"143.1158\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cpath d=\"M148.9932,111.5881s-23.2552-1.4884-72-46.1621c-29.8215-27.3308-55.6783-31.7183-65.9864-31.7183\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n\u003C\u002Fsvg>","Datenerhalt (Retention)","\u003Cp>Der Datenerhalt beschreibt, wie lange NAND Daten ohne Stromversorgung lesbar speichert. 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Medizingeräte benötigen validierte Komponenten über den gesamten Produktlebenszyklus hinweg. Automotive-Systeme verlangen eine planbare Lieferfähigkeit über die Laufzeiten der Fahrzeugproduktion. Swissbit pflegt langfristige Lieferantenbeziehungen und entwickelt Produkte auf eine verlängerte Verfügbarkeit hin. Bei der Komponentenauswahl priorisieren wir Stabilität gegenüber Technologie der neuesten Generation, wenn die Lifecycle-Anforderungen wichtiger sind als maximale Performance am Limit. Wir sichern eine Komponentenverfügbarkeit zu, die zu den Lebenszyklen Ihrer Anlagen passt – nicht zu den Erneuerungszyklen von Consumer-Produkten.\u003C\u002Fp>","3c8e3bf1-740a-4b37-b169-5ee75ff65917","featureList","b741db44-4b41-4685-87e5-4a472b199133",{"content":167,"id":216,"isHidden":13,"type":116},{"anchor-name":79,"anchor-id":78,"title":168,"alignment":103,"background-type":120,"blocks":169},"Firmware-Technologie: intelligentes Speichermanagement",[170,173],{"content":171,"id":125,"isHidden":13,"type":110},{"text":172},"\u003Cp>Die Firmware-Intelligenz entscheidet darüber, ob ein Speichermedium seine theoretische Lebensdauer erreicht – oder vorzeitig ausfällt. Flash-Translation, Wear-Leveling, Garbage Collection und Datenintegritäts-Algorithmen müssen unter extremen Temperaturen und Nutzungsmustern funktionieren, wie sie Consumer-Firmware nicht bietet. Industrielle Firmware ist auf Dauerbetrieb, planbare Workloads und Power-Fail-Resilienz optimiert.\u003C\u002Fp>",{"content":174,"id":163,"isHidden":13,"type":164},{"view-type":128,"orientation":129,"columns":130,"items":175},[176,181,186,191,196,201,206,211],{"icon":177,"title":179,"short-description":180},{"type":134,"svg":178,"sprite-id":36},"\u003C?xml version=\"1.0\" encoding=\"UTF-8\"?>\n\u003Csvg id=\"Produktion\" xmlns=\"http:\u002F\u002Fwww.w3.org\u002F2000\u002Fsvg\" viewBox=\"0 0 160 160\">\n  \u003Cpath d=\"M16.5625,80.8316c2.4822,14.1161,13.9563,24.7915,27.7446,24.7915s25.2623-10.6753,27.7446-24.7915H16.5625Z\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cpolygon points=\"44.3071 27.656 19.6976 80.8316 68.9166 80.8316 44.3071 27.656\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cpath d=\"M87.9484,80.8316c2.4822,14.1161,13.9563,24.7915,27.7446,24.7915s25.2623-10.6753,27.7446-24.7915h-55.4891Z\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cpolygon points=\"115.6929 27.656 91.0834 80.8316 140.3024 80.8316 115.6929 27.656\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cline x1=\"44.3071\" y1=\"27.656\" x2=\"73\" y2=\"27.656\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cline x1=\"87\" y1=\"27.656\" x2=\"115.6929\" y2=\"27.656\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cline x1=\"17.07\" y1=\"141.1512\" x2=\"142.93\" y2=\"141.1512\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cline x1=\"80\" y1=\"11\" x2=\"80\" y2=\"141.1512\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n\u003C\u002Fsvg>","Wear Leveling \u002F FTL","\u003Cp>Swissbit implementiert fortschrittliche Flash-Translation-Layer-(FTL-) Algorithmen, die logische Adressen auf physische NAND-Blöcke abbilden und dabei Lebensdauer sowie Power-Fail-Sicherheit optimieren. Unsere Wear-Leveling-Algorithmen verteilen Schreibvorgänge über alle NAND-Blöcke, um ein vorzeitiges Ausfallen häufig beschriebener Bereiche zu verhindern. Statisches Wear Leveling verschiebt auch „kalte“ Daten (Firmware, Konfiguration, selten aktualisierte Datensätze), damit alle Blöcke gleichmäßig altern. Dynamisches Wear Leveling verarbeitet aktive Daten effizient.\u003C\u002Fp>\u003Cp>Das FTL hat direkten Einfluss darauf, ob ein Speichermedium seine theoretische Endurance erreicht oder durch Hotspots vorzeitig ausfällt. 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Aktualisierte Daten werden in neue Pages geschrieben, während alte Pages als ungültig markiert werden. Mit der Zeit sammeln sich in Blöcken Mischungen aus gültigen und ungültigen Pages. Die Garbage-Collection-Algorithmen von Swissbit konsolidieren gültige Pages aus mehreren Blöcken in leere Blöcke und geben so alte Blöcke zur Löschung frei. Das erhält die NAND-Effizienz und maximiert die Lebensdauer.\u003C\u002Fp>\u003Cp>Wir unterstützen den \u003Cstrong>TRIM-Befehl\u003C\u002Fstrong>, damit Betriebssysteme dem Speicher mitteilen können, welche Pages gelöschte Daten enthalten. So kann die Garbage Collection Speicherplatz zurückgewinnen, ohne veraltete Informationen weiter zu konservieren. 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Consumer-SSDs maximieren aus Marketinggründen die nutzbare Kapazität und erzwingen dadurch häufigere Garbage-Collection-Prozesse, was den Verschleiß erhöht. Bereits \u003Cstrong>7 %\u003C\u002Fstrong> zusätzlicher, vom User-Bereich abgezweigter Speicher für Write-Buffer und FTL-Overhead kann die Endurance nahezu verdoppeln. Wir konfigurieren Overprovisioning-Ratios gezielt, um Kapazität gegen eine längere Lebensdauer zu tauschen, wenn Anwendungen maximale Schreibzyklen erfordern. 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Swissbit implementiert Data-Care-Management-Algorithmen, die den NAND-Zustand überwachen und Daten proaktiv auffrischen, bevor sie unlesbar werden\u003C\u002Fp>\u003Cp>. Unsere Firmware verfolgt Lesezugriffe pro Block, identifiziert Blöcke nahe an Read-Disturb-Grenzen und verlagert Daten präventiv. Temperaturmonitoring triggert Data-Refresh-Zyklen, wenn Umgebungsbedingungen eine Retention-Verschlechterung begünstigen. 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Unsere Speicherprodukte melden detaillierte Zustands-Kennzahlen: insgesamt geschriebene Datenmenge, verbleibende Endurance in Prozent, Anzahl Bad Blocks, Temperaturhistorie, Anzahl Power-Cycles sowie unerwarteter Stromausfälle. Das ermöglicht zustandsbasierte Wartung statt Austausch nach festen Zeitintervallen. Systemintegratoren nutzen S.M.A.R.T.-Daten, um End-of-Life zu prognostizieren und den Austausch in Wartungsfenstern zu planen – und so ungeplante Ausfälle im Betrieb zu vermeiden. 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Anwendungen wählen das passende Löschverfahren, indem sie Sicherheitsanforderungen gegen Zeitvorgaben und den Geräte-Lifecycle abwägen.\u003C\u002Fp>",{"icon":248,"title":250,"short-description":251},{"type":134,"svg":249,"sprite-id":36},"\u003C?xml version=\"1.0\" encoding=\"UTF-8\"?>\n\u003Csvg id=\"Produktion\" xmlns=\"http:\u002F\u002Fwww.w3.org\u002F2000\u002Fsvg\" viewBox=\"0 0 160 160\">\n  \u003Cg>\n    \u003Cpath d=\"M17.971,64.455h29.0934c6.5992,0,11.9569,5.3577,11.9569,11.9569v36.3856c0,1.4043-1.1401,2.5443-2.5443,2.5443H8.5585c-1.4043,0-2.5443-1.1401-2.5443-2.5443v-36.3856c0-6.5992,5.3577-11.9569,11.9569-11.9569Z\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n    \u003Cpath d=\"M16.8276,64.455l-.0923-16.5885c0-5.5699,4.5704-10.1271,10.1565-10.1271h11.6129c5.5699,0,10.1271,4.5572,10.1271,10.1271v16.4503\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n    \u003Cpath d=\"M32.6237,80.3572c3.1031,0,5.6188,2.5156,5.6188,5.6188s-2.5156,5.6188-5.6188,5.6188-5.6188-2.5156-5.6188-5.6188,2.5156-5.6188,5.6188-5.6188M32.6237,77.3572c-4.7524,0-8.6188,3.8664-8.6188,8.6188s3.8664,8.6188,8.6188,8.6188,8.6188-3.8664,8.6188-8.6188-3.8664-8.6188-8.6188-8.6188h0Z\" fill=\"currentColor\"\u002F>\n    \u003Cline x1=\"32.5177\" y1=\"103.6803\" x2=\"32.5177\" y2=\"94.351\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n    \u003Cpath d=\"M24.3387,62.3263v-13.1919c0-2.0729,1.696-3.7688,3.7688-3.7688h9.1521c2.0729,0,3.7688,1.696,3.7688,3.7688v13.1919\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003C\u002Fg>\n  \u003Cg>\n    \u003Cpath d=\"M112.9356,64.455h29.0934c6.5992,0,11.9569,5.3577,11.9569,11.9569v36.3856c0,1.4043-1.1401,2.5443-2.5443,2.5443h-47.9184c-1.4043,0-2.5443-1.1401-2.5443-2.5443v-36.3856c0-6.5992,5.3577-11.9569,11.9569-11.9569Z\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n    \u003Cpath d=\"M111.7922,64.455l-.0923-16.5885c0-5.5699,4.5704-10.1271,10.1565-10.1271h11.6129c5.5699,0,10.1271,4.5572,10.1271,10.1271v16.4503\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n    \u003Cpath d=\"M127.5883,80.3572c3.1031,0,5.6187,2.5156,5.6187,5.6188s-2.5156,5.6188-5.6187,5.6188-5.6188-2.5156-5.6188-5.6188,2.5156-5.6188,5.6188-5.6188M127.5883,77.3572c-4.7524,0-8.6188,3.8664-8.6188,8.6188s3.8664,8.6188,8.6188,8.6188,8.6187-3.8664,8.6187-8.6188-3.8663-8.6188-8.6187-8.6188h0Z\" fill=\"currentColor\"\u002F>\n    \u003Cline x1=\"127.4823\" y1=\"103.6803\" x2=\"127.4823\" y2=\"94.351\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n    \u003Cpath d=\"M119.3033,62.3263v-13.1919c0-2.0729,1.696-3.7688,3.7688-3.7688h9.1521c2.0729,0,3.7688,1.696,3.7688,3.7688v13.1919\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003C\u002Fg>\n  \u003Cpolyline points=\"115.84 134.7113 127.4823 123.0689 139.1246 134.7113\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cpolyline points=\"44.3259 18.1031 32.6836 29.7455 21.0413 18.1032\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cpath d=\"M127.4823,123.0689v23.9986c0,1.2413-1.0063,2.2476-2.2476,2.2476H34.9312c-1.2413,0-2.2476-1.0063-2.2476-2.2476v-23.9338\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cpath d=\"M32.6836,29.7455V12.9325c0-1.2413,1.0063-2.2476,2.2476-2.2476h90.3035c1.2413,0,2.2476,1.0063,2.2476,2.2476v17.0519\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n\u003C\u002Fsvg>","End-to-End Data Path Protection","\u003Cp>Swissbit implementiert End-to-End-Schutz des Datenpfads mit \u003Cstrong>CRC-Checksummen\u003C\u002Fstrong> und \u003Cstrong>ECC-Validierung\u003C\u002Fstrong> – von der Host-Schnittstelle bis in den NAND-Speicher. 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Nähern sich Temperaturen den Betriebsgrenzen, drosselt der Controller die Operationen, um thermische Schäden zu vermeiden und gleichzeitig die Datenzugänglichkeit sicherzustellen. Temperaturabhängige Read-Retry-Algorithmen passen die Fehlerkorrekturstärke an die aktuelle Temperatur an und kompensieren so temperaturbedingte Signalverschlechterungen. 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LDPC kann mehr Bitfehler pro Page korrigieren und ermöglicht so den zuverlässigen Betrieb von NAND mit höheren Fehlerraten – und verlängert die Lebensdauer des Laufwerks, wenn Zellen mit der Zeit degradieren. Das ist besonders wichtig für MLC-\u002FTLC-NAND sowie für den Betrieb bei hohen Temperaturen, bei denen die Fehlerraten ansteigen. 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Firmware-Updates nutzen sichere Bereitstellungsmechanismen (signierte Images, verschlüsselte Kanäle), um das Einschleusen manipulierter Firmware zu verhindern. Der Update-Prozess beinhaltet eine Fallback-Funktion: Wenn neue Firmware die Validierung nicht besteht oder zu Betriebsproblemen führt, setzt der Controller automatisch auf die zuvor funktionierende Firmware zurück. So profitieren Produkte mit langen Lebenszyklen von Verbesserungen, ohne das Risiko „gebrickter“ Geräte.\u003C\u002Fp>","5110706d-0e18-4f0e-9405-56277e4b8195",{"content":279,"id":318,"isHidden":13,"type":116},{"anchor-name":85,"anchor-id":84,"title":280,"alignment":103,"background-type":120,"blocks":281},"Fertigungstechnologie: gemacht für anspruchsvolle Umgebungen",[282,285],{"content":283,"id":125,"isHidden":13,"type":110},{"text":284},"\u003Cp>Industrieller Speicher muss rauen Umgebungen standhalten: Temperaturwechsel, Stöße, Vibrationen, Feuchtigkeit, Staub und elektromagnetische Störungen. Ruggedisierung erfordert die Kontrolle über den gesamten Montageprozess – von der Komponentenauswahl bis zur Endprüfung. Eine integrierte Fertigung ermöglicht Optimierungen für mechanische Robustheit, elektrische Widerstandsfähigkeit und Umweltschutz, die mit Standard-Fertigungsprozessen nicht erreichbar sind.\u003C\u002Fp>",{"content":286,"id":163,"isHidden":13,"type":164},{"view-type":128,"orientation":129,"columns":130,"items":287},[288,293,298,303,308,313],{"icon":289,"title":291,"short-description":292},{"type":134,"svg":290,"sprite-id":36},"\u003C?xml version=\"1.0\" encoding=\"UTF-8\"?>\n\u003Csvg id=\"Produktion\" xmlns=\"http:\u002F\u002Fwww.w3.org\u002F2000\u002Fsvg\" viewBox=\"0 0 160 160\">\n  \u003Crect x=\"18.6965\" y=\"130.5208\" width=\"122.607\" height=\"10.7826\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cline x1=\"18.6965\" y1=\"119.6841\" x2=\"141.3035\" y2=\"119.6841\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cpath d=\"M61.6488,82.0517c2.7209-8.814,21.786-22.8893,21.786-22.8893,0,0,7.8132,22.3729,5.0923,31.1868-2.7209,8.814-10.9436,14.1017-18.3658,11.8104s-11.2334-11.2939-8.5124-20.1079Z\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cpath d=\"M47.3621,38.839c1.6161-5.235,12.9395-13.5948,12.9395-13.5948,0,0,4.6406,13.2881,3.0245,18.523s-6.4998,8.3755-10.9082,7.0146-6.6719-6.7079-5.0559-11.9428Z\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cpath d=\"M108.1465,46.7446c2.3747-7.6925,19.0138-19.9768,19.0138-19.9768,0,0,6.819,19.526,4.4443,27.2185-2.3747,7.6925-9.5511,12.3073-16.0289,10.3076-6.4778-1.9997-9.804-9.8568-7.4293-17.5493Z\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n\u003C\u002Fsvg>","Schutzlackierung (Conformal Coating)","\u003Cp>Swissbit trägt eine Schutzlackierung auf, um Baugruppen vor Feuchtigkeit, Staub, Chemikalien und Verunreinigungen zu schützen. Diese transparente Polymerschicht überzieht Leiterplatten, Bauteile und Lötstellen und verhindert Korrosion sowie elektrische Kurzschlüsse durch leitfähige Partikel. Conformal Coating ermöglicht den Einsatz in rauen industriellen Umgebungen – etwa bei Outdoor-Installationen, in der chemischen Prozessindustrie, bei Mining-Equipment oder in landwirtschaftlichen Maschinen.\u003C\u002Fp>\u003Cp>Der Beschichtungsprozess erfordert eine präzise Applikation, um Bauteilfunktionen nicht zu beeinträchtigen und zugleich eine vollständige Abdeckung sicherzustellen. 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Diese dicke Goldschicht (etwa \u003Cstrong>10×\u003C\u002Fstrong> stärker als bei Consumer-Qualität) hält \u003Cstrong>tausenden Steckzyklen\u003C\u002Fstrong> stand, ohne zu degradieren. Die Goldbeschichtung verhindert Oxidation und sorgt über die gesamte Produktlebensdauer für einen niedrigen Kontaktwiderstand.\u003C\u002Fp>\u003Cp>Das ist besonders wichtig für Anwendungen mit häufigem Stecken und Ziehen: austauschbarer Speicher im Field Service, Hot-Swap-Installationen oder modulare Systeme, bei denen Speicher ersetzt werden muss, ohne die Anlage außer Betrieb zu nehmen. 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Wir validieren Produkte bis \u003Cstrong>1.500 g Stoß\u003C\u002Fstrong> (0,5 ms Halbsinus) und \u003Cstrong>20 g Vibration\u003C\u002Fstrong> (5–2000 Hz). Komponentenauswahl, Lotpastenrezeptur, Leiterplattenstärke und mechanische Entlastungskonzepte sorgen dafür, dass Stöße und Vibrationen überstanden werden, die Consumer-Drives zerstören würden.\u003C\u002Fp>\u003Cp>Diese Ruggedisierung unterstützt Transportanwendungen (Schiene, Automotive, Aerospace), industrielle Automation mit hin- und hergehenden Maschinen sowie mobile Geräte, die kontinuierlichen Vibrationen und gelegentlichen Stürzen ausgesetzt sind.\u003C\u002Fp>",{"icon":304,"title":306,"short-description":307},{"type":134,"svg":305,"sprite-id":36},"\u003C?xml version=\"1.0\" encoding=\"UTF-8\"?>\n\u003Csvg id=\"Produktion\" xmlns=\"http:\u002F\u002Fwww.w3.org\u002F2000\u002Fsvg\" viewBox=\"0 0 160 160\">\n  \u003Cpath d=\"M80,149.678l-2.6449-1.0532c-.5873-.2899-14.54-7.3029-28.4358-25.5169-12.6705-16.6076-27.7742-46.181-27.7742-92.7572v-14.2299l58.8548-6.4427,58.8548,6.4427v14.2299c0,46.5763-15.1036,76.1496-27.7742,92.7572-13.8958,18.214-27.8485,25.227-28.4358,25.5169l-2.6449,1.0532Z\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cpath d=\"M80,149.678l-2.6449-1.0532c-.5873-.2899-14.54-7.3029-28.4358-25.5169-12.6705-16.6076-27.7742-46.181-27.7742-92.7572v-14.2299l58.8548-6.4427,58.8548,6.4427v14.2299c0,46.5763-15.1036,76.1496-27.7742,92.7572-13.8958,18.214-27.8485,25.227-28.4358,25.5169l-2.6449,1.0532Z\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n  \u003Cpolygon points=\"97.0763 38.253 83.5836 63.8182 96.0821 63.8182 62.9237 107.0186 74.2097 73.05 65.4229 73.05 79.7488 38.253 97.0763 38.253\" fill=\"none\" stroke=\"currentColor\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\u002F>\n\u003C\u002Fsvg>","ESD- und EMI-sicher","\u003Cp>Swissbit implementiert ESD-(Electrostatic Discharge-)Schutz und EMI-(Electromagnetic Interference-)Maßnahmen auf Hardware-Ebene. ESD-Schutzschaltungen leiten hochspannige Transienten ab, bevor sie empfindliche Komponenten erreichen. 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Wir testen \u003Cstrong>100 %\u003C\u002Fstrong> der Produktion über die spezifizierten Betriebstemperaturbereiche und validieren dabei NAND-Health, Firmware-Funktion sowie Performance-Eigenschaften. So werden Frühausfälle („Infant Mortality“) bereits vor dem Versand erkannt und die Ausfallraten im Feld reduziert.\u003C\u002Fp>\u003Cp>Der vollständige Outgoing Test erhöht die Fertigungskosten, senkt jedoch deutlich Garantie- und Reklamationsaufwände und verhindert teure Ausfälle im Einsatz. 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Wir passen Firmware-Algorithmen an spezifische Workload-Muster an, justieren Overprovisioning-Verhältnisse für definierte Endurance-Anforderungen, implementieren kundenspezifische Security-Features, adaptieren Formfaktoren für besondere mechanische Randbedingungen und optimieren das Temperaturmanagement für konkrete thermische Umgebungen. Customization macht Swissbit vom Komponentenlieferanten zum Engineering-Partner: Wir entwickeln Speicherlösungen gemeinsam mit Ihnen für anspruchsvolle Anwendungen, in denen Produkte von der Stange scheitern.\u003C\u002Fp>","8a098e58-985a-4386-aca4-a5191865144b",{"content":320,"id":352,"isHidden":13,"type":116},{"anchor-name":88,"anchor-id":87,"title":321,"alignment":103,"background-type":322,"blocks":323},"Warum Swissbit für industrielle Speichertechnologie?","lightBlue",[324],{"content":325,"id":350,"isHidden":13,"type":351},{"style":326,"textalignment":103,"columns":130,"items":327},"plain",[328,336,343],{"type":329,"icon":330,"title":332,"text":333,"link":334,"link-text":335},"iconTeaser",{"type":35,"svg":36,"sprite-id":331},"made-in-germany","Europäische Fertigung und SiP-Technologie","\u003Cp>Swissbit Speicherprodukte werden in Berlin, Deutschland, gefertigt. Swissbit betreibt eine der wenigen verbleibenden Halbleiter-Packaging-Fertigungen in Europa und setzt System-in-Package-(SiP-)Technologie ein, bei der NAND-Flash, Controller und weitere Komponenten zu fertigen industriellen Speicherprodukten zusammengeführt werden. Die europäische Fertigung schafft Transparenz in der Lieferkette – entscheidend für Automotive-Speicherlösungen, Speicher für Medizingeräte und Defense-Anwendungen, bei denen die Herkunft von Komponenten nachvollziehbar und verifizierbar sein muss.\u003C\u002Fp>","\u002Fde\u002Funternehmen\u002Fmade-in-germany","Mehr über „Made in Germany“ erfahren",{"type":329,"icon":337,"title":339,"text":340,"link":341,"link-text":342},{"type":35,"svg":36,"sprite-id":338},"packaging-expertise","20+ Jahre Speicher-Expertise","\u003Cp>Swissbit entwickelt seit 2001 NAND-Flash- und SSD-Lösungen. Unsere Engineering-Erfahrung reicht von planarem SLC bis zu heutigen 3D-NAND-Generationen – von USB-Drives bis zu PCIe-Gen5-SSDs. Wir haben Speicher für Anwendungen von -40 °C in der industriellen Automation bis zu +105 °C in Automotive-Umgebungen entwickelt.\u003C\u002Fp>","\u002Fde\u002Funternehmen\u002Fueber-uns","Mehr über Swissbit erfahren",{"type":329,"icon":344,"title":346,"text":347,"link":348,"link-text":349},{"type":35,"svg":36,"sprite-id":345},"costomization","Anpassungen für spezifische Anforderungen","\u003Cp>Die vertikale Integration von Swissbit – Hardwareentwicklung, Firmware-Engineering, SiP-Fertigung und Testing – ermöglicht kundenspezifische Anpassungen für Anwendungen, die bestimmte Endurance-Profile, Temperaturbereiche oder Security-Features benötigen, die Standardprodukte nicht abdecken können.\u003C\u002Fp>","\u002Fde\u002Ftechnologie\u002Fkundenspezifische-anpassungen","Swissbit Anpassungsoptionen entdecken","70e6fc62-584e-4397-af02-0db28b1d6afc","iconTeaserList","493ec4b0-00ce-4b9d-9c49-3dbcf7b678a7",{"content":354,"id":386,"isHidden":13,"type":116},{"anchor-name":91,"anchor-id":90,"title":91,"alignment":103,"background-type":355,"blocks":356},"white",[357],{"content":358,"id":384,"isHidden":13,"type":385},{"style":120,"items":359},[360,364,368,372,376,380],{"icon":361,"headline":362,"text":363},{"type":35,"svg":36,"sprite-id":36},"Wann sollte ich SLC vs. pSLC vs. TLC wählen?","\u003Cp>Wählen Sie \u003Cstrong>SLC\u003C\u002Fstrong> für maximale Lebensdauer mit über \u003Cstrong>100.000 Schreibzyklen\u003C\u002Fstrong> oder wenn höchste Temperaturtoleranz erforderlich ist. Entscheiden Sie sich für \u003Cstrong>pSLC-Modus\u003C\u002Fstrong> bei Anwendungen mit \u003Cstrong>10.000–50.000 Zyklen\u003C\u002Fstrong>, bei denen Kosten relevant sind, die Endurance von Consumer-TLC jedoch nicht ausreicht. Nutzen Sie \u003Cstrong>Industrial-Grade TLC\u003C\u002Fstrong> für leseintensive Anwendungen oder Schreiblasten unter \u003Cstrong>3.000 Zyklen\u003C\u002Fstrong>, bei denen Kapazität und Kosten wichtiger sind als extreme Lebensdauer.\u003C\u002Fp>",{"icon":365,"headline":366,"text":367},{"type":35,"svg":36,"sprite-id":36},"Wie berechne ich die erforderliche Endurance für meine Anwendung?","\u003Cp>Berechnen Sie das tägliche Schreibvolumen in \u003Cstrong>GB\u003C\u002Fstrong>, multiplizieren Sie es mit den Einsatzjahren und \u003Cstrong>365 Tagen\u003C\u002Fstrong> und addieren Sie anschließend \u003Cstrong>50 % Sicherheitsmarge\u003C\u002Fstrong>. Diese Gesamtsumme entspricht der benötigten \u003Cstrong>TBW\u003C\u002Fstrong>. Vergleichen Sie mit der NAND-Endurance: \u003Cstrong>SLC\u003C\u002Fstrong> liefert ungefähr das \u003Cstrong>100-fache\u003C\u002Fstrong> der Rohkapazität als TBW, \u003Cstrong>pSLC\u003C\u002Fstrong> etwa das \u003Cstrong>10- bis 25-fache\u003C\u002Fstrong>, \u003Cstrong>TLC\u003C\u002Fstrong> etwa das \u003Cstrong>3- bis 5-fache\u003C\u002Fstrong> – abhängig von Overprovisioning und Workload-Charakteristika.\u003C\u002Fp>",{"icon":369,"headline":370,"text":371},{"type":35,"svg":36,"sprite-id":36},"Welche Temperaturklassifizierung benötige ich?","\u003Cp>\u003Cstrong>Commercial-Grade (0 °C bis +70 °C)\u003C\u002Fstrong> reicht für klimatisierte Umgebungen. \u003Cstrong>Extended-Grade (-25 °C bis +85 °C)\u003C\u002Fstrong> eignet sich für Outdoor-Installationen in moderaten Klimazonen. \u003Cstrong>Industrial-Grade (-40 °C bis +85 °C)\u003C\u002Fstrong> ist erforderlich für extreme Klimabedingungen, Automotive-Anwendungen im Motorraum sowie industrielle Anlagen in unbeheizten Umgebungen.\u003C\u002Fp>",{"icon":373,"headline":374,"text":375},{"type":35,"svg":36,"sprite-id":36},"Benötigt Industrial Storage andere Schnittstellen?","\u003Cp>Nein. Industrieller Speicher nutzt Standard-Schnittstellen wie \u003Cstrong>SATA\u003C\u002Fstrong>, \u003Cstrong>PCIe\u002FNVMe\u003C\u002Fstrong>, \u003Cstrong>eMMC\u003C\u002Fstrong>, \u003Cstrong>SD\u002FmicroSD\u003C\u002Fstrong>. Der Unterschied liegt in \u003Cstrong>NAND-Qualität\u003C\u002Fstrong>, \u003Cstrong>Firmware-Optimierung\u003C\u002Fstrong>, \u003Cstrong>Komponentenauswahl\u003C\u002Fstrong> und \u003Cstrong>Validierungstests\u003C\u002Fstrong>. Industrieller Speicher übersteht Bedingungen, die Consumer-Produkte trotz identischer Schnittstellen zerstören können.\u003C\u002Fp>",{"icon":377,"headline":378,"text":379},{"type":35,"svg":36,"sprite-id":36},"Wie funktioniert Power-Fail-Protection?","\u003Cp>Power-Fail-Protection-Schaltungen überwachen die Versorgungsspannung. Fällt die Spannung unter definierte Schwellen, liefern \u003Cstrong>Kondensatoren\u003C\u002Fstrong> kurzfristig Energie, damit der Controller laufende NAND-Operationen abschließen, Schreib-Caches leeren und Metadaten in konsistente Zustände schreiben kann. Der Prozess dauert Millisekunden, verhindert jedoch Korruption, die sonst Dateisystem-Recovery oder Datenverlust verursachen würde.\u003C\u002Fp>",{"icon":381,"headline":382,"text":383},{"type":35,"svg":36,"sprite-id":36},"Was ist Write Amplification und warum ist das wichtig?","\u003Cp>\u003Cstrong>Write Amplification\u003C\u002Fstrong> (Schreibverstärkung) entsteht, wenn interne NAND-Schreibvorgänge die Host-Schreibbefehle übersteigen – z. B. durch Garbage Collection, Wear Leveling und FTL-Overhead. Ein Faktor von \u003Cstrong>3x\u003C\u002Fstrong> bedeutet: Für \u003Cstrong>1 GB\u003C\u002Fstrong> Host-Write entstehen intern \u003Cstrong>3 GB\u003C\u002Fstrong> NAND-Writes, wodurch die effektive Endurance um den Faktor \u003Cstrong>3\u003C\u002Fstrong> sinkt. 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https:\u002F\u002Fwww.swissbit.com\u002Fmedia\u002Fpages\u002Fnews\u002Fblog\u002Fstrengthening-federal-cybersecurity-how-hardware-based-authentication-reduces-risk-in-a-high-threat-landscape\u002Fa58ea818d1-1775746199\u002Fblogpost-federal-agencies-overview-2400x-q85.webp?_=6199 2400w",699,350,"\u003Cp>Wir zeigen, wie Behörden den Identitätsschutz und die Zugriffskontrolle durch eine robuste, standardbasierte Authentifizierung verbessern können.\u003C\u002Fp>","Mehr erfahren...","\u002Fde\u002Fnews\u002Fblog\u002Fwie-hardware-authentifizierung-das-risiko-in-einer-von-hohen-bedrohungen-gepraegten-umgebung-verringert",{"headline":598,"image":599,"description":602,"link-title":595,"link":603,"open-in-new-window":13},"Was bei der Auswahl der Speicher für Edge-Computing wichtig 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Speicher.\u003C\u002Fp>","\u002Fde\u002Fnews\u002Fblog\u002Fwas-bei-der-auswahl-von-speicherloesungen-fuer-edge-computing-wirklich-zaehlt",{"headline":605,"image":606,"description":609,"link-title":595,"link":610,"open-in-new-window":13},"Sicherheit in der Lieferkette – Souveränität „Made in Europe“",{"url":607,"focus":36,"srcset":608,"width":592,"height":593,"ai-generated":13,"alt":36,"title":36},"https:\u002F\u002Fwww.swissbit.com\u002Fmedia\u002Fpages\u002Fnews\u002Fblog\u002Fsupply-chain-security-sovereignty-made-in-europe\u002F580aa1ef38-1775746198\u002Fblog-overview-supply-chain-security.png?_=6198","https:\u002F\u002Fwww.swissbit.com\u002Fmedia\u002Fpages\u002Fnews\u002Fblog\u002Fsupply-chain-security-sovereignty-made-in-europe\u002F580aa1ef38-1775746198\u002Fblog-overview-supply-chain-security-400x-q85.webp?_=6198 400w, 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Entwurf bis zur Auslieferung – verankert sein muss.\u003C\u002Fp>","\u002Fde\u002Fnews\u002Fblog\u002Fsicherheit-in-der-lieferkette-souveraenitaet-made-in-europe",{"title":521,"entries":612},[613,615,617],{"image":614,"title":463,"text":528,"link":464,"open-in-new-window":13},{"url":525,"focus":36,"srcset":526,"width":527,"height":527,"ai-generated":13,"alt":36,"title":36},{"image":616,"title":533,"text":534,"link":535,"open-in-new-window":13},{"url":531,"focus":36,"srcset":532,"width":501,"height":501,"ai-generated":13,"alt":36,"title":36},{"image":618,"title":540,"text":541,"link":542,"open-in-new-window":13},{"url":538,"focus":36,"srcset":539,"width":501,"height":501,"ai-generated":13,"alt":36,"title":36},{"title":33,"type":438,"icon-id":42,"hide_mobile":13,"hide_desktop":13,"menu":620,"footer":638,"featured":662},[621,623,627,631,634],{"title":6,"url":7,"open-in-new-window":13,"entries":622},[],{"title":624,"url":625,"open-in-new-window":13,"entries":626},"Security-Technologie","\u002Fde\u002Ftechnologie\u002Fsecurity-technologie",[],{"title":628,"url":629,"open-in-new-window":13,"entries":630},"System-in-Package","\u002Fde\u002Ftechnologie\u002Fsystem-in-package",[],{"title":632,"url":348,"open-in-new-window":13,"entries":633},"Kundenspezifische 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langfristige Sicherheit, Zuverlässigkeit und Verfügbarkeit ihrer Daten und Geräte gewährleisten können. \u003C\u002Fp>","\u002Fde\u002Fnews\u002Fblog\u002Fvon-berlin-bis-hin-zu-kritischen-branchen-wie-swissbit-daten-geraete-und-identitaeten-schuetzt",{"headline":647,"image":648,"description":651,"link-title":595,"link":652,"open-in-new-window":13},"Speicherlösungen für Ihre individuellen Anforderungen",{"url":649,"focus":36,"srcset":650,"width":592,"height":593,"ai-generated":13,"alt":36,"title":36},"https:\u002F\u002Fwww.swissbit.com\u002Fmedia\u002Fpages\u002Fnews\u002Fblog\u002Fcustomization-at-swissbit-tailoring-memory-solutions-to-meet-unique-needs\u002F85c7a8a9ee-1775746199\u002Fblog_post_customization_miin_some.jpg?_=6199","https:\u002F\u002Fwww.swissbit.com\u002Fmedia\u002Fpages\u002Fnews\u002Fblog\u002Fcustomization-at-swissbit-tailoring-memory-solutions-to-meet-unique-needs\u002F85c7a8a9ee-1775746199\u002Fblog_post_customization_miin_some-400x-q85.webp?_=6199 400w, https:\u002F\u002Fwww.swissbit.com\u002Fmedia\u002Fpages\u002Fnews\u002Fblog\u002Fcustomization-at-swissbit-tailoring-memory-solutions-to-meet-unique-needs\u002F85c7a8a9ee-1775746199\u002Fblog_post_customization_miin_some-800x-q85.webp?_=6199 800w, https:\u002F\u002Fwww.swissbit.com\u002Fmedia\u002Fpages\u002Fnews\u002Fblog\u002Fcustomization-at-swissbit-tailoring-memory-solutions-to-meet-unique-needs\u002F85c7a8a9ee-1775746199\u002Fblog_post_customization_miin_some-1200x-q85.webp?_=6199 1200w, https:\u002F\u002Fwww.swissbit.com\u002Fmedia\u002Fpages\u002Fnews\u002Fblog\u002Fcustomization-at-swissbit-tailoring-memory-solutions-to-meet-unique-needs\u002F85c7a8a9ee-1775746199\u002Fblog_post_customization_miin_some-1600x-q85.webp?_=6199 1600w, https:\u002F\u002Fwww.swissbit.com\u002Fmedia\u002Fpages\u002Fnews\u002Fblog\u002Fcustomization-at-swissbit-tailoring-memory-solutions-to-meet-unique-needs\u002F85c7a8a9ee-1775746199\u002Fblog_post_customization_miin_some-2400x-q85.webp?_=6199 2400w","\u003Cp>Standardprodukte erfüllen nicht immer die Anforderungen der jeweiligen Anwendung, insbesondere im Bereich Speicher. Swissbit begegnet diesem Problem mit umfangreichen Anpassungsmöglichkeiten.\u003C\u002Fp>","\u002Fde\u002Fnews\u002Fblog\u002Fmassanfertigung-bei-swissbit-speicherloesungen-die-genau-auf-ihre-individuellen-anforderungen-zugeschnitten-sind",{"headline":654,"image":655,"description":660,"link-title":595,"link":661,"open-in-new-window":13},"Post-Quanten-Kryptografie und die Zukunft der eingebetteten Sicherheit",{"url":656,"focus":36,"srcset":657,"width":658,"height":659,"ai-generated":13,"alt":36,"title":36},"https:\u002F\u002Fwww.swissbit.com\u002Fmedia\u002Fpages\u002Fnews\u002Fblog\u002Fpost-quantum-cryptography-and-the-future-of-embedded-security\u002Fb8c30b2379-1775746199\u002Fsb_blog_pqc_embedded_roma_overview_1280x640.jpg?_=6199","https:\u002F\u002Fwww.swissbit.com\u002Fmedia\u002Fpages\u002Fnews\u002Fblog\u002Fpost-quantum-cryptography-and-the-future-of-embedded-security\u002Fb8c30b2379-1775746199\u002Fsb_blog_pqc_embedded_roma_overview_1280x640-400x-q85.webp?_=6199 400w, https:\u002F\u002Fwww.swissbit.com\u002Fmedia\u002Fpages\u002Fnews\u002Fblog\u002Fpost-quantum-cryptography-and-the-future-of-embedded-security\u002Fb8c30b2379-1775746199\u002Fsb_blog_pqc_embedded_roma_overview_1280x640-800x-q85.webp?_=6199 800w, https:\u002F\u002Fwww.swissbit.com\u002Fmedia\u002Fpages\u002Fnews\u002Fblog\u002Fpost-quantum-cryptography-and-the-future-of-embedded-security\u002Fb8c30b2379-1775746199\u002Fsb_blog_pqc_embedded_roma_overview_1280x640-1200x-q85.webp?_=6199 1200w, https:\u002F\u002Fwww.swissbit.com\u002Fmedia\u002Fpages\u002Fnews\u002Fblog\u002Fpost-quantum-cryptography-and-the-future-of-embedded-security\u002Fb8c30b2379-1775746199\u002Fsb_blog_pqc_embedded_roma_overview_1280x640-1600x-q85.webp?_=6199 1600w, https:\u002F\u002Fwww.swissbit.com\u002Fmedia\u002Fpages\u002Fnews\u002Fblog\u002Fpost-quantum-cryptography-and-the-future-of-embedded-security\u002Fb8c30b2379-1775746199\u002Fsb_blog_pqc_embedded_roma_overview_1280x640-2400x-q85.webp?_=6199 2400w",1280,640,"\u003Cp>Bei eingebetteten Systemen mit langen Lebenszyklen und begrenzten Aktualisierungsmöglichkeiten müssen Unternehmen bereits jetzt für postquanten-sichere Lösungen planen, ohne neu entwickeln zu müssen.\u003C\u002Fp>","\u002Fde\u002Fnews\u002Fblog\u002Fpost-quanten-kryptografie-und-die-zukunft-der-eingebetteten-sicherheit",{"title":521,"entries":663},[664,666,668],{"image":665,"title":463,"text":528,"link":464,"open-in-new-window":13},{"url":525,"focus":36,"srcset":526,"width":527,"height":527,"ai-generated":13,"alt":36,"title":36},{"image":667,"title":533,"text":534,"link":535,"open-in-new-window":13},{"url":531,"focus":36,"srcset":532,"width":501,"height":501,"ai-generated":13,"alt":36,"title":36},{"image":669,"title":540,"text":541,"link":542,"open-in-new-window":13},{"url":538,"focus":36,"srcset":539,"width":501,"height":501,"ai-generated":13,"alt":36,"title":36},{"title":671,"type":438,"icon-id":42,"hide_mobile":13,"hide_desktop":13,"menu":672,"footer":704,"featured":725},"Support",[673,677,681,685,689,693,697,701],{"title":674,"url":675,"open-in-new-window":13,"entries":676},"Download-Center","\u002Fde\u002Fmy-swissbit\u002Fdownload-center",[],{"title":678,"url":679,"open-in-new-window":13,"entries":680},"Swissbit 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https:\u002F\u002Fwww.swissbit.com\u002Fmedia\u002Fpages\u002Fnews\u002Fblog\u002Flow-rma-ppm-rates-reflect-swissbit-s-design-for-quality-approach-and-disciplined-manufacturing\u002Fcc4e16047e-1775746198\u002Fblog-overview-rma-ppm-1200x-q85.webp?_=6198 1200w, https:\u002F\u002Fwww.swissbit.com\u002Fmedia\u002Fpages\u002Fnews\u002Fblog\u002Flow-rma-ppm-rates-reflect-swissbit-s-design-for-quality-approach-and-disciplined-manufacturing\u002Fcc4e16047e-1775746198\u002Fblog-overview-rma-ppm-1600x-q85.webp?_=6198 1600w, https:\u002F\u002Fwww.swissbit.com\u002Fmedia\u002Fpages\u002Fnews\u002Fblog\u002Flow-rma-ppm-rates-reflect-swissbit-s-design-for-quality-approach-and-disciplined-manufacturing\u002Fcc4e16047e-1775746198\u002Fblog-overview-rma-ppm-2400x-q85.webp?_=6198 2400w","\u003Cp>In diesem Blogbeitrag wird erläutert, warum außergewöhnlich niedrige RMA-Raten bei anspruchsvollen Anwendungen einen entscheidenden Unterschied 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