{"id":2288,"date":"2025-12-23T09:12:43","date_gmt":"2025-12-23T01:12:43","guid":{"rendered":"https:\/\/www.britecelectric.com\/?post_type=blog&#038;p=2288"},"modified":"2025-12-18T14:30:27","modified_gmt":"2025-12-18T06:30:27","slug":"what-is-dc-surge-protection-devicewhat-is-a-24v-dc-power-supply","status":"publish","type":"blog","link":"https:\/\/www.britecelectric.com\/nl\/blog\/what-is-dc-surge-protection-device-what-is-a-24v-dc-power-supply\/","title":{"rendered":"Wat is een DC-overspanningsbeveiliging? Wat is een 24V DC-voeding?"},"content":{"rendered":"<a href=\"https:\/\/www.britecelectric.com\/nl\/product-category\/dc-surge-protector\/\">DC-overspanningsbeveiligingsapparaten<\/a> (DC SPD) en 24V DC-voedingen zijn belangrijke componenten die samen een verdedigingslinie vormen tegen voorbijgaande overspanningen en de systeemcontinu\u00efteit garanderen. Het begrijpen van hun werkingsprincipes, selectiecriteria en synergetische effecten is cruciaal voor het ontwerpen en onderhouden van veilige en effici\u00ebnte elektrische systemen.\r\n<h2>Wat is een DC-overspanningsbeveiligingsapparaat?<\/h2>\r\n<h3>Definities<\/h3>\r\nDC-overspanningsbeveiligingsapparaten zijn bliksem- en overspanningsbeveiligingsapparaten die speciaal zijn ontworpen voor DC-circuits. Ze kunnen binnen nanoseconden reageren en transi\u00ebnte overspanningen (pieken) die worden veroorzaakt door blikseminductie, schakelingen of elektrostatische ontladingen naar de grond veilig ontladen, waardoor gevoelige stroomafwaartse elektronische apparatuur tegen schade wordt beschermd.\r\n<h3>Beschermende componenten<\/h3>\r\nIts core protection components typically include:\r\n\r\nMetal oxide varistors (MOVs): Fast response, used to absorb medium-energy surges.\r\n\r\nGas discharge tubes (GDTs): High current capacity, commonly used to discharge high-energy initial surge currents.\r\n\r\nTransient voltage suppressor diodes (TVS): Precise voltage clamping and extremely fast response, commonly used to protect precision circuits.\r\n<h3>Prestatieparameters<\/h3>\r\nMaximum Continuous Operating Voltage (Uc): The maximum DC voltage (e.g., 24V) that the equipment can safely withstand over a long period.\r\n\r\nNominal Discharge Current (In): The standard value for withstanding an 8\/20\u03bcs waveform inrush current, representing its conventional protection capability.\r\n\r\nMaximum Discharge Current (Imax): The maximum inrush current that the equipment can withstand in a single incident without damage.\r\n\r\nVoltage Protection Level (Up): The residual voltage across the equipment under an inrush. The lower this value, the better the protection for downstream equipment.\r\n\r\nResponse Time: The time from detecting an overvoltage to initiating action. The shorter the better.\r\n\r\n&nbsp;\r\n\r\n<a href=\"https:\/\/www.britecelectric.com\/nl\/product\/br-40-24-type-2-dc-24v-spd\/\" rel=\"attachment wp-att-1814\"><img class=\"alignnone size-full wp-image-1814\" src=\"https:\/\/www.britecelectric.com\/wp-content\/uploads\/2024\/09\/BR-40-24-1.jpg\" alt=\"BR-40 24 Type 2 DC 24V SPD\" width=\"800\" \/><\/a>\r\n<h2>Wat is een 24V DC-voeding?<\/h2>\r\n<h3>Definitie<\/h3>\r\nA 24V DC power supply is a device that converts AC mains power (such as 220V AC) or other power sources into and provides stable, clean 24V DC power. It is the \"heart\" of industrial control systems.\r\n<h3>Functie<\/h3>\r\nDe belangrijkste functies zijn conversie, spanningsregeling en filtering, waardoor een continue en stabiele 24V DC-voeding kan worden geleverd aan PLC's, sensoren, relais, actuatoren en andere apparatuur, ongeacht hoe de ingangsspanning fluctueert of hoe de belasting verandert.\r\n<h3>Waarom 24V industri\u00eble standaardspanning is geworden<\/h3>\r\nSafe Voltage: Falls within the safe extra-low voltage (SELV) range, posing an extremely low risk of electric shock to humans.\r\n\r\nWide Compatibility: The vast majority of industrial sensors, controllers, and actuators are designed for 24V power supply.\r\n\r\nBalance of Loss and Efficiency: Compared to 12V, it draws less current, has lower line losses and voltage drops for the same power; compared to 48V, it offers higher safety and more cost-effective components.\r\n\r\nStandardization: It has become the common language in the global industrial automation field.\r\n<h3>Belangrijkste prestatie-indicatoren<\/h3>\r\nOutput accuracy and stability: Voltage fluctuations and ripple noise should be minimized.\r\n\r\nEfficiency: High conversion efficiency means less energy loss and heat generation.\r\n\r\nProtection rating (IP): Protection against dust and water.\r\n\r\nOperating temperature range: Suitable for wide temperature requirements in industrial environments.\r\n<h3>Toepassingsscenario's<\/h3>\r\n24V-overspanningsbeveiliging wordt veel gebruikt in geautomatiseerde fabrieksproductielijnen, procescontrolesystemen, gebouwautomatisering, communicatiebasisstations en fotovolta\u00efsche zonne-energiesystemen.\r\n<h2>Werken in combinatie met stroomvoorziening<\/h2>\r\nA 24V DC power supply and a DC SPD form a perfect combination of source purification and path defense. The power supply ensures the provision of \"clean\" energy, while the SPD focuses on resisting external \"contamination\" (surges) from power lines or signal lines. They are usually connected in series in the circuit: after the AC power supply is converted to 24V DC, it is first \"filtered\" by the DC SPD before being sent to the terminal equipment, thus building a full-path protection solution from source to end.\r\n<h2>Belangrijke punten voor het selecteren van 24V SPD<\/h2>\r\nVoltage Matching: Ensure the SPD's Uc value is slightly higher than the system's maximum continuous operating voltage. For a 24V system, an SPD with a Uc of 30V or 35V is typically selected.\r\n\r\nProtection Level: Select an SPD with a sufficiently low Up value based on the withstand voltage capability of the protected equipment.\r\n\r\nCurrent Handling Capacity: Select appropriate In and Imax values \u200b\u200bbased on the installation location (e.g., main distribution terminal, equipment front end) and local thunderstorm day conditions.\r\n\r\nWiring Method: Confirm whether it is a parallel or series connection and match the corresponding terminal blocks.\r\n\r\nStatus Indication: Products with remote alarms or visual windows (e.g., green\/red) are preferred for ease of maintenance.\r\n<h2>Installatie en onderhoud<\/h2>\r\nInstallation: Install as close as possible to the protected equipment. Use short, straight, and thick wiring to reduce residual voltage from lead inductance. Ensure proper grounding.\r\n\r\nMaintenance: Regularly check the status indicator window (ideally annually or around the rainy season). If the indicator is faulty (e.g., turns red), replace it immediately. DC SPD manufacturer kindly reminds you to record lightning strike incidents and check the surge protector status promptly.\r\n<h2>Veelgestelde vragen<\/h2>\r\n<strong>Hoe een DC-overspanningsbeveiliging aan te sluiten<\/strong>\r\n\r\nDC SPD's worden doorgaans parallel aangesloten tussen de positieve en negatieve aansluitingen van het beveiligde circuit, en hun aardingsaansluiting moet worden aangesloten op de beschermende aarde (PE) van het systeem met de kortst en dikst mogelijke draad. De producthandleiding moet strikt worden gevolgd.\r\n\r\n<strong>Kunnen 24V DC SPD en AC SPD door elkaar worden gebruikt?<\/strong>\r\n\r\nAbsoluut niet. De ontwerpprincipes, boogdovende mogelijkheden en parameterkalibraties van de twee zijn totaal verschillend. Het is moeilijker om een \u200b\u200bDC SPD te gebruiken om de DC-volgstroom af te sluiten. Misbruik van een AC SPD in een DC-circuit zal ertoe leiden dat de boog niet goed kan worden gedoofd, waardoor de apparatuur in brand kan vliegen.\r\n\r\n<strong>Hoe kan ik bepalen of de DC 24V SPD nog steeds goed werkt?<\/strong>\r\n\r\nThe most intuitive way is to observe its status indicator (usually a green\/red window or LED). Green indicates normal operation, while red\/off indicates failure and needs replacement. You can also use a multimeter to measure its online voltage; if it's close to a short circuit and the device is hot, it may be damaged.\r\n\r\n<strong>Waarom hebben zonnesystemen DC-overspanningsbeveiligingsapparaten (SPD) nodig?<\/strong>\r\n\r\nFotovolta\u00efsche modules bestrijken een groot gebied en zijn zeer gevoelig voor directe of ge\u00efnduceerde blikseminslagen. Bliksemstroom kan via de DC-buslijn de omvormer en het besturingssysteem binnendringen en aanzienlijke schade veroorzaken. Daarom is het installeren van een speciale fotovolta\u00efsche DC SPD aan de DC-zijde (tussen de modules en de omvormer) van cruciaal belang.\r\n\r\n<strong>Welke voorzorgsmaatregelen voor de bedrading moeten worden genomen bij het installeren van een 24V DC SPD?<\/strong>\r\n\r\nThe key principles are \"short, straight, and thick\". 1) The length of the grounding wire should be less than 0.5 meters; 2) Avoid forming loops; 3) The cross-sectional area of \u200b\u200bthe conductor must meet the requirements for discharging large current (usually not less than 4 mm\u00b2); 4) Ensure that all connection points are tight and free from oxidation.\r\n\r\n<strong>Vergelijking tussen lineaire en schakelende voeding in 24V-toepassingen<\/strong>\r\n\r\nLineaire voedingen hebben een lage uitgangsrimpel en weinig ruis, maar zijn groot van formaat en laag in effici\u00ebntie (ongeveer 40-60%), waardoor ze geschikt zijn voor precisiemeetapparatuur die extreem gevoelig is voor ruis. Schakelende voedingen zijn klein van formaat, zeer effici\u00ebnt (doorgaans &gt;85%) en kunnen zich aanpassen aan een breed ingangsspanningsbereik, waardoor ze de reguliere keuze zijn voor industri\u00eble besturing. Hun hoogfrequente schakeling genereert echter enige elektromagnetische ruis, wat nodig isgoed te behandelen.\r\n<h2>Conclusie<\/h2>\r\nIn industrial automation and new energy fields, 24V DC power supplies and DC surge protection devices are a complementary and indispensable core combination.\r\n\r\nTake action now to build a robust defense for your critical systems! Don't wait until a lightning strike or power surge causes irreparable damage to realize the importance of protection.","protected":false},"featured_media":1814,"parent":0,"menu_order":84,"template":"","meta":{"_acf_changed":false},"blog_category":[9],"class_list":["post-2288","blog","type-blog","status-publish","has-post-thumbnail","hentry","blog_category-industry-news"],"acf":{"des":"DC surge protection devices (DC SPD) and 24V DC power supplies are key components that together form a line of defense against transient overvoltages and ensure system continuity. Understanding their working principles, selection criteria, and synergistic effects is crucial for designing and maintaining safe and efficient electrical systems.","txt":"<a href=\"https:\/\/www.britecelectric.com\/product-category\/dc-surge-protector\/\">DC surge protection devices<\/a> (DC SPD) and 24V DC power supplies are key components that together form a line of defense against transient overvoltages and ensure system continuity. Understanding their working principles, selection criteria, and synergistic effects is crucial for designing and maintaining safe and efficient electrical systems.\r\n<h2>What Is DC Surge Protection Device?<\/h2>\r\n<h3>Definitions<\/h3>\r\nDC surge protection devices are lightning and surge protection devices specifically designed for DC circuits. They can respond within nanoseconds, safely discharging transient overvoltages (surges) caused by lightning induction, switching operations, or electrostatic discharge to the ground, thereby protecting sensitive downstream electronic equipment from damage.\r\n<h3>Protective Components<\/h3>\r\nIts core protection components typically include:\r\n\r\nMetal oxide varistors (MOVs): Fast response, used to absorb medium-energy surges.\r\n\r\nGas discharge tubes (GDTs): High current capacity, commonly used to discharge high-energy initial surge currents.\r\n\r\nTransient voltage suppressor diodes (TVS): Precise voltage clamping and extremely fast response, commonly used to protect precision circuits.\r\n<h3>Performance Parameters<\/h3>\r\nMaximum Continuous Operating Voltage (Uc): The maximum DC voltage (e.g., 24V) that the equipment can safely withstand over a long period.\r\n\r\nNominal Discharge Current (In): The standard value for withstanding an 8\/20\u03bcs waveform inrush current, representing its conventional protection capability.\r\n\r\nMaximum Discharge Current (Imax): The maximum inrush current that the equipment can withstand in a single incident without damage.\r\n\r\nVoltage Protection Level (Up): The residual voltage across the equipment under an inrush. The lower this value, the better the protection for downstream equipment.\r\n\r\nResponse Time: The time from detecting an overvoltage to initiating action. The shorter the better.\r\n\r\n&nbsp;\r\n\r\n<a href=\"https:\/\/www.britecelectric.com\/product\/br-40-24-type-2-dc-24v-spd\/\" rel=\"attachment wp-att-1814\"><img class=\"alignnone size-full wp-image-1814\" src=\"https:\/\/www.britecelectric.com\/wp-content\/uploads\/2024\/09\/BR-40-24-1.jpg\" alt=\"BR-40 24 Type 2 DC 24V SPD\" width=\"800\" \/><\/a>\r\n<h2>What Is A 24V DC Power Supply?<\/h2>\r\n<h3>Definition<\/h3>\r\nA 24V DC power supply is a device that converts AC mains power (such as 220V AC) or other power sources into and provides stable, clean 24V DC power. It is the \"heart\" of industrial control systems.\r\n<h3>Function<\/h3>\r\nIts main functions are conversion, voltage regulation and filtering, ensuring that a continuous and stable 24V DC power supply can be provided to PLCs, sensors, relays, actuators and other equipment, regardless of how the input voltage fluctuates or how the load changes.\r\n<h3>Why 24V Has Become Industrial Standard Voltage<\/h3>\r\nSafe Voltage: Falls within the safe extra-low voltage (SELV) range, posing an extremely low risk of electric shock to humans.\r\n\r\nWide Compatibility: The vast majority of industrial sensors, controllers, and actuators are designed for 24V power supply.\r\n\r\nBalance of Loss and Efficiency: Compared to 12V, it draws less current, has lower line losses and voltage drops for the same power; compared to 48V, it offers higher safety and more cost-effective components.\r\n\r\nStandardization: It has become the common language in the global industrial automation field.\r\n<h3>Key Performance Indicators<\/h3>\r\nOutput accuracy and stability: Voltage fluctuations and ripple noise should be minimized.\r\n\r\nEfficiency: High conversion efficiency means less energy loss and heat generation.\r\n\r\nProtection rating (IP): Protection against dust and water.\r\n\r\nOperating temperature range: Suitable for wide temperature requirements in industrial environments.\r\n<h3>Application Scenarios<\/h3>\r\n24V Surge protector is widely used in factory automated production lines, process control systems, building automation, communication base stations, and solar photovoltaic systems.\r\n<h2>Working In Conjunction With Power Supply<\/h2>\r\nA 24V DC power supply and a DC SPD form a perfect combination of source purification and path defense. The power supply ensures the provision of \"clean\" energy, while the SPD focuses on resisting external \"contamination\" (surges) from power lines or signal lines. They are usually connected in series in the circuit: after the AC power supply is converted to 24V DC, it is first \"filtered\" by the DC SPD before being sent to the terminal equipment, thus building a full-path protection solution from source to end.\r\n<h2>Key Points For Selecting 24V SPD<\/h2>\r\nVoltage Matching: Ensure the SPD's Uc value is slightly higher than the system's maximum continuous operating voltage. For a 24V system, an SPD with a Uc of 30V or 35V is typically selected.\r\n\r\nProtection Level: Select an SPD with a sufficiently low Up value based on the withstand voltage capability of the protected equipment.\r\n\r\nCurrent Handling Capacity: Select appropriate In and Imax values \u200b\u200bbased on the installation location (e.g., main distribution terminal, equipment front end) and local thunderstorm day conditions.\r\n\r\nWiring Method: Confirm whether it is a parallel or series connection and match the corresponding terminal blocks.\r\n\r\nStatus Indication: Products with remote alarms or visual windows (e.g., green\/red) are preferred for ease of maintenance.\r\n<h2>Installation And Maintenance<\/h2>\r\nInstallation: Install as close as possible to the protected equipment. Use short, straight, and thick wiring to reduce residual voltage from lead inductance. Ensure proper grounding.\r\n\r\nMaintenance: Regularly check the status indicator window (ideally annually or around the rainy season). If the indicator is faulty (e.g., turns red), replace it immediately. DC SPD manufacturer kindly reminds you to record lightning strike incidents and check the surge protector status promptly.\r\n<h2>FAQ<\/h2>\r\n<strong>How To Connect DC Surge Protector<\/strong>\r\n\r\nDC SPDs are typically connected in parallel between the positive and negative terminals of the protected circuit, and their grounding terminal must be connected to the system protective earth (PE) with the shortest and thickest possible wire. The product manual should be strictly followed.\r\n\r\n<strong>Can 24V DC SPD And AC SPD Be Used Interchangeably?<\/strong>\r\n\r\nAbsolutely not. The design principles, arc-extinguishing capabilities, and parameter calibrations of the two are completely different. It is more difficult to use a DC SPD to cut off DC follow current. Misusing an AC SPD in a DC circuit will result in the inability to extinguish the arc properly, which may cause the equipment to catch fire.\r\n\r\n<strong>How Can I Determine If DC 24V SPD Is Still Working Properly?<\/strong>\r\n\r\nThe most intuitive way is to observe its status indicator (usually a green\/red window or LED). Green indicates normal operation, while red\/off indicates failure and needs replacement. You can also use a multimeter to measure its online voltage; if it's close to a short circuit and the device is hot, it may be damaged.\r\n\r\n<strong>Why Do Solar Systems Need DC Surge Protection Devices (SPD)?<\/strong>\r\n\r\nPhotovoltaic modules cover a large area and are highly susceptible to direct or induced lightning strikes. Lightning current can enter the inverter and control system through the DC bus line, causing significant damage. Therefore, installing a dedicated photovoltaic DC SPD on the DC side (between the modules and the inverter) is crucial.\r\n\r\n<strong>What Wiring Precautions Should Be Taken When Installing 24V DC SPD?<\/strong>\r\n\r\nThe key principles are \"short, straight, and thick\". 1) The length of the grounding wire should be less than 0.5 meters; 2) Avoid forming loops; 3) The cross-sectional area of \u200b\u200bthe conductor must meet the requirements for discharging large current (usually not less than 4 mm\u00b2); 4) Ensure that all connection points are tight and free from oxidation.\r\n\r\n<strong>Comparison Between Linear And Switching Power Supply In 24V Applications<\/strong>\r\n\r\nLinear power supplies have low output ripple and low noise, but are large in size and low in efficiency (approximately 40-60%), making them suitable for precision measuring equipment that is extremely sensitive to noise. Switching power supplies are small in size, highly efficient (typically &gt;85%), and can adapt to a wide input voltage range, making them the mainstream choice for industrial control. However, their high-frequency switching generates some electromagnetic noise, which needs to be properly handled.\r\n<h2>Conclusion<\/h2>\r\nIn industrial automation and new energy fields, 24V DC power supplies and DC surge protection devices are a complementary and indispensable core combination.\r\n\r\nTake action now to build a robust defense for your critical systems! Don't wait until a lightning strike or power surge causes irreparable damage to realize the importance of protection."},"_links":{"self":[{"href":"https:\/\/www.britecelectric.com\/nl\/wp-json\/wp\/v2\/blog\/2288","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.britecelectric.com\/nl\/wp-json\/wp\/v2\/blog"}],"about":[{"href":"https:\/\/www.britecelectric.com\/nl\/wp-json\/wp\/v2\/types\/blog"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/www.britecelectric.com\/nl\/wp-json\/wp\/v2\/media\/1814"}],"wp:attachment":[{"href":"https:\/\/www.britecelectric.com\/nl\/wp-json\/wp\/v2\/media?parent=2288"}],"wp:term":[{"taxonomy":"blog_category","embeddable":true,"href":"https:\/\/www.britecelectric.com\/nl\/wp-json\/wp\/v2\/blog_category?post=2288"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}